diff --git a/go.mod b/go.mod index 86f72cd68b..30b0f65e48 100644 --- a/go.mod +++ b/go.mod @@ -17,20 +17,20 @@ require ( github.com/onsi/gomega v1.38.2 github.com/samber/lo v1.49.1 github.com/spf13/cobra v1.10.2 - github.com/spf13/pflag v1.0.9 + github.com/spf13/pflag v1.0.10 github.com/stretchr/testify v1.11.1 - golang.org/x/time v0.14.0 + golang.org/x/time v0.15.0 gopkg.in/gcfg.v1 v1.2.3 - k8s.io/api v0.36.0 - k8s.io/apimachinery v0.36.0 - k8s.io/client-go v0.36.0 - k8s.io/cloud-provider v0.36.0 - k8s.io/code-generator v0.36.0 - k8s.io/component-base v0.36.0 - k8s.io/controller-manager v0.36.0 + k8s.io/api v0.37.0 + k8s.io/apimachinery v0.37.0 + k8s.io/client-go v0.37.0 + k8s.io/cloud-provider v0.37.0 + k8s.io/code-generator v0.37.0 + k8s.io/component-base v0.37.0 + k8s.io/controller-manager v0.37.0 k8s.io/klog/v2 v2.140.0 - k8s.io/kubelet v0.36.0 - k8s.io/utils v0.0.0-20260210185600-b8788abfbbc2 + k8s.io/kubelet v0.37.0 + k8s.io/utils v0.0.0-20260626114624-be93311217bd sigs.k8s.io/controller-runtime v0.20.3 ) @@ -38,29 +38,40 @@ require ( cel.dev/expr v0.25.1 // indirect github.com/Masterminds/semver/v3 v3.4.0 // indirect github.com/cenkalti/backoff/v5 v5.0.3 // indirect + github.com/go-openapi/swag/cmdutils v0.27.1 // indirect + github.com/go-openapi/swag/conv v0.27.1 // indirect + github.com/go-openapi/swag/fileutils v0.27.1 // indirect + github.com/go-openapi/swag/jsonutils v0.27.1 // indirect + github.com/go-openapi/swag/loading v0.27.1 // indirect + github.com/go-openapi/swag/mangling v0.27.1 // indirect + github.com/go-openapi/swag/netutils v0.27.1 // indirect + github.com/go-openapi/swag/pools v0.27.1 // indirect + github.com/go-openapi/swag/stringutils v0.27.1 // indirect + github.com/go-openapi/swag/typeutils v0.27.1 // indirect + github.com/go-openapi/swag/yamlutils v0.27.1 // indirect github.com/go-task/slim-sprig/v3 v3.0.0 // indirect github.com/google/pprof v0.0.0-20250403155104-27863c87afa6 // indirect github.com/grpc-ecosystem/go-grpc-middleware/providers/prometheus v1.1.0 // indirect github.com/grpc-ecosystem/go-grpc-middleware/v2 v2.3.3 // indirect github.com/kylelemons/godebug v1.1.0 // indirect - github.com/prometheus/client_golang v1.23.2 // indirect + github.com/prometheus/client_golang v1.24.0 // indirect go.opentelemetry.io/auto/sdk v1.2.1 // indirect - go.yaml.in/yaml/v2 v2.4.3 // indirect + go.yaml.in/yaml/v2 v2.4.4 // indirect go.yaml.in/yaml/v3 v3.0.4 // indirect gopkg.in/evanphx/json-patch.v4 v4.13.0 // indirect gopkg.in/inf.v0 v0.9.1 // indirect gopkg.in/natefinch/lumberjack.v2 v2.2.1 // indirect gopkg.in/warnings.v0 v0.1.2 // indirect gopkg.in/yaml.v3 v3.0.1 // indirect - k8s.io/streaming v0.36.0 // indirect + k8s.io/streaming v0.37.0 // indirect sigs.k8s.io/randfill v1.0.0 // indirect - sigs.k8s.io/structured-merge-diff/v6 v6.3.2 // indirect + sigs.k8s.io/structured-merge-diff/v6 v6.4.2 // indirect ) require ( - github.com/Azure/go-ansiterm v0.0.0-20230124172434-306776ec8161 // indirect + github.com/Azure/go-ansiterm v0.0.0-20250102033503-faa5f7b0171c // indirect github.com/NYTimes/gziphandler v1.1.1 // indirect - github.com/antlr4-go/antlr/v4 v4.13.0 // indirect + github.com/antlr4-go/antlr/v4 v4.13.1 // indirect github.com/aws/aws-sdk-go-v2/credentials v1.17.67 github.com/aws/aws-sdk-go-v2/feature/ec2/imds v1.16.31 github.com/aws/aws-sdk-go-v2/internal/configsources v1.4.17 // indirect @@ -82,68 +93,64 @@ require ( github.com/emicklei/go-restful/v3 v3.13.0 // indirect github.com/felixge/httpsnoop v1.0.4 // indirect github.com/fsnotify/fsnotify v1.9.0 // indirect - github.com/fxamacker/cbor/v2 v2.9.0 // indirect + github.com/fxamacker/cbor/v2 v2.9.1 // indirect github.com/go-logr/logr v1.4.3 // indirect github.com/go-logr/stdr v1.2.2 // indirect - github.com/go-openapi/jsonpointer v0.21.0 // indirect - github.com/go-openapi/jsonreference v0.20.2 // indirect - github.com/go-openapi/swag v0.23.0 // indirect - github.com/gogo/protobuf v1.3.2 // indirect + github.com/go-openapi/jsonpointer v1.0.0 // indirect + github.com/go-openapi/jsonreference v1.0.0 // indirect + github.com/go-openapi/swag v0.27.1 // indirect github.com/golang/protobuf v1.5.4 // indirect - github.com/google/cel-go v0.26.0 // indirect + github.com/google/cel-go v0.30.0 // indirect github.com/google/gnostic-models v0.7.0 // indirect github.com/google/go-cmp v0.7.0 // indirect github.com/google/uuid v1.6.0 // indirect - github.com/grpc-ecosystem/grpc-gateway/v2 v2.27.7 // indirect + github.com/grpc-ecosystem/grpc-gateway/v2 v2.29.0 // indirect github.com/inconshreveable/mousetrap v1.1.0 // indirect - github.com/josharian/intern v1.0.0 // indirect github.com/json-iterator/go v1.1.12 // indirect - github.com/mailru/easyjson v0.7.7 // indirect - github.com/moby/term v0.5.0 // indirect + github.com/moby/term v0.5.2 // indirect github.com/modern-go/concurrent v0.0.0-20180306012644-bacd9c7ef1dd // indirect github.com/modern-go/reflect2 v1.0.3-0.20250322232337-35a7c28c31ee // indirect github.com/munnerz/goautoneg v0.0.0-20191010083416-a7dc8b61c822 // indirect github.com/pmezard/go-difflib v1.0.1-0.20181226105442-5d4384ee4fb2 // indirect github.com/prometheus/client_model v0.6.2 // indirect - github.com/prometheus/common v0.67.5 // indirect - github.com/prometheus/procfs v0.19.2 // indirect - github.com/stoewer/go-strcase v1.3.0 // indirect - github.com/stretchr/objx v0.5.2 // indirect + github.com/prometheus/common v0.70.0 // indirect + github.com/prometheus/procfs v0.21.1 // indirect + github.com/stretchr/objx v0.5.3 // indirect github.com/x448/float16 v0.8.4 // indirect - go.etcd.io/etcd/api/v3 v3.6.8 // indirect - go.etcd.io/etcd/client/pkg/v3 v3.6.8 // indirect - go.etcd.io/etcd/client/v3 v3.6.8 // indirect - go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.65.0 // indirect - go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.65.0 // indirect - go.opentelemetry.io/otel v1.41.0 // indirect - go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.40.0 // indirect - go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.40.0 // indirect - go.opentelemetry.io/otel/metric v1.41.0 // indirect - go.opentelemetry.io/otel/sdk v1.40.0 // indirect - go.opentelemetry.io/otel/trace v1.41.0 // indirect - go.opentelemetry.io/proto/otlp v1.9.0 // indirect + go.etcd.io/etcd/api/v3 v3.7.1 // indirect + go.etcd.io/etcd/client/pkg/v3 v3.7.1 // indirect + go.etcd.io/etcd/client/v3 v3.7.1 // indirect + go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.68.0 // indirect + go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.69.0 // indirect + go.opentelemetry.io/otel v1.44.0 // indirect + go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.44.0 // indirect + go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.44.0 // indirect + go.opentelemetry.io/otel/metric v1.44.0 // indirect + go.opentelemetry.io/otel/sdk v1.44.0 // indirect + go.opentelemetry.io/otel/trace v1.44.0 // indirect + go.opentelemetry.io/proto/otlp v1.10.0 // indirect go.uber.org/multierr v1.11.0 // indirect go.uber.org/zap v1.27.1 // indirect - golang.org/x/crypto v0.51.0 // indirect - golang.org/x/exp v0.0.0-20251219203646-944ab1f22d93 // indirect - golang.org/x/mod v0.35.0 // indirect - golang.org/x/net v0.55.0 // indirect - golang.org/x/oauth2 v0.34.0 // indirect - golang.org/x/sync v0.20.0 - golang.org/x/sys v0.45.0 // indirect - golang.org/x/term v0.43.0 // indirect - golang.org/x/text v0.37.0 // indirect - golang.org/x/tools v0.44.0 // indirect - google.golang.org/genproto/googleapis/api v0.0.0-20260128011058-8636f8732409 // indirect - google.golang.org/genproto/googleapis/rpc v0.0.0-20260128011058-8636f8732409 // indirect - google.golang.org/grpc v1.79.3 // indirect + golang.org/x/crypto v0.54.0 // indirect + golang.org/x/exp v0.0.0-20260410095643-746e56fc9e2f // indirect + golang.org/x/mod v0.37.0 // indirect + golang.org/x/net v0.57.0 // indirect + golang.org/x/oauth2 v0.36.0 // indirect + golang.org/x/sync v0.22.0 + golang.org/x/sys v0.47.0 // indirect + golang.org/x/term v0.45.0 // indirect + golang.org/x/text v0.40.0 // indirect + golang.org/x/tools v0.47.0 // indirect + google.golang.org/genproto/googleapis/api v0.0.0-20260526163538-3dc84a4a5aaa // indirect + google.golang.org/genproto/googleapis/rpc v0.0.0-20260526163538-3dc84a4a5aaa // indirect + google.golang.org/grpc v1.82.1 // indirect google.golang.org/protobuf v1.36.12-0.20260120151049-f2248ac996af // indirect - k8s.io/apiserver v0.36.0 // indirect - k8s.io/component-helpers v0.36.0 // indirect - k8s.io/gengo/v2 v2.0.0-20250922181213-ec3ebc5fd46b // indirect - k8s.io/kms v0.36.0 // indirect - k8s.io/kube-openapi v0.0.0-20260317180543-43fb72c5454a // indirect - sigs.k8s.io/apiserver-network-proxy/konnectivity-client v0.34.0 // indirect + k8s.io/apiserver v0.37.0 // indirect + k8s.io/component-helpers v0.37.0 // indirect + k8s.io/gengo/v2 v2.0.0-20260408192533-25e2208e0dc3 // indirect + k8s.io/kms v0.37.0 // indirect + k8s.io/kube-openapi v0.0.0-20260721132016-d427ff9ee9ad // indirect + sigs.k8s.io/apiserver-network-proxy/konnectivity-client v0.36.0 // indirect sigs.k8s.io/json v0.0.0-20250730193827-2d320260d730 // indirect sigs.k8s.io/yaml v1.6.0 // indirect ) diff --git a/go.sum b/go.sum index f75ff970b5..db7a386648 100644 --- a/go.sum +++ b/go.sum @@ -1,15 +1,15 @@ cel.dev/expr v0.25.1 h1:1KrZg61W6TWSxuNZ37Xy49ps13NUovb66QLprthtwi4= cel.dev/expr v0.25.1/go.mod h1:hrXvqGP6G6gyx8UAHSHJ5RGk//1Oj5nXQ2NI02Nrsg4= -github.com/Azure/go-ansiterm v0.0.0-20230124172434-306776ec8161 h1:L/gRVlceqvL25UVaW/CKtUDjefjrs0SPonmDGUVOYP0= -github.com/Azure/go-ansiterm v0.0.0-20230124172434-306776ec8161/go.mod h1:xomTg63KZ2rFqZQzSB4Vz2SUXa1BpHTVz9L5PTmPC4E= +github.com/Azure/go-ansiterm v0.0.0-20250102033503-faa5f7b0171c h1:udKWzYgxTojEKWjV8V+WSxDXJ4NFATAsZjh8iIbsQIg= +github.com/Azure/go-ansiterm v0.0.0-20250102033503-faa5f7b0171c/go.mod h1:xomTg63KZ2rFqZQzSB4Vz2SUXa1BpHTVz9L5PTmPC4E= github.com/Masterminds/semver/v3 v3.4.0 h1:Zog+i5UMtVoCU8oKka5P7i9q9HgrJeGzI9SA1Xbatp0= github.com/Masterminds/semver/v3 v3.4.0/go.mod h1:4V+yj/TJE1HU9XfppCwVMZq3I84lprf4nC11bSS5beM= github.com/NYTimes/gziphandler v1.1.1 h1:ZUDjpQae29j0ryrS0u/B8HZfJBtBQHjqw2rQ2cqUQ3I= github.com/NYTimes/gziphandler v1.1.1/go.mod h1:n/CVRwUEOgIxrgPvAQhUUr9oeUtvrhMomdKFjzJNB0c= github.com/Pallinder/go-randomdata v1.2.0 h1:DZ41wBchNRb/0GfsePLiSwb0PHZmT67XY00lCDlaYPg= github.com/Pallinder/go-randomdata v1.2.0/go.mod h1:yHmJgulpD2Nfrm0cR9tI/+oAgRqCQQixsA8HyRZfV9Y= -github.com/antlr4-go/antlr/v4 v4.13.0 h1:lxCg3LAv+EUK6t1i0y1V6/SLeUi0eKEKdhQAlS8TVTI= -github.com/antlr4-go/antlr/v4 v4.13.0/go.mod h1:pfChB/xh/Unjila75QW7+VU4TSnWnnk9UTnmpPaOR2g= +github.com/antlr4-go/antlr/v4 v4.13.1 h1:SqQKkuVZ+zWkMMNkjy5FZe5mr5WURWnlpmOuzYWrPrQ= +github.com/antlr4-go/antlr/v4 v4.13.1/go.mod h1:GKmUxMtwp6ZgGwZSva4eWPC5mS6vUAmOABFgjdkM7Nw= github.com/aws/aws-sdk-go-v2 v1.41.1 h1:ABlyEARCDLN034NhxlRUSZr4l71mh+T5KAeGh6cerhU= github.com/aws/aws-sdk-go-v2 v1.41.1/go.mod h1:MayyLB8y+buD9hZqkCW3kX1AKq07Y5pXxtgB+rRFhz0= github.com/aws/aws-sdk-go-v2/config v1.29.14 h1:f+eEi/2cKCg9pqKBoAIwRGzVb70MRKqWX4dg1BDcSJM= @@ -63,7 +63,6 @@ github.com/coreos/go-semver v0.3.1/go.mod h1:irMmmIw/7yzSRPWryHsK7EYSg09caPQL03V github.com/coreos/go-systemd/v22 v22.7.0 h1:LAEzFkke61DFROc7zNLX/WA2i5J8gYqe0rSj9KI28KA= github.com/coreos/go-systemd/v22 v22.7.0/go.mod h1:xNUYtjHu2EDXbsxz1i41wouACIwT7Ybq9o0BQhMwD0w= github.com/cpuguy83/go-md2man/v2 v2.0.6/go.mod h1:oOW0eioCTA6cOiMLiUPZOpcVxMig6NIQQ7OS05n1F4g= -github.com/creack/pty v1.1.9/go.mod h1:oKZEueFk5CKHvIhNR5MUki03XCEU+Q6VDXinZuGJ33E= github.com/creack/pty v1.1.18 h1:n56/Zwd5o6whRC5PMGretI4IdRLlmBXYNjScPaBgsbY= github.com/creack/pty v1.1.18/go.mod h1:MOBLtS5ELjhRRrroQr9kyvTxUAFNvYEK993ew/Vr4O4= github.com/davecgh/go-spew v1.1.0/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38= @@ -78,8 +77,8 @@ github.com/felixge/httpsnoop v1.0.4 h1:NFTV2Zj1bL4mc9sqWACXbQFVBBg2W3GPvqp8/ESS2 github.com/felixge/httpsnoop v1.0.4/go.mod h1:m8KPJKqk1gH5J9DgRY2ASl2lWCfGKXixSwevea8zH2U= github.com/fsnotify/fsnotify v1.9.0 h1:2Ml+OJNzbYCTzsxtv8vKSFD9PbJjmhYF14k/jKC7S9k= github.com/fsnotify/fsnotify v1.9.0/go.mod h1:8jBTzvmWwFyi3Pb8djgCCO5IBqzKJ/Jwo8TRcHyHii0= -github.com/fxamacker/cbor/v2 v2.9.0 h1:NpKPmjDBgUfBms6tr6JZkTHtfFGcMKsw3eGcmD/sapM= -github.com/fxamacker/cbor/v2 v2.9.0/go.mod h1:vM4b+DJCtHn+zz7h3FFp/hDAI9WNWCsZj23V5ytsSxQ= +github.com/fxamacker/cbor/v2 v2.9.1 h1:2rWm8B193Ll4VdjsJY28jxs70IdDsHRWgQYAI80+rMQ= +github.com/fxamacker/cbor/v2 v2.9.1/go.mod h1:vM4b+DJCtHn+zz7h3FFp/hDAI9WNWCsZj23V5ytsSxQ= github.com/gkampitakis/ciinfo v0.3.2 h1:JcuOPk8ZU7nZQjdUhctuhQofk7BGHuIy0c9Ez8BNhXs= github.com/gkampitakis/ciinfo v0.3.2/go.mod h1:1NIwaOcFChN4fa/B0hEBdAb6npDlFL8Bwx4dfRLRqAo= github.com/gkampitakis/go-diff v1.3.2 h1:Qyn0J9XJSDTgnsgHRdz9Zp24RaJeKMUHg2+PDZZdC4M= @@ -93,28 +92,50 @@ github.com/go-logr/stdr v1.2.2 h1:hSWxHoqTgW2S2qGc0LTAI563KZ5YKYRhT3MFKZMbjag= github.com/go-logr/stdr v1.2.2/go.mod h1:mMo/vtBO5dYbehREoey6XUKy/eSumjCCveDpRre4VKE= github.com/go-logr/zapr v1.3.0 h1:XGdV8XW8zdwFiwOA2Dryh1gj2KRQyOOoNmBy4EplIcQ= github.com/go-logr/zapr v1.3.0/go.mod h1:YKepepNBd1u/oyhd/yQmtjVXmm9uML4IXUgMOwR8/Gg= -github.com/go-openapi/jsonpointer v0.19.6/go.mod h1:osyAmYz/mB/C3I+WsTTSgw1ONzaLJoLCyoi6/zppojs= -github.com/go-openapi/jsonpointer v0.21.0 h1:YgdVicSA9vH5RiHs9TZW5oyafXZFc6+2Vc1rr/O9oNQ= -github.com/go-openapi/jsonpointer v0.21.0/go.mod h1:IUyH9l/+uyhIYQ/PXVA41Rexl+kOkAPDdXEYns6fzUY= -github.com/go-openapi/jsonreference v0.20.2 h1:3sVjiK66+uXK/6oQ8xgcRKcFgQ5KXa2KvnJRumpMGbE= -github.com/go-openapi/jsonreference v0.20.2/go.mod h1:Bl1zwGIM8/wsvqjsOQLJ/SH+En5Ap4rVB5KVcIDZG2k= -github.com/go-openapi/swag v0.22.3/go.mod h1:UzaqsxGiab7freDnrUUra0MwWfN/q7tE4j+VcZ0yl14= -github.com/go-openapi/swag v0.23.0 h1:vsEVJDUo2hPJ2tu0/Xc+4noaxyEffXNIs3cOULZ+GrE= -github.com/go-openapi/swag v0.23.0/go.mod h1:esZ8ITTYEsH1V2trKHjAN8Ai7xHb8RV+YSZ577vPjgQ= +github.com/go-openapi/jsonpointer v1.0.0 h1:kR9tHqY0CtZaOPVFm622dPVNhrvYpwr4uCxgL3h1H8s= +github.com/go-openapi/jsonpointer v1.0.0/go.mod h1:Z3rw7dWu1p9IgitXCFamSlA5lmDiklEB6vkaxcNZW5Y= +github.com/go-openapi/jsonreference v1.0.0 h1:jlmTr6torcd1YgDQvSfNmRtKzYDO4FGBkrAdlAVWnpY= +github.com/go-openapi/jsonreference v1.0.0/go.mod h1:jtwdyGbJk0Xhe5Y+rwtglQP6Sb1WZST4rT32LWB+sv0= +github.com/go-openapi/swag v0.27.1 h1:VotvOLWW8q/EAxB0YdsBBGC8XYyeL1YwBj2ungAGPNg= +github.com/go-openapi/swag v0.27.1/go.mod h1:GTkJPwHfhJp6MWr4/rCh64HVI3Ofu+tcsbfjfHmTxpE= +github.com/go-openapi/swag/cmdutils v0.27.1 h1:I7sYqaWVl5mq0NEmNQkAmFDyNin9ufvMX/p2zwtQaOE= +github.com/go-openapi/swag/cmdutils v0.27.1/go.mod h1:Sm1MVFMkF6guJJ+pQqHnQA3N0j9qALV3NxzDSv6bETM= +github.com/go-openapi/swag/conv v0.27.1 h1:8wi9ZG+olmY1wXphl93EWniPtbSPkXM/feH7FgjsvrU= 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v6.4.2/go.mod h1:M3W8sfWvn2HhQDIbGWj3S099YozAsymCo/wrT5ohRUE= sigs.k8s.io/yaml v1.6.0 h1:G8fkbMSAFqgEFgh4b1wmtzDnioxFCUgTZhlbj5P9QYs= sigs.k8s.io/yaml v1.6.0/go.mod h1:796bPqUfzR/0jLAl6XjHl3Ck7MiyVv8dbTdyT3/pMf4= diff --git a/pkg/controllers/tagging/tagging_controller_wrapper.go b/pkg/controllers/tagging/tagging_controller_wrapper.go index 1f1eb0862e..eaf039eeda 100644 --- a/pkg/controllers/tagging/tagging_controller_wrapper.go +++ b/pkg/controllers/tagging/tagging_controller_wrapper.go @@ -2,6 +2,7 @@ package tagging import ( "context" + cloudprovider "k8s.io/cloud-provider" "k8s.io/cloud-provider/app" cloudcontrollerconfig "k8s.io/cloud-provider/app/config" @@ -43,7 +44,7 @@ func (tc *ControllerWrapper) startTaggingController(ctx context.Context, initCon completedConfig.SharedInformers.Core().V1().Nodes(), completedConfig.ClientBuilder.ClientOrDie(initContext.ClientName), cloud, - completedConfig.ComponentConfig.KubeCloudShared.NodeMonitorPeriod.Duration, + completedConfig.ComponentConfig.NodeLifecycleController.NodeMonitorPeriod.Duration, tc.Options.Tags, tc.Options.Resources, tc.Options.RateLimit, diff --git a/pkg/providers/v1/aws.go b/pkg/providers/v1/aws.go index 0bbbc2455d..7fc217316c 100644 --- a/pkg/providers/v1/aws.go +++ b/pkg/providers/v1/aws.go @@ -41,7 +41,6 @@ import ( elbv2types "github.com/aws/aws-sdk-go-v2/service/elasticloadbalancingv2/types" "github.com/aws/aws-sdk-go-v2/service/kms" "github.com/aws/smithy-go" - smithymiddleware "github.com/aws/smithy-go/middleware" "gopkg.in/gcfg.v1" v1 "k8s.io/api/core/v1" @@ -521,9 +520,7 @@ func init() { var creds *stscreds.AssumeRoleProvider if cfg.Global.RoleARN != "" { stsClient, err := services.NewStsClient(ctx, regionName, cfg.Global.RoleARN, cfg.Global.SourceARN, - func(stack *smithymiddleware.Stack) error { - return stack.Deserialize.Add(awsAPIMetricsMiddleware(), smithymiddleware.After) - }, + addAWSAPIMetricsMiddleware, ) if err != nil { return nil, fmt.Errorf("unable to create sts v2 client: %v", err) @@ -3528,6 +3525,11 @@ func (c *Cloud) UpdateLoadBalancer(ctx context.Context, clusterName string, serv func (c *Cloud) getInstanceByID(ctx context.Context, instanceID string) (*ec2types.Instance, error) { instances, err := c.getInstancesByIDs(ctx, []string{instanceID}) if err != nil { + // A DescribeInstances by ID for an instance that no longer exists returns + // an InvalidInstanceID.NotFound error rather than an empty result. + if IsAWSErrorInstanceNotFound(err) { + return nil, cloudprovider.InstanceNotFound + } return nil, err } diff --git a/pkg/providers/v1/aws_api_metrics_test.go b/pkg/providers/v1/aws_api_metrics_test.go index a3e5026f24..c20216fe08 100644 --- a/pkg/providers/v1/aws_api_metrics_test.go +++ b/pkg/providers/v1/aws_api_metrics_test.go @@ -21,48 +21,65 @@ import ( "fmt" "net/http" "testing" + "time" - "github.com/aws/smithy-go" + "github.com/aws/aws-sdk-go-v2/aws/retry" + awshttp "github.com/aws/aws-sdk-go-v2/aws/transport/http" "github.com/aws/smithy-go/middleware" smithyhttp "github.com/aws/smithy-go/transport/http" "github.com/stretchr/testify/assert" "k8s.io/component-base/metrics/testutil" ) +// respErr builds an *awshttp.ResponseError carrying the given HTTP status code, as the +// SDK produces when an API call fails terminally with an HTTP response. +func respErr(statusCode int) error { + return &awshttp.ResponseError{ + ResponseError: &smithyhttp.ResponseError{ + Response: &smithyhttp.Response{Response: &http.Response{StatusCode: statusCode}}, + Err: fmt.Errorf("api error"), + }, + } +} + +// statusCounterValue returns the recorded count for a status code (empty +// service/operation, as produced by the test middleware chain). +func statusCounterValue(t *testing.T, statusCode string) float64 { + t.Helper() + v, err := testutil.GetCounterMetricValue(awsAPIResponseStatusTotal.With(map[string]string{ + "service": "", + "operation": "", + "status_code": statusCode, + })) + assert.NoError(t, err) + return v +} + func TestAWSAPIMetricsMiddleware(t *testing.T) { registerMetrics() tests := []struct { name string - statusCode int err error - expectStatusCode string + expectStatusCode string // "" means expect nothing recorded }{ { - name: "4xx response records status code", - statusCode: 403, + name: "terminal 4xx records status code", + err: respErr(403), expectStatusCode: "403", }, { - name: "5xx response records status code", - statusCode: 500, + name: "terminal 5xx records status code", + err: respErr(500), expectStatusCode: "500", }, { - name: "2xx response does not record", - statusCode: 200, + name: "success records nothing", + err: nil, }, { - name: "4xx with API error records status code", - statusCode: 400, - err: &smithy.GenericAPIError{Code: "ThrottlingException", Message: "rate exceeded"}, - expectStatusCode: "400", - }, - { - name: "5xx with non-API error records status code", - statusCode: 500, - err: fmt.Errorf("connection reset"), - expectStatusCode: "500", + name: "terminal error without HTTP response records nothing", + err: fmt.Errorf("connection reset"), }, } @@ -71,29 +88,87 @@ func TestAWSAPIMetricsMiddleware(t *testing.T) { awsAPIResponseStatusTotal.Reset() mw := awsAPIMetricsMiddleware() - handler := middleware.DeserializeHandlerFunc( - func(ctx context.Context, in middleware.DeserializeInput) ( - middleware.DeserializeOutput, middleware.Metadata, error, + handler := middleware.FinalizeHandlerFunc( + func(ctx context.Context, in middleware.FinalizeInput) ( + middleware.FinalizeOutput, middleware.Metadata, error, ) { - return middleware.DeserializeOutput{ - RawResponse: &smithyhttp.Response{ - Response: &http.Response{StatusCode: tc.statusCode}, - }, - }, middleware.Metadata{}, tc.err + return middleware.FinalizeOutput{}, middleware.Metadata{}, tc.err }, ) - _, _, _ = mw.HandleDeserialize(context.Background(), middleware.DeserializeInput{}, handler) + _, _, _ = mw.HandleFinalize(context.Background(), middleware.FinalizeInput{}, handler) if tc.expectStatusCode != "" { - val, err := testutil.GetCounterMetricValue(awsAPIResponseStatusTotal.With(map[string]string{ - "service": "", - "operation": "", - "status_code": tc.expectStatusCode, - })) - assert.NoError(t, err) - assert.Equal(t, float64(1), val) + assert.Equal(t, float64(1), statusCounterValue(t, tc.expectStatusCode)) } }) } } + +// TestAWSAPIMetricsMiddlewareWithRetries asserts that transient failures the +// retryer recovers from are NOT counted (the point of counting at Finalize, +// before Retry, rather than at Deserialize), while a failure that exhausts +// retries is counted exactly once. +func TestAWSAPIMetricsMiddlewareWithRetries(t *testing.T) { + registerMetrics() + + // Standard retryer: 3 attempts, zero backoff so the test is fast. + retryer := retry.NewStandard(func(o *retry.StandardOptions) { + o.MaxAttempts = 3 + o.Backoff = retry.BackoffDelayerFunc(func(int, error) (time.Duration, error) { return 0, nil }) + }) + attempt := retry.NewAttemptMiddleware(retryer, func(i interface{}) interface{} { return i }) + metricsMW := awsAPIMetricsMiddleware() + + run := func(inner middleware.FinalizeHandler) error { + // Adapt the attempt middleware into a FinalizeHandler that drives the retry loop + // over inner, so metricsMW (inserted before Retry) sees only the terminal result. + retryHandler := middleware.FinalizeHandlerFunc(func(ctx context.Context, in middleware.FinalizeInput) ( + middleware.FinalizeOutput, middleware.Metadata, error) { + return attempt.HandleFinalize(ctx, in, inner) + }) + _, _, err := metricsMW.HandleFinalize(context.Background(), middleware.FinalizeInput{}, retryHandler) + return err + } + + t.Run("transient 503 then success is not counted", func(t *testing.T) { + awsAPIResponseStatusTotal.Reset() + calls := 0 + err := run(middleware.FinalizeHandlerFunc(func(ctx context.Context, in middleware.FinalizeInput) ( + middleware.FinalizeOutput, middleware.Metadata, error) { + calls++ + if calls == 1 { + return middleware.FinalizeOutput{}, middleware.Metadata{}, respErr(503) + } + return middleware.FinalizeOutput{}, middleware.Metadata{}, nil // recovered + })) + assert.NoError(t, err, "expected success after retry") + assert.Equal(t, 2, calls, "expected 2 attempts (1 fail + 1 success)") + assert.Equal(t, float64(0), statusCounterValue(t, "503"), "retried-away 503 should not be counted") + }) + + t.Run("retry-exhausted 503 is counted once", func(t *testing.T) { + awsAPIResponseStatusTotal.Reset() + calls := 0 + err := run(middleware.FinalizeHandlerFunc(func(ctx context.Context, in middleware.FinalizeInput) ( + middleware.FinalizeOutput, middleware.Metadata, error) { + calls++ + return middleware.FinalizeOutput{}, middleware.Metadata{}, respErr(503) + })) + assert.Error(t, err, "expected terminal error after exhausting retries") + assert.Equal(t, 3, calls, "expected 3 attempts (max)") + assert.Equal(t, float64(1), statusCounterValue(t, "503"), "retry-exhausted 503 should be counted exactly once") + }) + + t.Run("non-retryable 400 is counted once on first attempt", func(t *testing.T) { + awsAPIResponseStatusTotal.Reset() + calls := 0 + err := run(middleware.FinalizeHandlerFunc(func(ctx context.Context, in middleware.FinalizeInput) ( + middleware.FinalizeOutput, middleware.Metadata, error) { + calls++ + return middleware.FinalizeOutput{}, middleware.Metadata{}, respErr(400) + })) + assert.Error(t, err, "expected terminal error for 400") + assert.Equal(t, float64(1), statusCounterValue(t, "400"), "terminal 400 should be counted exactly once") + }) +} diff --git a/pkg/providers/v1/aws_loadbalancer.go b/pkg/providers/v1/aws_loadbalancer.go index a64841eb17..6f06dfac48 100644 --- a/pkg/providers/v1/aws_loadbalancer.go +++ b/pkg/providers/v1/aws_loadbalancer.go @@ -2062,7 +2062,16 @@ func (c *Cloud) buildSecurityGroupRuleReferences(ctx context.Context, sgID strin if rule.UserIdGroupPairs != nil { for _, pair := range rule.UserIdGroupPairs { if pair.GroupId != nil && aws.ToString(pair.GroupId) == sgID { - groupsLinkedPermissions[&sg].Insert(rule) + // Revoke only the UserIdGroupPair that references sgID. EC2 consolidates rules + // with the same protocol/port into one IpPermission with multiple pairs, so the + // matched rule may also carry unrelated pairs (e.g. the node SG self-reference). + // Build a new permission with just the matching pair so nothing else is revoked. + groupsLinkedPermissions[&sg].Insert(ec2types.IpPermission{ + IpProtocol: rule.IpProtocol, + FromPort: rule.FromPort, + ToPort: rule.ToPort, + UserIdGroupPairs: []ec2types.UserIdGroupPair{pair}, + }) } } } diff --git a/pkg/providers/v1/aws_loadbalancer_test.go b/pkg/providers/v1/aws_loadbalancer_test.go index 8607ea167d..ee7d0fea3a 100644 --- a/pkg/providers/v1/aws_loadbalancer_test.go +++ b/pkg/providers/v1/aws_loadbalancer_test.go @@ -2243,6 +2243,64 @@ func TestCloud_buildSecurityGroupRuleReferences(t *testing.T) { assert.Equal(t, 1, groupsLinkedPermissions[foundSG].Len()) }, }, + { + name: "consolidated permission is narrowed to the matching pair only", + targetGroupID: "sg-target", + setupMocks: func(mockedEC2 *MockedFakeEC2) { + mockedEC2.On("DescribeSecurityGroups", &ec2.DescribeSecurityGroupsInput{ + Filters: []ec2types.Filter{ + { + Name: aws.String("ip-permission.group-id"), + Values: []string{"sg-target"}, + }, + }, + }).Return([]ec2types.SecurityGroup{ + { + GroupId: aws.String("sg-node"), + Tags: []ec2types.Tag{ + { + Key: aws.String("kubernetes.io/cluster/test-cluster"), + Value: aws.String("owned"), + }, + }, + // A single all-traffic IpPermission that EC2 has consolidated: it + // contains both the node SG's own self-reference and the reference to + // sg-target. Only the sg-target pair should be selected for revocation; + // the self-reference must be preserved. + IpPermissions: []ec2types.IpPermission{ + { + IpProtocol: aws.String("-1"), + UserIdGroupPairs: []ec2types.UserIdGroupPair{ + {GroupId: aws.String("sg-node")}, + {GroupId: aws.String("sg-target")}, + }, + }, + }, + }, + }, nil) + }, + expectError: false, + expectedGroupsWithTagsCount: 1, + expectedGroupsLinkedPermissionsCount: 1, + additionalAssertions: func(t *testing.T, groupsWithTags map[*ec2types.SecurityGroup]bool, groupsLinkedPermissions map[*ec2types.SecurityGroup]IPPermissionSet) { + var foundSG *ec2types.SecurityGroup + for sg := range groupsLinkedPermissions { + if aws.ToString(sg.GroupId) == "sg-node" { + foundSG = sg + break + } + } + require.NotNil(t, foundSG) + + linked := groupsLinkedPermissions[foundSG] + require.Equal(t, 1, linked.Len()) + perm := linked.List()[0] + // The revoke set must reference ONLY sg-target, never the node SG's + // self-reference (which would break intra-cluster traffic if revoked). + require.Len(t, perm.UserIdGroupPairs, 1) + assert.Equal(t, "sg-target", aws.ToString(perm.UserIdGroupPairs[0].GroupId)) + }, + }, { name: "success with non-cluster tagged security group", targetGroupID: "sg-target", diff --git a/pkg/providers/v1/aws_metrics.go b/pkg/providers/v1/aws_metrics.go index fc4a5343e8..3178c5b900 100644 --- a/pkg/providers/v1/aws_metrics.go +++ b/pkg/providers/v1/aws_metrics.go @@ -18,11 +18,12 @@ package aws import ( "context" + "errors" "strconv" "sync" + awshttp "github.com/aws/aws-sdk-go-v2/aws/transport/http" "github.com/aws/smithy-go/middleware" - smithyhttp "github.com/aws/smithy-go/transport/http" "k8s.io/component-base/metrics" "k8s.io/component-base/metrics/legacyregistry" ) @@ -52,11 +53,15 @@ var ( }, []string{"operation_name"}) - // awsAPIResponseStatusTotal counts AWS API responses by status code. + // awsAPIResponseStatusTotal counts AWS API responses with an error status code + // (>= 400). It is recorded by a Finalize middleware inserted before the SDK's + // "Retry" middleware, so it counts the terminal status of each logical call + // once (after retries are exhausted) rather than once per attempt — a response + // that is retried and then succeeds is not counted. awsAPIResponseStatusTotal = metrics.NewCounterVec( &metrics.CounterOpts{ Name: "cloudprovider_aws_api_response_status_total", - Help: "AWS API response status code counts", + Help: "AWS API error response status code counts (terminal, after retries are exhausted)", StabilityLevel: metrics.ALPHA, }, []string{"service", "operation", "status_code"}) @@ -85,24 +90,30 @@ func registerMetrics() { }) } -// awsAPIMetricsMiddleware returns a Deserialize middleware that records -// AWS API response status codes as metrics. -func awsAPIMetricsMiddleware() middleware.DeserializeMiddleware { - return middleware.DeserializeMiddlewareFunc( +// awsAPIMetricsMiddleware returns a Finalize middleware that records the HTTP +// status code of AWS API calls that fail terminally. It is inserted before the +// SDK's "Retry" middleware so it wraps the entire retry loop and runs once per +// logical call, recording only the terminal error status (not per attempt), so +// a response that is retried and then succeeds is not counted. +func awsAPIMetricsMiddleware() middleware.FinalizeMiddleware { + return middleware.FinalizeMiddlewareFunc( "k8s/aws-api-metrics", - func(ctx context.Context, in middleware.DeserializeInput, next middleware.DeserializeHandler) ( - out middleware.DeserializeOutput, metadata middleware.Metadata, err error, + func(ctx context.Context, in middleware.FinalizeInput, next middleware.FinalizeHandler) ( + out middleware.FinalizeOutput, metadata middleware.Metadata, err error, ) { - out, metadata, err = next.HandleDeserialize(ctx, in) - - service := middleware.GetServiceID(ctx) - operation := middleware.GetOperationName(ctx) + out, metadata, err = next.HandleFinalize(ctx, in) + if err == nil { + return out, metadata, err + } - if response, ok := out.RawResponse.(*smithyhttp.Response); ok && response.StatusCode >= 400 { + // The SDK surfaces every non-2xx terminal response as an error carrying + // an *awshttp.ResponseError; a nil error means a 2xx, which we do not count. + var respErr *awshttp.ResponseError + if errors.As(err, &respErr) && respErr.HTTPStatusCode() >= 400 { awsAPIResponseStatusTotal.With(metrics.Labels{ - "service": service, - "operation": operation, - "status_code": strconv.Itoa(response.StatusCode), + "service": middleware.GetServiceID(ctx), + "operation": middleware.GetOperationName(ctx), + "status_code": strconv.Itoa(respErr.HTTPStatusCode()), }).Inc() } @@ -110,3 +121,9 @@ func awsAPIMetricsMiddleware() middleware.DeserializeMiddleware { }, ) } + +// addAWSAPIMetricsMiddleware inserts the metrics middleware into the Finalize +// step before the SDK's "Retry" middleware, so it observes only terminal outcomes. +func addAWSAPIMetricsMiddleware(stack *middleware.Stack) error { + return stack.Finalize.Insert(awsAPIMetricsMiddleware(), "Retry", middleware.Before) +} diff --git a/pkg/providers/v1/aws_sdk.go b/pkg/providers/v1/aws_sdk.go index a9dba9f3b3..0b5d572cd5 100644 --- a/pkg/providers/v1/aws_sdk.go +++ b/pkg/providers/v1/aws_sdk.go @@ -86,12 +86,8 @@ func (p *awsSDKProvider) AddMiddleware(ctx context.Context, regionName string, c p.addAPILoggingMiddleware(cfg) - // Record AWS API response status codes and error codes as metrics. - cfg.APIOptions = append(cfg.APIOptions, - func(stack *smithymiddleware.Stack) error { - return stack.Deserialize.Add(awsAPIMetricsMiddleware(), smithymiddleware.After) - }, - ) + // Record the status code of AWS API calls that fail terminally as metrics. + cfg.APIOptions = append(cfg.APIOptions, addAWSAPIMetricsMiddleware) } // Adds logging middleware for AWS SDK Go V2 clients diff --git a/pkg/providers/v1/instances_v2.go b/pkg/providers/v1/instances_v2.go index 1d6f32f9b5..73c1183865 100644 --- a/pkg/providers/v1/instances_v2.go +++ b/pkg/providers/v1/instances_v2.go @@ -22,6 +22,7 @@ package aws import ( "context" + "errors" "fmt" "k8s.io/cloud-provider-aws/pkg/providers/v1/variant" "strconv" @@ -50,6 +51,12 @@ func (c *Cloud) getProviderID(ctx context.Context, node *v1.Node) (string, error func (c *Cloud) InstanceExists(ctx context.Context, node *v1.Node) (bool, error) { providerID, err := c.getProviderID(ctx, node) if err != nil { + // If the node has no providerID set, getProviderID falls back to looking up + // the instance by node name. A deleted instance yields InstanceNotFound, which + // means the node no longer exists in the cloud provider. + if errors.Is(err, cloudprovider.InstanceNotFound) { + return false, nil + } return false, err } @@ -61,6 +68,9 @@ func (c *Cloud) InstanceExists(ctx context.Context, node *v1.Node) (bool, error) func (c *Cloud) InstanceShutdown(ctx context.Context, node *v1.Node) (bool, error) { providerID, err := c.getProviderID(ctx, node) if err != nil { + if errors.Is(err, cloudprovider.InstanceNotFound) { + return false, nil + } return false, err } diff --git a/pkg/providers/v1/instances_v2_test.go b/pkg/providers/v1/instances_v2_test.go index 4b4f1f49cb..152437b125 100644 --- a/pkg/providers/v1/instances_v2_test.go +++ b/pkg/providers/v1/instances_v2_test.go @@ -30,6 +30,7 @@ import ( "github.com/stretchr/testify/assert" "github.com/stretchr/testify/mock" v1 "k8s.io/api/core/v1" + metav1 "k8s.io/apimachinery/pkg/apis/meta/v1" "k8s.io/cloud-provider-aws/pkg/services" ) @@ -120,6 +121,84 @@ func TestInstanceExists(t *testing.T) { } } +func TestInstanceExistsNoProviderIDInstanceGone(t *testing.T) { + // Only the self-instance exists in the cloud; the node under test has no + // providerID and no backing instance, mirroring an instance deleted before + // its providerID was ever set. Its name doesn't match any live instance's + // private DNS name, so the node-name lookup in getProviderID resolves to + // InstanceNotFound. + self := makeInstance("i-self", "192.168.0.1", "1.2.3.4", "ip-172-20-0-100.ec2.internal", "", nil, true) + c, _ := mockInstancesResp(&self, []*ec2types.Instance{&self}) + + node := &v1.Node{ + ObjectMeta: metav1.ObjectMeta{Name: "ip-172-20-9-9.ec2.internal"}, + Spec: v1.NodeSpec{}, + } + + exists, err := c.InstanceExists(context.TODO(), node) + assert.NoError(t, err) + assert.False(t, exists) + + shutdown, err := c.InstanceShutdown(context.TODO(), node) + assert.NoError(t, err) + assert.False(t, shutdown) +} + +func TestInstanceExistsNoProviderIDRBNInstanceGone(t *testing.T) { + // The mocked EC2 API returns InvalidInstanceID.NotFound for every describe, + // mirroring a purged instance looked up by ID. + c := getCloudWithMockedDescribeInstances(false, "", "i-0123456789abcdef0") + // InstanceID dereferences selfAWSInstance; set it to a different node so the + // lookup falls through to the by-ID path rather than the self short-circuit. + c.selfAWSInstance = &awsInstance{nodeName: "i-self"} + + node := &v1.Node{ + ObjectMeta: metav1.ObjectMeta{Name: "i-0123456789abcdef0"}, + Spec: v1.NodeSpec{}, + } + + exists, err := c.InstanceExists(context.TODO(), node) + assert.NoError(t, err) + assert.False(t, exists) + + shutdown, err := c.InstanceShutdown(context.TODO(), node) + assert.NoError(t, err) + assert.False(t, shutdown) +} + +func TestInstanceExistsNoProviderIDInvalidIDNotDeleted(t *testing.T) { + for _, tc := range []struct { + name string + apiErr string + }{ + {"malformed instance ID from DescribeInstances", "InvalidInstanceID.Malformed: The specified instance ID is malformed"}, + {"invalid resource ID", "InvalidID: The ID 'i-kwok-fake' is not valid"}, + } { + t.Run(tc.name, func(t *testing.T) { + mockedEC2API := newMockedEC2API() + mockedEC2API.On("DescribeInstances", mock.Anything).Return(&ec2.DescribeInstancesOutput{}, errors.New(tc.apiErr)) + c := &Cloud{ + ec2: &awsSdkEC2{ec2: mockedEC2API}, + describeInstanceBatcher: newdescribeInstanceBatcher(context.Background(), &awsSdkEC2{ec2: mockedEC2API}), + selfAWSInstance: &awsInstance{nodeName: "i-self"}, + } + + node := &v1.Node{ + ObjectMeta: metav1.ObjectMeta{Name: "i-kwok-fake"}, + Spec: v1.NodeSpec{}, + } + + exists, err := c.InstanceExists(context.TODO(), node) + assert.Error(t, err) + assert.False(t, exists) + + shutdown, err := c.InstanceShutdown(context.TODO(), node) + assert.Error(t, err) + assert.False(t, shutdown) + }) + } +} + func TestInstanceShutdown(t *testing.T) { for _, tc := range []struct { name string diff --git a/tests/e2e/go.mod b/tests/e2e/go.mod index e0c72e98c7..2ddeedcc78 100644 --- a/tests/e2e/go.mod +++ b/tests/e2e/go.mod @@ -7,19 +7,21 @@ require ( github.com/aws/aws-sdk-go-v2/config v1.29.14 github.com/aws/aws-sdk-go-v2/service/ec2 v1.299.0 github.com/aws/aws-sdk-go-v2/service/elasticloadbalancingv2 v1.45.2 - github.com/onsi/ginkgo/v2 v2.28.1 - github.com/onsi/gomega v1.39.1 - k8s.io/api v0.36.0 - k8s.io/apimachinery v0.36.0 - k8s.io/client-go v0.36.0 - k8s.io/kubernetes v1.36.0 - k8s.io/pod-security-admission v0.36.0 + github.com/onsi/ginkgo/v2 v2.32.0 + github.com/onsi/gomega v1.40.0 + k8s.io/api v0.37.0 + k8s.io/apimachinery v0.37.0 + k8s.io/client-go v0.37.0 + k8s.io/kubernetes v1.37.0 + k8s.io/pod-security-admission v0.37.0 ) require ( cel.dev/expr v0.25.1 // indirect + github.com/Azure/go-ansiterm v0.0.0-20250102033503-faa5f7b0171c // indirect + github.com/MakeNowJust/heredoc v1.0.0 // indirect github.com/Masterminds/semver/v3 v3.4.0 // indirect - github.com/antlr4-go/antlr/v4 v4.13.0 // indirect + github.com/antlr4-go/antlr/v4 v4.13.1 // indirect github.com/aws/aws-sdk-go-v2/credentials v1.17.67 // indirect github.com/aws/aws-sdk-go-v2/feature/ec2/imds v1.16.30 // indirect github.com/aws/aws-sdk-go-v2/internal/configsources v1.4.22 // indirect @@ -35,121 +37,143 @@ require ( github.com/blang/semver/v4 v4.0.0 // indirect github.com/cenkalti/backoff/v5 v5.0.3 // indirect github.com/cespare/xxhash/v2 v2.3.0 // indirect + github.com/chai2010/gettext-go v1.0.2 // indirect github.com/davecgh/go-spew v1.1.2-0.20180830191138-d8f796af33cc // indirect github.com/distribution/reference v0.6.0 // indirect github.com/emicklei/go-restful/v3 v3.13.0 // indirect + github.com/exponent-io/jsonpath v0.0.0-20210407135951-1de76d718b3f // indirect + github.com/fatih/camelcase v1.0.0 // indirect github.com/felixge/httpsnoop v1.0.4 // indirect github.com/fsnotify/fsnotify v1.9.0 // indirect - github.com/fxamacker/cbor/v2 v2.9.0 // indirect + github.com/fxamacker/cbor/v2 v2.9.1 // indirect + github.com/go-errors/errors v1.4.2 // indirect github.com/go-logr/logr v1.4.3 // indirect github.com/go-logr/stdr v1.2.2 // indirect - github.com/go-openapi/jsonpointer v0.21.0 // indirect - github.com/go-openapi/jsonreference v0.20.2 // indirect - github.com/go-openapi/swag v0.23.0 // indirect + github.com/go-openapi/jsonpointer v1.0.0 // indirect + github.com/go-openapi/jsonreference v1.0.0 // indirect + github.com/go-openapi/swag v0.27.1 // indirect + github.com/go-openapi/swag/cmdutils v0.27.1 // indirect + github.com/go-openapi/swag/conv v0.27.1 // indirect + github.com/go-openapi/swag/fileutils v0.27.1 // indirect + github.com/go-openapi/swag/jsonutils v0.27.1 // indirect + github.com/go-openapi/swag/loading v0.27.1 // indirect + github.com/go-openapi/swag/mangling v0.27.1 // indirect + github.com/go-openapi/swag/netutils v0.27.1 // indirect + github.com/go-openapi/swag/pools v0.27.1 // indirect + github.com/go-openapi/swag/stringutils v0.27.1 // indirect + github.com/go-openapi/swag/typeutils v0.27.1 // indirect + github.com/go-openapi/swag/yamlutils v0.27.1 // indirect github.com/go-task/slim-sprig/v3 v3.0.0 // indirect - github.com/google/cel-go v0.26.0 // indirect + github.com/google/btree v1.1.3 // indirect + github.com/google/cel-go v0.30.0 // indirect github.com/google/gnostic-models v0.7.0 // indirect github.com/google/go-cmp v0.7.0 // indirect - github.com/google/pprof v0.0.0-20260115054156-294ebfa9ad83 // indirect + github.com/google/pprof v0.0.0-20260402051712-545e8a4df936 // indirect github.com/google/uuid v1.6.0 // indirect github.com/gorilla/websocket v1.5.4-0.20250319132907-e064f32e3674 // indirect - github.com/grpc-ecosystem/grpc-gateway/v2 v2.27.7 // indirect + github.com/grpc-ecosystem/grpc-gateway/v2 v2.29.0 // indirect github.com/inconshreveable/mousetrap v1.1.0 // indirect - github.com/josharian/intern v1.0.0 // indirect github.com/json-iterator/go v1.1.12 // indirect - github.com/mailru/easyjson v0.7.7 // indirect + github.com/liggitt/tabwriter v0.0.0-20181228230101-89fcab3d43de // indirect + github.com/mitchellh/go-wordwrap v1.0.1 // indirect github.com/moby/spdystream v0.5.1 // indirect + github.com/moby/term v0.5.2 // indirect github.com/modern-go/concurrent v0.0.0-20180306012644-bacd9c7ef1dd // indirect github.com/modern-go/reflect2 v1.0.3-0.20250322232337-35a7c28c31ee // indirect + github.com/monochromegane/go-gitignore v0.0.0-20200626010858-205db1a8cc00 // indirect github.com/munnerz/goautoneg v0.0.0-20191010083416-a7dc8b61c822 // indirect github.com/opencontainers/go-digest v1.0.0 // indirect + github.com/peterbourgon/diskv v2.0.1+incompatible // indirect github.com/pmezard/go-difflib v1.0.1-0.20181226105442-5d4384ee4fb2 // indirect - github.com/prometheus/client_golang v1.23.2 // indirect + github.com/prometheus/client_golang v1.24.0 // indirect github.com/prometheus/client_model v0.6.2 // indirect - github.com/prometheus/common v0.67.5 // indirect - github.com/prometheus/procfs v0.19.2 // indirect + github.com/prometheus/common v0.70.0 // indirect + github.com/prometheus/procfs v0.21.1 // indirect github.com/robfig/cron/v3 v3.0.1 // indirect + github.com/russross/blackfriday/v2 v2.1.0 // indirect github.com/spf13/cobra v1.10.2 // indirect - github.com/spf13/pflag v1.0.9 // indirect - github.com/stoewer/go-strcase v1.3.0 // indirect + github.com/spf13/pflag v1.0.10 // indirect github.com/x448/float16 v0.8.4 // indirect + github.com/xlab/treeprint v1.2.0 // indirect go.opentelemetry.io/auto/sdk v1.2.1 // indirect - go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.65.0 // indirect - go.opentelemetry.io/otel v1.41.0 // indirect - go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.40.0 // indirect - go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.40.0 // indirect - go.opentelemetry.io/otel/metric v1.41.0 // indirect - go.opentelemetry.io/otel/sdk v1.40.0 // indirect - go.opentelemetry.io/otel/trace v1.41.0 // indirect - go.opentelemetry.io/proto/otlp v1.9.0 // indirect - go.yaml.in/yaml/v2 v2.4.3 // indirect + go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.69.0 // indirect + go.opentelemetry.io/otel v1.44.0 // indirect + go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.44.0 // indirect + go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.44.0 // indirect + go.opentelemetry.io/otel/metric v1.44.0 // indirect + go.opentelemetry.io/otel/sdk v1.44.0 // indirect + go.opentelemetry.io/otel/trace v1.44.0 // indirect + go.opentelemetry.io/proto/otlp v1.10.0 // indirect + go.yaml.in/yaml/v2 v2.4.4 // indirect go.yaml.in/yaml/v3 v3.0.4 // indirect - golang.org/x/crypto v0.47.0 // indirect - golang.org/x/exp v0.0.0-20251219203646-944ab1f22d93 // indirect - golang.org/x/mod v0.32.0 // indirect - golang.org/x/net v0.49.0 // indirect - golang.org/x/oauth2 v0.34.0 // indirect - golang.org/x/sync v0.19.0 // indirect - golang.org/x/sys v0.40.0 // indirect - golang.org/x/term v0.39.0 // indirect - golang.org/x/text v0.33.0 // indirect - golang.org/x/time v0.14.0 // indirect - golang.org/x/tools v0.41.0 // indirect - google.golang.org/genproto/googleapis/api v0.0.0-20260128011058-8636f8732409 // indirect - google.golang.org/genproto/googleapis/rpc v0.0.0-20260128011058-8636f8732409 // indirect - google.golang.org/grpc v1.79.3 // indirect + golang.org/x/crypto v0.54.0 // indirect + golang.org/x/exp v0.0.0-20260410095643-746e56fc9e2f // indirect + golang.org/x/mod v0.37.0 // indirect + golang.org/x/net v0.57.0 // indirect + golang.org/x/oauth2 v0.36.0 // indirect + golang.org/x/sync v0.22.0 // indirect + golang.org/x/sys v0.47.0 // indirect + golang.org/x/term v0.45.0 // indirect + golang.org/x/text v0.40.0 // indirect + golang.org/x/time v0.15.0 // indirect + golang.org/x/tools v0.47.0 // indirect + google.golang.org/genproto/googleapis/api v0.0.0-20260526163538-3dc84a4a5aaa // indirect + google.golang.org/genproto/googleapis/rpc v0.0.0-20260526163538-3dc84a4a5aaa // indirect + google.golang.org/grpc v1.82.1 // indirect google.golang.org/protobuf v1.36.12-0.20260120151049-f2248ac996af // indirect gopkg.in/evanphx/json-patch.v4 v4.13.0 // indirect gopkg.in/inf.v0 v0.9.1 // indirect - gopkg.in/yaml.v3 v3.0.1 // indirect k8s.io/apiextensions-apiserver v0.0.0 // indirect - k8s.io/apiserver v0.36.0 // indirect + k8s.io/apiserver v0.37.0 // indirect + k8s.io/cli-runtime v0.37.0 // indirect k8s.io/cloud-provider v0.33.0 // indirect - k8s.io/component-base v0.36.0 // indirect - k8s.io/component-helpers v0.36.0 // indirect - k8s.io/controller-manager v0.36.0 // indirect + k8s.io/component-base v0.37.0 // indirect + k8s.io/component-helpers v0.37.0 // indirect + k8s.io/controller-manager v0.37.0 // indirect k8s.io/klog/v2 v2.140.0 // indirect - k8s.io/kube-openapi v0.0.0-20260317180543-43fb72c5454a // indirect + k8s.io/kube-openapi v0.0.0-20260721132016-d427ff9ee9ad // indirect k8s.io/kubectl v0.33.0 // indirect k8s.io/kubelet v0.36.0 // indirect - k8s.io/streaming v0.36.0 // indirect - k8s.io/utils v0.0.0-20260210185600-b8788abfbbc2 // indirect - sigs.k8s.io/apiserver-network-proxy/konnectivity-client v0.34.0 // indirect + k8s.io/streaming v0.37.0 // indirect + k8s.io/utils v0.0.0-20260626114624-be93311217bd // indirect + sigs.k8s.io/apiserver-network-proxy/konnectivity-client v0.36.0 // indirect sigs.k8s.io/json v0.0.0-20250730193827-2d320260d730 // indirect + sigs.k8s.io/kustomize/api v0.21.1 // indirect + sigs.k8s.io/kustomize/kyaml v0.21.1 // indirect sigs.k8s.io/randfill v1.0.0 // indirect - sigs.k8s.io/structured-merge-diff/v6 v6.3.2 // indirect + sigs.k8s.io/structured-merge-diff/v6 v6.4.2 // indirect sigs.k8s.io/yaml v1.6.0 // indirect ) replace ( - k8s.io/api => k8s.io/api v0.36.0 - k8s.io/apiextensions-apiserver => k8s.io/apiextensions-apiserver v0.36.0 - k8s.io/apimachinery => k8s.io/apimachinery v0.36.0 - k8s.io/apiserver => k8s.io/apiserver v0.36.0 - k8s.io/cli-runtime => k8s.io/cli-runtime v0.36.0 - k8s.io/client-go => k8s.io/client-go v0.36.0 - k8s.io/cloud-provider => k8s.io/cloud-provider v0.36.0 - k8s.io/cluster-bootstrap => k8s.io/cluster-bootstrap v0.36.0 - k8s.io/code-generator => k8s.io/code-generator v0.36.0 - k8s.io/component-base => k8s.io/component-base v0.36.0 - k8s.io/component-helpers => k8s.io/component-helpers v0.36.0 - k8s.io/controller-manager => k8s.io/controller-manager v0.36.0 - k8s.io/cri-api => k8s.io/cri-api v0.36.0 - k8s.io/cri-client => k8s.io/cri-client v0.36.0 - k8s.io/csi-translation-lib => k8s.io/csi-translation-lib v0.36.0 - k8s.io/dynamic-resource-allocation => k8s.io/dynamic-resource-allocation v0.36.0 - k8s.io/kube-aggregator => k8s.io/kube-aggregator v0.36.0 - k8s.io/kube-controller-manager => k8s.io/kube-controller-manager v0.36.0 - k8s.io/kube-proxy => k8s.io/kube-proxy v0.36.0 - k8s.io/kube-scheduler => k8s.io/kube-scheduler v0.36.0 - k8s.io/kubectl => k8s.io/kubectl v0.36.0 - k8s.io/kubelet => k8s.io/kubelet v0.36.0 - k8s.io/legacy-cloud-providers => k8s.io/legacy-cloud-providers v0.36.0 - k8s.io/metrics => k8s.io/metrics v0.36.0 - k8s.io/mount-utils => k8s.io/mount-utils v0.36.0 - k8s.io/node-api => k8s.io/node-api v0.36.0 - k8s.io/pod-security-admission => k8s.io/pod-security-admission v0.36.0 - k8s.io/sample-apiserver => k8s.io/sample-apiserver v0.36.0 - k8s.io/sample-cli-plugin => k8s.io/sample-cli-plugin v0.36.0 - k8s.io/sample-controller => k8s.io/sample-controller v0.36.0 + k8s.io/api => k8s.io/api v0.37.0 + k8s.io/apiextensions-apiserver => k8s.io/apiextensions-apiserver v0.37.0 + k8s.io/apimachinery => k8s.io/apimachinery v0.37.0 + k8s.io/apiserver => k8s.io/apiserver v0.37.0 + k8s.io/cli-runtime => k8s.io/cli-runtime v0.37.0 + k8s.io/client-go => k8s.io/client-go v0.37.0 + k8s.io/cloud-provider => k8s.io/cloud-provider v0.37.0 + k8s.io/cluster-bootstrap => k8s.io/cluster-bootstrap v0.37.0 + k8s.io/code-generator => k8s.io/code-generator v0.37.0 + k8s.io/component-base => k8s.io/component-base v0.37.0 + k8s.io/component-helpers => k8s.io/component-helpers v0.37.0 + k8s.io/controller-manager => k8s.io/controller-manager v0.37.0 + k8s.io/cri-api => k8s.io/cri-api v0.37.0 + k8s.io/cri-client => k8s.io/cri-client v0.37.0 + k8s.io/csi-translation-lib => k8s.io/csi-translation-lib v0.37.0 + k8s.io/dynamic-resource-allocation => k8s.io/dynamic-resource-allocation v0.37.0 + k8s.io/kube-aggregator => k8s.io/kube-aggregator v0.37.0 + k8s.io/kube-controller-manager => k8s.io/kube-controller-manager v0.37.0 + k8s.io/kube-proxy => k8s.io/kube-proxy v0.37.0 + k8s.io/kube-scheduler => k8s.io/kube-scheduler v0.37.0 + k8s.io/kubectl => k8s.io/kubectl v0.37.0 + k8s.io/kubelet => k8s.io/kubelet v0.37.0 + k8s.io/legacy-cloud-providers => k8s.io/legacy-cloud-providers v0.37.0 + k8s.io/metrics => k8s.io/metrics v0.37.0 + k8s.io/mount-utils => k8s.io/mount-utils v0.37.0 + k8s.io/node-api => k8s.io/node-api v0.37.0 + k8s.io/pod-security-admission => k8s.io/pod-security-admission v0.37.0 + k8s.io/sample-apiserver => k8s.io/sample-apiserver v0.37.0 + k8s.io/sample-cli-plugin => k8s.io/sample-cli-plugin v0.37.0 + k8s.io/sample-controller => k8s.io/sample-controller v0.37.0 ) diff --git a/tests/e2e/go.sum b/tests/e2e/go.sum index 3dae2697a7..660cceb4c1 100644 --- a/tests/e2e/go.sum +++ b/tests/e2e/go.sum @@ -1,9 +1,13 @@ cel.dev/expr v0.25.1 h1:1KrZg61W6TWSxuNZ37Xy49ps13NUovb66QLprthtwi4= cel.dev/expr v0.25.1/go.mod h1:hrXvqGP6G6gyx8UAHSHJ5RGk//1Oj5nXQ2NI02Nrsg4= +github.com/Azure/go-ansiterm v0.0.0-20250102033503-faa5f7b0171c h1:udKWzYgxTojEKWjV8V+WSxDXJ4NFATAsZjh8iIbsQIg= +github.com/Azure/go-ansiterm v0.0.0-20250102033503-faa5f7b0171c/go.mod h1:xomTg63KZ2rFqZQzSB4Vz2SUXa1BpHTVz9L5PTmPC4E= +github.com/MakeNowJust/heredoc v1.0.0 h1:cXCdzVdstXyiTqTvfqk9SDHpKNjxuom+DOlyEeQ4pzQ= +github.com/MakeNowJust/heredoc v1.0.0/go.mod h1:mG5amYoWBHf8vpLOuehzbGGw0EHxpZZ6lCpQ4fNJ8LE= github.com/Masterminds/semver/v3 v3.4.0 h1:Zog+i5UMtVoCU8oKka5P7i9q9HgrJeGzI9SA1Xbatp0= github.com/Masterminds/semver/v3 v3.4.0/go.mod h1:4V+yj/TJE1HU9XfppCwVMZq3I84lprf4nC11bSS5beM= -github.com/antlr4-go/antlr/v4 v4.13.0 h1:lxCg3LAv+EUK6t1i0y1V6/SLeUi0eKEKdhQAlS8TVTI= -github.com/antlr4-go/antlr/v4 v4.13.0/go.mod h1:pfChB/xh/Unjila75QW7+VU4TSnWnnk9UTnmpPaOR2g= +github.com/antlr4-go/antlr/v4 v4.13.1 h1:SqQKkuVZ+zWkMMNkjy5FZe5mr5WURWnlpmOuzYWrPrQ= +github.com/antlr4-go/antlr/v4 v4.13.1/go.mod h1:GKmUxMtwp6ZgGwZSva4eWPC5mS6vUAmOABFgjdkM7Nw= github.com/armon/go-socks5 v0.0.0-20160902184237-e75332964ef5 h1:0CwZNZbxp69SHPdPJAN/hZIm0C4OItdklCFmMRWYpio= github.com/armon/go-socks5 v0.0.0-20160902184237-e75332964ef5/go.mod h1:wHh0iHkYZB8zMSxRWpUBQtwG5a7fFgvEO+odwuTv2gs= github.com/aws/aws-sdk-go-v2 v1.41.6 h1:1AX0AthnBQzMx1vbmir3Y4WsnJgiydmnJjiLu+LvXOg= @@ -44,8 +48,11 @@ github.com/cenkalti/backoff/v5 v5.0.3 h1:ZN+IMa753KfX5hd8vVaMixjnqRZ3y8CuJKRKj1x github.com/cenkalti/backoff/v5 v5.0.3/go.mod h1:rkhZdG3JZukswDf7f0cwqPNk4K0sa+F97BxZthm/crw= github.com/cespare/xxhash/v2 v2.3.0 h1:UL815xU9SqsFlibzuggzjXhog7bL6oX9BbNZnL2UFvs= github.com/cespare/xxhash/v2 v2.3.0/go.mod h1:VGX0DQ3Q6kWi7AoAeZDth3/j3BFtOZR5XLFGgcrjCOs= +github.com/chai2010/gettext-go v1.0.2 h1:1Lwwip6Q2QGsAdl/ZKPCwTe9fe0CjlUbqj5bFNSjIRk= +github.com/chai2010/gettext-go v1.0.2/go.mod h1:y+wnP2cHYaVj19NZhYKAwEMH2CI1gNHeQQ+5AjwawxA= github.com/cpuguy83/go-md2man/v2 v2.0.6/go.mod h1:oOW0eioCTA6cOiMLiUPZOpcVxMig6NIQQ7OS05n1F4g= -github.com/creack/pty v1.1.9/go.mod h1:oKZEueFk5CKHvIhNR5MUki03XCEU+Q6VDXinZuGJ33E= +github.com/creack/pty v1.1.18 h1:n56/Zwd5o6whRC5PMGretI4IdRLlmBXYNjScPaBgsbY= +github.com/creack/pty v1.1.18/go.mod h1:MOBLtS5ELjhRRrroQr9kyvTxUAFNvYEK993ew/Vr4O4= github.com/davecgh/go-spew v1.1.0/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38= github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38= github.com/davecgh/go-spew v1.1.2-0.20180830191138-d8f796af33cc h1:U9qPSI2PIWSS1VwoXQT9A3Wy9MM3WgvqSxFWenqJduM= @@ -54,18 +61,24 @@ github.com/distribution/reference v0.6.0 h1:0IXCQ5g4/QMHHkarYzh5l+u8T3t73zM5Qvfr github.com/distribution/reference v0.6.0/go.mod h1:BbU0aIcezP1/5jX/8MP0YiH4SdvB5Y4f/wlDRiLyi3E= github.com/emicklei/go-restful/v3 v3.13.0 h1:C4Bl2xDndpU6nJ4bc1jXd+uTmYPVUwkD6bFY/oTyCes= github.com/emicklei/go-restful/v3 v3.13.0/go.mod h1:6n3XBCmQQb25CM2LCACGz8ukIrRry+4bhvbpWn3mrbc= +github.com/exponent-io/jsonpath v0.0.0-20210407135951-1de76d718b3f h1:Wl78ApPPB2Wvf/TIe2xdyJxTlb6obmF18d8QdkxNDu4= +github.com/exponent-io/jsonpath v0.0.0-20210407135951-1de76d718b3f/go.mod h1:OSYXu++VVOHnXeitef/D8n/6y4QV8uLHSFXX4NeXMGc= +github.com/fatih/camelcase v1.0.0 h1:hxNvNX/xYBp0ovncs8WyWZrOrpBNub/JfaMvbURyft8= +github.com/fatih/camelcase v1.0.0/go.mod h1:yN2Sb0lFhZJUdVvtELVWefmrXpuZESvPmqwoZc+/fpc= github.com/felixge/httpsnoop v1.0.4 h1:NFTV2Zj1bL4mc9sqWACXbQFVBBg2W3GPvqp8/ESS2Wg= github.com/felixge/httpsnoop v1.0.4/go.mod h1:m8KPJKqk1gH5J9DgRY2ASl2lWCfGKXixSwevea8zH2U= github.com/fsnotify/fsnotify v1.9.0 h1:2Ml+OJNzbYCTzsxtv8vKSFD9PbJjmhYF14k/jKC7S9k= github.com/fsnotify/fsnotify v1.9.0/go.mod h1:8jBTzvmWwFyi3Pb8djgCCO5IBqzKJ/Jwo8TRcHyHii0= -github.com/fxamacker/cbor/v2 v2.9.0 h1:NpKPmjDBgUfBms6tr6JZkTHtfFGcMKsw3eGcmD/sapM= -github.com/fxamacker/cbor/v2 v2.9.0/go.mod h1:vM4b+DJCtHn+zz7h3FFp/hDAI9WNWCsZj23V5ytsSxQ= +github.com/fxamacker/cbor/v2 v2.9.1 h1:2rWm8B193Ll4VdjsJY28jxs70IdDsHRWgQYAI80+rMQ= +github.com/fxamacker/cbor/v2 v2.9.1/go.mod h1:vM4b+DJCtHn+zz7h3FFp/hDAI9WNWCsZj23V5ytsSxQ= github.com/gkampitakis/ciinfo v0.3.2 h1:JcuOPk8ZU7nZQjdUhctuhQofk7BGHuIy0c9Ez8BNhXs= github.com/gkampitakis/ciinfo v0.3.2/go.mod h1:1NIwaOcFChN4fa/B0hEBdAb6npDlFL8Bwx4dfRLRqAo= github.com/gkampitakis/go-diff v1.3.2 h1:Qyn0J9XJSDTgnsgHRdz9Zp24RaJeKMUHg2+PDZZdC4M= github.com/gkampitakis/go-diff v1.3.2/go.mod h1:LLgOrpqleQe26cte8s36HTWcTmMEur6OPYerdAAS9tk= github.com/gkampitakis/go-snaps v0.5.15 h1:amyJrvM1D33cPHwVrjo9jQxX8g/7E2wYdZ+01KS3zGE= github.com/gkampitakis/go-snaps v0.5.15/go.mod h1:HNpx/9GoKisdhw9AFOBT1N7DBs9DiHo/hGheFGBZ+mc= +github.com/go-errors/errors v1.4.2 h1:J6MZopCL4uSllY1OfXM374weqZFFItUbrImctkmUxIA= +github.com/go-errors/errors v1.4.2/go.mod h1:sIVyrIiJhuEF+Pj9Ebtd6P/rEYROXFi3BopGUQ5a5Og= github.com/go-logr/logr v1.2.2/go.mod 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h1:kwVWMx5yS1CrnFWA/2QHyRVJ8jM6dBA80uLmm0wJkk8= -sigs.k8s.io/structured-merge-diff/v6 v6.3.2/go.mod h1:M3W8sfWvn2HhQDIbGWj3S099YozAsymCo/wrT5ohRUE= +sigs.k8s.io/structured-merge-diff/v6 v6.4.2 h1:qdOxHwrl2Kaag1aQEarlYcOA9vSyGCp3CIki3aW8c4Q= +sigs.k8s.io/structured-merge-diff/v6 v6.4.2/go.mod h1:M3W8sfWvn2HhQDIbGWj3S099YozAsymCo/wrT5ohRUE= sigs.k8s.io/yaml v1.6.0 h1:G8fkbMSAFqgEFgh4b1wmtzDnioxFCUgTZhlbj5P9QYs= sigs.k8s.io/yaml v1.6.0/go.mod h1:796bPqUfzR/0jLAl6XjHl3Ck7MiyVv8dbTdyT3/pMf4= diff --git a/tests/e2e/loadbalancer.go b/tests/e2e/loadbalancer.go index ffd4ee1696..e796526ce1 100644 --- a/tests/e2e/loadbalancer.go +++ b/tests/e2e/loadbalancer.go @@ -425,7 +425,7 @@ var managedSgModeNLBTests = []loadBalancerTestCases{ framework.Logf("Waiting for ENIs to be detached from security group...") gomega.Eventually(ctx, func() error { return deleteSecurityGroup(ctx, cfg.byoSecurityGroupID) - }, 2*time.Minute, 5*time.Second).Should(gomega.Succeed(), "Failed to delete BYO security group") + }, 6*time.Minute, 10*time.Second).Should(gomega.Succeed(), "Failed to delete BYO security group") framework.Logf("✓ Deleted BYO security group: %s", cfg.byoSecurityGroupID) } }) @@ -485,7 +485,7 @@ var managedSgModeNLBTests = []loadBalancerTestCases{ framework.Logf("Waiting for ENIs to be detached from security group...") gomega.Eventually(ctx, func() error { return deleteSecurityGroup(ctx, cfg.byoSecurityGroupID) - }, 2*time.Minute, 5*time.Second).Should(gomega.Succeed(), "Failed to delete BYO security group after waiting for ENI detachment") + }, 6*time.Minute, 10*time.Second).Should(gomega.Succeed(), "Failed to delete BYO security group after waiting for ENI detachment") framework.Logf("✓ Deleted BYO security group: %s", cfg.byoSecurityGroupID) } }) @@ -567,7 +567,7 @@ var managedSgModeNLBTests = []loadBalancerTestCases{ framework.Logf("Waiting for ENIs to be detached from security group...") gomega.Eventually(ctx, func() error { return deleteSecurityGroup(ctx, cfg.byoSecurityGroupID) - }, 2*time.Minute, 5*time.Second).Should(gomega.Succeed(), "Failed to delete BYO security group after waiting for ENI detachment") + }, 6*time.Minute, 10*time.Second).Should(gomega.Succeed(), "Failed to delete BYO security group after waiting for ENI detachment") framework.Logf("✓ Deleted BYO security group: %s", cfg.byoSecurityGroupID) } }) diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/LICENSE b/tests/e2e/vendor/github.com/Azure/go-ansiterm/LICENSE new file mode 100644 index 0000000000..e3d9a64d1d --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/LICENSE @@ -0,0 +1,21 @@ +The MIT License (MIT) + +Copyright (c) 2015 Microsoft Corporation + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in +all copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN +THE SOFTWARE. diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/README.md b/tests/e2e/vendor/github.com/Azure/go-ansiterm/README.md new file mode 100644 index 0000000000..261c041e7a --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/README.md @@ -0,0 +1,12 @@ +# go-ansiterm + +This is a cross platform Ansi Terminal Emulation library. It reads a stream of Ansi characters and produces the appropriate function calls. The results of the function calls are platform dependent. + +For example the parser might receive "ESC, [, A" as a stream of three characters. This is the code for Cursor Up (http://www.vt100.net/docs/vt510-rm/CUU). The parser then calls the cursor up function (CUU()) on an event handler. The event handler determines what platform specific work must be done to cause the cursor to move up one position. + +The parser (parser.go) is a partial implementation of this state machine (http://vt100.net/emu/vt500_parser.png). There are also two event handler implementations, one for tests (test_event_handler.go) to validate that the expected events are being produced and called, the other is a Windows implementation (winterm/win_event_handler.go). + +See parser_test.go for examples exercising the state machine and generating appropriate function calls. + +----- +This project has adopted the [Microsoft Open Source Code of Conduct](https://opensource.microsoft.com/codeofconduct/). For more information see the [Code of Conduct FAQ](https://opensource.microsoft.com/codeofconduct/faq/) or contact [opencode@microsoft.com](mailto:opencode@microsoft.com) with any additional questions or comments. diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/SECURITY.md b/tests/e2e/vendor/github.com/Azure/go-ansiterm/SECURITY.md new file mode 100644 index 0000000000..e138ec5d6a --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/SECURITY.md @@ -0,0 +1,41 @@ + + +## Security + +Microsoft takes the security of our software products and services seriously, which includes all source code repositories managed through our GitHub organizations, which include [Microsoft](https://github.com/microsoft), [Azure](https://github.com/Azure), [DotNet](https://github.com/dotnet), [AspNet](https://github.com/aspnet), [Xamarin](https://github.com/xamarin), and [our GitHub organizations](https://opensource.microsoft.com/). + +If you believe you have found a security vulnerability in any Microsoft-owned repository that meets [Microsoft's definition of a security vulnerability](https://aka.ms/opensource/security/definition), please report it to us as described below. + +## Reporting Security Issues + +**Please do not report security vulnerabilities through public GitHub issues.** + +Instead, please report them to the Microsoft Security Response Center (MSRC) at [https://msrc.microsoft.com/create-report](https://aka.ms/opensource/security/create-report). + +If you prefer to submit without logging in, send email to [secure@microsoft.com](mailto:secure@microsoft.com). If possible, encrypt your message with our PGP key; please download it from the [Microsoft Security Response Center PGP Key page](https://aka.ms/opensource/security/pgpkey). + +You should receive a response within 24 hours. If for some reason you do not, please follow up via email to ensure we received your original message. Additional information can be found at [microsoft.com/msrc](https://aka.ms/opensource/security/msrc). + +Please include the requested information listed below (as much as you can provide) to help us better understand the nature and scope of the possible issue: + + * Type of issue (e.g. buffer overflow, SQL injection, cross-site scripting, etc.) + * Full paths of source file(s) related to the manifestation of the issue + * The location of the affected source code (tag/branch/commit or direct URL) + * Any special configuration required to reproduce the issue + * Step-by-step instructions to reproduce the issue + * Proof-of-concept or exploit code (if possible) + * Impact of the issue, including how an attacker might exploit the issue + +This information will help us triage your report more quickly. + +If you are reporting for a bug bounty, more complete reports can contribute to a higher bounty award. Please visit our [Microsoft Bug Bounty Program](https://aka.ms/opensource/security/bounty) page for more details about our active programs. + +## Preferred Languages + +We prefer all communications to be in English. + +## Policy + +Microsoft follows the principle of [Coordinated Vulnerability Disclosure](https://aka.ms/opensource/security/cvd). + + diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/constants.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/constants.go new file mode 100644 index 0000000000..96504a33bc --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/constants.go @@ -0,0 +1,188 @@ +package ansiterm + +const LogEnv = "DEBUG_TERMINAL" + +// ANSI constants +// References: +// -- http://www.ecma-international.org/publications/standards/Ecma-048.htm +// -- http://man7.org/linux/man-pages/man4/console_codes.4.html +// -- http://manpages.ubuntu.com/manpages/intrepid/man4/console_codes.4.html +// -- http://en.wikipedia.org/wiki/ANSI_escape_code +// -- http://vt100.net/emu/dec_ansi_parser +// -- http://vt100.net/emu/vt500_parser.svg +// -- http://invisible-island.net/xterm/ctlseqs/ctlseqs.html +// -- http://www.inwap.com/pdp10/ansicode.txt +const ( + // ECMA-48 Set Graphics Rendition + // Note: + // -- Constants leading with an underscore (e.g., _ANSI_xxx) are unsupported or reserved + // -- Fonts could possibly be supported via SetCurrentConsoleFontEx + // -- Windows does not expose the per-window cursor (i.e., caret) blink times + ANSI_SGR_RESET = 0 + ANSI_SGR_BOLD = 1 + ANSI_SGR_DIM = 2 + _ANSI_SGR_ITALIC = 3 + ANSI_SGR_UNDERLINE = 4 + _ANSI_SGR_BLINKSLOW = 5 + _ANSI_SGR_BLINKFAST = 6 + ANSI_SGR_REVERSE = 7 + _ANSI_SGR_INVISIBLE = 8 + _ANSI_SGR_LINETHROUGH = 9 + _ANSI_SGR_FONT_00 = 10 + _ANSI_SGR_FONT_01 = 11 + _ANSI_SGR_FONT_02 = 12 + _ANSI_SGR_FONT_03 = 13 + _ANSI_SGR_FONT_04 = 14 + _ANSI_SGR_FONT_05 = 15 + _ANSI_SGR_FONT_06 = 16 + _ANSI_SGR_FONT_07 = 17 + _ANSI_SGR_FONT_08 = 18 + _ANSI_SGR_FONT_09 = 19 + _ANSI_SGR_FONT_10 = 20 + _ANSI_SGR_DOUBLEUNDERLINE = 21 + ANSI_SGR_BOLD_DIM_OFF = 22 + _ANSI_SGR_ITALIC_OFF = 23 + ANSI_SGR_UNDERLINE_OFF = 24 + _ANSI_SGR_BLINK_OFF = 25 + _ANSI_SGR_RESERVED_00 = 26 + ANSI_SGR_REVERSE_OFF = 27 + _ANSI_SGR_INVISIBLE_OFF = 28 + _ANSI_SGR_LINETHROUGH_OFF = 29 + ANSI_SGR_FOREGROUND_BLACK = 30 + ANSI_SGR_FOREGROUND_RED = 31 + ANSI_SGR_FOREGROUND_GREEN = 32 + ANSI_SGR_FOREGROUND_YELLOW = 33 + ANSI_SGR_FOREGROUND_BLUE = 34 + ANSI_SGR_FOREGROUND_MAGENTA = 35 + ANSI_SGR_FOREGROUND_CYAN = 36 + ANSI_SGR_FOREGROUND_WHITE = 37 + _ANSI_SGR_RESERVED_01 = 38 + ANSI_SGR_FOREGROUND_DEFAULT = 39 + ANSI_SGR_BACKGROUND_BLACK = 40 + ANSI_SGR_BACKGROUND_RED = 41 + ANSI_SGR_BACKGROUND_GREEN = 42 + ANSI_SGR_BACKGROUND_YELLOW = 43 + ANSI_SGR_BACKGROUND_BLUE = 44 + ANSI_SGR_BACKGROUND_MAGENTA = 45 + ANSI_SGR_BACKGROUND_CYAN = 46 + ANSI_SGR_BACKGROUND_WHITE = 47 + _ANSI_SGR_RESERVED_02 = 48 + ANSI_SGR_BACKGROUND_DEFAULT = 49 + // 50 - 65: Unsupported + + ANSI_MAX_CMD_LENGTH = 4096 + + MAX_INPUT_EVENTS = 128 + DEFAULT_WIDTH = 80 + DEFAULT_HEIGHT = 24 + + ANSI_BEL = 0x07 + ANSI_BACKSPACE = 0x08 + ANSI_TAB = 0x09 + ANSI_LINE_FEED = 0x0A + ANSI_VERTICAL_TAB = 0x0B + ANSI_FORM_FEED = 0x0C + ANSI_CARRIAGE_RETURN = 0x0D + ANSI_ESCAPE_PRIMARY = 0x1B + ANSI_ESCAPE_SECONDARY = 0x5B + ANSI_OSC_STRING_ENTRY = 0x5D + ANSI_COMMAND_FIRST = 0x40 + ANSI_COMMAND_LAST = 0x7E + DCS_ENTRY = 0x90 + CSI_ENTRY = 0x9B + OSC_STRING = 0x9D + ANSI_PARAMETER_SEP = ";" + ANSI_CMD_G0 = '(' + ANSI_CMD_G1 = ')' + ANSI_CMD_G2 = '*' + ANSI_CMD_G3 = '+' + ANSI_CMD_DECPNM = '>' + ANSI_CMD_DECPAM = '=' + ANSI_CMD_OSC = ']' + ANSI_CMD_STR_TERM = '\\' + + KEY_CONTROL_PARAM_2 = ";2" + KEY_CONTROL_PARAM_3 = ";3" + KEY_CONTROL_PARAM_4 = ";4" + KEY_CONTROL_PARAM_5 = ";5" + KEY_CONTROL_PARAM_6 = ";6" + KEY_CONTROL_PARAM_7 = ";7" + KEY_CONTROL_PARAM_8 = ";8" + KEY_ESC_CSI = "\x1B[" + KEY_ESC_N = "\x1BN" + KEY_ESC_O = "\x1BO" + + FILL_CHARACTER = ' ' +) + +func getByteRange(start byte, end byte) []byte { + bytes := make([]byte, 0, 32) + for i := start; i <= end; i++ { + bytes = append(bytes, byte(i)) + } + + return bytes +} + +var toGroundBytes = getToGroundBytes() +var executors = getExecuteBytes() + +// SPACE 20+A0 hex Always and everywhere a blank space +// Intermediate 20-2F hex !"#$%&'()*+,-./ +var intermeds = getByteRange(0x20, 0x2F) + +// Parameters 30-3F hex 0123456789:;<=>? +// CSI Parameters 30-39, 3B hex 0123456789; +var csiParams = getByteRange(0x30, 0x3F) + +var csiCollectables = append(getByteRange(0x30, 0x39), getByteRange(0x3B, 0x3F)...) + +// Uppercase 40-5F hex @ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_ +var upperCase = getByteRange(0x40, 0x5F) + +// Lowercase 60-7E hex `abcdefghijlkmnopqrstuvwxyz{|}~ +var lowerCase = getByteRange(0x60, 0x7E) + +// Alphabetics 40-7E hex (all of upper and lower case) +var alphabetics = append(upperCase, lowerCase...) + +var printables = getByteRange(0x20, 0x7F) + +var escapeIntermediateToGroundBytes = getByteRange(0x30, 0x7E) +var escapeToGroundBytes = getEscapeToGroundBytes() + +// See http://www.vt100.net/emu/vt500_parser.png for description of the complex +// byte ranges below + +func getEscapeToGroundBytes() []byte { + escapeToGroundBytes := getByteRange(0x30, 0x4F) + escapeToGroundBytes = append(escapeToGroundBytes, getByteRange(0x51, 0x57)...) + escapeToGroundBytes = append(escapeToGroundBytes, 0x59) + escapeToGroundBytes = append(escapeToGroundBytes, 0x5A) + escapeToGroundBytes = append(escapeToGroundBytes, 0x5C) + escapeToGroundBytes = append(escapeToGroundBytes, getByteRange(0x60, 0x7E)...) + return escapeToGroundBytes +} + +func getExecuteBytes() []byte { + executeBytes := getByteRange(0x00, 0x17) + executeBytes = append(executeBytes, 0x19) + executeBytes = append(executeBytes, getByteRange(0x1C, 0x1F)...) + return executeBytes +} + +func getToGroundBytes() []byte { + groundBytes := []byte{0x18} + groundBytes = append(groundBytes, 0x1A) + groundBytes = append(groundBytes, getByteRange(0x80, 0x8F)...) + groundBytes = append(groundBytes, getByteRange(0x91, 0x97)...) + groundBytes = append(groundBytes, 0x99) + groundBytes = append(groundBytes, 0x9A) + groundBytes = append(groundBytes, 0x9C) + return groundBytes +} + +// Delete 7F hex Always and everywhere ignored +// C1 Control 80-9F hex 32 additional control characters +// G1 Displayable A1-FE hex 94 additional displayable characters +// Special A0+FF hex Same as SPACE and DELETE diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/context.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/context.go new file mode 100644 index 0000000000..8d66e777c0 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/context.go @@ -0,0 +1,7 @@ +package ansiterm + +type ansiContext struct { + currentChar byte + paramBuffer []byte + interBuffer []byte +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/csi_entry_state.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/csi_entry_state.go new file mode 100644 index 0000000000..bcbe00d0c5 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/csi_entry_state.go @@ -0,0 +1,49 @@ +package ansiterm + +type csiEntryState struct { + baseState +} + +func (csiState csiEntryState) Handle(b byte) (s state, e error) { + csiState.parser.logf("CsiEntry::Handle %#x", b) + + nextState, err := csiState.baseState.Handle(b) + if nextState != nil || err != nil { + return nextState, err + } + + switch { + case sliceContains(alphabetics, b): + return csiState.parser.ground, nil + case sliceContains(csiCollectables, b): + return csiState.parser.csiParam, nil + case sliceContains(executors, b): + return csiState, csiState.parser.execute() + } + + return csiState, nil +} + +func (csiState csiEntryState) Transition(s state) error { + csiState.parser.logf("CsiEntry::Transition %s --> %s", csiState.Name(), s.Name()) + csiState.baseState.Transition(s) + + switch s { + case csiState.parser.ground: + return csiState.parser.csiDispatch() + case csiState.parser.csiParam: + switch { + case sliceContains(csiParams, csiState.parser.context.currentChar): + csiState.parser.collectParam() + case sliceContains(intermeds, csiState.parser.context.currentChar): + csiState.parser.collectInter() + } + } + + return nil +} + +func (csiState csiEntryState) Enter() error { + csiState.parser.clear() + return nil +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/csi_param_state.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/csi_param_state.go new file mode 100644 index 0000000000..7ed5e01c34 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/csi_param_state.go @@ -0,0 +1,38 @@ +package ansiterm + +type csiParamState struct { + baseState +} + +func (csiState csiParamState) Handle(b byte) (s state, e error) { + csiState.parser.logf("CsiParam::Handle %#x", b) + + nextState, err := csiState.baseState.Handle(b) + if nextState != nil || err != nil { + return nextState, err + } + + switch { + case sliceContains(alphabetics, b): + return csiState.parser.ground, nil + case sliceContains(csiCollectables, b): + csiState.parser.collectParam() + return csiState, nil + case sliceContains(executors, b): + return csiState, csiState.parser.execute() + } + + return csiState, nil +} + +func (csiState csiParamState) Transition(s state) error { + csiState.parser.logf("CsiParam::Transition %s --> %s", csiState.Name(), s.Name()) + csiState.baseState.Transition(s) + + switch s { + case csiState.parser.ground: + return csiState.parser.csiDispatch() + } + + return nil +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/escape_intermediate_state.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/escape_intermediate_state.go new file mode 100644 index 0000000000..1c719db9e4 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/escape_intermediate_state.go @@ -0,0 +1,36 @@ +package ansiterm + +type escapeIntermediateState struct { + baseState +} + +func (escState escapeIntermediateState) Handle(b byte) (s state, e error) { + escState.parser.logf("escapeIntermediateState::Handle %#x", b) + nextState, err := escState.baseState.Handle(b) + if nextState != nil || err != nil { + return nextState, err + } + + switch { + case sliceContains(intermeds, b): + return escState, escState.parser.collectInter() + case sliceContains(executors, b): + return escState, escState.parser.execute() + case sliceContains(escapeIntermediateToGroundBytes, b): + return escState.parser.ground, nil + } + + return escState, nil +} + +func (escState escapeIntermediateState) Transition(s state) error { + escState.parser.logf("escapeIntermediateState::Transition %s --> %s", escState.Name(), s.Name()) + escState.baseState.Transition(s) + + switch s { + case escState.parser.ground: + return escState.parser.escDispatch() + } + + return nil +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/escape_state.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/escape_state.go new file mode 100644 index 0000000000..6390abd231 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/escape_state.go @@ -0,0 +1,47 @@ +package ansiterm + +type escapeState struct { + baseState +} + +func (escState escapeState) Handle(b byte) (s state, e error) { + escState.parser.logf("escapeState::Handle %#x", b) + nextState, err := escState.baseState.Handle(b) + if nextState != nil || err != nil { + return nextState, err + } + + switch { + case b == ANSI_ESCAPE_SECONDARY: + return escState.parser.csiEntry, nil + case b == ANSI_OSC_STRING_ENTRY: + return escState.parser.oscString, nil + case sliceContains(executors, b): + return escState, escState.parser.execute() + case sliceContains(escapeToGroundBytes, b): + return escState.parser.ground, nil + case sliceContains(intermeds, b): + return escState.parser.escapeIntermediate, nil + } + + return escState, nil +} + +func (escState escapeState) Transition(s state) error { + escState.parser.logf("Escape::Transition %s --> %s", escState.Name(), s.Name()) + escState.baseState.Transition(s) + + switch s { + case escState.parser.ground: + return escState.parser.escDispatch() + case escState.parser.escapeIntermediate: + return escState.parser.collectInter() + } + + return nil +} + +func (escState escapeState) Enter() error { + escState.parser.clear() + return nil +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/event_handler.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/event_handler.go new file mode 100644 index 0000000000..98087b38c2 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/event_handler.go @@ -0,0 +1,90 @@ +package ansiterm + +type AnsiEventHandler interface { + // Print + Print(b byte) error + + // Execute C0 commands + Execute(b byte) error + + // CUrsor Up + CUU(int) error + + // CUrsor Down + CUD(int) error + + // CUrsor Forward + CUF(int) error + + // CUrsor Backward + CUB(int) error + + // Cursor to Next Line + CNL(int) error + + // Cursor to Previous Line + CPL(int) error + + // Cursor Horizontal position Absolute + CHA(int) error + + // Vertical line Position Absolute + VPA(int) error + + // CUrsor Position + CUP(int, int) error + + // Horizontal and Vertical Position (depends on PUM) + HVP(int, int) error + + // Text Cursor Enable Mode + DECTCEM(bool) error + + // Origin Mode + DECOM(bool) error + + // 132 Column Mode + DECCOLM(bool) error + + // Erase in Display + ED(int) error + + // Erase in Line + EL(int) error + + // Insert Line + IL(int) error + + // Delete Line + DL(int) error + + // Insert Character + ICH(int) error + + // Delete Character + DCH(int) error + + // Set Graphics Rendition + SGR([]int) error + + // Pan Down + SU(int) error + + // Pan Up + SD(int) error + + // Device Attributes + DA([]string) error + + // Set Top and Bottom Margins + DECSTBM(int, int) error + + // Index + IND() error + + // Reverse Index + RI() error + + // Flush updates from previous commands + Flush() error +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/ground_state.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/ground_state.go new file mode 100644 index 0000000000..52451e9469 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/ground_state.go @@ -0,0 +1,24 @@ +package ansiterm + +type groundState struct { + baseState +} + +func (gs groundState) Handle(b byte) (s state, e error) { + gs.parser.context.currentChar = b + + nextState, err := gs.baseState.Handle(b) + if nextState != nil || err != nil { + return nextState, err + } + + switch { + case sliceContains(printables, b): + return gs, gs.parser.print() + + case sliceContains(executors, b): + return gs, gs.parser.execute() + } + + return gs, nil +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/osc_string_state.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/osc_string_state.go new file mode 100644 index 0000000000..194d5e9c94 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/osc_string_state.go @@ -0,0 +1,23 @@ +package ansiterm + +type oscStringState struct { + baseState +} + +func (oscState oscStringState) Handle(b byte) (s state, e error) { + oscState.parser.logf("OscString::Handle %#x", b) + nextState, err := oscState.baseState.Handle(b) + if nextState != nil || err != nil { + return nextState, err + } + + // There are several control characters and sequences which can + // terminate an OSC string. Most of them are handled by the baseState + // handler. The ANSI_BEL character is a special case which behaves as a + // terminator only for an OSC string. + if b == ANSI_BEL { + return oscState.parser.ground, nil + } + + return oscState, nil +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/parser.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/parser.go new file mode 100644 index 0000000000..03cec7ada6 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/parser.go @@ -0,0 +1,151 @@ +package ansiterm + +import ( + "errors" + "log" + "os" +) + +type AnsiParser struct { + currState state + eventHandler AnsiEventHandler + context *ansiContext + csiEntry state + csiParam state + dcsEntry state + escape state + escapeIntermediate state + error state + ground state + oscString state + stateMap []state + + logf func(string, ...interface{}) +} + +type Option func(*AnsiParser) + +func WithLogf(f func(string, ...interface{})) Option { + return func(ap *AnsiParser) { + ap.logf = f + } +} + +func CreateParser(initialState string, evtHandler AnsiEventHandler, opts ...Option) *AnsiParser { + ap := &AnsiParser{ + eventHandler: evtHandler, + context: &ansiContext{}, + } + for _, o := range opts { + o(ap) + } + + if isDebugEnv := os.Getenv(LogEnv); isDebugEnv == "1" { + logFile, _ := os.Create("ansiParser.log") + logger := log.New(logFile, "", log.LstdFlags) + if ap.logf != nil { + l := ap.logf + ap.logf = func(s string, v ...interface{}) { + l(s, v...) + logger.Printf(s, v...) + } + } else { + ap.logf = logger.Printf + } + } + + if ap.logf == nil { + ap.logf = func(string, ...interface{}) {} + } + + ap.csiEntry = csiEntryState{baseState{name: "CsiEntry", parser: ap}} + ap.csiParam = csiParamState{baseState{name: "CsiParam", parser: ap}} + ap.dcsEntry = dcsEntryState{baseState{name: "DcsEntry", parser: ap}} + ap.escape = escapeState{baseState{name: "Escape", parser: ap}} + ap.escapeIntermediate = escapeIntermediateState{baseState{name: "EscapeIntermediate", parser: ap}} + ap.error = errorState{baseState{name: "Error", parser: ap}} + ap.ground = groundState{baseState{name: "Ground", parser: ap}} + ap.oscString = oscStringState{baseState{name: "OscString", parser: ap}} + + ap.stateMap = []state{ + ap.csiEntry, + ap.csiParam, + ap.dcsEntry, + ap.escape, + ap.escapeIntermediate, + ap.error, + ap.ground, + ap.oscString, + } + + ap.currState = getState(initialState, ap.stateMap) + + ap.logf("CreateParser: parser %p", ap) + return ap +} + +func getState(name string, states []state) state { + for _, el := range states { + if el.Name() == name { + return el + } + } + + return nil +} + +func (ap *AnsiParser) Parse(bytes []byte) (int, error) { + for i, b := range bytes { + if err := ap.handle(b); err != nil { + return i, err + } + } + + return len(bytes), ap.eventHandler.Flush() +} + +func (ap *AnsiParser) handle(b byte) error { + ap.context.currentChar = b + newState, err := ap.currState.Handle(b) + if err != nil { + return err + } + + if newState == nil { + ap.logf("WARNING: newState is nil") + return errors.New("New state of 'nil' is invalid.") + } + + if newState != ap.currState { + if err := ap.changeState(newState); err != nil { + return err + } + } + + return nil +} + +func (ap *AnsiParser) changeState(newState state) error { + ap.logf("ChangeState %s --> %s", ap.currState.Name(), newState.Name()) + + // Exit old state + if err := ap.currState.Exit(); err != nil { + ap.logf("Exit state '%s' failed with : '%v'", ap.currState.Name(), err) + return err + } + + // Perform transition action + if err := ap.currState.Transition(newState); err != nil { + ap.logf("Transition from '%s' to '%s' failed with: '%v'", ap.currState.Name(), newState.Name, err) + return err + } + + // Enter new state + if err := newState.Enter(); err != nil { + ap.logf("Enter state '%s' failed with: '%v'", newState.Name(), err) + return err + } + + ap.currState = newState + return nil +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/parser_action_helpers.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/parser_action_helpers.go new file mode 100644 index 0000000000..de0a1f9cde --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/parser_action_helpers.go @@ -0,0 +1,99 @@ +package ansiterm + +import ( + "strconv" +) + +func parseParams(bytes []byte) ([]string, error) { + paramBuff := make([]byte, 0, 0) + params := []string{} + + for _, v := range bytes { + if v == ';' { + if len(paramBuff) > 0 { + // Completed parameter, append it to the list + s := string(paramBuff) + params = append(params, s) + paramBuff = make([]byte, 0, 0) + } + } else { + paramBuff = append(paramBuff, v) + } + } + + // Last parameter may not be terminated with ';' + if len(paramBuff) > 0 { + s := string(paramBuff) + params = append(params, s) + } + + return params, nil +} + +func parseCmd(context ansiContext) (string, error) { + return string(context.currentChar), nil +} + +func getInt(params []string, dflt int) int { + i := getInts(params, 1, dflt)[0] + return i +} + +func getInts(params []string, minCount int, dflt int) []int { + ints := []int{} + + for _, v := range params { + i, _ := strconv.Atoi(v) + // Zero is mapped to the default value in VT100. + if i == 0 { + i = dflt + } + ints = append(ints, i) + } + + if len(ints) < minCount { + remaining := minCount - len(ints) + for i := 0; i < remaining; i++ { + ints = append(ints, dflt) + } + } + + return ints +} + +func (ap *AnsiParser) modeDispatch(param string, set bool) error { + switch param { + case "?3": + return ap.eventHandler.DECCOLM(set) + case "?6": + return ap.eventHandler.DECOM(set) + case "?25": + return ap.eventHandler.DECTCEM(set) + } + return nil +} + +func (ap *AnsiParser) hDispatch(params []string) error { + if len(params) == 1 { + return ap.modeDispatch(params[0], true) + } + + return nil +} + +func (ap *AnsiParser) lDispatch(params []string) error { + if len(params) == 1 { + return ap.modeDispatch(params[0], false) + } + + return nil +} + +func getEraseParam(params []string) int { + param := getInt(params, 0) + if param < 0 || 3 < param { + param = 0 + } + + return param +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/parser_actions.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/parser_actions.go new file mode 100644 index 0000000000..0bb5e51e9a --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/parser_actions.go @@ -0,0 +1,119 @@ +package ansiterm + +func (ap *AnsiParser) collectParam() error { + currChar := ap.context.currentChar + ap.logf("collectParam %#x", currChar) + ap.context.paramBuffer = append(ap.context.paramBuffer, currChar) + return nil +} + +func (ap *AnsiParser) collectInter() error { + currChar := ap.context.currentChar + ap.logf("collectInter %#x", currChar) + ap.context.paramBuffer = append(ap.context.interBuffer, currChar) + return nil +} + +func (ap *AnsiParser) escDispatch() error { + cmd, _ := parseCmd(*ap.context) + intermeds := ap.context.interBuffer + ap.logf("escDispatch currentChar: %#x", ap.context.currentChar) + ap.logf("escDispatch: %v(%v)", cmd, intermeds) + + switch cmd { + case "D": // IND + return ap.eventHandler.IND() + case "E": // NEL, equivalent to CRLF + err := ap.eventHandler.Execute(ANSI_CARRIAGE_RETURN) + if err == nil { + err = ap.eventHandler.Execute(ANSI_LINE_FEED) + } + return err + case "M": // RI + return ap.eventHandler.RI() + } + + return nil +} + +func (ap *AnsiParser) csiDispatch() error { + cmd, _ := parseCmd(*ap.context) + params, _ := parseParams(ap.context.paramBuffer) + ap.logf("Parsed params: %v with length: %d", params, len(params)) + + ap.logf("csiDispatch: %v(%v)", cmd, params) + + switch cmd { + case "@": + return ap.eventHandler.ICH(getInt(params, 1)) + case "A": + return ap.eventHandler.CUU(getInt(params, 1)) + case "B": + return ap.eventHandler.CUD(getInt(params, 1)) + case "C": + return ap.eventHandler.CUF(getInt(params, 1)) + case "D": + return ap.eventHandler.CUB(getInt(params, 1)) + case "E": + return ap.eventHandler.CNL(getInt(params, 1)) + case "F": + return ap.eventHandler.CPL(getInt(params, 1)) + case "G": + return ap.eventHandler.CHA(getInt(params, 1)) + case "H": + ints := getInts(params, 2, 1) + x, y := ints[0], ints[1] + return ap.eventHandler.CUP(x, y) + case "J": + param := getEraseParam(params) + return ap.eventHandler.ED(param) + case "K": + param := getEraseParam(params) + return ap.eventHandler.EL(param) + case "L": + return ap.eventHandler.IL(getInt(params, 1)) + case "M": + return ap.eventHandler.DL(getInt(params, 1)) + case "P": + return ap.eventHandler.DCH(getInt(params, 1)) + case "S": + return ap.eventHandler.SU(getInt(params, 1)) + case "T": + return ap.eventHandler.SD(getInt(params, 1)) + case "c": + return ap.eventHandler.DA(params) + case "d": + return ap.eventHandler.VPA(getInt(params, 1)) + case "f": + ints := getInts(params, 2, 1) + x, y := ints[0], ints[1] + return ap.eventHandler.HVP(x, y) + case "h": + return ap.hDispatch(params) + case "l": + return ap.lDispatch(params) + case "m": + return ap.eventHandler.SGR(getInts(params, 1, 0)) + case "r": + ints := getInts(params, 2, 1) + top, bottom := ints[0], ints[1] + return ap.eventHandler.DECSTBM(top, bottom) + default: + ap.logf("ERROR: Unsupported CSI command: '%s', with full context: %v", cmd, ap.context) + return nil + } + +} + +func (ap *AnsiParser) print() error { + return ap.eventHandler.Print(ap.context.currentChar) +} + +func (ap *AnsiParser) clear() error { + ap.context = &ansiContext{} + return nil +} + +func (ap *AnsiParser) execute() error { + return ap.eventHandler.Execute(ap.context.currentChar) +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/states.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/states.go new file mode 100644 index 0000000000..f2ea1fcd12 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/states.go @@ -0,0 +1,71 @@ +package ansiterm + +type stateID int + +type state interface { + Enter() error + Exit() error + Handle(byte) (state, error) + Name() string + Transition(state) error +} + +type baseState struct { + name string + parser *AnsiParser +} + +func (base baseState) Enter() error { + return nil +} + +func (base baseState) Exit() error { + return nil +} + +func (base baseState) Handle(b byte) (s state, e error) { + + switch { + case b == CSI_ENTRY: + return base.parser.csiEntry, nil + case b == DCS_ENTRY: + return base.parser.dcsEntry, nil + case b == ANSI_ESCAPE_PRIMARY: + return base.parser.escape, nil + case b == OSC_STRING: + return base.parser.oscString, nil + case sliceContains(toGroundBytes, b): + return base.parser.ground, nil + } + + return nil, nil +} + +func (base baseState) Name() string { + return base.name +} + +func (base baseState) Transition(s state) error { + if s == base.parser.ground { + execBytes := []byte{0x18} + execBytes = append(execBytes, 0x1A) + execBytes = append(execBytes, getByteRange(0x80, 0x8F)...) + execBytes = append(execBytes, getByteRange(0x91, 0x97)...) + execBytes = append(execBytes, 0x99) + execBytes = append(execBytes, 0x9A) + + if sliceContains(execBytes, base.parser.context.currentChar) { + return base.parser.execute() + } + } + + return nil +} + +type dcsEntryState struct { + baseState +} + +type errorState struct { + baseState +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/utilities.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/utilities.go new file mode 100644 index 0000000000..392114493a --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/utilities.go @@ -0,0 +1,21 @@ +package ansiterm + +import ( + "strconv" +) + +func sliceContains(bytes []byte, b byte) bool { + for _, v := range bytes { + if v == b { + return true + } + } + + return false +} + +func convertBytesToInteger(bytes []byte) int { + s := string(bytes) + i, _ := strconv.Atoi(s) + return i +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/ansi.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/ansi.go new file mode 100644 index 0000000000..5599082ae9 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/ansi.go @@ -0,0 +1,196 @@ +// +build windows + +package winterm + +import ( + "fmt" + "os" + "strconv" + "strings" + "syscall" + + "github.com/Azure/go-ansiterm" + windows "golang.org/x/sys/windows" +) + +// Windows keyboard constants +// See https://msdn.microsoft.com/en-us/library/windows/desktop/dd375731(v=vs.85).aspx. +const ( + VK_PRIOR = 0x21 // PAGE UP key + VK_NEXT = 0x22 // PAGE DOWN key + VK_END = 0x23 // END key + VK_HOME = 0x24 // HOME key + VK_LEFT = 0x25 // LEFT ARROW key + VK_UP = 0x26 // UP ARROW key + VK_RIGHT = 0x27 // RIGHT ARROW key + VK_DOWN = 0x28 // DOWN ARROW key + VK_SELECT = 0x29 // SELECT key + VK_PRINT = 0x2A // PRINT key + VK_EXECUTE = 0x2B // EXECUTE key + VK_SNAPSHOT = 0x2C // PRINT SCREEN key + VK_INSERT = 0x2D // INS key + VK_DELETE = 0x2E // DEL key + VK_HELP = 0x2F // HELP key + VK_F1 = 0x70 // F1 key + VK_F2 = 0x71 // F2 key + VK_F3 = 0x72 // F3 key + VK_F4 = 0x73 // F4 key + VK_F5 = 0x74 // F5 key + VK_F6 = 0x75 // F6 key + VK_F7 = 0x76 // F7 key + VK_F8 = 0x77 // F8 key + VK_F9 = 0x78 // F9 key + VK_F10 = 0x79 // F10 key + VK_F11 = 0x7A // F11 key + VK_F12 = 0x7B // F12 key + + RIGHT_ALT_PRESSED = 0x0001 + LEFT_ALT_PRESSED = 0x0002 + RIGHT_CTRL_PRESSED = 0x0004 + LEFT_CTRL_PRESSED = 0x0008 + SHIFT_PRESSED = 0x0010 + NUMLOCK_ON = 0x0020 + SCROLLLOCK_ON = 0x0040 + CAPSLOCK_ON = 0x0080 + ENHANCED_KEY = 0x0100 +) + +type ansiCommand struct { + CommandBytes []byte + Command string + Parameters []string + IsSpecial bool +} + +func newAnsiCommand(command []byte) *ansiCommand { + + if isCharacterSelectionCmdChar(command[1]) { + // Is Character Set Selection commands + return &ansiCommand{ + CommandBytes: command, + Command: string(command), + IsSpecial: true, + } + } + + // last char is command character + lastCharIndex := len(command) - 1 + + ac := &ansiCommand{ + CommandBytes: command, + Command: string(command[lastCharIndex]), + IsSpecial: false, + } + + // more than a single escape + if lastCharIndex != 0 { + start := 1 + // skip if double char escape sequence + if command[0] == ansiterm.ANSI_ESCAPE_PRIMARY && command[1] == ansiterm.ANSI_ESCAPE_SECONDARY { + start++ + } + // convert this to GetNextParam method + ac.Parameters = strings.Split(string(command[start:lastCharIndex]), ansiterm.ANSI_PARAMETER_SEP) + } + + return ac +} + +func (ac *ansiCommand) paramAsSHORT(index int, defaultValue int16) int16 { + if index < 0 || index >= len(ac.Parameters) { + return defaultValue + } + + param, err := strconv.ParseInt(ac.Parameters[index], 10, 16) + if err != nil { + return defaultValue + } + + return int16(param) +} + +func (ac *ansiCommand) String() string { + return fmt.Sprintf("0x%v \"%v\" (\"%v\")", + bytesToHex(ac.CommandBytes), + ac.Command, + strings.Join(ac.Parameters, "\",\"")) +} + +// isAnsiCommandChar returns true if the passed byte falls within the range of ANSI commands. +// See http://manpages.ubuntu.com/manpages/intrepid/man4/console_codes.4.html. +func isAnsiCommandChar(b byte) bool { + switch { + case ansiterm.ANSI_COMMAND_FIRST <= b && b <= ansiterm.ANSI_COMMAND_LAST && b != ansiterm.ANSI_ESCAPE_SECONDARY: + return true + case b == ansiterm.ANSI_CMD_G1 || b == ansiterm.ANSI_CMD_OSC || b == ansiterm.ANSI_CMD_DECPAM || b == ansiterm.ANSI_CMD_DECPNM: + // non-CSI escape sequence terminator + return true + case b == ansiterm.ANSI_CMD_STR_TERM || b == ansiterm.ANSI_BEL: + // String escape sequence terminator + return true + } + return false +} + +func isXtermOscSequence(command []byte, current byte) bool { + return (len(command) >= 2 && command[0] == ansiterm.ANSI_ESCAPE_PRIMARY && command[1] == ansiterm.ANSI_CMD_OSC && current != ansiterm.ANSI_BEL) +} + +func isCharacterSelectionCmdChar(b byte) bool { + return (b == ansiterm.ANSI_CMD_G0 || b == ansiterm.ANSI_CMD_G1 || b == ansiterm.ANSI_CMD_G2 || b == ansiterm.ANSI_CMD_G3) +} + +// bytesToHex converts a slice of bytes to a human-readable string. +func bytesToHex(b []byte) string { + hex := make([]string, len(b)) + for i, ch := range b { + hex[i] = fmt.Sprintf("%X", ch) + } + return strings.Join(hex, "") +} + +// ensureInRange adjusts the passed value, if necessary, to ensure it is within +// the passed min / max range. +func ensureInRange(n int16, min int16, max int16) int16 { + if n < min { + return min + } else if n > max { + return max + } else { + return n + } +} + +func GetStdFile(nFile int) (*os.File, uintptr) { + var file *os.File + + // syscall uses negative numbers + // windows package uses very big uint32 + // Keep these switches split so we don't have to convert ints too much. + switch uint32(nFile) { + case windows.STD_INPUT_HANDLE: + file = os.Stdin + case windows.STD_OUTPUT_HANDLE: + file = os.Stdout + case windows.STD_ERROR_HANDLE: + file = os.Stderr + default: + switch nFile { + case syscall.STD_INPUT_HANDLE: + file = os.Stdin + case syscall.STD_OUTPUT_HANDLE: + file = os.Stdout + case syscall.STD_ERROR_HANDLE: + file = os.Stderr + default: + panic(fmt.Errorf("Invalid standard handle identifier: %v", nFile)) + } + } + + fd, err := syscall.GetStdHandle(nFile) + if err != nil { + panic(fmt.Errorf("Invalid standard handle identifier: %v -- %v", nFile, err)) + } + + return file, uintptr(fd) +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/api.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/api.go new file mode 100644 index 0000000000..6055e33b91 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/api.go @@ -0,0 +1,327 @@ +// +build windows + +package winterm + +import ( + "fmt" + "syscall" + "unsafe" +) + +//=========================================================================================================== +// IMPORTANT NOTE: +// +// The methods below make extensive use of the "unsafe" package to obtain the required pointers. +// Beginning in Go 1.3, the garbage collector may release local variables (e.g., incoming arguments, stack +// variables) the pointers reference *before* the API completes. +// +// As a result, in those cases, the code must hint that the variables remain in active by invoking the +// dummy method "use" (see below). Newer versions of Go are planned to change the mechanism to no longer +// require unsafe pointers. +// +// If you add or modify methods, ENSURE protection of local variables through the "use" builtin to inform +// the garbage collector the variables remain in use if: +// +// -- The value is not a pointer (e.g., int32, struct) +// -- The value is not referenced by the method after passing the pointer to Windows +// +// See http://golang.org/doc/go1.3. +//=========================================================================================================== + +var ( + kernel32DLL = syscall.NewLazyDLL("kernel32.dll") + + getConsoleCursorInfoProc = kernel32DLL.NewProc("GetConsoleCursorInfo") + setConsoleCursorInfoProc = kernel32DLL.NewProc("SetConsoleCursorInfo") + setConsoleCursorPositionProc = kernel32DLL.NewProc("SetConsoleCursorPosition") + setConsoleModeProc = kernel32DLL.NewProc("SetConsoleMode") + getConsoleScreenBufferInfoProc = kernel32DLL.NewProc("GetConsoleScreenBufferInfo") + setConsoleScreenBufferSizeProc = kernel32DLL.NewProc("SetConsoleScreenBufferSize") + scrollConsoleScreenBufferProc = kernel32DLL.NewProc("ScrollConsoleScreenBufferA") + setConsoleTextAttributeProc = kernel32DLL.NewProc("SetConsoleTextAttribute") + setConsoleWindowInfoProc = kernel32DLL.NewProc("SetConsoleWindowInfo") + writeConsoleOutputProc = kernel32DLL.NewProc("WriteConsoleOutputW") + readConsoleInputProc = kernel32DLL.NewProc("ReadConsoleInputW") + waitForSingleObjectProc = kernel32DLL.NewProc("WaitForSingleObject") +) + +// Windows Console constants +const ( + // Console modes + // See https://msdn.microsoft.com/en-us/library/windows/desktop/ms686033(v=vs.85).aspx. + ENABLE_PROCESSED_INPUT = 0x0001 + ENABLE_LINE_INPUT = 0x0002 + ENABLE_ECHO_INPUT = 0x0004 + ENABLE_WINDOW_INPUT = 0x0008 + ENABLE_MOUSE_INPUT = 0x0010 + ENABLE_INSERT_MODE = 0x0020 + ENABLE_QUICK_EDIT_MODE = 0x0040 + ENABLE_EXTENDED_FLAGS = 0x0080 + ENABLE_AUTO_POSITION = 0x0100 + ENABLE_VIRTUAL_TERMINAL_INPUT = 0x0200 + + ENABLE_PROCESSED_OUTPUT = 0x0001 + ENABLE_WRAP_AT_EOL_OUTPUT = 0x0002 + ENABLE_VIRTUAL_TERMINAL_PROCESSING = 0x0004 + DISABLE_NEWLINE_AUTO_RETURN = 0x0008 + ENABLE_LVB_GRID_WORLDWIDE = 0x0010 + + // Character attributes + // Note: + // -- The attributes are combined to produce various colors (e.g., Blue + Green will create Cyan). + // Clearing all foreground or background colors results in black; setting all creates white. + // See https://msdn.microsoft.com/en-us/library/windows/desktop/ms682088(v=vs.85).aspx#_win32_character_attributes. + FOREGROUND_BLUE uint16 = 0x0001 + FOREGROUND_GREEN uint16 = 0x0002 + FOREGROUND_RED uint16 = 0x0004 + FOREGROUND_INTENSITY uint16 = 0x0008 + FOREGROUND_MASK uint16 = 0x000F + + BACKGROUND_BLUE uint16 = 0x0010 + BACKGROUND_GREEN uint16 = 0x0020 + BACKGROUND_RED uint16 = 0x0040 + BACKGROUND_INTENSITY uint16 = 0x0080 + BACKGROUND_MASK uint16 = 0x00F0 + + COMMON_LVB_MASK uint16 = 0xFF00 + COMMON_LVB_REVERSE_VIDEO uint16 = 0x4000 + COMMON_LVB_UNDERSCORE uint16 = 0x8000 + + // Input event types + // See https://msdn.microsoft.com/en-us/library/windows/desktop/ms683499(v=vs.85).aspx. + KEY_EVENT = 0x0001 + MOUSE_EVENT = 0x0002 + WINDOW_BUFFER_SIZE_EVENT = 0x0004 + MENU_EVENT = 0x0008 + FOCUS_EVENT = 0x0010 + + // WaitForSingleObject return codes + WAIT_ABANDONED = 0x00000080 + WAIT_FAILED = 0xFFFFFFFF + WAIT_SIGNALED = 0x0000000 + WAIT_TIMEOUT = 0x00000102 + + // WaitForSingleObject wait duration + WAIT_INFINITE = 0xFFFFFFFF + WAIT_ONE_SECOND = 1000 + WAIT_HALF_SECOND = 500 + WAIT_QUARTER_SECOND = 250 +) + +// Windows API Console types +// -- See https://msdn.microsoft.com/en-us/library/windows/desktop/ms682101(v=vs.85).aspx for Console specific types (e.g., COORD) +// -- See https://msdn.microsoft.com/en-us/library/aa296569(v=vs.60).aspx for comments on alignment +type ( + CHAR_INFO struct { + UnicodeChar uint16 + Attributes uint16 + } + + CONSOLE_CURSOR_INFO struct { + Size uint32 + Visible int32 + } + + CONSOLE_SCREEN_BUFFER_INFO struct { + Size COORD + CursorPosition COORD + Attributes uint16 + Window SMALL_RECT + MaximumWindowSize COORD + } + + COORD struct { + X int16 + Y int16 + } + + SMALL_RECT struct { + Left int16 + Top int16 + Right int16 + Bottom int16 + } + + // INPUT_RECORD is a C/C++ union of which KEY_EVENT_RECORD is one case, it is also the largest + // See https://msdn.microsoft.com/en-us/library/windows/desktop/ms683499(v=vs.85).aspx. + INPUT_RECORD struct { + EventType uint16 + KeyEvent KEY_EVENT_RECORD + } + + KEY_EVENT_RECORD struct { + KeyDown int32 + RepeatCount uint16 + VirtualKeyCode uint16 + VirtualScanCode uint16 + UnicodeChar uint16 + ControlKeyState uint32 + } + + WINDOW_BUFFER_SIZE struct { + Size COORD + } +) + +// boolToBOOL converts a Go bool into a Windows int32. +func boolToBOOL(f bool) int32 { + if f { + return int32(1) + } else { + return int32(0) + } +} + +// GetConsoleCursorInfo retrieves information about the size and visiblity of the console cursor. +// See https://msdn.microsoft.com/en-us/library/windows/desktop/ms683163(v=vs.85).aspx. +func GetConsoleCursorInfo(handle uintptr, cursorInfo *CONSOLE_CURSOR_INFO) error { + r1, r2, err := getConsoleCursorInfoProc.Call(handle, uintptr(unsafe.Pointer(cursorInfo)), 0) + return checkError(r1, r2, err) +} + +// SetConsoleCursorInfo sets the size and visiblity of the console cursor. +// See https://msdn.microsoft.com/en-us/library/windows/desktop/ms686019(v=vs.85).aspx. +func SetConsoleCursorInfo(handle uintptr, cursorInfo *CONSOLE_CURSOR_INFO) error { + r1, r2, err := setConsoleCursorInfoProc.Call(handle, uintptr(unsafe.Pointer(cursorInfo)), 0) + return checkError(r1, r2, err) +} + +// SetConsoleCursorPosition location of the console cursor. +// See https://msdn.microsoft.com/en-us/library/windows/desktop/ms686025(v=vs.85).aspx. +func SetConsoleCursorPosition(handle uintptr, coord COORD) error { + r1, r2, err := setConsoleCursorPositionProc.Call(handle, coordToPointer(coord)) + use(coord) + return checkError(r1, r2, err) +} + +// GetConsoleMode gets the console mode for given file descriptor +// See http://msdn.microsoft.com/en-us/library/windows/desktop/ms683167(v=vs.85).aspx. +func GetConsoleMode(handle uintptr) (mode uint32, err error) { + err = syscall.GetConsoleMode(syscall.Handle(handle), &mode) + return mode, err +} + +// SetConsoleMode sets the console mode for given file descriptor +// See http://msdn.microsoft.com/en-us/library/windows/desktop/ms686033(v=vs.85).aspx. +func SetConsoleMode(handle uintptr, mode uint32) error { + r1, r2, err := setConsoleModeProc.Call(handle, uintptr(mode), 0) + use(mode) + return checkError(r1, r2, err) +} + +// GetConsoleScreenBufferInfo retrieves information about the specified console screen buffer. +// See http://msdn.microsoft.com/en-us/library/windows/desktop/ms683171(v=vs.85).aspx. +func GetConsoleScreenBufferInfo(handle uintptr) (*CONSOLE_SCREEN_BUFFER_INFO, error) { + info := CONSOLE_SCREEN_BUFFER_INFO{} + err := checkError(getConsoleScreenBufferInfoProc.Call(handle, uintptr(unsafe.Pointer(&info)), 0)) + if err != nil { + return nil, err + } + return &info, nil +} + +func ScrollConsoleScreenBuffer(handle uintptr, scrollRect SMALL_RECT, clipRect SMALL_RECT, destOrigin COORD, char CHAR_INFO) error { + r1, r2, err := scrollConsoleScreenBufferProc.Call(handle, uintptr(unsafe.Pointer(&scrollRect)), uintptr(unsafe.Pointer(&clipRect)), coordToPointer(destOrigin), uintptr(unsafe.Pointer(&char))) + use(scrollRect) + use(clipRect) + use(destOrigin) + use(char) + return checkError(r1, r2, err) +} + +// SetConsoleScreenBufferSize sets the size of the console screen buffer. +// See https://msdn.microsoft.com/en-us/library/windows/desktop/ms686044(v=vs.85).aspx. +func SetConsoleScreenBufferSize(handle uintptr, coord COORD) error { + r1, r2, err := setConsoleScreenBufferSizeProc.Call(handle, coordToPointer(coord)) + use(coord) + return checkError(r1, r2, err) +} + +// SetConsoleTextAttribute sets the attributes of characters written to the +// console screen buffer by the WriteFile or WriteConsole function. +// See http://msdn.microsoft.com/en-us/library/windows/desktop/ms686047(v=vs.85).aspx. +func SetConsoleTextAttribute(handle uintptr, attribute uint16) error { + r1, r2, err := setConsoleTextAttributeProc.Call(handle, uintptr(attribute), 0) + use(attribute) + return checkError(r1, r2, err) +} + +// SetConsoleWindowInfo sets the size and position of the console screen buffer's window. +// Note that the size and location must be within and no larger than the backing console screen buffer. +// See https://msdn.microsoft.com/en-us/library/windows/desktop/ms686125(v=vs.85).aspx. +func SetConsoleWindowInfo(handle uintptr, isAbsolute bool, rect SMALL_RECT) error { + r1, r2, err := setConsoleWindowInfoProc.Call(handle, uintptr(boolToBOOL(isAbsolute)), uintptr(unsafe.Pointer(&rect))) + use(isAbsolute) + use(rect) + return checkError(r1, r2, err) +} + +// WriteConsoleOutput writes the CHAR_INFOs from the provided buffer to the active console buffer. +// See https://msdn.microsoft.com/en-us/library/windows/desktop/ms687404(v=vs.85).aspx. +func WriteConsoleOutput(handle uintptr, buffer []CHAR_INFO, bufferSize COORD, bufferCoord COORD, writeRegion *SMALL_RECT) error { + r1, r2, err := writeConsoleOutputProc.Call(handle, uintptr(unsafe.Pointer(&buffer[0])), coordToPointer(bufferSize), coordToPointer(bufferCoord), uintptr(unsafe.Pointer(writeRegion))) + use(buffer) + use(bufferSize) + use(bufferCoord) + return checkError(r1, r2, err) +} + +// ReadConsoleInput reads (and removes) data from the console input buffer. +// See https://msdn.microsoft.com/en-us/library/windows/desktop/ms684961(v=vs.85).aspx. +func ReadConsoleInput(handle uintptr, buffer []INPUT_RECORD, count *uint32) error { + r1, r2, err := readConsoleInputProc.Call(handle, uintptr(unsafe.Pointer(&buffer[0])), uintptr(len(buffer)), uintptr(unsafe.Pointer(count))) + use(buffer) + return checkError(r1, r2, err) +} + +// WaitForSingleObject waits for the passed handle to be signaled. +// It returns true if the handle was signaled; false otherwise. +// See https://msdn.microsoft.com/en-us/library/windows/desktop/ms687032(v=vs.85).aspx. +func WaitForSingleObject(handle uintptr, msWait uint32) (bool, error) { + r1, _, err := waitForSingleObjectProc.Call(handle, uintptr(uint32(msWait))) + switch r1 { + case WAIT_ABANDONED, WAIT_TIMEOUT: + return false, nil + case WAIT_SIGNALED: + return true, nil + } + use(msWait) + return false, err +} + +// String helpers +func (info CONSOLE_SCREEN_BUFFER_INFO) String() string { + return fmt.Sprintf("Size(%v) Cursor(%v) Window(%v) Max(%v)", info.Size, info.CursorPosition, info.Window, info.MaximumWindowSize) +} + +func (coord COORD) String() string { + return fmt.Sprintf("%v,%v", coord.X, coord.Y) +} + +func (rect SMALL_RECT) String() string { + return fmt.Sprintf("(%v,%v),(%v,%v)", rect.Left, rect.Top, rect.Right, rect.Bottom) +} + +// checkError evaluates the results of a Windows API call and returns the error if it failed. +func checkError(r1, r2 uintptr, err error) error { + // Windows APIs return non-zero to indicate success + if r1 != 0 { + return nil + } + + // Return the error if provided, otherwise default to EINVAL + if err != nil { + return err + } + return syscall.EINVAL +} + +// coordToPointer converts a COORD into a uintptr (by fooling the type system). +func coordToPointer(c COORD) uintptr { + // Note: This code assumes the two SHORTs are correctly laid out; the "cast" to uint32 is just to get a pointer to pass. + return uintptr(*((*uint32)(unsafe.Pointer(&c)))) +} + +// use is a no-op, but the compiler cannot see that it is. +// Calling use(p) ensures that p is kept live until that point. +func use(p interface{}) {} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/attr_translation.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/attr_translation.go new file mode 100644 index 0000000000..cbec8f728f --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/attr_translation.go @@ -0,0 +1,100 @@ +// +build windows + +package winterm + +import "github.com/Azure/go-ansiterm" + +const ( + FOREGROUND_COLOR_MASK = FOREGROUND_RED | FOREGROUND_GREEN | FOREGROUND_BLUE + BACKGROUND_COLOR_MASK = BACKGROUND_RED | BACKGROUND_GREEN | BACKGROUND_BLUE +) + +// collectAnsiIntoWindowsAttributes modifies the passed Windows text mode flags to reflect the +// request represented by the passed ANSI mode. +func collectAnsiIntoWindowsAttributes(windowsMode uint16, inverted bool, baseMode uint16, ansiMode int16) (uint16, bool) { + switch ansiMode { + + // Mode styles + case ansiterm.ANSI_SGR_BOLD: + windowsMode = windowsMode | FOREGROUND_INTENSITY + + case ansiterm.ANSI_SGR_DIM, ansiterm.ANSI_SGR_BOLD_DIM_OFF: + windowsMode &^= FOREGROUND_INTENSITY + + case ansiterm.ANSI_SGR_UNDERLINE: + windowsMode = windowsMode | COMMON_LVB_UNDERSCORE + + case ansiterm.ANSI_SGR_REVERSE: + inverted = true + + case ansiterm.ANSI_SGR_REVERSE_OFF: + inverted = false + + case ansiterm.ANSI_SGR_UNDERLINE_OFF: + windowsMode &^= COMMON_LVB_UNDERSCORE + + // Foreground colors + case ansiterm.ANSI_SGR_FOREGROUND_DEFAULT: + windowsMode = (windowsMode &^ FOREGROUND_MASK) | (baseMode & FOREGROUND_MASK) + + case ansiterm.ANSI_SGR_FOREGROUND_BLACK: + windowsMode = (windowsMode &^ FOREGROUND_COLOR_MASK) + + case ansiterm.ANSI_SGR_FOREGROUND_RED: + windowsMode = (windowsMode &^ FOREGROUND_COLOR_MASK) | FOREGROUND_RED + + case ansiterm.ANSI_SGR_FOREGROUND_GREEN: + windowsMode = (windowsMode &^ FOREGROUND_COLOR_MASK) | FOREGROUND_GREEN + + case ansiterm.ANSI_SGR_FOREGROUND_YELLOW: + windowsMode = (windowsMode &^ FOREGROUND_COLOR_MASK) | FOREGROUND_RED | FOREGROUND_GREEN + + case ansiterm.ANSI_SGR_FOREGROUND_BLUE: + windowsMode = (windowsMode &^ FOREGROUND_COLOR_MASK) | FOREGROUND_BLUE + + case ansiterm.ANSI_SGR_FOREGROUND_MAGENTA: + windowsMode = (windowsMode &^ FOREGROUND_COLOR_MASK) | FOREGROUND_RED | FOREGROUND_BLUE + + case ansiterm.ANSI_SGR_FOREGROUND_CYAN: + windowsMode = (windowsMode &^ FOREGROUND_COLOR_MASK) | FOREGROUND_GREEN | FOREGROUND_BLUE + + case ansiterm.ANSI_SGR_FOREGROUND_WHITE: + windowsMode = (windowsMode &^ FOREGROUND_COLOR_MASK) | FOREGROUND_RED | FOREGROUND_GREEN | FOREGROUND_BLUE + + // Background colors + case ansiterm.ANSI_SGR_BACKGROUND_DEFAULT: + // Black with no intensity + windowsMode = (windowsMode &^ BACKGROUND_MASK) | (baseMode & BACKGROUND_MASK) + + case ansiterm.ANSI_SGR_BACKGROUND_BLACK: + windowsMode = (windowsMode &^ BACKGROUND_COLOR_MASK) + + case ansiterm.ANSI_SGR_BACKGROUND_RED: + windowsMode = (windowsMode &^ BACKGROUND_COLOR_MASK) | BACKGROUND_RED + + case ansiterm.ANSI_SGR_BACKGROUND_GREEN: + windowsMode = (windowsMode &^ BACKGROUND_COLOR_MASK) | BACKGROUND_GREEN + + case ansiterm.ANSI_SGR_BACKGROUND_YELLOW: + windowsMode = (windowsMode &^ BACKGROUND_COLOR_MASK) | BACKGROUND_RED | BACKGROUND_GREEN + + case ansiterm.ANSI_SGR_BACKGROUND_BLUE: + windowsMode = (windowsMode &^ BACKGROUND_COLOR_MASK) | BACKGROUND_BLUE + + case ansiterm.ANSI_SGR_BACKGROUND_MAGENTA: + windowsMode = (windowsMode &^ BACKGROUND_COLOR_MASK) | BACKGROUND_RED | BACKGROUND_BLUE + + case ansiterm.ANSI_SGR_BACKGROUND_CYAN: + windowsMode = (windowsMode &^ BACKGROUND_COLOR_MASK) | BACKGROUND_GREEN | BACKGROUND_BLUE + + case ansiterm.ANSI_SGR_BACKGROUND_WHITE: + windowsMode = (windowsMode &^ BACKGROUND_COLOR_MASK) | BACKGROUND_RED | BACKGROUND_GREEN | BACKGROUND_BLUE + } + + return windowsMode, inverted +} + +// invertAttributes inverts the foreground and background colors of a Windows attributes value +func invertAttributes(windowsMode uint16) uint16 { + return (COMMON_LVB_MASK & windowsMode) | ((FOREGROUND_MASK & windowsMode) << 4) | ((BACKGROUND_MASK & windowsMode) >> 4) +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/cursor_helpers.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/cursor_helpers.go new file mode 100644 index 0000000000..3ee06ea728 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/cursor_helpers.go @@ -0,0 +1,101 @@ +// +build windows + +package winterm + +const ( + horizontal = iota + vertical +) + +func (h *windowsAnsiEventHandler) getCursorWindow(info *CONSOLE_SCREEN_BUFFER_INFO) SMALL_RECT { + if h.originMode { + sr := h.effectiveSr(info.Window) + return SMALL_RECT{ + Top: sr.top, + Bottom: sr.bottom, + Left: 0, + Right: info.Size.X - 1, + } + } else { + return SMALL_RECT{ + Top: info.Window.Top, + Bottom: info.Window.Bottom, + Left: 0, + Right: info.Size.X - 1, + } + } +} + +// setCursorPosition sets the cursor to the specified position, bounded to the screen size +func (h *windowsAnsiEventHandler) setCursorPosition(position COORD, window SMALL_RECT) error { + position.X = ensureInRange(position.X, window.Left, window.Right) + position.Y = ensureInRange(position.Y, window.Top, window.Bottom) + err := SetConsoleCursorPosition(h.fd, position) + if err != nil { + return err + } + h.logf("Cursor position set: (%d, %d)", position.X, position.Y) + return err +} + +func (h *windowsAnsiEventHandler) moveCursorVertical(param int) error { + return h.moveCursor(vertical, param) +} + +func (h *windowsAnsiEventHandler) moveCursorHorizontal(param int) error { + return h.moveCursor(horizontal, param) +} + +func (h *windowsAnsiEventHandler) moveCursor(moveMode int, param int) error { + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + + position := info.CursorPosition + switch moveMode { + case horizontal: + position.X += int16(param) + case vertical: + position.Y += int16(param) + } + + if err = h.setCursorPosition(position, h.getCursorWindow(info)); err != nil { + return err + } + + return nil +} + +func (h *windowsAnsiEventHandler) moveCursorLine(param int) error { + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + + position := info.CursorPosition + position.X = 0 + position.Y += int16(param) + + if err = h.setCursorPosition(position, h.getCursorWindow(info)); err != nil { + return err + } + + return nil +} + +func (h *windowsAnsiEventHandler) moveCursorColumn(param int) error { + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + + position := info.CursorPosition + position.X = int16(param) - 1 + + if err = h.setCursorPosition(position, h.getCursorWindow(info)); err != nil { + return err + } + + return nil +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/erase_helpers.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/erase_helpers.go new file mode 100644 index 0000000000..244b5fa25e --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/erase_helpers.go @@ -0,0 +1,84 @@ +// +build windows + +package winterm + +import "github.com/Azure/go-ansiterm" + +func (h *windowsAnsiEventHandler) clearRange(attributes uint16, fromCoord COORD, toCoord COORD) error { + // Ignore an invalid (negative area) request + if toCoord.Y < fromCoord.Y { + return nil + } + + var err error + + var coordStart = COORD{} + var coordEnd = COORD{} + + xCurrent, yCurrent := fromCoord.X, fromCoord.Y + xEnd, yEnd := toCoord.X, toCoord.Y + + // Clear any partial initial line + if xCurrent > 0 { + coordStart.X, coordStart.Y = xCurrent, yCurrent + coordEnd.X, coordEnd.Y = xEnd, yCurrent + + err = h.clearRect(attributes, coordStart, coordEnd) + if err != nil { + return err + } + + xCurrent = 0 + yCurrent += 1 + } + + // Clear intervening rectangular section + if yCurrent < yEnd { + coordStart.X, coordStart.Y = xCurrent, yCurrent + coordEnd.X, coordEnd.Y = xEnd, yEnd-1 + + err = h.clearRect(attributes, coordStart, coordEnd) + if err != nil { + return err + } + + xCurrent = 0 + yCurrent = yEnd + } + + // Clear remaining partial ending line + coordStart.X, coordStart.Y = xCurrent, yCurrent + coordEnd.X, coordEnd.Y = xEnd, yEnd + + err = h.clearRect(attributes, coordStart, coordEnd) + if err != nil { + return err + } + + return nil +} + +func (h *windowsAnsiEventHandler) clearRect(attributes uint16, fromCoord COORD, toCoord COORD) error { + region := SMALL_RECT{Top: fromCoord.Y, Left: fromCoord.X, Bottom: toCoord.Y, Right: toCoord.X} + width := toCoord.X - fromCoord.X + 1 + height := toCoord.Y - fromCoord.Y + 1 + size := uint32(width) * uint32(height) + + if size <= 0 { + return nil + } + + buffer := make([]CHAR_INFO, size) + + char := CHAR_INFO{ansiterm.FILL_CHARACTER, attributes} + for i := 0; i < int(size); i++ { + buffer[i] = char + } + + err := WriteConsoleOutput(h.fd, buffer, COORD{X: width, Y: height}, COORD{X: 0, Y: 0}, ®ion) + if err != nil { + return err + } + + return nil +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/scroll_helper.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/scroll_helper.go new file mode 100644 index 0000000000..2d27fa1d02 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/scroll_helper.go @@ -0,0 +1,118 @@ +// +build windows + +package winterm + +// effectiveSr gets the current effective scroll region in buffer coordinates +func (h *windowsAnsiEventHandler) effectiveSr(window SMALL_RECT) scrollRegion { + top := addInRange(window.Top, h.sr.top, window.Top, window.Bottom) + bottom := addInRange(window.Top, h.sr.bottom, window.Top, window.Bottom) + if top >= bottom { + top = window.Top + bottom = window.Bottom + } + return scrollRegion{top: top, bottom: bottom} +} + +func (h *windowsAnsiEventHandler) scrollUp(param int) error { + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + + sr := h.effectiveSr(info.Window) + return h.scroll(param, sr, info) +} + +func (h *windowsAnsiEventHandler) scrollDown(param int) error { + return h.scrollUp(-param) +} + +func (h *windowsAnsiEventHandler) deleteLines(param int) error { + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + + start := info.CursorPosition.Y + sr := h.effectiveSr(info.Window) + // Lines cannot be inserted or deleted outside the scrolling region. + if start >= sr.top && start <= sr.bottom { + sr.top = start + return h.scroll(param, sr, info) + } else { + return nil + } +} + +func (h *windowsAnsiEventHandler) insertLines(param int) error { + return h.deleteLines(-param) +} + +// scroll scrolls the provided scroll region by param lines. The scroll region is in buffer coordinates. +func (h *windowsAnsiEventHandler) scroll(param int, sr scrollRegion, info *CONSOLE_SCREEN_BUFFER_INFO) error { + h.logf("scroll: scrollTop: %d, scrollBottom: %d", sr.top, sr.bottom) + h.logf("scroll: windowTop: %d, windowBottom: %d", info.Window.Top, info.Window.Bottom) + + // Copy from and clip to the scroll region (full buffer width) + scrollRect := SMALL_RECT{ + Top: sr.top, + Bottom: sr.bottom, + Left: 0, + Right: info.Size.X - 1, + } + + // Origin to which area should be copied + destOrigin := COORD{ + X: 0, + Y: sr.top - int16(param), + } + + char := CHAR_INFO{ + UnicodeChar: ' ', + Attributes: h.attributes, + } + + if err := ScrollConsoleScreenBuffer(h.fd, scrollRect, scrollRect, destOrigin, char); err != nil { + return err + } + return nil +} + +func (h *windowsAnsiEventHandler) deleteCharacters(param int) error { + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + return h.scrollLine(param, info.CursorPosition, info) +} + +func (h *windowsAnsiEventHandler) insertCharacters(param int) error { + return h.deleteCharacters(-param) +} + +// scrollLine scrolls a line horizontally starting at the provided position by a number of columns. +func (h *windowsAnsiEventHandler) scrollLine(columns int, position COORD, info *CONSOLE_SCREEN_BUFFER_INFO) error { + // Copy from and clip to the scroll region (full buffer width) + scrollRect := SMALL_RECT{ + Top: position.Y, + Bottom: position.Y, + Left: position.X, + Right: info.Size.X - 1, + } + + // Origin to which area should be copied + destOrigin := COORD{ + X: position.X - int16(columns), + Y: position.Y, + } + + char := CHAR_INFO{ + UnicodeChar: ' ', + Attributes: h.attributes, + } + + if err := ScrollConsoleScreenBuffer(h.fd, scrollRect, scrollRect, destOrigin, char); err != nil { + return err + } + return nil +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/utilities.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/utilities.go new file mode 100644 index 0000000000..afa7635d77 --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/utilities.go @@ -0,0 +1,9 @@ +// +build windows + +package winterm + +// AddInRange increments a value by the passed quantity while ensuring the values +// always remain within the supplied min / max range. +func addInRange(n int16, increment int16, min int16, max int16) int16 { + return ensureInRange(n+increment, min, max) +} diff --git a/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/win_event_handler.go b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/win_event_handler.go new file mode 100644 index 0000000000..2d40fb75ad --- /dev/null +++ b/tests/e2e/vendor/github.com/Azure/go-ansiterm/winterm/win_event_handler.go @@ -0,0 +1,743 @@ +// +build windows + +package winterm + +import ( + "bytes" + "log" + "os" + "strconv" + + "github.com/Azure/go-ansiterm" +) + +type windowsAnsiEventHandler struct { + fd uintptr + file *os.File + infoReset *CONSOLE_SCREEN_BUFFER_INFO + sr scrollRegion + buffer bytes.Buffer + attributes uint16 + inverted bool + wrapNext bool + drewMarginByte bool + originMode bool + marginByte byte + curInfo *CONSOLE_SCREEN_BUFFER_INFO + curPos COORD + logf func(string, ...interface{}) +} + +type Option func(*windowsAnsiEventHandler) + +func WithLogf(f func(string, ...interface{})) Option { + return func(w *windowsAnsiEventHandler) { + w.logf = f + } +} + +func CreateWinEventHandler(fd uintptr, file *os.File, opts ...Option) ansiterm.AnsiEventHandler { + infoReset, err := GetConsoleScreenBufferInfo(fd) + if err != nil { + return nil + } + + h := &windowsAnsiEventHandler{ + fd: fd, + file: file, + infoReset: infoReset, + attributes: infoReset.Attributes, + } + for _, o := range opts { + o(h) + } + + if isDebugEnv := os.Getenv(ansiterm.LogEnv); isDebugEnv == "1" { + logFile, _ := os.Create("winEventHandler.log") + logger := log.New(logFile, "", log.LstdFlags) + if h.logf != nil { + l := h.logf + h.logf = func(s string, v ...interface{}) { + l(s, v...) + logger.Printf(s, v...) + } + } else { + h.logf = logger.Printf + } + } + + if h.logf == nil { + h.logf = func(string, ...interface{}) {} + } + + return h +} + +type scrollRegion struct { + top int16 + bottom int16 +} + +// simulateLF simulates a LF or CR+LF by scrolling if necessary to handle the +// current cursor position and scroll region settings, in which case it returns +// true. If no special handling is necessary, then it does nothing and returns +// false. +// +// In the false case, the caller should ensure that a carriage return +// and line feed are inserted or that the text is otherwise wrapped. +func (h *windowsAnsiEventHandler) simulateLF(includeCR bool) (bool, error) { + if h.wrapNext { + if err := h.Flush(); err != nil { + return false, err + } + h.clearWrap() + } + pos, info, err := h.getCurrentInfo() + if err != nil { + return false, err + } + sr := h.effectiveSr(info.Window) + if pos.Y == sr.bottom { + // Scrolling is necessary. Let Windows automatically scroll if the scrolling region + // is the full window. + if sr.top == info.Window.Top && sr.bottom == info.Window.Bottom { + if includeCR { + pos.X = 0 + h.updatePos(pos) + } + return false, nil + } + + // A custom scroll region is active. Scroll the window manually to simulate + // the LF. + if err := h.Flush(); err != nil { + return false, err + } + h.logf("Simulating LF inside scroll region") + if err := h.scrollUp(1); err != nil { + return false, err + } + if includeCR { + pos.X = 0 + if err := SetConsoleCursorPosition(h.fd, pos); err != nil { + return false, err + } + } + return true, nil + + } else if pos.Y < info.Window.Bottom { + // Let Windows handle the LF. + pos.Y++ + if includeCR { + pos.X = 0 + } + h.updatePos(pos) + return false, nil + } else { + // The cursor is at the bottom of the screen but outside the scroll + // region. Skip the LF. + h.logf("Simulating LF outside scroll region") + if includeCR { + if err := h.Flush(); err != nil { + return false, err + } + pos.X = 0 + if err := SetConsoleCursorPosition(h.fd, pos); err != nil { + return false, err + } + } + return true, nil + } +} + +// executeLF executes a LF without a CR. +func (h *windowsAnsiEventHandler) executeLF() error { + handled, err := h.simulateLF(false) + if err != nil { + return err + } + if !handled { + // Windows LF will reset the cursor column position. Write the LF + // and restore the cursor position. + pos, _, err := h.getCurrentInfo() + if err != nil { + return err + } + h.buffer.WriteByte(ansiterm.ANSI_LINE_FEED) + if pos.X != 0 { + if err := h.Flush(); err != nil { + return err + } + h.logf("Resetting cursor position for LF without CR") + if err := SetConsoleCursorPosition(h.fd, pos); err != nil { + return err + } + } + } + return nil +} + +func (h *windowsAnsiEventHandler) Print(b byte) error { + if h.wrapNext { + h.buffer.WriteByte(h.marginByte) + h.clearWrap() + if _, err := h.simulateLF(true); err != nil { + return err + } + } + pos, info, err := h.getCurrentInfo() + if err != nil { + return err + } + if pos.X == info.Size.X-1 { + h.wrapNext = true + h.marginByte = b + } else { + pos.X++ + h.updatePos(pos) + h.buffer.WriteByte(b) + } + return nil +} + +func (h *windowsAnsiEventHandler) Execute(b byte) error { + switch b { + case ansiterm.ANSI_TAB: + h.logf("Execute(TAB)") + // Move to the next tab stop, but preserve auto-wrap if already set. + if !h.wrapNext { + pos, info, err := h.getCurrentInfo() + if err != nil { + return err + } + pos.X = (pos.X + 8) - pos.X%8 + if pos.X >= info.Size.X { + pos.X = info.Size.X - 1 + } + if err := h.Flush(); err != nil { + return err + } + if err := SetConsoleCursorPosition(h.fd, pos); err != nil { + return err + } + } + return nil + + case ansiterm.ANSI_BEL: + h.buffer.WriteByte(ansiterm.ANSI_BEL) + return nil + + case ansiterm.ANSI_BACKSPACE: + if h.wrapNext { + if err := h.Flush(); err != nil { + return err + } + h.clearWrap() + } + pos, _, err := h.getCurrentInfo() + if err != nil { + return err + } + if pos.X > 0 { + pos.X-- + h.updatePos(pos) + h.buffer.WriteByte(ansiterm.ANSI_BACKSPACE) + } + return nil + + case ansiterm.ANSI_VERTICAL_TAB, ansiterm.ANSI_FORM_FEED: + // Treat as true LF. + return h.executeLF() + + case ansiterm.ANSI_LINE_FEED: + // Simulate a CR and LF for now since there is no way in go-ansiterm + // to tell if the LF should include CR (and more things break when it's + // missing than when it's incorrectly added). + handled, err := h.simulateLF(true) + if handled || err != nil { + return err + } + return h.buffer.WriteByte(ansiterm.ANSI_LINE_FEED) + + case ansiterm.ANSI_CARRIAGE_RETURN: + if h.wrapNext { + if err := h.Flush(); err != nil { + return err + } + h.clearWrap() + } + pos, _, err := h.getCurrentInfo() + if err != nil { + return err + } + if pos.X != 0 { + pos.X = 0 + h.updatePos(pos) + h.buffer.WriteByte(ansiterm.ANSI_CARRIAGE_RETURN) + } + return nil + + default: + return nil + } +} + +func (h *windowsAnsiEventHandler) CUU(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("CUU: [%v]", []string{strconv.Itoa(param)}) + h.clearWrap() + return h.moveCursorVertical(-param) +} + +func (h *windowsAnsiEventHandler) CUD(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("CUD: [%v]", []string{strconv.Itoa(param)}) + h.clearWrap() + return h.moveCursorVertical(param) +} + +func (h *windowsAnsiEventHandler) CUF(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("CUF: [%v]", []string{strconv.Itoa(param)}) + h.clearWrap() + return h.moveCursorHorizontal(param) +} + +func (h *windowsAnsiEventHandler) CUB(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("CUB: [%v]", []string{strconv.Itoa(param)}) + h.clearWrap() + return h.moveCursorHorizontal(-param) +} + +func (h *windowsAnsiEventHandler) CNL(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("CNL: [%v]", []string{strconv.Itoa(param)}) + h.clearWrap() + return h.moveCursorLine(param) +} + +func (h *windowsAnsiEventHandler) CPL(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("CPL: [%v]", []string{strconv.Itoa(param)}) + h.clearWrap() + return h.moveCursorLine(-param) +} + +func (h *windowsAnsiEventHandler) CHA(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("CHA: [%v]", []string{strconv.Itoa(param)}) + h.clearWrap() + return h.moveCursorColumn(param) +} + +func (h *windowsAnsiEventHandler) VPA(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("VPA: [[%d]]", param) + h.clearWrap() + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + window := h.getCursorWindow(info) + position := info.CursorPosition + position.Y = window.Top + int16(param) - 1 + return h.setCursorPosition(position, window) +} + +func (h *windowsAnsiEventHandler) CUP(row int, col int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("CUP: [[%d %d]]", row, col) + h.clearWrap() + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + + window := h.getCursorWindow(info) + position := COORD{window.Left + int16(col) - 1, window.Top + int16(row) - 1} + return h.setCursorPosition(position, window) +} + +func (h *windowsAnsiEventHandler) HVP(row int, col int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("HVP: [[%d %d]]", row, col) + h.clearWrap() + return h.CUP(row, col) +} + +func (h *windowsAnsiEventHandler) DECTCEM(visible bool) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("DECTCEM: [%v]", []string{strconv.FormatBool(visible)}) + h.clearWrap() + return nil +} + +func (h *windowsAnsiEventHandler) DECOM(enable bool) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("DECOM: [%v]", []string{strconv.FormatBool(enable)}) + h.clearWrap() + h.originMode = enable + return h.CUP(1, 1) +} + +func (h *windowsAnsiEventHandler) DECCOLM(use132 bool) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("DECCOLM: [%v]", []string{strconv.FormatBool(use132)}) + h.clearWrap() + if err := h.ED(2); err != nil { + return err + } + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + targetWidth := int16(80) + if use132 { + targetWidth = 132 + } + if info.Size.X < targetWidth { + if err := SetConsoleScreenBufferSize(h.fd, COORD{targetWidth, info.Size.Y}); err != nil { + h.logf("set buffer failed: %v", err) + return err + } + } + window := info.Window + window.Left = 0 + window.Right = targetWidth - 1 + if err := SetConsoleWindowInfo(h.fd, true, window); err != nil { + h.logf("set window failed: %v", err) + return err + } + if info.Size.X > targetWidth { + if err := SetConsoleScreenBufferSize(h.fd, COORD{targetWidth, info.Size.Y}); err != nil { + h.logf("set buffer failed: %v", err) + return err + } + } + return SetConsoleCursorPosition(h.fd, COORD{0, 0}) +} + +func (h *windowsAnsiEventHandler) ED(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("ED: [%v]", []string{strconv.Itoa(param)}) + h.clearWrap() + + // [J -- Erases from the cursor to the end of the screen, including the cursor position. + // [1J -- Erases from the beginning of the screen to the cursor, including the cursor position. + // [2J -- Erases the complete display. The cursor does not move. + // Notes: + // -- Clearing the entire buffer, versus just the Window, works best for Windows Consoles + + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + + var start COORD + var end COORD + + switch param { + case 0: + start = info.CursorPosition + end = COORD{info.Size.X - 1, info.Size.Y - 1} + + case 1: + start = COORD{0, 0} + end = info.CursorPosition + + case 2: + start = COORD{0, 0} + end = COORD{info.Size.X - 1, info.Size.Y - 1} + } + + err = h.clearRange(h.attributes, start, end) + if err != nil { + return err + } + + // If the whole buffer was cleared, move the window to the top while preserving + // the window-relative cursor position. + if param == 2 { + pos := info.CursorPosition + window := info.Window + pos.Y -= window.Top + window.Bottom -= window.Top + window.Top = 0 + if err := SetConsoleCursorPosition(h.fd, pos); err != nil { + return err + } + if err := SetConsoleWindowInfo(h.fd, true, window); err != nil { + return err + } + } + + return nil +} + +func (h *windowsAnsiEventHandler) EL(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("EL: [%v]", strconv.Itoa(param)) + h.clearWrap() + + // [K -- Erases from the cursor to the end of the line, including the cursor position. + // [1K -- Erases from the beginning of the line to the cursor, including the cursor position. + // [2K -- Erases the complete line. + + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + + var start COORD + var end COORD + + switch param { + case 0: + start = info.CursorPosition + end = COORD{info.Size.X, info.CursorPosition.Y} + + case 1: + start = COORD{0, info.CursorPosition.Y} + end = info.CursorPosition + + case 2: + start = COORD{0, info.CursorPosition.Y} + end = COORD{info.Size.X, info.CursorPosition.Y} + } + + err = h.clearRange(h.attributes, start, end) + if err != nil { + return err + } + + return nil +} + +func (h *windowsAnsiEventHandler) IL(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("IL: [%v]", strconv.Itoa(param)) + h.clearWrap() + return h.insertLines(param) +} + +func (h *windowsAnsiEventHandler) DL(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("DL: [%v]", strconv.Itoa(param)) + h.clearWrap() + return h.deleteLines(param) +} + +func (h *windowsAnsiEventHandler) ICH(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("ICH: [%v]", strconv.Itoa(param)) + h.clearWrap() + return h.insertCharacters(param) +} + +func (h *windowsAnsiEventHandler) DCH(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("DCH: [%v]", strconv.Itoa(param)) + h.clearWrap() + return h.deleteCharacters(param) +} + +func (h *windowsAnsiEventHandler) SGR(params []int) error { + if err := h.Flush(); err != nil { + return err + } + strings := []string{} + for _, v := range params { + strings = append(strings, strconv.Itoa(v)) + } + + h.logf("SGR: [%v]", strings) + + if len(params) <= 0 { + h.attributes = h.infoReset.Attributes + h.inverted = false + } else { + for _, attr := range params { + + if attr == ansiterm.ANSI_SGR_RESET { + h.attributes = h.infoReset.Attributes + h.inverted = false + continue + } + + h.attributes, h.inverted = collectAnsiIntoWindowsAttributes(h.attributes, h.inverted, h.infoReset.Attributes, int16(attr)) + } + } + + attributes := h.attributes + if h.inverted { + attributes = invertAttributes(attributes) + } + err := SetConsoleTextAttribute(h.fd, attributes) + if err != nil { + return err + } + + return nil +} + +func (h *windowsAnsiEventHandler) SU(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("SU: [%v]", []string{strconv.Itoa(param)}) + h.clearWrap() + return h.scrollUp(param) +} + +func (h *windowsAnsiEventHandler) SD(param int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("SD: [%v]", []string{strconv.Itoa(param)}) + h.clearWrap() + return h.scrollDown(param) +} + +func (h *windowsAnsiEventHandler) DA(params []string) error { + h.logf("DA: [%v]", params) + // DA cannot be implemented because it must send data on the VT100 input stream, + // which is not available to go-ansiterm. + return nil +} + +func (h *windowsAnsiEventHandler) DECSTBM(top int, bottom int) error { + if err := h.Flush(); err != nil { + return err + } + h.logf("DECSTBM: [%d, %d]", top, bottom) + + // Windows is 0 indexed, Linux is 1 indexed + h.sr.top = int16(top - 1) + h.sr.bottom = int16(bottom - 1) + + // This command also moves the cursor to the origin. + h.clearWrap() + return h.CUP(1, 1) +} + +func (h *windowsAnsiEventHandler) RI() error { + if err := h.Flush(); err != nil { + return err + } + h.logf("RI: []") + h.clearWrap() + + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + + sr := h.effectiveSr(info.Window) + if info.CursorPosition.Y == sr.top { + return h.scrollDown(1) + } + + return h.moveCursorVertical(-1) +} + +func (h *windowsAnsiEventHandler) IND() error { + h.logf("IND: []") + return h.executeLF() +} + +func (h *windowsAnsiEventHandler) Flush() error { + h.curInfo = nil + if h.buffer.Len() > 0 { + h.logf("Flush: [%s]", h.buffer.Bytes()) + if _, err := h.buffer.WriteTo(h.file); err != nil { + return err + } + } + + if h.wrapNext && !h.drewMarginByte { + h.logf("Flush: drawing margin byte '%c'", h.marginByte) + + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return err + } + + charInfo := []CHAR_INFO{{UnicodeChar: uint16(h.marginByte), Attributes: info.Attributes}} + size := COORD{1, 1} + position := COORD{0, 0} + region := SMALL_RECT{Left: info.CursorPosition.X, Top: info.CursorPosition.Y, Right: info.CursorPosition.X, Bottom: info.CursorPosition.Y} + if err := WriteConsoleOutput(h.fd, charInfo, size, position, ®ion); err != nil { + return err + } + h.drewMarginByte = true + } + return nil +} + +// cacheConsoleInfo ensures that the current console screen information has been queried +// since the last call to Flush(). It must be called before accessing h.curInfo or h.curPos. +func (h *windowsAnsiEventHandler) getCurrentInfo() (COORD, *CONSOLE_SCREEN_BUFFER_INFO, error) { + if h.curInfo == nil { + info, err := GetConsoleScreenBufferInfo(h.fd) + if err != nil { + return COORD{}, nil, err + } + h.curInfo = info + h.curPos = info.CursorPosition + } + return h.curPos, h.curInfo, nil +} + +func (h *windowsAnsiEventHandler) updatePos(pos COORD) { + if h.curInfo == nil { + panic("failed to call getCurrentInfo before calling updatePos") + } + h.curPos = pos +} + +// clearWrap clears the state where the cursor is in the margin +// waiting for the next character before wrapping the line. This must +// be done before most operations that act on the cursor. +func (h *windowsAnsiEventHandler) clearWrap() { + h.wrapNext = false + h.drewMarginByte = false +} diff --git a/tests/e2e/vendor/github.com/MakeNowJust/heredoc/LICENSE b/tests/e2e/vendor/github.com/MakeNowJust/heredoc/LICENSE new file mode 100644 index 0000000000..6d0eb9d5d6 --- /dev/null +++ b/tests/e2e/vendor/github.com/MakeNowJust/heredoc/LICENSE @@ -0,0 +1,21 @@ +The MIT License (MIT) + +Copyright (c) 2014-2019 TSUYUSATO Kitsune + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in +all copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN +THE SOFTWARE. diff --git a/tests/e2e/vendor/github.com/MakeNowJust/heredoc/README.md b/tests/e2e/vendor/github.com/MakeNowJust/heredoc/README.md new file mode 100644 index 0000000000..e9924d2974 --- /dev/null +++ b/tests/e2e/vendor/github.com/MakeNowJust/heredoc/README.md @@ -0,0 +1,52 @@ +# heredoc + +[![Build Status](https://circleci.com/gh/MakeNowJust/heredoc.svg?style=svg)](https://circleci.com/gh/MakeNowJust/heredoc) [![GoDoc](https://godoc.org/github.com/MakeNowJusti/heredoc?status.svg)](https://godoc.org/github.com/MakeNowJust/heredoc) + +## About + +Package heredoc provides the here-document with keeping indent. + +## Install + +```console +$ go get github.com/MakeNowJust/heredoc +``` + +## Import + +```go +// usual +import "github.com/MakeNowJust/heredoc" +``` + +## Example + +```go +package main + +import ( + "fmt" + "github.com/MakeNowJust/heredoc" +) + +func main() { + fmt.Println(heredoc.Doc(` + Lorem ipsum dolor sit amet, consectetur adipisicing elit, + sed do eiusmod tempor incididunt ut labore et dolore magna + aliqua. Ut enim ad minim veniam, ... + `)) + // Output: + // Lorem ipsum dolor sit amet, consectetur adipisicing elit, + // sed do eiusmod tempor incididunt ut labore et dolore magna + // aliqua. Ut enim ad minim veniam, ... + // +} +``` + +## API Document + + - [heredoc - GoDoc](https://godoc.org/github.com/MakeNowJust/heredoc) + +## License + +This software is released under the MIT License, see LICENSE. diff --git a/tests/e2e/vendor/github.com/MakeNowJust/heredoc/heredoc.go b/tests/e2e/vendor/github.com/MakeNowJust/heredoc/heredoc.go new file mode 100644 index 0000000000..1fc0469555 --- /dev/null +++ b/tests/e2e/vendor/github.com/MakeNowJust/heredoc/heredoc.go @@ -0,0 +1,105 @@ +// Copyright (c) 2014-2019 TSUYUSATO Kitsune +// This software is released under the MIT License. +// http://opensource.org/licenses/mit-license.php + +// Package heredoc provides creation of here-documents from raw strings. +// +// Golang supports raw-string syntax. +// +// doc := ` +// Foo +// Bar +// ` +// +// But raw-string cannot recognize indentation. Thus such content is an indented string, equivalent to +// +// "\n\tFoo\n\tBar\n" +// +// I dont't want this! +// +// However this problem is solved by package heredoc. +// +// doc := heredoc.Doc(` +// Foo +// Bar +// `) +// +// Is equivalent to +// +// "Foo\nBar\n" +package heredoc + +import ( + "fmt" + "strings" + "unicode" +) + +const maxInt = int(^uint(0) >> 1) + +// Doc returns un-indented string as here-document. +func Doc(raw string) string { + skipFirstLine := false + if len(raw) > 0 && raw[0] == '\n' { + raw = raw[1:] + } else { + skipFirstLine = true + } + + lines := strings.Split(raw, "\n") + + minIndentSize := getMinIndent(lines, skipFirstLine) + lines = removeIndentation(lines, minIndentSize, skipFirstLine) + + return strings.Join(lines, "\n") +} + +// getMinIndent calculates the minimum indentation in lines, excluding empty lines. +func getMinIndent(lines []string, skipFirstLine bool) int { + minIndentSize := maxInt + + for i, line := range lines { + if i == 0 && skipFirstLine { + continue + } + + indentSize := 0 + for _, r := range []rune(line) { + if unicode.IsSpace(r) { + indentSize += 1 + } else { + break + } + } + + if len(line) == indentSize { + if i == len(lines)-1 && indentSize < minIndentSize { + lines[i] = "" + } + } else if indentSize < minIndentSize { + minIndentSize = indentSize + } + } + return minIndentSize +} + +// removeIndentation removes n characters from the front of each line in lines. +// Skips first line if skipFirstLine is true, skips empty lines. +func removeIndentation(lines []string, n int, skipFirstLine bool) []string { + for i, line := range lines { + if i == 0 && skipFirstLine { + continue + } + + if len(lines[i]) >= n { + lines[i] = line[n:] + } + } + return lines +} + +// Docf returns unindented and formatted string as here-document. +// Formatting is done as for fmt.Printf(). +func Docf(raw string, args ...interface{}) string { + return fmt.Sprintf(Doc(raw), args...) +} diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/antlrdoc.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/antlrdoc.go index 3bb4fd7c4e..48bd362bf5 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/antlrdoc.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/antlrdoc.go @@ -17,9 +17,9 @@ ANTLR4 that it is compatible with (I.E. uses the /v4 path). However, this was found to be problematic, as it meant that with the runtime embedded so far underneath the root of the repo, the `go get` and related commands could not properly resolve the location of the go runtime source code. This meant that the reference to the runtime in your `go.mod` file would refer to the correct source code, but would not -list the release tag such as @4.12.0 - this was confusing, to say the least. +list the release tag such as @4.13.1 - this was confusing, to say the least. -As of 4.12.1, the runtime is now available as a go module in its own repo, and can be imported as `github.com/antlr4-go/antlr` +As of 4.13.0, the runtime is now available as a go module in its own repo, and can be imported as `github.com/antlr4-go/antlr` (the go get command should also be used with this path). See the main documentation for the ANTLR4 project for more information, which is available at [ANTLR docs]. The documentation for using the Go runtime is available at [Go runtime docs]. @@ -49,7 +49,7 @@ Here is a general/recommended template for an ANTLR based recognizer in Go: . ├── parser │ ├── mygrammar.g4 - │ ├── antlr-4.12.1-complete.jar + │ ├── antlr-4.13.1-complete.jar │ ├── generate.go │ └── generate.sh ├── parsing - generated code goes here @@ -71,7 +71,7 @@ And the generate.sh file will look similar to this: #!/bin/sh - alias antlr4='java -Xmx500M -cp "./antlr4-4.12.1-complete.jar:$CLASSPATH" org.antlr.v4.Tool' + alias antlr4='java -Xmx500M -cp "./antlr4-4.13.1-complete.jar:$CLASSPATH" org.antlr.v4.Tool' antlr4 -Dlanguage=Go -no-visitor -package parsing *.g4 depending on whether you want visitors or listeners or any other ANTLR options. Not that another option here diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/atn.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/atn.go index cdeefed247..e749ebd0cf 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/atn.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/atn.go @@ -4,8 +4,6 @@ package antlr -import "sync" - // ATNInvalidAltNumber is used to represent an ALT number that has yet to be calculated or // which is invalid for a particular struct such as [*antlr.BaseRuleContext] var ATNInvalidAltNumber int @@ -56,9 +54,9 @@ type ATN struct { // states []ATNState - mu sync.Mutex - stateMu sync.RWMutex - edgeMu sync.RWMutex + mu Mutex + stateMu RWMutex + edgeMu RWMutex } // NewATN returns a new ATN struct representing the given grammarType and is used diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/atn_config.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/atn_config.go index a83f25d349..267308bb3d 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/atn_config.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/atn_config.go @@ -73,9 +73,6 @@ func NewATNConfig1(c *ATNConfig, state ATNState, context *PredictionContext) *AT // NewATNConfig creates a new ATNConfig instance given an existing config, a state, a context and a semantic context, other 'constructors' // are just wrappers around this one. func NewATNConfig(c *ATNConfig, state ATNState, context *PredictionContext, semanticContext SemanticContext) *ATNConfig { - if semanticContext == nil { - panic("semanticContext cannot be nil") // TODO: Remove this - probably put here for some bug that is now fixed - } b := &ATNConfig{} b.InitATNConfig(c, state, c.GetAlt(), context, semanticContext) b.cType = parserConfig diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/input_stream.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/input_stream.go index b737fe85fb..ab4e96be52 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/input_stream.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/input_stream.go @@ -148,7 +148,7 @@ func (is *InputStream) GetTextFromInterval(i Interval) string { } func (*InputStream) GetSourceName() string { - return "" + return "Obtained from string" } // String returns the entire input stream as a string diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/jcollect.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/jcollect.go index ceccd96d25..6d668f7983 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/jcollect.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/jcollect.go @@ -8,7 +8,6 @@ import ( "container/list" "runtime/debug" "sort" - "sync" ) // Collectable is an interface that a struct should implement if it is to be @@ -587,12 +586,12 @@ type VisitRecord struct { type VisitList struct { cache *list.List - lock sync.RWMutex + lock RWMutex } var visitListPool = VisitList{ cache: list.New(), - lock: sync.RWMutex{}, + lock: RWMutex{}, } // NewVisitRecord returns a new VisitRecord instance from the pool if available. diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/lexer.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/lexer.go index 3c7896a918..e5594b2168 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/lexer.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/lexer.go @@ -207,7 +207,7 @@ func (b *BaseLexer) NextToken() Token { for { b.thetype = TokenInvalidType - ttype := b.safeMatch() + ttype := b.safeMatch() // Defaults to LexerSkip if b.input.LA(1) == TokenEOF { b.hitEOF = true diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/ll1_analyzer.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/ll1_analyzer.go index 4955ac876f..dfdff000bc 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/ll1_analyzer.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/ll1_analyzer.go @@ -40,6 +40,7 @@ func (la *LL1Analyzer) getDecisionLookahead(s ATNState) []*IntervalSet { for alt := 0; alt < count; alt++ { look[alt] = NewIntervalSet() + // TODO: This is one of the reasons that ATNConfigs are allocated and freed all the time - fix this tomorrow jim! lookBusy := NewJStore[*ATNConfig, Comparator[*ATNConfig]](aConfEqInst, ClosureBusyCollection, "LL1Analyzer.getDecisionLookahead for lookBusy") la.look1(s.GetTransitions()[alt].getTarget(), nil, BasePredictionContextEMPTY, look[alt], lookBusy, NewBitSet(), false, false) diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/mutex.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/mutex.go new file mode 100644 index 0000000000..2b0cda4745 --- /dev/null +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/mutex.go @@ -0,0 +1,41 @@ +//go:build !antlr.nomutex +// +build !antlr.nomutex + +package antlr + +import "sync" + +// Mutex is a simple mutex implementation which just delegates to sync.Mutex, it +// is used to provide a mutex implementation for the antlr package, which users +// can turn off with the build tag -tags antlr.nomutex +type Mutex struct { + mu sync.Mutex +} + +func (m *Mutex) Lock() { + m.mu.Lock() +} + +func (m *Mutex) Unlock() { + m.mu.Unlock() +} + +type RWMutex struct { + mu sync.RWMutex +} + +func (m *RWMutex) Lock() { + m.mu.Lock() +} + +func (m *RWMutex) Unlock() { + m.mu.Unlock() +} + +func (m *RWMutex) RLock() { + m.mu.RLock() +} + +func (m *RWMutex) RUnlock() { + m.mu.RUnlock() +} diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/mutex_nomutex.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/mutex_nomutex.go new file mode 100644 index 0000000000..35ce4353ee --- /dev/null +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/mutex_nomutex.go @@ -0,0 +1,32 @@ +//go:build antlr.nomutex +// +build antlr.nomutex + +package antlr + +type Mutex struct{} + +func (m *Mutex) Lock() { + // No-op +} + +func (m *Mutex) Unlock() { + // No-op +} + +type RWMutex struct{} + +func (m *RWMutex) Lock() { + // No-op +} + +func (m *RWMutex) Unlock() { + // No-op +} + +func (m *RWMutex) RLock() { + // No-op +} + +func (m *RWMutex) RUnlock() { + // No-op +} diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/parser_atn_simulator.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/parser_atn_simulator.go index ae2869692a..724fa17a19 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/parser_atn_simulator.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/parser_atn_simulator.go @@ -10,8 +10,6 @@ import ( "strings" ) -var () - // ClosureBusy is a store of ATNConfigs and is a tiny abstraction layer over // a standard JStore so that we can use Lazy instantiation of the JStore, mostly // to avoid polluting the stats module with a ton of JStore instances with nothing in them. @@ -883,7 +881,7 @@ func (p *ParserATNSimulator) getPredicatePredictions(ambigAlts *BitSet, altToPre // the ERROR state was reached, outerContext as the initial parser context from the paper // or the parser stack at the instant before prediction commences. // -// Teh func returns the value to return from [AdaptivePredict], or +// The func returns the value to return from [AdaptivePredict], or // [ATNInvalidAltNumber] if a suitable alternative was not // identified and [AdaptivePredict] should report an error instead. func (p *ParserATNSimulator) getSynValidOrSemInvalidAltThatFinishedDecisionEntryRule(configs *ATNConfigSet, outerContext ParserRuleContext) int { diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/prediction_context.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/prediction_context.go index c1b80cc1f0..a1d5186b8f 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/prediction_context.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/prediction_context.go @@ -6,7 +6,6 @@ package antlr import ( "fmt" - "golang.org/x/exp/slices" "strconv" ) @@ -101,7 +100,7 @@ func NewArrayPredictionContext(parents []*PredictionContext, returnStates []int) hash = murmurUpdate(hash, returnState) } hash = murmurFinish(hash, len(parents)<<1) - + nec := &PredictionContext{} nec.cachedHash = hash nec.pcType = PredictionContextArray @@ -115,6 +114,9 @@ func (p *PredictionContext) Hash() int { } func (p *PredictionContext) Equals(other Collectable[*PredictionContext]) bool { + if p == other { + return true + } switch p.pcType { case PredictionContextEmpty: otherP := other.(*PredictionContext) @@ -138,13 +140,11 @@ func (p *PredictionContext) ArrayEquals(o Collectable[*PredictionContext]) bool if p.cachedHash != other.Hash() { return false // can't be same if hash is different } - + // Must compare the actual array elements and not just the array address // - return slices.Equal(p.returnStates, other.returnStates) && - slices.EqualFunc(p.parents, other.parents, func(x, y *PredictionContext) bool { - return x.Equals(y) - }) + return intSlicesEqual(p.returnStates, other.returnStates) && + pcSliceEqual(p.parents, other.parents) } func (p *PredictionContext) SingletonEquals(other Collectable[*PredictionContext]) bool { @@ -152,23 +152,23 @@ func (p *PredictionContext) SingletonEquals(other Collectable[*PredictionContext return false } otherP := other.(*PredictionContext) - if otherP == nil { + if otherP == nil || otherP.pcType != PredictionContextSingleton { return false } - + if p.cachedHash != otherP.Hash() { return false // Can't be same if hash is different } - + if p.returnState != otherP.getReturnState(0) { return false } - + // Both parents must be nil if one is if p.parentCtx == nil { return otherP.parentCtx == nil } - + return p.parentCtx.Equals(otherP.parentCtx) } @@ -225,27 +225,27 @@ func (p *PredictionContext) String() string { return "$" case PredictionContextSingleton: var up string - + if p.parentCtx == nil { up = "" } else { up = p.parentCtx.String() } - + if len(up) == 0 { if p.returnState == BasePredictionContextEmptyReturnState { return "$" } - + return strconv.Itoa(p.returnState) } - + return strconv.Itoa(p.returnState) + " " + up case PredictionContextArray: if p.isEmpty() { return "[]" } - + s := "[" for i := 0; i < len(p.returnStates); i++ { if i > 0 { @@ -263,7 +263,7 @@ func (p *PredictionContext) String() string { } } return s + "]" - + default: return "unknown" } @@ -309,18 +309,18 @@ func predictionContextFromRuleContext(a *ATN, outerContext RuleContext) *Predict parent := predictionContextFromRuleContext(a, outerContext.GetParent().(RuleContext)) state := a.states[outerContext.GetInvokingState()] transition := state.GetTransitions()[0] - + return SingletonBasePredictionContextCreate(parent, transition.(*RuleTransition).followState.GetStateNumber()) } func merge(a, b *PredictionContext, rootIsWildcard bool, mergeCache *JPCMap) *PredictionContext { - + // Share same graph if both same // if a == b || a.Equals(b) { return a } - + if a.pcType == PredictionContextSingleton && b.pcType == PredictionContextSingleton { return mergeSingletons(a, b, rootIsWildcard, mergeCache) } @@ -334,7 +334,7 @@ func merge(a, b *PredictionContext, rootIsWildcard bool, mergeCache *JPCMap) *Pr return b } } - + // Convert either Singleton or Empty to arrays, so that we can merge them // ara := convertToArray(a) @@ -395,7 +395,7 @@ func mergeSingletons(a, b *PredictionContext, rootIsWildcard bool, mergeCache *J return previous } } - + rootMerge := mergeRoot(a, b, rootIsWildcard) if rootMerge != nil { if mergeCache != nil { @@ -564,7 +564,7 @@ func mergeArrays(a, b *PredictionContext, rootIsWildcard bool, mergeCache *JPCMa i := 0 // walks a j := 0 // walks b k := 0 // walks target M array - + mergedReturnStates := make([]int, len(a.returnStates)+len(b.returnStates)) mergedParents := make([]*PredictionContext, len(a.returnStates)+len(b.returnStates)) // walk and merge to yield mergedParents, mergedReturnStates @@ -626,9 +626,9 @@ func mergeArrays(a, b *PredictionContext, rootIsWildcard bool, mergeCache *JPCMa mergedParents = mergedParents[0:k] mergedReturnStates = mergedReturnStates[0:k] } - + M := NewArrayPredictionContext(mergedParents, mergedReturnStates) - + // if we created same array as a or b, return that instead // TODO: JI track whether this is possible above during merge sort for speed and possibly avoid an allocation if M.Equals(a) { @@ -650,7 +650,7 @@ func mergeArrays(a, b *PredictionContext, rootIsWildcard bool, mergeCache *JPCMa return b } combineCommonParents(&mergedParents) - + if mergeCache != nil { mergeCache.Put(a, b, M) } @@ -666,7 +666,7 @@ func mergeArrays(a, b *PredictionContext, rootIsWildcard bool, mergeCache *JPCMa //goland:noinspection GoUnusedFunction func combineCommonParents(parents *[]*PredictionContext) { uniqueParents := NewJStore[*PredictionContext, Comparator[*PredictionContext]](pContextEqInst, PredictionContextCollection, "combineCommonParents for PredictionContext") - + for p := 0; p < len(*parents); p++ { parent := (*parents)[p] _, _ = uniqueParents.Put(parent) @@ -685,7 +685,7 @@ func getCachedBasePredictionContext(context *PredictionContext, contextCache *Pr if present { return existing } - + existing, present = contextCache.Get(context) if present { visited.Put(context, existing) @@ -722,6 +722,6 @@ func getCachedBasePredictionContext(context *PredictionContext, contextCache *Pr contextCache.add(updated) visited.Put(updated, updated) visited.Put(context, updated) - + return updated } diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/recognizer.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/recognizer.go index 2e0b504fb3..dcb8548cd1 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/recognizer.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/recognizer.go @@ -56,7 +56,7 @@ var tokenTypeMapCache = make(map[string]int) var ruleIndexMapCache = make(map[string]int) func (b *BaseRecognizer) checkVersion(toolVersion string) { - runtimeVersion := "4.12.0" + runtimeVersion := "4.13.1" if runtimeVersion != toolVersion { fmt.Println("ANTLR runtime and generated code versions disagree: " + runtimeVersion + "!=" + toolVersion) } diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/statistics.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/statistics.go index 70c0673a0f..8cb5f3ed6f 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/statistics.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/statistics.go @@ -9,7 +9,6 @@ import ( "path/filepath" "sort" "strconv" - "sync" ) // This file allows the user to collect statistics about the runtime of the ANTLR runtime. It is not enabled by default @@ -30,7 +29,7 @@ type goRunStats struct { // within this package. // jStats []*JStatRec - jStatsLock sync.RWMutex + jStatsLock RWMutex topN int topNByMax []*JStatRec topNByUsed []*JStatRec diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/token.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/token.go index 9670efb829..f5bc34229d 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/token.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/token.go @@ -104,6 +104,25 @@ func (b *BaseToken) GetSource() *TokenSourceCharStreamPair { return b.source } +func (b *BaseToken) GetText() string { + if b.text != "" { + return b.text + } + input := b.GetInputStream() + if input == nil { + return "" + } + n := input.Size() + if b.GetStart() < n && b.GetStop() < n { + return input.GetTextFromInterval(NewInterval(b.GetStart(), b.GetStop())) + } + return "" +} + +func (b *BaseToken) SetText(text string) { + b.text = text +} + func (b *BaseToken) GetTokenIndex() int { return b.tokenIndex } @@ -120,6 +139,28 @@ func (b *BaseToken) GetInputStream() CharStream { return b.source.charStream } +func (b *BaseToken) String() string { + txt := b.GetText() + if txt != "" { + txt = strings.Replace(txt, "\n", "\\n", -1) + txt = strings.Replace(txt, "\r", "\\r", -1) + txt = strings.Replace(txt, "\t", "\\t", -1) + } else { + txt = "" + } + + var ch string + if b.GetChannel() > 0 { + ch = ",channel=" + strconv.Itoa(b.GetChannel()) + } else { + ch = "" + } + + return "[@" + strconv.Itoa(b.GetTokenIndex()) + "," + strconv.Itoa(b.GetStart()) + ":" + strconv.Itoa(b.GetStop()) + "='" + + txt + "',<" + strconv.Itoa(b.GetTokenType()) + ">" + + ch + "," + strconv.Itoa(b.GetLine()) + ":" + strconv.Itoa(b.GetColumn()) + "]" +} + type CommonToken struct { BaseToken } @@ -170,44 +211,3 @@ func (c *CommonToken) clone() *CommonToken { t.text = c.GetText() return t } - -func (c *CommonToken) GetText() string { - if c.text != "" { - return c.text - } - input := c.GetInputStream() - if input == nil { - return "" - } - n := input.Size() - if c.start < n && c.stop < n { - return input.GetTextFromInterval(NewInterval(c.start, c.stop)) - } - return "" -} - -func (c *CommonToken) SetText(text string) { - c.text = text -} - -func (c *CommonToken) String() string { - txt := c.GetText() - if txt != "" { - txt = strings.Replace(txt, "\n", "\\n", -1) - txt = strings.Replace(txt, "\r", "\\r", -1) - txt = strings.Replace(txt, "\t", "\\t", -1) - } else { - txt = "" - } - - var ch string - if c.channel > 0 { - ch = ",channel=" + strconv.Itoa(c.channel) - } else { - ch = "" - } - - return "[@" + strconv.Itoa(c.tokenIndex) + "," + strconv.Itoa(c.start) + ":" + strconv.Itoa(c.stop) + "='" + - txt + "',<" + strconv.Itoa(c.tokenType) + ">" + - ch + "," + strconv.Itoa(c.line) + ":" + strconv.Itoa(c.column) + "]" -} diff --git a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/utils.go b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/utils.go index 733d7df9dc..36a37f247a 100644 --- a/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/utils.go +++ b/tests/e2e/vendor/github.com/antlr4-go/antlr/v4/utils.go @@ -326,3 +326,56 @@ func isDirectory(dir string) (bool, error) { } return fileInfo.IsDir(), err } + +// intSlicesEqual returns true if the two slices of ints are equal, and is a little +// faster than slices.Equal. +func intSlicesEqual(s1, s2 []int) bool { + if s1 == nil && s2 == nil { + return true + } + if s1 == nil || s2 == nil { + return false + } + if len(s1) == 0 && len(s2) == 0 { + return true + } + + if len(s1) == 0 || len(s2) == 0 || len(s1) != len(s2) { + return false + } + // If the slices are using the same memory, then they are the same slice + if &s1[0] == &s2[0] { + return true + } + for i, v := range s1 { + if v != s2[i] { + return false + } + } + return true +} + +func pcSliceEqual(s1, s2 []*PredictionContext) bool { + if s1 == nil && s2 == nil { + return true + } + if s1 == nil || s2 == nil { + return false + } + if len(s1) == 0 && len(s2) == 0 { + return true + } + if len(s1) == 0 || len(s2) == 0 || len(s1) != len(s2) { + return false + } + // If the slices are using the same memory, then they are the same slice + if &s1[0] == &s2[0] { + return true + } + for i, v := range s1 { + if !v.Equals(s2[i]) { + return false + } + } + return true +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/.travis.yml b/tests/e2e/vendor/github.com/chai2010/gettext-go/.travis.yml new file mode 100644 index 0000000000..4eac3982bc --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/.travis.yml @@ -0,0 +1,5 @@ +language: go + +go: + - "1.14" + - tip diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/LICENSE b/tests/e2e/vendor/github.com/chai2010/gettext-go/LICENSE new file mode 100644 index 0000000000..8f39408250 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/LICENSE @@ -0,0 +1,27 @@ +Copyright 2013 ChaiShushan . All rights reserved. + +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are +met: + + * Redistributions of source code must retain the above copyright +notice, this list of conditions and the following disclaimer. + * Redistributions in binary form must reproduce the above +copyright notice, this list of conditions and the following disclaimer +in the documentation and/or other materials provided with the +distribution. + * Neither the name of Google Inc. nor the names of its +contributors may be used to endorse or promote products derived from +this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS +"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT +LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR +A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT +OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, +SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT +LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, +DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY +THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT +(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE +OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/README.md b/tests/e2e/vendor/github.com/chai2010/gettext-go/README.md new file mode 100644 index 0000000000..9381bd1522 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/README.md @@ -0,0 +1,191 @@ +- *赞助 BTC: 1Cbd6oGAUUyBi7X7MaR4np4nTmQZXVgkCW* +- *赞助 ETH: 0x623A3C3a72186A6336C79b18Ac1eD36e1c71A8a6* +- *Go语言付费QQ群: 1055927514* + +---- + +# gettext-go: GNU gettext for Go ([Imported By Kubernetes](https://pkg.go.dev/github.com/chai2010/gettext-go@v0.1.0/gettext?tab=importedby)) + +- PkgDoc: [http://godoc.org/github.com/chai2010/gettext-go](http://godoc.org/github.com/chai2010/gettext-go) +- PkgDoc: [http://pkg.go.dev/github.com/chai2010/gettext-go](http://pkg.go.dev/github.com/chai2010/gettext-go) + +## Install + +1. `go get github.com/chai2010/gettext-go` +2. `go run hello.go` + +The godoc.org or go.dev has more information. + +## Examples + +```Go +package main + +import ( + "fmt" + + "github.com/chai2010/gettext-go" +) + +func main() { + gettext := gettext.New("hello", "./examples/locale").SetLanguage("zh_CN") + fmt.Println(gettext.Gettext("Hello, world!")) + + // Output: 你好, 世界! +} +``` + +```Go +package main + +import ( + "fmt" + + "github.com/chai2010/gettext-go" +) + +func main() { + gettext.SetLanguage("zh_CN") + gettext.BindLocale(gettext.New("hello", "locale")) + + // gettext.BindLocale("hello", "locale") // from locale dir + // gettext.BindLocale("hello", "locale.zip") // from locale zip file + // gettext.BindLocale("hello", "locale.zip", zipData) // from embedded zip data + + // translate source text + fmt.Println(gettext.Gettext("Hello, world!")) + // Output: 你好, 世界! + + // if no msgctxt in PO file (only msgid and msgstr), + // specify context as "" by + fmt.Println(gettext.PGettext("", "Hello, world!")) + // Output: 你好, 世界! + + // translate resource + fmt.Println(string(gettext.Getdata("poems.txt")))) + // Output: ... +} +``` + +Go file: [hello.go](https://github.com/chai2010/gettext-go/blob/master/examples/hello.go); PO file: [hello.po](https://github.com/chai2010/gettext-go/blob/master/examples/locale/default/LC_MESSAGES/hello.po); + +---- + +## API Changes (v0.1.0 vs v1.0.0) + +### Renamed package path + +| v0.1.0 (old) | v1.0.0 (new) | +| ----------------------------------------------- | --------------------------------------- | +| `github.com/chai2010/gettext-go/gettext` | `github.com/chai2010/gettext-go` | +| `github.com/chai2010/gettext-go/gettext/po` | `github.com/chai2010/gettext-go/po` | +| `github.com/chai2010/gettext-go/gettext/mo` | `github.com/chai2010/gettext-go/mo` | +| `github.com/chai2010/gettext-go/gettext/plural` | `github.com/chai2010/gettext-go/plural` | + +### Renamed functions + +| v0.1.0 (old) | v1.0.0 (new) | +| ---------------------------------- | --------------------------- | +| `gettext-go/gettext.*` | `gettext-go.*` | +| `gettext-go/gettext.DefaultLocal` | `gettext-go.DefaultLanguage`| +| `gettext-go/gettext.BindTextdomain`| `gettext-go.BindLocale` | +| `gettext-go/gettext.Textdomain` | `gettext-go.SetDomain` | +| `gettext-go/gettext.SetLocale` | `gettext-go.SetLanguage` | +| `gettext-go/gettext/po.Load` | `gettext-go/po.LoadFile` | +| `gettext-go/gettext/po.LoadData` | `gettext-go/po.Load` | +| `gettext-go/gettext/mo.Load` | `gettext-go/mo.LoadFile` | +| `gettext-go/gettext/mo.LoadData` | `gettext-go/mo.Load` | + +### Use empty string as the default context for `gettext.Gettext` + +```go +package main + +// v0.1.0 +// if the **context** missing, use `callerName(2)` as the context: + +// v1.0.0 +// if the **context** missing, use empty string as the context: + +func main() { + gettext.Gettext("hello") + // v0.1.0 => gettext.PGettext("main.main", "hello") + // v1.0.0 => gettext.PGettext("", "hello") + + gettext.DGettext("domain", "hello") + // v0.1.0 => gettext.DPGettext("domain", "main.main", "hello") + // v1.0.0 => gettext.DPGettext("domain", "", "hello") + + gettext.NGettext("domain", "hello", "hello2", n) + // v0.1.0 => gettext.PNGettext("domain", "main.main", "hello", "hello2", n) + // v1.0.0 => gettext.PNGettext("domain", "", "hello", "hello2", n) + + gettext.DNGettext("domain", "hello", "hello2", n) + // v0.1.0 => gettext.DPNGettext("domain", "main.main", "hello", "hello2", n) + // v1.0.0 => gettext.DPNGettext("domain", "", "hello", "hello2", n) +} +``` + +### `BindLocale` support `FileSystem` interface + +```go +// Use FileSystem: +// BindLocale(New("poedit", "name", OS("path/to/dir"))) // bind "poedit" domain +// BindLocale(New("poedit", "name", OS("path/to.zip"))) // bind "poedit" domain +``` + +## New API in v1.0.0 + +`Gettexter` interface: + +```go +type Gettexter interface { + FileSystem() FileSystem + + GetDomain() string + SetDomain(domain string) Gettexter + + GetLanguage() string + SetLanguage(lang string) Gettexter + + Gettext(msgid string) string + PGettext(msgctxt, msgid string) string + + NGettext(msgid, msgidPlural string, n int) string + PNGettext(msgctxt, msgid, msgidPlural string, n int) string + + DGettext(domain, msgid string) string + DPGettext(domain, msgctxt, msgid string) string + DNGettext(domain, msgid, msgidPlural string, n int) string + DPNGettext(domain, msgctxt, msgid, msgidPlural string, n int) string + + Getdata(name string) []byte + DGetdata(domain, name string) []byte +} + +func New(domain, path string, data ...interface{}) Gettexter +``` + +`FileSystem` interface: + +```go +type FileSystem interface { + LocaleList() []string + LoadMessagesFile(domain, lang, ext string) ([]byte, error) + LoadResourceFile(domain, lang, name string) ([]byte, error) + String() string +} + +func NewFS(name string, x interface{}) FileSystem +func OS(root string) FileSystem +func ZipFS(r *zip.Reader, name string) FileSystem +func NilFS(name string) FileSystem +``` + +---- + +## BUGS + +Please report bugs to . + +Thanks! diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/doc.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/doc.go new file mode 100644 index 0000000000..50dfea3305 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/doc.go @@ -0,0 +1,67 @@ +// Copyright 2013 . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +/* +Package gettext implements a basic GNU's gettext library. + +Example: + import ( + "github.com/chai2010/gettext-go" + ) + + func main() { + gettext.SetLanguage("zh_CN") + + // gettext.BindLocale(gettext.New("hello", "locale")) // from locale dir + // gettext.BindLocale(gettext.New("hello", "locale.zip")) // from locale zip file + // gettext.BindLocale(gettext.New("hello", "locale.zip", zipData)) // from embedded zip data + + gettext.BindLocale(gettext.New("hello", "locale")) + + // translate source text + fmt.Println(gettext.Gettext("Hello, world!")) + // Output: 你好, 世界! + + // translate resource + fmt.Println(string(gettext.Getdata("poems.txt"))) + // Output: ... + } + +Translate directory struct("./examples/locale.zip"): + + Root: "path" or "file.zip/zipBaseName" + +-default # locale: $(LC_MESSAGES) or $(LANG) or "default" + | +-LC_MESSAGES # just for `gettext.Gettext` + | | +-hello.mo # $(Root)/$(lang)/LC_MESSAGES/$(domain).mo + | | +-hello.po # $(Root)/$(lang)/LC_MESSAGES/$(domain).po + | | \-hello.json # $(Root)/$(lang)/LC_MESSAGES/$(domain).json + | | + | \-LC_RESOURCE # just for `gettext.Getdata` + | +-hello # domain map a dir in resource translate + | +-favicon.ico # $(Root)/$(lang)/LC_RESOURCE/$(domain)/$(filename) + | \-poems.txt + | + \-zh_CN # simple chinese translate + +-LC_MESSAGES + | +-hello.po # try "$(domain).po" first + | +-hello.mo # try "$(domain).mo" second + | \-hello.json # try "$(domain).json" third + | + \-LC_RESOURCE + +-hello + +-favicon.ico # $(lang)/$(domain)/favicon.ico + \-poems.txt # $(lang)/$(domain)/poems.txt + +See: + http://en.wikipedia.org/wiki/Gettext + http://www.gnu.org/software/gettext/manual/html_node + http://www.gnu.org/software/gettext/manual/html_node/Header-Entry.html + http://www.gnu.org/software/gettext/manual/html_node/PO-Files.html + http://www.gnu.org/software/gettext/manual/html_node/MO-Files.html + http://www.poedit.net/ + +Please report bugs to . +Thanks! +*/ +package gettext diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/fs.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/fs.go new file mode 100644 index 0000000000..4e66fae7c6 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/fs.go @@ -0,0 +1,84 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package gettext + +import ( + "archive/zip" + "bytes" + "fmt" +) + +type FileSystem interface { + LocaleList() []string + LoadMessagesFile(domain, lang, ext string) ([]byte, error) + LoadResourceFile(domain, lang, name string) ([]byte, error) + String() string +} + +func NewFS(name string, x interface{}) FileSystem { + if x == nil { + if name != "" { + return OS(name) + } + return NilFS(name) + } + + switch x := x.(type) { + case []byte: + if len(x) == 0 { + return OS(name) + } + if r, err := zip.NewReader(bytes.NewReader(x), int64(len(x))); err == nil { + return ZipFS(r, name) + } + if fs, err := newJson(x, name); err == nil { + return fs + } + case string: + if len(x) == 0 { + return OS(name) + } + if r, err := zip.NewReader(bytes.NewReader([]byte(x)), int64(len(x))); err == nil { + return ZipFS(r, name) + } + if fs, err := newJson([]byte(x), name); err == nil { + return fs + } + case FileSystem: + return x + } + + return NilFS(name) +} + +func OS(root string) FileSystem { + return newOsFS(root) +} + +func ZipFS(r *zip.Reader, name string) FileSystem { + return newZipFS(r, name) +} + +func NilFS(name string) FileSystem { + return &nilFS{name} +} + +type nilFS struct { + name string +} + +func (p *nilFS) LocaleList() []string { + return nil +} + +func (p *nilFS) LoadMessagesFile(domain, lang, ext string) ([]byte, error) { + return nil, fmt.Errorf("not found") +} +func (p *nilFS) LoadResourceFile(domain, lang, name string) ([]byte, error) { + return nil, fmt.Errorf("not found") +} +func (p *nilFS) String() string { + return "gettext.nilfs(" + p.name + ")" +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/fs_json.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/fs_json.go new file mode 100644 index 0000000000..c7138c9954 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/fs_json.go @@ -0,0 +1,66 @@ +// Copyright 2020 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package gettext + +import ( + "encoding/json" + "fmt" + "sort" +) + +type jsonFS struct { + name string + x map[string]struct { + LC_MESSAGES map[string][]struct { + MsgContext string `json:"msgctxt"` // msgctxt context + MsgId string `json:"msgid"` // msgid untranslated-string + MsgIdPlural string `json:"msgid_plural"` // msgid_plural untranslated-string-plural + MsgStr []string `json:"msgstr"` // msgstr translated-string + } + LC_RESOURCE map[string]map[string]string + } +} + +func isJsonData() bool { + return false +} + +func newJson(jsonData []byte, name string) (*jsonFS, error) { + p := &jsonFS{name: name} + if err := json.Unmarshal(jsonData, &p.x); err != nil { + return nil, err + } + + return p, nil +} + +func (p *jsonFS) LocaleList() []string { + var ss []string + for lang := range p.x { + ss = append(ss, lang) + } + sort.Strings(ss) + return ss +} + +func (p *jsonFS) LoadMessagesFile(domain, lang, ext string) ([]byte, error) { + if v, ok := p.x[lang]; ok { + if v, ok := v.LC_MESSAGES[domain+ext]; ok { + return json.Marshal(v) + } + } + return nil, fmt.Errorf("not found") +} +func (p *jsonFS) LoadResourceFile(domain, lang, name string) ([]byte, error) { + if v, ok := p.x[lang]; ok { + if v, ok := v.LC_RESOURCE[domain]; ok { + return []byte(v[name]), nil + } + } + return nil, fmt.Errorf("not found") +} +func (p *jsonFS) String() string { + return "gettext.nilfs(" + p.name + ")" +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/fs_os.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/fs_os.go new file mode 100644 index 0000000000..80d4f51bac --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/fs_os.go @@ -0,0 +1,91 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package gettext + +import ( + "archive/zip" + "bytes" + "fmt" + "io/ioutil" + "os" + "sort" + "strings" +) + +type osFS struct { + root string +} + +func newOsFS(root string) FileSystem { + // locale zip file + if fi, err := os.Stat(root); err == nil && !fi.IsDir() { + if strings.HasSuffix(strings.ToLower(root), ".zip") { + if x, err := ioutil.ReadFile(root); err == nil { + if r, err := zip.NewReader(bytes.NewReader(x), int64(len(x))); err == nil { + return ZipFS(r, root) + } + } + } + if strings.HasSuffix(strings.ToLower(root), ".json") { + if x, err := ioutil.ReadFile(root); err == nil { + if fs, err := newJson(x, root); err == nil { + return fs + } + } + } + } + + // locale dir + return &osFS{root: root} +} + +func (p *osFS) LocaleList() []string { + list, err := ioutil.ReadDir(p.root) + if err != nil { + return nil + } + ssMap := make(map[string]bool) + for _, dir := range list { + if dir.IsDir() { + ssMap[dir.Name()] = true + } + } + var locales = make([]string, 0, len(ssMap)) + for s := range ssMap { + locales = append(locales, s) + } + sort.Strings(locales) + return locales +} + +func (p *osFS) LoadMessagesFile(domain, locale, ext string) ([]byte, error) { + trName := p.makeMessagesFileName(domain, locale, ext) + rcData, err := ioutil.ReadFile(trName) + if err != nil { + return nil, err + } + return rcData, nil +} + +func (p *osFS) LoadResourceFile(domain, locale, name string) ([]byte, error) { + rcName := p.makeResourceFileName(domain, locale, name) + rcData, err := ioutil.ReadFile(rcName) + if err != nil { + return nil, err + } + return rcData, nil +} + +func (p *osFS) String() string { + return "gettext.localfs(" + p.root + ")" +} + +func (p *osFS) makeMessagesFileName(domain, lang, ext string) string { + return fmt.Sprintf("%s/%s/LC_MESSAGES/%s%s", p.root, lang, domain, ext) +} + +func (p *osFS) makeResourceFileName(domain, lang, name string) string { + return fmt.Sprintf("%s/%s/LC_RESOURCE/%s/%s", p.root, lang, domain, name) +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/fs_zip.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/fs_zip.go new file mode 100644 index 0000000000..61eb8359da --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/fs_zip.go @@ -0,0 +1,142 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package gettext + +import ( + "archive/zip" + "fmt" + "io/ioutil" + "sort" + "strings" +) + +type zipFS struct { + root string + name string + r *zip.Reader +} + +func newZipFS(r *zip.Reader, name string) *zipFS { + fs := &zipFS{r: r, name: name} + fs.root = fs.zipRoot() + return fs +} + +func (p *zipFS) zipName() string { + name := p.name + if x := strings.LastIndexAny(name, `\/`); x != -1 { + name = name[x+1:] + } + name = strings.TrimSuffix(name, ".zip") + return name +} + +func (p *zipFS) zipRoot() string { + var somepath string + for _, f := range p.r.File { + if x := strings.Index(f.Name, "LC_MESSAGES"); x != -1 { + somepath = f.Name + } + if x := strings.Index(f.Name, "LC_RESOURCE"); x != -1 { + somepath = f.Name + } + } + if somepath == "" { + return p.zipName() + } + + ss := strings.Split(somepath, "/") + for i, s := range ss { + // $(root)/$(lang)/LC_MESSAGES + // $(root)/$(lang)/LC_RESOURCE + if (s == "LC_MESSAGES" || s == "LC_RESOURCE") && i >= 2 { + return strings.Join(ss[:i-1], "/") + } + } + + return p.zipName() +} + +func (p *zipFS) LocaleList() []string { + var locals []string + for s := range p.lsZip(p.r) { + locals = append(locals, s) + } + sort.Strings(locals) + return locals +} + +func (p *zipFS) LoadMessagesFile(domain, lang, ext string) ([]byte, error) { + trName := p.makeMessagesFileName(domain, lang, ext) + for _, f := range p.r.File { + if f.Name != trName { + continue + } + rc, err := f.Open() + if err != nil { + return nil, err + } + rcData, err := ioutil.ReadAll(rc) + rc.Close() + return rcData, err + } + return nil, fmt.Errorf("not found") +} + +func (p *zipFS) LoadResourceFile(domain, lang, name string) ([]byte, error) { + rcName := p.makeResourceFileName(domain, lang, name) + for _, f := range p.r.File { + if f.Name != rcName { + continue + } + rc, err := f.Open() + if err != nil { + return nil, err + } + rcData, err := ioutil.ReadAll(rc) + rc.Close() + return rcData, err + } + return nil, fmt.Errorf("not found") +} + +func (p *zipFS) String() string { + return "gettext.zipfs(" + p.name + ")" +} + +func (p *zipFS) makeMessagesFileName(domain, lang, ext string) string { + return fmt.Sprintf("%s/%s/LC_MESSAGES/%s%s", p.root, lang, domain, ext) +} + +func (p *zipFS) makeResourceFileName(domain, lang, name string) string { + return fmt.Sprintf("%s/%s/LC_RESOURCE/%s/%s", p.root, lang, domain, name) +} + +func (p *zipFS) lsZip(r *zip.Reader) map[string]bool { + ssMap := make(map[string]bool) + for _, f := range r.File { + if x := strings.Index(f.Name, "LC_MESSAGES"); x != -1 { + s := strings.TrimRight(f.Name[:x], `\/`) + if x = strings.LastIndexAny(s, `\/`); x != -1 { + s = s[x+1:] + } + if s != "" { + ssMap[s] = true + } + continue + } + if x := strings.Index(f.Name, "LC_RESOURCE"); x != -1 { + s := strings.TrimRight(f.Name[:x], `\/`) + if x = strings.LastIndexAny(s, `\/`); x != -1 { + s = s[x+1:] + } + if s != "" { + ssMap[s] = true + } + continue + } + } + return ssMap +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/gettext.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/gettext.go new file mode 100644 index 0000000000..7747188ab4 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/gettext.go @@ -0,0 +1,219 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package gettext + +var ( + DefaultLanguage string = getDefaultLanguage() // use $(LC_MESSAGES) or $(LANG) or "default" +) + +type Gettexter interface { + FileSystem() FileSystem + + GetDomain() string + SetDomain(domain string) Gettexter + + GetLanguage() string + SetLanguage(lang string) Gettexter + + Gettext(msgid string) string + PGettext(msgctxt, msgid string) string + + NGettext(msgid, msgidPlural string, n int) string + PNGettext(msgctxt, msgid, msgidPlural string, n int) string + + DGettext(domain, msgid string) string + DPGettext(domain, msgctxt, msgid string) string + DNGettext(domain, msgid, msgidPlural string, n int) string + DPNGettext(domain, msgctxt, msgid, msgidPlural string, n int) string + + Getdata(name string) []byte + DGetdata(domain, name string) []byte +} + +// New create Interface use default language. +func New(domain, path string, data ...interface{}) Gettexter { + return newLocale(domain, path, data...) +} + +var defaultGettexter struct { + lang string + domain string + Gettexter +} + +func init() { + defaultGettexter.lang = getDefaultLanguage() + defaultGettexter.domain = "default" + defaultGettexter.Gettexter = newLocale("", "") +} + +// BindLocale sets and queries program's domains. +// +// Examples: +// BindLocale(New("poedit", "locale")) // bind "poedit" domain +// +// Use zip file: +// BindLocale(New("poedit", "locale.zip")) // bind "poedit" domain +// BindLocale(New("poedit", "locale.zip", zipData)) // bind "poedit" domain +// +// Use FileSystem: +// BindLocale(New("poedit", "name", OS("path/to/dir"))) // bind "poedit" domain +// BindLocale(New("poedit", "name", OS("path/to.zip"))) // bind "poedit" domain +// +func BindLocale(g Gettexter) { + if g != nil { + defaultGettexter.Gettexter = g + defaultGettexter.SetLanguage(defaultGettexter.lang) + } else { + defaultGettexter.Gettexter = newLocale("", "") + defaultGettexter.SetLanguage(defaultGettexter.lang) + } +} + +// SetLanguage sets and queries the program's current lang. +// +// If the lang is not empty string, set the new locale. +// +// If the lang is empty string, don't change anything. +// +// Returns is the current locale. +// +// Examples: +// SetLanguage("") // get locale: return DefaultLocale +// SetLanguage("zh_CN") // set locale: return zh_CN +// SetLanguage("") // get locale: return zh_CN +func SetLanguage(lang string) string { + defaultGettexter.SetLanguage(lang) + return defaultGettexter.GetLanguage() +} + +// SetDomain sets and retrieves the current message domain. +// +// If the domain is not empty string, set the new domains. +// +// If the domain is empty string, don't change anything. +// +// Returns is the all used domains. +// +// Examples: +// SetDomain("poedit") // set domain: poedit +// SetDomain("") // get domain: return poedit +func SetDomain(domain string) string { + defaultGettexter.SetDomain(domain) + return defaultGettexter.GetDomain() +} + +// Gettext attempt to translate a text string into the user's native language, +// by looking up the translation in a message catalog. +// +// It use the caller's function name as the msgctxt. +// +// Examples: +// func Foo() { +// msg := gettext.Gettext("Hello") // msgctxt is "" +// } +func Gettext(msgid string) string { + return defaultGettexter.Gettext(msgid) +} + +// Getdata attempt to translate a resource file into the user's native language, +// by looking up the translation in a message catalog. +// +// Examples: +// func Foo() { +// Textdomain("hello") +// BindLocale("hello", "locale.zip", nilOrZipData) +// poems := gettext.Getdata("poems.txt") +// } +func Getdata(name string) []byte { + return defaultGettexter.Getdata(name) +} + +// NGettext attempt to translate a text string into the user's native language, +// by looking up the appropriate plural form of the translation in a message +// catalog. +// +// It use the caller's function name as the msgctxt. +// +// Examples: +// func Foo() { +// msg := gettext.NGettext("%d people", "%d peoples", 2) +// } +func NGettext(msgid, msgidPlural string, n int) string { + return defaultGettexter.NGettext(msgid, msgidPlural, n) +} + +// PGettext attempt to translate a text string into the user's native language, +// by looking up the translation in a message catalog. +// +// Examples: +// func Foo() { +// msg := gettext.PGettext("gettext-go.example", "Hello") // msgctxt is "gettext-go.example" +// } +func PGettext(msgctxt, msgid string) string { + return defaultGettexter.PGettext(msgctxt, msgid) +} + +// PNGettext attempt to translate a text string into the user's native language, +// by looking up the appropriate plural form of the translation in a message +// catalog. +// +// Examples: +// func Foo() { +// msg := gettext.PNGettext("gettext-go.example", "%d people", "%d peoples", 2) +// } +func PNGettext(msgctxt, msgid, msgidPlural string, n int) string { + return defaultGettexter.PNGettext(msgctxt, msgid, msgidPlural, n) +} + +// DGettext like Gettext(), but looking up the message in the specified domain. +// +// Examples: +// func Foo() { +// msg := gettext.DGettext("poedit", "Hello") +// } +func DGettext(domain, msgid string) string { + return defaultGettexter.DGettext(domain, msgid) +} + +// DNGettext like NGettext(), but looking up the message in the specified domain. +// +// Examples: +// func Foo() { +// msg := gettext.PNGettext("poedit", "gettext-go.example", "%d people", "%d peoples", 2) +// } +func DNGettext(domain, msgid, msgidPlural string, n int) string { + return defaultGettexter.DNGettext(domain, msgid, msgidPlural, n) +} + +// DPGettext like PGettext(), but looking up the message in the specified domain. +// +// Examples: +// func Foo() { +// msg := gettext.DPGettext("poedit", "gettext-go.example", "Hello") +// } +func DPGettext(domain, msgctxt, msgid string) string { + return defaultGettexter.DPGettext(domain, msgctxt, msgid) +} + +// DPNGettext like PNGettext(), but looking up the message in the specified domain. +// +// Examples: +// func Foo() { +// msg := gettext.DPNGettext("poedit", "gettext-go.example", "%d people", "%d peoples", 2) +// } +func DPNGettext(domain, msgctxt, msgid, msgidPlural string, n int) string { + return defaultGettexter.DPNGettext(domain, msgctxt, msgid, msgidPlural, n) +} + +// DGetdata like Getdata(), but looking up the resource in the specified domain. +// +// Examples: +// func Foo() { +// msg := gettext.DGetdata("hello", "poems.txt") +// } +func DGetdata(domain, name string) []byte { + return defaultGettexter.DGetdata(domain, name) +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/locale.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/locale.go new file mode 100644 index 0000000000..e7a2d4b37b --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/locale.go @@ -0,0 +1,205 @@ +// Copyright 2020 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package gettext + +import ( + "fmt" + "sync" +) + +type _Locale struct { + mutex sync.Mutex + fs FileSystem + lang string + domain string + trMap map[string]*translator + trCurrent *translator +} + +var _ Gettexter = (*_Locale)(nil) + +func newLocale(domain, path string, data ...interface{}) *_Locale { + if domain == "" { + domain = "default" + } + p := &_Locale{ + lang: DefaultLanguage, + domain: domain, + } + if len(data) > 0 { + p.fs = NewFS(path, data[0]) + } else { + p.fs = NewFS(path, nil) + } + + p.syncTrMap() + return p +} + +func (p *_Locale) makeTrMapKey(domain, _Locale string) string { + return domain + "_$$$_" + _Locale +} + +func (p *_Locale) FileSystem() FileSystem { + return p.fs +} + +func (p *_Locale) GetLanguage() string { + p.mutex.Lock() + defer p.mutex.Unlock() + + return p.lang +} +func (p *_Locale) SetLanguage(lang string) Gettexter { + p.mutex.Lock() + defer p.mutex.Unlock() + + if lang == "" { + lang = DefaultLanguage + } + if lang == p.lang { + return p + } + + p.lang = lang + p.syncTrMap() + return p +} + +func (p *_Locale) GetDomain() string { + p.mutex.Lock() + defer p.mutex.Unlock() + return p.domain +} + +func (p *_Locale) SetDomain(domain string) Gettexter { + p.mutex.Lock() + defer p.mutex.Unlock() + + if domain == "" || domain == p.domain { + return p + } + + p.domain = domain + p.syncTrMap() + return p +} + +func (p *_Locale) syncTrMap() { + p.trMap = make(map[string]*translator) + trMapKey := p.makeTrMapKey(p.domain, p.lang) + + if tr, ok := p.trMap[trMapKey]; ok { + p.trCurrent = tr + return + } + + // try load po file + if data, err := p.fs.LoadMessagesFile(p.domain, p.lang, ".po"); err == nil { + if tr, err := newPoTranslator(fmt.Sprintf("%s_%s.po", p.domain, p.lang), data); err == nil { + p.trMap[trMapKey] = tr + p.trCurrent = tr + return + } + } + + // try load mo file + if data, err := p.fs.LoadMessagesFile(p.domain, p.lang, ".mo"); err == nil { + if tr, err := newMoTranslator(fmt.Sprintf("%s_%s.mo", p.domain, p.lang), data); err == nil { + p.trMap[trMapKey] = tr + p.trCurrent = tr + return + } + } + + // try load json file + if data, err := p.fs.LoadMessagesFile(p.domain, p.lang, ".json"); err == nil { + if tr, err := newJsonTranslator(p.lang, fmt.Sprintf("%s_%s.json", p.domain, p.lang), data); err == nil { + p.trMap[trMapKey] = tr + p.trCurrent = tr + return + } + } + + // no po/mo file + p.trMap[trMapKey] = nilTranslator + p.trCurrent = nilTranslator + return +} + +func (p *_Locale) Gettext(msgid string) string { + p.mutex.Lock() + defer p.mutex.Unlock() + return p.trCurrent.PGettext("", msgid) +} + +func (p *_Locale) PGettext(msgctxt, msgid string) string { + p.mutex.Lock() + defer p.mutex.Unlock() + return p.trCurrent.PGettext(msgctxt, msgid) +} + +func (p *_Locale) NGettext(msgid, msgidPlural string, n int) string { + p.mutex.Lock() + defer p.mutex.Unlock() + return p.trCurrent.PNGettext("", msgid, msgidPlural, n) +} + +func (p *_Locale) PNGettext(msgctxt, msgid, msgidPlural string, n int) string { + p.mutex.Lock() + defer p.mutex.Unlock() + return p.trCurrent.PNGettext(msgctxt, msgid, msgidPlural, n) +} + +func (p *_Locale) DGettext(domain, msgid string) string { + p.mutex.Lock() + defer p.mutex.Unlock() + return p.gettext(domain, "", msgid, "", 0) +} + +func (p *_Locale) DNGettext(domain, msgid, msgidPlural string, n int) string { + p.mutex.Lock() + defer p.mutex.Unlock() + return p.gettext(domain, "", msgid, msgidPlural, n) +} + +func (p *_Locale) DPGettext(domain, msgctxt, msgid string) string { + p.mutex.Lock() + defer p.mutex.Unlock() + return p.gettext(domain, msgctxt, msgid, "", 0) +} + +func (p *_Locale) DPNGettext(domain, msgctxt, msgid, msgidPlural string, n int) string { + p.mutex.Lock() + defer p.mutex.Unlock() + return p.gettext(domain, msgctxt, msgid, msgidPlural, n) +} + +func (p *_Locale) Getdata(name string) []byte { + return p.getdata(p.domain, name) +} + +func (p *_Locale) DGetdata(domain, name string) []byte { + return p.getdata(domain, name) +} + +func (p *_Locale) gettext(domain, msgctxt, msgid, msgidPlural string, n int) string { + if f, ok := p.trMap[p.makeTrMapKey(domain, p.lang)]; ok { + return f.PNGettext(msgctxt, msgid, msgidPlural, n) + } + return msgid +} + +func (p *_Locale) getdata(domain, name string) []byte { + if data, err := p.fs.LoadResourceFile(domain, p.lang, name); err == nil { + return data + } + if p.lang != "default" { + if data, err := p.fs.LoadResourceFile(domain, "default", name); err == nil { + return data + } + } + return nil +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/doc.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/doc.go new file mode 100644 index 0000000000..5fefc18930 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/doc.go @@ -0,0 +1,74 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +/* +Package mo provides support for reading and writing GNU MO file. + +Examples: + import ( + "github.com/chai2010/gettext-go/mo" + ) + + func main() { + moFile, err := mo.LoadFile("test.mo") + if err != nil { + log.Fatal(err) + } + fmt.Printf("%v", moFile) + } + +GNU MO file struct: + + byte + +------------------------------------------+ + 0 | magic number = 0x950412de | + | | + 4 | file format revision = 0 | + | | + 8 | number of strings | == N + | | + 12 | offset of table with original strings | == O + | | + 16 | offset of table with translation strings | == T + | | + 20 | size of hashing table | == S + | | + 24 | offset of hashing table | == H + | | + . . + . (possibly more entries later) . + . . + | | + O | length & offset 0th string ----------------. + O + 8 | length & offset 1st string ------------------. + ... ... | | + O + ((N-1)*8)| length & offset (N-1)th string | | | + | | | | + T | length & offset 0th translation ---------------. + T + 8 | length & offset 1st translation -----------------. + ... ... | | | | + T + ((N-1)*8)| length & offset (N-1)th translation | | | | | + | | | | | | + H | start hash table | | | | | + ... ... | | | | + H + S * 4 | end hash table | | | | | + | | | | | | + | NUL terminated 0th string <----------------' | | | + | | | | | + | NUL terminated 1st string <------------------' | | + | | | | + ... ... | | + | | | | + | NUL terminated 0th translation <---------------' | + | | | + | NUL terminated 1st translation <-----------------' + | | + ... ... + | | + +------------------------------------------+ + +The GNU MO file specification is at +http://www.gnu.org/software/gettext/manual/html_node/MO-Files.html. +*/ +package mo diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/encoder.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/encoder.go new file mode 100644 index 0000000000..f953fd3cb8 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/encoder.go @@ -0,0 +1,105 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package mo + +import ( + "bytes" + "encoding/binary" + "sort" + "strings" +) + +type moHeader struct { + MagicNumber uint32 + MajorVersion uint16 + MinorVersion uint16 + MsgIdCount uint32 + MsgIdOffset uint32 + MsgStrOffset uint32 + HashSize uint32 + HashOffset uint32 +} + +type moStrPos struct { + Size uint32 // must keep fields order + Addr uint32 +} + +func encodeFile(f *File) []byte { + hdr := &moHeader{ + MagicNumber: MoMagicLittleEndian, + } + data := encodeData(hdr, f) + data = append(encodeHeader(hdr), data...) + return data +} + +// encode data and init moHeader +func encodeData(hdr *moHeader, f *File) []byte { + msgList := []Message{f.MimeHeader.toMessage()} + for _, v := range f.Messages { + if len(v.MsgId) == 0 { + continue + } + if len(v.MsgStr) == 0 && len(v.MsgStrPlural) == 0 { + continue + } + msgList = append(msgList, v) + } + sort.Slice(msgList, func(i, j int) bool { + return msgList[i].less(&msgList[j]) + }) + + var buf bytes.Buffer + var msgIdPosList = make([]moStrPos, len(msgList)) + var msgStrPosList = make([]moStrPos, len(msgList)) + for i, v := range msgList { + // write msgid + msgId := encodeMsgId(v) + msgIdPosList[i].Addr = uint32(buf.Len() + MoHeaderSize) + msgIdPosList[i].Size = uint32(len(msgId)) + buf.WriteString(msgId) + // write msgstr + msgStr := encodeMsgStr(v) + msgStrPosList[i].Addr = uint32(buf.Len() + MoHeaderSize) + msgStrPosList[i].Size = uint32(len(msgStr)) + buf.WriteString(msgStr) + } + + hdr.MsgIdOffset = uint32(buf.Len() + MoHeaderSize) + binary.Write(&buf, binary.LittleEndian, msgIdPosList) + hdr.MsgStrOffset = uint32(buf.Len() + MoHeaderSize) + binary.Write(&buf, binary.LittleEndian, msgStrPosList) + + hdr.MsgIdCount = uint32(len(msgList)) + return buf.Bytes() +} + +// must called after encodeData +func encodeHeader(hdr *moHeader) []byte { + var buf bytes.Buffer + binary.Write(&buf, binary.LittleEndian, hdr) + return buf.Bytes() +} + +func encodeMsgId(v Message) string { + if v.MsgContext != "" && v.MsgIdPlural != "" { + return v.MsgContext + EotSeparator + v.MsgId + NulSeparator + v.MsgIdPlural + } + if v.MsgContext != "" && v.MsgIdPlural == "" { + return v.MsgContext + EotSeparator + v.MsgId + } + if v.MsgContext == "" && v.MsgIdPlural != "" { + return v.MsgId + NulSeparator + v.MsgIdPlural + } + return v.MsgId +} + +func encodeMsgStr(v Message) string { + if v.MsgIdPlural != "" { + return strings.Join(v.MsgStrPlural, NulSeparator) + } + return v.MsgStr +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/file.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/file.go new file mode 100644 index 0000000000..6f7ed161c1 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/file.go @@ -0,0 +1,197 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package mo + +import ( + "bytes" + "encoding/binary" + "fmt" + "io/ioutil" + "strings" +) + +const ( + MoHeaderSize = 28 + MoMagicLittleEndian = 0x950412de + MoMagicBigEndian = 0xde120495 + + EotSeparator = "\x04" // msgctxt and msgid separator + NulSeparator = "\x00" // msgid and msgstr separator +) + +// File represents an MO File. +// +// See http://www.gnu.org/software/gettext/manual/html_node/MO-Files.html +type File struct { + MagicNumber uint32 + MajorVersion uint16 + MinorVersion uint16 + MsgIdCount uint32 + MsgIdOffset uint32 + MsgStrOffset uint32 + HashSize uint32 + HashOffset uint32 + MimeHeader Header + Messages []Message +} + +// Load loads mo file format data. +func Load(data []byte) (*File, error) { + return loadData(data) +} + +// Load loads a named mo file. +func LoadFile(path string) (*File, error) { + data, err := ioutil.ReadFile(path) + if err != nil { + return nil, err + } + return loadData(data) +} + +func loadData(data []byte) (*File, error) { + r := bytes.NewReader(data) + + var magicNumber uint32 + if err := binary.Read(r, binary.LittleEndian, &magicNumber); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + var bo binary.ByteOrder + switch magicNumber { + case MoMagicLittleEndian: + bo = binary.LittleEndian + case MoMagicBigEndian: + bo = binary.BigEndian + default: + return nil, fmt.Errorf("gettext: %v", "invalid magic number") + } + + var header struct { + MajorVersion uint16 + MinorVersion uint16 + MsgIdCount uint32 + MsgIdOffset uint32 + MsgStrOffset uint32 + HashSize uint32 + HashOffset uint32 + } + if err := binary.Read(r, bo, &header); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + if v := header.MajorVersion; v != 0 && v != 1 { + return nil, fmt.Errorf("gettext: %v", "invalid version number") + } + if v := header.MinorVersion; v != 0 && v != 1 { + return nil, fmt.Errorf("gettext: %v", "invalid version number") + } + + msgIdStart := make([]uint32, header.MsgIdCount) + msgIdLen := make([]uint32, header.MsgIdCount) + if _, err := r.Seek(int64(header.MsgIdOffset), 0); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + for i := 0; i < int(header.MsgIdCount); i++ { + if err := binary.Read(r, bo, &msgIdLen[i]); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + if err := binary.Read(r, bo, &msgIdStart[i]); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + } + + msgStrStart := make([]int32, header.MsgIdCount) + msgStrLen := make([]int32, header.MsgIdCount) + if _, err := r.Seek(int64(header.MsgStrOffset), 0); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + for i := 0; i < int(header.MsgIdCount); i++ { + if err := binary.Read(r, bo, &msgStrLen[i]); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + if err := binary.Read(r, bo, &msgStrStart[i]); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + } + + file := &File{ + MagicNumber: magicNumber, + MajorVersion: header.MajorVersion, + MinorVersion: header.MinorVersion, + MsgIdCount: header.MsgIdCount, + MsgIdOffset: header.MsgIdOffset, + MsgStrOffset: header.MsgStrOffset, + HashSize: header.HashSize, + HashOffset: header.HashOffset, + } + for i := 0; i < int(header.MsgIdCount); i++ { + if _, err := r.Seek(int64(msgIdStart[i]), 0); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + msgIdData := make([]byte, msgIdLen[i]) + if _, err := r.Read(msgIdData); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + + if _, err := r.Seek(int64(msgStrStart[i]), 0); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + msgStrData := make([]byte, msgStrLen[i]) + if _, err := r.Read(msgStrData); err != nil { + return nil, fmt.Errorf("gettext: %v", err) + } + + if len(msgIdData) == 0 { + var msg = Message{ + MsgId: string(msgIdData), + MsgStr: string(msgStrData), + } + file.MimeHeader.fromMessage(&msg) + } else { + var msg = Message{ + MsgId: string(msgIdData), + MsgStr: string(msgStrData), + } + // Is this a context message? + if idx := strings.Index(msg.MsgId, EotSeparator); idx != -1 { + msg.MsgContext, msg.MsgId = msg.MsgId[:idx], msg.MsgId[idx+1:] + } + // Is this a plural message? + if idx := strings.Index(msg.MsgId, NulSeparator); idx != -1 { + msg.MsgId, msg.MsgIdPlural = msg.MsgId[:idx], msg.MsgId[idx+1:] + msg.MsgStrPlural = strings.Split(msg.MsgStr, NulSeparator) + msg.MsgStr = "" + } + file.Messages = append(file.Messages, msg) + } + } + + return file, nil +} + +// Save saves a mo file. +func (f *File) Save(name string) error { + return ioutil.WriteFile(name, f.Data(), 0666) +} + +// Save returns a mo file format data. +func (f *File) Data() []byte { + return encodeFile(f) +} + +// String returns the po format file string. +func (f *File) String() string { + var buf bytes.Buffer + fmt.Fprintf(&buf, "# version: %d.%d\n", f.MajorVersion, f.MinorVersion) + fmt.Fprintf(&buf, "%s\n", f.MimeHeader.String()) + fmt.Fprintf(&buf, "\n") + + for k, v := range f.Messages { + fmt.Fprintf(&buf, `msgid "%v"`+"\n", k) + fmt.Fprintf(&buf, `msgstr "%s"`+"\n", v.MsgStr) + fmt.Fprintf(&buf, "\n") + } + + return buf.String() +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/header.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/header.go new file mode 100644 index 0000000000..d8c7a5e3a3 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/header.go @@ -0,0 +1,109 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package mo + +import ( + "bytes" + "fmt" + "strings" +) + +// Header is the initial comments "SOME DESCRIPTIVE TITLE", "YEAR" +// and "FIRST AUTHOR , YEAR" ought to be replaced by sensible information. +// +// See http://www.gnu.org/software/gettext/manual/html_node/Header-Entry.html#Header-Entry +type Header struct { + ProjectIdVersion string // Project-Id-Version: PACKAGE VERSION + ReportMsgidBugsTo string // Report-Msgid-Bugs-To: FIRST AUTHOR + POTCreationDate string // POT-Creation-Date: YEAR-MO-DA HO:MI+ZONE + PORevisionDate string // PO-Revision-Date: YEAR-MO-DA HO:MI+ZONE + LastTranslator string // Last-Translator: FIRST AUTHOR + LanguageTeam string // Language-Team: golang-china + Language string // Language: zh_CN + MimeVersion string // MIME-Version: 1.0 + ContentType string // Content-Type: text/plain; charset=UTF-8 + ContentTransferEncoding string // Content-Transfer-Encoding: 8bit + PluralForms string // Plural-Forms: nplurals=2; plural=n == 1 ? 0 : 1; + XGenerator string // X-Generator: Poedit 1.5.5 + UnknowFields map[string]string +} + +func (p *Header) fromMessage(msg *Message) { + if msg.MsgId != "" || msg.MsgStr == "" { + return + } + lines := strings.Split(msg.MsgStr, "\n") + for i := 0; i < len(lines); i++ { + idx := strings.Index(lines[i], ":") + if idx < 0 { + continue + } + key := strings.TrimSpace(lines[i][:idx]) + val := strings.TrimSpace(lines[i][idx+1:]) + switch strings.ToUpper(key) { + case strings.ToUpper("Project-Id-Version"): + p.ProjectIdVersion = val + case strings.ToUpper("Report-Msgid-Bugs-To"): + p.ReportMsgidBugsTo = val + case strings.ToUpper("POT-Creation-Date"): + p.POTCreationDate = val + case strings.ToUpper("PO-Revision-Date"): + p.PORevisionDate = val + case strings.ToUpper("Last-Translator"): + p.LastTranslator = val + case strings.ToUpper("Language-Team"): + p.LanguageTeam = val + case strings.ToUpper("Language"): + p.Language = val + case strings.ToUpper("MIME-Version"): + p.MimeVersion = val + case strings.ToUpper("Content-Type"): + p.ContentType = val + case strings.ToUpper("Content-Transfer-Encoding"): + p.ContentTransferEncoding = val + case strings.ToUpper("Plural-Forms"): + p.PluralForms = val + case strings.ToUpper("X-Generator"): + p.XGenerator = val + default: + if p.UnknowFields == nil { + p.UnknowFields = make(map[string]string) + } + p.UnknowFields[key] = val + } + } +} + +func (p *Header) toMessage() Message { + return Message{ + MsgStr: p.String(), + } +} + +// String returns the po format header string. +func (p Header) String() string { + var buf bytes.Buffer + fmt.Fprintf(&buf, `msgid ""`+"\n") + fmt.Fprintf(&buf, `msgstr ""`+"\n") + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Project-Id-Version", p.ProjectIdVersion) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Report-Msgid-Bugs-To", p.ReportMsgidBugsTo) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "POT-Creation-Date", p.POTCreationDate) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "PO-Revision-Date", p.PORevisionDate) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Last-Translator", p.LastTranslator) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Language-Team", p.LanguageTeam) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Language", p.Language) + if p.MimeVersion != "" { + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "MIME-Version", p.MimeVersion) + } + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Content-Type", p.ContentType) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Content-Transfer-Encoding", p.ContentTransferEncoding) + if p.XGenerator != "" { + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "X-Generator", p.XGenerator) + } + for k, v := range p.UnknowFields { + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", k, v) + } + return buf.String() +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/message.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/message.go new file mode 100644 index 0000000000..b67bde0b70 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/message.go @@ -0,0 +1,52 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package mo + +import ( + "bytes" + "fmt" +) + +// A MO file is made up of many entries, +// each entry holding the relation between an original untranslated string +// and its corresponding translation. +// +// See http://www.gnu.org/software/gettext/manual/html_node/MO-Files.html +type Message struct { + MsgContext string // msgctxt context + MsgId string // msgid untranslated-string + MsgIdPlural string // msgid_plural untranslated-string-plural + MsgStr string // msgstr translated-string + MsgStrPlural []string // msgstr[0] translated-string-case-0 +} + +// String returns the po format entry string. +func (p Message) String() string { + var buf bytes.Buffer + fmt.Fprintf(&buf, "msgid %s", encodePoString(p.MsgId)) + if p.MsgIdPlural != "" { + fmt.Fprintf(&buf, "msgid_plural %s", encodePoString(p.MsgIdPlural)) + } + if p.MsgStr != "" { + fmt.Fprintf(&buf, "msgstr %s", encodePoString(p.MsgStr)) + } + for i := 0; i < len(p.MsgStrPlural); i++ { + fmt.Fprintf(&buf, "msgstr[%d] %s", i, encodePoString(p.MsgStrPlural[i])) + } + return buf.String() +} + +func (m_i *Message) less(m_j *Message) bool { + if a, b := m_i.MsgContext, m_j.MsgContext; a != b { + return a < b + } + if a, b := m_i.MsgId, m_j.MsgId; a != b { + return a < b + } + if a, b := m_i.MsgIdPlural, m_j.MsgIdPlural; a != b { + return a < b + } + return false +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/util.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/util.go new file mode 100644 index 0000000000..3804511053 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/mo/util.go @@ -0,0 +1,110 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package mo + +import ( + "bytes" + "strings" +) + +func decodePoString(text string) string { + lines := strings.Split(text, "\n") + for i := 0; i < len(lines); i++ { + left := strings.Index(lines[i], `"`) + right := strings.LastIndex(lines[i], `"`) + if left < 0 || right < 0 || left == right { + lines[i] = "" + continue + } + line := lines[i][left+1 : right] + data := make([]byte, 0, len(line)) + for i := 0; i < len(line); i++ { + if line[i] != '\\' { + data = append(data, line[i]) + continue + } + if i+1 >= len(line) { + break + } + switch line[i+1] { + case 'n': // \\n -> \n + data = append(data, '\n') + i++ + case 't': // \\t -> \n + data = append(data, '\t') + i++ + case '\\': // \\\ -> ? + data = append(data, '\\') + i++ + } + } + lines[i] = string(data) + } + return strings.Join(lines, "") +} + +func encodePoString(text string) string { + var buf bytes.Buffer + lines := strings.Split(text, "\n") + for i := 0; i < len(lines); i++ { + if lines[i] == "" { + if i != len(lines)-1 { + buf.WriteString(`"\n"` + "\n") + } + continue + } + buf.WriteRune('"') + for _, r := range lines[i] { + switch r { + case '\\': + buf.WriteString(`\\`) + case '"': + buf.WriteString(`\"`) + case '\n': + buf.WriteString(`\n`) + case '\t': + buf.WriteString(`\t`) + default: + buf.WriteRune(r) + } + } + buf.WriteString(`\n"` + "\n") + } + return buf.String() +} + +func encodeCommentPoString(text string) string { + var buf bytes.Buffer + lines := strings.Split(text, "\n") + if len(lines) > 1 { + buf.WriteString(`""` + "\n") + } + for i := 0; i < len(lines); i++ { + if len(lines) > 0 { + buf.WriteString("#| ") + } + buf.WriteRune('"') + for _, r := range lines[i] { + switch r { + case '\\': + buf.WriteString(`\\`) + case '"': + buf.WriteString(`\"`) + case '\n': + buf.WriteString(`\n`) + case '\t': + buf.WriteString(`\t`) + default: + buf.WriteRune(r) + } + } + if i < len(lines)-1 { + buf.WriteString(`\n"` + "\n") + } else { + buf.WriteString(`"`) + } + } + return buf.String() +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/plural/doc.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/plural/doc.go new file mode 100644 index 0000000000..31cb8fae9f --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/plural/doc.go @@ -0,0 +1,36 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +/* +Package plural provides standard plural formulas. + +Examples: + import ( + "github.com/chai2010/gettext-go/plural" + ) + + func main() { + enFormula := plural.Formula("en_US") + xxFormula := plural.Formula("zh_CN") + + fmt.Printf("%s: %d\n", "en", enFormula(0)) + fmt.Printf("%s: %d\n", "en", enFormula(1)) + fmt.Printf("%s: %d\n", "en", enFormula(2)) + fmt.Printf("%s: %d\n", "??", xxFormula(0)) + fmt.Printf("%s: %d\n", "??", xxFormula(1)) + fmt.Printf("%s: %d\n", "??", xxFormula(2)) + fmt.Printf("%s: %d\n", "??", xxFormula(9)) + // Output: + // en: 0 + // en: 0 + // en: 1 + // ??: 0 + // ??: 0 + // ??: 1 + // ??: 8 + } + +See http://www.gnu.org/software/gettext/manual/html_node/Plural-forms.html +*/ +package plural diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/plural/formula.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/plural/formula.go new file mode 100644 index 0000000000..679a1cd50d --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/plural/formula.go @@ -0,0 +1,181 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package plural + +import ( + "strings" +) + +// Formula provides the language's standard plural formula. +func Formula(lang string) func(n int) int { + if idx := index(lang); idx != -1 { + return formulaTable[fmtForms(FormsTable[idx].Value)] + } + if idx := index("??"); idx != -1 { + return formulaTable[fmtForms(FormsTable[idx].Value)] + } + return func(n int) int { + return n + } +} + +func index(lang string) int { + for i := 0; i < len(FormsTable); i++ { + if strings.HasPrefix(lang, FormsTable[i].Lang) { + return i + } + } + return -1 +} + +func fmtForms(forms string) string { + forms = strings.TrimSpace(forms) + forms = strings.Replace(forms, " ", "", -1) + return forms +} + +var formulaTable = map[string]func(n int) int{ + fmtForms("nplurals=n; plural=n-1;"): func(n int) int { + if n > 0 { + return n - 1 + } + return 0 + }, + fmtForms("nplurals=1; plural=0;"): func(n int) int { + return 0 + }, + fmtForms("nplurals=2; plural=(n != 1);"): func(n int) int { + if n <= 1 { + return 0 + } + return 1 + }, + fmtForms("nplurals=2; plural=(n > 1);"): func(n int) int { + if n <= 1 { + return 0 + } + return 1 + }, + fmtForms("nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n != 0 ? 1 : 2);"): func(n int) int { + if n%10 == 1 && n%100 != 11 { + return 0 + } + if n != 0 { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=n==1 ? 0 : n==2 ? 1 : 2;"): func(n int) int { + if n == 1 { + return 0 + } + if n == 2 { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=n==1 ? 0 : (n==0 || (n%100 > 0 && n%100 < 20)) ? 1 : 2;"): func(n int) int { + if n == 1 { + return 0 + } + if n == 0 || (n%100 > 0 && n%100 < 20) { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && (n%100<10 || n%100>=20) ? 1 : 2);"): func(n int) int { + if n%10 == 1 && n%100 != 11 { + return 0 + } + if n%10 >= 2 && (n%100 < 10 || n%100 >= 20) { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"): func(n int) int { + if n%10 == 1 && n%100 != 11 { + return 0 + } + if n%10 >= 2 && n%10 <= 4 && (n%100 < 10 || n%100 >= 20) { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"): func(n int) int { + if n%10 == 1 && n%100 != 11 { + return 0 + } + if n%10 >= 2 && n%10 <= 4 && (n%100 < 10 || n%100 >= 20) { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"): func(n int) int { + if n%10 == 1 && n%100 != 11 { + return 0 + } + if n%10 >= 2 && n%10 <= 4 && (n%100 < 10 || n%100 >= 20) { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"): func(n int) int { + if n%10 == 1 && n%100 != 11 { + return 0 + } + if n%10 >= 2 && n%10 <= 4 && (n%100 < 10 || n%100 >= 20) { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"): func(n int) int { + if n%10 == 1 && n%100 != 11 { + return 0 + } + if n%10 >= 2 && n%10 <= 4 && (n%100 < 10 || n%100 >= 20) { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=(n==1) ? 0 : (n>=2 && n<=4) ? 1 : 2;"): func(n int) int { + if n == 1 { + return 0 + } + if n >= 2 && n <= 4 { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=(n==1) ? 0 : (n>=2 && n<=4) ? 1 : 2;"): func(n int) int { + if n == 1 { + return 0 + } + if n >= 2 && n <= 4 { + return 1 + } + return 2 + }, + fmtForms("nplurals=3; plural=(n==1 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"): func(n int) int { + if n == 1 { + return 0 + } + if n%10 >= 2 && n%10 <= 4 && (n%100 < 10 || n%100 >= 20) { + return 1 + } + return 2 + }, + fmtForms("nplurals=4; plural=(n%100==1 ? 0 : n%100==2 ? 1 : n%100==3 || n%100==4 ? 2 : 3);"): func(n int) int { + if n%100 == 1 { + return 0 + } + if n%100 == 2 { + return 1 + } + if n%100 == 3 || n%100 == 4 { + return 2 + } + return 3 + }, +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/plural/table.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/plural/table.go new file mode 100644 index 0000000000..cdc50d2110 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/plural/table.go @@ -0,0 +1,55 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package plural + +// FormsTable are standard hard-coded plural rules. +// The application developers and the translators need to understand them. +// +// See GNU's gettext library source code: gettext/gettext-tools/src/plural-table.c +var FormsTable = []struct { + Lang string + Language string + Value string +}{ + {"??", "Unknown", "nplurals=1; plural=0;"}, + {"ja", "Japanese", "nplurals=1; plural=0;"}, + {"vi", "Vietnamese", "nplurals=1; plural=0;"}, + {"ko", "Korean", "nplurals=1; plural=0;"}, + {"en", "English", "nplurals=2; plural=(n != 1);"}, + {"de", "German", "nplurals=2; plural=(n != 1);"}, + {"nl", "Dutch", "nplurals=2; plural=(n != 1);"}, + {"sv", "Swedish", "nplurals=2; plural=(n != 1);"}, + {"da", "Danish", "nplurals=2; plural=(n != 1);"}, + {"no", "Norwegian", "nplurals=2; plural=(n != 1);"}, + {"nb", "Norwegian Bokmal", "nplurals=2; plural=(n != 1);"}, + {"nn", "Norwegian Nynorsk", "nplurals=2; plural=(n != 1);"}, + {"fo", "Faroese", "nplurals=2; plural=(n != 1);"}, + {"es", "Spanish", "nplurals=2; plural=(n != 1);"}, + {"pt", "Portuguese", "nplurals=2; plural=(n != 1);"}, + {"it", "Italian", "nplurals=2; plural=(n != 1);"}, + {"bg", "Bulgarian", "nplurals=2; plural=(n != 1);"}, + {"el", "Greek", "nplurals=2; plural=(n != 1);"}, + {"fi", "Finnish", "nplurals=2; plural=(n != 1);"}, + {"et", "Estonian", "nplurals=2; plural=(n != 1);"}, + {"he", "Hebrew", "nplurals=2; plural=(n != 1);"}, + {"eo", "Esperanto", "nplurals=2; plural=(n != 1);"}, + {"hu", "Hungarian", "nplurals=2; plural=(n != 1);"}, + {"tr", "Turkish", "nplurals=2; plural=(n != 1);"}, + {"pt_BR", "Brazilian", "nplurals=2; plural=(n > 1);"}, + {"fr", "French", "nplurals=2; plural=(n > 1);"}, + {"lv", "Latvian", "nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n != 0 ? 1 : 2);"}, + {"ga", "Irish", "nplurals=3; plural=n==1 ? 0 : n==2 ? 1 : 2;"}, + {"ro", "Romanian", "nplurals=3; plural=n==1 ? 0 : (n==0 || (n%100 > 0 && n%100 < 20)) ? 1 : 2;"}, + {"lt", "Lithuanian", "nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && (n%100<10 || n%100>=20) ? 1 : 2);"}, + {"ru", "Russian", "nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"}, + {"uk", "Ukrainian", "nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"}, + {"be", "Belarusian", "nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"}, + {"sr", "Serbian", "nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"}, + {"hr", "Croatian", "nplurals=3; plural=(n%10==1 && n%100!=11 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"}, + {"cs", "Czech", "nplurals=3; plural=(n==1) ? 0 : (n>=2 && n<=4) ? 1 : 2;"}, + {"sk", "Slovak", "nplurals=3; plural=(n==1) ? 0 : (n>=2 && n<=4) ? 1 : 2;"}, + {"pl", "Polish", "nplurals=3; plural=(n==1 ? 0 : n%10>=2 && n%10<=4 && (n%100<10 || n%100>=20) ? 1 : 2);"}, + {"sl", "Slovenian", "nplurals=4; plural=(n%100==1 ? 0 : n%100==2 ? 1 : n%100==3 || n%100==4 ? 2 : 3);"}, +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/po/comment.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/comment.go new file mode 100644 index 0000000000..d4abe7c106 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/comment.go @@ -0,0 +1,270 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package po + +import ( + "bytes" + "fmt" + "io" + "strconv" + "strings" +) + +// Comment represents every message's comments. +type Comment struct { + StartLine int // comment start line + TranslatorComment string // # translator-comments // TrimSpace + ExtractedComment string // #. extracted-comments + ReferenceFile []string // #: src/msgcmp.c:338 src/po-lex.c:699 + ReferenceLine []int // #: src/msgcmp.c:338 src/po-lex.c:699 + Flags []string // #, fuzzy,c-format,range:0..10 + PrevMsgContext string // #| msgctxt previous-context + PrevMsgId string // #| msgid previous-untranslated-string +} + +func (p *Comment) less(q *Comment) bool { + if p.StartLine != 0 || q.StartLine != 0 { + return p.StartLine < q.StartLine + } + if a, b := len(p.ReferenceFile), len(q.ReferenceFile); a != b { + return a < b + } + for i := 0; i < len(p.ReferenceFile); i++ { + if a, b := p.ReferenceFile[i], q.ReferenceFile[i]; a != b { + return a < b + } + if a, b := p.ReferenceLine[i], q.ReferenceLine[i]; a != b { + return a < b + } + } + return false +} + +func (p *Comment) readPoComment(r *lineReader) (err error) { + *p = Comment{} + if err = r.skipBlankLine(); err != nil { + return err + } + defer func(oldPos int) { + newPos := r.currentPos() + if newPos != oldPos && err == io.EOF { + err = nil + } + }(r.currentPos()) + + p.StartLine = r.currentPos() + 1 + for { + var s string + if s, _, err = r.currentLine(); err != nil { + return + } + if len(s) == 0 || s[0] != '#' { + return + } + + if err = p.readTranslatorComment(r); err != nil { + return + } + if err = p.readExtractedComment(r); err != nil { + return + } + if err = p.readReferenceComment(r); err != nil { + return + } + if err = p.readFlagsComment(r); err != nil { + return + } + if err = p.readPrevMsgContext(r); err != nil { + return + } + if err = p.readPrevMsgId(r); err != nil { + return + } + } +} + +func (p *Comment) readTranslatorComment(r *lineReader) (err error) { + const prefix = "# " // .,:| + for { + var s string + if s, _, err = r.readLine(); err != nil { + return err + } + if len(s) < 1 || s[0] != '#' { + r.unreadLine() + return nil + } + if len(s) >= 2 { + switch s[1] { + case '.', ',', ':', '|': + r.unreadLine() + return nil + } + } + if p.TranslatorComment != "" { + p.TranslatorComment += "\n" + } + p.TranslatorComment += strings.TrimSpace(s[1:]) + } +} + +func (p *Comment) readExtractedComment(r *lineReader) (err error) { + const prefix = "#." + for { + var s string + if s, _, err = r.readLine(); err != nil { + return err + } + if len(s) < len(prefix) || s[:len(prefix)] != prefix { + r.unreadLine() + return nil + } + if p.ExtractedComment != "" { + p.ExtractedComment += "\n" + } + p.ExtractedComment += strings.TrimSpace(s[len(prefix):]) + } +} + +func (p *Comment) readReferenceComment(r *lineReader) (err error) { + const prefix = "#:" + for { + var s string + if s, _, err = r.readLine(); err != nil { + return err + } + if len(s) < len(prefix) || s[:len(prefix)] != prefix { + r.unreadLine() + return nil + } + ss := strings.Split(strings.TrimSpace(s[len(prefix):]), " ") + for i := 0; i < len(ss); i++ { + idx := strings.Index(ss[i], ":") + if idx <= 0 { + continue + } + name := strings.TrimSpace(ss[i][:idx]) + line, _ := strconv.Atoi(strings.TrimSpace(ss[i][idx+1:])) + p.ReferenceFile = append(p.ReferenceFile, name) + p.ReferenceLine = append(p.ReferenceLine, line) + } + } +} + +func (p *Comment) readFlagsComment(r *lineReader) (err error) { + const prefix = "#," + for { + var s string + if s, _, err = r.readLine(); err != nil { + return err + } + if len(s) < len(prefix) || s[:len(prefix)] != prefix { + r.unreadLine() + return nil + } + ss := strings.Split(strings.TrimSpace(s[len(prefix):]), ",") + for i := 0; i < len(ss); i++ { + p.Flags = append(p.Flags, strings.TrimSpace(ss[i])) + } + } +} + +func (p *Comment) readPrevMsgContext(r *lineReader) (err error) { + var s string + if s, _, err = r.currentLine(); err != nil { + return + } + if !rePrevMsgContextComments.MatchString(s) { + return + } + p.PrevMsgContext, err = p.readString(r) + return +} + +func (p *Comment) readPrevMsgId(r *lineReader) (err error) { + var s string + if s, _, err = r.currentLine(); err != nil { + return + } + if !rePrevMsgIdComments.MatchString(s) { + return + } + p.PrevMsgId, err = p.readString(r) + return +} + +func (p *Comment) readString(r *lineReader) (msg string, err error) { + var s string + if s, _, err = r.readLine(); err != nil { + return + } + msg += decodePoString(s) + for { + if s, _, err = r.readLine(); err != nil { + return + } + if !reStringLineComments.MatchString(s) { + r.unreadLine() + break + } + msg += decodePoString(s) + } + return +} + +// GetFuzzy gets the fuzzy flag. +func (p *Comment) GetFuzzy() bool { + for _, s := range p.Flags { + if s == "fuzzy" { + return true + } + } + return false +} + +// SetFuzzy sets the fuzzy flag. +func (p *Comment) SetFuzzy(fuzzy bool) { + // +} + +// String returns the po format comment string. +func (p Comment) String() string { + var buf bytes.Buffer + if p.TranslatorComment != "" { + ss := strings.Split(p.TranslatorComment, "\n") + for i := 0; i < len(ss); i++ { + fmt.Fprintf(&buf, "# %s\n", ss[i]) + } + } + if p.ExtractedComment != "" { + ss := strings.Split(p.ExtractedComment, "\n") + for i := 0; i < len(ss); i++ { + fmt.Fprintf(&buf, "#. %s\n", ss[i]) + } + } + if a, b := len(p.ReferenceFile), len(p.ReferenceLine); a != 0 && a == b { + fmt.Fprintf(&buf, "#:") + for i := 0; i < len(p.ReferenceFile); i++ { + fmt.Fprintf(&buf, " %s:%d", p.ReferenceFile[i], p.ReferenceLine[i]) + } + fmt.Fprintf(&buf, "\n") + } + if len(p.Flags) != 0 { + fmt.Fprintf(&buf, "#, %s", p.Flags[0]) + for i := 1; i < len(p.Flags); i++ { + fmt.Fprintf(&buf, ", %s", p.Flags[i]) + } + fmt.Fprintf(&buf, "\n") + } + if p.PrevMsgContext != "" { + s := encodeCommentPoString(p.PrevMsgContext) + fmt.Fprintf(&buf, "#| msgctxt %s\n", s) + } + if p.PrevMsgId != "" { + s := encodeCommentPoString(p.PrevMsgId) + fmt.Fprintf(&buf, "#| msgid %s\n", s) + } + return buf.String() +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/po/doc.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/doc.go new file mode 100644 index 0000000000..6cfa2a24be --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/doc.go @@ -0,0 +1,24 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +/* +Package po provides support for reading and writing GNU PO file. + +Examples: + import ( + "github.com/chai2010/gettext-go/po" + ) + + func main() { + poFile, err := po.LoadFile("test.po") + if err != nil { + log.Fatal(err) + } + fmt.Printf("%v", poFile) + } + +The GNU PO file specification is at +http://www.gnu.org/software/gettext/manual/html_node/PO-Files.html. +*/ +package po diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/po/file.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/file.go new file mode 100644 index 0000000000..4a122eeb8b --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/file.go @@ -0,0 +1,81 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package po + +import ( + "bytes" + "fmt" + "io" + "io/ioutil" + "sort" +) + +// File represents an PO File. +// +// See http://www.gnu.org/software/gettext/manual/html_node/PO-Files.html +type File struct { + MimeHeader Header + Messages []Message +} + +// Load loads po file format data. +func Load(data []byte) (*File, error) { + return loadData(data) +} + +// LoadFile loads a named po file. +func LoadFile(path string) (*File, error) { + data, err := ioutil.ReadFile(path) + if err != nil { + return nil, err + } + return loadData(data) +} + +func loadData(data []byte) (*File, error) { + r := newLineReader(string(data)) + var file File + for { + var msg Message + if err := msg.readPoEntry(r); err != nil { + if err == io.EOF { + return &file, nil + } + return nil, err + } + if msg.MsgId == "" { + file.MimeHeader.parseHeader(&msg) + continue + } + file.Messages = append(file.Messages, msg) + } +} + +// Save saves a po file. +func (f *File) Save(name string) error { + return ioutil.WriteFile(name, []byte(f.String()), 0666) +} + +// Save returns a po file format data. +func (f *File) Data() []byte { + // sort the massge as ReferenceFile/ReferenceLine field + var messages []Message + messages = append(messages, f.Messages...) + sort.Slice(messages, func(i, j int) bool { + return messages[i].less(&messages[j]) + }) + + var buf bytes.Buffer + fmt.Fprintf(&buf, "%s\n", f.MimeHeader.String()) + for i := 0; i < len(messages); i++ { + fmt.Fprintf(&buf, "%s\n", messages[i].String()) + } + return buf.Bytes() +} + +// String returns the po format file string. +func (f *File) String() string { + return string(f.Data()) +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/po/header.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/header.go new file mode 100644 index 0000000000..a9b5b6671b --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/header.go @@ -0,0 +1,106 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package po + +import ( + "bytes" + "fmt" + "strings" +) + +// Header is the initial comments "SOME DESCRIPTIVE TITLE", "YEAR" +// and "FIRST AUTHOR , YEAR" ought to be replaced by sensible information. +// +// See http://www.gnu.org/software/gettext/manual/html_node/Header-Entry.html#Header-Entry +type Header struct { + Comment // Header Comments + ProjectIdVersion string // Project-Id-Version: PACKAGE VERSION + ReportMsgidBugsTo string // Report-Msgid-Bugs-To: FIRST AUTHOR + POTCreationDate string // POT-Creation-Date: YEAR-MO-DA HO:MI+ZONE + PORevisionDate string // PO-Revision-Date: YEAR-MO-DA HO:MI+ZONE + LastTranslator string // Last-Translator: FIRST AUTHOR + LanguageTeam string // Language-Team: golang-china + Language string // Language: zh_CN + MimeVersion string // MIME-Version: 1.0 + ContentType string // Content-Type: text/plain; charset=UTF-8 + ContentTransferEncoding string // Content-Transfer-Encoding: 8bit + PluralForms string // Plural-Forms: nplurals=2; plural=n == 1 ? 0 : 1; + XGenerator string // X-Generator: Poedit 1.5.5 + UnknowFields map[string]string +} + +func (p *Header) parseHeader(msg *Message) { + if msg.MsgId != "" || msg.MsgStr == "" { + return + } + lines := strings.Split(msg.MsgStr, "\n") + for i := 0; i < len(lines); i++ { + idx := strings.Index(lines[i], ":") + if idx < 0 { + continue + } + key := strings.TrimSpace(lines[i][:idx]) + val := strings.TrimSpace(lines[i][idx+1:]) + switch strings.ToUpper(key) { + case strings.ToUpper("Project-Id-Version"): + p.ProjectIdVersion = val + case strings.ToUpper("Report-Msgid-Bugs-To"): + p.ReportMsgidBugsTo = val + case strings.ToUpper("POT-Creation-Date"): + p.POTCreationDate = val + case strings.ToUpper("PO-Revision-Date"): + p.PORevisionDate = val + case strings.ToUpper("Last-Translator"): + p.LastTranslator = val + case strings.ToUpper("Language-Team"): + p.LanguageTeam = val + case strings.ToUpper("Language"): + p.Language = val + case strings.ToUpper("MIME-Version"): + p.MimeVersion = val + case strings.ToUpper("Content-Type"): + p.ContentType = val + case strings.ToUpper("Content-Transfer-Encoding"): + p.ContentTransferEncoding = val + case strings.ToUpper("Plural-Forms"): + p.PluralForms = val + case strings.ToUpper("X-Generator"): + p.XGenerator = val + default: + if p.UnknowFields == nil { + p.UnknowFields = make(map[string]string) + } + p.UnknowFields[key] = val + } + } + p.Comment = msg.Comment +} + +// String returns the po format header string. +func (p Header) String() string { + var buf bytes.Buffer + fmt.Fprintf(&buf, "%s", p.Comment.String()) + fmt.Fprintf(&buf, `msgid ""`+"\n") + fmt.Fprintf(&buf, `msgstr ""`+"\n") + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Project-Id-Version", p.ProjectIdVersion) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Report-Msgid-Bugs-To", p.ReportMsgidBugsTo) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "POT-Creation-Date", p.POTCreationDate) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "PO-Revision-Date", p.PORevisionDate) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Last-Translator", p.LastTranslator) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Language-Team", p.LanguageTeam) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Language", p.Language) + if p.MimeVersion != "" { + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "MIME-Version", p.MimeVersion) + } + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Content-Type", p.ContentType) + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "Content-Transfer-Encoding", p.ContentTransferEncoding) + if p.XGenerator != "" { + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", "X-Generator", p.XGenerator) + } + for k, v := range p.UnknowFields { + fmt.Fprintf(&buf, `"%s: %s\n"`+"\n", k, v) + } + return buf.String() +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/po/line_reader.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/line_reader.go new file mode 100644 index 0000000000..8597273a2b --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/line_reader.go @@ -0,0 +1,62 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package po + +import ( + "io" + "strings" +) + +type lineReader struct { + lines []string + pos int +} + +func newLineReader(data string) *lineReader { + data = strings.Replace(data, "\r", "", -1) + lines := strings.Split(data, "\n") + return &lineReader{lines: lines} +} + +func (r *lineReader) skipBlankLine() error { + for ; r.pos < len(r.lines); r.pos++ { + if strings.TrimSpace(r.lines[r.pos]) != "" { + break + } + } + if r.pos >= len(r.lines) { + return io.EOF + } + return nil +} + +func (r *lineReader) currentPos() int { + return r.pos +} + +func (r *lineReader) currentLine() (s string, pos int, err error) { + if r.pos >= len(r.lines) { + err = io.EOF + return + } + s, pos = r.lines[r.pos], r.pos + return +} + +func (r *lineReader) readLine() (s string, pos int, err error) { + if r.pos >= len(r.lines) { + err = io.EOF + return + } + s, pos = r.lines[r.pos], r.pos + r.pos++ + return +} + +func (r *lineReader) unreadLine() { + if r.pos >= 0 { + r.pos-- + } +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/po/message.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/message.go new file mode 100644 index 0000000000..39936dcc7b --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/message.go @@ -0,0 +1,193 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package po + +import ( + "bytes" + "fmt" + "io" + "strconv" + "strings" +) + +// A PO file is made up of many entries, +// each entry holding the relation between an original untranslated string +// and its corresponding translation. +// +// See http://www.gnu.org/software/gettext/manual/html_node/PO-Files.html +type Message struct { + Comment // Coments + MsgContext string // msgctxt context + MsgId string // msgid untranslated-string + MsgIdPlural string // msgid_plural untranslated-string-plural + MsgStr string // msgstr translated-string + MsgStrPlural []string // msgstr[0] translated-string-case-0 +} + +func (p *Message) less(q *Message) bool { + if p.Comment.less(&q.Comment) { + return true + } + if a, b := p.MsgContext, q.MsgContext; a != b { + return a < b + } + if a, b := p.MsgId, q.MsgId; a != b { + return a < b + } + if a, b := p.MsgIdPlural, q.MsgIdPlural; a != b { + return a < b + } + return false +} + +func (p *Message) readPoEntry(r *lineReader) (err error) { + *p = Message{} + if err = r.skipBlankLine(); err != nil { + return + } + defer func(oldPos int) { + newPos := r.currentPos() + if newPos != oldPos && err == io.EOF { + err = nil + } + }(r.currentPos()) + + if err = p.Comment.readPoComment(r); err != nil { + return + } + for { + var s string + if s, _, err = r.currentLine(); err != nil { + return + } + + if p.isInvalidLine(s) { + err = fmt.Errorf("gettext: line %d, %v", r.currentPos(), "invalid line") + return + } + if reComment.MatchString(s) || reBlankLine.MatchString(s) { + return + } + + if err = p.readMsgContext(r); err != nil { + return + } + if err = p.readMsgId(r); err != nil { + return + } + if err = p.readMsgIdPlural(r); err != nil { + return + } + if err = p.readMsgStrOrPlural(r); err != nil { + return + } + } +} + +func (p *Message) readMsgContext(r *lineReader) (err error) { + var s string + if s, _, err = r.currentLine(); err != nil { + return + } + if !reMsgContext.MatchString(s) { + return + } + p.MsgContext, err = p.readString(r) + return +} + +func (p *Message) readMsgId(r *lineReader) (err error) { + var s string + if s, _, err = r.currentLine(); err != nil { + return + } + if !reMsgId.MatchString(s) { + return + } + p.MsgId, err = p.readString(r) + return +} + +func (p *Message) readMsgIdPlural(r *lineReader) (err error) { + var s string + if s, _, err = r.currentLine(); err != nil { + return + } + if !reMsgIdPlural.MatchString(s) { + return + } + p.MsgIdPlural, err = p.readString(r) + return nil +} + +func (p *Message) readMsgStrOrPlural(r *lineReader) (err error) { + var s string + if s, _, err = r.currentLine(); err != nil { + return + } + if !reMsgStr.MatchString(s) && !reMsgStrPlural.MatchString(s) { + return + } + if reMsgStrPlural.MatchString(s) { + left, right := strings.Index(s, `[`), strings.LastIndex(s, `]`) + idx, _ := strconv.Atoi(s[left+1 : right]) + s, err = p.readString(r) + if n := len(p.MsgStrPlural); (idx + 1) > n { + p.MsgStrPlural = append(p.MsgStrPlural, make([]string, (idx+1)-n)...) + } + p.MsgStrPlural[idx] = s + } else { + p.MsgStr, err = p.readString(r) + } + return nil +} + +func (p *Message) readString(r *lineReader) (msg string, err error) { + var s string + if s, _, err = r.readLine(); err != nil { + return + } + msg += decodePoString(s) + for { + if s, _, err = r.readLine(); err != nil { + return + } + if !reStringLine.MatchString(s) { + r.unreadLine() + break + } + msg += decodePoString(s) + } + return +} + +// String returns the po format entry string. +func (p Message) String() string { + var buf bytes.Buffer + fmt.Fprintf(&buf, "%s", p.Comment.String()) + if p.MsgContext != "" { + fmt.Fprintf(&buf, "msgctxt %s", encodePoString(p.MsgContext)) + } + fmt.Fprintf(&buf, "msgid %s", encodePoString(p.MsgId)) + if p.MsgIdPlural != "" { + fmt.Fprintf(&buf, "msgid_plural %s", encodePoString(p.MsgIdPlural)) + } + if len(p.MsgStrPlural) == 0 { + if p.MsgStr != "" { + fmt.Fprintf(&buf, "msgstr %s", encodePoString(p.MsgStr)) + } else { + fmt.Fprintf(&buf, "msgstr %s", `""`+"\n") + } + } else { + for i := 0; i < len(p.MsgStrPlural); i++ { + if p.MsgStrPlural[i] != "" { + fmt.Fprintf(&buf, "msgstr[%d] %s", i, encodePoString(p.MsgStrPlural[i])) + } else { + fmt.Fprintf(&buf, "msgstr[%d] %s", i, `""`+"\n") + } + } + } + return buf.String() +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/po/re.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/re.go new file mode 100644 index 0000000000..67c240a57b --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/re.go @@ -0,0 +1,58 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package po + +import ( + "regexp" +) + +var ( + reComment = regexp.MustCompile(`^#`) // # + reExtractedComments = regexp.MustCompile(`^#\.`) // #. + reReferenceComments = regexp.MustCompile(`^#:`) // #: + reFlagsComments = regexp.MustCompile(`^#,`) // #, fuzzy,c-format + rePrevMsgContextComments = regexp.MustCompile(`^#\|\s+msgctxt`) // #| msgctxt + rePrevMsgIdComments = regexp.MustCompile(`^#\|\s+msgid`) // #| msgid + reStringLineComments = regexp.MustCompile(`^#\|\s+".*"\s*$`) // #| "message" + + reMsgContext = regexp.MustCompile(`^msgctxt\s+".*"\s*$`) // msgctxt + reMsgId = regexp.MustCompile(`^msgid\s+".*"\s*$`) // msgid + reMsgIdPlural = regexp.MustCompile(`^msgid_plural\s+".*"\s*$`) // msgid_plural + reMsgStr = regexp.MustCompile(`^msgstr\s*".*"\s*$`) // msgstr + reMsgStrPlural = regexp.MustCompile(`^msgstr\s*(\[\d+\])\s*".*"\s*$`) // msgstr[0] + reStringLine = regexp.MustCompile(`^\s*".*"\s*$`) // "message" + reBlankLine = regexp.MustCompile(`^\s*$`) // +) + +func (p *Message) isInvalidLine(s string) bool { + if reComment.MatchString(s) { + return false + } + if reBlankLine.MatchString(s) { + return false + } + + if reMsgContext.MatchString(s) { + return false + } + if reMsgId.MatchString(s) { + return false + } + if reMsgIdPlural.MatchString(s) { + return false + } + if reMsgStr.MatchString(s) { + return false + } + if reMsgStrPlural.MatchString(s) { + return false + } + + if reStringLine.MatchString(s) { + return false + } + + return true +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/po/util.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/util.go new file mode 100644 index 0000000000..d8b3b0e254 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/po/util.go @@ -0,0 +1,114 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package po + +import ( + "bytes" + "strings" +) + +func decodePoString(text string) string { + lines := strings.Split(text, "\n") + for i := 0; i < len(lines); i++ { + left := strings.Index(lines[i], `"`) + right := strings.LastIndex(lines[i], `"`) + if left < 0 || right < 0 || left == right { + lines[i] = "" + continue + } + line := lines[i][left+1 : right] + data := make([]byte, 0, len(line)) + for i := 0; i < len(line); i++ { + if line[i] != '\\' { + data = append(data, line[i]) + continue + } + if i+1 >= len(line) { + break + } + switch line[i+1] { + case 'n': // \\n -> \n + data = append(data, '\n') + i++ + case 't': // \\t -> \n + data = append(data, '\t') + i++ + case '\\': // \\\ -> ? + data = append(data, '\\') + i++ + } + } + lines[i] = string(data) + } + return strings.Join(lines, "") +} + +func encodePoString(text string) string { + var buf bytes.Buffer + lines := strings.Split(text, "\n") + for i := 0; i < len(lines); i++ { + if lines[i] == "" { + if i != len(lines)-1 { + buf.WriteString(`"\n"` + "\n") + } + continue + } + buf.WriteRune('"') + for _, r := range lines[i] { + switch r { + case '\\': + buf.WriteString(`\\`) + case '"': + buf.WriteString(`\"`) + case '\n': + buf.WriteString(`\n`) + case '\t': + buf.WriteString(`\t`) + default: + buf.WriteRune(r) + } + } + if i < len(lines)-1 { + buf.WriteString(`\n"` + "\n") + } else { + buf.WriteString(`"` + "\n") + } + } + return buf.String() +} + +func encodeCommentPoString(text string) string { + var buf bytes.Buffer + lines := strings.Split(text, "\n") + if len(lines) > 1 { + buf.WriteString(`""` + "\n") + } + for i := 0; i < len(lines); i++ { + if len(lines) > 0 { + buf.WriteString("#| ") + } + buf.WriteRune('"') + for _, r := range lines[i] { + switch r { + case '\\': + buf.WriteString(`\\`) + case '"': + buf.WriteString(`\"`) + case '\n': + buf.WriteString(`\n`) + case '\t': + buf.WriteString(`\t`) + default: + buf.WriteRune(r) + } + } + if i < len(lines)-1 { + buf.WriteString(`\n"` + "\n") + } else { + buf.WriteString(`"`) + } + } + return buf.String() +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/tr.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/tr.go new file mode 100644 index 0000000000..5b9d08f426 --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/tr.go @@ -0,0 +1,175 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package gettext + +import ( + "encoding/json" + + "github.com/chai2010/gettext-go/mo" + "github.com/chai2010/gettext-go/plural" + "github.com/chai2010/gettext-go/po" +) + +var nilTranslator = &translator{ + MessageMap: make(map[string]mo.Message), + PluralFormula: plural.Formula("??"), +} + +type translator struct { + MessageMap map[string]mo.Message + PluralFormula func(n int) int +} + +func newMoTranslator(name string, data []byte) (*translator, error) { + var ( + f *mo.File + err error + ) + if len(data) != 0 { + f, err = mo.Load(data) + } else { + f, err = mo.LoadFile(name) + } + if err != nil { + return nil, err + } + var tr = &translator{ + MessageMap: make(map[string]mo.Message), + } + for _, v := range f.Messages { + tr.MessageMap[tr.makeMapKey(v.MsgContext, v.MsgId)] = v + } + if lang := f.MimeHeader.Language; lang != "" { + tr.PluralFormula = plural.Formula(lang) + } else { + tr.PluralFormula = plural.Formula("??") + } + return tr, nil +} + +func newPoTranslator(name string, data []byte) (*translator, error) { + var ( + f *po.File + err error + ) + if len(data) != 0 { + f, err = po.Load(data) + } else { + f, err = po.LoadFile(name) + } + if err != nil { + return nil, err + } + var tr = &translator{ + MessageMap: make(map[string]mo.Message), + } + for _, v := range f.Messages { + tr.MessageMap[tr.makeMapKey(v.MsgContext, v.MsgId)] = mo.Message{ + MsgContext: v.MsgContext, + MsgId: v.MsgId, + MsgIdPlural: v.MsgIdPlural, + MsgStr: v.MsgStr, + MsgStrPlural: v.MsgStrPlural, + } + } + if lang := f.MimeHeader.Language; lang != "" { + tr.PluralFormula = plural.Formula(lang) + } else { + tr.PluralFormula = plural.Formula("??") + } + return tr, nil +} + +func newJsonTranslator(lang, name string, jsonData []byte) (*translator, error) { + var msgList []struct { + MsgContext string `json:"msgctxt"` // msgctxt context + MsgId string `json:"msgid"` // msgid untranslated-string + MsgIdPlural string `json:"msgid_plural"` // msgid_plural untranslated-string-plural + MsgStr []string `json:"msgstr"` // msgstr translated-string + } + if err := json.Unmarshal(jsonData, &msgList); err != nil { + return nil, err + } + + var tr = &translator{ + MessageMap: make(map[string]mo.Message), + PluralFormula: plural.Formula(lang), + } + + for _, v := range msgList { + var v_MsgStr string + var v_MsgStrPlural = v.MsgStr + + if len(v.MsgStr) != 0 { + v_MsgStr = v.MsgStr[0] + } + + tr.MessageMap[tr.makeMapKey(v.MsgContext, v.MsgId)] = mo.Message{ + MsgContext: v.MsgContext, + MsgId: v.MsgId, + MsgIdPlural: v.MsgIdPlural, + MsgStr: v_MsgStr, + MsgStrPlural: v_MsgStrPlural, + } + } + return tr, nil +} + +func (p *translator) PGettext(msgctxt, msgid string) string { + return p.findMsgStr(msgctxt, msgid) +} + +func (p *translator) PNGettext(msgctxt, msgid, msgidPlural string, n int) string { + n = p.PluralFormula(n) + if ss := p.findMsgStrPlural(msgctxt, msgid, msgidPlural); len(ss) != 0 { + if n >= len(ss) { + n = len(ss) - 1 + } + if ss[n] != "" { + return ss[n] + } + } + if msgidPlural != "" && n > 0 { + return msgidPlural + } + return msgid +} + +func (p *translator) findMsgStr(msgctxt, msgid string) string { + key := p.makeMapKey(msgctxt, msgid) + if v, ok := p.MessageMap[key]; ok { + if v.MsgStr != "" { + return v.MsgStr + } + } + return msgid +} + +func (p *translator) findMsgStrPlural(msgctxt, msgid, msgidPlural string) []string { + key := p.makeMapKey(msgctxt, msgid) + if v, ok := p.MessageMap[key]; ok { + if len(v.MsgIdPlural) != 0 { + if len(v.MsgStrPlural) != 0 { + return v.MsgStrPlural + } else { + return nil + } + } else { + if len(v.MsgStr) != 0 { + return []string{v.MsgStr} + } else { + return nil + } + } + } + return nil +} + +func (p *translator) makeMapKey(msgctxt, msgid string) string { + if msgctxt != "" { + return msgctxt + mo.EotSeparator + msgid + } + return msgid +} diff --git a/tests/e2e/vendor/github.com/chai2010/gettext-go/util.go b/tests/e2e/vendor/github.com/chai2010/gettext-go/util.go new file mode 100644 index 0000000000..b8269a605c --- /dev/null +++ b/tests/e2e/vendor/github.com/chai2010/gettext-go/util.go @@ -0,0 +1,34 @@ +// Copyright 2013 ChaiShushan . All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package gettext + +import ( + "os" + "strings" +) + +func getDefaultLanguage() string { + if v := os.Getenv("LC_MESSAGES"); v != "" { + return simplifiedLanguage(v) + } + if v := os.Getenv("LANG"); v != "" { + return simplifiedLanguage(v) + } + return "default" +} + +func simplifiedLanguage(lang string) string { + // en_US/en_US.UTF-8/zh_CN/zh_TW/el_GR@euro/... + if idx := strings.Index(lang, ":"); idx != -1 { + lang = lang[:idx] + } + if idx := strings.Index(lang, "@"); idx != -1 { + lang = lang[:idx] + } + if idx := strings.Index(lang, "."); idx != -1 { + lang = lang[:idx] + } + return strings.TrimSpace(lang) +} diff --git a/tests/e2e/vendor/github.com/exponent-io/jsonpath/.gitignore b/tests/e2e/vendor/github.com/exponent-io/jsonpath/.gitignore new file mode 100644 index 0000000000..daf913b1b3 --- /dev/null +++ b/tests/e2e/vendor/github.com/exponent-io/jsonpath/.gitignore @@ -0,0 +1,24 @@ +# Compiled Object files, Static and Dynamic libs (Shared Objects) +*.o +*.a +*.so + +# Folders +_obj +_test + +# Architecture specific extensions/prefixes +*.[568vq] +[568vq].out + +*.cgo1.go +*.cgo2.c +_cgo_defun.c +_cgo_gotypes.go +_cgo_export.* + +_testmain.go + +*.exe +*.test +*.prof diff --git a/tests/e2e/vendor/github.com/exponent-io/jsonpath/.travis.yml b/tests/e2e/vendor/github.com/exponent-io/jsonpath/.travis.yml new file mode 100644 index 0000000000..53bb8b3f95 --- /dev/null +++ b/tests/e2e/vendor/github.com/exponent-io/jsonpath/.travis.yml @@ -0,0 +1,7 @@ +language: go +arch: + - amd64 + - ppc64le +go: + - 1.15 + - tip diff --git a/tests/e2e/vendor/github.com/exponent-io/jsonpath/LICENSE b/tests/e2e/vendor/github.com/exponent-io/jsonpath/LICENSE new file mode 100644 index 0000000000..5419772507 --- /dev/null +++ b/tests/e2e/vendor/github.com/exponent-io/jsonpath/LICENSE @@ -0,0 +1,21 @@ +The MIT License (MIT) + +Copyright (c) 2015 Exponent Labs LLC + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in all +copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE +SOFTWARE. diff --git a/tests/e2e/vendor/github.com/exponent-io/jsonpath/README.md b/tests/e2e/vendor/github.com/exponent-io/jsonpath/README.md new file mode 100644 index 0000000000..382fb3138c --- /dev/null +++ b/tests/e2e/vendor/github.com/exponent-io/jsonpath/README.md @@ -0,0 +1,66 @@ +[![GoDoc](https://godoc.org/github.com/exponent-io/jsonpath?status.svg)](https://godoc.org/github.com/exponent-io/jsonpath) +[![Build Status](https://travis-ci.org/exponent-io/jsonpath.svg?branch=master)](https://travis-ci.org/exponent-io/jsonpath) + +# jsonpath + +This package extends the [json.Decoder](https://golang.org/pkg/encoding/json/#Decoder) to support navigating a stream of JSON tokens. You should be able to use this extended Decoder places where a json.Decoder would have been used. + +This Decoder has the following enhancements... + * The [Scan](https://godoc.org/github.com/exponent-io/jsonpath/#Decoder.Scan) method supports scanning a JSON stream while extracting particular values along the way using [PathActions](https://godoc.org/github.com/exponent-io/jsonpath#PathActions). + * The [SeekTo](https://godoc.org/github.com/exponent-io/jsonpath#Decoder.SeekTo) method supports seeking forward in a JSON token stream to a particular path. + * The [Path](https://godoc.org/github.com/exponent-io/jsonpath#Decoder.Path) method returns the path of the most recently parsed token. + * The [Token](https://godoc.org/github.com/exponent-io/jsonpath#Decoder.Token) method has been modified to distinguish between strings that are object keys and strings that are values. Object key strings are returned as the [KeyString](https://godoc.org/github.com/exponent-io/jsonpath#KeyString) type rather than a native string. + +## Installation + + go get -u github.com/exponent-io/jsonpath + +## Example Usage + +#### SeekTo + +```go +import "github.com/exponent-io/jsonpath" + +var j = []byte(`[ + {"Space": "YCbCr", "Point": {"Y": 255, "Cb": 0, "Cr": -10}}, + {"Space": "RGB", "Point": {"R": 98, "G": 218, "B": 255}} +]`) + +w := json.NewDecoder(bytes.NewReader(j)) +var v interface{} + +w.SeekTo(1, "Point", "G") +w.Decode(&v) // v is 218 +``` + +#### Scan with PathActions + +```go +var j = []byte(`{"colors":[ + {"Space": "YCbCr", "Point": {"Y": 255, "Cb": 0, "Cr": -10, "A": 58}}, + {"Space": "RGB", "Point": {"R": 98, "G": 218, "B": 255, "A": 231}} +]}`) + +var actions PathActions + +// Extract the value at Point.A +actions.Add(func(d *Decoder) error { + var alpha int + err := d.Decode(&alpha) + fmt.Printf("Alpha: %v\n", alpha) + return err +}, "Point", "A") + +w := NewDecoder(bytes.NewReader(j)) +w.SeekTo("colors", 0) + +var ok = true +var err error +for ok { + ok, err = w.Scan(&actions) + if err != nil && err != io.EOF { + panic(err) + } +} +``` diff --git a/tests/e2e/vendor/github.com/exponent-io/jsonpath/decoder.go b/tests/e2e/vendor/github.com/exponent-io/jsonpath/decoder.go new file mode 100644 index 0000000000..5e3a06548a --- /dev/null +++ b/tests/e2e/vendor/github.com/exponent-io/jsonpath/decoder.go @@ -0,0 +1,209 @@ +package jsonpath + +import ( + "encoding/json" + "io" +) + +// KeyString is returned from Decoder.Token to represent each key in a JSON object value. +type KeyString string + +// Decoder extends the Go runtime's encoding/json.Decoder to support navigating in a stream of JSON tokens. +type Decoder struct { + json.Decoder + + path JsonPath + context jsonContext +} + +// NewDecoder creates a new instance of the extended JSON Decoder. +func NewDecoder(r io.Reader) *Decoder { + return &Decoder{Decoder: *json.NewDecoder(r)} +} + +// SeekTo causes the Decoder to move forward to a given path in the JSON structure. +// +// The path argument must consist of strings or integers. Each string specifies an JSON object key, and +// each integer specifies an index into a JSON array. +// +// Consider the JSON structure +// +// { "a": [0,"s",12e4,{"b":0,"v":35} ] } +// +// SeekTo("a",3,"v") will move to the value referenced by the "a" key in the current object, +// followed by a move to the 4th value (index 3) in the array, followed by a move to the value at key "v". +// In this example, a subsequent call to the decoder's Decode() would unmarshal the value 35. +// +// SeekTo returns a boolean value indicating whether a match was found. +// +// Decoder is intended to be used with a stream of tokens. As a result it navigates forward only. +func (d *Decoder) SeekTo(path ...interface{}) (bool, error) { + + if len(path) > 0 { + last := len(path) - 1 + if i, ok := path[last].(int); ok { + path[last] = i - 1 + } + } + + for { + if len(path) == len(d.path) && d.path.Equal(path) { + return true, nil + } + _, err := d.Token() + if err == io.EOF { + return false, nil + } else if err != nil { + return false, err + } + } +} + +// Decode reads the next JSON-encoded value from its input and stores it in the value pointed to by v. This is +// equivalent to encoding/json.Decode(). +func (d *Decoder) Decode(v interface{}) error { + switch d.context { + case objValue: + d.context = objKey + break + case arrValue: + d.path.incTop() + break + } + return d.Decoder.Decode(v) +} + +// Path returns a slice of string and/or int values representing the path from the root of the JSON object to the +// position of the most-recently parsed token. +func (d *Decoder) Path() JsonPath { + p := make(JsonPath, len(d.path)) + copy(p, d.path) + return p +} + +// Token is equivalent to the Token() method on json.Decoder. The primary difference is that it distinguishes +// between strings that are keys and and strings that are values. String tokens that are object keys are returned as a +// KeyString rather than as a native string. +func (d *Decoder) Token() (json.Token, error) { + t, err := d.Decoder.Token() + if err != nil { + return t, err + } + + if t == nil { + switch d.context { + case objValue: + d.context = objKey + break + case arrValue: + d.path.incTop() + break + } + return t, err + } + + switch t := t.(type) { + case json.Delim: + switch t { + case json.Delim('{'): + if d.context == arrValue { + d.path.incTop() + } + d.path.push("") + d.context = objKey + break + case json.Delim('}'): + d.path.pop() + d.context = d.path.inferContext() + break + case json.Delim('['): + if d.context == arrValue { + d.path.incTop() + } + d.path.push(-1) + d.context = arrValue + break + case json.Delim(']'): + d.path.pop() + d.context = d.path.inferContext() + break + } + case float64, json.Number, bool: + switch d.context { + case objValue: + d.context = objKey + break + case arrValue: + d.path.incTop() + break + } + break + case string: + switch d.context { + case objKey: + d.path.nameTop(t) + d.context = objValue + return KeyString(t), err + case objValue: + d.context = objKey + case arrValue: + d.path.incTop() + } + break + } + + return t, err +} + +// Scan moves forward over the JSON stream consuming all the tokens at the current level (current object, current array) +// invoking each matching PathAction along the way. +// +// Scan returns true if there are more contiguous values to scan (for example in an array). +func (d *Decoder) Scan(ext *PathActions) (bool, error) { + + rootPath := d.Path() + + // If this is an array path, increment the root path in our local copy. + if rootPath.inferContext() == arrValue { + rootPath.incTop() + } + + for { + // advance the token position + _, err := d.Token() + if err != nil { + return false, err + } + + match: + var relPath JsonPath + + // capture the new JSON path + path := d.Path() + + if len(path) > len(rootPath) { + // capture the path relative to where the scan started + relPath = path[len(rootPath):] + } else { + // if the path is not longer than the root, then we are done with this scan + // return boolean flag indicating if there are more items to scan at the same level + return d.Decoder.More(), nil + } + + // match the relative path against the path actions + if node := ext.node.match(relPath); node != nil { + if node.action != nil { + // we have a match so execute the action + err = node.action(d) + if err != nil { + return d.Decoder.More(), err + } + // The action may have advanced the decoder. If we are in an array, advancing it further would + // skip tokens. So, if we are scanning an array, jump to the top without advancing the token. + if d.path.inferContext() == arrValue && d.Decoder.More() { + goto match + } + } + } + } +} diff --git a/tests/e2e/vendor/github.com/exponent-io/jsonpath/path.go b/tests/e2e/vendor/github.com/exponent-io/jsonpath/path.go new file mode 100644 index 0000000000..d7db2ad336 --- /dev/null +++ b/tests/e2e/vendor/github.com/exponent-io/jsonpath/path.go @@ -0,0 +1,67 @@ +// Extends the Go runtime's json.Decoder enabling navigation of a stream of json tokens. +package jsonpath + +import "fmt" + +type jsonContext int + +const ( + none jsonContext = iota + objKey + objValue + arrValue +) + +// AnyIndex can be used in a pattern to match any array index. +const AnyIndex = -2 + +// JsonPath is a slice of strings and/or integers. Each string specifies an JSON object key, and +// each integer specifies an index into a JSON array. +type JsonPath []interface{} + +func (p *JsonPath) push(n interface{}) { *p = append(*p, n) } +func (p *JsonPath) pop() { *p = (*p)[:len(*p)-1] } + +// increment the index at the top of the stack (must be an array index) +func (p *JsonPath) incTop() { (*p)[len(*p)-1] = (*p)[len(*p)-1].(int) + 1 } + +// name the key at the top of the stack (must be an object key) +func (p *JsonPath) nameTop(n string) { (*p)[len(*p)-1] = n } + +// infer the context from the item at the top of the stack +func (p *JsonPath) inferContext() jsonContext { + if len(*p) == 0 { + return none + } + t := (*p)[len(*p)-1] + switch t.(type) { + case string: + return objKey + case int: + return arrValue + default: + panic(fmt.Sprintf("Invalid stack type %T", t)) + } +} + +// Equal tests for equality between two JsonPath types. +func (p *JsonPath) Equal(o JsonPath) bool { + if len(*p) != len(o) { + return false + } + for i, v := range *p { + if v != o[i] { + return false + } + } + return true +} + +func (p *JsonPath) HasPrefix(o JsonPath) bool { + for i, v := range o { + if v != (*p)[i] { + return false + } + } + return true +} diff --git a/tests/e2e/vendor/github.com/exponent-io/jsonpath/pathaction.go b/tests/e2e/vendor/github.com/exponent-io/jsonpath/pathaction.go new file mode 100644 index 0000000000..497ed686ca --- /dev/null +++ b/tests/e2e/vendor/github.com/exponent-io/jsonpath/pathaction.go @@ -0,0 +1,61 @@ +package jsonpath + +// pathNode is used to construct a trie of paths to be matched +type pathNode struct { + matchOn interface{} // string, or integer + childNodes []pathNode + action DecodeAction +} + +// match climbs the trie to find a node that matches the given JSON path. +func (n *pathNode) match(path JsonPath) *pathNode { + var node *pathNode = n + for _, ps := range path { + found := false + for i, n := range node.childNodes { + if n.matchOn == ps { + node = &node.childNodes[i] + found = true + break + } else if _, ok := ps.(int); ok && n.matchOn == AnyIndex { + node = &node.childNodes[i] + found = true + break + } + } + if !found { + return nil + } + } + return node +} + +// PathActions represents a collection of DecodeAction functions that should be called at certain path positions +// when scanning the JSON stream. PathActions can be created once and used many times in one or more JSON streams. +type PathActions struct { + node pathNode +} + +// DecodeAction handlers are called by the Decoder when scanning objects. See PathActions.Add for more detail. +type DecodeAction func(d *Decoder) error + +// Add specifies an action to call on the Decoder when the specified path is encountered. +func (je *PathActions) Add(action DecodeAction, path ...interface{}) { + + var node *pathNode = &je.node + for _, ps := range path { + found := false + for i, n := range node.childNodes { + if n.matchOn == ps { + node = &node.childNodes[i] + found = true + break + } + } + if !found { + node.childNodes = append(node.childNodes, pathNode{matchOn: ps}) + node = &node.childNodes[len(node.childNodes)-1] + } + } + node.action = action +} diff --git a/tests/e2e/vendor/github.com/fatih/camelcase/.travis.yml b/tests/e2e/vendor/github.com/fatih/camelcase/.travis.yml new file mode 100644 index 0000000000..3489e38713 --- /dev/null +++ b/tests/e2e/vendor/github.com/fatih/camelcase/.travis.yml @@ -0,0 +1,3 @@ +language: go +go: 1.x + diff --git a/tests/e2e/vendor/github.com/fatih/camelcase/LICENSE.md b/tests/e2e/vendor/github.com/fatih/camelcase/LICENSE.md new file mode 100644 index 0000000000..aa4a536caf --- /dev/null +++ b/tests/e2e/vendor/github.com/fatih/camelcase/LICENSE.md @@ -0,0 +1,20 @@ +The MIT License (MIT) + +Copyright (c) 2015 Fatih Arslan + +Permission is hereby granted, free of charge, to any person obtaining a copy of +this software and associated documentation files (the "Software"), to deal in +the Software without restriction, including without limitation the rights to +use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of +the Software, and to permit persons to whom the Software is furnished to do so, +subject to the following conditions: + +The above copyright notice and this permission notice shall be included in all +copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS +FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR +COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER +IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN +CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. diff --git a/tests/e2e/vendor/github.com/fatih/camelcase/README.md b/tests/e2e/vendor/github.com/fatih/camelcase/README.md new file mode 100644 index 0000000000..105a6ae33d --- /dev/null +++ b/tests/e2e/vendor/github.com/fatih/camelcase/README.md @@ -0,0 +1,58 @@ +# CamelCase [![GoDoc](http://img.shields.io/badge/go-documentation-blue.svg?style=flat-square)](http://godoc.org/github.com/fatih/camelcase) [![Build Status](http://img.shields.io/travis/fatih/camelcase.svg?style=flat-square)](https://travis-ci.org/fatih/camelcase) + +CamelCase is a Golang (Go) package to split the words of a camelcase type +string into a slice of words. It can be used to convert a camelcase word (lower +or upper case) into any type of word. + +## Splitting rules: + +1. If string is not valid UTF-8, return it without splitting as + single item array. +2. Assign all unicode characters into one of 4 sets: lower case + letters, upper case letters, numbers, and all other characters. +3. Iterate through characters of string, introducing splits + between adjacent characters that belong to different sets. +4. Iterate through array of split strings, and if a given string + is upper case: + * if subsequent string is lower case: + * move last character of upper case string to beginning of + lower case string + +## Install + +```bash +go get github.com/fatih/camelcase +``` + +## Usage and examples + +```go +splitted := camelcase.Split("GolangPackage") + +fmt.Println(splitted[0], splitted[1]) // prints: "Golang", "Package" +``` + +Both lower camel case and upper camel case are supported. For more info please +check: [http://en.wikipedia.org/wiki/CamelCase](http://en.wikipedia.org/wiki/CamelCase) + +Below are some example cases: + +``` +"" => [] +"lowercase" => ["lowercase"] +"Class" => ["Class"] +"MyClass" => ["My", "Class"] +"MyC" => ["My", "C"] +"HTML" => ["HTML"] +"PDFLoader" => ["PDF", "Loader"] +"AString" => ["A", "String"] +"SimpleXMLParser" => ["Simple", "XML", "Parser"] +"vimRPCPlugin" => ["vim", "RPC", "Plugin"] +"GL11Version" => ["GL", "11", "Version"] +"99Bottles" => ["99", "Bottles"] +"May5" => ["May", "5"] +"BFG9000" => ["BFG", "9000"] +"BöseÜberraschung" => ["Böse", "Überraschung"] +"Two spaces" => ["Two", " ", "spaces"] +"BadUTF8\xe2\xe2\xa1" => ["BadUTF8\xe2\xe2\xa1"] +``` diff --git a/tests/e2e/vendor/github.com/fatih/camelcase/camelcase.go b/tests/e2e/vendor/github.com/fatih/camelcase/camelcase.go new file mode 100644 index 0000000000..02160c9a43 --- /dev/null +++ b/tests/e2e/vendor/github.com/fatih/camelcase/camelcase.go @@ -0,0 +1,90 @@ +// Package camelcase is a micro package to split the words of a camelcase type +// string into a slice of words. +package camelcase + +import ( + "unicode" + "unicode/utf8" +) + +// Split splits the camelcase word and returns a list of words. It also +// supports digits. Both lower camel case and upper camel case are supported. +// For more info please check: http://en.wikipedia.org/wiki/CamelCase +// +// Examples +// +// "" => [""] +// "lowercase" => ["lowercase"] +// "Class" => ["Class"] +// "MyClass" => ["My", "Class"] +// "MyC" => ["My", "C"] +// "HTML" => ["HTML"] +// "PDFLoader" => ["PDF", "Loader"] +// "AString" => ["A", "String"] +// "SimpleXMLParser" => ["Simple", "XML", "Parser"] +// "vimRPCPlugin" => ["vim", "RPC", "Plugin"] +// "GL11Version" => ["GL", "11", "Version"] +// "99Bottles" => ["99", "Bottles"] +// "May5" => ["May", "5"] +// "BFG9000" => ["BFG", "9000"] +// "BöseÜberraschung" => ["Böse", "Überraschung"] +// "Two spaces" => ["Two", " ", "spaces"] +// "BadUTF8\xe2\xe2\xa1" => ["BadUTF8\xe2\xe2\xa1"] +// +// Splitting rules +// +// 1) If string is not valid UTF-8, return it without splitting as +// single item array. +// 2) Assign all unicode characters into one of 4 sets: lower case +// letters, upper case letters, numbers, and all other characters. +// 3) Iterate through characters of string, introducing splits +// between adjacent characters that belong to different sets. +// 4) Iterate through array of split strings, and if a given string +// is upper case: +// if subsequent string is lower case: +// move last character of upper case string to beginning of +// lower case string +func Split(src string) (entries []string) { + // don't split invalid utf8 + if !utf8.ValidString(src) { + return []string{src} + } + entries = []string{} + var runes [][]rune + lastClass := 0 + class := 0 + // split into fields based on class of unicode character + for _, r := range src { + switch true { + case unicode.IsLower(r): + class = 1 + case unicode.IsUpper(r): + class = 2 + case unicode.IsDigit(r): + class = 3 + default: + class = 4 + } + if class == lastClass { + runes[len(runes)-1] = append(runes[len(runes)-1], r) + } else { + runes = append(runes, []rune{r}) + } + lastClass = class + } + // handle upper case -> lower case sequences, e.g. + // "PDFL", "oader" -> "PDF", "Loader" + for i := 0; i < len(runes)-1; i++ { + if unicode.IsUpper(runes[i][0]) && unicode.IsLower(runes[i+1][0]) { + runes[i+1] = append([]rune{runes[i][len(runes[i])-1]}, runes[i+1]...) + runes[i] = runes[i][:len(runes[i])-1] + } + } + // construct []string from results + for _, s := range runes { + if len(s) > 0 { + entries = append(entries, string(s)) + } + } + return +} diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/.golangci.yml b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/.golangci.yml index 38cb9ae101..08081fbde5 100644 --- a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/.golangci.yml +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/.golangci.yml @@ -1,104 +1,116 @@ -# Do not delete linter settings. Linters like gocritic can be enabled on the command line. - -linters-settings: - depguard: - rules: - prevent_unmaintained_packages: - list-mode: strict - files: - - $all - - "!$test" - allow: - - $gostd - - github.com/x448/float16 - deny: - - pkg: io/ioutil - desc: "replaced by io and os packages since Go 1.16: https://tip.golang.org/doc/go1.16#ioutil" - dupl: - threshold: 100 - funlen: - lines: 100 - statements: 50 - goconst: - ignore-tests: true - min-len: 2 - min-occurrences: 3 - gocritic: - enabled-tags: - - diagnostic - - experimental - - opinionated - - performance - - style - disabled-checks: - - commentedOutCode - - dupImport # https://github.com/go-critic/go-critic/issues/845 - - ifElseChain - - octalLiteral - - paramTypeCombine - - whyNoLint - gofmt: - simplify: false - goimports: - local-prefixes: github.com/fxamacker/cbor - golint: - min-confidence: 0 - govet: - check-shadowing: true - lll: - line-length: 140 - maligned: - suggest-new: true - misspell: - locale: US - staticcheck: - checks: ["all"] - +version: "2" linters: - disable-all: true + default: none enable: - asciicheck - bidichk - depguard - errcheck - - exportloopref + - forbidigo - goconst - gocritic - gocyclo - - gofmt - - goimports - goprintffuncname - gosec - - gosimple - govet - ineffassign - misspell - nilerr - revive - staticcheck - - stylecheck - - typecheck - unconvert - unused - + settings: + depguard: + rules: + prevent_unmaintained_packages: + list-mode: strict + files: + - $all + - '!$test' + allow: + - $gostd + - github.com/x448/float16 + deny: + - pkg: io/ioutil + desc: 'replaced by io and os packages since Go 1.16: https://tip.golang.org/doc/go1.16#ioutil' + dupl: + threshold: 100 + funlen: + lines: 100 + statements: 50 + goconst: + min-len: 2 + min-occurrences: 3 + gocritic: + disabled-checks: + - commentedOutCode + - dupImport + - ifElseChain + - octalLiteral + - paramTypeCombine + - whyNoLint + enabled-tags: + - diagnostic + - experimental + - opinionated + - performance + - style + govet: + enable: + - shadow + lll: + line-length: 140 + misspell: + locale: US + staticcheck: + checks: + - all + exclusions: + generated: lax + presets: + - comments + - common-false-positives + - legacy + - std-error-handling + rules: + - path: decode.go + text: string ` overflows ` has (\d+) occurrences, make it a constant + - path: decode.go + text: string ` \(range is \[` has (\d+) occurrences, make it a constant + - path: decode.go + text: string `, ` has (\d+) occurrences, make it a constant + - path: decode.go + text: string ` overflows Go's int64` has (\d+) occurrences, make it a constant + - path: decode.go + text: string `\]\)` has (\d+) occurrences, make it a constant + - path: valid.go + text: string ` for type ` has (\d+) occurrences, make it a constant + - path: valid.go + text: 'string `cbor: ` has (\d+) occurrences, make it a constant' + - linters: + - goconst + path: (.+)_test\.go + paths: + - third_party$ + - builtin$ + - examples$ issues: - # max-issues-per-linter default is 50. Set to 0 to disable limit. max-issues-per-linter: 0 - # max-same-issues default is 3. Set to 0 to disable limit. max-same-issues: 0 - - exclude-rules: - - path: decode.go - text: "string ` overflows ` has (\\d+) occurrences, make it a constant" - - path: decode.go - text: "string ` \\(range is \\[` has (\\d+) occurrences, make it a constant" - - path: decode.go - text: "string `, ` has (\\d+) occurrences, make it a constant" - - path: decode.go - text: "string ` overflows Go's int64` has (\\d+) occurrences, make it a constant" - - path: decode.go - text: "string `\\]\\)` has (\\d+) occurrences, make it a constant" - - path: valid.go - text: "string ` for type ` has (\\d+) occurrences, make it a constant" - - path: valid.go - text: "string `cbor: ` has (\\d+) occurrences, make it a constant" +formatters: + enable: + - gofmt + - goimports + settings: + gofmt: + simplify: false + goimports: + local-prefixes: + - github.com/fxamacker/cbor + exclusions: + generated: lax + paths: + - third_party$ + - builtin$ + - examples$ diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/README.md b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/README.md index d072b81c73..f9ae78ec9e 100644 --- a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/README.md +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/README.md @@ -702,21 +702,20 @@ Default limits may need to be increased for systems handling very large data (e. ## Status -[v2.9.0](https://github.com/fxamacker/cbor/releases/tag/v2.9.0) (Jul 13, 2025) improved interoperability/transcoding between CBOR & JSON, refactored tests, and improved docs. -- Add opt-in support for `encoding.TextMarshaler` and `encoding.TextUnmarshaler` to encode and decode from CBOR text string. -- Add opt-in support for `json.Marshaler` and `json.Unmarshaler` via user-provided transcoding function. -- Update docs for TimeMode, Tag, RawTag, and add example for Embedded JSON Tag for CBOR. +v2.9.1 (Mar 29-30, 2026) includes important bugfixes, defensive checks, improved code quality, and more tests. Although not public, the fuzzer was also improved by adding more fuzz tests. -v2.9.0 passed fuzz tests and is production quality. +v2.9.1 passed fuzz tests and is production quality. The minimum version of Go required to build: - v2.8.0 and newer releases require go 1.20+. - v2.7.1 and older releases require go 1.17+. -For more details, see [release notes](https://github.com/fxamacker/cbor/releases). +For more details, see [v2.9.1 release notes](https://github.com/fxamacker/cbor/releases). ### Prior Releases +[v2.9.0](https://github.com/fxamacker/cbor/releases/tag/v2.9.0) (Jul 13, 2025) improved interoperability/transcoding between CBOR & JSON, refactored tests, and improved docs. It passed fuzz tests (billions of executions) and is production quality. + [v2.8.0](https://github.com/fxamacker/cbor/releases/tag/v2.8.0) (March 30, 2025) is a small release primarily to add `omitzero` option to struct field tags and fix bugs. It passed fuzz tests (billions of executions) and is production quality. [v2.7.0](https://github.com/fxamacker/cbor/releases/tag/v2.7.0) (June 23, 2024) adds features and improvements that help large projects (e.g. Kubernetes) use CBOR as an alternative to JSON and Protocol Buffers. Other improvements include speedups, improved memory use, bug fixes, new serialization options, etc. It passed fuzz tests (5+ billion executions) and is production quality. diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/cache.go b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/cache.go index 5051f110fb..5743f3eb25 100644 --- a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/cache.go +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/cache.go @@ -92,94 +92,126 @@ func newTypeInfo(t reflect.Type) *typeInfo { } type decodingStructType struct { - fields fields - fieldIndicesByName map[string]int - err error - toArray bool + fields decodingFields + fieldIndicesByName map[string]int // Only populated if toArray is false + fieldIndicesByIntKey map[int64]int // Only populated if toArray is false + err error + toArray bool } -// The stdlib errors.Join was introduced in Go 1.20, and we still support Go 1.17, so instead, -// here's a very basic implementation of an aggregated error. -type multierror []error - -func (m multierror) Error() string { - var sb strings.Builder - for i, err := range m { - sb.WriteString(err.Error()) - if i < len(m)-1 { - sb.WriteString(", ") - } - } - return sb.String() -} - -func getDecodingStructType(t reflect.Type) *decodingStructType { +func getDecodingStructType(t reflect.Type) (*decodingStructType, error) { if v, _ := decodingStructTypeCache.Load(t); v != nil { - return v.(*decodingStructType) + structType := v.(*decodingStructType) + if structType.err != nil { + return nil, structType.err + } + return structType, nil } flds, structOptions := getFields(t) toArray := hasToArrayOption(structOptions) - var errs []error - for i := 0; i < len(flds); i++ { - if flds[i].keyAsInt { - nameAsInt, numErr := strconv.Atoi(flds[i].name) - if numErr != nil { - errs = append(errs, errors.New("cbor: failed to parse field name \""+flds[i].name+"\" to int ("+numErr.Error()+")")) - break + if toArray { + return getDecodingStructToArrayType(t, flds) + } + + fieldIndicesByName := make(map[string]int, len(flds)) + var fieldIndicesByIntKey map[int64]int + + decFlds := make(decodingFields, len(flds)) + for i, f := range flds { + // nameAsInt is set in getFields() except for fields with an unparsable tagged name. + // Atoi() is called here to catch and save parsing errors. + if f.keyAsInt && f.nameAsInt == 0 { + if _, numErr := strconv.Atoi(f.name); numErr != nil { + structType := &decodingStructType{ + err: errors.New("cbor: failed to parse field name \"" + f.name + "\" to int (" + numErr.Error() + ")"), + } + decodingStructTypeCache.Store(t, structType) + return nil, structType.err } - flds[i].nameAsInt = int64(nameAsInt) } - flds[i].typInfo = getTypeInfo(flds[i].typ) - } + if f.keyAsInt { + if fieldIndicesByIntKey == nil { + fieldIndicesByIntKey = make(map[int64]int, len(flds)) + } + // The duplication check is only a safeguard, since getFields() already deduplicates fields. + if _, ok := fieldIndicesByIntKey[f.nameAsInt]; ok { + structType := &decodingStructType{ + err: fmt.Errorf("cbor: two or more fields of %v have the same keyasint value %d", t, f.nameAsInt), + } + decodingStructTypeCache.Store(t, structType) + return nil, structType.err + } + fieldIndicesByIntKey[f.nameAsInt] = i + } else { + // The duplication check is only a safeguard, since getFields() already deduplicates fields. + if _, ok := fieldIndicesByName[f.name]; ok { + structType := &decodingStructType{ + err: fmt.Errorf("cbor: two or more fields of %v have the same name %q", t, f.name), + } + decodingStructTypeCache.Store(t, structType) + return nil, structType.err + } + fieldIndicesByName[f.name] = i + } - fieldIndicesByName := make(map[string]int, len(flds)) - for i, fld := range flds { - if _, ok := fieldIndicesByName[fld.name]; ok { - errs = append(errs, fmt.Errorf("cbor: two or more fields of %v have the same name %q", t, fld.name)) - continue + decFlds[i] = &decodingField{ + field: *f, + typInfo: getTypeInfo(f.typ), } - fieldIndicesByName[fld.name] = i } - var err error - { - var multi multierror - for _, each := range errs { - if each != nil { - multi = append(multi, each) + structType := &decodingStructType{ + fields: decFlds, + fieldIndicesByName: fieldIndicesByName, + fieldIndicesByIntKey: fieldIndicesByIntKey, + } + decodingStructTypeCache.Store(t, structType) + return structType, nil +} + +func getDecodingStructToArrayType(t reflect.Type, flds fields) (*decodingStructType, error) { + decFlds := make(decodingFields, len(flds)) + for i, f := range flds { + // nameAsInt is set in getFields() except for fields with an unparsable tagged name. + // Atoi() is called here to catch and save parsing errors. + if f.keyAsInt && f.nameAsInt == 0 { + if _, numErr := strconv.Atoi(f.name); numErr != nil { + structType := &decodingStructType{ + err: errors.New("cbor: failed to parse field name \"" + f.name + "\" to int (" + numErr.Error() + ")"), + } + decodingStructTypeCache.Store(t, structType) + return nil, structType.err } } - if len(multi) == 1 { - err = multi[0] - } else if len(multi) > 1 { - err = multi + + decFlds[i] = &decodingField{ + field: *f, + typInfo: getTypeInfo(f.typ), } } structType := &decodingStructType{ - fields: flds, - fieldIndicesByName: fieldIndicesByName, - err: err, - toArray: toArray, + fields: decFlds, + toArray: true, } decodingStructTypeCache.Store(t, structType) - return structType + return structType, nil } type encodingStructType struct { - fields fields - bytewiseFields fields - lengthFirstFields fields - omitEmptyFieldsIdx []int + fields encodingFields + bytewiseFields encodingFields // Only populated if toArray is false + lengthFirstFields encodingFields // Only populated if toArray is false + omitEmptyFieldsIdx []int // Only populated if toArray is false err error toArray bool } -func (st *encodingStructType) getFields(em *encMode) fields { +func (st *encodingStructType) getFields(em *encMode) encodingFields { switch em.sort { case SortNone, SortFastShuffle: return st.fields @@ -191,7 +223,7 @@ func (st *encodingStructType) getFields(em *encMode) fields { } type bytewiseFieldSorter struct { - fields fields + fields encodingFields } func (x *bytewiseFieldSorter) Len() int { @@ -203,11 +235,11 @@ func (x *bytewiseFieldSorter) Swap(i, j int) { } func (x *bytewiseFieldSorter) Less(i, j int) bool { - return bytes.Compare(x.fields[i].cborName, x.fields[j].cborName) <= 0 + return bytes.Compare(x.fields[i].cborName, x.fields[j].cborName) < 0 } type lengthFirstFieldSorter struct { - fields fields + fields encodingFields } func (x *lengthFirstFieldSorter) Len() int { @@ -222,13 +254,16 @@ func (x *lengthFirstFieldSorter) Less(i, j int) bool { if len(x.fields[i].cborName) != len(x.fields[j].cborName) { return len(x.fields[i].cborName) < len(x.fields[j].cborName) } - return bytes.Compare(x.fields[i].cborName, x.fields[j].cborName) <= 0 + return bytes.Compare(x.fields[i].cborName, x.fields[j].cborName) < 0 } func getEncodingStructType(t reflect.Type) (*encodingStructType, error) { if v, _ := encodingStructTypeCache.Load(t); v != nil { structType := v.(*encodingStructType) - return structType, structType.err + if structType.err != nil { + return nil, structType.err + } + return structType, nil } flds, structOptions := getFields(t) @@ -237,111 +272,119 @@ func getEncodingStructType(t reflect.Type) (*encodingStructType, error) { return getEncodingStructToArrayType(t, flds) } - var err error var hasKeyAsInt bool var hasKeyAsStr bool var omitEmptyIdx []int + + encFlds := make(encodingFields, len(flds)) + e := getEncodeBuffer() - for i := 0; i < len(flds); i++ { + defer putEncodeBuffer(e) + + for i, f := range flds { + encFlds[i] = &encodingField{field: *f} + ef := encFlds[i] + // Get field's encodeFunc - flds[i].ef, flds[i].ief, flds[i].izf = getEncodeFunc(flds[i].typ) - if flds[i].ef == nil { - err = &UnsupportedTypeError{t} - break + ef.ef, ef.ief, ef.izf = getEncodeFunc(f.typ) + if ef.ef == nil { + structType := &encodingStructType{err: &UnsupportedTypeError{t}} + encodingStructTypeCache.Store(t, structType) + return nil, structType.err } // Encode field name - if flds[i].keyAsInt { - nameAsInt, numErr := strconv.Atoi(flds[i].name) - if numErr != nil { - err = errors.New("cbor: failed to parse field name \"" + flds[i].name + "\" to int (" + numErr.Error() + ")") - break + if f.keyAsInt { + if f.nameAsInt == 0 { + // nameAsInt is set in getFields() except for fields with an unparsable tagged name. + // Atoi() is called here to catch and save parsing errors. + if _, numErr := strconv.Atoi(f.name); numErr != nil { + structType := &encodingStructType{ + err: errors.New("cbor: failed to parse field name \"" + f.name + "\" to int (" + numErr.Error() + ")"), + } + encodingStructTypeCache.Store(t, structType) + return nil, structType.err + } } - flds[i].nameAsInt = int64(nameAsInt) + nameAsInt := f.nameAsInt if nameAsInt >= 0 { - encodeHead(e, byte(cborTypePositiveInt), uint64(nameAsInt)) + encodeHead(e, byte(cborTypePositiveInt), uint64(nameAsInt)) //nolint:gosec } else { n := nameAsInt*(-1) - 1 - encodeHead(e, byte(cborTypeNegativeInt), uint64(n)) + encodeHead(e, byte(cborTypeNegativeInt), uint64(n)) //nolint:gosec } - flds[i].cborName = make([]byte, e.Len()) - copy(flds[i].cborName, e.Bytes()) + ef.cborName = make([]byte, e.Len()) + copy(ef.cborName, e.Bytes()) e.Reset() hasKeyAsInt = true } else { - encodeHead(e, byte(cborTypeTextString), uint64(len(flds[i].name))) - flds[i].cborName = make([]byte, e.Len()+len(flds[i].name)) - n := copy(flds[i].cborName, e.Bytes()) - copy(flds[i].cborName[n:], flds[i].name) + encodeHead(e, byte(cborTypeTextString), uint64(len(f.name))) + ef.cborName = make([]byte, e.Len()+len(f.name)) + n := copy(ef.cborName, e.Bytes()) + copy(ef.cborName[n:], f.name) e.Reset() // If cborName contains a text string, then cborNameByteString contains a // string that has the byte string major type but is otherwise identical to // cborName. - flds[i].cborNameByteString = make([]byte, len(flds[i].cborName)) - copy(flds[i].cborNameByteString, flds[i].cborName) + ef.cborNameByteString = make([]byte, len(ef.cborName)) + copy(ef.cborNameByteString, ef.cborName) // Reset encoded CBOR type to byte string, preserving the "additional // information" bits: - flds[i].cborNameByteString[0] = byte(cborTypeByteString) | - getAdditionalInformation(flds[i].cborNameByteString[0]) + ef.cborNameByteString[0] = byte(cborTypeByteString) | + getAdditionalInformation(ef.cborNameByteString[0]) hasKeyAsStr = true } // Check if field can be omitted when empty - if flds[i].omitEmpty { + if f.omitEmpty { omitEmptyIdx = append(omitEmptyIdx, i) } } - putEncodeBuffer(e) - - if err != nil { - structType := &encodingStructType{err: err} - encodingStructTypeCache.Store(t, structType) - return structType, structType.err - } // Sort fields by canonical order - bytewiseFields := make(fields, len(flds)) - copy(bytewiseFields, flds) + bytewiseFields := make(encodingFields, len(encFlds)) + copy(bytewiseFields, encFlds) sort.Sort(&bytewiseFieldSorter{bytewiseFields}) lengthFirstFields := bytewiseFields if hasKeyAsInt && hasKeyAsStr { - lengthFirstFields = make(fields, len(flds)) - copy(lengthFirstFields, flds) + lengthFirstFields = make(encodingFields, len(encFlds)) + copy(lengthFirstFields, encFlds) sort.Sort(&lengthFirstFieldSorter{lengthFirstFields}) } structType := &encodingStructType{ - fields: flds, + fields: encFlds, bytewiseFields: bytewiseFields, lengthFirstFields: lengthFirstFields, omitEmptyFieldsIdx: omitEmptyIdx, } encodingStructTypeCache.Store(t, structType) - return structType, structType.err + return structType, nil } func getEncodingStructToArrayType(t reflect.Type, flds fields) (*encodingStructType, error) { - for i := 0; i < len(flds); i++ { - // Get field's encodeFunc - flds[i].ef, flds[i].ief, flds[i].izf = getEncodeFunc(flds[i].typ) - if flds[i].ef == nil { + encFlds := make(encodingFields, len(flds)) + for i, f := range flds { + encFlds[i] = &encodingField{field: *f} + encFlds[i].ef, encFlds[i].ief, encFlds[i].izf = getEncodeFunc(f.typ) + if encFlds[i].ef == nil { structType := &encodingStructType{err: &UnsupportedTypeError{t}} encodingStructTypeCache.Store(t, structType) - return structType, structType.err + return nil, structType.err } } structType := &encodingStructType{ - fields: flds, + fields: encFlds, toArray: true, } encodingStructTypeCache.Store(t, structType) - return structType, structType.err + return structType, nil } func getEncodeFunc(t reflect.Type) (encodeFunc, isEmptyFunc, isZeroFunc) { diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/decode.go b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/decode.go index f0bdc3b38d..03fd7f8b04 100644 --- a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/decode.go +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/decode.go @@ -16,7 +16,6 @@ import ( "math/big" "reflect" "strconv" - "strings" "time" "unicode/utf8" @@ -326,14 +325,14 @@ func (dmkm DupMapKeyMode) valid() bool { return dmkm >= 0 && dmkm < maxDupMapKeyMode } -// IndefLengthMode specifies whether to allow indefinite length items. +// IndefLengthMode specifies whether to allow indefinite-length items. type IndefLengthMode int const ( - // IndefLengthAllowed allows indefinite length items. + // IndefLengthAllowed allows indefinite-length items. IndefLengthAllowed IndefLengthMode = iota - // IndefLengthForbidden disallows indefinite length items. + // IndefLengthForbidden disallows indefinite-length items. IndefLengthForbidden maxIndefLengthMode @@ -378,6 +377,7 @@ const ( // - int64 if value fits // - big.Int or *big.Int (see BigIntDecMode) if value < math.MinInt64 // - return UnmarshalTypeError if value > math.MaxInt64 + // // Deprecated: IntDecConvertSigned should not be used. // Please use other options, such as IntDecConvertSignedOrError, IntDecConvertSignedOrBigInt, IntDecConvertNone. IntDecConvertSigned @@ -811,7 +811,7 @@ type DecOptions struct { // Default is 128*1024=131072 and it can be set to [16, 2147483647] MaxMapPairs int - // IndefLength specifies whether to allow indefinite length CBOR items. + // IndefLength specifies whether to allow indefinite-length CBOR items. IndefLength IndefLengthMode // TagsMd specifies whether to allow CBOR tags (major type 6). @@ -1055,7 +1055,7 @@ func (opts DecOptions) decMode() (*decMode, error) { //nolint:gocritic // ignore } if !opts.ExtraReturnErrors.valid() { - return nil, errors.New("cbor: invalid ExtraReturnErrors " + strconv.Itoa(int(opts.ExtraReturnErrors))) + return nil, errors.New("cbor: invalid ExtraReturnErrors " + strconv.Itoa(int(opts.ExtraReturnErrors))) //nolint:gosec } if opts.DefaultMapType != nil && opts.DefaultMapType.Kind() != reflect.Map { @@ -1149,8 +1149,8 @@ func (opts DecOptions) decMode() (*decMode, error) { //nolint:gocritic // ignore unrecognizedTagToAny: opts.UnrecognizedTagToAny, timeTagToAny: opts.TimeTagToAny, simpleValues: simpleValues, - nanDec: opts.NaN, - infDec: opts.Inf, + nan: opts.NaN, + inf: opts.Inf, byteStringToTime: opts.ByteStringToTime, byteStringExpectedFormat: opts.ByteStringExpectedFormat, bignumTag: opts.BignumTag, @@ -1230,8 +1230,8 @@ type decMode struct { unrecognizedTagToAny UnrecognizedTagToAnyMode timeTagToAny TimeTagToAnyMode simpleValues *SimpleValueRegistry - nanDec NaNMode - infDec InfMode + nan NaNMode + inf InfMode byteStringToTime ByteStringToTimeMode byteStringExpectedFormat ByteStringExpectedFormatMode bignumTag BignumTagMode @@ -1272,8 +1272,8 @@ func (dm *decMode) DecOptions() DecOptions { UnrecognizedTagToAny: dm.unrecognizedTagToAny, TimeTagToAny: dm.timeTagToAny, SimpleValues: simpleValues, - NaN: dm.nanDec, - Inf: dm.infDec, + NaN: dm.nan, + Inf: dm.inf, ByteStringToTime: dm.byteStringToTime, ByteStringExpectedFormat: dm.byteStringExpectedFormat, BignumTag: dm.bignumTag, @@ -1583,11 +1583,11 @@ func (d *decoder) parseToValue(v reflect.Value, tInfo *typeInfo) error { //nolin _, ai, val := d.getHead() switch ai { case additionalInformationAsFloat16: - f := float64(float16.Frombits(uint16(val)).Float32()) + f := float64(float16.Frombits(uint16(val)).Float32()) //nolint:gosec return fillFloat(t, f, v) case additionalInformationAsFloat32: - f := float64(math.Float32frombits(uint32(val))) + f := float64(math.Float32frombits(uint32(val))) //nolint:gosec return fillFloat(t, f, v) case additionalInformationAsFloat64: @@ -1595,10 +1595,10 @@ func (d *decoder) parseToValue(v reflect.Value, tInfo *typeInfo) error { //nolin return fillFloat(t, f, v) default: // ai <= 24 - if d.dm.simpleValues.rejected[SimpleValue(val)] { + if d.dm.simpleValues.rejected[SimpleValue(val)] { //nolint:gosec return &UnacceptableDataItemError{ CBORType: t.String(), - Message: "simple value " + strconv.FormatInt(int64(val), 10) + " is not recognized", + Message: "simple value " + strconv.FormatInt(int64(val), 10) + " is not recognized", //nolint:gosec } } @@ -1677,20 +1677,23 @@ func (d *decoder) parseToValue(v reflect.Value, tInfo *typeInfo) error { //nolin return d.parseToValue(v, tInfo) case cborTypeArray: - if tInfo.nonPtrKind == reflect.Slice { + switch tInfo.nonPtrKind { + case reflect.Slice: return d.parseArrayToSlice(v, tInfo) - } else if tInfo.nonPtrKind == reflect.Array { + case reflect.Array: return d.parseArrayToArray(v, tInfo) - } else if tInfo.nonPtrKind == reflect.Struct { + case reflect.Struct: return d.parseArrayToStruct(v, tInfo) } + d.skip() return &UnmarshalTypeError{CBORType: t.String(), GoType: tInfo.nonPtrType.String()} case cborTypeMap: - if tInfo.nonPtrKind == reflect.Struct { + switch tInfo.nonPtrKind { + case reflect.Struct: return d.parseMapToStruct(v, tInfo) - } else if tInfo.nonPtrKind == reflect.Map { + case reflect.Map: return d.parseMapToMap(v, tInfo) } d.skip() @@ -1745,8 +1748,8 @@ func (d *decoder) parseToTime() (time.Time, bool, error) { // Read tag number _, _, tagNum := d.getHead() if tagNum != 0 && tagNum != 1 { - d.skip() // skip tag content - return time.Time{}, false, errors.New("cbor: wrong tag number for time.Time, got " + strconv.Itoa(int(tagNum)) + ", expect 0 or 1") + d.skip() // skip tag content + return time.Time{}, false, errors.New("cbor: wrong tag number for time.Time, got " + strconv.Itoa(int(tagNum)) + ", expect 0 or 1") //nolint:gosec } } } else { @@ -1815,10 +1818,10 @@ func (d *decoder) parseToTime() (time.Time, bool, error) { var f float64 switch ai { case additionalInformationAsFloat16: - f = float64(float16.Frombits(uint16(val)).Float32()) + f = float64(float16.Frombits(uint16(val)).Float32()) //nolint:gosec case additionalInformationAsFloat32: - f = float64(math.Float32frombits(uint32(val))) + f = float64(math.Float32frombits(uint32(val))) //nolint:gosec case additionalInformationAsFloat64: f = math.Float64frombits(val) @@ -1832,6 +1835,13 @@ func (d *decoder) parseToTime() (time.Time, bool, error) { return time.Time{}, true, nil } seconds, fractional := math.Modf(f) + if seconds > math.MaxInt64 || seconds < math.MinInt64 { + return time.Time{}, false, &UnmarshalTypeError{ + CBORType: t.String(), + GoType: typeTime.String(), + errorMsg: fmt.Sprintf("%v overflows Go's int64", f), + } + } return time.Unix(int64(seconds), int64(fractional*1e9)), true, nil default: @@ -2145,14 +2155,14 @@ func (d *decoder) parse(skipSelfDescribedTag bool) (any, error) { //nolint:gocyc case cborTypePrimitives: _, ai, val := d.getHead() - if ai <= 24 && d.dm.simpleValues.rejected[SimpleValue(val)] { + if ai <= 24 && d.dm.simpleValues.rejected[SimpleValue(val)] { //nolint:gosec return nil, &UnacceptableDataItemError{ CBORType: t.String(), - Message: "simple value " + strconv.FormatInt(int64(val), 10) + " is not recognized", + Message: "simple value " + strconv.FormatInt(int64(val), 10) + " is not recognized", //nolint:gosec } } if ai < 20 || ai == 24 { - return SimpleValue(val), nil + return SimpleValue(val), nil //nolint:gosec } switch ai { @@ -2165,11 +2175,11 @@ func (d *decoder) parse(skipSelfDescribedTag bool) (any, error) { //nolint:gocyc return nil, nil case additionalInformationAsFloat16: - f := float64(float16.Frombits(uint16(val)).Float32()) + f := float64(float16.Frombits(uint16(val)).Float32()) //nolint:gosec return f, nil case additionalInformationAsFloat32: - f := float64(math.Float32frombits(uint32(val))) + f := float64(math.Float32frombits(uint32(val))) //nolint:gosec return f, nil case additionalInformationAsFloat64: @@ -2202,16 +2212,16 @@ func (d *decoder) parse(skipSelfDescribedTag bool) (any, error) { //nolint:gocyc func (d *decoder) parseByteString() ([]byte, bool) { _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() if !indefiniteLength { - b := d.data[d.off : d.off+int(val)] - d.off += int(val) + b := d.data[d.off : d.off+int(val)] //nolint:gosec + d.off += int(val) //nolint:gosec return b, false } - // Process indefinite length string chunks. + // Process indefinite-length string chunks. b := []byte{} for !d.foundBreak() { _, _, val = d.getHead() - b = append(b, d.data[d.off:d.off+int(val)]...) - d.off += int(val) + b = append(b, d.data[d.off:d.off+int(val)]...) //nolint:gosec + d.off += int(val) //nolint:gosec } return b, true } @@ -2300,19 +2310,19 @@ func (d *decoder) applyByteStringTextConversion( func (d *decoder) parseTextString() ([]byte, error) { _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() if !indefiniteLength { - b := d.data[d.off : d.off+int(val)] - d.off += int(val) + b := d.data[d.off : d.off+int(val)] //nolint:gosec + d.off += int(val) //nolint:gosec if d.dm.utf8 == UTF8RejectInvalid && !utf8.Valid(b) { return nil, &SemanticError{"cbor: invalid UTF-8 string"} } return b, nil } - // Process indefinite length string chunks. + // Process indefinite-length string chunks. b := []byte{} for !d.foundBreak() { _, _, val = d.getHead() - x := d.data[d.off : d.off+int(val)] - d.off += int(val) + x := d.data[d.off : d.off+int(val)] //nolint:gosec + d.off += int(val) //nolint:gosec if d.dm.utf8 == UTF8RejectInvalid && !utf8.Valid(x) { for !d.foundBreak() { d.skip() // Skip remaining chunk on error @@ -2327,7 +2337,7 @@ func (d *decoder) parseTextString() ([]byte, error) { func (d *decoder) parseArray() ([]any, error) { _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() hasSize := !indefiniteLength - count := int(val) + count := int(val) //nolint:gosec if !hasSize { count = d.numOfItemsUntilBreak() // peek ahead to get array size to preallocate slice for better performance } @@ -2349,7 +2359,7 @@ func (d *decoder) parseArray() ([]any, error) { func (d *decoder) parseArrayToSlice(v reflect.Value, tInfo *typeInfo) error { _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() hasSize := !indefiniteLength - count := int(val) + count := int(val) //nolint:gosec if !hasSize { count = d.numOfItemsUntilBreak() // peek ahead to get array size to preallocate slice for better performance } @@ -2371,7 +2381,7 @@ func (d *decoder) parseArrayToSlice(v reflect.Value, tInfo *typeInfo) error { func (d *decoder) parseArrayToArray(v reflect.Value, tInfo *typeInfo) error { _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() hasSize := !indefiniteLength - count := int(val) + count := int(val) //nolint:gosec gi := 0 vLen := v.Len() var err error @@ -2400,7 +2410,7 @@ func (d *decoder) parseArrayToArray(v reflect.Value, tInfo *typeInfo) error { func (d *decoder) parseMap() (any, error) { _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() hasSize := !indefiniteLength - count := int(val) + count := int(val) //nolint:gosec m := make(map[any]any) var k, e any var err, lastErr error @@ -2465,7 +2475,7 @@ func (d *decoder) parseMap() (any, error) { func (d *decoder) parseMapToMap(v reflect.Value, tInfo *typeInfo) error { //nolint:gocyclo _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() hasSize := !indefiniteLength - count := int(val) + count := int(val) //nolint:gosec if v.IsNil() { mapsize := count if !hasSize { @@ -2566,9 +2576,9 @@ func (d *decoder) parseMapToMap(v reflect.Value, tInfo *typeInfo) error { //noli } func (d *decoder) parseArrayToStruct(v reflect.Value, tInfo *typeInfo) error { - structType := getDecodingStructType(tInfo.nonPtrType) - if structType.err != nil { - return structType.err + structType, structTypeErr := getDecodingStructType(tInfo.nonPtrType) + if structTypeErr != nil { + return structTypeErr } if !structType.toArray { @@ -2584,7 +2594,7 @@ func (d *decoder) parseArrayToStruct(v reflect.Value, tInfo *typeInfo) error { start := d.off _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() hasSize := !indefiniteLength - count := int(val) + count := int(val) //nolint:gosec if !hasSize { count = d.numOfItemsUntilBreak() // peek ahead to get array size } @@ -2637,11 +2647,72 @@ func (d *decoder) parseArrayToStruct(v reflect.Value, tInfo *typeInfo) error { return err } -// parseMapToStruct needs to be fast so gocyclo can be ignored for now. +// skipMapEntriesFromIndex skips remaining map entries starting from index i. +func (d *decoder) skipMapEntriesFromIndex(i, count int, hasSize bool) { + for ; (hasSize && i < count) || (!hasSize && !d.foundBreak()); i++ { + d.skip() + d.skip() + } +} + +// skipMapForDupKey skips the current map value and all remaining map entries, +// then returns a DupMapKeyError for the given key at map index i. +func (d *decoder) skipMapForDupKey(dupKey any, i, count int, hasSize bool) error { + // Skip the value of the duplicate key. + d.skip() + // Skip all remaining map entries. + d.skipMapEntriesFromIndex(i+1, count, hasSize) + return &DupMapKeyError{dupKey, i} +} + +// skipMapForUnknownField skips the current map value and all remaining map entries, +// then returns a UnknownFieldError for the given key at map index i. +func (d *decoder) skipMapForUnknownField(i, count int, hasSize bool) error { + // Skip the value of the unknown key. + d.skip() + // Skip all remaining map entries. + d.skipMapEntriesFromIndex(i+1, count, hasSize) + return &UnknownFieldError{i} +} + +// decodeToStructField decodes the next CBOR value into the struct field f in v. +// If the field cannot be resolved, the CBOR value is skipped. +func (d *decoder) decodeToStructField(v reflect.Value, f *decodingField, tInfo *typeInfo) error { + var fv reflect.Value + + if len(f.idx) == 1 { + fv = v.Field(f.idx[0]) + } else { + var err error + fv, err = getFieldValue(v, f.idx, func(v reflect.Value) (reflect.Value, error) { + // Return a new value for embedded field null pointer to point to, or return error. + if !v.CanSet() { + return reflect.Value{}, errors.New("cbor: cannot set embedded pointer to unexported struct: " + v.Type().String()) + } + v.Set(reflect.New(v.Type().Elem())) + return v, nil + }) + if !fv.IsValid() { + d.skip() + return err + } + } + + err := d.parseToValue(fv, f.typInfo) + if err != nil { + if typeError, ok := err.(*UnmarshalTypeError); ok { + typeError.StructFieldName = tInfo.nonPtrType.String() + "." + f.name + } + return err + } + + return nil +} + func (d *decoder) parseMapToStruct(v reflect.Value, tInfo *typeInfo) error { //nolint:gocyclo - structType := getDecodingStructType(tInfo.nonPtrType) - if structType.err != nil { - return structType.err + structType, structTypeErr := getDecodingStructType(tInfo.nonPtrType) + if structTypeErr != nil { + return structTypeErr } if structType.toArray { @@ -2654,14 +2725,12 @@ func (d *decoder) parseMapToStruct(v reflect.Value, tInfo *typeInfo) error { //n } } - var err, lastErr error - // Get CBOR map size _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() hasSize := !indefiniteLength - count := int(val) + count := int(val) //nolint:gosec - // Keeps track of matched struct fields + // Keep track of matched struct fields to detect duplicate map keys. var foundFldIdx []bool { const maxStackFields = 128 @@ -2675,99 +2744,80 @@ func (d *decoder) parseMapToStruct(v reflect.Value, tInfo *typeInfo) error { //n } } - // Keeps track of CBOR map keys to detect duplicate map key - keyCount := 0 - var mapKeys map[any]struct{} - - errOnUnknownField := (d.dm.extraReturnErrors & ExtraDecErrorUnknownField) > 0 + // Keep track of unmatched CBOR map keys to detect duplicate map keys. + var unmatchedMapKeys map[any]struct{} -MapEntryLoop: - for j := 0; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { - var f *field + var err error - // If duplicate field detection is enabled and the key at index j did not match any - // field, k will hold the map key. - var k any + caseInsensitive := d.dm.fieldNameMatching == FieldNameMatchingPreferCaseSensitive + for i := 0; (hasSize && i < count) || (!hasSize && !d.foundBreak()); i++ { t := d.nextCBORType() - if t == cborTypeTextString || (t == cborTypeByteString && d.dm.fieldNameByteString == FieldNameByteStringAllowed) { + + // Reclassify disallowed byte string keys so they fall to the default case. + // keyType is only used for branch control. + keyType := t + if t == cborTypeByteString && d.dm.fieldNameByteString != FieldNameByteStringAllowed { + keyType = 0xff + } + + switch keyType { + case cborTypeTextString, cborTypeByteString: var keyBytes []byte if t == cborTypeTextString { - keyBytes, lastErr = d.parseTextString() - if lastErr != nil { + var parseErr error + keyBytes, parseErr = d.parseTextString() + if parseErr != nil { if err == nil { - err = lastErr + err = parseErr } - d.skip() // skip value + d.skip() // Skip value continue } } else { // cborTypeByteString keyBytes, _ = d.parseByteString() } - // Check for exact match on field name. - if i, ok := structType.fieldIndicesByName[string(keyBytes)]; ok { - fld := structType.fields[i] + // Find matching struct field (exact match, then case-insensitive fallback). + if fldIdx, ok := findStructFieldByKey(structType, keyBytes, caseInsensitive); ok { + fld := structType.fields[fldIdx] - if !foundFldIdx[i] { - f = fld - foundFldIdx[i] = true - } else if d.dm.dupMapKey == DupMapKeyEnforcedAPF { - err = &DupMapKeyError{fld.name, j} - d.skip() // skip value - j++ - // skip the rest of the map - for ; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { - d.skip() - d.skip() + switch checkDupField(d.dm, foundFldIdx, fldIdx) { + case mapActionParseValueAndContinue: + if fieldErr := d.decodeToStructField(v, fld, tInfo); fieldErr != nil && err == nil { + err = fieldErr } - return err - } else { - // discard repeated match + continue + case mapActionSkipAllAndReturnError: + return d.skipMapForDupKey(string(keyBytes), i, count, hasSize) + case mapActionSkipValueAndContinue: d.skip() - continue MapEntryLoop + continue } } - // Find field with case-insensitive match - if f == nil && d.dm.fieldNameMatching == FieldNameMatchingPreferCaseSensitive { - keyLen := len(keyBytes) - keyString := string(keyBytes) - for i := 0; i < len(structType.fields); i++ { - fld := structType.fields[i] - if len(fld.name) == keyLen && strings.EqualFold(fld.name, keyString) { - if !foundFldIdx[i] { - f = fld - foundFldIdx[i] = true - } else if d.dm.dupMapKey == DupMapKeyEnforcedAPF { - err = &DupMapKeyError{keyString, j} - d.skip() // skip value - j++ - // skip the rest of the map - for ; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { - d.skip() - d.skip() - } - return err - } else { - // discard repeated match - d.skip() - continue MapEntryLoop - } - break - } - } + // No matching struct field found. + if unmatchedErr := handleUnmatchedMapKey(d, string(keyBytes), i, count, hasSize, &unmatchedMapKeys); unmatchedErr != nil { + return unmatchedErr } - if d.dm.dupMapKey == DupMapKeyEnforcedAPF && f == nil { - k = string(keyBytes) - } - } else if t <= cborTypeNegativeInt { // uint/int + case cborTypePositiveInt, cborTypeNegativeInt: var nameAsInt int64 if t == cborTypePositiveInt { _, _, val := d.getHead() - nameAsInt = int64(val) + if val > math.MaxInt64 { + if err == nil { + err = &UnmarshalTypeError{ + CBORType: t.String(), + GoType: reflect.TypeOf(int64(0)).String(), + errorMsg: strconv.FormatUint(val, 10) + " overflows Go's int64", + } + } + d.skip() // skip value + continue + } + nameAsInt = int64(val) //nolint:gosec } else { _, _, val := d.getHead() if val > math.MaxInt64 { @@ -2781,39 +2831,35 @@ MapEntryLoop: d.skip() // skip value continue } - nameAsInt = int64(-1) ^ int64(val) - } - - // Find field - for i := 0; i < len(structType.fields); i++ { - fld := structType.fields[i] - if fld.keyAsInt && fld.nameAsInt == nameAsInt { - if !foundFldIdx[i] { - f = fld - foundFldIdx[i] = true - } else if d.dm.dupMapKey == DupMapKeyEnforcedAPF { - err = &DupMapKeyError{nameAsInt, j} - d.skip() // skip value - j++ - // skip the rest of the map - for ; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { - d.skip() - d.skip() - } - return err - } else { - // discard repeated match - d.skip() - continue MapEntryLoop + nameAsInt = int64(-1) ^ int64(val) //nolint:gosec + } + + // Find field by integer key + if fldIdx, ok := structType.fieldIndicesByIntKey[nameAsInt]; ok { + fld := structType.fields[fldIdx] + + switch checkDupField(d.dm, foundFldIdx, fldIdx) { + case mapActionParseValueAndContinue: + if fieldErr := d.decodeToStructField(v, fld, tInfo); fieldErr != nil && err == nil { + err = fieldErr } - break + continue + case mapActionSkipAllAndReturnError: + return d.skipMapForDupKey(nameAsInt, i, count, hasSize) + case mapActionSkipValueAndContinue: + d.skip() + continue } } - if d.dm.dupMapKey == DupMapKeyEnforcedAPF && f == nil { - k = nameAsInt + // No matching struct field found. + if unmatchedErr := handleUnmatchedMapKey(d, nameAsInt, i, count, hasSize, &unmatchedMapKeys); unmatchedErr != nil { + return unmatchedErr } - } else { + + default: + // CBOR map keys that can't be matched to any struct field. + if err == nil { err = &UnmarshalTypeError{ CBORType: t.String(), @@ -2821,97 +2867,31 @@ MapEntryLoop: errorMsg: "map key is of type " + t.String() + " and cannot be used to match struct field name", } } + + var otherKey any if d.dm.dupMapKey == DupMapKeyEnforcedAPF { // parse key - k, lastErr = d.parse(true) - if lastErr != nil { + var parseErr error + otherKey, parseErr = d.parse(true) + if parseErr != nil { d.skip() // skip value continue } // Detect if CBOR map key can be used as Go map key. - if !isHashableValue(reflect.ValueOf(k)) { + if !isHashableValue(reflect.ValueOf(otherKey)) { d.skip() // skip value continue } } else { d.skip() // skip key } - } - - if f == nil { - if errOnUnknownField { - err = &UnknownFieldError{j} - d.skip() // Skip value - j++ - // skip the rest of the map - for ; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { - d.skip() - d.skip() - } - return err - } - - // Two map keys that match the same struct field are immediately considered - // duplicates. This check detects duplicates between two map keys that do - // not match a struct field. If unknown field errors are enabled, then this - // check is never reached. - if d.dm.dupMapKey == DupMapKeyEnforcedAPF { - if mapKeys == nil { - mapKeys = make(map[any]struct{}, 1) - } - mapKeys[k] = struct{}{} - newKeyCount := len(mapKeys) - if newKeyCount == keyCount { - err = &DupMapKeyError{k, j} - d.skip() // skip value - j++ - // skip the rest of the map - for ; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { - d.skip() - d.skip() - } - return err - } - keyCount = newKeyCount - } - - d.skip() // Skip value - continue - } - - // Get field value by index - var fv reflect.Value - if len(f.idx) == 1 { - fv = v.Field(f.idx[0]) - } else { - fv, lastErr = getFieldValue(v, f.idx, func(v reflect.Value) (reflect.Value, error) { - // Return a new value for embedded field null pointer to point to, or return error. - if !v.CanSet() { - return reflect.Value{}, errors.New("cbor: cannot set embedded pointer to unexported struct: " + v.Type().String()) - } - v.Set(reflect.New(v.Type().Elem())) - return v, nil - }) - if lastErr != nil && err == nil { - err = lastErr - } - if !fv.IsValid() { - d.skip() - continue - } - } - if lastErr = d.parseToValue(fv, f.typInfo); lastErr != nil { - if err == nil { - if typeError, ok := lastErr.(*UnmarshalTypeError); ok { - typeError.StructFieldName = tInfo.nonPtrType.String() + "." + f.name - err = typeError - } else { - err = lastErr - } + if unmatchedErr := handleUnmatchedMapKey(d, otherKey, i, count, hasSize, &unmatchedMapKeys); unmatchedErr != nil { + return unmatchedErr } } } + return err } @@ -2958,15 +2938,15 @@ func (d *decoder) skip() { switch t { case cborTypeByteString, cborTypeTextString: - d.off += int(val) + d.off += int(val) //nolint:gosec case cborTypeArray: - for i := 0; i < int(val); i++ { + for i := 0; i < int(val); i++ { //nolint:gosec d.skip() } case cborTypeMap: - for i := 0; i < int(val)*2; i++ { + for i := 0; i < int(val)*2; i++ { //nolint:gosec d.skip() } diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/decode_map_utils.go b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/decode_map_utils.go new file mode 100644 index 0000000000..3c8c423ad1 --- /dev/null +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/decode_map_utils.go @@ -0,0 +1,98 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +package cbor + +import "strings" + +// mapAction represents the next action during decoding a CBOR map to a Go struct. +type mapAction int + +const ( + mapActionParseValueAndContinue mapAction = iota // The caller should process the map value. + mapActionSkipValueAndContinue // The caller should skip the map value. + mapActionSkipAllAndReturnError // The caller should skip the rest of the map and return an error. +) + +// checkDupField checks if a struct field at index i has already been matched and returns the next action. +// If not matched, it marks the field as matched and returns mapActionParseValueAndContinue. +// If matched and DupMapKeyEnforcedAPF is specified in the given dm, it returns mapActionSkipAllAndReturnError. +// If matched and DupMapKeyEnforcedAPF is not specified in the given dm, it returns mapActionSkipValueAndContinue. +func checkDupField(dm *decMode, foundFldIdx []bool, i int) mapAction { + if !foundFldIdx[i] { + foundFldIdx[i] = true + return mapActionParseValueAndContinue + } + if dm.dupMapKey == DupMapKeyEnforcedAPF { + return mapActionSkipAllAndReturnError + } + return mapActionSkipValueAndContinue +} + +// findStructFieldByKey finds a struct field matching keyBytes by name. +// It tries an exact match first. If no exact match is found and +// caseInsensitive is true, it falls back to a case-insensitive search. +// findStructFieldByKey returns the field index and true, or -1 and false. +func findStructFieldByKey( + structType *decodingStructType, + keyBytes []byte, + caseInsensitive bool, +) (int, bool) { + if fldIdx, ok := structType.fieldIndicesByName[string(keyBytes)]; ok { + return fldIdx, true + } + if caseInsensitive { + return findFieldCaseInsensitive(structType.fields, string(keyBytes)) + } + return -1, false +} + +// findFieldCaseInsensitive returns the index of the first field whose name +// case-insensitively matches key, or -1 and false if no field matches. +func findFieldCaseInsensitive(flds decodingFields, key string) (int, bool) { + keyLen := len(key) + for i, f := range flds { + if f.keyAsInt { + continue + } + if len(f.name) == keyLen && strings.EqualFold(f.name, key) { + return i, true + } + } + return -1, false +} + +// handleUnmatchedMapKey handles a map entry whose key does not match any struct +// field. It can return UnknownFieldError or DupMapKeyError. +// handleUnmatchedMapKey consumes the CBOR value, so the caller doesn't need to skip any values. +// If an error is returned, the caller should abort parsing the map and return the error. +// If no error is returned, the caller should continue to process the next map pair. +func handleUnmatchedMapKey( + d *decoder, + key any, + i int, + count int, + hasSize bool, + // *map[any]struct{} is used here because we use lazy initialization for uks + uks *map[any]struct{}, //nolint:gocritic +) error { + errOnUnknownField := (d.dm.extraReturnErrors & ExtraDecErrorUnknownField) > 0 + + if errOnUnknownField { + return d.skipMapForUnknownField(i, count, hasSize) + } + + if d.dm.dupMapKey == DupMapKeyEnforcedAPF { + if *uks == nil { + *uks = make(map[any]struct{}) + } + if _, dup := (*uks)[key]; dup { + return d.skipMapForDupKey(key, i, count, hasSize) + } + (*uks)[key] = struct{}{} + } + + // Skip value. + d.skip() + return nil +} diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/diagnose.go b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/diagnose.go index 44afb86608..42a67ad11f 100644 --- a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/diagnose.go +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/diagnose.go @@ -51,11 +51,8 @@ const ( maxByteStringEncoding ) -func (bse ByteStringEncoding) valid() error { - if bse >= maxByteStringEncoding { - return errors.New("cbor: invalid ByteStringEncoding " + strconv.Itoa(int(bse))) - } - return nil +func (bse ByteStringEncoding) valid() bool { + return bse < maxByteStringEncoding } // DiagOptions specifies Diag options. @@ -104,8 +101,8 @@ func (opts DiagOptions) DiagMode() (DiagMode, error) { } func (opts DiagOptions) diagMode() (*diagMode, error) { - if err := opts.ByteStringEncoding.valid(); err != nil { - return nil, err + if !opts.ByteStringEncoding.valid() { + return nil, errors.New("cbor: invalid ByteStringEncoding " + strconv.Itoa(int(opts.ByteStringEncoding))) } decMode, err := DecOptions{ @@ -360,7 +357,7 @@ func (di *diagnose) item() error { //nolint:gocyclo case cborTypeArray: _, _, val := di.d.getHead() - count := int(val) + count := int(val) //nolint:gosec di.w.WriteByte('[') for i := 0; i < count; i++ { @@ -376,7 +373,7 @@ func (di *diagnose) item() error { //nolint:gocyclo case cborTypeMap: _, _, val := di.d.getHead() - count := int(val) + count := int(val) //nolint:gosec di.w.WriteByte('{') for i := 0; i < count; i++ { @@ -477,8 +474,8 @@ func (di *diagnose) item() error { //nolint:gocyclo func (di *diagnose) writeU16(val rune) { di.w.WriteString("\\u") var in [2]byte - in[0] = byte(val >> 8) - in[1] = byte(val) + in[0] = byte(val >> 8) //nolint:gosec + in[1] = byte(val) //nolint:gosec sz := hex.EncodedLen(len(in)) di.w.Grow(sz) dst := di.w.Bytes()[di.w.Len() : di.w.Len()+sz] @@ -608,7 +605,7 @@ func (di *diagnose) encodeTextString(val string, quote byte) error { c, size := utf8.DecodeRuneInString(val[i:]) switch { - case c == utf8.RuneError: + case c == utf8.RuneError && size == 1: return &SemanticError{"cbor: invalid UTF-8 string"} case c < utf16SurrSelf: @@ -631,7 +628,7 @@ func (di *diagnose) encodeFloat(ai byte, val uint64) error { f64 := float64(0) switch ai { case additionalInformationAsFloat16: - f16 := float16.Frombits(uint16(val)) + f16 := float16.Frombits(uint16(val)) //nolint:gosec switch { case f16.IsNaN(): di.w.WriteString("NaN") @@ -647,7 +644,7 @@ func (di *diagnose) encodeFloat(ai byte, val uint64) error { } case additionalInformationAsFloat32: - f32 := math.Float32frombits(uint32(val)) + f32 := math.Float32frombits(uint32(val)) //nolint:gosec switch { case f32 != f32: di.w.WriteString("NaN") diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/encode.go b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/encode.go index c550617c38..e65a29d8a6 100644 --- a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/encode.go +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/encode.go @@ -30,7 +30,7 @@ import ( // If value implements the Marshaler interface, Marshal calls its // MarshalCBOR method. // -// If value implements encoding.BinaryMarshaler, Marhsal calls its +// If value implements encoding.BinaryMarshaler, Marshal calls its // MarshalBinary method and encode it as CBOR byte string. // // Boolean values encode as CBOR booleans (type 7). @@ -343,7 +343,7 @@ const ( // non-UTC timezone then a "localtime - UTC" numeric offset will be included as specified in RFC3339. // NOTE: User applications can avoid including the RFC3339 numeric offset by: // - providing a time.Time value set to UTC, or - // - using the TimeUnix, TimeUnixMicro, or TimeUnixDynamic option instead of TimeRFC3339. + // - using the TimeUnix, TimeUnixMicro, TimeUnixDynamic, or TimeRFC3339NanoUTC option. TimeRFC3339 // TimeRFC3339Nano causes time.Time to encode to a CBOR time (tag 0) with a text string content @@ -351,9 +351,13 @@ const ( // non-UTC timezone then a "localtime - UTC" numeric offset will be included as specified in RFC3339. // NOTE: User applications can avoid including the RFC3339 numeric offset by: // - providing a time.Time value set to UTC, or - // - using the TimeUnix, TimeUnixMicro, or TimeUnixDynamic option instead of TimeRFC3339Nano. + // - using the TimeUnix, TimeUnixMicro, TimeUnixDynamic, or TimeRFC3339NanoUTC option. TimeRFC3339Nano + // TimeRFC3339NanoUTC causes time.Time to encode to a CBOR time (tag 0) with a text string content + // representing UTC time using nanosecond precision in RFC3339 format. + TimeRFC3339NanoUTC + maxTimeMode ) @@ -436,7 +440,7 @@ const ( // FieldNameToTextString encodes struct fields to CBOR text string (major type 3). FieldNameToTextString FieldNameMode = iota - // FieldNameToTextString encodes struct fields to CBOR byte string (major type 2). + // FieldNameToByteString encodes struct fields to CBOR byte string (major type 2). FieldNameToByteString maxFieldNameMode @@ -567,7 +571,7 @@ type EncOptions struct { // RFC3339 format gets tag number 0, and numeric epoch time tag number 1. TimeTag EncTagMode - // IndefLength specifies whether to allow indefinite length CBOR items. + // IndefLength specifies whether to allow indefinite-length CBOR items. IndefLength IndefLengthMode // NilContainers specifies how to encode nil slices and maps. @@ -1132,10 +1136,11 @@ func encodeFloat(e *bytes.Buffer, em *encMode, v reflect.Value) error { if fopt == ShortestFloat16 { var f16 float16.Float16 p := float16.PrecisionFromfloat32(f32) - if p == float16.PrecisionExact { + switch p { + case float16.PrecisionExact: // Roundtrip float32->float16->float32 test isn't needed. f16 = float16.Fromfloat32(f32) - } else if p == float16.PrecisionUnknown { + case float16.PrecisionUnknown: // Try roundtrip float32->float16->float32 to determine if float32 can fit into float16. f16 = float16.Fromfloat32(f32) if f16.Float32() == f32 { @@ -1293,10 +1298,10 @@ func encodeByteString(e *bytes.Buffer, em *encMode, v reflect.Value) error { if slen == 0 { return e.WriteByte(byte(cborTypeByteString)) } - encodeHead(e, byte(cborTypeByteString), uint64(slen)) + encodeHead(e, byte(cborTypeByteString), uint64(slen)) //nolint:gosec if vk == reflect.Array { for i := 0; i < slen; i++ { - e.WriteByte(byte(v.Index(i).Uint())) + e.WriteByte(byte(v.Index(i).Uint())) //nolint:gosec } return nil } @@ -1333,7 +1338,7 @@ func (ae arrayEncodeFunc) encode(e *bytes.Buffer, em *encMode, v reflect.Value) if alen == 0 { return e.WriteByte(byte(cborTypeArray)) } - encodeHead(e, byte(cborTypeArray), uint64(alen)) + encodeHead(e, byte(cborTypeArray), uint64(alen)) //nolint:gosec for i := 0; i < alen; i++ { if err := ae.f(e, em, v.Index(i)); err != nil { return err @@ -1364,7 +1369,7 @@ func (me mapEncodeFunc) encode(e *bytes.Buffer, em *encMode, v reflect.Value) er return e.WriteByte(byte(cborTypeMap)) } - encodeHead(e, byte(cborTypeMap), uint64(mlen)) + encodeHead(e, byte(cborTypeMap), uint64(mlen)) //nolint:gosec if em.sort == SortNone || em.sort == SortFastShuffle || mlen <= 1 { return me.e(e, em, v, nil) } @@ -1427,7 +1432,7 @@ func (x *bytewiseKeyValueSorter) Swap(i, j int) { func (x *bytewiseKeyValueSorter) Less(i, j int) bool { kvi, kvj := x.kvs[i], x.kvs[j] - return bytes.Compare(x.data[kvi.offset:kvi.valueOffset], x.data[kvj.offset:kvj.valueOffset]) <= 0 + return bytes.Compare(x.data[kvi.offset:kvi.valueOffset], x.data[kvj.offset:kvj.valueOffset]) < 0 } type lengthFirstKeyValueSorter struct { @@ -1448,7 +1453,7 @@ func (x *lengthFirstKeyValueSorter) Less(i, j int) bool { if keyLengthDifference := (kvi.valueOffset - kvi.offset) - (kvj.valueOffset - kvj.offset); keyLengthDifference != 0 { return keyLengthDifference < 0 } - return bytes.Compare(x.data[kvi.offset:kvi.valueOffset], x.data[kvj.offset:kvj.valueOffset]) <= 0 + return bytes.Compare(x.data[kvi.offset:kvi.valueOffset], x.data[kvj.offset:kvj.valueOffset]) < 0 } var keyValuePool = sync.Pool{} @@ -1535,8 +1540,8 @@ func encodeStruct(e *bytes.Buffer, em *encMode, v reflect.Value) (err error) { // Head is rewritten later if actual encoded field count is different from struct field count. encodedHeadLen := encodeHead(e, byte(cborTypeMap), uint64(len(flds))) - kvbegin := e.Len() - kvcount := 0 + kvBeginOffset := e.Len() + kvCount := 0 for offset := 0; offset < len(flds); offset++ { f := flds[(start+offset)%len(flds)] @@ -1582,10 +1587,10 @@ func encodeStruct(e *bytes.Buffer, em *encMode, v reflect.Value) (err error) { return err } - kvcount++ + kvCount++ } - if len(flds) == kvcount { + if len(flds) == kvCount { // Encoded element count in head is the same as actual element count. return nil } @@ -1593,8 +1598,8 @@ func encodeStruct(e *bytes.Buffer, em *encMode, v reflect.Value) (err error) { // Overwrite the bytes that were reserved for the head before encoding the map entries. var actualHeadLen int { - headbuf := *bytes.NewBuffer(e.Bytes()[kvbegin-encodedHeadLen : kvbegin-encodedHeadLen : kvbegin]) - actualHeadLen = encodeHead(&headbuf, byte(cborTypeMap), uint64(kvcount)) + headbuf := *bytes.NewBuffer(e.Bytes()[kvBeginOffset-encodedHeadLen : kvBeginOffset-encodedHeadLen : kvBeginOffset]) + actualHeadLen = encodeHead(&headbuf, byte(cborTypeMap), uint64(kvCount)) } if actualHeadLen == encodedHeadLen { @@ -1607,8 +1612,8 @@ func encodeStruct(e *bytes.Buffer, em *encMode, v reflect.Value) (err error) { // encoded. The encoded entries are offset to the right by the number of excess reserved // bytes. Shift the entries left to remove the gap. excessReservedBytes := encodedHeadLen - actualHeadLen - dst := e.Bytes()[kvbegin-excessReservedBytes : e.Len()-excessReservedBytes] - src := e.Bytes()[kvbegin:e.Len()] + dst := e.Bytes()[kvBeginOffset-excessReservedBytes : e.Len()-excessReservedBytes] + src := e.Bytes()[kvBeginOffset:e.Len()] copy(dst, src) // After shifting, the excess bytes are at the end of the output buffer and they are @@ -1633,7 +1638,7 @@ func encodeTime(e *bytes.Buffer, em *encMode, v reflect.Value) error { } if em.timeTag == EncTagRequired { tagNumber := 1 - if em.time == TimeRFC3339 || em.time == TimeRFC3339Nano { + if em.time == TimeRFC3339 || em.time == TimeRFC3339Nano || em.time == TimeRFC3339NanoUTC { tagNumber = 0 } encodeHead(e, byte(cborTypeTag), uint64(tagNumber)) @@ -1650,7 +1655,7 @@ func encodeTime(e *bytes.Buffer, em *encMode, v reflect.Value) error { case TimeUnixDynamic: t = t.UTC().Round(time.Microsecond) - secs, nsecs := t.Unix(), uint64(t.Nanosecond()) + secs, nsecs := t.Unix(), uint64(t.Nanosecond()) //nolint:gosec if nsecs == 0 { return encodeInt(e, em, reflect.ValueOf(secs)) } @@ -1661,6 +1666,10 @@ func encodeTime(e *bytes.Buffer, em *encMode, v reflect.Value) error { s := t.Format(time.RFC3339) return encodeString(e, em, reflect.ValueOf(s)) + case TimeRFC3339NanoUTC: + s := t.UTC().Format(time.RFC3339Nano) + return encodeString(e, em, reflect.ValueOf(s)) + default: // TimeRFC3339Nano s := t.Format(time.RFC3339Nano) return encodeString(e, em, reflect.ValueOf(s)) diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/simplevalue.go b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/simplevalue.go index 30f72814f6..9912e855c2 100644 --- a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/simplevalue.go +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/simplevalue.go @@ -93,6 +93,6 @@ func (sv *SimpleValue) unmarshalCBOR(data []byte) error { // It is safe to cast val to uint8 here because // - data is already verified to be well-formed CBOR simple value and // - val is <= math.MaxUint8. - *sv = SimpleValue(val) + *sv = SimpleValue(val) //nolint:gosec return nil } diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/stream.go b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/stream.go index 7ac6d7d671..da4c8f210f 100644 --- a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/stream.go +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/stream.go @@ -171,14 +171,20 @@ func NewEncoder(w io.Writer) *Encoder { // Encode writes the CBOR encoding of v. func (enc *Encoder) Encode(v any) error { - if len(enc.indefTypes) > 0 && v != nil { - indefType := enc.indefTypes[len(enc.indefTypes)-1] - if indefType == cborTypeTextString { + if len(enc.indefTypes) > 0 { + switch enc.indefTypes[len(enc.indefTypes)-1] { + case cborTypeTextString: + if v == nil { + return errors.New("cbor: cannot encode nil for indefinite-length text string") + } k := reflect.TypeOf(v).Kind() if k != reflect.String { return errors.New("cbor: cannot encode item type " + k.String() + " for indefinite-length text string") } - } else if indefType == cborTypeByteString { + case cborTypeByteString: + if v == nil { + return errors.New("cbor: cannot encode nil for indefinite-length byte string") + } t := reflect.TypeOf(v) k := t.Kind() if (k != reflect.Array && k != reflect.Slice) || t.Elem().Kind() != reflect.Uint8 { @@ -198,35 +204,35 @@ func (enc *Encoder) Encode(v any) error { return err } -// StartIndefiniteByteString starts byte string encoding of indefinite length. +// StartIndefiniteByteString starts indefinite-length byte string encoding. // Subsequent calls of (*Encoder).Encode() encodes definite length byte strings // ("chunks") as one contiguous string until EndIndefinite is called. func (enc *Encoder) StartIndefiniteByteString() error { return enc.startIndefinite(cborTypeByteString) } -// StartIndefiniteTextString starts text string encoding of indefinite length. +// StartIndefiniteTextString starts indefinite-length text string encoding. // Subsequent calls of (*Encoder).Encode() encodes definite length text strings // ("chunks") as one contiguous string until EndIndefinite is called. func (enc *Encoder) StartIndefiniteTextString() error { return enc.startIndefinite(cborTypeTextString) } -// StartIndefiniteArray starts array encoding of indefinite length. +// StartIndefiniteArray starts indefinite-length array encoding. // Subsequent calls of (*Encoder).Encode() encodes elements of the array // until EndIndefinite is called. func (enc *Encoder) StartIndefiniteArray() error { return enc.startIndefinite(cborTypeArray) } -// StartIndefiniteMap starts array encoding of indefinite length. +// StartIndefiniteMap starts indefinite-length map encoding. // Subsequent calls of (*Encoder).Encode() encodes elements of the map // until EndIndefinite is called. func (enc *Encoder) StartIndefiniteMap() error { return enc.startIndefinite(cborTypeMap) } -// EndIndefinite closes last opened indefinite length value. +// EndIndefinite closes last opened indefinite-length value. func (enc *Encoder) EndIndefinite() error { if len(enc.indefTypes) == 0 { return errors.New("cbor: cannot encode \"break\" code outside indefinite length values") @@ -238,18 +244,22 @@ func (enc *Encoder) EndIndefinite() error { return err } -var cborIndefHeader = map[cborType][]byte{ - cborTypeByteString: {cborByteStringWithIndefiniteLengthHead}, - cborTypeTextString: {cborTextStringWithIndefiniteLengthHead}, - cborTypeArray: {cborArrayWithIndefiniteLengthHead}, - cborTypeMap: {cborMapWithIndefiniteLengthHead}, -} - func (enc *Encoder) startIndefinite(typ cborType) error { if enc.em.indefLength == IndefLengthForbidden { return &IndefiniteLengthError{typ} } - _, err := enc.w.Write(cborIndefHeader[typ]) + var head byte + switch typ { + case cborTypeByteString: + head = cborByteStringWithIndefiniteLengthHead + case cborTypeTextString: + head = cborTextStringWithIndefiniteLengthHead + case cborTypeArray: + head = cborArrayWithIndefiniteLengthHead + case cborTypeMap: + head = cborMapWithIndefiniteLengthHead + } + _, err := enc.w.Write([]byte{head}) if err == nil { enc.indefTypes = append(enc.indefTypes, typ) } @@ -262,7 +272,9 @@ type RawMessage []byte // MarshalCBOR returns m or CBOR nil if m is nil. func (m RawMessage) MarshalCBOR() ([]byte, error) { if len(m) == 0 { - return cborNil, nil + b := make([]byte, len(cborNil)) + copy(b, cborNil) + return b, nil } return m, nil } diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/structfields.go b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/structfields.go index cf0a922cd7..b2d71f2e9a 100644 --- a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/structfields.go +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/structfields.go @@ -6,27 +6,43 @@ package cbor import ( "reflect" "sort" + "strconv" "strings" ) +// field holds shared struct field metadata returned by getFields(). type field struct { - name string - nameAsInt int64 // used to decoder to match field name with CBOR int + name string + nameAsInt int64 // used to match field name with CBOR int + idx []int + typ reflect.Type // used during cache building only + keyAsInt bool // used to encode/decode field name as int + tagged bool // used to choose dominant field (at the same level tagged fields dominate untagged fields) + omitEmpty bool // used to skip empty field + omitZero bool // used to skip zero field +} + +type fields []*field + +// encodingField extends field with encoding-specific data. +type encodingField struct { + field cborName []byte - cborNameByteString []byte // major type 2 name encoding iff cborName has major type 3 - idx []int - typ reflect.Type + cborNameByteString []byte // major type 2 name encoding if cborName has major type 3 ef encodeFunc ief isEmptyFunc izf isZeroFunc - typInfo *typeInfo // used to decoder to reuse type info - tagged bool // used to choose dominant field (at the same level tagged fields dominate untagged fields) - omitEmpty bool // used to skip empty field - omitZero bool // used to skip zero field - keyAsInt bool // used to encode/decode field name as int } -type fields []*field +type encodingFields []*encodingField + +// decodingField extends field with decoding-specific data. +type decodingField struct { + field + typInfo *typeInfo // used by decoder to reuse type info +} + +type decodingFields []*decodingField // indexFieldSorter sorts fields by field idx at each level, breaking ties with idx depth. type indexFieldSorter struct { @@ -48,7 +64,7 @@ func (x *indexFieldSorter) Less(i, j int) bool { return iIdx[k] < jIdx[k] } } - return len(iIdx) <= len(jIdx) + return len(iIdx) < len(jIdx) } // nameLevelAndTagFieldSorter sorts fields by field name, idx depth, and presence of tag. @@ -69,6 +85,10 @@ func (x *nameLevelAndTagFieldSorter) Less(i, j int) bool { if fi.name != fj.name { return fi.name < fj.name } + // Fields with the same name but different keyAsInt are in separate namespaces. + if fi.keyAsInt != fj.keyAsInt { + return fi.keyAsInt + } if len(fi.idx) != len(fj.idx) { return len(fi.idx) < len(fj.idx) } @@ -117,22 +137,37 @@ func getFields(t reflect.Type) (flds fields, structOptions string) { } } + // Normalize keyasint field names to their canonical integer string form. + // This ensures that "01", "+1", and "1" are treated as the same key + // during deduplication. + for _, f := range flds { + if f.keyAsInt { + nameAsInt, err := strconv.Atoi(f.name) + if err != nil { + continue // Leave invalid names for callers to report. + } + f.nameAsInt = int64(nameAsInt) + f.name = strconv.Itoa(nameAsInt) + } + } + sort.Sort(&nameLevelAndTagFieldSorter{flds}) // Keep visible fields. j := 0 // index of next unique field for i := 0; i < len(flds); { name := flds[i].name + keyAsInt := flds[i].keyAsInt if i == len(flds)-1 || // last field - name != flds[i+1].name || // field i has unique field name + name != flds[i+1].name || flds[i+1].keyAsInt != keyAsInt || // field i has unique (name, keyAsInt) len(flds[i].idx) < len(flds[i+1].idx) || // field i is at a less nested level than field i+1 (flds[i].tagged && !flds[i+1].tagged) { // field i is tagged while field i+1 is not flds[j] = flds[i] j++ } - // Skip fields with the same field name. - for i++; i < len(flds) && name == flds[i].name; i++ { //nolint:revive + // Skip fields with the same (name, keyAsInt). + for i++; i < len(flds) && name == flds[i].name && keyAsInt == flds[i].keyAsInt; i++ { //nolint:revive } } if j != len(flds) { diff --git a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/valid.go b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/valid.go index b40793b95e..850b95019c 100644 --- a/tests/e2e/vendor/github.com/fxamacker/cbor/v2/valid.go +++ b/tests/e2e/vendor/github.com/fxamacker/cbor/v2/valid.go @@ -54,7 +54,7 @@ func (e *MaxMapPairsError) Error() string { return "cbor: exceeded max number of key-value pairs " + strconv.Itoa(e.maxMapPairs) + " for CBOR map" } -// IndefiniteLengthError indicates found disallowed indefinite length items. +// IndefiniteLengthError indicates found disallowed indefinite-length items. type IndefiniteLengthError struct { t cborType } @@ -113,7 +113,7 @@ func (d *decoder) wellformedInternal(depth int, checkBuiltinTags bool) (int, err } return d.wellformedIndefiniteString(t, depth, checkBuiltinTags) } - valInt := int(val) + valInt := int(val) //nolint:gosec if valInt < 0 { // Detect integer overflow return 0, errors.New("cbor: " + t.String() + " length " + strconv.FormatUint(val, 10) + " is too large, causing integer overflow") @@ -136,7 +136,7 @@ func (d *decoder) wellformedInternal(depth int, checkBuiltinTags bool) (int, err return d.wellformedIndefiniteArrayOrMap(t, depth, checkBuiltinTags) } - valInt := int(val) + valInt := int(val) //nolint:gosec if valInt < 0 { // Detect integer overflow return 0, errors.New("cbor: " + t.String() + " length " + strconv.FormatUint(val, 10) + " is too large, it would cause integer overflow") @@ -212,7 +212,7 @@ func (d *decoder) wellformedInternal(depth int, checkBuiltinTags bool) (int, err return depth, nil } -// wellformedIndefiniteString checks indefinite length byte/text string's well-formedness and returns max depth and error. +// wellformedIndefiniteString checks indefinite-length byte/text string's well-formedness and returns max depth and error. func (d *decoder) wellformedIndefiniteString(t cborType, depth int, checkBuiltinTags bool) (int, error) { var err error for { @@ -223,7 +223,7 @@ func (d *decoder) wellformedIndefiniteString(t cborType, depth int, checkBuiltin d.off++ break } - // Peek ahead to get next type and indefinite length status. + // Peek ahead to get next type and indefinite-length status. nt, ai := parseInitialByte(d.data[d.off]) if t != nt { return 0, &SyntaxError{"cbor: wrong element type " + nt.String() + " for indefinite-length " + t.String()} @@ -238,7 +238,7 @@ func (d *decoder) wellformedIndefiniteString(t cborType, depth int, checkBuiltin return depth, nil } -// wellformedIndefiniteArrayOrMap checks indefinite length array/map's well-formedness and returns max depth and error. +// wellformedIndefiniteArrayOrMap checks indefinite-length array/map's well-formedness and returns max depth and error. func (d *decoder) wellformedIndefiniteArrayOrMap(t cborType, depth int, checkBuiltinTags bool) (int, error) { var err error maxDepth := depth @@ -326,7 +326,7 @@ func (d *decoder) wellformedHead() (t cborType, ai byte, val uint64, err error) val = uint64(binary.BigEndian.Uint16(d.data[d.off : d.off+argumentSize])) d.off += argumentSize if t == cborTypePrimitives { - if err := d.acceptableFloat(float64(float16.Frombits(uint16(val)).Float32())); err != nil { + if err := d.acceptableFloat(float64(float16.Frombits(uint16(val)).Float32())); err != nil { //nolint:gosec return 0, 0, 0, err } } @@ -341,7 +341,7 @@ func (d *decoder) wellformedHead() (t cborType, ai byte, val uint64, err error) val = uint64(binary.BigEndian.Uint32(d.data[d.off : d.off+argumentSize])) d.off += argumentSize if t == cborTypePrimitives { - if err := d.acceptableFloat(float64(math.Float32frombits(uint32(val)))); err != nil { + if err := d.acceptableFloat(float64(math.Float32frombits(uint32(val)))); err != nil { //nolint:gosec return 0, 0, 0, err } } @@ -379,12 +379,12 @@ func (d *decoder) wellformedHead() (t cborType, ai byte, val uint64, err error) func (d *decoder) acceptableFloat(f float64) error { switch { - case d.dm.nanDec == NaNDecodeForbidden && math.IsNaN(f): + case d.dm.nan == NaNDecodeForbidden && math.IsNaN(f): return &UnacceptableDataItemError{ CBORType: cborTypePrimitives.String(), Message: "floating-point NaN", } - case d.dm.infDec == InfDecodeForbidden && math.IsInf(f, 0): + case d.dm.inf == InfDecodeForbidden && math.IsInf(f, 0): return &UnacceptableDataItemError{ CBORType: cborTypePrimitives.String(), Message: "floating-point infinity", diff --git a/tests/e2e/vendor/github.com/go-errors/errors/.travis.yml b/tests/e2e/vendor/github.com/go-errors/errors/.travis.yml new file mode 100644 index 0000000000..77a6bccf77 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-errors/errors/.travis.yml @@ -0,0 +1,8 @@ +language: go + +go: + - "1.8.x" + - "1.10.x" + - "1.13.x" + - "1.14.x" + - "1.16.x" diff --git a/tests/e2e/vendor/github.com/go-errors/errors/LICENSE.MIT b/tests/e2e/vendor/github.com/go-errors/errors/LICENSE.MIT new file mode 100644 index 0000000000..c9a5b2eeb7 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-errors/errors/LICENSE.MIT @@ -0,0 +1,7 @@ +Copyright (c) 2015 Conrad Irwin + +Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. diff --git a/tests/e2e/vendor/github.com/go-errors/errors/README.md b/tests/e2e/vendor/github.com/go-errors/errors/README.md new file mode 100644 index 0000000000..3d78525940 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-errors/errors/README.md @@ -0,0 +1,82 @@ +go-errors/errors +================ + +[![Build Status](https://travis-ci.org/go-errors/errors.svg?branch=master)](https://travis-ci.org/go-errors/errors) + +Package errors adds stacktrace support to errors in go. + +This is particularly useful when you want to understand the state of execution +when an error was returned unexpectedly. + +It provides the type \*Error which implements the standard golang error +interface, so you can use this library interchangably with code that is +expecting a normal error return. + +Usage +----- + +Full documentation is available on +[godoc](https://godoc.org/github.com/go-errors/errors), but here's a simple +example: + +```go +package crashy + +import "github.com/go-errors/errors" + +var Crashed = errors.Errorf("oh dear") + +func Crash() error { + return errors.New(Crashed) +} +``` + +This can be called as follows: + +```go +package main + +import ( + "crashy" + "fmt" + "github.com/go-errors/errors" +) + +func main() { + err := crashy.Crash() + if err != nil { + if errors.Is(err, crashy.Crashed) { + fmt.Println(err.(*errors.Error).ErrorStack()) + } else { + panic(err) + } + } +} +``` + +Meta-fu +------- + +This package was original written to allow reporting to +[Bugsnag](https://bugsnag.com/) from +[bugsnag-go](https://github.com/bugsnag/bugsnag-go), but after I found similar +packages by Facebook and Dropbox, it was moved to one canonical location so +everyone can benefit. + +This package is licensed under the MIT license, see LICENSE.MIT for details. + + +## Changelog +* v1.1.0 updated to use go1.13's standard-library errors.Is method instead of == in errors.Is +* v1.2.0 added `errors.As` from the standard library. +* v1.3.0 *BREAKING* updated error methods to return `error` instead of `*Error`. +> Code that needs access to the underlying `*Error` can use the new errors.AsError(e) +> ``` +> // before +> errors.New(err).ErrorStack() +> // after +>. errors.AsError(errors.Wrap(err)).ErrorStack() +> ``` +* v1.4.0 *BREAKING* v1.4.0 reverted all changes from v1.3.0 and is identical to v1.2.0 +* v1.4.1 no code change, but now without an unnecessary cover.out file. +* v1.4.2 performance improvement to ErrorStack() to avoid unnecessary work https://github.com/go-errors/errors/pull/40 diff --git a/tests/e2e/vendor/github.com/go-errors/errors/error.go b/tests/e2e/vendor/github.com/go-errors/errors/error.go new file mode 100644 index 0000000000..ccbc2e4272 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-errors/errors/error.go @@ -0,0 +1,209 @@ +// Package errors provides errors that have stack-traces. +// +// This is particularly useful when you want to understand the +// state of execution when an error was returned unexpectedly. +// +// It provides the type *Error which implements the standard +// golang error interface, so you can use this library interchangably +// with code that is expecting a normal error return. +// +// For example: +// +// package crashy +// +// import "github.com/go-errors/errors" +// +// var Crashed = errors.Errorf("oh dear") +// +// func Crash() error { +// return errors.New(Crashed) +// } +// +// This can be called as follows: +// +// package main +// +// import ( +// "crashy" +// "fmt" +// "github.com/go-errors/errors" +// ) +// +// func main() { +// err := crashy.Crash() +// if err != nil { +// if errors.Is(err, crashy.Crashed) { +// fmt.Println(err.(*errors.Error).ErrorStack()) +// } else { +// panic(err) +// } +// } +// } +// +// This package was original written to allow reporting to Bugsnag, +// but after I found similar packages by Facebook and Dropbox, it +// was moved to one canonical location so everyone can benefit. +package errors + +import ( + "bytes" + "fmt" + "reflect" + "runtime" +) + +// The maximum number of stackframes on any error. +var MaxStackDepth = 50 + +// Error is an error with an attached stacktrace. It can be used +// wherever the builtin error interface is expected. +type Error struct { + Err error + stack []uintptr + frames []StackFrame + prefix string +} + +// New makes an Error from the given value. If that value is already an +// error then it will be used directly, if not, it will be passed to +// fmt.Errorf("%v"). The stacktrace will point to the line of code that +// called New. +func New(e interface{}) *Error { + var err error + + switch e := e.(type) { + case error: + err = e + default: + err = fmt.Errorf("%v", e) + } + + stack := make([]uintptr, MaxStackDepth) + length := runtime.Callers(2, stack[:]) + return &Error{ + Err: err, + stack: stack[:length], + } +} + +// Wrap makes an Error from the given value. If that value is already an +// error then it will be used directly, if not, it will be passed to +// fmt.Errorf("%v"). The skip parameter indicates how far up the stack +// to start the stacktrace. 0 is from the current call, 1 from its caller, etc. +func Wrap(e interface{}, skip int) *Error { + if e == nil { + return nil + } + + var err error + + switch e := e.(type) { + case *Error: + return e + case error: + err = e + default: + err = fmt.Errorf("%v", e) + } + + stack := make([]uintptr, MaxStackDepth) + length := runtime.Callers(2+skip, stack[:]) + return &Error{ + Err: err, + stack: stack[:length], + } +} + +// WrapPrefix makes an Error from the given value. If that value is already an +// error then it will be used directly, if not, it will be passed to +// fmt.Errorf("%v"). The prefix parameter is used to add a prefix to the +// error message when calling Error(). The skip parameter indicates how far +// up the stack to start the stacktrace. 0 is from the current call, +// 1 from its caller, etc. +func WrapPrefix(e interface{}, prefix string, skip int) *Error { + if e == nil { + return nil + } + + err := Wrap(e, 1+skip) + + if err.prefix != "" { + prefix = fmt.Sprintf("%s: %s", prefix, err.prefix) + } + + return &Error{ + Err: err.Err, + stack: err.stack, + prefix: prefix, + } + +} + +// Errorf creates a new error with the given message. You can use it +// as a drop-in replacement for fmt.Errorf() to provide descriptive +// errors in return values. +func Errorf(format string, a ...interface{}) *Error { + return Wrap(fmt.Errorf(format, a...), 1) +} + +// Error returns the underlying error's message. +func (err *Error) Error() string { + + msg := err.Err.Error() + if err.prefix != "" { + msg = fmt.Sprintf("%s: %s", err.prefix, msg) + } + + return msg +} + +// Stack returns the callstack formatted the same way that go does +// in runtime/debug.Stack() +func (err *Error) Stack() []byte { + buf := bytes.Buffer{} + + for _, frame := range err.StackFrames() { + buf.WriteString(frame.String()) + } + + return buf.Bytes() +} + +// Callers satisfies the bugsnag ErrorWithCallerS() interface +// so that the stack can be read out. +func (err *Error) Callers() []uintptr { + return err.stack +} + +// ErrorStack returns a string that contains both the +// error message and the callstack. +func (err *Error) ErrorStack() string { + return err.TypeName() + " " + err.Error() + "\n" + string(err.Stack()) +} + +// StackFrames returns an array of frames containing information about the +// stack. +func (err *Error) StackFrames() []StackFrame { + if err.frames == nil { + err.frames = make([]StackFrame, len(err.stack)) + + for i, pc := range err.stack { + err.frames[i] = NewStackFrame(pc) + } + } + + return err.frames +} + +// TypeName returns the type this error. e.g. *errors.stringError. +func (err *Error) TypeName() string { + if _, ok := err.Err.(uncaughtPanic); ok { + return "panic" + } + return reflect.TypeOf(err.Err).String() +} + +// Return the wrapped error (implements api for As function). +func (err *Error) Unwrap() error { + return err.Err +} diff --git a/tests/e2e/vendor/github.com/go-errors/errors/error_1_13.go b/tests/e2e/vendor/github.com/go-errors/errors/error_1_13.go new file mode 100644 index 0000000000..0af2fc8065 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-errors/errors/error_1_13.go @@ -0,0 +1,31 @@ +// +build go1.13 + +package errors + +import ( + baseErrors "errors" +) + +// find error in any wrapped error +func As(err error, target interface{}) bool { + return baseErrors.As(err, target) +} + +// Is detects whether the error is equal to a given error. Errors +// are considered equal by this function if they are matched by errors.Is +// or if their contained errors are matched through errors.Is +func Is(e error, original error) bool { + if baseErrors.Is(e, original) { + return true + } + + if e, ok := e.(*Error); ok { + return Is(e.Err, original) + } + + if original, ok := original.(*Error); ok { + return Is(e, original.Err) + } + + return false +} diff --git a/tests/e2e/vendor/github.com/go-errors/errors/error_backward.go b/tests/e2e/vendor/github.com/go-errors/errors/error_backward.go new file mode 100644 index 0000000000..80b0695e7e --- /dev/null +++ b/tests/e2e/vendor/github.com/go-errors/errors/error_backward.go @@ -0,0 +1,57 @@ +// +build !go1.13 + +package errors + +import ( + "reflect" +) + +type unwrapper interface { + Unwrap() error +} + +// As assigns error or any wrapped error to the value target points +// to. If there is no value of the target type of target As returns +// false. +func As(err error, target interface{}) bool { + targetType := reflect.TypeOf(target) + + for { + errType := reflect.TypeOf(err) + + if errType == nil { + return false + } + + if reflect.PtrTo(errType) == targetType { + reflect.ValueOf(target).Elem().Set(reflect.ValueOf(err)) + return true + } + + wrapped, ok := err.(unwrapper) + if ok { + err = wrapped.Unwrap() + } else { + return false + } + } +} + +// Is detects whether the error is equal to a given error. Errors +// are considered equal by this function if they are the same object, +// or if they both contain the same error inside an errors.Error. +func Is(e error, original error) bool { + if e == original { + return true + } + + if e, ok := e.(*Error); ok { + return Is(e.Err, original) + } + + if original, ok := original.(*Error); ok { + return Is(e, original.Err) + } + + return false +} diff --git a/tests/e2e/vendor/github.com/go-errors/errors/parse_panic.go b/tests/e2e/vendor/github.com/go-errors/errors/parse_panic.go new file mode 100644 index 0000000000..cc37052d78 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-errors/errors/parse_panic.go @@ -0,0 +1,127 @@ +package errors + +import ( + "strconv" + "strings" +) + +type uncaughtPanic struct{ message string } + +func (p uncaughtPanic) Error() string { + return p.message +} + +// ParsePanic allows you to get an error object from the output of a go program +// that panicked. This is particularly useful with https://github.com/mitchellh/panicwrap. +func ParsePanic(text string) (*Error, error) { + lines := strings.Split(text, "\n") + + state := "start" + + var message string + var stack []StackFrame + + for i := 0; i < len(lines); i++ { + line := lines[i] + + if state == "start" { + if strings.HasPrefix(line, "panic: ") { + message = strings.TrimPrefix(line, "panic: ") + state = "seek" + } else { + return nil, Errorf("bugsnag.panicParser: Invalid line (no prefix): %s", line) + } + + } else if state == "seek" { + if strings.HasPrefix(line, "goroutine ") && strings.HasSuffix(line, "[running]:") { + state = "parsing" + } + + } else if state == "parsing" { + if line == "" { + state = "done" + break + } + createdBy := false + if strings.HasPrefix(line, "created by ") { + line = strings.TrimPrefix(line, "created by ") + createdBy = true + } + + i++ + + if i >= len(lines) { + return nil, Errorf("bugsnag.panicParser: Invalid line (unpaired): %s", line) + } + + frame, err := parsePanicFrame(line, lines[i], createdBy) + if err != nil { + return nil, err + } + + stack = append(stack, *frame) + if createdBy { + state = "done" + break + } + } + } + + if state == "done" || state == "parsing" { + return &Error{Err: uncaughtPanic{message}, frames: stack}, nil + } + return nil, Errorf("could not parse panic: %v", text) +} + +// The lines we're passing look like this: +// +// main.(*foo).destruct(0xc208067e98) +// /0/go/src/github.com/bugsnag/bugsnag-go/pan/main.go:22 +0x151 +func parsePanicFrame(name string, line string, createdBy bool) (*StackFrame, error) { + idx := strings.LastIndex(name, "(") + if idx == -1 && !createdBy { + return nil, Errorf("bugsnag.panicParser: Invalid line (no call): %s", name) + } + if idx != -1 { + name = name[:idx] + } + pkg := "" + + if lastslash := strings.LastIndex(name, "/"); lastslash >= 0 { + pkg += name[:lastslash] + "/" + name = name[lastslash+1:] + } + if period := strings.Index(name, "."); period >= 0 { + pkg += name[:period] + name = name[period+1:] + } + + name = strings.Replace(name, "·", ".", -1) + + if !strings.HasPrefix(line, "\t") { + return nil, Errorf("bugsnag.panicParser: Invalid line (no tab): %s", line) + } + + idx = strings.LastIndex(line, ":") + if idx == -1 { + return nil, Errorf("bugsnag.panicParser: Invalid line (no line number): %s", line) + } + file := line[1:idx] + + number := line[idx+1:] + if idx = strings.Index(number, " +"); idx > -1 { + number = number[:idx] + } + + lno, err := strconv.ParseInt(number, 10, 32) + if err != nil { + return nil, Errorf("bugsnag.panicParser: Invalid line (bad line number): %s", line) + } + + return &StackFrame{ + File: file, + LineNumber: int(lno), + Package: pkg, + Name: name, + }, nil +} diff --git a/tests/e2e/vendor/github.com/go-errors/errors/stackframe.go b/tests/e2e/vendor/github.com/go-errors/errors/stackframe.go new file mode 100644 index 0000000000..ef4a8b3f3b --- /dev/null +++ b/tests/e2e/vendor/github.com/go-errors/errors/stackframe.go @@ -0,0 +1,122 @@ +package errors + +import ( + "bufio" + "bytes" + "fmt" + "os" + "runtime" + "strings" +) + +// A StackFrame contains all necessary information about to generate a line +// in a callstack. +type StackFrame struct { + // The path to the file containing this ProgramCounter + File string + // The LineNumber in that file + LineNumber int + // The Name of the function that contains this ProgramCounter + Name string + // The Package that contains this function + Package string + // The underlying ProgramCounter + ProgramCounter uintptr +} + +// NewStackFrame popoulates a stack frame object from the program counter. +func NewStackFrame(pc uintptr) (frame StackFrame) { + + frame = StackFrame{ProgramCounter: pc} + if frame.Func() == nil { + return + } + frame.Package, frame.Name = packageAndName(frame.Func()) + + // pc -1 because the program counters we use are usually return addresses, + // and we want to show the line that corresponds to the function call + frame.File, frame.LineNumber = frame.Func().FileLine(pc - 1) + return + +} + +// Func returns the function that contained this frame. +func (frame *StackFrame) Func() *runtime.Func { + if frame.ProgramCounter == 0 { + return nil + } + return runtime.FuncForPC(frame.ProgramCounter) +} + +// String returns the stackframe formatted in the same way as go does +// in runtime/debug.Stack() +func (frame *StackFrame) String() string { + str := fmt.Sprintf("%s:%d (0x%x)\n", frame.File, frame.LineNumber, frame.ProgramCounter) + + source, err := frame.sourceLine() + if err != nil { + return str + } + + return str + fmt.Sprintf("\t%s: %s\n", frame.Name, source) +} + +// SourceLine gets the line of code (from File and Line) of the original source if possible. +func (frame *StackFrame) SourceLine() (string, error) { + source, err := frame.sourceLine() + if err != nil { + return source, New(err) + } + return source, err +} + +func (frame *StackFrame) sourceLine() (string, error) { + if frame.LineNumber <= 0 { + return "???", nil + } + + file, err := os.Open(frame.File) + if err != nil { + return "", err + } + defer file.Close() + + scanner := bufio.NewScanner(file) + currentLine := 1 + for scanner.Scan() { + if currentLine == frame.LineNumber { + return string(bytes.Trim(scanner.Bytes(), " \t")), nil + } + currentLine++ + } + if err := scanner.Err(); err != nil { + return "", err + } + + return "???", nil +} + +func packageAndName(fn *runtime.Func) (string, string) { + name := fn.Name() + pkg := "" + + // The name includes the path name to the package, which is unnecessary + // since the file name is already included. Plus, it has center dots. + // That is, we see + // runtime/debug.*T·ptrmethod + // and want + // *T.ptrmethod + // Since the package path might contains dots (e.g. code.google.com/...), + // we first remove the path prefix if there is one. + if lastslash := strings.LastIndex(name, "/"); lastslash >= 0 { + pkg += name[:lastslash] + "/" + name = name[lastslash+1:] + } + if period := strings.Index(name, "."); period >= 0 { + pkg += name[:period] + name = name[period+1:] + } + + name = strings.Replace(name, "·", ".", -1) + return pkg, name +} diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/.gitignore b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/.gitignore index 769c244007..d8f4186fe5 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/.gitignore +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/.gitignore @@ -1 +1,5 @@ -secrets.yml +*.out +*.cov +.idea +.env +.mcp.json diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/.golangci.yml b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/.golangci.yml index 22f8d21cca..9d2733176e 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/.golangci.yml +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/.golangci.yml @@ -1,61 +1,70 @@ -linters-settings: - govet: - check-shadowing: true - golint: - min-confidence: 0 - gocyclo: - min-complexity: 45 - maligned: - suggest-new: true - dupl: - threshold: 200 - goconst: - min-len: 2 - min-occurrences: 3 - +version: "2" linters: - enable-all: true + default: all disable: - - maligned - - unparam - - lll - - gochecknoinits - - gochecknoglobals + - depguard - funlen + - goconst - godox - - gocognit - - whitespace - - wsl - - wrapcheck - - testpackage + - gomodguard + - gomodguard_v2 + - exhaustruct - nlreturn - - gomnd - - exhaustivestruct - - goerr113 - - errorlint - - nestif - - godot - - gofumpt + - nonamedreturns + - noinlineerr - paralleltest - - tparallel + - recvcheck + - testpackage - thelper - - ifshort - - exhaustruct + - tparallel - varnamelen - - gci - - depguard - - errchkjson - - inamedparam - - nonamedreturns - - musttag - - ireturn - - forcetypeassert - - cyclop - # deprecated linters - - deadcode - - interfacer - - scopelint - - varcheck - - structcheck - - golint - - nosnakecase + - whitespace + - wrapcheck + - wsl + - wsl_v5 + settings: + dupl: + threshold: 200 + goconst: + min-len: 2 + min-occurrences: 3 + cyclop: + max-complexity: 20 + gocyclo: + min-complexity: 20 + exhaustive: + default-signifies-exhaustive: true + default-case-required: true + lll: + line-length: 180 + exclusions: + generated: lax + presets: + - comments + - common-false-positives + - legacy + - std-error-handling + paths: + - third_party$ + - builtin$ + - examples$ +formatters: + enable: + - gofmt + - goimports + - gofumpt + exclusions: + generated: lax + paths: + - third_party$ + - builtin$ + - examples$ +issues: + # Maximum issues count per one linter. + # Set to 0 to disable. + # Default: 50 + max-issues-per-linter: 0 + # Maximum count of issues with the same text. + # Set to 0 to disable. + # Default: 3 + max-same-issues: 0 diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/CODE_OF_CONDUCT.md b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/CODE_OF_CONDUCT.md index 9322b065e3..bac878f216 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/CODE_OF_CONDUCT.md +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/CODE_OF_CONDUCT.md @@ -23,7 +23,9 @@ include: Examples of unacceptable behavior by participants include: * The use of sexualized language or imagery and unwelcome sexual attention or + advances + * Trolling, insulting/derogatory comments, and personal or political attacks * Public or private harassment * Publishing others' private information, such as a physical or electronic @@ -55,7 +57,7 @@ further defined and clarified by project maintainers. ## Enforcement Instances of abusive, harassing, or otherwise unacceptable behavior may be -reported by contacting the project team at ivan+abuse@flanders.co.nz. All +reported by contacting the project team at . All complaints will be reviewed and investigated and will result in a response that is deemed necessary and appropriate to the circumstances. The project team is obligated to maintain confidentiality with regard to the reporter of an incident. @@ -68,7 +70,7 @@ members of the project's leadership. ## Attribution This Code of Conduct is adapted from the [Contributor Covenant][homepage], version 1.4, -available at [http://contributor-covenant.org/version/1/4][version] +available at [][version] [homepage]: http://contributor-covenant.org [version]: http://contributor-covenant.org/version/1/4/ diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/CONTRIBUTORS.md b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/CONTRIBUTORS.md new file mode 100644 index 0000000000..de0bf5c04b --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/CONTRIBUTORS.md @@ -0,0 +1,25 @@ +# Contributors + +- Repository: ['go-openapi/jsonpointer'] + +| Total Contributors | Total Contributions | +| --- | --- | +| 13 | 132 | + +| Username | All Time Contribution Count | All Commits | +| --- | --- | --- | +| @fredbi | 83 | | +| @casualjim | 33 | | +| @magodo | 3 | | +| @youyuanwu | 3 | | +| @alexandear | 2 | | +| @gaiaz-iusipov | 1 | | +| @gbjk | 1 | | +| @gordallott | 1 | | +| @ianlancetaylor | 1 | | +| @mfleader | 1 | | +| @Neo2308 | 1 | | +| @olivierlemasle | 1 | | +| @testwill | 1 | | + + _this file was generated by the [Contributors GitHub Action](https://github.com/github-community-projects/contributors)_ diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/LICENSE b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/LICENSE index d645695673..261eeb9e9f 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/LICENSE +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/LICENSE @@ -1,4 +1,3 @@ - Apache License Version 2.0, January 2004 http://www.apache.org/licenses/ diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/NOTICE b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/NOTICE new file mode 100644 index 0000000000..201908d2f0 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/NOTICE @@ -0,0 +1,39 @@ +Copyright 2015-2025 go-swagger maintainers + +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +This software library, github.com/go-openapi/jsonpointer, includes software developed +by the go-swagger and go-openapi maintainers ("go-swagger maintainers"). + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this software except in compliance with the License. + +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0. + +This software is copied from, derived from, and inspired by other original software products. +It ships with copies of other software which license terms are recalled below. + +The original software was authored on 25-02-2013 by sigu-399 (https://github.com/sigu-399, sigu.399@gmail.com). + +github.com/sigu-399/jsonpointer +=========================== + +// SPDX-FileCopyrightText: Copyright 2013 sigu-399 ( https://github.com/sigu-399 ) +// SPDX-License-Identifier: Apache-2.0 + +Copyright 2013 sigu-399 ( https://github.com/sigu-399 ) + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/README.md b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/README.md index 0108f1d572..6e7929c64b 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/README.md +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/README.md @@ -1,19 +1,177 @@ -# gojsonpointer [![Build Status](https://github.com/go-openapi/jsonpointer/actions/workflows/go-test.yml/badge.svg)](https://github.com/go-openapi/jsonpointer/actions?query=workflow%3A"go+test") [![codecov](https://codecov.io/gh/go-openapi/jsonpointer/branch/master/graph/badge.svg)](https://codecov.io/gh/go-openapi/jsonpointer) +# jsonpointer -[![Slack Status](https://slackin.goswagger.io/badge.svg)](https://slackin.goswagger.io) -[![license](http://img.shields.io/badge/license-Apache%20v2-orange.svg)](https://raw.githubusercontent.com/go-openapi/jsonpointer/master/LICENSE) -[![Go Reference](https://pkg.go.dev/badge/github.com/go-openapi/jsonpointer.svg)](https://pkg.go.dev/github.com/go-openapi/jsonpointer) -[![Go Report Card](https://goreportcard.com/badge/github.com/go-openapi/jsonpointer)](https://goreportcard.com/report/github.com/go-openapi/jsonpointer) + +[![Tests][test-badge]][test-url] [![Coverage][cov-badge]][cov-url] [![CI vuln scan][vuln-scan-badge]][vuln-scan-url] [![CodeQL][codeql-badge]][codeql-url] + + + +[![Release][release-badge]][release-url] [![Go Report Card][gocard-badge]][gocard-url] [![CodeFactor Grade][codefactor-badge]][codefactor-url] [![License][license-badge]][license-url] + + +[![GoDoc][godoc-badge]][godoc-url] [![Discord Channel][discord-badge]][discord-url] [![go version][goversion-badge]][goversion-url] ![Top language][top-badge] ![Commits since latest release][commits-badge] -An implementation of JSON Pointer - Go language +--- + +An implementation of JSON Pointer for golang, which supports go `struct`. + +## Announcements + +* **2026-07-07** : landing v1.0.0 + * stable API pledge + +* **2026-06-29** : reinsourced external dependency to swag (v0.24.0) + * module `github.com/go-openapi/swag/jsonname` is source directly here, so we no longer have any external dependency + * `jsonname` was never really used by any other package, so it makes sense to deprecate it away from the `swag` family + and retrofit its functionality here. `jsonpointer` no longer get external dependencies, besides test dependencies. + +* **2026-04-15** : added support for trailing "-" for arrays (v0.23.0) + * this brings full support of [RFC6901][RFC6901] + * this is supported for types relying on the reflection-based implemented + * API semantics remain essentially unaltered. Exception: `Pointer.Set(document any,value any) (document any, err error)` + can only perform a best-effort to mutate the input document in place. In the case of adding elements to an array with a + trailing "-", either pass a mutable array (`*[]T`) as the input document, or use the returned updated document instead. + * types that implement the `JSONSetable` interface may not implement the mutation implied by the trailing "-" + +* **2026-04-15** : added support for optional alternate JSON name providers + * for struct support the defaults might not suit all situations: there are known limitations + when it comes to handle untagged fields or embedded types. + * the default name provider in use is not fully aligned with go JSON stdlib + * exposed an option (or global setting) to change the provider that resolves a struct into json keys + * the default behavior is not altered ## Status -Completed YES -Tested YES +API is stable and feature-complete. + +The project continues to receive regular updates, bug fixes and hygiene maintenance (CI, linting, etc). + +## Import this library in your project + +```cmd +go get github.com/go-openapi/jsonpointer +``` + +## Basic usage + +See also some [examples](./examples_test.go) + +### Retrieving a value + +```go + import ( + "github.com/go-openapi/jsonpointer" + ) + + + var doc any + + ... + + pointer, err := jsonpointer.New("/foo/1") + if err != nil { + ... // error: e.g. invalid JSON pointer specification + } + + value, kind, err := pointer.Get(doc) + if err != nil { + ... // error: e.g. key not found, index out of bounds, etc. + } + + ... +``` + +### Setting a value + +```go + ... + var doc any + ... + pointer, err := jsonpointer.New("/foo/1") + if err != nil { + ... // error: e.g. invalid JSON pointer specification + } + + doc, err = p.Set(doc, "value") + if err != nil { + ... // error: e.g. key not found, index out of bounds, etc. + } +``` + +## Change log + +See ## References -http://tools.ietf.org/html/draft-ietf-appsawg-json-pointer-07 -### Note -The 4.Evaluation part of the previous reference, starting with 'If the currently referenced value is a JSON array, the reference token MUST contain either...' is not implemented. + + +also known as [RFC6901][RFC6901]. + +## Licensing + +This library ships under the [SPDX-License-Identifier: Apache-2.0](./LICENSE). + +See the license [NOTICE](./NOTICE), which recalls the licensing terms of all the pieces of software +on top of which it has been built. + +## Limitations + +* [RFC6901][RFC6901] is now fully supported, including trailing "-" semantics for arrays (for `Set` operations). +* Default behavior: JSON name detection in go `struct`s + - Unlike go standard marshaling, untagged fields do not default to the go field name and are ignored. + - anonymous fields are not traversed if untagged + - the above limitations may be overcome by calling `UseGoNameProvider()` at initialization time. + - alternatively, users may inject the desired custom behavior for naming fields as an option. + +## Other documentation + +* [All-time contributors](./CONTRIBUTORS.md) +* [Contributing guidelines][contributing-doc-site] +* [Maintainers documentation][maintainers-doc-site] +* [Code style][style-doc-site] + +## Cutting a new release + +Maintainers can cut a new release by either: + +* running [this workflow](https://github.com/go-openapi/jsonpointer/actions/workflows/bump-release.yml) +* or pushing a semver tag + * signed tags are preferred + * The tag message is prepended to release notes + + +[test-badge]: https://github.com/go-openapi/jsonpointer/actions/workflows/go-test.yml/badge.svg +[test-url]: https://github.com/go-openapi/jsonpointer/actions/workflows/go-test.yml +[cov-badge]: https://codecov.io/gh/go-openapi/jsonpointer/branch/master/graph/badge.svg +[cov-url]: https://codecov.io/gh/go-openapi/jsonpointer +[vuln-scan-badge]: https://github.com/go-openapi/jsonpointer/actions/workflows/scanner.yml/badge.svg +[vuln-scan-url]: https://github.com/go-openapi/jsonpointer/actions/workflows/scanner.yml +[codeql-badge]: https://github.com/go-openapi/jsonpointer/actions/workflows/codeql.yml/badge.svg +[codeql-url]: https://github.com/go-openapi/jsonpointer/actions/workflows/codeql.yml + +[release-badge]: https://badge.fury.io/gh/go-openapi%2Fjsonpointer.svg +[release-url]: https://badge.fury.io/gh/go-openapi%2Fjsonpointer + +[gocard-badge]: https://goreportcard.com/badge/github.com/go-openapi/jsonpointer +[gocard-url]: https://goreportcard.com/report/github.com/go-openapi/jsonpointer +[codefactor-badge]: https://img.shields.io/codefactor/grade/github/go-openapi/jsonpointer +[codefactor-url]: https://www.codefactor.io/repository/github/go-openapi/jsonpointer + +[godoc-badge]: https://pkg.go.dev/badge/github.com/go-openapi/jsonpointer +[godoc-url]: http://pkg.go.dev/github.com/go-openapi/jsonpointer +[discord-badge]: https://img.shields.io/discord/1446918742398341256?logo=discord&label=discord&color=blue +[discord-url]: https://discord.gg/FfnFYaC3k5 + + +[license-badge]: http://img.shields.io/badge/license-Apache%20v2-orange.svg +[license-url]: https://github.com/go-openapi/jsonpointer/?tab=Apache-2.0-1-ov-file#readme + +[goversion-badge]: https://img.shields.io/github/go-mod/go-version/go-openapi/jsonpointer +[goversion-url]: https://github.com/go-openapi/jsonpointer/blob/master/go.mod +[top-badge]: https://img.shields.io/github/languages/top/go-openapi/jsonpointer +[commits-badge]: https://img.shields.io/github/commits-since/go-openapi/jsonpointer/latest +[RFC6901]: https://www.rfc-editor.org/rfc/rfc6901 + +[contributing-doc-site]: https://go-openapi.github.io/doc-site/contributing/contributing/index.html +[maintainers-doc-site]: https://go-openapi.github.io/doc-site/maintainers/index.html +[style-doc-site]: https://go-openapi.github.io/doc-site/contributing/style/index.html diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/SECURITY.md b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/SECURITY.md new file mode 100644 index 0000000000..1fea2c5736 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/SECURITY.md @@ -0,0 +1,37 @@ +# Security Policy + +This policy outlines the commitment and practices of the go-openapi maintainers regarding security. + +## Supported Versions + +| Version | Supported | +| ------- | ------------------ | +| O.x | :white_check_mark: | + +## Vulnerability checks in place + +This repository uses automated vulnerability scans, at every merged commit and at least once a week. + +We use: + +* [`GitHub CodeQL`][codeql-url] +* [`trivy`][trivy-url] +* [`govulncheck`][govulncheck-url] + +Reports are centralized in github security reports and visible only to the maintainers. + +## Reporting a vulnerability + +If you become aware of a security vulnerability that affects the current repository, +**please report it privately to the maintainers** +rather than opening a publicly visible GitHub issue. + +Please follow the instructions provided by github to [Privately report a security vulnerability][github-guidance-url]. + +> [!NOTE] +> On Github, navigate to the project's "Security" tab then click on "Report a vulnerability". + +[codeql-url]: https://github.com/github/codeql +[trivy-url]: https://trivy.dev/docs/latest/getting-started +[govulncheck-url]: https://go.dev/blog/govulncheck +[github-guidance-url]: https://docs.github.com/en/code-security/security-advisories/guidance-on-reporting-and-writing-information-about-vulnerabilities/privately-reporting-a-security-vulnerability#privately-reporting-a-security-vulnerability diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/errors.go b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/errors.go new file mode 100644 index 0000000000..2ae6e3cfb3 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/errors.go @@ -0,0 +1,60 @@ +// SPDX-FileCopyrightText: Copyright (c) 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package jsonpointer + +import "fmt" + +type pointerError string + +func (e pointerError) Error() string { + return string(e) +} + +const ( + // ErrPointer is a sentinel error raised by all errors from this package. + ErrPointer pointerError = "JSON pointer error" + + // ErrInvalidStart states that a JSON pointer must start with a separator ("/"). + ErrInvalidStart pointerError = `JSON pointer must be empty or start with a "` + pointerSeparator + `"` + + // ErrUnsupportedValueType indicates that a value of the wrong type is being set. + ErrUnsupportedValueType pointerError = "only structs, pointers, maps and slices are supported for setting values" + + // ErrDashToken indicates use of the RFC 6901 "-" reference token in a context where it cannot be + // resolved. + // + // Per RFC 6901 §4 the "-" token refers to the (nonexistent) element after the last array element. + // It may only be used as the terminal token of a [Pointer.Set] against a slice, where it means + // "append". + // + // Any other use (get, offset, intermediate traversal, non-slice target) is an error condition that + // wraps this sentinel. + ErrDashToken pointerError = `the "-" array token cannot be resolved here` //nolint:gosec // G101 false positive: this is a JSON Pointer reference token, not a credential. +) + +const dashToken = "-" + +func errNoKey(key string) error { + return fmt.Errorf("object has no key %q: %w", key, ErrPointer) +} + +func errOutOfBounds(length, idx int) error { + return fmt.Errorf("index out of bounds array[0,%d] index '%d': %w", length-1, idx, ErrPointer) +} + +func errInvalidReference(token string) error { + return fmt.Errorf("invalid token reference %q: %w", token, ErrPointer) +} + +func errDashOnGet() error { + return fmt.Errorf("cannot resolve %q token on get: %w: %w", dashToken, ErrDashToken, ErrPointer) +} + +func errDashIntermediate() error { + return fmt.Errorf("the %q token may only appear as the terminal token of a pointer: %w: %w", dashToken, ErrDashToken, ErrPointer) +} + +func errDashOnOffset() error { + return fmt.Errorf("cannot compute offset for %q token (nonexistent element): %w: %w", dashToken, ErrDashToken, ErrPointer) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/ifaces.go b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/ifaces.go new file mode 100644 index 0000000000..31359c48fa --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/ifaces.go @@ -0,0 +1,50 @@ +// SPDX-FileCopyrightText: Copyright (c) 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package jsonpointer + +import "reflect" + +// JSONPointable is an interface for structs to implement, when they need to customize the json +// pointer process or want to avoid the use of reflection. +type JSONPointable interface { + // JSONLookup returns a value pointed at this (unescaped) key. + JSONLookup(key string) (any, error) +} + +// JSONSetable is an interface for structs to implement, when they need to customize the json +// pointer process or want to avoid the use of reflection. +// +// # Handling of the RFC 6901 "-" token +// +// When a type implementing JSONSetable is the terminal parent of a [Pointer.Set] call, the library +// passes the raw reference token to JSONSet without interpretation. +// +// In particular, the RFC 6901 "-" token (which conventionally means "append" for arrays, per RFC +// 6902) is forwarded verbatim as the key argument. +// +// Implementations that model an array-like container are expected to give "-" the append semantics; +// implementations that do not should return an error wrapping [ErrDashToken] (or [ErrPointer]) for +// clarity. +// +// Implementations are responsible for any in-place mutation: the library does not attempt to rebind +// the result of JSONSet into a parent container. +type JSONSetable interface { + // JSONSet sets the value pointed at the (unescaped) key. + // + // The key may be the RFC 6901 "-" token when the pointer targets a slice-like member; see the + // interface documentation for details. + JSONSet(key string, value any) error +} + +// NameProvider knows how to resolve go struct fields into json names. +// +// The default provider is brought by +// [github.com/go-openapi/jsonpointer/jsonname.DefaultJSONNameProvider]. +type NameProvider interface { + // GetGoName gets the go name for a json property name + GetGoName(subject any, name string) (string, bool) + + // GetGoNameForType gets the go name for a given type for a json property name + GetGoNameForType(tpe reflect.Type, name string) (string, bool) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/doc.go b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/doc.go new file mode 100644 index 0000000000..79232eaca4 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/doc.go @@ -0,0 +1,5 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package jsonname is a provider of json property names from go properties. +package jsonname diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/go_name_provider.go b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/go_name_provider.go new file mode 100644 index 0000000000..5eec18fbfd --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/go_name_provider.go @@ -0,0 +1,288 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package jsonname + +import ( + "reflect" + "strings" + "sync" +) + +var _ providerIface = (*GoNameProvider)(nil) + +// GoNameProvider resolves json property names to go struct field names following the same rules as +// the standard library's [encoding/json] package. +// +// Contrary to [NameProvider], it considers exported fields without a json tag, and promotes fields +// from anonymous embedded struct types. +// +// Rules (aligned with encoding/json): +// +// - unexported fields are ignored; +// - a field tagged `json:"-"` is ignored; +// - a field tagged `json:"-,"` is kept under the json name "-" (stdlib quirk); +// - a field tagged `json:""` or with no json tag at all keeps its Go name as json name; +// - anonymous struct fields without an explicit json tag have their fields +// promoted into the parent, following breadth-first depth rules: +// a shallower field wins over a deeper one; at equal depth, a conflict +// discards all conflicting fields unless exactly one has an explicit json tag. +// +// This type is safe for concurrent use. +type GoNameProvider struct { + lock sync.Mutex + index map[reflect.Type]nameIndex +} + +// NewGoNameProvider creates a new [GoNameProvider]. +func NewGoNameProvider() *GoNameProvider { + return &GoNameProvider{ + index: make(map[reflect.Type]nameIndex), + } +} + +// GetJSONNames gets all the json property names for a type. +func (n *GoNameProvider) GetJSONNames(subject any) []string { + n.lock.Lock() + defer n.lock.Unlock() + + tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() + names := n.nameIndexFor(tpe) + + res := make([]string, 0, len(names.jsonNames)) + for k := range names.jsonNames { + res = append(res, k) + } + + return res +} + +// GetJSONName gets the json name for a go property name. +func (n *GoNameProvider) GetJSONName(subject any, name string) (string, bool) { + tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() + + return n.GetJSONNameForType(tpe, name) +} + +// GetJSONNameForType gets the json name for a go property name on a given type. +func (n *GoNameProvider) GetJSONNameForType(tpe reflect.Type, name string) (string, bool) { + n.lock.Lock() + defer n.lock.Unlock() + + names := n.nameIndexFor(tpe) + nme, ok := names.goNames[name] + + return nme, ok +} + +// GetGoName gets the go name for a json property name. +func (n *GoNameProvider) GetGoName(subject any, name string) (string, bool) { + tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() + + return n.GetGoNameForType(tpe, name) +} + +// GetGoNameForType gets the go name for a given type for a json property name. +func (n *GoNameProvider) GetGoNameForType(tpe reflect.Type, name string) (string, bool) { + n.lock.Lock() + defer n.lock.Unlock() + + names := n.nameIndexFor(tpe) + nme, ok := names.jsonNames[name] + + return nme, ok +} + +func (n *GoNameProvider) nameIndexFor(tpe reflect.Type) nameIndex { + if names, ok := n.index[tpe]; ok { + return names + } + + names := buildGoNameIndex(tpe) + n.index[tpe] = names + + return names +} + +// fieldEntry captures a candidate field discovered while walking a struct along with the +// indirection path from the root type (used to resolve conflicts by depth in the same way +// encoding/json does). +type fieldEntry struct { + goName string + jsonName string + index []int + tagged bool +} + +func buildGoNameIndex(tpe reflect.Type) nameIndex { + fields := collectGoFields(tpe) + + idx := make(map[string]string, len(fields)) + reverseIdx := make(map[string]string, len(fields)) + for _, f := range fields { + idx[f.jsonName] = f.goName + reverseIdx[f.goName] = f.jsonName + } + + return nameIndex{jsonNames: idx, goNames: reverseIdx} +} + +// collectGoFields walks tpe breadth-first along anonymous struct fields, +// reproducing the field selection performed by encoding/json.typeFields. +// +//nolint:gocognit // everything is inlined to help the compiler determine what escapes and what doesn't +func collectGoFields(tpe reflect.Type) []fieldEntry { + if tpe.Kind() != reflect.Struct { + return nil + } + + type queued struct { + typ reflect.Type + index []int + } + + current := []queued{} + next := []queued{{typ: tpe}} + visited := map[reflect.Type]bool{tpe: true} + + var ( + candidates []fieldEntry + count = map[string]int{} + nextCount = map[string]int{} + ) + + for len(next) > 0 { + current, next = next, current[:0] + count, nextCount = nextCount, count + for k := range nextCount { + delete(nextCount, k) + } + + for _, q := range current { + for i := range q.typ.NumField() { + sf := q.typ.Field(i) + + if sf.Anonymous { + ft := sf.Type + if ft.Kind() == reflect.Pointer { + ft = ft.Elem() + } + if !sf.IsExported() && ft.Kind() != reflect.Struct { + continue + } + } else if !sf.IsExported() { + continue + } + + tag := sf.Tag.Get("json") + if tag == "-" { + continue + } + jsonName, _ := parseJSONTag(tag) + tagged := jsonName != "" + + ft := sf.Type + if ft.Kind() == reflect.Pointer { + ft = ft.Elem() + } + + if sf.Anonymous && ft.Kind() == reflect.Struct && !tagged { + if visited[ft] { + continue + } + visited[ft] = true + + index := make([]int, len(q.index)+1) + copy(index, q.index) + index[len(q.index)] = i + next = append(next, queued{typ: ft, index: index}) + + continue + } + + name := jsonName + if name == "" { + name = sf.Name + } + + index := make([]int, len(q.index)+1) + copy(index, q.index) + index[len(q.index)] = i + + candidates = append(candidates, fieldEntry{ + goName: sf.Name, + jsonName: name, + index: index, + tagged: tagged, + }) + nextCount[name]++ + } + } + } + + return dominantFields(candidates) +} + +// dominantFields applies the Go encoding/json conflict resolution rules: at each JSON name, the +// shallowest field wins; at equal depth, a uniquely tagged candidate wins; otherwise all candidates +// for that name are dropped. +func dominantFields(candidates []fieldEntry) []fieldEntry { + byName := make(map[string][]fieldEntry, len(candidates)) + for _, c := range candidates { + byName[c.jsonName] = append(byName[c.jsonName], c) + } + + out := make([]fieldEntry, 0, len(byName)) + for _, group := range byName { + if len(group) == 1 { + out = append(out, group[0]) + + continue + } + + minDepth := len(group[0].index) + for _, c := range group[1:] { + if len(c.index) < minDepth { + minDepth = len(c.index) + } + } + + var shallow []fieldEntry + for _, c := range group { + if len(c.index) == minDepth { + shallow = append(shallow, c) + } + } + + if len(shallow) == 1 { + out = append(out, shallow[0]) + + continue + } + + var tagged []fieldEntry + for _, c := range shallow { + if c.tagged { + tagged = append(tagged, c) + } + } + if len(tagged) == 1 { + out = append(out, tagged[0]) + } + } + + return out +} + +// parseJSONTag returns the name component of a json struct tag and whether it carried any non-name +// option (kept for future-proofing, e.g. "omitempty"). +func parseJSONTag(tag string) (string, string) { + if tag == "" { + return "", "" + } + if before, after, ok := strings.Cut(tag, ","); ok { + return before, after + } + + return tag, "" +} diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/ifaces.go b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/ifaces.go new file mode 100644 index 0000000000..64871f0d27 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/ifaces.go @@ -0,0 +1,16 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package jsonname + +import "reflect" + +// providerIface is an unexported compile-time contract that every name provider in this package is +// expected to satisfy. +// +// It mirrors the interface declared by the main consumer of this module: +// [github.com/go-openapi/jsonpointer.NameProvider]. +type providerIface interface { + GetGoName(subject any, name string) (string, bool) + GetGoNameForType(tpe reflect.Type, name string) (string, bool) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/name_provider.go b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/name_provider.go new file mode 100644 index 0000000000..1bec2406b5 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/jsonname/name_provider.go @@ -0,0 +1,140 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package jsonname + +import ( + "reflect" + "strings" + "sync" +) + +// DefaultJSONNameProvider is the default cache for types. +var DefaultJSONNameProvider = NewNameProvider() //nolint:gochecknoglobals // default settings, for backward compatible package-level settings + +var _ providerIface = (*NameProvider)(nil) + +// NameProvider represents an object capable of translating from go property names to json property +// names. +// +// This type is thread-safe. +// +// See [github.com/go-openapi/jsonpointer.Pointer] for an example. +type NameProvider struct { + lock *sync.Mutex + index map[reflect.Type]nameIndex +} + +type nameIndex struct { + jsonNames map[string]string + goNames map[string]string +} + +// NewNameProvider creates a new name provider. +func NewNameProvider() *NameProvider { + return &NameProvider{ + lock: &sync.Mutex{}, + index: make(map[reflect.Type]nameIndex), + } +} + +func buildnameIndex(tpe reflect.Type, idx, reverseIdx map[string]string) { + for i := range tpe.NumField() { + targetDes := tpe.Field(i) + + if targetDes.PkgPath != "" { // unexported + continue + } + + if targetDes.Anonymous { // walk embedded structures tree down first + buildnameIndex(targetDes.Type, idx, reverseIdx) + continue + } + + if tag := targetDes.Tag.Get("json"); tag != "" { + + parts := strings.Split(tag, ",") + if len(parts) == 0 { + continue + } + + nm := parts[0] + if nm == "-" { + continue + } + if nm == "" { // empty string means we want to use the Go name + nm = targetDes.Name + } + + idx[nm] = targetDes.Name + reverseIdx[targetDes.Name] = nm + } + } +} + +func newNameIndex(tpe reflect.Type) nameIndex { + idx := make(map[string]string, tpe.NumField()) + reverseIdx := make(map[string]string, tpe.NumField()) + + buildnameIndex(tpe, idx, reverseIdx) + return nameIndex{jsonNames: idx, goNames: reverseIdx} +} + +// GetJSONNames gets all the json property names for a type. +func (n *NameProvider) GetJSONNames(subject any) []string { + n.lock.Lock() + defer n.lock.Unlock() + tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() + names, ok := n.index[tpe] + if !ok { + names = n.makeNameIndex(tpe) + } + + res := make([]string, 0, len(names.jsonNames)) + for k := range names.jsonNames { + res = append(res, k) + } + return res +} + +// GetJSONName gets the json name for a go property name. +func (n *NameProvider) GetJSONName(subject any, name string) (string, bool) { + tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() + return n.GetJSONNameForType(tpe, name) +} + +// GetJSONNameForType gets the json name for a go property name on a given type. +func (n *NameProvider) GetJSONNameForType(tpe reflect.Type, name string) (string, bool) { + n.lock.Lock() + defer n.lock.Unlock() + names, ok := n.index[tpe] + if !ok { + names = n.makeNameIndex(tpe) + } + nme, ok := names.goNames[name] + return nme, ok +} + +// GetGoName gets the go name for a json property name. +func (n *NameProvider) GetGoName(subject any, name string) (string, bool) { + tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() + return n.GetGoNameForType(tpe, name) +} + +// GetGoNameForType gets the go name for a given type for a json property name. +func (n *NameProvider) GetGoNameForType(tpe reflect.Type, name string) (string, bool) { + n.lock.Lock() + defer n.lock.Unlock() + names, ok := n.index[tpe] + if !ok { + names = n.makeNameIndex(tpe) + } + nme, ok := names.jsonNames[name] + return nme, ok +} + +func (n *NameProvider) makeNameIndex(tpe reflect.Type) nameIndex { + names := newNameIndex(tpe) + n.index[tpe] = names + return names +} diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/options.go b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/options.go new file mode 100644 index 0000000000..223c1e5ff0 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/options.go @@ -0,0 +1,85 @@ +// SPDX-FileCopyrightText: Copyright (c) 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package jsonpointer + +import ( + "sync" + + "github.com/go-openapi/jsonpointer/jsonname" +) + +// Option to tune the behavior of a JSON [Pointer]. +type Option func(*options) + +var ( + //nolint:gochecknoglobals // package level defaults are provided as a convenient, backward-compatible way to adopt options. + defaultOptions = options{ + provider: jsonname.DefaultJSONNameProvider, + } + //nolint:gochecknoglobals // guards defaultOptions against concurrent SetDefaultNameProvider / read races (testing) + defaultOptionsMu sync.RWMutex +) + +// SetDefaultNameProvider sets the [NameProvider] as a package-level default. +// +// By default, the default provider is [jsonname.DefaultJSONNameProvider]. +// +// It is safe to call concurrently with [Pointer.Get], [Pointer.Set], [GetForToken] and +// [SetForToken]. +// The typical usage is to call it once at initialization time. +// +// A nil provider is ignored. +func SetDefaultNameProvider(provider NameProvider) { + if provider == nil { + return + } + + defaultOptionsMu.Lock() + defer defaultOptionsMu.Unlock() + + defaultOptions.provider = provider +} + +// UseGoNameProvider sets the [NameProvider] as a package-level default to the alternative provider +// [jsonname.GoNameProvider], that covers a few areas not supported by the default name provider. +// +// This implementation supports untagged exported fields and embedded types in go struct. +// It follows strictly the behavior of the JSON standard library regarding field naming conventions. +// +// It is safe to call concurrently with [Pointer.Get], [Pointer.Set], [GetForToken] and +// [SetForToken]. +// The typical usage is to call it once at initialization time. +func UseGoNameProvider() { + SetDefaultNameProvider(jsonname.NewGoNameProvider()) +} + +// DefaultNameProvider returns the current package-level [NameProvider]. +func DefaultNameProvider() NameProvider { //nolint:ireturn // returning the interface is the point — callers pick their own implementation. + defaultOptionsMu.RLock() + defer defaultOptionsMu.RUnlock() + + return defaultOptions.provider +} + +// WithNameProvider injects a custom [NameProvider] to resolve json names from go struct types. +func WithNameProvider(provider NameProvider) Option { + return func(o *options) { + o.provider = provider + } +} + +type options struct { + provider NameProvider +} + +func optionsWithDefaults(opts []Option) options { + var o options + o.provider = DefaultNameProvider() + + for _, apply := range opts { + apply(&o) + } + + return o +} diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/pointer.go b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/pointer.go index d970c7cf44..05fc863ee6 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonpointer/pointer.go +++ b/tests/e2e/vendor/github.com/go-openapi/jsonpointer/pointer.go @@ -1,28 +1,7 @@ -// Copyright 2013 sigu-399 ( https://github.com/sigu-399 ) -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -// author sigu-399 -// author-github https://github.com/sigu-399 -// author-mail sigu.399@gmail.com -// -// repository-name jsonpointer -// repository-desc An implementation of JSON Pointer - Go language -// -// description Main and unique file. -// -// created 25-02-2013 +// SPDX-FileCopyrightText: Copyright (c) 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 +// Package jsonpointer provides a golang implementation for json pointers. package jsonpointer import ( @@ -32,421 +11,670 @@ import ( "reflect" "strconv" "strings" - - "github.com/go-openapi/swag" ) const ( emptyPointer = `` pointerSeparator = `/` - - invalidStart = `JSON pointer must be empty or start with a "` + pointerSeparator - notFound = `Can't find the pointer in the document` ) -var jsonPointableType = reflect.TypeOf(new(JSONPointable)).Elem() -var jsonSetableType = reflect.TypeOf(new(JSONSetable)).Elem() - -// JSONPointable is an interface for structs to implement when they need to customize the -// json pointer process -type JSONPointable interface { - JSONLookup(string) (any, error) -} - -// JSONSetable is an interface for structs to implement when they need to customize the -// json pointer process -type JSONSetable interface { - JSONSet(string, any) error +// Pointer is a representation of a json pointer. +// +// Use [Pointer.Get] to retrieve a value or [Pointer.Set] to set a value. +// +// It works with any go type interpreted as a JSON document, which means: +// +// - if a type implements [JSONPointable], its [JSONPointable.JSONLookup] method is used to resolve [Pointer.Get] +// - if a type implements [JSONSetable], its [JSONSetable.JSONSet] method is used to resolve [Pointer.Set] +// - a go map[K]V is interpreted as an object, with type K assignable to a string +// - a go slice []T is interpreted as an array +// - a go struct is interpreted as an object, with exported fields interpreted as keys +// - promoted fields from an embedded struct are traversed +// - scalars (e.g. int, float64 ...), channels, functions and go arrays cannot be traversed +// +// For struct s resolved by reflection, key mappings honor the conventional struct tag `json`. +// +// Fields that do not specify a `json` tag, or specify an empty one, or are tagged as `json:"-"` are +// ignored. +// +// # Limitations +// +// - Unlike go standard marshaling, untagged fields do not default to the go field name and are ignored. +// - anonymous fields are not traversed if untagged +type Pointer struct { + referenceTokens []string } -// New creates a new json pointer for the given string +// New creates a new json pointer from its string representation. func New(jsonPointerString string) (Pointer, error) { - var p Pointer err := p.parse(jsonPointerString) - return p, err + return p, err } -// Pointer the json pointer reprsentation -type Pointer struct { - referenceTokens []string +// Get uses the pointer to retrieve a value from a JSON document. +// +// It returns the value with its type as a [reflect.Kind] or an error. +func (p *Pointer) Get(document any, opts ...Option) (any, reflect.Kind, error) { + o := optionsWithDefaults(opts) + + return p.get(document, o.provider) } -// "Constructor", parses the given string JSON pointer -func (p *Pointer) parse(jsonPointerString string) error { +// Set uses the pointer to set a value from a data type that represent a JSON document. +// +// # Mutation contract +// +// Set mutates the provided document in place whenever Go's type system allows it: when document is +// a map, a pointer, or when the targeted value is reached through an addressable ancestor (e.g. a +// struct field traversed via a pointer, a slice element). +// +// Callers that rely on this in-place behavior may continue to ignore the returned document. +// +// The returned document is only load-bearing when Set cannot mutate in place. +// +// This happens in one specific case: appending to a top-level slice passed by value (e.g. document +// of type []T rather than *[]T) via the RFC 6901 "-" terminal token. reflect.Append produces a new +// slice header that the library cannot rebind into the caller's variable; the updated document is +// returned instead. +// +// Pass *[]T if you want in-place rebind for that case as well. +// +// See [ErrDashToken] for the semantics of the "-" token. +func (p *Pointer) Set(document any, value any, opts ...Option) (any, error) { + o := optionsWithDefaults(opts) - var err error + return p.set(document, value, o.provider) +} - if jsonPointerString != emptyPointer { - if !strings.HasPrefix(jsonPointerString, pointerSeparator) { - err = errors.New(invalidStart) - } else { - referenceTokens := strings.Split(jsonPointerString, pointerSeparator) - p.referenceTokens = append(p.referenceTokens, referenceTokens[1:]...) - } +// DecodedTokens returns the decoded (unescaped) tokens of this JSON pointer. +func (p *Pointer) DecodedTokens() []string { + result := make([]string, 0, len(p.referenceTokens)) + for _, token := range p.referenceTokens { + result = append(result, Unescape(token)) } - return err + return result +} + +// IsEmpty returns true if this is an empty json pointer. +// +// This indicates that it points to the root document. +func (p *Pointer) IsEmpty() bool { + return len(p.referenceTokens) == 0 } -// Get uses the pointer to retrieve a value from a JSON document -func (p *Pointer) Get(document any) (any, reflect.Kind, error) { - return p.get(document, swag.DefaultJSONNameProvider) +// String representation of a pointer. +func (p *Pointer) String() string { + if len(p.referenceTokens) == 0 { + return emptyPointer + } + + return pointerSeparator + strings.Join(p.referenceTokens, pointerSeparator) } -// Set uses the pointer to set a value from a JSON document -func (p *Pointer) Set(document any, value any) (any, error) { - return document, p.set(document, value, swag.DefaultJSONNameProvider) +// Offset returns the byte offset, in the raw JSON text of document, of the location referenced by +// this pointer's terminal token. +// +// Unlike [Pointer.Get] and [Pointer.Set], which operate on a decoded Go value, Offset operates +// directly on the textual JSON source. +// +// It drives an [encoding/json.Decoder] over the string and stops at the terminal token, returning +// the position at which the decoder was about to read that token. +// +// It is primarily intended for tooling that needs to map a pointer back to a region of the original +// source: reporting line/column for validation or parse diagnostics, extracting a sub-document by +// slicing the raw bytes, or highlighting the referenced span in an editor. +// +// # Offset semantics +// +// The meaning of the returned offset depends on whether the terminal token addresses an object +// property or an array element: +// +// - Object property: the offset points to the first byte of the key (its +// opening quote character), not to the associated value. For example, +// pointer "/foo/bar" against {"foo": {"bar": 21}} returns 9, the index of +// the opening quote of "bar". +// - Array element: the offset points to the first byte of the value at that +// index. For example, pointer "/0/1" against [[1,2], [3,4]] returns 4, +// the index of the digit 2. +// +// # Errors +// +// Offset returns an error in any of these cases: +// +// - document is not syntactically valid JSON; +// - the structure of document does not match the pointer (e.g. traversing +// into a scalar, or a token that is neither a valid key nor a valid +// numeric index); +// - a referenced key or index does not exist in document; +// - the pointer's terminal token is the RFC 6901 "-" array token, which +// designates a nonexistent element and therefore has no offset in the +// source. The returned error wraps [ErrDashToken]. +// +// All errors wrap [ErrPointer]. +func (p *Pointer) Offset(document string) (int64, error) { + dec := json.NewDecoder(strings.NewReader(document)) + var offset int64 + for _, ttk := range p.DecodedTokens() { + tk, err := dec.Token() + if err != nil { + return 0, err + } + switch tk := tk.(type) { + case json.Delim: + switch tk { + case '{': + offset, err = offsetSingleObject(dec, ttk) + if err != nil { + return 0, err + } + case '[': + offset, err = offsetSingleArray(dec, ttk) + if err != nil { + return 0, err + } + default: + return 0, fmt.Errorf("invalid token %#v: %w", tk, ErrPointer) + } + default: + return 0, fmt.Errorf("invalid token %#v: %w", tk, ErrPointer) + } + } + return skipJSONSeparator(document, offset), nil } -// GetForToken gets a value for a json pointer token 1 level deep -func GetForToken(document any, decodedToken string) (any, reflect.Kind, error) { - return getSingleImpl(document, decodedToken, swag.DefaultJSONNameProvider) +// skipJSONSeparator advances offset past trailing JSON whitespace and at most one value separator +// (comma) in document, so the result points at the first byte of the next JSON token. +// +// The streaming decoder's InputOffset sits right after the most recently consumed token, which +// between values is the comma (or whitespace) — not the following token. +// +// Normalizing here keeps Offset's contract uniform: for both object keys and array elements, and +// regardless of position within the parent container, the returned offset always points at the +// first byte of the addressed token. +func skipJSONSeparator(document string, offset int64) int64 { + n := int64(len(document)) + for offset < n && isJSONWhitespace(document[offset]) { + offset++ + } + if offset < n && document[offset] == ',' { + offset++ + } + for offset < n && isJSONWhitespace(document[offset]) { + offset++ + } + return offset } -// SetForToken gets a value for a json pointer token 1 level deep -func SetForToken(document any, decodedToken string, value any) (any, error) { - return document, setSingleImpl(document, value, decodedToken, swag.DefaultJSONNameProvider) +func isJSONWhitespace(c byte) bool { + return c == ' ' || c == '\t' || c == '\n' || c == '\r' } -func isNil(input any) bool { - if input == nil { - return true +// "Constructor", parses the given string JSON pointer. +func (p *Pointer) parse(jsonPointerString string) error { + if jsonPointerString == emptyPointer { + return nil } - kind := reflect.TypeOf(input).Kind() - switch kind { //nolint:exhaustive - case reflect.Ptr, reflect.Map, reflect.Slice, reflect.Chan: - return reflect.ValueOf(input).IsNil() - default: - return false + if !strings.HasPrefix(jsonPointerString, pointerSeparator) { + // non empty pointer must start with "/" + return errors.Join(ErrInvalidStart, ErrPointer) } + + referenceTokens := strings.Split(jsonPointerString, pointerSeparator) + p.referenceTokens = append(p.referenceTokens, referenceTokens[1:]...) + + return nil } -func getSingleImpl(node any, decodedToken string, nameProvider *swag.NameProvider) (any, reflect.Kind, error) { - rValue := reflect.Indirect(reflect.ValueOf(node)) - kind := rValue.Kind() - if isNil(node) { - return nil, kind, fmt.Errorf("nil value has not field %q", decodedToken) +func (p *Pointer) get(node any, nameProvider NameProvider) (any, reflect.Kind, error) { + if nameProvider == nil { + nameProvider = defaultOptions.provider } - switch typed := node.(type) { - case JSONPointable: - r, err := typed.JSONLookup(decodedToken) + kind := reflect.Invalid + + // full document when empty + if len(p.referenceTokens) == 0 { + return node, kind, nil + } + + for _, token := range p.referenceTokens { + decodedToken := Unescape(token) + + r, knd, err := getSingleImpl(node, decodedToken, nameProvider) if err != nil { - return nil, kind, err + return nil, knd, err } - return r, kind, nil - case *any: // case of a pointer to interface, that is not resolved by reflect.Indirect - return getSingleImpl(*typed, decodedToken, nameProvider) + node = r + } + + rValue := reflect.ValueOf(node) + kind = rValue.Kind() + + return node, kind, nil +} + +func (p *Pointer) set(node, data any, nameProvider NameProvider) (any, error) { + knd := reflect.ValueOf(node).Kind() + + if knd != reflect.Pointer && knd != reflect.Struct && knd != reflect.Map && knd != reflect.Slice && knd != reflect.Array { + return node, errors.Join( + fmt.Errorf("unexpected type: %T", node), //nolint:err113 // err wrapping is carried out by errors.Join, not fmt.Errorf. + ErrUnsupportedValueType, + ErrPointer, + ) + } + + // full document when empty + if len(p.referenceTokens) == 0 { + return node, nil + } + + if nameProvider == nil { + nameProvider = defaultOptions.provider + } + + return p.setAt(node, p.referenceTokens, data, nameProvider) +} + +// setAt recursively walks the token list, setting the data at the terminal token and rebinding any +// new child reference (e.g. a slice header returned by an "-" append) into its parent on the way +// back up. +// +// Returning the (possibly new) node at each level is what makes append work at any depth without +// requiring the caller to pass a pointer to the containing slice: the new slice header propagates +// up and each parent rebinds it via the appropriate kind-specific setter. +func (p *Pointer) setAt(node any, tokens []string, data any, nameProvider NameProvider) (any, error) { + decodedToken := Unescape(tokens[0]) + + if len(tokens) == 1 { + return setSingleImpl(node, data, decodedToken, nameProvider) } - switch kind { //nolint:exhaustive + child, err := p.resolveNodeForToken(node, decodedToken, nameProvider) + if err != nil { + return node, err + } + + newChild, err := p.setAt(child, tokens[1:], data, nameProvider) + if err != nil { + return node, err + } + + return rebindChild(node, decodedToken, newChild, nameProvider) +} + +// rebindChild writes newChild back into node at decodedToken. +// +// For cases where the child was already mutated in place (pointer aliasing, addressable slice +// elements) the rebind is a safe no-op. +// +// For cases where the child was returned by value (map entries holding a slice, slices reached +// through a non-addressable ancestor), the rebind propagates the new value into the parent. +// +// Parents implementing [JSONPointable] are left alone: they took ownership of the child via +// JSONLookup and did not opt into a JSONSet-based rebind on intermediate tokens. +func rebindChild(node any, decodedToken string, newChild any, nameProvider NameProvider) (any, error) { + if _, ok := node.(JSONPointable); ok { + return node, nil + } + + rValue := reflect.Indirect(reflect.ValueOf(node)) + + switch rValue.Kind() { case reflect.Struct: nm, ok := nameProvider.GetGoNameForType(rValue.Type(), decodedToken) if !ok { - return nil, kind, fmt.Errorf("object has no field %q", decodedToken) + return node, fmt.Errorf("object has no field %q: %w", decodedToken, ErrPointer) } fld := rValue.FieldByName(nm) - return fld.Interface(), kind, nil + if !fld.CanSet() { + return node, nil + } + assignReflectValue(fld, newChild) + return node, nil case reflect.Map: - kv := reflect.ValueOf(decodedToken) - mv := rValue.MapIndex(kv) - - if mv.IsValid() { - return mv.Interface(), kind, nil - } - return nil, kind, fmt.Errorf("object has no key %q", decodedToken) + rValue.SetMapIndex(reflect.ValueOf(decodedToken), reflect.ValueOf(newChild)) + return node, nil case reflect.Slice: - tokenIndex, err := strconv.Atoi(decodedToken) + if decodedToken == dashToken { + return node, errDashIntermediate() + } + idx, err := strconv.Atoi(decodedToken) if err != nil { - return nil, kind, err + return node, errors.Join(err, ErrPointer) } - sLength := rValue.Len() - if tokenIndex < 0 || tokenIndex >= sLength { - return nil, kind, fmt.Errorf("index out of bounds array[0,%d] index '%d'", sLength-1, tokenIndex) + elem := rValue.Index(idx) + if !elem.CanSet() { + return node, nil } - - elem := rValue.Index(tokenIndex) - return elem.Interface(), kind, nil + assignReflectValue(elem, newChild) + return node, nil default: - return nil, kind, fmt.Errorf("invalid token reference %q", decodedToken) + return node, errInvalidReference(decodedToken) } - } -func setSingleImpl(node, data any, decodedToken string, nameProvider *swag.NameProvider) error { - rValue := reflect.Indirect(reflect.ValueOf(node)) +// assignReflectValue assigns src into dst, unwrapping a pointer when dst expects the pointee type. +// +// This tolerates the pointer-wrapping performed by [typeFromValue] for addressable fields. +func assignReflectValue(dst reflect.Value, src any) { + nv := reflect.ValueOf(src) + if !nv.IsValid() { + return + } + if nv.Type().AssignableTo(dst.Type()) { + dst.Set(nv) + return + } + if nv.Kind() == reflect.Pointer && nv.Elem().Type().AssignableTo(dst.Type()) { + dst.Set(nv.Elem()) + } +} - if ns, ok := node.(JSONSetable); ok { // pointer impl - return ns.JSONSet(decodedToken, data) +func (p *Pointer) resolveNodeForToken(node any, decodedToken string, nameProvider NameProvider) (next any, err error) { + // check for nil during traversal + if isNil(node) { + return nil, fmt.Errorf("cannot traverse through nil value at %q: %w", decodedToken, ErrPointer) } - if rValue.Type().Implements(jsonSetableType) { - return node.(JSONSetable).JSONSet(decodedToken, data) + pointable, ok := node.(JSONPointable) + if ok { + r, err := pointable.JSONLookup(decodedToken) + if err != nil { + return nil, err + } + + fld := reflect.ValueOf(r) + if fld.CanAddr() && fld.Kind() != reflect.Interface && fld.Kind() != reflect.Map && fld.Kind() != reflect.Slice && fld.Kind() != reflect.Pointer { + return fld.Addr().Interface(), nil + } + + return r, nil } - switch rValue.Kind() { //nolint:exhaustive + rValue := reflect.Indirect(reflect.ValueOf(node)) + kind := rValue.Kind() + + switch kind { case reflect.Struct: nm, ok := nameProvider.GetGoNameForType(rValue.Type(), decodedToken) if !ok { - return fmt.Errorf("object has no field %q", decodedToken) - } - fld := rValue.FieldByName(nm) - if fld.IsValid() { - fld.Set(reflect.ValueOf(data)) + return nil, fmt.Errorf("object has no field %q: %w", decodedToken, ErrPointer) } - return nil + + return typeFromValue(rValue.FieldByName(nm)), nil case reflect.Map: kv := reflect.ValueOf(decodedToken) - rValue.SetMapIndex(kv, reflect.ValueOf(data)) - return nil + mv := rValue.MapIndex(kv) + + if !mv.IsValid() { + return nil, errNoKey(decodedToken) + } + + return typeFromValue(mv), nil case reflect.Slice: + if decodedToken == dashToken { + return nil, errDashIntermediate() + } tokenIndex, err := strconv.Atoi(decodedToken) if err != nil { - return err + return nil, errors.Join(err, ErrPointer) } + sLength := rValue.Len() if tokenIndex < 0 || tokenIndex >= sLength { - return fmt.Errorf("index out of bounds array[0,%d] index '%d'", sLength, tokenIndex) + return nil, errOutOfBounds(sLength, tokenIndex) } - elem := rValue.Index(tokenIndex) - if !elem.CanSet() { - return fmt.Errorf("can't set slice index %s to %v", decodedToken, data) - } - elem.Set(reflect.ValueOf(data)) - return nil + return typeFromValue(rValue.Index(tokenIndex)), nil default: - return fmt.Errorf("invalid token reference %q", decodedToken) + return nil, errInvalidReference(decodedToken) } - } -func (p *Pointer) get(node any, nameProvider *swag.NameProvider) (any, reflect.Kind, error) { - - if nameProvider == nil { - nameProvider = swag.DefaultJSONNameProvider +func isNil(input any) bool { + if input == nil { + return true } - kind := reflect.Invalid + kind := reflect.TypeOf(input).Kind() + switch kind { + case reflect.Pointer, reflect.Map, reflect.Slice, reflect.Chan: + return reflect.ValueOf(input).IsNil() + default: + return false + } +} - // Full document when empty - if len(p.referenceTokens) == 0 { - return node, kind, nil +func typeFromValue(v reflect.Value) any { + if v.CanAddr() && v.Kind() != reflect.Interface && v.Kind() != reflect.Map && v.Kind() != reflect.Slice && v.Kind() != reflect.Pointer { + return v.Addr().Interface() } - for _, token := range p.referenceTokens { + return v.Interface() +} - decodedToken := Unescape(token) +// GetForToken gets a value for a json pointer token 1 level deep. +func GetForToken(document any, decodedToken string, opts ...Option) (any, reflect.Kind, error) { + o := optionsWithDefaults(opts) - r, knd, err := getSingleImpl(node, decodedToken, nameProvider) + return getSingleImpl(document, decodedToken, o.provider) +} + +// SetForToken sets a value for a json pointer token 1 level deep. +// +// See [Pointer.Set] for the mutation contract, in particular the handling of the RFC 6901 "-" token +// on slices. +func SetForToken(document any, decodedToken string, value any, opts ...Option) (any, error) { + o := optionsWithDefaults(opts) + + return setSingleImpl(document, value, decodedToken, o.provider) +} + +func getSingleImpl(node any, decodedToken string, nameProvider NameProvider) (any, reflect.Kind, error) { + rValue := reflect.Indirect(reflect.ValueOf(node)) + kind := rValue.Kind() + if isNil(node) { + return nil, kind, fmt.Errorf("nil value has no field %q: %w", decodedToken, ErrPointer) + } + + switch typed := node.(type) { + case JSONPointable: + r, err := typed.JSONLookup(decodedToken) if err != nil { - return nil, knd, err + return nil, kind, err } - node = r + return r, kind, nil + case *any: // case of a pointer to interface, that is not resolved by reflect.Indirect + return getSingleImpl(*typed, decodedToken, nameProvider) } - rValue := reflect.ValueOf(node) - kind = rValue.Kind() + switch kind { + case reflect.Struct: + nm, ok := nameProvider.GetGoNameForType(rValue.Type(), decodedToken) + if !ok { + return nil, kind, fmt.Errorf("object has no field %q: %w", decodedToken, ErrPointer) + } - return node, kind, nil -} + fld := rValue.FieldByName(nm) -func (p *Pointer) set(node, data any, nameProvider *swag.NameProvider) error { - knd := reflect.ValueOf(node).Kind() + return fld.Interface(), kind, nil - if knd != reflect.Ptr && knd != reflect.Struct && knd != reflect.Map && knd != reflect.Slice && knd != reflect.Array { - return errors.New("only structs, pointers, maps and slices are supported for setting values") + case reflect.Map: + kv := reflect.ValueOf(decodedToken) + mv := rValue.MapIndex(kv) + + if mv.IsValid() { + return mv.Interface(), kind, nil + } + + return nil, kind, errNoKey(decodedToken) + + case reflect.Slice: + if decodedToken == dashToken { + return nil, kind, errDashOnGet() + } + tokenIndex, err := strconv.Atoi(decodedToken) + if err != nil { + return nil, kind, errors.Join(err, ErrPointer) + } + sLength := rValue.Len() + if tokenIndex < 0 || tokenIndex >= sLength { + return nil, kind, errOutOfBounds(sLength, tokenIndex) + } + + elem := rValue.Index(tokenIndex) + return elem.Interface(), kind, nil + + default: + return nil, kind, errInvalidReference(decodedToken) } +} - if nameProvider == nil { - nameProvider = swag.DefaultJSONNameProvider +func setSingleImpl(node, data any, decodedToken string, nameProvider NameProvider) (any, error) { + // check for nil to prevent panic when calling rValue.Type() + if isNil(node) { + return node, fmt.Errorf("cannot set field %q on nil value: %w", decodedToken, ErrPointer) } - // Full document when empty - if len(p.referenceTokens) == 0 { - return nil + if ns, ok := node.(JSONSetable); ok { + return node, ns.JSONSet(decodedToken, data) } - lastI := len(p.referenceTokens) - 1 - for i, token := range p.referenceTokens { - isLastToken := i == lastI - decodedToken := Unescape(token) + rValue := reflect.Indirect(reflect.ValueOf(node)) - if isLastToken { + switch rValue.Kind() { + case reflect.Struct: + nm, ok := nameProvider.GetGoNameForType(rValue.Type(), decodedToken) + if !ok { + return node, fmt.Errorf("object has no field %q: %w", decodedToken, ErrPointer) + } - return setSingleImpl(node, data, decodedToken, nameProvider) + fld := rValue.FieldByName(nm) + if !fld.CanSet() { + return node, fmt.Errorf("can't set struct field %s to %v: %w", nm, data, ErrPointer) } - rValue := reflect.Indirect(reflect.ValueOf(node)) - kind := rValue.Kind() + value := reflect.ValueOf(data) + valueType := value.Type() + assignedType := fld.Type() - if rValue.Type().Implements(jsonPointableType) { - r, err := node.(JSONPointable).JSONLookup(decodedToken) - if err != nil { - return err - } - fld := reflect.ValueOf(r) - if fld.CanAddr() && fld.Kind() != reflect.Interface && fld.Kind() != reflect.Map && fld.Kind() != reflect.Slice && fld.Kind() != reflect.Ptr { - node = fld.Addr().Interface() - continue - } - node = r - continue + if !valueType.AssignableTo(assignedType) { + return node, fmt.Errorf("can't set value with type %T to field %s with type %v: %w", data, nm, assignedType, ErrPointer) } - switch kind { //nolint:exhaustive - case reflect.Struct: - nm, ok := nameProvider.GetGoNameForType(rValue.Type(), decodedToken) - if !ok { - return fmt.Errorf("object has no field %q", decodedToken) - } - fld := rValue.FieldByName(nm) - if fld.CanAddr() && fld.Kind() != reflect.Interface && fld.Kind() != reflect.Map && fld.Kind() != reflect.Slice && fld.Kind() != reflect.Ptr { - node = fld.Addr().Interface() - continue - } - node = fld.Interface() + fld.Set(value) - case reflect.Map: - kv := reflect.ValueOf(decodedToken) - mv := rValue.MapIndex(kv) + return node, nil - if !mv.IsValid() { - return fmt.Errorf("object has no key %q", decodedToken) - } - if mv.CanAddr() && mv.Kind() != reflect.Interface && mv.Kind() != reflect.Map && mv.Kind() != reflect.Slice && mv.Kind() != reflect.Ptr { - node = mv.Addr().Interface() - continue - } - node = mv.Interface() + case reflect.Map: + kv := reflect.ValueOf(decodedToken) + rValue.SetMapIndex(kv, reflect.ValueOf(data)) - case reflect.Slice: - tokenIndex, err := strconv.Atoi(decodedToken) - if err != nil { - return err + return node, nil + + case reflect.Slice: + if decodedToken == dashToken { + // RFC 6901 §4 / RFC 6902 append semantics: terminal "-" appends the value to the slice. + // + // We rebind in place when the slice is reachable via an addressable ancestor; otherwise we + // return the new slice header for the parent (or the public Set) to rebind. + value := reflect.ValueOf(data) + elemType := rValue.Type().Elem() + if !value.Type().AssignableTo(elemType) { + return node, fmt.Errorf("can't append value of type %T to slice of %v: %w", data, elemType, ErrPointer) } - sLength := rValue.Len() - if tokenIndex < 0 || tokenIndex >= sLength { - return fmt.Errorf("index out of bounds array[0,%d] index '%d'", sLength, tokenIndex) + newSlice := reflect.Append(rValue, value) + if rValue.CanSet() { + rValue.Set(newSlice) + return node, nil } + return newSlice.Interface(), nil + } - elem := rValue.Index(tokenIndex) - if elem.CanAddr() && elem.Kind() != reflect.Interface && elem.Kind() != reflect.Map && elem.Kind() != reflect.Slice && elem.Kind() != reflect.Ptr { - node = elem.Addr().Interface() - continue - } - node = elem.Interface() + tokenIndex, err := strconv.Atoi(decodedToken) + if err != nil { + return node, errors.Join(err, ErrPointer) + } - default: - return fmt.Errorf("invalid token reference %q", decodedToken) + sLength := rValue.Len() + if tokenIndex < 0 || tokenIndex >= sLength { + return node, errOutOfBounds(sLength, tokenIndex) } - } + elem := rValue.Index(tokenIndex) + if !elem.CanSet() { + return node, fmt.Errorf("can't set slice index %s to %v: %w", decodedToken, data, ErrPointer) + } - return nil -} + value := reflect.ValueOf(data) + valueType := value.Type() + assignedType := elem.Type() -// DecodedTokens returns the decoded tokens -func (p *Pointer) DecodedTokens() []string { - result := make([]string, 0, len(p.referenceTokens)) - for _, t := range p.referenceTokens { - result = append(result, Unescape(t)) - } - return result -} + if !valueType.AssignableTo(assignedType) { + return node, fmt.Errorf("can't set value with type %T to slice element %d with type %v: %w", data, tokenIndex, assignedType, ErrPointer) + } -// IsEmpty returns true if this is an empty json pointer -// this indicates that it points to the root document -func (p *Pointer) IsEmpty() bool { - return len(p.referenceTokens) == 0 -} + elem.Set(value) -// Pointer to string representation function -func (p *Pointer) String() string { + return node, nil - if len(p.referenceTokens) == 0 { - return emptyPointer + default: + return node, errInvalidReference(decodedToken) } - - pointerString := pointerSeparator + strings.Join(p.referenceTokens, pointerSeparator) - - return pointerString } -func (p *Pointer) Offset(document string) (int64, error) { - dec := json.NewDecoder(strings.NewReader(document)) - var offset int64 - for _, ttk := range p.DecodedTokens() { +func offsetSingleObject(dec *json.Decoder, decodedToken string) (int64, error) { + for dec.More() { + offset := dec.InputOffset() tk, err := dec.Token() if err != nil { return 0, err } - switch tk := tk.(type) { - case json.Delim: - switch tk { - case '{': - offset, err = offsetSingleObject(dec, ttk) - if err != nil { - return 0, err - } - case '[': - offset, err = offsetSingleArray(dec, ttk) - if err != nil { - return 0, err - } - default: - return 0, fmt.Errorf("invalid token %#v", tk) - } - default: - return 0, fmt.Errorf("invalid token %#v", tk) + key, ok := tk.(string) + if !ok { + return 0, fmt.Errorf("invalid key token %#v: %w", tk, ErrPointer) + } + if key == decodedToken { + return offset, nil } - } - return offset, nil -} -func offsetSingleObject(dec *json.Decoder, decodedToken string) (int64, error) { - for dec.More() { - offset := dec.InputOffset() - tk, err := dec.Token() + // Consume the associated value. + // Scalars are fully read by a single Token() call; composite values must be drained. + tk, err = dec.Token() if err != nil { return 0, err } - switch tk := tk.(type) { - case json.Delim: - switch tk { - case '{': - if err = drainSingle(dec); err != nil { - return 0, err - } - case '[': + if delim, isDelim := tk.(json.Delim); isDelim { + switch delim { + case '{', '[': if err = drainSingle(dec); err != nil { return 0, err } } - case string: - if tk == decodedToken { - return offset, nil - } - default: - return 0, fmt.Errorf("invalid token %#v", tk) } } - return 0, fmt.Errorf("token reference %q not found", decodedToken) + + return 0, fmt.Errorf("token reference %q not found: %w", decodedToken, ErrPointer) } func offsetSingleArray(dec *json.Decoder, decodedToken string) (int64, error) { + if decodedToken == dashToken { + return 0, errDashOnOffset() + } idx, err := strconv.Atoi(decodedToken) if err != nil { - return 0, fmt.Errorf("token reference %q is not a number: %v", decodedToken, err) + return 0, fmt.Errorf("token reference %q is not a number: %w: %w", decodedToken, err, ErrPointer) } var i int for i = 0; i < idx && dec.More(); i++ { @@ -470,12 +698,14 @@ func offsetSingleArray(dec *json.Decoder, decodedToken string) (int64, error) { } if !dec.More() { - return 0, fmt.Errorf("token reference %q not found", decodedToken) + return 0, fmt.Errorf("token reference %q not found: %w", decodedToken, ErrPointer) } + return dec.InputOffset(), nil } // drainSingle drains a single level of object or array. +// // The decoder has to guarantee the beginning delim (i.e. '{' or '[') has been consumed. func drainSingle(dec *json.Decoder) error { for dec.More() { @@ -497,17 +727,15 @@ func drainSingle(dec *json.Decoder) error { } } - // Consumes the ending delim + // consumes the ending delim if _, err := dec.Token(); err != nil { return err } + return nil } -// Specific JSON pointer encoding here -// ~0 => ~ -// ~1 => / -// ... and vice versa +// JSON pointer encoding: ~0 => ~ ~1 => / ... and vice versa. const ( encRefTok0 = `~0` @@ -516,16 +744,24 @@ const ( decRefTok1 = `/` ) -// Unescape unescapes a json pointer reference token string to the original representation +var ( + encRefTokReplacer = strings.NewReplacer(encRefTok1, decRefTok1, encRefTok0, decRefTok0) //nolint:gochecknoglobals // it's okay to declare a replacer as a private global + decRefTokReplacer = strings.NewReplacer(decRefTok1, encRefTok1, decRefTok0, encRefTok0) //nolint:gochecknoglobals // it's okay to declare a replacer as a private global +) + +// Unescape unescapes a json pointer reference token string to the original representation. func Unescape(token string) string { - step1 := strings.ReplaceAll(token, encRefTok1, decRefTok1) - step2 := strings.ReplaceAll(step1, encRefTok0, decRefTok0) - return step2 + return encRefTokReplacer.Replace(token) } -// Escape escapes a pointer reference token string +// Escape escapes a pointer reference token string. +// +// The JSONPointer specification defines "/" as a separator and "~" as an escape prefix. +// +// Keys containing such characters are escaped with the following rules: +// +// - "~" is escaped as "~0" +// - "/" is escaped as "~1" func Escape(token string) string { - step1 := strings.ReplaceAll(token, decRefTok0, encRefTok0) - step2 := strings.ReplaceAll(step1, decRefTok1, encRefTok1) - return step2 + return decRefTokReplacer.Replace(token) } diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonreference/.editorconfig b/tests/e2e/vendor/github.com/go-openapi/jsonreference/.editorconfig new file mode 100644 index 0000000000..3152da69a5 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonreference/.editorconfig @@ -0,0 +1,26 @@ +# top-most EditorConfig file +root = true + +# Unix-style newlines with a newline ending every file +[*] +end_of_line = lf +insert_final_newline = true +indent_style = space +indent_size = 2 +trim_trailing_whitespace = true + +# Set default charset +[*.{js,py,go,scala,rb,java,html,css,less,sass,md}] +charset = utf-8 + +# Tab indentation (no size specified) +[*.go] +indent_style = tab + +[*.md] +trim_trailing_whitespace = false + +# Matches the exact files either package.json or .travis.yml +[{package.json,.travis.yml}] +indent_style = space +indent_size = 2 diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonreference/.gitignore b/tests/e2e/vendor/github.com/go-openapi/jsonreference/.gitignore index 769c244007..d8f4186fe5 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonreference/.gitignore +++ b/tests/e2e/vendor/github.com/go-openapi/jsonreference/.gitignore @@ -1 +1,5 @@ -secrets.yml +*.out +*.cov +.idea +.env +.mcp.json diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonreference/.golangci.yml b/tests/e2e/vendor/github.com/go-openapi/jsonreference/.golangci.yml index 013fc1943a..dc7c96053d 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonreference/.golangci.yml +++ b/tests/e2e/vendor/github.com/go-openapi/jsonreference/.golangci.yml @@ -1,50 +1,67 @@ -linters-settings: - govet: - check-shadowing: true - gocyclo: - min-complexity: 30 - maligned: - suggest-new: true - dupl: - threshold: 100 - goconst: - min-len: 2 - min-occurrences: 4 - paralleltest: - ignore-missing: true +version: "2" linters: - enable-all: true + default: all disable: - - maligned - - lll - - gochecknoglobals - - godox - - gocognit - - whitespace - - wsl + - depguard - funlen - - gochecknoglobals - - gochecknoinits - - scopelint - - wrapcheck - - exhaustivestruct - - exhaustive + - godox + - exhaustruct - nlreturn + - nonamedreturns + - noinlineerr + - paralleltest + - recvcheck - testpackage - - gci - - gofumpt - - goerr113 - - gomnd + - thelper - tparallel - - nestif - - godot - - errorlint - - varcheck - - interfacer - - deadcode - - golint - - ifshort - - structcheck - - nosnakecase - varnamelen - - exhaustruct + - whitespace + - wrapcheck + - wsl + - wsl_v5 + settings: + dupl: + threshold: 200 + goconst: + min-len: 2 + min-occurrences: 3 + cyclop: + max-complexity: 20 + gocyclo: + min-complexity: 20 + exhaustive: + default-signifies-exhaustive: true + default-case-required: true + lll: + line-length: 180 + exclusions: + generated: lax + presets: + - comments + - common-false-positives + - legacy + - std-error-handling + paths: + - third_party$ + - builtin$ + - examples$ +formatters: + enable: + - gofmt + - goimports + - gofumpt + exclusions: + generated: lax + paths: + - third_party$ + - builtin$ + - examples$ +issues: + # Maximum issues count per one linter. + # Set to 0 to disable. + # Default: 50 + max-issues-per-linter: 0 + # Maximum count of issues with the same text. + # Set to 0 to disable. + # Default: 3 + max-same-issues: 0 diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonreference/CODE_OF_CONDUCT.md b/tests/e2e/vendor/github.com/go-openapi/jsonreference/CODE_OF_CONDUCT.md index 9322b065e3..bac878f216 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonreference/CODE_OF_CONDUCT.md +++ b/tests/e2e/vendor/github.com/go-openapi/jsonreference/CODE_OF_CONDUCT.md @@ -23,7 +23,9 @@ include: Examples of unacceptable behavior by participants include: * The use of sexualized language or imagery and unwelcome sexual attention or + advances + * Trolling, insulting/derogatory comments, and personal or political attacks * Public or private harassment * Publishing others' private information, such as a physical or electronic @@ -55,7 +57,7 @@ further defined and clarified by project maintainers. ## Enforcement Instances of abusive, harassing, or otherwise unacceptable behavior may be -reported by contacting the project team at ivan+abuse@flanders.co.nz. All +reported by contacting the project team at . All complaints will be reviewed and investigated and will result in a response that is deemed necessary and appropriate to the circumstances. The project team is obligated to maintain confidentiality with regard to the reporter of an incident. @@ -68,7 +70,7 @@ members of the project's leadership. ## Attribution This Code of Conduct is adapted from the [Contributor Covenant][homepage], version 1.4, -available at [http://contributor-covenant.org/version/1/4][version] +available at [][version] [homepage]: http://contributor-covenant.org [version]: http://contributor-covenant.org/version/1/4/ diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonreference/CONTRIBUTORS.md b/tests/e2e/vendor/github.com/go-openapi/jsonreference/CONTRIBUTORS.md new file mode 100644 index 0000000000..d20737c946 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonreference/CONTRIBUTORS.md @@ -0,0 +1,21 @@ +# Contributors + +- Repository: ['go-openapi/jsonreference'] + +| Total Contributors | Total Contributions | +| --- | --- | +| 9 | 83 | + +| Username | All Time Contribution Count | All Commits | +| --- | --- | --- | +| @fredbi | 46 | | +| @casualjim | 25 | | +| @youyuanwu | 5 | | +| @olivierlemasle | 2 | | +| @apelisse | 1 | | +| @gbjk | 1 | | +| @honza | 1 | | +| @Neo2308 | 1 | | +| @erraggy | 1 | | + + _this file was generated by the [Contributors GitHub Action](https://github.com/github-community-projects/contributors)_ diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonreference/NOTICE b/tests/e2e/vendor/github.com/go-openapi/jsonreference/NOTICE new file mode 100644 index 0000000000..814e87ef8c --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonreference/NOTICE @@ -0,0 +1,39 @@ +Copyright 2015-2025 go-swagger maintainers + +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +This software library, github.com/go-openapi/jsonreference, includes software developed +by the go-swagger and go-openapi maintainers ("go-swagger maintainers"). + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this software except in compliance with the License. + +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0. + +This software is copied from, derived from, and inspired by other original software products. +It ships with copies of other software which license terms are recalled below. + +The original software was authored on 25-02-2013 by sigu-399 (https://github.com/sigu-399, sigu.399@gmail.com). + +github.com/sigh-399/jsonreference +=========================== + +// SPDX-FileCopyrightText: Copyright 2013 sigu-399 ( https://github.com/sigu-399 ) +// SPDX-License-Identifier: Apache-2.0 + +Copyright 2013 sigu-399 ( https://github.com/sigu-399 ) + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonreference/README.md b/tests/e2e/vendor/github.com/go-openapi/jsonreference/README.md index b94753aa52..fbd16cf892 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonreference/README.md +++ b/tests/e2e/vendor/github.com/go-openapi/jsonreference/README.md @@ -1,15 +1,123 @@ -# gojsonreference [![Build Status](https://travis-ci.org/go-openapi/jsonreference.svg?branch=master)](https://travis-ci.org/go-openapi/jsonreference) [![codecov](https://codecov.io/gh/go-openapi/jsonreference/branch/master/graph/badge.svg)](https://codecov.io/gh/go-openapi/jsonreference) [![Slack Status](https://slackin.goswagger.io/badge.svg)](https://slackin.goswagger.io) +# jsonreference -[![license](http://img.shields.io/badge/license-Apache%20v2-orange.svg)](https://raw.githubusercontent.com/go-openapi/jsonreference/master/LICENSE) [![GoDoc](https://godoc.org/github.com/go-openapi/jsonreference?status.svg)](http://godoc.org/github.com/go-openapi/jsonreference) -An implementation of JSON Reference - Go language + +[![Tests][test-badge]][test-url] [![Coverage][cov-badge]][cov-url] [![CI vuln scan][vuln-scan-badge]][vuln-scan-url] [![CodeQL][codeql-badge]][codeql-url] + + + +[![Release][release-badge]][release-url] [![Go Report Card][gocard-badge]][gocard-url] [![CodeFactor Grade][codefactor-badge]][codefactor-url] [![License][license-badge]][license-url] + + +[![GoDoc][godoc-badge]][godoc-url] [![Discord Channel][discord-badge]][discord-url] [![go version][goversion-badge]][goversion-url] ![Top language][top-badge] ![Commits since latest release][commits-badge] + +--- + +An implementation of JSON Reference for golang. + +## Announcements + +* **2026-07-07** : landing v1.0.0 + * stable API pledge ## Status -Feature complete. Stable API + +API is stable. + +## Import this library in your project + +```cmd +go get github.com/go-openapi/jsonreference +``` ## Dependencies -https://github.com/go-openapi/jsonpointer + +* + +## Basic usage + +```go +// Creating a new reference +ref, err := jsonreference.New("http://example.com/doc.json#/definitions/Pet") + +// Fragment-only reference +fragRef := jsonreference.MustCreateRef("#/definitions/Pet") + +// Resolving references +parent, _ := jsonreference.New("http://example.com/base.json") +child, _ := jsonreference.New("#/definitions/Pet") +resolved, _ := parent.Inherits(child) +// Result: "http://example.com/base.json#/definitions/Pet" +``` + + +## Change log + +See ## References -http://tools.ietf.org/html/draft-ietf-appsawg-json-pointer-07 -http://tools.ietf.org/html/draft-pbryan-zyp-json-ref-03 +* +* + +## Licensing + +This library ships under the [SPDX-License-Identifier: Apache-2.0](./LICENSE). + +See the license [NOTICE](./NOTICE), which recalls the licensing terms of all the pieces of software +on top of which it has been built. + +## Other documentation + +* [All-time contributors](./CONTRIBUTORS.md) +* [Contributing guidelines][contributing-doc-site] +* [Maintainers documentation][maintainers-doc-site] +* [Code style][style-doc-site] + +## Cutting a new release + +Maintainers can cut a new release by either: + +* running [this workflow](https://github.com/go-openapi/jsonreference/actions/workflows/bump-release.yml) +* or pushing a semver tag + * signed tags are preferred + * The tag message is prepended to release notes + + +[test-badge]: https://github.com/go-openapi/jsonreference/actions/workflows/go-test.yml/badge.svg +[test-url]: https://github.com/go-openapi/jsonreference/actions/workflows/go-test.yml +[cov-badge]: https://codecov.io/gh/go-openapi/jsonreference/branch/master/graph/badge.svg +[cov-url]: https://codecov.io/gh/go-openapi/jsonreference +[vuln-scan-badge]: https://github.com/go-openapi/jsonreference/actions/workflows/scanner.yml/badge.svg +[vuln-scan-url]: https://github.com/go-openapi/jsonreference/actions/workflows/scanner.yml +[codeql-badge]: https://github.com/go-openapi/jsonreference/actions/workflows/codeql.yml/badge.svg +[codeql-url]: https://github.com/go-openapi/jsonreference/actions/workflows/codeql.yml + +[release-badge]: https://badge.fury.io/gh/go-openapi%2Fjsonreference.svg +[release-url]: https://badge.fury.io/gh/go-openapi%2Fjsonreference +[gomod-badge]: https://badge.fury.io/go/github.com%2Fgo-openapi%2Fjsonreference.svg +[gomod-url]: https://badge.fury.io/go/github.com%2Fgo-openapi%2Fjsonreference + +[gocard-badge]: https://goreportcard.com/badge/github.com/go-openapi/jsonreference +[gocard-url]: https://goreportcard.com/report/github.com/go-openapi/jsonreference +[codefactor-badge]: https://img.shields.io/codefactor/grade/github/go-openapi/jsonreference +[codefactor-url]: https://www.codefactor.io/repository/github/go-openapi/jsonreference + +[doc-badge]: https://img.shields.io/badge/doc-site-blue?link=https%3A%2F%2Fgoswagger.io%2Fgo-openapi%2F +[doc-url]: https://goswagger.io/go-openapi +[godoc-badge]: https://pkg.go.dev/badge/github.com/go-openapi/jsonreference +[godoc-url]: http://pkg.go.dev/github.com/go-openapi/jsonreference +[discord-badge]: https://img.shields.io/discord/1446918742398341256?logo=discord&label=discord&color=blue +[discord-url]: https://discord.gg/FfnFYaC3k5 + + +[license-badge]: http://img.shields.io/badge/license-Apache%20v2-orange.svg +[license-url]: https://github.com/go-openapi/jsonreference/?tab=Apache-2.0-1-ov-file#readme + +[goversion-badge]: https://img.shields.io/github/go-mod/go-version/go-openapi/jsonreference +[goversion-url]: https://github.com/go-openapi/jsonreference/blob/master/go.mod +[top-badge]: https://img.shields.io/github/languages/top/go-openapi/jsonreference +[commits-badge]: https://img.shields.io/github/commits-since/go-openapi/jsonreference/latest + +[contributing-doc-site]: https://go-openapi.github.io/doc-site/contributing/contributing/index.html +[maintainers-doc-site]: https://go-openapi.github.io/doc-site/maintainers/index.html +[style-doc-site]: https://go-openapi.github.io/doc-site/contributing/style/index.html diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonreference/SECURITY.md b/tests/e2e/vendor/github.com/go-openapi/jsonreference/SECURITY.md new file mode 100644 index 0000000000..1fea2c5736 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/jsonreference/SECURITY.md @@ -0,0 +1,37 @@ +# Security Policy + +This policy outlines the commitment and practices of the go-openapi maintainers regarding security. + +## Supported Versions + +| Version | Supported | +| ------- | ------------------ | +| O.x | :white_check_mark: | + +## Vulnerability checks in place + +This repository uses automated vulnerability scans, at every merged commit and at least once a week. + +We use: + +* [`GitHub CodeQL`][codeql-url] +* [`trivy`][trivy-url] +* [`govulncheck`][govulncheck-url] + +Reports are centralized in github security reports and visible only to the maintainers. + +## Reporting a vulnerability + +If you become aware of a security vulnerability that affects the current repository, +**please report it privately to the maintainers** +rather than opening a publicly visible GitHub issue. + +Please follow the instructions provided by github to [Privately report a security vulnerability][github-guidance-url]. + +> [!NOTE] +> On Github, navigate to the project's "Security" tab then click on "Report a vulnerability". + +[codeql-url]: https://github.com/github/codeql +[trivy-url]: https://trivy.dev/docs/latest/getting-started +[govulncheck-url]: https://go.dev/blog/govulncheck +[github-guidance-url]: https://docs.github.com/en/code-security/security-advisories/guidance-on-reporting-and-writing-information-about-vulnerabilities/privately-reporting-a-security-vulnerability#privately-reporting-a-security-vulnerability diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonreference/internal/normalize_url.go b/tests/e2e/vendor/github.com/go-openapi/jsonreference/internal/normalize_url.go index f0610cf1e5..a08b47320e 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonreference/internal/normalize_url.go +++ b/tests/e2e/vendor/github.com/go-openapi/jsonreference/internal/normalize_url.go @@ -1,3 +1,6 @@ +// SPDX-FileCopyrightText: Copyright (c) 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + package internal import ( @@ -11,9 +14,11 @@ const ( defaultHTTPSPort = ":443" ) -// Regular expressions used by the normalizations -var rxPort = regexp.MustCompile(`(:\d+)/?$`) -var rxDupSlashes = regexp.MustCompile(`/{2,}`) +// Regular expressions used by the normalizations. +var ( + rxPort = regexp.MustCompile(`(:\d+)/?$`) + rxDupSlashes = regexp.MustCompile(`/{2,}`) +) // NormalizeURL will normalize the specified URL // This was added to replace a previous call to the no longer maintained purell library: diff --git a/tests/e2e/vendor/github.com/go-openapi/jsonreference/reference.go b/tests/e2e/vendor/github.com/go-openapi/jsonreference/reference.go index cfdef03e5d..003ba7a838 100644 --- a/tests/e2e/vendor/github.com/go-openapi/jsonreference/reference.go +++ b/tests/e2e/vendor/github.com/go-openapi/jsonreference/reference.go @@ -1,27 +1,5 @@ -// Copyright 2013 sigu-399 ( https://github.com/sigu-399 ) -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -// author sigu-399 -// author-github https://github.com/sigu-399 -// author-mail sigu.399@gmail.com -// -// repository-name jsonreference -// repository-desc An implementation of JSON Reference - Go language -// -// description Main and unique file. -// -// created 26-02-2013 +// SPDX-FileCopyrightText: Copyright (c) 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 package jsonreference @@ -38,50 +16,51 @@ const ( fragmentRune = `#` ) -// New creates a new reference for the given string -func New(jsonReferenceString string) (Ref, error) { +// ErrChildURL is raised when there is no child. +var ErrChildURL = errors.New("child url is nil") + +// Ref represents a json reference object. +type Ref struct { + referenceURL *url.URL + referencePointer jsonpointer.Pointer + + HasFullURL bool + HasURLPathOnly bool + HasFragmentOnly bool + HasFileScheme bool + HasFullFilePath bool +} +// New creates a new reference for the given string. +func New(jsonReferenceString string) (Ref, error) { var r Ref err := r.parse(jsonReferenceString) return r, err - } // MustCreateRef parses the ref string and panics when it's invalid. -// Use the New method for a version that returns an error +// Use the New method for a version that returns an error. func MustCreateRef(ref string) Ref { r, err := New(ref) if err != nil { panic(err) } - return r -} -// Ref represents a json reference object -type Ref struct { - referenceURL *url.URL - referencePointer jsonpointer.Pointer - - HasFullURL bool - HasURLPathOnly bool - HasFragmentOnly bool - HasFileScheme bool - HasFullFilePath bool + return r } -// GetURL gets the URL for this reference +// GetURL gets the URL for this reference. func (r *Ref) GetURL() *url.URL { return r.referenceURL } -// GetPointer gets the json pointer for this reference +// GetPointer gets the json pointer for this reference. func (r *Ref) GetPointer() *jsonpointer.Pointer { return &r.referencePointer } -// String returns the best version of the url for this reference +// String returns the best version of the url for this reference. func (r *Ref) String() string { - if r.referenceURL != nil { return r.referenceURL.String() } @@ -93,7 +72,7 @@ func (r *Ref) String() string { return r.referencePointer.String() } -// IsRoot returns true if this reference is a root document +// IsRoot returns true if this reference is a root document. func (r *Ref) IsRoot() bool { return r.referenceURL != nil && !r.IsCanonical() && @@ -101,14 +80,32 @@ func (r *Ref) IsRoot() bool { r.referenceURL.Fragment == "" } -// IsCanonical returns true when this pointer starts with http(s):// or file:// +// IsCanonical returns true when this pointer starts with http(s):// or file://. func (r *Ref) IsCanonical() bool { return (r.HasFileScheme && r.HasFullFilePath) || (!r.HasFileScheme && r.HasFullURL) } -// "Constructor", parses the given string JSON reference -func (r *Ref) parse(jsonReferenceString string) error { +// Inherits creates a new reference from a parent and a child +// If the child cannot inherit from the parent, an error is returned. +func (r *Ref) Inherits(child Ref) (*Ref, error) { + childURL := child.GetURL() + parentURL := r.GetURL() + if childURL == nil { + return nil, ErrChildURL + } + if parentURL == nil { + return &child, nil + } + + ref, err := New(parentURL.ResolveReference(childURL).String()) + if err != nil { + return nil, err + } + return &ref, nil +} +// "Constructor", parses the given string JSON reference. +func (r *Ref) parse(jsonReferenceString string) error { parsed, err := url.Parse(jsonReferenceString) if err != nil { return err @@ -137,22 +134,3 @@ func (r *Ref) parse(jsonReferenceString string) error { return nil } - -// Inherits creates a new reference from a parent and a child -// If the child cannot inherit from the parent, an error is returned -func (r *Ref) Inherits(child Ref) (*Ref, error) { - childURL := child.GetURL() - parentURL := r.GetURL() - if childURL == nil { - return nil, errors.New("child url is nil") - } - if parentURL == nil { - return &child, nil - } - - ref, err := New(parentURL.ResolveReference(childURL).String()) - if err != nil { - return nil, err - } - return &ref, nil -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/.codecov.yml b/tests/e2e/vendor/github.com/go-openapi/swag/.codecov.yml new file mode 100644 index 0000000000..3354f44b28 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/.codecov.yml @@ -0,0 +1,4 @@ +ignore: + - jsonutils/fixtures_test + - jsonutils/adapters/ifaces/mocks + - jsonutils/adapters/testintegration/benchmarks diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/.gitignore b/tests/e2e/vendor/github.com/go-openapi/swag/.gitignore index c4b1b64f04..3ceb596fa2 100644 --- a/tests/e2e/vendor/github.com/go-openapi/swag/.gitignore +++ b/tests/e2e/vendor/github.com/go-openapi/swag/.gitignore @@ -3,3 +3,5 @@ vendor Godeps .idea *.out +.mcp.json +.worktrees diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/.golangci.yml b/tests/e2e/vendor/github.com/go-openapi/swag/.golangci.yml index 80e2be0042..099c0a78c6 100644 --- a/tests/e2e/vendor/github.com/go-openapi/swag/.golangci.yml +++ b/tests/e2e/vendor/github.com/go-openapi/swag/.golangci.yml @@ -1,60 +1,81 @@ -linters-settings: - govet: - check-shadowing: true - golint: - min-confidence: 0 - gocyclo: - min-complexity: 45 - maligned: - suggest-new: true - dupl: - threshold: 200 - goconst: - min-len: 3 - min-occurrences: 3 - +version: "2" linters: - enable-all: true + default: all disable: - - maligned - - lll - - gochecknoinits - - gochecknoglobals + - cyclop + - depguard + - errchkjson + - errorlint + - exhaustruct + - forcetypeassert - funlen - - godox + - gochecknoglobals + - gochecknoinits - gocognit - - whitespace - - wsl - - wrapcheck - - testpackage - - nlreturn - - gomnd - - exhaustivestruct - - goerr113 - - errorlint - - nestif - godot - - gofumpt + - godox + - goconst + - gomoddirectives + - gomodguard + - gomodguard_v2 + - gosmopolitan + - inamedparam + - intrange + - ireturn + - lll + - musttag + - modernize + - nestif + - nlreturn + - nonamedreturns + - noinlineerr - paralleltest - - tparallel + - recvcheck + - testpackage - thelper - - ifshort - - exhaustruct + - tagliatelle + - tparallel + - unparam - varnamelen - - gci - - depguard - - errchkjson - - inamedparam - - nonamedreturns - - musttag - - ireturn - - forcetypeassert - - cyclop - # deprecated linters - - deadcode - - interfacer - - scopelint - - varcheck - - structcheck - - golint - - nosnakecase + - whitespace + - wrapcheck + - wsl + - wsl_v5 + settings: + dupl: + threshold: 200 + goconst: + min-len: 2 + min-occurrences: 3 + gocyclo: + min-complexity: 45 + exclusions: + generated: lax + presets: + - comments + - common-false-positives + - legacy + - std-error-handling + paths: + - third_party$ + - builtin$ + - examples$ +formatters: + enable: + - gofmt + - goimports + exclusions: + generated: lax + paths: + - third_party$ + - builtin$ + - examples$ +issues: + # Maximum issues count per one linter. + # Set to 0 to disable. + # Default: 50 + max-issues-per-linter: 0 + # Maximum count of issues with the same text. + # Set to 0 to disable. + # Default: 3 + max-same-issues: 0 diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/.mockery.yml b/tests/e2e/vendor/github.com/go-openapi/swag/.mockery.yml new file mode 100644 index 0000000000..8557cb58d3 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/.mockery.yml @@ -0,0 +1,30 @@ +all: false +dir: '{{.InterfaceDir}}' +filename: mocks_test.go +force-file-write: true +formatter: goimports +include-auto-generated: false +log-level: info +structname: '{{.Mock}}{{.InterfaceName}}' +pkgname: '{{.SrcPackageName}}' +recursive: false +require-template-schema-exists: true +template: matryer +template-schema: '{{.Template}}.schema.json' +packages: + github.com/go-openapi/swag/jsonutils/adapters/ifaces: + config: + dir: jsonutils/adapters/ifaces/mocks + filename: mocks.go + pkgname: 'mocks' + force-file-write: true + all: true + github.com/go-openapi/swag/jsonutils/adapters/testintegration: + config: + inpackage: true + dir: jsonutils/adapters/testintegration + force-file-write: true + all: true + interfaces: + EJMarshaler: + EJUnmarshaler: diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/BENCHMARK.md b/tests/e2e/vendor/github.com/go-openapi/swag/BENCHMARK.md deleted file mode 100644 index e7f28ed6b7..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/BENCHMARK.md +++ /dev/null @@ -1,52 +0,0 @@ -# Benchmarks - -## Name mangling utilities - -```bash -go test -bench XXX -run XXX -benchtime 30s -``` - -### Benchmarks at b3e7a5386f996177e4808f11acb2aa93a0f660df - -``` -goos: linux -goarch: amd64 -pkg: github.com/go-openapi/swag -cpu: Intel(R) Core(TM) i5-6200U CPU @ 2.30GHz -BenchmarkToXXXName/ToGoName-4 862623 44101 ns/op 10450 B/op 732 allocs/op -BenchmarkToXXXName/ToVarName-4 853656 40728 ns/op 10468 B/op 734 allocs/op -BenchmarkToXXXName/ToFileName-4 1268312 27813 ns/op 9785 B/op 617 allocs/op -BenchmarkToXXXName/ToCommandName-4 1276322 27903 ns/op 9785 B/op 617 allocs/op -BenchmarkToXXXName/ToHumanNameLower-4 895334 40354 ns/op 10472 B/op 731 allocs/op -BenchmarkToXXXName/ToHumanNameTitle-4 882441 40678 ns/op 10566 B/op 749 allocs/op -``` - -### Benchmarks after PR #79 - -~ x10 performance improvement and ~ /100 memory allocations. - -``` -goos: linux -goarch: amd64 -pkg: github.com/go-openapi/swag -cpu: Intel(R) Core(TM) i5-6200U CPU @ 2.30GHz -BenchmarkToXXXName/ToGoName-4 9595830 3991 ns/op 42 B/op 5 allocs/op -BenchmarkToXXXName/ToVarName-4 9194276 3984 ns/op 62 B/op 7 allocs/op -BenchmarkToXXXName/ToFileName-4 17002711 2123 ns/op 147 B/op 7 allocs/op -BenchmarkToXXXName/ToCommandName-4 16772926 2111 ns/op 147 B/op 7 allocs/op -BenchmarkToXXXName/ToHumanNameLower-4 9788331 3749 ns/op 92 B/op 6 allocs/op -BenchmarkToXXXName/ToHumanNameTitle-4 9188260 3941 ns/op 104 B/op 6 allocs/op -``` - -``` -goos: linux -goarch: amd64 -pkg: github.com/go-openapi/swag -cpu: AMD Ryzen 7 5800X 8-Core Processor -BenchmarkToXXXName/ToGoName-16 18527378 1972 ns/op 42 B/op 5 allocs/op -BenchmarkToXXXName/ToVarName-16 15552692 2093 ns/op 62 B/op 7 allocs/op -BenchmarkToXXXName/ToFileName-16 32161176 1117 ns/op 147 B/op 7 allocs/op -BenchmarkToXXXName/ToCommandName-16 32256634 1137 ns/op 147 B/op 7 allocs/op -BenchmarkToXXXName/ToHumanNameLower-16 18599661 1946 ns/op 92 B/op 6 allocs/op -BenchmarkToXXXName/ToHumanNameTitle-16 17581353 2054 ns/op 105 B/op 6 allocs/op -``` diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/CODE_OF_CONDUCT.md b/tests/e2e/vendor/github.com/go-openapi/swag/CODE_OF_CONDUCT.md index 9322b065e3..bac878f216 100644 --- a/tests/e2e/vendor/github.com/go-openapi/swag/CODE_OF_CONDUCT.md +++ b/tests/e2e/vendor/github.com/go-openapi/swag/CODE_OF_CONDUCT.md @@ -23,7 +23,9 @@ include: Examples of unacceptable behavior by participants include: * The use of sexualized language or imagery and unwelcome sexual attention or + advances + * Trolling, insulting/derogatory comments, and personal or political attacks * Public or private harassment * Publishing others' private information, such as a physical or electronic @@ -55,7 +57,7 @@ further defined and clarified by project maintainers. ## Enforcement Instances of abusive, harassing, or otherwise unacceptable behavior may be -reported by contacting the project team at ivan+abuse@flanders.co.nz. All +reported by contacting the project team at . All complaints will be reviewed and investigated and will result in a response that is deemed necessary and appropriate to the circumstances. The project team is obligated to maintain confidentiality with regard to the reporter of an incident. @@ -68,7 +70,7 @@ members of the project's leadership. ## Attribution This Code of Conduct is adapted from the [Contributor Covenant][homepage], version 1.4, -available at [http://contributor-covenant.org/version/1/4][version] +available at [][version] [homepage]: http://contributor-covenant.org [version]: http://contributor-covenant.org/version/1/4/ diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/CONTRIBUTORS.md b/tests/e2e/vendor/github.com/go-openapi/swag/CONTRIBUTORS.md new file mode 100644 index 0000000000..0f0711cd5f --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/CONTRIBUTORS.md @@ -0,0 +1,36 @@ +# Contributors + +- Repository: ['go-openapi/swag'] + +| Total Contributors | Total Contributions | +| --- | --- | +| 24 | 251 | + +| Username | All Time Contribution Count | All Commits | +| --- | --- | --- | +| @fredbi | 121 | | +| @casualjim | 98 | | +| @alexandear | 4 | | +| @orisano | 3 | | +| @reinerRubin | 2 | | +| @n-inja | 2 | | +| @nitinmohan87 | 2 | | +| @Neo2308 | 2 | | +| @michaelbowler-form3 | 2 | | +| @ujjwalsh | 1 | | +| @griffin-stewie | 1 | | +| @POD666 | 1 | | +| @pytlesk4 | 1 | | +| @shirou | 1 | | +| @seanprince | 1 | | +| @petrkotas | 1 | | +| @mszczygiel | 1 | | +| @sosiska | 1 | | +| @kzys | 1 | | +| @faguirre1 | 1 | | +| @posener | 1 | | +| @diego-fu-hs | 1 | | +| @davidalpert | 1 | | +| @Xe | 1 | | + + _this file was generated by the [Contributors GitHub Action](https://github.com/github-community-projects/contributors)_ diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/README.md b/tests/e2e/vendor/github.com/go-openapi/swag/README.md index a729222998..c6c2d21e94 100644 --- a/tests/e2e/vendor/github.com/go-openapi/swag/README.md +++ b/tests/e2e/vendor/github.com/go-openapi/swag/README.md @@ -1,23 +1,223 @@ -# Swag [![Build Status](https://github.com/go-openapi/swag/actions/workflows/go-test.yml/badge.svg)](https://github.com/go-openapi/swag/actions?query=workflow%3A"go+test") [![codecov](https://codecov.io/gh/go-openapi/swag/branch/master/graph/badge.svg)](https://codecov.io/gh/go-openapi/swag) +# Swag -[![Slack Status](https://slackin.goswagger.io/badge.svg)](https://slackin.goswagger.io) -[![license](http://img.shields.io/badge/license-Apache%20v2-orange.svg)](https://raw.githubusercontent.com/go-openapi/swag/master/LICENSE) -[![Go Reference](https://pkg.go.dev/badge/github.com/go-openapi/swag.svg)](https://pkg.go.dev/github.com/go-openapi/swag) -[![Go Report Card](https://goreportcard.com/badge/github.com/go-openapi/swag)](https://goreportcard.com/report/github.com/go-openapi/swag) + +[![Tests][test-badge]][test-url] [![Coverage][cov-badge]][cov-url] [![CI vuln scan][vuln-scan-badge]][vuln-scan-url] [![CodeQL][codeql-badge]][codeql-url] + + + +[![Release][release-badge]][release-url] [![Go Report Card][gocard-badge]][gocard-url] [![CodeFactor Grade][codefactor-badge]][codefactor-url] [![License][license-badge]][license-url] + + +[![GoDoc][godoc-badge]][godoc-url] [![Discord Channel][discord-badge]][discord-url] [![go version][goversion-badge]][goversion-url] ![Top language][top-badge] ![Commits since latest release][commits-badge] -Contains a bunch of helper functions for go-openapi and go-swagger projects. +--- + +A bunch of helper functions for go-openapi and go-swagger projects. You may also use it standalone for your projects. -* convert between value and pointers for builtin types -* convert from string to builtin types (wraps strconv) -* fast json concatenation -* search in path -* load from file or http -* name mangling +> **NOTE** +> `swag` is one of the foundational building blocks of the go-openapi initiative. +> +> Most repositories in `github.com/go-openapi/...` depend on it in some way. +> And so does our CLI tool `github.com/go-swagger/go-swagger`, +> as well as the code generated by this tool. + +* [Contents](#contents) +* [Dependencies](#dependencies) +* [Change log](#change-log) +* [Licensing](#licensing) +* [Note to contributors](#note-to-contributors) +* [Roadmap](#roadmap) + +## Announcements + +* **2025-12-19** : new community chat on discord + * a new discord community channel is available to be notified of changes and support users + +You may join the discord community by clicking the invite link on the discord badge (also above). [![Discord Channel][discord-badge]][discord-url] + +## Status + +API is stable. + +## Import this library in your project + +```cmd +go get github.com/go-openapi/swag/{module} +``` + +Or for backward compatibility: + +```cmd +go get github.com/go-openapi/swag +``` + +## Contents + +`go-openapi/swag` exposes a collection of relatively independent modules. + +Moving forward, no additional feature will be added to the `swag` API directly at the root package level, +which remains there for backward-compatibility purposes. All exported top-level features are now deprecated. + +Child modules will continue to evolve and some new ones may be added in the future. + +| Module | Content | Main features | +|---------------|---------|---------------| +| `cmdutils` | utilities to work with CLIs || +| `conv` | type conversion utilities | convert between values and pointers for any types
convert from string to builtin types (wraps `strconv`)
require `./typeutils` (test dependency)
| +| `fileutils` | file utilities | | +| `jsonname` | JSON utilities (deprecated) | infer JSON names from `go` properties
use `github.com/go-openapi/jsonpointer/jsonname` instead | +| `jsonutils` | JSON utilities | fast json concatenation
read and write JSON from and to dynamic `go` data structures
~require `github.com/mailru/easyjson`~
| +| `loading` | file loading | load from file or http
require `./yamlutils`
| +| `mangling` | safe name generation | name mangling for `go`
| +| `netutils` | networking utilities | host, port from address
| +| `pools` | utilities to work with sync.Pools | | +| `stringutils` | `string` utilities | search in slice (with case-insensitive)
split/join query parameters as arrays
| +| `typeutils` | `go` types utilities | check the zero value for any type
safe check for a nil value
| +| `yamlutils` | YAML utilities | converting YAML to JSON
loading YAML into a dynamic YAML document
maintaining the original order of keys in YAML objects
require `./jsonutils`
~require `github.com/mailru/easyjson`~
require `go.yaml.in/yaml/v3`
| + +--- + +## Dependencies + +The root module `github.com/go-openapi/swag` at the repo level maintains a few +dependencies outside of the standard library. + +* YAML utilities depend on `go.yaml.in/yaml/v3` +* JSON utilities depend on their registered adapter module: + * by default, only the standard library is used + * `github.com/mailru/easyjson` is now only a dependency for module + `github.com/go-openapi/swag/jsonutils/adapters/easyjson/json`, + for users willing to import that module. + * integration tests and benchmarks use all the dependencies are published as their own module +* other dependencies are test dependencies drawn from `github.com/stretchr/testify` + +## Usage + +**How to explicitly register a dependency at runtime**? + +The following would maintain how JSON utilities proposed by `swag` used work, up to `v0.24.1`. + + ```go + import ( + "github.com/go-openapi/swag/jsonutils/adapters" + easyjson "github.com/go-openapi/swag/jsonutils/adapters/easyjson/json" + ) + + func init() { + easyjson.Register(adapters.Registry) + } + ``` + +Subsequent calls to `jsonutils.ReadJSON()` or `jsonutils.WriteJSON()` will switch to `easyjson` +whenever the passed data structures implement the `easyjson.Unmarshaler` or `easyjson.Marshaler` respectively, +or fallback to the standard library. + +For more details, you may also look at our +[integration tests](jsonutils/adapters/testintegration/integration_suite_test.go#29). + +--- + +## Note to contributors + +All kinds of contributions are welcome. + +This repo is a go mono-repo. See [docs](docs/MAINTAINERS.md). + +More general guidelines are available [here](.github/CONTRIBUTING.md). + +## Roadmap + +See the current [TODO list](docs/TODOS.md) + +## Change log + +See + +For pre-v0.26.0 releases, see [release notes](./docs/NOTES.md). + +**What coming next?** + +Moving forward, we want to : + +* provide an implementation of the JSON adapter based on `encoding/json/v2`, for `go1.25` builds. +* provide similar implementations for `goccy/go-json` and `jsoniterator/go`, and perhaps some other + similar libraries may be interesting too. + + + +## Licensing + +This library ships under the [SPDX-License-Identifier: Apache-2.0](./LICENSE). + + + + + +## Other documentation + +* [All-time contributors](./CONTRIBUTORS.md) +* [Contributing guidelines][contributing-doc-site] +* [Maintainers documentation][maintainers-doc-site] +* [Code style][style-doc-site] + +## Cutting a new release + +Maintainers can cut a new release by either: +* running [this workflow](https://github.com/go-openapi/swag/actions/workflows/bump-release.yml) +* or pushing a semver tag + * signed tags are preferred + * The tag message is prepended to release notes -This repo has only few dependencies outside of the standard library: + +[test-badge]: https://github.com/go-openapi/swag/actions/workflows/go-test.yml/badge.svg +[test-url]: https://github.com/go-openapi/swag/actions/workflows/go-test.yml +[cov-badge]: https://codecov.io/gh/go-openapi/swag/branch/master/graph/badge.svg +[cov-url]: https://codecov.io/gh/go-openapi/swag +[vuln-scan-badge]: https://github.com/go-openapi/swag/actions/workflows/scanner.yml/badge.svg +[vuln-scan-url]: https://github.com/go-openapi/swag/actions/workflows/scanner.yml +[codeql-badge]: https://github.com/go-openapi/swag/actions/workflows/codeql.yml/badge.svg +[codeql-url]: https://github.com/go-openapi/swag/actions/workflows/codeql.yml + +[release-badge]: https://badge.fury.io/gh/go-openapi%2Fswag.svg +[release-url]: https://badge.fury.io/gh/go-openapi%2Fswag +[gomod-badge]: https://badge.fury.io/go/github.com%2Fgo-openapi%2Fswag.svg +[gomod-url]: https://badge.fury.io/go/github.com%2Fgo-openapi%2Fswag + +[gocard-badge]: https://goreportcard.com/badge/github.com/go-openapi/swag +[gocard-url]: https://goreportcard.com/report/github.com/go-openapi/swag +[codefactor-badge]: https://img.shields.io/codefactor/grade/github/go-openapi/swag +[codefactor-url]: https://www.codefactor.io/repository/github/go-openapi/swag + +[doc-badge]: https://img.shields.io/badge/doc-site-blue?link=https%3A%2F%2Fgoswagger.io%2Fgo-openapi%2F +[doc-url]: https://goswagger.io/go-openapi +[godoc-badge]: https://pkg.go.dev/badge/github.com/go-openapi/swag +[godoc-url]: http://pkg.go.dev/github.com/go-openapi/swag +[discord-badge]: https://img.shields.io/discord/1446918742398341256?logo=discord&label=discord&color=blue +[discord-url]: https://discord.gg/FfnFYaC3k5 -* YAML utilities depend on `gopkg.in/yaml.v3` -* `github.com/mailru/easyjson v0.7.7` + +[license-badge]: http://img.shields.io/badge/license-Apache%20v2-orange.svg +[license-url]: https://github.com/go-openapi/swag/?tab=Apache-2.0-1-ov-file#readme + +[goversion-badge]: https://img.shields.io/github/go-mod/go-version/go-openapi/swag +[goversion-url]: https://github.com/go-openapi/swag/blob/master/go.mod +[top-badge]: https://img.shields.io/github/languages/top/go-openapi/swag +[commits-badge]: https://img.shields.io/github/commits-since/go-openapi/swag/latest + +[contributing-doc-site]: https://go-openapi.github.io/doc-site/contributing/contributing/index.html +[maintainers-doc-site]: https://go-openapi.github.io/doc-site/maintainers/index.html +[style-doc-site]: https://go-openapi.github.io/doc-site/contributing/style/index.html diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/SECURITY.md b/tests/e2e/vendor/github.com/go-openapi/swag/SECURITY.md new file mode 100644 index 0000000000..1fea2c5736 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/SECURITY.md @@ -0,0 +1,37 @@ +# Security Policy + +This policy outlines the commitment and practices of the go-openapi maintainers regarding security. + +## Supported Versions + +| Version | Supported | +| ------- | ------------------ | +| O.x | :white_check_mark: | + +## Vulnerability checks in place + +This repository uses automated vulnerability scans, at every merged commit and at least once a week. + +We use: + +* [`GitHub CodeQL`][codeql-url] +* [`trivy`][trivy-url] +* [`govulncheck`][govulncheck-url] + +Reports are centralized in github security reports and visible only to the maintainers. + +## Reporting a vulnerability + +If you become aware of a security vulnerability that affects the current repository, +**please report it privately to the maintainers** +rather than opening a publicly visible GitHub issue. + +Please follow the instructions provided by github to [Privately report a security vulnerability][github-guidance-url]. + +> [!NOTE] +> On Github, navigate to the project's "Security" tab then click on "Report a vulnerability". + +[codeql-url]: https://github.com/github/codeql +[trivy-url]: https://trivy.dev/docs/latest/getting-started +[govulncheck-url]: https://go.dev/blog/govulncheck +[github-guidance-url]: https://docs.github.com/en/code-security/security-advisories/guidance-on-reporting-and-writing-information-about-vulnerabilities/privately-reporting-a-security-vulnerability#privately-reporting-a-security-vulnerability diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. For the purposes + of this License, Derivative Works shall not include works that remain + separable from, or merely link (or bind by name) to the interfaces of, + the Work and Derivative Works thereof. + + "Contribution" shall mean any work of authorship, including + the original version of the Work and any modifications or additions + to that Work or Derivative Works thereof, that is intentionally + submitted to Licensor for inclusion in the Work by the copyright owner + or by an individual or Legal Entity authorized to submit on behalf of + the copyright owner. For the purposes of this definition, "submitted" + means any form of electronic, verbal, or written communication sent + to the Licensor or its representatives, including but not limited to + communication on electronic mailing lists, source code control systems, + and issue tracking systems that are managed by, or on behalf of, the + Licensor for the purpose of discussing and improving the Work, but + excluding communication that is conspicuously marked or otherwise + designated in writing by the copyright owner as "Not a Contribution." + + "Contributor" shall mean Licensor and any individual or Legal Entity + on behalf of whom a Contribution has been received by Licensor and + subsequently incorporated within the Work. + + 2. Grant of Copyright License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + copyright license to reproduce, prepare Derivative Works of, + publicly display, publicly perform, sublicense, and distribute the + Work and such Derivative Works in Source or Object form. + + 3. Grant of Patent License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + (except as stated in this section) patent license to make, have made, + use, offer to sell, sell, import, and otherwise transfer the Work, + where such license applies only to those patent claims licensable + by such Contributor that are necessarily infringed by their + Contribution(s) alone or by combination of their Contribution(s) + with the Work to which such Contribution(s) was submitted. If You + institute patent litigation against any entity (including a + cross-claim or counterclaim in a lawsuit) alleging that the Work + or a Contribution incorporated within the Work constitutes direct + or contributory patent infringement, then any patent licenses + granted to You under this License for that Work shall terminate + as of the date such litigation is filed. + + 4. Redistribution. You may reproduce and distribute copies of the + Work or Derivative Works thereof in any medium, with or without + modifications, and in Source or Object form, provided that You + meet the following conditions: + + (a) You must give any other recipients of the Work or + Derivative Works a copy of this License; and + + (b) You must cause any modified files to carry prominent notices + stating that You changed the files; and + + (c) You must retain, in the Source form of any Derivative Works + that You distribute, all copyright, patent, trademark, and + attribution notices from the Source form of the Work, + excluding those notices that do not pertain to any part of + the Derivative Works; and + + (d) If the Work includes a "NOTICE" text file as part of its + distribution, then any Derivative Works that You distribute must + include a readable copy of the attribution notices contained + within such NOTICE file, excluding those notices that do not + pertain to any part of the Derivative Works, in at least one + of the following places: within a NOTICE text file distributed + as part of the Derivative Works; within the Source form or + documentation, if provided along with the Derivative Works; or, + within a display generated by the Derivative Works, if and + wherever such third-party notices normally appear. The contents + of the NOTICE file are for informational purposes only and + do not modify the License. You may add Your own attribution + notices within Derivative Works that You distribute, alongside + or as an addendum to the NOTICE text from the Work, provided + that such additional attribution notices cannot be construed + as modifying the License. + + You may add Your own copyright statement to Your modifications and + may provide additional or different license terms and conditions + for use, reproduction, or distribution of Your modifications, or + for any such Derivative Works as a whole, provided Your use, + reproduction, and distribution of the Work otherwise complies with + the conditions stated in this License. + + 5. Submission of Contributions. Unless You explicitly state otherwise, + any Contribution intentionally submitted for inclusion in the Work + by You to the Licensor shall be under the terms and conditions of + this License, without any additional terms or conditions. + Notwithstanding the above, nothing herein shall supersede or modify + the terms of any separate license agreement you may have executed + with Licensor regarding such Contributions. + + 6. Trademarks. This License does not grant permission to use the trade + names, trademarks, service marks, or product names of the Licensor, + except as required for reasonable and customary use in describing the + origin of the Work and reproducing the content of the NOTICE file. + + 7. Disclaimer of Warranty. Unless required by applicable law or + agreed to in writing, Licensor provides the Work (and each + Contributor provides its Contributions) on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or + implied, including, without limitation, any warranties or conditions + of TITLE, NON-INFRINGEMENT, MERCHANTABILITY, or FITNESS FOR A + PARTICULAR PURPOSE. You are solely responsible for determining the + appropriateness of using or redistributing the Work and assume any + risks associated with Your exercise of permissions under this License. + + 8. Limitation of Liability. In no event and under no legal theory, + whether in tort (including negligence), contract, or otherwise, + unless required by applicable law (such as deliberate and grossly + negligent acts) or agreed to in writing, shall any Contributor be + liable to You for damages, including any direct, indirect, special, + incidental, or consequential damages of any character arising as a + result of this License or out of the use or inability to use the + Work (including but not limited to damages for loss of goodwill, + work stoppage, computer failure or malfunction, or any and all + other commercial damages or losses), even if such Contributor + has been advised of the possibility of such damages. + + 9. Accepting Warranty or Additional Liability. While redistributing + the Work or Derivative Works thereof, You may choose to offer, + and charge a fee for, acceptance of support, warranty, indemnity, + or other liability obligations and/or rights consistent with this + License. However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + APPENDIX: How to apply the Apache License to your work. + + To apply the Apache License to your work, attach the following + boilerplate notice, with the fields enclosed by brackets "[]" + replaced with your own identifying information. (Don't include + the brackets!) The text should be enclosed in the appropriate + comment syntax for the file format. We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils/cmd_utils.go b/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils/cmd_utils.go new file mode 100644 index 0000000000..6c7bbb26f0 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils/cmd_utils.go @@ -0,0 +1,13 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package cmdutils + +// CommandLineOptionsGroup represents a group of user-defined command line options. +// +// This is for instance used to configure command line arguments in API servers generated by go-swagger. +type CommandLineOptionsGroup struct { + ShortDescription string + LongDescription string + Options any +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils/doc.go new file mode 100644 index 0000000000..31f2c37538 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils/doc.go @@ -0,0 +1,5 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package cmdutils brings helpers for CLIs produced by go-openapi +package cmdutils diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils_iface.go new file mode 100644 index 0000000000..bd0c1fc128 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/cmdutils_iface.go @@ -0,0 +1,11 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import "github.com/go-openapi/swag/cmdutils" + +// CommandLineOptionsGroup represents a group of user-defined command line options. +// +// Deprecated: use [cmdutils.CommandLineOptionsGroup] instead. +type CommandLineOptionsGroup = cmdutils.CommandLineOptionsGroup diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/conv/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/conv/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/conv/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. For the purposes + of this License, Derivative Works shall not include works that remain + separable from, or merely link (or bind by name) to the interfaces of, + the Work and Derivative Works thereof. + + "Contribution" shall mean any work of authorship, including + the original version of the Work and any modifications or additions + to that Work or Derivative Works thereof, that is intentionally + submitted to Licensor for inclusion in the Work by the copyright owner + or by an individual or Legal Entity authorized to submit on behalf of + the copyright owner. For the purposes of this definition, "submitted" + means any form of electronic, verbal, or written communication sent + to the Licensor or its representatives, including but not limited to + communication on electronic mailing lists, source code control systems, + and issue tracking systems that are managed by, or on behalf of, the + Licensor for the purpose of discussing and improving the Work, but + excluding communication that is conspicuously marked or otherwise + designated in writing by the copyright owner as "Not a Contribution." + + "Contributor" shall mean Licensor and any individual or Legal Entity + on behalf of whom a Contribution has been received by Licensor and + subsequently incorporated within the Work. + + 2. Grant of Copyright License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + copyright license to reproduce, prepare Derivative Works of, + publicly display, publicly perform, sublicense, and distribute the + Work and such Derivative Works in Source or Object form. + + 3. Grant of Patent License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + (except as stated in this section) patent license to make, have made, + use, offer to sell, sell, import, and otherwise transfer the Work, + where such license applies only to those patent claims licensable + by such Contributor that are necessarily infringed by their + Contribution(s) alone or by combination of their Contribution(s) + with the Work to which such Contribution(s) was submitted. If You + institute patent litigation against any entity (including a + cross-claim or counterclaim in a lawsuit) alleging that the Work + or a Contribution incorporated within the Work constitutes direct + or contributory patent infringement, then any patent licenses + granted to You under this License for that Work shall terminate + as of the date such litigation is filed. + + 4. Redistribution. You may reproduce and distribute copies of the + Work or Derivative Works thereof in any medium, with or without + modifications, and in Source or Object form, provided that You + meet the following conditions: + + (a) You must give any other recipients of the Work or + Derivative Works a copy of this License; and + + (b) You must cause any modified files to carry prominent notices + stating that You changed the files; and + + (c) You must retain, in the Source form of any Derivative Works + that You distribute, all copyright, patent, trademark, and + attribution notices from the Source form of the Work, + excluding those notices that do not pertain to any part of + the Derivative Works; and + + (d) If the Work includes a "NOTICE" text file as part of its + distribution, then any Derivative Works that You distribute must + include a readable copy of the attribution notices contained + within such NOTICE file, excluding those notices that do not + pertain to any part of the Derivative Works, in at least one + of the following places: within a NOTICE text file distributed + as part of the Derivative Works; within the Source form or + documentation, if provided along with the Derivative Works; or, + within a display generated by the Derivative Works, if and + wherever such third-party notices normally appear. The contents + of the NOTICE file are for informational purposes only and + do not modify the License. You may add Your own attribution + notices within Derivative Works that You distribute, alongside + or as an addendum to the NOTICE text from the Work, provided + that such additional attribution notices cannot be construed + as modifying the License. + + You may add Your own copyright statement to Your modifications and + may provide additional or different license terms and conditions + for use, reproduction, or distribution of Your modifications, or + for any such Derivative Works as a whole, provided Your use, + reproduction, and distribution of the Work otherwise complies with + the conditions stated in this License. + + 5. Submission of Contributions. Unless You explicitly state otherwise, + any Contribution intentionally submitted for inclusion in the Work + by You to the Licensor shall be under the terms and conditions of + this License, without any additional terms or conditions. + Notwithstanding the above, nothing herein shall supersede or modify + the terms of any separate license agreement you may have executed + with Licensor regarding such Contributions. + + 6. Trademarks. This License does not grant permission to use the trade + names, trademarks, service marks, or product names of the Licensor, + except as required for reasonable and customary use in describing the + origin of the Work and reproducing the content of the NOTICE file. + + 7. Disclaimer of Warranty. Unless required by applicable law or + agreed to in writing, Licensor provides the Work (and each + Contributor provides its Contributions) on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or + implied, including, without limitation, any warranties or conditions + of TITLE, NON-INFRINGEMENT, MERCHANTABILITY, or FITNESS FOR A + PARTICULAR PURPOSE. You are solely responsible for determining the + appropriateness of using or redistributing the Work and assume any + risks associated with Your exercise of permissions under this License. + + 8. Limitation of Liability. In no event and under no legal theory, + whether in tort (including negligence), contract, or otherwise, + unless required by applicable law (such as deliberate and grossly + negligent acts) or agreed to in writing, shall any Contributor be + liable to You for damages, including any direct, indirect, special, + incidental, or consequential damages of any character arising as a + result of this License or out of the use or inability to use the + Work (including but not limited to damages for loss of goodwill, + work stoppage, computer failure or malfunction, or any and all + other commercial damages or losses), even if such Contributor + has been advised of the possibility of such damages. + + 9. Accepting Warranty or Additional Liability. While redistributing + the Work or Derivative Works thereof, You may choose to offer, + and charge a fee for, acceptance of support, warranty, indemnity, + or other liability obligations and/or rights consistent with this + License. However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + APPENDIX: How to apply the Apache License to your work. + + To apply the Apache License to your work, attach the following + boilerplate notice, with the fields enclosed by brackets "[]" + replaced with your own identifying information. (Don't include + the brackets!) The text should be enclosed in the appropriate + comment syntax for the file format. We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/conv/convert.go b/tests/e2e/vendor/github.com/go-openapi/swag/conv/convert.go new file mode 100644 index 0000000000..f205c39134 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/conv/convert.go @@ -0,0 +1,161 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package conv + +import ( + "math" + "strconv" + "strings" +) + +// same as ECMA Number.MAX_SAFE_INTEGER and Number.MIN_SAFE_INTEGER +const ( + maxJSONFloat = float64(1<<53 - 1) // 9007199254740991.0 2^53 - 1 + minJSONFloat = -float64(1<<53 - 1) //-9007199254740991.0 -2^53 - 1 + epsilon float64 = 1e-9 +) + +// IsFloat64AJSONInteger allows for integers [-2^53, 2^53-1] inclusive. +func IsFloat64AJSONInteger(f float64) bool { + if math.IsNaN(f) || math.IsInf(f, 0) || f < minJSONFloat || f > maxJSONFloat { + return false + } + rounded := math.Round(f) + if f == rounded { + return true + } + if rounded == 0 { // f = 0.0 exited above + return false + } + + diff := math.Abs(f - rounded) + if diff == 0 { + return true + } + + // relative error Abs{f - Round(f)) / Round(f)} < ε ; Round(f) + return diff < epsilon*math.Abs(rounded) +} + +// ConvertFloat turns a string into a float numerical value. +func ConvertFloat[T Float](str string) (T, error) { + var v T + f, err := strconv.ParseFloat(str, bitsize(v)) + if err != nil { + return 0, err + } + + return T(f), nil +} + +// ConvertInteger turns a string into a signed integer. +func ConvertInteger[T Signed](str string) (T, error) { + var v T + f, err := strconv.ParseInt(str, 10, bitsize(v)) + if err != nil { + return 0, err + } + + return T(f), nil +} + +// ConvertUinteger turns a string into an unsigned integer. +func ConvertUinteger[T Unsigned](str string) (T, error) { + var v T + f, err := strconv.ParseUint(str, 10, bitsize(v)) + if err != nil { + return 0, err + } + + return T(f), nil +} + +// ConvertBool turns a string into a boolean. +// +// It supports a few more "true" strings than [strconv.ParseBool]: +// +// - it is not case sensitive ("trUe" or "FalsE" work) +// - "ok", "yes", "y", "on", "selected", "checked", "enabled" are all true +// - everything that is not true is false: there is never an actual error returned +func ConvertBool(str string) (bool, error) { + switch strings.ToLower(str) { + case "true", + "1", + "yes", + "ok", + "y", + "on", + "selected", + "checked", + "t", + "enabled": + return true, nil + default: + return false, nil + } +} + +// ConvertFloat32 turns a string into a float32. +func ConvertFloat32(str string) (float32, error) { return ConvertFloat[float32](str) } + +// ConvertFloat64 turns a string into a float64 +func ConvertFloat64(str string) (float64, error) { return ConvertFloat[float64](str) } + +// ConvertInt8 turns a string into an int8 +func ConvertInt8(str string) (int8, error) { return ConvertInteger[int8](str) } + +// ConvertInt16 turns a string into an int16 +func ConvertInt16(str string) (int16, error) { + i, err := strconv.ParseInt(str, 10, 16) + if err != nil { + return 0, err + } + return int16(i), nil +} + +// ConvertInt32 turns a string into an int32 +func ConvertInt32(str string) (int32, error) { + i, err := strconv.ParseInt(str, 10, 32) + if err != nil { + return 0, err + } + return int32(i), nil +} + +// ConvertInt64 turns a string into an int64 +func ConvertInt64(str string) (int64, error) { + return strconv.ParseInt(str, 10, 64) +} + +// ConvertUint8 turns a string into an uint8 +func ConvertUint8(str string) (uint8, error) { + i, err := strconv.ParseUint(str, 10, 8) + if err != nil { + return 0, err + } + return uint8(i), nil +} + +// ConvertUint16 turns a string into an uint16 +func ConvertUint16(str string) (uint16, error) { + i, err := strconv.ParseUint(str, 10, 16) + if err != nil { + return 0, err + } + return uint16(i), nil +} + +// ConvertUint32 turns a string into an uint32 +func ConvertUint32(str string) (uint32, error) { + i, err := strconv.ParseUint(str, 10, 32) + if err != nil { + return 0, err + } + return uint32(i), nil +} + +// ConvertUint64 turns a string into an uint64 +func ConvertUint64(str string) (uint64, error) { + return strconv.ParseUint(str, 10, 64) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/conv/convert_types.go b/tests/e2e/vendor/github.com/go-openapi/swag/conv/convert_types.go new file mode 100644 index 0000000000..cf4c6495eb --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/conv/convert_types.go @@ -0,0 +1,72 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package conv + +// Unlicensed credits (idea, concept) +// +// The idea to convert values to pointers and the other way around, was inspired, eons ago, by the aws go sdk. +// +// Nowadays, all sensible API sdk's expose a similar functionality. + +// Pointer returns a pointer to the value passed in. +func Pointer[T any](v T) *T { + return &v +} + +// Value returns a shallow copy of the value of the pointer passed in. +// +// If the pointer is nil, the returned value is the zero value. +func Value[T any](v *T) T { + if v != nil { + return *v + } + + var zero T + return zero +} + +// PointerSlice converts a slice of values into a slice of pointers. +func PointerSlice[T any](src []T) []*T { + dst := make([]*T, len(src)) + for i := 0; i < len(src); i++ { + dst[i] = &(src[i]) + } + return dst +} + +// ValueSlice converts a slice of pointers into a slice of values. +// +// nil elements are zero values. +func ValueSlice[T any](src []*T) []T { + dst := make([]T, len(src)) + for i := 0; i < len(src); i++ { + if src[i] != nil { + dst[i] = *(src[i]) + } + } + return dst +} + +// PointerMap converts a map of values into a map of pointers. +func PointerMap[K comparable, T any](src map[K]T) map[K]*T { + dst := make(map[K]*T) + for k, val := range src { + v := val + dst[k] = &v + } + return dst +} + +// ValueMap converts a map of pointers into a map of values. +// +// nil elements are skipped. +func ValueMap[K comparable, T any](src map[K]*T) map[K]T { + dst := make(map[K]T) + for k, val := range src { + if val != nil { + dst[k] = *val + } + } + return dst +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/conv/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/conv/doc.go new file mode 100644 index 0000000000..1bd6ead6e2 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/conv/doc.go @@ -0,0 +1,15 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package conv exposes utilities to convert types. +// +// The Convert and Format families of functions are essentially a shorthand to [strconv] functions, +// using the decimal representation of numbers. +// +// Features: +// +// - from string representation to value ("Convert*") and reciprocally ("Format*") +// - from pointer to value ([Value]) and reciprocally ([Pointer]) +// - from slice of values to slice of pointers ([PointerSlice]) and reciprocally ([ValueSlice]) +// - from map of values to map of pointers ([PointerMap]) and reciprocally ([ValueMap]) +package conv diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/conv/format.go b/tests/e2e/vendor/github.com/go-openapi/swag/conv/format.go new file mode 100644 index 0000000000..5b87b8e146 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/conv/format.go @@ -0,0 +1,28 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package conv + +import ( + "strconv" +) + +// FormatInteger turns an integer type into a string. +func FormatInteger[T Signed](value T) string { + return strconv.FormatInt(int64(value), 10) +} + +// FormatUinteger turns an unsigned integer type into a string. +func FormatUinteger[T Unsigned](value T) string { + return strconv.FormatUint(uint64(value), 10) +} + +// FormatFloat turns a floating point numerical value into a string. +func FormatFloat[T Float](value T) string { + return strconv.FormatFloat(float64(value), 'f', -1, bitsize(value)) +} + +// FormatBool turns a boolean into a string. +func FormatBool(value bool) string { + return strconv.FormatBool(value) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/conv/sizeof.go b/tests/e2e/vendor/github.com/go-openapi/swag/conv/sizeof.go new file mode 100644 index 0000000000..4943465573 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/conv/sizeof.go @@ -0,0 +1,20 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package conv + +import "unsafe" + +// bitsize returns the size in bits of a type. +// +// NOTE: [unsafe.SizeOf] simply returns the size in bytes of the value. +// For primitive types T, the generic stencil is precompiled and this value +// is resolved at compile time, resulting in an immediate call to [strconv.ParseFloat]. +// +// We may leave up to the go compiler to simplify this function into a +// constant value, which happens in practice at least for primitive types +// (e.g. numerical types). +func bitsize[T Numerical](value T) int { + const bitsPerByte = 8 + return int(unsafe.Sizeof(value)) * bitsPerByte +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/conv/type_constraints.go b/tests/e2e/vendor/github.com/go-openapi/swag/conv/type_constraints.go new file mode 100644 index 0000000000..81135e827e --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/conv/type_constraints.go @@ -0,0 +1,29 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package conv + +type ( + // these type constraints are redefined after golang.org/x/exp/constraints, + // because importing that package causes an undesired go upgrade. + + // Signed integer types, cf. [golang.org/x/exp/constraints.Signed] + Signed interface { + ~int | ~int8 | ~int16 | ~int32 | ~int64 + } + + // Unsigned integer types, cf. [golang.org/x/exp/constraints.Unsigned] + Unsigned interface { + ~uint | ~uint8 | ~uint16 | ~uint32 | ~uint64 | ~uintptr + } + + // Float numerical types, cf. [golang.org/x/exp/constraints.Float] + Float interface { + ~float32 | ~float64 + } + + // Numerical types + Numerical interface { + Signed | Unsigned | Float + } +) diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/conv_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/conv_iface.go new file mode 100644 index 0000000000..eea7b2e56e --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/conv_iface.go @@ -0,0 +1,486 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import ( + "time" + + "github.com/go-openapi/swag/conv" +) + +// IsFloat64AJSONInteger allows for integers [-2^53, 2^53-1] inclusive. +// +// Deprecated: use [conv.IsFloat64AJSONInteger] instead. +func IsFloat64AJSONInteger(f float64) bool { return conv.IsFloat64AJSONInteger(f) } + +// ConvertBool turns a string into a boolean. +// +// Deprecated: use [conv.ConvertBool] instead. +func ConvertBool(str string) (bool, error) { return conv.ConvertBool(str) } + +// ConvertFloat32 turns a string into a float32. +// +// Deprecated: use [conv.ConvertFloat32] instead. Alternatively, you may use the generic version [conv.ConvertFloat]. +func ConvertFloat32(str string) (float32, error) { return conv.ConvertFloat[float32](str) } + +// ConvertFloat64 turns a string into a float64. +// +// Deprecated: use [conv.ConvertFloat64] instead. Alternatively, you may use the generic version [conv.ConvertFloat]. +func ConvertFloat64(str string) (float64, error) { return conv.ConvertFloat[float64](str) } + +// ConvertInt8 turns a string into an int8. +// +// Deprecated: use [conv.ConvertInt8] instead. Alternatively, you may use the generic version [conv.ConvertInteger]. +func ConvertInt8(str string) (int8, error) { return conv.ConvertInteger[int8](str) } + +// ConvertInt16 turns a string into an int16. +// +// Deprecated: use [conv.ConvertInt16] instead. Alternatively, you may use the generic version [conv.ConvertInteger]. +func ConvertInt16(str string) (int16, error) { return conv.ConvertInteger[int16](str) } + +// ConvertInt32 turns a string into an int32. +// +// Deprecated: use [conv.ConvertInt32] instead. Alternatively, you may use the generic version [conv.ConvertInteger]. +func ConvertInt32(str string) (int32, error) { return conv.ConvertInteger[int32](str) } + +// ConvertInt64 turns a string into an int64. +// +// Deprecated: use [conv.ConvertInt64] instead. Alternatively, you may use the generic version [conv.ConvertInteger]. +func ConvertInt64(str string) (int64, error) { return conv.ConvertInteger[int64](str) } + +// ConvertUint8 turns a string into an uint8. +// +// Deprecated: use [conv.ConvertUint8] instead. Alternatively, you may use the generic version [conv.ConvertUinteger]. +func ConvertUint8(str string) (uint8, error) { return conv.ConvertUinteger[uint8](str) } + +// ConvertUint16 turns a string into an uint16. +// +// Deprecated: use [conv.ConvertUint16] instead. Alternatively, you may use the generic version [conv.ConvertUinteger]. +func ConvertUint16(str string) (uint16, error) { return conv.ConvertUinteger[uint16](str) } + +// ConvertUint32 turns a string into an uint32. +// +// Deprecated: use [conv.ConvertUint32] instead. Alternatively, you may use the generic version [conv.ConvertUinteger]. +func ConvertUint32(str string) (uint32, error) { return conv.ConvertUinteger[uint32](str) } + +// ConvertUint64 turns a string into an uint64. +// +// Deprecated: use [conv.ConvertUint64] instead. Alternatively, you may use the generic version [conv.ConvertUinteger]. +func ConvertUint64(str string) (uint64, error) { return conv.ConvertUinteger[uint64](str) } + +// FormatBool turns a boolean into a string. +// +// Deprecated: use [conv.FormatBool] instead. +func FormatBool(value bool) string { return conv.FormatBool(value) } + +// FormatFloat32 turns a float32 into a string. +// +// Deprecated: use [conv.FormatFloat] instead. +func FormatFloat32(value float32) string { return conv.FormatFloat(value) } + +// FormatFloat64 turns a float64 into a string. +// +// Deprecated: use [conv.FormatFloat] instead. +func FormatFloat64(value float64) string { return conv.FormatFloat(value) } + +// FormatInt8 turns an int8 into a string. +// +// Deprecated: use [conv.FormatInteger] instead. +func FormatInt8(value int8) string { return conv.FormatInteger(value) } + +// FormatInt16 turns an int16 into a string. +// +// Deprecated: use [conv.FormatInteger] instead. +func FormatInt16(value int16) string { return conv.FormatInteger(value) } + +// FormatInt32 turns an int32 into a string +// +// Deprecated: use [conv.FormatInteger] instead. +func FormatInt32(value int32) string { return conv.FormatInteger(value) } + +// FormatInt64 turns an int64 into a string. +// +// Deprecated: use [conv.FormatInteger] instead. +func FormatInt64(value int64) string { return conv.FormatInteger(value) } + +// FormatUint8 turns an uint8 into a string. +// +// Deprecated: use [conv.FormatUinteger] instead. +func FormatUint8(value uint8) string { return conv.FormatUinteger(value) } + +// FormatUint16 turns an uint16 into a string. +// +// Deprecated: use [conv.FormatUinteger] instead. +func FormatUint16(value uint16) string { return conv.FormatUinteger(value) } + +// FormatUint32 turns an uint32 into a string. +// +// Deprecated: use [conv.FormatUinteger] instead. +func FormatUint32(value uint32) string { return conv.FormatUinteger(value) } + +// FormatUint64 turns an uint64 into a string. +// +// Deprecated: use [conv.FormatUinteger] instead. +func FormatUint64(value uint64) string { return conv.FormatUinteger(value) } + +// String turn a pointer to of the string value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func String(v string) *string { return conv.Pointer(v) } + +// StringValue turn the value of the string pointer passed in or +// "" if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func StringValue(v *string) string { return conv.Value(v) } + +// StringSlice converts a slice of string values into a slice of string pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func StringSlice(src []string) []*string { return conv.PointerSlice(src) } + +// StringValueSlice converts a slice of string pointers into a slice of string values. +// +// Deprecated: use [conv.ValueSlice] instead. +func StringValueSlice(src []*string) []string { return conv.ValueSlice(src) } + +// StringMap converts a string map of string values into a string map of string pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func StringMap(src map[string]string) map[string]*string { return conv.PointerMap(src) } + +// StringValueMap converts a string map of string pointers into a string map of string values. +// +// Deprecated: use [conv.ValueMap] instead. +func StringValueMap(src map[string]*string) map[string]string { return conv.ValueMap(src) } + +// Bool turn a pointer to of the bool value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Bool(v bool) *bool { return conv.Pointer(v) } + +// BoolValue turn the value of the bool pointer passed in or false if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func BoolValue(v *bool) bool { return conv.Value(v) } + +// BoolSlice converts a slice of bool values into a slice of bool pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func BoolSlice(src []bool) []*bool { return conv.PointerSlice(src) } + +// BoolValueSlice converts a slice of bool pointers into a slice of bool values. +// +// Deprecated: use [conv.ValueSlice] instead. +func BoolValueSlice(src []*bool) []bool { return conv.ValueSlice(src) } + +// BoolMap converts a string map of bool values into a string map of bool pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func BoolMap(src map[string]bool) map[string]*bool { return conv.PointerMap(src) } + +// BoolValueMap converts a string map of bool pointers into a string map of bool values. +// +// Deprecated: use [conv.ValueMap] instead. +func BoolValueMap(src map[string]*bool) map[string]bool { return conv.ValueMap(src) } + +// Int turn a pointer to of the int value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Int(v int) *int { return conv.Pointer(v) } + +// IntValue turn the value of the int pointer passed in or 0 if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func IntValue(v *int) int { return conv.Value(v) } + +// IntSlice converts a slice of int values into a slice of int pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func IntSlice(src []int) []*int { return conv.PointerSlice(src) } + +// IntValueSlice converts a slice of int pointers into a slice of int values. +// +// Deprecated: use [conv.ValueSlice] instead. +func IntValueSlice(src []*int) []int { return conv.ValueSlice(src) } + +// IntMap converts a string map of int values into a string map of int pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func IntMap(src map[string]int) map[string]*int { return conv.PointerMap(src) } + +// IntValueMap converts a string map of int pointers into a string map of int values. +// +// Deprecated: use [conv.ValueMap] instead. +func IntValueMap(src map[string]*int) map[string]int { return conv.ValueMap(src) } + +// Int32 turn a pointer to of the int32 value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Int32(v int32) *int32 { return conv.Pointer(v) } + +// Int32Value turn the value of the int32 pointer passed in or 0 if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func Int32Value(v *int32) int32 { return conv.Value(v) } + +// Int32Slice converts a slice of int32 values into a slice of int32 pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func Int32Slice(src []int32) []*int32 { return conv.PointerSlice(src) } + +// Int32ValueSlice converts a slice of int32 pointers into a slice of int32 values. +// +// Deprecated: use [conv.ValueSlice] instead. +func Int32ValueSlice(src []*int32) []int32 { return conv.ValueSlice(src) } + +// Int32Map converts a string map of int32 values into a string map of int32 pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func Int32Map(src map[string]int32) map[string]*int32 { return conv.PointerMap(src) } + +// Int32ValueMap converts a string map of int32 pointers into a string map of int32 values. +// +// Deprecated: use [conv.ValueMap] instead. +func Int32ValueMap(src map[string]*int32) map[string]int32 { return conv.ValueMap(src) } + +// Int64 turn a pointer to of the int64 value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Int64(v int64) *int64 { return conv.Pointer(v) } + +// Int64Value turn the value of the int64 pointer passed in or 0 if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func Int64Value(v *int64) int64 { return conv.Value(v) } + +// Int64Slice converts a slice of int64 values into a slice of int64 pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func Int64Slice(src []int64) []*int64 { return conv.PointerSlice(src) } + +// Int64ValueSlice converts a slice of int64 pointers into a slice of int64 values. +// +// Deprecated: use [conv.ValueSlice] instead. +func Int64ValueSlice(src []*int64) []int64 { return conv.ValueSlice(src) } + +// Int64Map converts a string map of int64 values into a string map of int64 pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func Int64Map(src map[string]int64) map[string]*int64 { return conv.PointerMap(src) } + +// Int64ValueMap converts a string map of int64 pointers into a string map of int64 values. +// +// Deprecated: use [conv.ValueMap] instead. +func Int64ValueMap(src map[string]*int64) map[string]int64 { return conv.ValueMap(src) } + +// Uint16 turn a pointer to of the uint16 value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Uint16(v uint16) *uint16 { return conv.Pointer(v) } + +// Uint16Value turn the value of the uint16 pointer passed in or 0 if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func Uint16Value(v *uint16) uint16 { return conv.Value(v) } + +// Uint16Slice converts a slice of uint16 values into a slice of uint16 pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func Uint16Slice(src []uint16) []*uint16 { return conv.PointerSlice(src) } + +// Uint16ValueSlice converts a slice of uint16 pointers into a slice of uint16 values. +// +// Deprecated: use [conv.ValueSlice] instead. +func Uint16ValueSlice(src []*uint16) []uint16 { return conv.ValueSlice(src) } + +// Uint16Map converts a string map of uint16 values into a string map of uint16 pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func Uint16Map(src map[string]uint16) map[string]*uint16 { return conv.PointerMap(src) } + +// Uint16ValueMap converts a string map of uint16 pointers into a string map of uint16 values. +// +// Deprecated: use [conv.ValueMap] instead. +func Uint16ValueMap(src map[string]*uint16) map[string]uint16 { return conv.ValueMap(src) } + +// Uint turn a pointer to of the uint value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Uint(v uint) *uint { return conv.Pointer(v) } + +// UintValue turn the value of the uint pointer passed in or 0 if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func UintValue(v *uint) uint { return conv.Value(v) } + +// UintSlice converts a slice of uint values into a slice of uint pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func UintSlice(src []uint) []*uint { return conv.PointerSlice(src) } + +// UintValueSlice converts a slice of uint pointers into a slice of uint values. +// +// Deprecated: use [conv.ValueSlice] instead. +func UintValueSlice(src []*uint) []uint { return conv.ValueSlice(src) } + +// UintMap converts a string map of uint values into a string map of uint pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func UintMap(src map[string]uint) map[string]*uint { return conv.PointerMap(src) } + +// UintValueMap converts a string map of uint pointers into a string map of uint values. +// +// Deprecated: use [conv.ValueMap] instead. +func UintValueMap(src map[string]*uint) map[string]uint { return conv.ValueMap(src) } + +// Uint32 turn a pointer to of the uint32 value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Uint32(v uint32) *uint32 { return conv.Pointer(v) } + +// Uint32Value turn the value of the uint32 pointer passed in or 0 if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func Uint32Value(v *uint32) uint32 { return conv.Value(v) } + +// Uint32Slice converts a slice of uint32 values into a slice of uint32 pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func Uint32Slice(src []uint32) []*uint32 { return conv.PointerSlice(src) } + +// Uint32ValueSlice converts a slice of uint32 pointers into a slice of uint32 values. +// +// Deprecated: use [conv.ValueSlice] instead. +func Uint32ValueSlice(src []*uint32) []uint32 { return conv.ValueSlice(src) } + +// Uint32Map converts a string map of uint32 values into a string map of uint32 pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func Uint32Map(src map[string]uint32) map[string]*uint32 { return conv.PointerMap(src) } + +// Uint32ValueMap converts a string map of uint32 pointers into a string map of uint32 values. +// +// Deprecated: use [conv.ValueMap] instead. +func Uint32ValueMap(src map[string]*uint32) map[string]uint32 { return conv.ValueMap(src) } + +// Uint64 turn a pointer to of the uint64 value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Uint64(v uint64) *uint64 { return conv.Pointer(v) } + +// Uint64Value turn the value of the uint64 pointer passed in or 0 if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func Uint64Value(v *uint64) uint64 { return conv.Value(v) } + +// Uint64Slice converts a slice of uint64 values into a slice of uint64 pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func Uint64Slice(src []uint64) []*uint64 { return conv.PointerSlice(src) } + +// Uint64ValueSlice converts a slice of uint64 pointers into a slice of uint64 values. +// +// Deprecated: use [conv.ValueSlice] instead. +func Uint64ValueSlice(src []*uint64) []uint64 { return conv.ValueSlice(src) } + +// Uint64Map converts a string map of uint64 values into a string map of uint64 pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func Uint64Map(src map[string]uint64) map[string]*uint64 { return conv.PointerMap(src) } + +// Uint64ValueMap converts a string map of uint64 pointers into a string map of uint64 values. +// +// Deprecated: use [conv.ValueMap] instead. +func Uint64ValueMap(src map[string]*uint64) map[string]uint64 { return conv.ValueMap(src) } + +// Float32 turn a pointer to of the float32 value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Float32(v float32) *float32 { return conv.Pointer(v) } + +// Float32Value turn the value of the float32 pointer passed in or 0 if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func Float32Value(v *float32) float32 { return conv.Value(v) } + +// Float32Slice converts a slice of float32 values into a slice of float32 pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func Float32Slice(src []float32) []*float32 { return conv.PointerSlice(src) } + +// Float32ValueSlice converts a slice of float32 pointers into a slice of float32 values. +// +// Deprecated: use [conv.ValueSlice] instead. +func Float32ValueSlice(src []*float32) []float32 { return conv.ValueSlice(src) } + +// Float32Map converts a string map of float32 values into a string map of float32 pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func Float32Map(src map[string]float32) map[string]*float32 { return conv.PointerMap(src) } + +// Float32ValueMap converts a string map of float32 pointers into a string map of float32 values. +// +// Deprecated: use [conv.ValueMap] instead. +func Float32ValueMap(src map[string]*float32) map[string]float32 { return conv.ValueMap(src) } + +// Float64 turn a pointer to of the float64 value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Float64(v float64) *float64 { return conv.Pointer(v) } + +// Float64Value turn the value of the float64 pointer passed in or 0 if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func Float64Value(v *float64) float64 { return conv.Value(v) } + +// Float64Slice converts a slice of float64 values into a slice of float64 pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func Float64Slice(src []float64) []*float64 { return conv.PointerSlice(src) } + +// Float64ValueSlice converts a slice of float64 pointers into a slice of float64 values. +// +// Deprecated: use [conv.ValueSlice] instead. +func Float64ValueSlice(src []*float64) []float64 { return conv.ValueSlice(src) } + +// Float64Map converts a string map of float64 values into a string map of float64 pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func Float64Map(src map[string]float64) map[string]*float64 { return conv.PointerMap(src) } + +// Float64ValueMap converts a string map of float64 pointers into a string map of float64 values. +// +// Deprecated: use [conv.ValueMap] instead. +func Float64ValueMap(src map[string]*float64) map[string]float64 { return conv.ValueMap(src) } + +// Time turn a pointer to of the time.Time value passed in. +// +// Deprecated: use [conv.Pointer] instead. +func Time(v time.Time) *time.Time { return conv.Pointer(v) } + +// TimeValue turn the value of the time.Time pointer passed in or time.Time{} if the pointer is nil. +// +// Deprecated: use [conv.Value] instead. +func TimeValue(v *time.Time) time.Time { return conv.Value(v) } + +// TimeSlice converts a slice of time.Time values into a slice of time.Time pointers. +// +// Deprecated: use [conv.PointerSlice] instead. +func TimeSlice(src []time.Time) []*time.Time { return conv.PointerSlice(src) } + +// TimeValueSlice converts a slice of time.Time pointers into a slice of time.Time values +// +// Deprecated: use [conv.ValueSlice] instead. +func TimeValueSlice(src []*time.Time) []time.Time { return conv.ValueSlice(src) } + +// TimeMap converts a string map of time.Time values into a string map of time.Time pointers. +// +// Deprecated: use [conv.PointerMap] instead. +func TimeMap(src map[string]time.Time) map[string]*time.Time { return conv.PointerMap(src) } + +// TimeValueMap converts a string map of time.Time pointers into a string map of time.Time values. +// +// Deprecated: use [conv.ValueMap] instead. +func TimeValueMap(src map[string]*time.Time) map[string]time.Time { return conv.ValueMap(src) } diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/convert.go b/tests/e2e/vendor/github.com/go-openapi/swag/convert.go deleted file mode 100644 index fc085aeb8e..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/convert.go +++ /dev/null @@ -1,208 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import ( - "math" - "strconv" - "strings" -) - -// same as ECMA Number.MAX_SAFE_INTEGER and Number.MIN_SAFE_INTEGER -const ( - maxJSONFloat = float64(1<<53 - 1) // 9007199254740991.0 2^53 - 1 - minJSONFloat = -float64(1<<53 - 1) //-9007199254740991.0 -2^53 - 1 - epsilon float64 = 1e-9 -) - -// IsFloat64AJSONInteger allow for integers [-2^53, 2^53-1] inclusive -func IsFloat64AJSONInteger(f float64) bool { - if math.IsNaN(f) || math.IsInf(f, 0) || f < minJSONFloat || f > maxJSONFloat { - return false - } - fa := math.Abs(f) - g := float64(uint64(f)) - ga := math.Abs(g) - - diff := math.Abs(f - g) - - // more info: https://floating-point-gui.de/errors/comparison/#look-out-for-edge-cases - switch { - case f == g: // best case - return true - case f == float64(int64(f)) || f == float64(uint64(f)): // optimistic case - return true - case f == 0 || g == 0 || diff < math.SmallestNonzeroFloat64: // very close to 0 values - return diff < (epsilon * math.SmallestNonzeroFloat64) - } - // check the relative error - return diff/math.Min(fa+ga, math.MaxFloat64) < epsilon -} - -var evaluatesAsTrue map[string]struct{} - -func init() { - evaluatesAsTrue = map[string]struct{}{ - "true": {}, - "1": {}, - "yes": {}, - "ok": {}, - "y": {}, - "on": {}, - "selected": {}, - "checked": {}, - "t": {}, - "enabled": {}, - } -} - -// ConvertBool turn a string into a boolean -func ConvertBool(str string) (bool, error) { - _, ok := evaluatesAsTrue[strings.ToLower(str)] - return ok, nil -} - -// ConvertFloat32 turn a string into a float32 -func ConvertFloat32(str string) (float32, error) { - f, err := strconv.ParseFloat(str, 32) - if err != nil { - return 0, err - } - return float32(f), nil -} - -// ConvertFloat64 turn a string into a float64 -func ConvertFloat64(str string) (float64, error) { - return strconv.ParseFloat(str, 64) -} - -// ConvertInt8 turn a string into an int8 -func ConvertInt8(str string) (int8, error) { - i, err := strconv.ParseInt(str, 10, 8) - if err != nil { - return 0, err - } - return int8(i), nil -} - -// ConvertInt16 turn a string into an int16 -func ConvertInt16(str string) (int16, error) { - i, err := strconv.ParseInt(str, 10, 16) - if err != nil { - return 0, err - } - return int16(i), nil -} - -// ConvertInt32 turn a string into an int32 -func ConvertInt32(str string) (int32, error) { - i, err := strconv.ParseInt(str, 10, 32) - if err != nil { - return 0, err - } - return int32(i), nil -} - -// ConvertInt64 turn a string into an int64 -func ConvertInt64(str string) (int64, error) { - return strconv.ParseInt(str, 10, 64) -} - -// ConvertUint8 turn a string into an uint8 -func ConvertUint8(str string) (uint8, error) { - i, err := strconv.ParseUint(str, 10, 8) - if err != nil { - return 0, err - } - return uint8(i), nil -} - -// ConvertUint16 turn a string into an uint16 -func ConvertUint16(str string) (uint16, error) { - i, err := strconv.ParseUint(str, 10, 16) - if err != nil { - return 0, err - } - return uint16(i), nil -} - -// ConvertUint32 turn a string into an uint32 -func ConvertUint32(str string) (uint32, error) { - i, err := strconv.ParseUint(str, 10, 32) - if err != nil { - return 0, err - } - return uint32(i), nil -} - -// ConvertUint64 turn a string into an uint64 -func ConvertUint64(str string) (uint64, error) { - return strconv.ParseUint(str, 10, 64) -} - -// FormatBool turns a boolean into a string -func FormatBool(value bool) string { - return strconv.FormatBool(value) -} - -// FormatFloat32 turns a float32 into a string -func FormatFloat32(value float32) string { - return strconv.FormatFloat(float64(value), 'f', -1, 32) -} - -// FormatFloat64 turns a float64 into a string -func FormatFloat64(value float64) string { - return strconv.FormatFloat(value, 'f', -1, 64) -} - -// FormatInt8 turns an int8 into a string -func FormatInt8(value int8) string { - return strconv.FormatInt(int64(value), 10) -} - -// FormatInt16 turns an int16 into a string -func FormatInt16(value int16) string { - return strconv.FormatInt(int64(value), 10) -} - -// FormatInt32 turns an int32 into a string -func FormatInt32(value int32) string { - return strconv.Itoa(int(value)) -} - -// FormatInt64 turns an int64 into a string -func FormatInt64(value int64) string { - return strconv.FormatInt(value, 10) -} - -// FormatUint8 turns an uint8 into a string -func FormatUint8(value uint8) string { - return strconv.FormatUint(uint64(value), 10) -} - -// FormatUint16 turns an uint16 into a string -func FormatUint16(value uint16) string { - return strconv.FormatUint(uint64(value), 10) -} - -// FormatUint32 turns an uint32 into a string -func FormatUint32(value uint32) string { - return strconv.FormatUint(uint64(value), 10) -} - -// FormatUint64 turns an uint64 into a string -func FormatUint64(value uint64) string { - return strconv.FormatUint(value, 10) -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/convert_types.go b/tests/e2e/vendor/github.com/go-openapi/swag/convert_types.go deleted file mode 100644 index c49cc473a8..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/convert_types.go +++ /dev/null @@ -1,730 +0,0 @@ -package swag - -import "time" - -// This file was taken from the aws go sdk - -// String returns a pointer to of the string value passed in. -func String(v string) *string { - return &v -} - -// StringValue returns the value of the string pointer passed in or -// "" if the pointer is nil. -func StringValue(v *string) string { - if v != nil { - return *v - } - return "" -} - -// StringSlice converts a slice of string values into a slice of -// string pointers -func StringSlice(src []string) []*string { - dst := make([]*string, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - return dst -} - -// StringValueSlice converts a slice of string pointers into a slice of -// string values -func StringValueSlice(src []*string) []string { - dst := make([]string, len(src)) - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - return dst -} - -// StringMap converts a string map of string values into a string -// map of string pointers -func StringMap(src map[string]string) map[string]*string { - dst := make(map[string]*string) - for k, val := range src { - v := val - dst[k] = &v - } - return dst -} - -// StringValueMap converts a string map of string pointers into a string -// map of string values -func StringValueMap(src map[string]*string) map[string]string { - dst := make(map[string]string) - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - return dst -} - -// Bool returns a pointer to of the bool value passed in. -func Bool(v bool) *bool { - return &v -} - -// BoolValue returns the value of the bool pointer passed in or -// false if the pointer is nil. -func BoolValue(v *bool) bool { - if v != nil { - return *v - } - return false -} - -// BoolSlice converts a slice of bool values into a slice of -// bool pointers -func BoolSlice(src []bool) []*bool { - dst := make([]*bool, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - return dst -} - -// BoolValueSlice converts a slice of bool pointers into a slice of -// bool values -func BoolValueSlice(src []*bool) []bool { - dst := make([]bool, len(src)) - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - return dst -} - -// BoolMap converts a string map of bool values into a string -// map of bool pointers -func BoolMap(src map[string]bool) map[string]*bool { - dst := make(map[string]*bool) - for k, val := range src { - v := val - dst[k] = &v - } - return dst -} - -// BoolValueMap converts a string map of bool pointers into a string -// map of bool values -func BoolValueMap(src map[string]*bool) map[string]bool { - dst := make(map[string]bool) - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - return dst -} - -// Int returns a pointer to of the int value passed in. -func Int(v int) *int { - return &v -} - -// IntValue returns the value of the int pointer passed in or -// 0 if the pointer is nil. -func IntValue(v *int) int { - if v != nil { - return *v - } - return 0 -} - -// IntSlice converts a slice of int values into a slice of -// int pointers -func IntSlice(src []int) []*int { - dst := make([]*int, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - return dst -} - -// IntValueSlice converts a slice of int pointers into a slice of -// int values -func IntValueSlice(src []*int) []int { - dst := make([]int, len(src)) - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - return dst -} - -// IntMap converts a string map of int values into a string -// map of int pointers -func IntMap(src map[string]int) map[string]*int { - dst := make(map[string]*int) - for k, val := range src { - v := val - dst[k] = &v - } - return dst -} - -// IntValueMap converts a string map of int pointers into a string -// map of int values -func IntValueMap(src map[string]*int) map[string]int { - dst := make(map[string]int) - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - return dst -} - -// Int32 returns a pointer to of the int32 value passed in. -func Int32(v int32) *int32 { - return &v -} - -// Int32Value returns the value of the int32 pointer passed in or -// 0 if the pointer is nil. -func Int32Value(v *int32) int32 { - if v != nil { - return *v - } - return 0 -} - -// Int32Slice converts a slice of int32 values into a slice of -// int32 pointers -func Int32Slice(src []int32) []*int32 { - dst := make([]*int32, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - return dst -} - -// Int32ValueSlice converts a slice of int32 pointers into a slice of -// int32 values -func Int32ValueSlice(src []*int32) []int32 { - dst := make([]int32, len(src)) - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - return dst -} - -// Int32Map converts a string map of int32 values into a string -// map of int32 pointers -func Int32Map(src map[string]int32) map[string]*int32 { - dst := make(map[string]*int32) - for k, val := range src { - v := val - dst[k] = &v - } - return dst -} - -// Int32ValueMap converts a string map of int32 pointers into a string -// map of int32 values -func Int32ValueMap(src map[string]*int32) map[string]int32 { - dst := make(map[string]int32) - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - return dst -} - -// Int64 returns a pointer to of the int64 value passed in. -func Int64(v int64) *int64 { - return &v -} - -// Int64Value returns the value of the int64 pointer passed in or -// 0 if the pointer is nil. -func Int64Value(v *int64) int64 { - if v != nil { - return *v - } - return 0 -} - -// Int64Slice converts a slice of int64 values into a slice of -// int64 pointers -func Int64Slice(src []int64) []*int64 { - dst := make([]*int64, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - return dst -} - -// Int64ValueSlice converts a slice of int64 pointers into a slice of -// int64 values -func Int64ValueSlice(src []*int64) []int64 { - dst := make([]int64, len(src)) - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - return dst -} - -// Int64Map converts a string map of int64 values into a string -// map of int64 pointers -func Int64Map(src map[string]int64) map[string]*int64 { - dst := make(map[string]*int64) - for k, val := range src { - v := val - dst[k] = &v - } - return dst -} - -// Int64ValueMap converts a string map of int64 pointers into a string -// map of int64 values -func Int64ValueMap(src map[string]*int64) map[string]int64 { - dst := make(map[string]int64) - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - return dst -} - -// Uint16 returns a pointer to of the uint16 value passed in. -func Uint16(v uint16) *uint16 { - return &v -} - -// Uint16Value returns the value of the uint16 pointer passed in or -// 0 if the pointer is nil. -func Uint16Value(v *uint16) uint16 { - if v != nil { - return *v - } - - return 0 -} - -// Uint16Slice converts a slice of uint16 values into a slice of -// uint16 pointers -func Uint16Slice(src []uint16) []*uint16 { - dst := make([]*uint16, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - - return dst -} - -// Uint16ValueSlice converts a slice of uint16 pointers into a slice of -// uint16 values -func Uint16ValueSlice(src []*uint16) []uint16 { - dst := make([]uint16, len(src)) - - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - - return dst -} - -// Uint16Map converts a string map of uint16 values into a string -// map of uint16 pointers -func Uint16Map(src map[string]uint16) map[string]*uint16 { - dst := make(map[string]*uint16) - - for k, val := range src { - v := val - dst[k] = &v - } - - return dst -} - -// Uint16ValueMap converts a string map of uint16 pointers into a string -// map of uint16 values -func Uint16ValueMap(src map[string]*uint16) map[string]uint16 { - dst := make(map[string]uint16) - - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - - return dst -} - -// Uint returns a pointer to of the uint value passed in. -func Uint(v uint) *uint { - return &v -} - -// UintValue returns the value of the uint pointer passed in or -// 0 if the pointer is nil. -func UintValue(v *uint) uint { - if v != nil { - return *v - } - return 0 -} - -// UintSlice converts a slice of uint values into a slice of -// uint pointers -func UintSlice(src []uint) []*uint { - dst := make([]*uint, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - return dst -} - -// UintValueSlice converts a slice of uint pointers into a slice of -// uint values -func UintValueSlice(src []*uint) []uint { - dst := make([]uint, len(src)) - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - return dst -} - -// UintMap converts a string map of uint values into a string -// map of uint pointers -func UintMap(src map[string]uint) map[string]*uint { - dst := make(map[string]*uint) - for k, val := range src { - v := val - dst[k] = &v - } - return dst -} - -// UintValueMap converts a string map of uint pointers into a string -// map of uint values -func UintValueMap(src map[string]*uint) map[string]uint { - dst := make(map[string]uint) - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - return dst -} - -// Uint32 returns a pointer to of the uint32 value passed in. -func Uint32(v uint32) *uint32 { - return &v -} - -// Uint32Value returns the value of the uint32 pointer passed in or -// 0 if the pointer is nil. -func Uint32Value(v *uint32) uint32 { - if v != nil { - return *v - } - return 0 -} - -// Uint32Slice converts a slice of uint32 values into a slice of -// uint32 pointers -func Uint32Slice(src []uint32) []*uint32 { - dst := make([]*uint32, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - return dst -} - -// Uint32ValueSlice converts a slice of uint32 pointers into a slice of -// uint32 values -func Uint32ValueSlice(src []*uint32) []uint32 { - dst := make([]uint32, len(src)) - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - return dst -} - -// Uint32Map converts a string map of uint32 values into a string -// map of uint32 pointers -func Uint32Map(src map[string]uint32) map[string]*uint32 { - dst := make(map[string]*uint32) - for k, val := range src { - v := val - dst[k] = &v - } - return dst -} - -// Uint32ValueMap converts a string map of uint32 pointers into a string -// map of uint32 values -func Uint32ValueMap(src map[string]*uint32) map[string]uint32 { - dst := make(map[string]uint32) - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - return dst -} - -// Uint64 returns a pointer to of the uint64 value passed in. -func Uint64(v uint64) *uint64 { - return &v -} - -// Uint64Value returns the value of the uint64 pointer passed in or -// 0 if the pointer is nil. -func Uint64Value(v *uint64) uint64 { - if v != nil { - return *v - } - return 0 -} - -// Uint64Slice converts a slice of uint64 values into a slice of -// uint64 pointers -func Uint64Slice(src []uint64) []*uint64 { - dst := make([]*uint64, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - return dst -} - -// Uint64ValueSlice converts a slice of uint64 pointers into a slice of -// uint64 values -func Uint64ValueSlice(src []*uint64) []uint64 { - dst := make([]uint64, len(src)) - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - return dst -} - -// Uint64Map converts a string map of uint64 values into a string -// map of uint64 pointers -func Uint64Map(src map[string]uint64) map[string]*uint64 { - dst := make(map[string]*uint64) - for k, val := range src { - v := val - dst[k] = &v - } - return dst -} - -// Uint64ValueMap converts a string map of uint64 pointers into a string -// map of uint64 values -func Uint64ValueMap(src map[string]*uint64) map[string]uint64 { - dst := make(map[string]uint64) - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - return dst -} - -// Float32 returns a pointer to of the float32 value passed in. -func Float32(v float32) *float32 { - return &v -} - -// Float32Value returns the value of the float32 pointer passed in or -// 0 if the pointer is nil. -func Float32Value(v *float32) float32 { - if v != nil { - return *v - } - - return 0 -} - -// Float32Slice converts a slice of float32 values into a slice of -// float32 pointers -func Float32Slice(src []float32) []*float32 { - dst := make([]*float32, len(src)) - - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - - return dst -} - -// Float32ValueSlice converts a slice of float32 pointers into a slice of -// float32 values -func Float32ValueSlice(src []*float32) []float32 { - dst := make([]float32, len(src)) - - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - - return dst -} - -// Float32Map converts a string map of float32 values into a string -// map of float32 pointers -func Float32Map(src map[string]float32) map[string]*float32 { - dst := make(map[string]*float32) - - for k, val := range src { - v := val - dst[k] = &v - } - - return dst -} - -// Float32ValueMap converts a string map of float32 pointers into a string -// map of float32 values -func Float32ValueMap(src map[string]*float32) map[string]float32 { - dst := make(map[string]float32) - - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - - return dst -} - -// Float64 returns a pointer to of the float64 value passed in. -func Float64(v float64) *float64 { - return &v -} - -// Float64Value returns the value of the float64 pointer passed in or -// 0 if the pointer is nil. -func Float64Value(v *float64) float64 { - if v != nil { - return *v - } - return 0 -} - -// Float64Slice converts a slice of float64 values into a slice of -// float64 pointers -func Float64Slice(src []float64) []*float64 { - dst := make([]*float64, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - return dst -} - -// Float64ValueSlice converts a slice of float64 pointers into a slice of -// float64 values -func Float64ValueSlice(src []*float64) []float64 { - dst := make([]float64, len(src)) - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - return dst -} - -// Float64Map converts a string map of float64 values into a string -// map of float64 pointers -func Float64Map(src map[string]float64) map[string]*float64 { - dst := make(map[string]*float64) - for k, val := range src { - v := val - dst[k] = &v - } - return dst -} - -// Float64ValueMap converts a string map of float64 pointers into a string -// map of float64 values -func Float64ValueMap(src map[string]*float64) map[string]float64 { - dst := make(map[string]float64) - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - return dst -} - -// Time returns a pointer to of the time.Time value passed in. -func Time(v time.Time) *time.Time { - return &v -} - -// TimeValue returns the value of the time.Time pointer passed in or -// time.Time{} if the pointer is nil. -func TimeValue(v *time.Time) time.Time { - if v != nil { - return *v - } - return time.Time{} -} - -// TimeSlice converts a slice of time.Time values into a slice of -// time.Time pointers -func TimeSlice(src []time.Time) []*time.Time { - dst := make([]*time.Time, len(src)) - for i := 0; i < len(src); i++ { - dst[i] = &(src[i]) - } - return dst -} - -// TimeValueSlice converts a slice of time.Time pointers into a slice of -// time.Time values -func TimeValueSlice(src []*time.Time) []time.Time { - dst := make([]time.Time, len(src)) - for i := 0; i < len(src); i++ { - if src[i] != nil { - dst[i] = *(src[i]) - } - } - return dst -} - -// TimeMap converts a string map of time.Time values into a string -// map of time.Time pointers -func TimeMap(src map[string]time.Time) map[string]*time.Time { - dst := make(map[string]*time.Time) - for k, val := range src { - v := val - dst[k] = &v - } - return dst -} - -// TimeValueMap converts a string map of time.Time pointers into a string -// map of time.Time values -func TimeValueMap(src map[string]*time.Time) map[string]time.Time { - dst := make(map[string]time.Time) - for k, val := range src { - if val != nil { - dst[k] = *val - } - } - return dst -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/doc.go index 55094cb74c..b54b57478a 100644 --- a/tests/e2e/vendor/github.com/go-openapi/swag/doc.go +++ b/tests/e2e/vendor/github.com/go-openapi/swag/doc.go @@ -1,31 +1,47 @@ -// Copyright 2015 go-swagger maintainers +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package swag contains a bunch of helper functions for go-openapi and go-swagger projects. // -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at +// You may also use it standalone for your projects. // -// http://www.apache.org/licenses/LICENSE-2.0 +// NOTE: all features that used to be exposed as package-level members (constants, variables, +// functions and types) are now deprecated and are superseded by equivalent features in +// more specialized sub-packages. +// Moving forward, no additional feature will be added to the [swag] API directly at the root package level, +// which remains there for backward-compatibility purposes. // -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -/* -Package swag contains a bunch of helper functions for go-openapi and go-swagger projects. - -You may also use it standalone for your projects. - - - convert between value and pointers for builtin types - - convert from string to builtin types (wraps strconv) - - fast json concatenation - - search in path - - load from file or http - - name mangling - -This repo has only few dependencies outside of the standard library: - - - YAML utilities depend on gopkg.in/yaml.v2 -*/ +// Child modules will continue to evolve or some new ones may be added in the future. +// +// # Modules +// +// - [cmdutils] utilities to work with CLIs +// +// - [conv] type conversion utilities +// +// - [fileutils] file utilities +// +// - [jsonname] JSON utilities +// +// - [jsonutils] JSON utilities +// +// - [loading] file loading +// +// - [mangling] safe name generation +// +// - [netutils] networking utilities +// +// - [stringutils] `string` utilities +// +// - [typeutils] `go` types utilities +// +// - [yamlutils] YAML utilities +// +// # Dependencies +// +// This repo has a few dependencies outside of the standard library: +// +// - YAML utilities depend on [go.yaml.in/yaml/v3] package swag + +//go:generate mockery diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/file.go b/tests/e2e/vendor/github.com/go-openapi/swag/file.go deleted file mode 100644 index 16accc55f8..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/file.go +++ /dev/null @@ -1,33 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import "mime/multipart" - -// File represents an uploaded file. -type File struct { - Data multipart.File - Header *multipart.FileHeader -} - -// Read bytes from the file -func (f *File) Read(p []byte) (n int, err error) { - return f.Data.Read(p) -} - -// Close the file -func (f *File) Close() error { - return f.Data.Close() -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. 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In no event and under no legal theory, + whether in tort (including negligence), contract, or otherwise, + unless required by applicable law (such as deliberate and grossly + negligent acts) or agreed to in writing, shall any Contributor be + liable to You for damages, including any direct, indirect, special, + incidental, or consequential damages of any character arising as a + result of this License or out of the use or inability to use the + Work (including but not limited to damages for loss of goodwill, + work stoppage, computer failure or malfunction, or any and all + other commercial damages or losses), even if such Contributor + has been advised of the possibility of such damages. + + 9. Accepting Warranty or Additional Liability. While redistributing + the Work or Derivative Works thereof, You may choose to offer, + and charge a fee for, acceptance of support, warranty, indemnity, + or other liability obligations and/or rights consistent with this + License. However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + APPENDIX: How to apply the Apache License to your work. + + To apply the Apache License to your work, attach the following + boilerplate notice, with the fields enclosed by brackets "[]" + replaced with your own identifying information. (Don't include + the brackets!) The text should be enclosed in the appropriate + comment syntax for the file format. We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/doc.go new file mode 100644 index 0000000000..859a200d84 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/doc.go @@ -0,0 +1,10 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package fileutils exposes utilities to deal with files and paths. +// +// Currently, there is: +// - [File] to represent an abstraction of an uploaded file. +// For instance, this is used by [github.com/go-openapi/runtime.File]. +// - path search utilities (e.g. finding packages in the GO search path) +package fileutils diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/file.go b/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/file.go new file mode 100644 index 0000000000..5ad4cfaeaf --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/file.go @@ -0,0 +1,22 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package fileutils + +import "mime/multipart" + +// File represents an uploaded file. +type File struct { + Data multipart.File + Header *multipart.FileHeader +} + +// Read bytes from the file +func (f *File) Read(p []byte) (n int, err error) { + return f.Data.Read(p) +} + +// Close the file +func (f *File) Close() error { + return f.Data.Close() +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/path.go b/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/path.go new file mode 100644 index 0000000000..dd09f690bf --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/fileutils/path.go @@ -0,0 +1,52 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package fileutils + +import ( + "os" + "path/filepath" + "runtime" + "strings" +) + +// GOPATHKey represents the env key for gopath +const GOPATHKey = "GOPATH" + +// FindInSearchPath finds a package in a provided lists of paths +func FindInSearchPath(searchPath, pkg string) string { + pathsList := filepath.SplitList(searchPath) + for _, path := range pathsList { + if evaluatedPath, err := filepath.EvalSymlinks(filepath.Join(path, "src", pkg)); err == nil { + if _, err := os.Stat(evaluatedPath); err == nil { + return evaluatedPath + } + } + } + return "" +} + +// FindInGoSearchPath finds a package in the $GOPATH:$GOROOT +// +// Deprecated: this function is no longer relevant with modern go. +// It uses [runtime.GOROOT] under the hood, which is deprecated as of go1.24. +func FindInGoSearchPath(pkg string) string { + return FindInSearchPath(FullGoSearchPath(), pkg) +} + +// FullGoSearchPath gets the search paths for finding packages +// +// Deprecated: this function is no longer relevant with modern go. +// It uses [runtime.GOROOT] under the hood, which is deprecated as of go1.24. +func FullGoSearchPath() string { + allPaths := os.Getenv(GOPATHKey) + if allPaths == "" { + allPaths = filepath.Join(os.Getenv("HOME"), "go") + } + if allPaths != "" { + allPaths = strings.Join([]string{allPaths, runtime.GOROOT()}, ":") + } else { + allPaths = runtime.GOROOT() + } + return allPaths +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/fileutils_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/fileutils_iface.go new file mode 100644 index 0000000000..f3e79a0e4b --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/fileutils_iface.go @@ -0,0 +1,33 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import "github.com/go-openapi/swag/fileutils" + +// GOPATHKey represents the env key for gopath +// +// Deprecated: use [fileutils.GOPATHKey] instead. +const GOPATHKey = fileutils.GOPATHKey + +// File represents an uploaded file. +// +// Deprecated: use [fileutils.File] instead. +type File = fileutils.File + +// FindInSearchPath finds a package in a provided lists of paths. +// +// Deprecated: use [fileutils.FindInSearchPath] instead. +func FindInSearchPath(searchPath, pkg string) string { + return fileutils.FindInSearchPath(searchPath, pkg) +} + +// FindInGoSearchPath finds a package in the $GOPATH:$GOROOT +// +// Deprecated: use [fileutils.FindInGoSearchPath] instead. +func FindInGoSearchPath(pkg string) string { return fileutils.FindInGoSearchPath(pkg) } + +// FullGoSearchPath gets the search paths for finding packages +// +// Deprecated: use [fileutils.FullGoSearchPath] instead. +func FullGoSearchPath() string { return fileutils.FullGoSearchPath() } diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/go.work b/tests/e2e/vendor/github.com/go-openapi/swag/go.work new file mode 100644 index 0000000000..f1dddc436e --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/go.work @@ -0,0 +1,21 @@ +use ( + . + ./cmdutils + ./conv + ./fileutils + ./jsonname + ./jsonutils + ./jsonutils/adapters/easyjson + ./jsonutils/adapters/testintegration + ./jsonutils/adapters/testintegration/benchmarks + ./jsonutils/fixtures_test + ./loading + ./mangling + ./netutils + ./pools + ./stringutils + ./typeutils + ./yamlutils +) + +go 1.25.0 diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/go.work.sum b/tests/e2e/vendor/github.com/go-openapi/swag/go.work.sum new file mode 100644 index 0000000000..c1308cafa6 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/go.work.sum @@ -0,0 +1,7 @@ +github.com/go-openapi/testify/v2 v2.0.1/go.mod h1:HCPmvFFnheKK2BuwSA0TbbdxJ3I16pjwMkYkP4Ywn54= +golang.org/x/mod v0.21.0 h1:vvrHzRwRfVKSiLrG+d4FMl/Qi4ukBCE6kZlTUkDYRT0= +golang.org/x/mod v0.21.0/go.mod h1:6SkKJ3Xj0I0BrPOZoBy3bdMptDDU9oJrpohJ3eWZ1fY= +golang.org/x/sys v0.26.0 h1:KHjCJyddX0LoSTb3J+vWpupP9p0oznkqVk/IfjymZbo= +golang.org/x/sys v0.26.0/go.mod h1:/VUhepiaJMQUp4+oa/7Zr1D23ma6VTLIYjOOTFZPUcA= +golang.org/x/tools v0.26.0 h1:v/60pFQmzmT9ExmjDv2gGIfi3OqfKoEP6I5+umXlbnQ= +golang.org/x/tools v0.26.0/go.mod h1:TPVVj70c7JJ3WCazhD8OdXcZg/og+b9+tH/KxylGwH0= diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/initialism_index.go b/tests/e2e/vendor/github.com/go-openapi/swag/initialism_index.go deleted file mode 100644 index 20a359bb60..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/initialism_index.go +++ /dev/null @@ -1,202 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import ( - "sort" - "strings" - "sync" -) - -var ( - // commonInitialisms are common acronyms that are kept as whole uppercased words. - commonInitialisms *indexOfInitialisms - - // initialisms is a slice of sorted initialisms - initialisms []string - - // a copy of initialisms pre-baked as []rune - initialismsRunes [][]rune - initialismsUpperCased [][]rune - - isInitialism func(string) bool - - maxAllocMatches int -) - -func init() { - // Taken from https://github.com/golang/lint/blob/3390df4df2787994aea98de825b964ac7944b817/lint.go#L732-L769 - configuredInitialisms := map[string]bool{ - "ACL": true, - "API": true, - "ASCII": true, - "CPU": true, - "CSS": true, - "DNS": true, - "EOF": true, - "GUID": true, - "HTML": true, - "HTTPS": true, - "HTTP": true, - "ID": true, - "IP": true, - "IPv4": true, - "IPv6": true, - "JSON": true, - "LHS": true, - "OAI": true, - "QPS": true, - "RAM": true, - "RHS": true, - "RPC": true, - "SLA": true, - "SMTP": true, - "SQL": true, - "SSH": true, - "TCP": true, - "TLS": true, - "TTL": true, - "UDP": true, - "UI": true, - "UID": true, - "UUID": true, - "URI": true, - "URL": true, - "UTF8": true, - "VM": true, - "XML": true, - "XMPP": true, - "XSRF": true, - "XSS": true, - } - - // a thread-safe index of initialisms - commonInitialisms = newIndexOfInitialisms().load(configuredInitialisms) - initialisms = commonInitialisms.sorted() - initialismsRunes = asRunes(initialisms) - initialismsUpperCased = asUpperCased(initialisms) - maxAllocMatches = maxAllocHeuristic(initialismsRunes) - - // a test function - isInitialism = commonInitialisms.isInitialism -} - -func asRunes(in []string) [][]rune { - out := make([][]rune, len(in)) - for i, initialism := range in { - out[i] = []rune(initialism) - } - - return out -} - -func asUpperCased(in []string) [][]rune { - out := make([][]rune, len(in)) - - for i, initialism := range in { - out[i] = []rune(upper(trim(initialism))) - } - - return out -} - -func maxAllocHeuristic(in [][]rune) int { - heuristic := make(map[rune]int) - for _, initialism := range in { - heuristic[initialism[0]]++ - } - - var maxAlloc int - for _, val := range heuristic { - if val > maxAlloc { - maxAlloc = val - } - } - - return maxAlloc -} - -// AddInitialisms add additional initialisms -func AddInitialisms(words ...string) { - for _, word := range words { - // commonInitialisms[upper(word)] = true - commonInitialisms.add(upper(word)) - } - // sort again - initialisms = commonInitialisms.sorted() - initialismsRunes = asRunes(initialisms) - initialismsUpperCased = asUpperCased(initialisms) -} - -// indexOfInitialisms is a thread-safe implementation of the sorted index of initialisms. -// Since go1.9, this may be implemented with sync.Map. -type indexOfInitialisms struct { - sortMutex *sync.Mutex - index *sync.Map -} - -func newIndexOfInitialisms() *indexOfInitialisms { - return &indexOfInitialisms{ - sortMutex: new(sync.Mutex), - index: new(sync.Map), - } -} - -func (m *indexOfInitialisms) load(initial map[string]bool) *indexOfInitialisms { - m.sortMutex.Lock() - defer m.sortMutex.Unlock() - for k, v := range initial { - m.index.Store(k, v) - } - return m -} - -func (m *indexOfInitialisms) isInitialism(key string) bool { - _, ok := m.index.Load(key) - return ok -} - -func (m *indexOfInitialisms) add(key string) *indexOfInitialisms { - m.index.Store(key, true) - return m -} - -func (m *indexOfInitialisms) sorted() (result []string) { - m.sortMutex.Lock() - defer m.sortMutex.Unlock() - m.index.Range(func(key, _ interface{}) bool { - k := key.(string) - result = append(result, k) - return true - }) - sort.Sort(sort.Reverse(byInitialism(result))) - return -} - -type byInitialism []string - -func (s byInitialism) Len() int { - return len(s) -} -func (s byInitialism) Swap(i, j int) { - s[i], s[j] = s[j], s[i] -} -func (s byInitialism) Less(i, j int) bool { - if len(s[i]) != len(s[j]) { - return len(s[i]) < len(s[j]) - } - - return strings.Compare(s[i], s[j]) > 0 -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/json.go b/tests/e2e/vendor/github.com/go-openapi/swag/json.go deleted file mode 100644 index 7e9902ca31..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/json.go +++ /dev/null @@ -1,312 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import ( - "bytes" - "encoding/json" - "log" - "reflect" - "strings" - "sync" - - "github.com/mailru/easyjson/jlexer" - "github.com/mailru/easyjson/jwriter" -) - -// nullJSON represents a JSON object with null type -var nullJSON = []byte("null") - -// DefaultJSONNameProvider the default cache for types -var DefaultJSONNameProvider = NewNameProvider() - -const comma = byte(',') - -var closers map[byte]byte - -func init() { - closers = map[byte]byte{ - '{': '}', - '[': ']', - } -} - -type ejMarshaler interface { - MarshalEasyJSON(w *jwriter.Writer) -} - -type ejUnmarshaler interface { - UnmarshalEasyJSON(w *jlexer.Lexer) -} - -// WriteJSON writes json data, prefers finding an appropriate interface to short-circuit the marshaler -// so it takes the fastest option available. -func WriteJSON(data interface{}) ([]byte, error) { - if d, ok := data.(ejMarshaler); ok { - jw := new(jwriter.Writer) - d.MarshalEasyJSON(jw) - return jw.BuildBytes() - } - if d, ok := data.(json.Marshaler); ok { - return d.MarshalJSON() - } - return json.Marshal(data) -} - -// ReadJSON reads json data, prefers finding an appropriate interface to short-circuit the unmarshaler -// so it takes the fastest option available -func ReadJSON(data []byte, value interface{}) error { - trimmedData := bytes.Trim(data, "\x00") - if d, ok := value.(ejUnmarshaler); ok { - jl := &jlexer.Lexer{Data: trimmedData} - d.UnmarshalEasyJSON(jl) - return jl.Error() - } - if d, ok := value.(json.Unmarshaler); ok { - return d.UnmarshalJSON(trimmedData) - } - return json.Unmarshal(trimmedData, value) -} - -// DynamicJSONToStruct converts an untyped json structure into a struct -func DynamicJSONToStruct(data interface{}, target interface{}) error { - // TODO: convert straight to a json typed map (mergo + iterate?) - b, err := WriteJSON(data) - if err != nil { - return err - } - return ReadJSON(b, target) -} - -// ConcatJSON concatenates multiple json objects efficiently -func ConcatJSON(blobs ...[]byte) []byte { - if len(blobs) == 0 { - return nil - } - - last := len(blobs) - 1 - for blobs[last] == nil || bytes.Equal(blobs[last], nullJSON) { - // strips trailing null objects - last-- - if last < 0 { - // there was nothing but "null"s or nil... - return nil - } - } - if last == 0 { - return blobs[0] - } - - var opening, closing byte - var idx, a int - buf := bytes.NewBuffer(nil) - - for i, b := range blobs[:last+1] { - if b == nil || bytes.Equal(b, nullJSON) { - // a null object is in the list: skip it - continue - } - if len(b) > 0 && opening == 0 { // is this an array or an object? - opening, closing = b[0], closers[b[0]] - } - - if opening != '{' && opening != '[' { - continue // don't know how to concatenate non container objects - } - - if len(b) < 3 { // yep empty but also the last one, so closing this thing - if i == last && a > 0 { - if err := buf.WriteByte(closing); err != nil { - log.Println(err) - } - } - continue - } - - idx = 0 - if a > 0 { // we need to join with a comma for everything beyond the first non-empty item - if err := buf.WriteByte(comma); err != nil { - log.Println(err) - } - idx = 1 // this is not the first or the last so we want to drop the leading bracket - } - - if i != last { // not the last one, strip brackets - if _, err := buf.Write(b[idx : len(b)-1]); err != nil { - log.Println(err) - } - } else { // last one, strip only the leading bracket - if _, err := buf.Write(b[idx:]); err != nil { - log.Println(err) - } - } - a++ - } - // somehow it ended up being empty, so provide a default value - if buf.Len() == 0 { - if err := buf.WriteByte(opening); err != nil { - log.Println(err) - } - if err := buf.WriteByte(closing); err != nil { - log.Println(err) - } - } - return buf.Bytes() -} - -// ToDynamicJSON turns an object into a properly JSON typed structure -func ToDynamicJSON(data interface{}) interface{} { - // TODO: convert straight to a json typed map (mergo + iterate?) - b, err := json.Marshal(data) - if err != nil { - log.Println(err) - } - var res interface{} - if err := json.Unmarshal(b, &res); err != nil { - log.Println(err) - } - return res -} - -// FromDynamicJSON turns an object into a properly JSON typed structure -func FromDynamicJSON(data, target interface{}) error { - b, err := json.Marshal(data) - if err != nil { - log.Println(err) - } - return json.Unmarshal(b, target) -} - -// NameProvider represents an object capable of translating from go property names -// to json property names -// This type is thread-safe. -type NameProvider struct { - lock *sync.Mutex - index map[reflect.Type]nameIndex -} - -type nameIndex struct { - jsonNames map[string]string - goNames map[string]string -} - -// NewNameProvider creates a new name provider -func NewNameProvider() *NameProvider { - return &NameProvider{ - lock: &sync.Mutex{}, - index: make(map[reflect.Type]nameIndex), - } -} - -func buildnameIndex(tpe reflect.Type, idx, reverseIdx map[string]string) { - for i := 0; i < tpe.NumField(); i++ { - targetDes := tpe.Field(i) - - if targetDes.PkgPath != "" { // unexported - continue - } - - if targetDes.Anonymous { // walk embedded structures tree down first - buildnameIndex(targetDes.Type, idx, reverseIdx) - continue - } - - if tag := targetDes.Tag.Get("json"); tag != "" { - - parts := strings.Split(tag, ",") - if len(parts) == 0 { - continue - } - - nm := parts[0] - if nm == "-" { - continue - } - if nm == "" { // empty string means we want to use the Go name - nm = targetDes.Name - } - - idx[nm] = targetDes.Name - reverseIdx[targetDes.Name] = nm - } - } -} - -func newNameIndex(tpe reflect.Type) nameIndex { - var idx = make(map[string]string, tpe.NumField()) - var reverseIdx = make(map[string]string, tpe.NumField()) - - buildnameIndex(tpe, idx, reverseIdx) - return nameIndex{jsonNames: idx, goNames: reverseIdx} -} - -// GetJSONNames gets all the json property names for a type -func (n *NameProvider) GetJSONNames(subject interface{}) []string { - n.lock.Lock() - defer n.lock.Unlock() - tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() - names, ok := n.index[tpe] - if !ok { - names = n.makeNameIndex(tpe) - } - - res := make([]string, 0, len(names.jsonNames)) - for k := range names.jsonNames { - res = append(res, k) - } - return res -} - -// GetJSONName gets the json name for a go property name -func (n *NameProvider) GetJSONName(subject interface{}, name string) (string, bool) { - tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() - return n.GetJSONNameForType(tpe, name) -} - -// GetJSONNameForType gets the json name for a go property name on a given type -func (n *NameProvider) GetJSONNameForType(tpe reflect.Type, name string) (string, bool) { - n.lock.Lock() - defer n.lock.Unlock() - names, ok := n.index[tpe] - if !ok { - names = n.makeNameIndex(tpe) - } - nme, ok := names.goNames[name] - return nme, ok -} - -func (n *NameProvider) makeNameIndex(tpe reflect.Type) nameIndex { - names := newNameIndex(tpe) - n.index[tpe] = names - return names -} - -// GetGoName gets the go name for a json property name -func (n *NameProvider) GetGoName(subject interface{}, name string) (string, bool) { - tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() - return n.GetGoNameForType(tpe, name) -} - -// GetGoNameForType gets the go name for a given type for a json property name -func (n *NameProvider) GetGoNameForType(tpe reflect.Type, name string) (string, bool) { - n.lock.Lock() - defer n.lock.Unlock() - names, ok := n.index[tpe] - if !ok { - names = n.makeNameIndex(tpe) - } - nme, ok := names.jsonNames[name] - return nme, ok -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonname_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonname_iface.go new file mode 100644 index 0000000000..443560caad --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonname_iface.go @@ -0,0 +1,24 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import ( + "github.com/go-openapi/jsonpointer/jsonname" +) + +// DefaultJSONNameProvider is the default cache for types +// +// Deprecated: use [github.com/go-openapi/jsonpointer/jsonname.DefaultJSONNameProvider] instead. +var DefaultJSONNameProvider = jsonname.DefaultJSONNameProvider + +// NameProvider represents an object capable of translating from go property names +// to json property names. +// +// Deprecated: use [github.com/go-openapi/jsonpointer/jsonname.NameProvider] instead. +type NameProvider = jsonname.NameProvider + +// NewNameProvider creates a new name provider +// +// Deprecated: use [github.com/go-openapi/jsonpointer/jsonname.NewNameProvider] instead. +func NewNameProvider() *NameProvider { return jsonname.NewNameProvider() } diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. For the purposes + of this License, Derivative Works shall not include works that remain + separable from, or merely link (or bind by name) to the interfaces of, + the Work and Derivative Works thereof. + + "Contribution" shall mean any work of authorship, including + the original version of the Work and any modifications or additions + to that Work or Derivative Works thereof, that is intentionally + submitted to Licensor for inclusion in the Work by the copyright owner + or by an individual or Legal Entity authorized to submit on behalf of + the copyright owner. For the purposes of this definition, "submitted" + means any form of electronic, verbal, or written communication sent + to the Licensor or its representatives, including but not limited to + communication on electronic mailing lists, source code control systems, + and issue tracking systems that are managed by, or on behalf of, the + Licensor for the purpose of discussing and improving the Work, but + excluding communication that is conspicuously marked or otherwise + designated in writing by the copyright owner as "Not a Contribution." + + "Contributor" shall mean Licensor and any individual or Legal Entity + on behalf of whom a Contribution has been received by Licensor and + subsequently incorporated within the Work. + + 2. Grant of Copyright License. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/README.md b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/README.md new file mode 100644 index 0000000000..07a2ca1d71 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/README.md @@ -0,0 +1,109 @@ +# jsonutils + +`jsonutils` exposes a few tools to work with JSON: + +- a fast, simple `Concat` to concatenate (not merge) JSON objects and arrays +- `FromDynamicJSON` to convert a data structure into a "dynamic JSON" data structure +- `ReadJSON` and `WriteJSON` behave like `json.Unmarshal` and `json.Marshal`, + with the ability to use another underlying serialization library through an `Adapter` + configured at runtime +- a `JSONMapSlice` structure that may be used to store JSON objects with the order of keys maintained + +## Dynamic JSON + +We call "dynamic JSON" the go data structure that results from unmarshaling JSON like this: + +```go + var value any + jsonBytes := `{"a": 1, ... }` + _ = json.Unmarshal(jsonBytes, &value) +``` + +In this configuration, the standard library mappings are as follows: + +| JSON | go | +|-----------|------------------| +| `number` | `float64` | +| `string` | `string` | +| `boolean` | `bool` | +| `null` | `nil` | +| `object` | `map[string]any` | +| `array` | `[]any` | + +## Map slices + +When using `JSONMapSlice`, the ordering of keys is ensured by replacing +mappings to `map[string]any` by a `JSONMapSlice` which is an (ordered) +slice of `JSONMapItem`s. + +Notice that a similar feature is available for YAML (see [`yamlutils`](../yamlutils)), +with a `YAMLMapSlice` type based on the `JSONMapSlice`. + +`JSONMapSlice` is similar to an ordered map, but the keys are not retrieved +in constant time. + +Another difference with the the above standard mappings is that numbers don't always map +to a `float64`: if the value is a JSON integer, it unmarshals to `int64`. + +See also [some examples](https://pkg.go.dev/github.com/go-openapi/swag/jsonutils#pkg-examples) + +## Adapters + +`ReadJSON`, `WriteJSON` and `FromDynamicJSON` (which is a combination of the latter two) +are wrappers on top of `json.Unmarshal` and `json.Marshal`. + +By default, the adapter merely wraps the standard library. + +The adapter may be used to register other JSON serialization libraries, +possibly several ones at the same time. + +If the value passed is identified as an "ordered map" (i.e. implements `ifaces.Ordered` +or `ifaces.SetOrdered`, the adapter favors the "ordered" JSON behavior and tries to +find a registered implementation that support ordered keys in objects. + +Our standard library implementation supports this. + +As of `v0.25.0`, we support through such an adapter the popular `mailru/easyjson` +library, which kicks in when the passed values support the `easyjson.Unmarshaler` +or `easyjson.Marshaler` interfaces. + +In the future, we plan to add more similar libraries that compete on the go JSON +serializers scene. + +## Registering an adapter + +In package `github.com/go-openapi/swag/easyjson/adapters`, several adapters are available. + +Each adapter is an independent go module. Hence you'll pick its dependencies only if you import it. + +At this moment we provide: + +- `stdlib`: JSON adapter based on the standard library +- `easyjson`: JSON adapter based on the `github.com/mailru/easyjson` + +The adapters provide the basic `Marshal` and `Unmarshal` capabilities, plus an implementation +of the `MapSlice` pattern. + +You may also build your own adapter based on your specific use-case. An adapter is not required to implement +all capabilities. + +Every adapter comes with a `Register` function, possibly with some options, to register the adapter +to a global registry. + +For example, to enable `easyjson` to be used in `ReadJSON` and `WriteJSON`, you would write something like: + +```go + import ( + "github.com/go-openapi/swag/jsonutils/adapters" + easyjson "github.com/go-openapi/swag/jsonutils/adapters/easyjson/json" + ) + + func init() { + easyjson.Register(adapters.Registry) + } +``` + +You may register several adapters. In this case, capability matching is evaluated from the last registered +adapters (LIFO). + +## [Benchmarks](./adapters/testintegration/benchmarks/README.md) diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/doc.go new file mode 100644 index 0000000000..76d3898fca --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/doc.go @@ -0,0 +1,8 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package adapters exposes a registry of adapters to multiple +// JSON serialization libraries. +// +// All interfaces are defined in package [ifaces.Adapter]. +package adapters diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/ifaces/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/ifaces/doc.go new file mode 100644 index 0000000000..1fd43a1fad --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/ifaces/doc.go @@ -0,0 +1,5 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package ifaces exposes all interfaces to work with adapters. +package ifaces diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/ifaces/ifaces.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/ifaces/ifaces.go new file mode 100644 index 0000000000..7805e5e5e3 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/ifaces/ifaces.go @@ -0,0 +1,84 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package ifaces + +import ( + _ "encoding/json" // for documentation purpose + "iter" +) + +// Ordered knows how to iterate over the (key,value) pairs of a JSON object. +type Ordered interface { + OrderedItems() iter.Seq2[string, any] +} + +// SetOrdered knows how to append or update the keys of a JSON object, +// given an iterator over (key,value) pairs. +// +// If the provided iterator is nil then the receiver should be set to nil. +type SetOrdered interface { + SetOrderedItems(iter.Seq2[string, any]) +} + +// OrderedMap represent a JSON object (i.e. like a map[string,any]), +// and knows how to serialize and deserialize JSON with the order of keys maintained. +type OrderedMap interface { + Ordered + SetOrdered + + OrderedMarshalJSON() ([]byte, error) + OrderedUnmarshalJSON([]byte) error +} + +// MarshalAdapter behaves likes the standard library [json.Marshal]. +type MarshalAdapter interface { + Poolable + + Marshal(any) ([]byte, error) +} + +// OrderedMarshalAdapter behaves likes the standard library [json.Marshal], preserving the order of keys in objects. +type OrderedMarshalAdapter interface { + Poolable + + OrderedMarshal(Ordered) ([]byte, error) +} + +// UnmarshalAdapter behaves likes the standard library [json.Unmarshal]. +type UnmarshalAdapter interface { + Poolable + + Unmarshal([]byte, any) error +} + +// OrderedUnmarshalAdapter behaves likes the standard library [json.Unmarshal], preserving the order of keys in objects. +type OrderedUnmarshalAdapter interface { + Poolable + + OrderedUnmarshal([]byte, SetOrdered) error +} + +// Adapter exposes an interface like the standard [json] library. +type Adapter interface { + MarshalAdapter + UnmarshalAdapter + + OrderedAdapter +} + +// OrderedAdapter exposes interfaces to process JSON and keep the order of object keys. +type OrderedAdapter interface { + OrderedMarshalAdapter + OrderedUnmarshalAdapter + NewOrderedMap(capacity int) OrderedMap +} + +type Poolable interface { + // Self-redeem: for [Adapter] s that are allocated from a pool. + // The [Adapter] must not be used after calling [Redeem]. + Redeem() + + // Reset the state of the [Adapter], if any. + Reset() +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/ifaces/registry_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/ifaces/registry_iface.go new file mode 100644 index 0000000000..2d6c69f4e6 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/ifaces/registry_iface.go @@ -0,0 +1,91 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package ifaces + +import ( + "strings" +) + +// Capability indicates what a JSON adapter is capable of. +type Capability uint8 + +const ( + CapabilityMarshalJSON Capability = 1 << iota + CapabilityUnmarshalJSON + CapabilityOrderedMarshalJSON + CapabilityOrderedUnmarshalJSON + CapabilityOrderedMap +) + +func (c Capability) String() string { + switch c { + case CapabilityMarshalJSON: + return "MarshalJSON" + case CapabilityUnmarshalJSON: + return "UnmarshalJSON" + case CapabilityOrderedMarshalJSON: + return "OrderedMarshalJSON" + case CapabilityOrderedUnmarshalJSON: + return "OrderedUnmarshalJSON" + case CapabilityOrderedMap: + return "OrderedMap" + default: + return "" + } +} + +// Capabilities holds several unitary capability flags +type Capabilities uint8 + +// Has some capability flag enabled. +func (c Capabilities) Has(capability Capability) bool { + return Capability(c)&capability > 0 +} + +func (c Capabilities) String() string { + var w strings.Builder + + first := true + for _, capability := range []Capability{ + CapabilityMarshalJSON, + CapabilityUnmarshalJSON, + CapabilityOrderedMarshalJSON, + CapabilityOrderedUnmarshalJSON, + CapabilityOrderedMap, + } { + if c.Has(capability) { + if !first { + w.WriteByte('|') + } else { + first = false + } + w.WriteString(capability.String()) + } + } + + return w.String() +} + +const ( + AllCapabilities Capabilities = Capabilities(uint8(CapabilityMarshalJSON) | + uint8(CapabilityUnmarshalJSON) | + uint8(CapabilityOrderedMarshalJSON) | + uint8(CapabilityOrderedUnmarshalJSON) | + uint8(CapabilityOrderedMap)) + + AllUnorderedCapabilities Capabilities = Capabilities(uint8(CapabilityMarshalJSON) | uint8(CapabilityUnmarshalJSON)) +) + +// RegistryEntry describes how any given adapter registers its capabilities to the [Registrar]. +type RegistryEntry struct { + Who string + What Capabilities + Constructor func() Adapter + Support func(what Capability, value any) bool +} + +// Registrar is a type that knows how to keep registration calls from adapters. +type Registrar interface { + RegisterFor(RegistryEntry) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/registry.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/registry.go new file mode 100644 index 0000000000..3062acaff2 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/registry.go @@ -0,0 +1,229 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package adapters + +import ( + "fmt" + "reflect" + "slices" + "sync" + + "github.com/go-openapi/swag/jsonutils/adapters/ifaces" + stdlib "github.com/go-openapi/swag/jsonutils/adapters/stdlib/json" +) + +// Registry holds the global registry for registered adapters. +var Registry = NewRegistrar() + +var ( + defaultRegistered = stdlib.Register + + _ ifaces.Registrar = &Registrar{} +) + +type registryError string + +func (e registryError) Error() string { + return string(e) +} + +// ErrRegistry indicates an error returned by the [Registrar]. +var ErrRegistry registryError = "JSON adapters registry error" + +type registry []*ifaces.RegistryEntry + +// Registrar holds registered [ifaces.Adapters] for different serialization capabilities. +// +// Internally, it maintains a cache for data types that favor a given adapter. +type Registrar struct { + marshalerRegistry registry + unmarshalerRegistry registry + orderedMarshalerRegistry registry + orderedUnmarshalerRegistry registry + orderedMapRegistry registry + + gmx sync.RWMutex + + // cache indexed by value type, so we don't have to lookup + marshalerCache map[reflect.Type]*ifaces.RegistryEntry + unmarshalerCache map[reflect.Type]*ifaces.RegistryEntry + orderedMarshalerCache map[reflect.Type]*ifaces.RegistryEntry + orderedUnmarshalerCache map[reflect.Type]*ifaces.RegistryEntry + orderedMapCache map[reflect.Type]*ifaces.RegistryEntry +} + +func NewRegistrar() *Registrar { + r := &Registrar{} + + r.marshalerRegistry = make(registry, 0, 1) + r.unmarshalerRegistry = make(registry, 0, 1) + r.orderedMarshalerRegistry = make(registry, 0, 1) + r.orderedUnmarshalerRegistry = make(registry, 0, 1) + r.orderedMapRegistry = make(registry, 0, 1) + + r.marshalerCache = make(map[reflect.Type]*ifaces.RegistryEntry) + r.unmarshalerCache = make(map[reflect.Type]*ifaces.RegistryEntry) + r.orderedMarshalerCache = make(map[reflect.Type]*ifaces.RegistryEntry) + r.orderedUnmarshalerCache = make(map[reflect.Type]*ifaces.RegistryEntry) + r.orderedMapCache = make(map[reflect.Type]*ifaces.RegistryEntry) + + defaultRegistered(r) + + return r +} + +// ClearCache resets the internal type cache. +func (r *Registrar) ClearCache() { + r.gmx.Lock() + r.clearCache() + r.gmx.Unlock() +} + +// Reset the [Registrar] to its defaults. +func (r *Registrar) Reset() { + r.gmx.Lock() + r.clearCache() + r.marshalerRegistry = r.marshalerRegistry[:0] + r.unmarshalerRegistry = r.unmarshalerRegistry[:0] + r.orderedMarshalerRegistry = r.orderedMarshalerRegistry[:0] + r.orderedUnmarshalerRegistry = r.orderedUnmarshalerRegistry[:0] + r.orderedMapRegistry = r.orderedMapRegistry[:0] + r.gmx.Unlock() + + defaultRegistered(r) +} + +// RegisterFor registers an adapter for some JSON capabilities. +func (r *Registrar) RegisterFor(entry ifaces.RegistryEntry) { + r.gmx.Lock() + if entry.What.Has(ifaces.CapabilityMarshalJSON) { + e := entry + e.What &= ifaces.Capabilities(ifaces.CapabilityMarshalJSON) + r.marshalerRegistry = slices.Insert(r.marshalerRegistry, 0, &e) + } + if entry.What.Has(ifaces.CapabilityUnmarshalJSON) { + e := entry + e.What &= ifaces.Capabilities(ifaces.CapabilityUnmarshalJSON) + r.unmarshalerRegistry = slices.Insert(r.unmarshalerRegistry, 0, &e) + } + if entry.What.Has(ifaces.CapabilityOrderedMarshalJSON) { + e := entry + e.What &= ifaces.Capabilities(ifaces.CapabilityOrderedMarshalJSON) + r.orderedMarshalerRegistry = slices.Insert(r.orderedMarshalerRegistry, 0, &e) + } + if entry.What.Has(ifaces.CapabilityOrderedUnmarshalJSON) { + e := entry + e.What &= ifaces.Capabilities(ifaces.CapabilityOrderedUnmarshalJSON) + r.orderedUnmarshalerRegistry = slices.Insert(r.orderedUnmarshalerRegistry, 0, &e) + } + if entry.What.Has(ifaces.CapabilityOrderedMap) { + e := entry + e.What &= ifaces.Capabilities(ifaces.CapabilityOrderedMap) + r.orderedMapRegistry = slices.Insert(r.orderedMapRegistry, 0, &e) + } + r.gmx.Unlock() +} + +// AdapterFor returns an [ifaces.Adapter] that supports this capability for this type of value. +// +// The [ifaces.Adapter] may be redeemed to its pool using its Redeem() method, for adapters that support global +// pooling. When this is not the case, the redeem function is just a no-operation. +func (r *Registrar) AdapterFor(capability ifaces.Capability, value any) ifaces.Adapter { + entry := r.findFirstFor(capability, value) + if entry == nil { + return nil + } + + return entry.Constructor() +} + +func (r *Registrar) clearCache() { + clear(r.marshalerCache) + clear(r.unmarshalerCache) + clear(r.orderedMarshalerCache) + clear(r.orderedUnmarshalerCache) + clear(r.orderedMapCache) +} + +func (r *Registrar) findFirstFor(capability ifaces.Capability, value any) *ifaces.RegistryEntry { + switch capability { + case ifaces.CapabilityMarshalJSON: + return r.findFirstInRegistryFor(r.marshalerRegistry, r.marshalerCache, capability, value) + case ifaces.CapabilityUnmarshalJSON: + return r.findFirstInRegistryFor(r.unmarshalerRegistry, r.unmarshalerCache, capability, value) + case ifaces.CapabilityOrderedMarshalJSON: + return r.findFirstInRegistryFor(r.orderedMarshalerRegistry, r.orderedMarshalerCache, capability, value) + case ifaces.CapabilityOrderedUnmarshalJSON: + return r.findFirstInRegistryFor(r.orderedUnmarshalerRegistry, r.orderedUnmarshalerCache, capability, value) + case ifaces.CapabilityOrderedMap: + return r.findFirstInRegistryFor(r.orderedMapRegistry, r.orderedMapCache, capability, value) + default: + panic(fmt.Errorf("unsupported capability %d: %w", capability, ErrRegistry)) + } +} + +func (r *Registrar) findFirstInRegistryFor(reg registry, cache map[reflect.Type]*ifaces.RegistryEntry, capability ifaces.Capability, value any) *ifaces.RegistryEntry { + r.gmx.RLock() + if len(reg) > 1 { + if entry, ok := cache[reflect.TypeOf(value)]; ok { + // cache hit + r.gmx.RUnlock() + return entry + } + } + + for _, entry := range reg { + if !entry.Support(capability, value) { + continue + } + + r.gmx.RUnlock() + + // update the internal cache + r.gmx.Lock() + cache[reflect.TypeOf(value)] = entry + r.gmx.Unlock() + + return entry + } + + // no adapter found + r.gmx.RUnlock() + + return nil +} + +// MarshalAdapterFor returns the first adapter that knows how to Marshal this type of value. +func MarshalAdapterFor(value any) ifaces.MarshalAdapter { + return Registry.AdapterFor(ifaces.CapabilityMarshalJSON, value) +} + +// OrderedMarshalAdapterFor returns the first adapter that knows how to OrderedMarshal this type of value. +func OrderedMarshalAdapterFor(value ifaces.Ordered) ifaces.OrderedMarshalAdapter { + return Registry.AdapterFor(ifaces.CapabilityOrderedMarshalJSON, value) +} + +// UnmarshalAdapterFor returns the first adapter that knows how to Unmarshal this type of value. +func UnmarshalAdapterFor(value any) ifaces.UnmarshalAdapter { + return Registry.AdapterFor(ifaces.CapabilityUnmarshalJSON, value) +} + +// OrderedUnmarshalAdapterFor provides the first adapter that knows how to OrderedUnmarshal this type of value. +func OrderedUnmarshalAdapterFor(value ifaces.SetOrdered) ifaces.OrderedUnmarshalAdapter { + return Registry.AdapterFor(ifaces.CapabilityOrderedUnmarshalJSON, value) +} + +// NewOrderedMap provides the "ordered map" implementation provided by the registry. +func NewOrderedMap(capacity int) ifaces.OrderedMap { + var v any + adapter := Registry.AdapterFor(ifaces.CapabilityOrderedUnmarshalJSON, v) + if adapter == nil { + return nil + } + + defer adapter.Redeem() + return adapter.NewOrderedMap(capacity) +} + +func noopRedeemer() {} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/adapter.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/adapter.go new file mode 100644 index 0000000000..94185f79c1 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/adapter.go @@ -0,0 +1,133 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package json + +import ( + stdjson "encoding/json" + "fmt" + + "github.com/go-openapi/swag/jsonutils/adapters/ifaces" + "github.com/go-openapi/swag/typeutils" +) + +const sensibleBufferSize = 8192 + +type jsonError string + +func (e jsonError) Error() string { + return string(e) +} + +// ErrStdlib indicates that an error comes from the stdlib JSON adapter +var ErrStdlib jsonError = "error from the JSON adapter stdlib" + +var _ ifaces.Adapter = &Adapter{} + +type Adapter struct { + options +} + +// NewAdapter yields an [ifaces.Adapter] using the standard library. +func NewAdapter(opts ...Option) *Adapter { + var o options + + return &Adapter{ + options: buildOptions(o, opts), + } +} + +func (a *Adapter) Marshal(value any) ([]byte, error) { + return stdjson.Marshal(value) +} + +func (a *Adapter) Unmarshal(data []byte, value any) error { + return stdjson.Unmarshal(data, value) +} + +func (a *Adapter) OrderedMarshal(value ifaces.Ordered) ([]byte, error) { + w, redeem := poolOfWriters.BorrowWithRedeem() + defer redeem() + w.setBuf() + + a.orderedMarshal(w, value, 1) + + return w.BuildBytes() +} + +func (a *Adapter) OrderedUnmarshal(data []byte, value ifaces.SetOrdered) error { + var m MapSlice + if err := m.orderedUnmarshalJSON(data, a.maxDepth()); err != nil { + return err + } + + if typeutils.IsNil(m) { + // force input value to nil + value.SetOrderedItems(nil) + + return nil + } + + value.SetOrderedItems(m.OrderedItems()) + + return nil +} + +func (a *Adapter) NewOrderedMap(capacity int) ifaces.OrderedMap { + m := make(MapSlice, 0, capacity) + + return &m +} + +// Redeem the [Adapter] when it comes from a pool. +// +// The adapter becomes immediately unusable once redeemed. +func (a *Adapter) Redeem() { + if a == nil { + return + } + + RedeemAdapter(a) +} + +func (a *Adapter) Reset() { + a.options = options{} +} + +// orderedMarshal writes value to w, tracking the container nesting depth to guard +// against stack overflow on deeply nested structures. +func (a *Adapter) orderedMarshal(w *jwriter, value ifaces.Ordered, depth int) { + if typeutils.IsNil(value) { + w.RawString("null") + + return + } + + if maxDepth := a.maxDepth(); depth > maxDepth { + w.SetErr(fmt.Errorf("maximum nesting depth of %d exceeded: %w", maxDepth, ErrStdlib)) + + return + } + + w.RawByte('{') + first := true + for k, v := range value.OrderedItems() { + if first { + first = false + } else { + w.RawByte(',') + } + + w.String(k) + w.RawByte(':') + + switch val := v.(type) { + case ifaces.Ordered: + a.orderedMarshal(w, val, depth+1) + default: + w.Raw(stdjson.Marshal(v)) + } + } + + w.RawByte('}') +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/doc.go new file mode 100644 index 0000000000..5ea1b44042 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/doc.go @@ -0,0 +1,5 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package json implements an [ifaces.Adapter] using the standard library. +package json diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/lexer.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/lexer.go new file mode 100644 index 0000000000..ac81cbc75f --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/lexer.go @@ -0,0 +1,356 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package json + +import ( + stdjson "encoding/json" + "errors" + "fmt" + "io" + "math" + "strconv" + + "github.com/go-openapi/swag/conv" +) + +type token struct { + stdjson.Token +} + +func (t token) String() string { + if t == invalidToken { + return "invalid token" + } + if t == eofToken { + return "EOF" + } + + return fmt.Sprintf("%v", t.Token) +} + +func (t token) Kind() tokenKind { + switch t.Token.(type) { + case nil: + return tokenNull + case stdjson.Delim: + return tokenDelim + case bool: + return tokenBool + case float64: + return tokenFloat + case stdjson.Number: + return tokenNumber + case string: + return tokenString + default: + return tokenUndef + } +} + +func (t token) Delim() byte { + r, ok := t.Token.(stdjson.Delim) + if !ok { + return 0 + } + + return byte(r) //nolint:gosec // delimiter runes are single byte +} + +type tokenKind uint8 + +const ( + tokenUndef tokenKind = iota + tokenString + tokenNumber + tokenFloat + tokenBool + tokenNull + tokenDelim +) + +var ( + invalidToken = token{ + Token: stdjson.Token(struct{}{}), + } + + eofToken = token{ + Token: stdjson.Token(&struct{}{}), + } + + undefToken = token{ + Token: stdjson.Token(uint8(0)), + } +) + +// jlexer apes easyjson's jlexer, but uses the standard library decoder under the hood. +type jlexer struct { + buf *bytesReader + dec *stdjson.Decoder + err error + // current token + next token + // started bool + + // depth tracks the current JSON container nesting level, and maxDepth caps it + // to guard against stack-overflow on adversarially deep documents. The standard + // library's streaming [encoding/json.Decoder.Token] API (used here) does not + // enforce the max-depth guard that [encoding/json.Unmarshal] provides, so we do. + depth int + maxDepth int +} + +type bytesReader struct { + buf []byte + offset int +} + +func (b *bytesReader) Reset() { + b.buf = nil + b.offset = 0 +} + +func (b *bytesReader) Read(p []byte) (int, error) { + if b.offset >= len(b.buf) { + return 0, io.EOF + } + + n := len(p) + buf := b.buf[b.offset:] + m := len(buf) + + if n >= m { + copy(p, buf) + b.offset += m + + return m, nil + } + + copy(p, buf[:n]) + b.offset += n + + return n, nil +} + +var _ io.Reader = &bytesReader{} + +func newLexer(data []byte) *jlexer { + l := &jlexer{ + // current: undefToken, + next: undefToken, + maxDepth: defaultMaxNestingDepth, + } + l.buf = &bytesReader{ + buf: data, + } + l.dec = stdjson.NewDecoder(l.buf) // unfortunately, cannot pool this + + return l +} + +func (l *jlexer) Reset() { + l.err = nil + l.next = undefToken + l.depth = 0 + l.maxDepth = defaultMaxNestingDepth + l.dec = nil + // leave l.buf alone, since they are replaced at every Borrow + l.buf = nil +} + +func (l *jlexer) Error() error { + return l.err +} + +func (l *jlexer) SetErr(err error) { + l.err = err +} + +func (l *jlexer) Ok() bool { + return l.err == nil +} + +// NextToken consumes a token +func (l *jlexer) NextToken() token { + if !l.Ok() { + return invalidToken + } + + if l.next != undefToken { + next := l.next + l.next = undefToken + + return next + } + + return l.fetchToken() +} + +// PeekToken returns the next token without consuming it +func (l *jlexer) PeekToken() token { + if l.next == undefToken { + l.next = l.fetchToken() + } + + return l.next +} + +func (l *jlexer) Skip() { + _ = l.NextToken() +} + +func (l *jlexer) IsDelim(c byte) bool { + if !l.Ok() { + return false + } + + next := l.PeekToken() + if next.Kind() != tokenDelim { + return false + } + + if next.Delim() != c { + return false + } + + return true +} + +func (l *jlexer) IsNull() bool { + if !l.Ok() { + return false + } + + next := l.PeekToken() + + return next.Kind() == tokenNull +} + +func (l *jlexer) Delim(c byte) { + if !l.Ok() { + return + } + + tok := l.NextToken() + if tok.Kind() != tokenDelim { + l.err = fmt.Errorf("expected a delimiter token but got '%v': %w", tok, ErrStdlib) + + return + } + + if tok.Delim() != c { + l.err = fmt.Errorf("expected delimiter '%q' but got '%q': %w", c, tok.Delim(), ErrStdlib) + + return + } + + // Track container nesting depth centrally: every '{' or '[' opens a level and + // every '}' or ']' closes one. This guards the mutually-recursive unmarshal + // routines (unmarshalObject/unmarshalArray/asInterface) against stack overflow. + switch c { + case '{', '[': + l.depth++ + if l.maxDepth > 0 && l.depth > l.maxDepth { + l.err = fmt.Errorf("maximum nesting depth of %d exceeded: %w", l.maxDepth, ErrStdlib) + } + case '}', ']': + l.depth-- + } +} + +func (l *jlexer) Null() { + if !l.Ok() { + return + } + + tok := l.NextToken() + if tok.Kind() != tokenNull { + l.err = fmt.Errorf("expected a null token but got '%v': %w", tok, ErrStdlib) + } +} + +func (l *jlexer) Number() any { + if !l.Ok() { + return 0 + } + + tok := l.NextToken() + + switch tok.Kind() { //nolint:exhaustive + case tokenNumber: + n := tok.Token.(stdjson.Number).String() + f, _ := strconv.ParseFloat(n, 64) + if conv.IsFloat64AJSONInteger(f) { + return int64(math.Trunc(f)) + } + + return f + + case tokenFloat: + f := tok.Token.(float64) + if conv.IsFloat64AJSONInteger(f) { + return int64(math.Trunc(f)) + } + + return f + + default: + l.err = fmt.Errorf("expected a number token but got '%v': %w", tok, ErrStdlib) + + return 0 + } +} + +func (l *jlexer) Bool() bool { + if !l.Ok() { + return false + } + + tok := l.NextToken() + if tok.Kind() != tokenBool { + l.err = fmt.Errorf("expected a bool token but got '%v': %w", tok, ErrStdlib) + + return false + } + + return tok.Token.(bool) +} + +func (l *jlexer) String() string { + if !l.Ok() { + return "" + } + + tok := l.NextToken() + if tok.Kind() != tokenString { + l.err = fmt.Errorf("expected a string token but got '%v': %w", tok, ErrStdlib) + + return "" + } + + return tok.Token.(string) +} + +// Commas and colons are elided. +func (l *jlexer) fetchToken() token { + jtok, err := l.dec.Token() + if err != nil { + if errors.Is(err, io.EOF) { + return eofToken + } + + l.err = errors.Join(err, ErrStdlib) + return invalidToken + } + + return token{Token: jtok} +} + +func (l *jlexer) setBuf(data []byte) func() { + rdr, redeemBuf := poolOfReaders.BorrowWithRedeem() + l.buf = rdr + l.buf.buf = data + l.dec = stdjson.NewDecoder(l.buf) // cannot pool, not exposed by the encoding/json API + + return redeemBuf +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/options.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/options.go new file mode 100644 index 0000000000..f114f1f1a1 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/options.go @@ -0,0 +1,52 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package json + +// defaultMaxNestingDepth is the default maximum number of nested JSON containers +// ('{' or '[') that the ordered-JSON marshaler and unmarshaler will process before +// returning an error. +// +// It mirrors the limit enforced by the standard library's [encoding/json] decoder +// (see encoding/json's internal maxNestingDepth), which this adapter would otherwise +// not benefit from since it drives [encoding/json.Decoder.Token] directly. +const defaultMaxNestingDepth = 10000 + +// Option selects options for the stdlib adapter. +type Option func(o options) options + +type options struct { + maxNestingDepth int +} + +func buildOptions(o options, opts []Option) options { + for _, apply := range opts { + o = apply(o) + } + + return o +} + +// maxDepth returns the configured maximum nesting depth, or the default when unset. +func (o options) maxDepth() int { + if o.maxNestingDepth <= 0 { + return defaultMaxNestingDepth + } + + return o.maxNestingDepth +} + +// WithMaxNestingDepth sets the maximum number of nested JSON containers accepted +// when marshaling or unmarshaling ordered JSON. +// +// A value <= 0 selects the default (10,000). +// +// This guards against stack-overflow crashes on deeply nested (possibly adversarial) +// JSON documents or in-memory structures. +func WithMaxNestingDepth(depth int) Option { + return func(o options) options { + o.maxNestingDepth = depth + + return o + } +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/ordered_map.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/ordered_map.go new file mode 100644 index 0000000000..a5a8f4b631 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/ordered_map.go @@ -0,0 +1,289 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package json + +import ( + stdjson "encoding/json" + "fmt" + "iter" + + "github.com/go-openapi/swag/jsonutils/adapters/ifaces" +) + +var _ ifaces.OrderedMap = &MapSlice{} + +// MapSlice represents a JSON object, with the order of keys maintained. +type MapSlice []MapItem + +func (s MapSlice) OrderedItems() iter.Seq2[string, any] { + return func(yield func(string, any) bool) { + for _, item := range s { + if !yield(item.Key, item.Value) { + return + } + } + } +} + +func (s *MapSlice) SetOrderedItems(items iter.Seq2[string, any]) { + if items == nil { + *s = nil + + return + } + + m := *s + if len(m) > 0 { + // update mode + idx := make(map[string]int, len(m)) + + for i, item := range m { + idx[item.Key] = i + } + + for k, v := range items { + idx, ok := idx[k] + if ok { + m[idx].Value = v + + continue + } + m = append(m, MapItem{Key: k, Value: v}) + } + + *s = m + + return + } + + for k, v := range items { + m = append(m, MapItem{Key: k, Value: v}) + } + + *s = m +} + +// MarshalJSON renders a [MapSlice] as JSON bytes, preserving the order of keys. +func (s MapSlice) MarshalJSON() ([]byte, error) { + return s.OrderedMarshalJSON() +} + +func (s MapSlice) OrderedMarshalJSON() ([]byte, error) { + w, redeem := poolOfWriters.BorrowWithRedeem() + defer redeem() + w.setBuf() + + s.marshalObject(w, 1) + + return w.BuildBytes() // this clones data, so it's okay to redeem the writer and its buffer +} + +// UnmarshalJSON builds a [MapSlice] from JSON bytes, preserving the order of keys. +// +// Inner objects are unmarshaled as [MapSlice] slices and not map[string]any. +func (s *MapSlice) UnmarshalJSON(data []byte) error { + return s.OrderedUnmarshalJSON(data) +} + +func (s *MapSlice) OrderedUnmarshalJSON(data []byte) error { + return s.orderedUnmarshalJSON(data, defaultMaxNestingDepth) +} + +func (s *MapSlice) orderedUnmarshalJSON(data []byte, maxDepth int) error { + l, redeem := poolOfLexers.BorrowWithRedeem() + defer redeem() + + redeemBuf := l.setBuf(data) + defer redeemBuf() + + if maxDepth > 0 { + l.maxDepth = maxDepth + } + + s.unmarshalObject(l) + + return l.Error() +} + +func (s MapSlice) marshalObject(w *jwriter, depth int) { + if s == nil { + w.RawString("null") + + return + } + + if depth > defaultMaxNestingDepth { + w.SetErr(fmt.Errorf("maximum nesting depth of %d exceeded: %w", defaultMaxNestingDepth, ErrStdlib)) + + return + } + + w.RawByte('{') + + if len(s) == 0 { + w.RawByte('}') + + return + } + + s[0].marshalJSON(w, depth) + + for i := 1; i < len(s); i++ { + w.RawByte(',') + s[i].marshalJSON(w, depth) + } + + w.RawByte('}') +} + +func (s *MapSlice) unmarshalObject(in *jlexer) { + if in.IsNull() { + in.Skip() + + return + } + + in.Delim('{') // consume token + if !in.Ok() { + return + } + + result := make(MapSlice, 0) + + for in.Ok() && !in.IsDelim('}') { + var mi MapItem + + mi.unmarshalKeyValue(in) + result = append(result, mi) + } + + in.Delim('}') + + if !in.Ok() { + return + } + + *s = result +} + +// MapItem represents the value of a key in a JSON object held by [MapSlice]. +// +// Notice that [MapItem] should not be marshaled to or unmarshaled from JSON directly, +// use this type as part of a [MapSlice] when dealing with JSON bytes. +type MapItem struct { + Key string + Value any +} + +func (s MapItem) marshalJSON(w *jwriter, depth int) { + w.String(s.Key) + w.RawByte(':') + + // Recurse internally for nested ordered maps so the depth guard is not lost across + // the stdjson.Marshal boundary (which would reset it and re-enable stack overflow). + if nested, ok := s.Value.(MapSlice); ok { + nested.marshalObject(w, depth+1) + + return + } + + w.Raw(stdjson.Marshal(s.Value)) +} + +func (s *MapItem) unmarshalKeyValue(in *jlexer) { + key := in.String() // consume string + value := s.asInterface(in) // consume any value, including termination tokens '}' or ']' + + if !in.Ok() { + return + } + + s.Key = key + s.Value = value +} + +func (s *MapItem) unmarshalArray(in *jlexer) []any { + if in.IsNull() { + in.Skip() + + return nil + } + + in.Delim('[') // consume token + if !in.Ok() { + return nil + } + + ret := make([]any, 0) + + for in.Ok() && !in.IsDelim(']') { + ret = append(ret, s.asInterface(in)) + } + + in.Delim(']') + if !in.Ok() { + return nil + } + + return ret +} + +// asInterface is very much like [jlexer.Lexer.Interface], but unmarshals an object +// into a [MapSlice], not a map[string]any. +// +// We have to force parsing errors somehow, since [jlexer.Lexer] doesn't let us +// set a parsing error directly. +func (s *MapItem) asInterface(in *jlexer) any { + if !in.Ok() { + return nil + } + + tok := in.PeekToken() // look-ahead what the next token looks like + kind := tok.Kind() + + switch kind { + case tokenString: + return in.String() // consume string + + case tokenNumber, tokenFloat: + return in.Number() + + case tokenBool: + return in.Bool() + + case tokenNull: + in.Null() + + return nil + + case tokenDelim: + switch tok.Delim() { + case '{': // not consumed yet + ret := make(MapSlice, 0) + ret.unmarshalObject(in) // consumes the terminating '}' + + if in.Ok() { + return ret + } + + // lexer is in an error state: will exhaust + return nil + + case '[': // not consumed yet + return s.unmarshalArray(in) // consumes the terminating ']' + default: + in.SetErr(fmt.Errorf("unexpected delimiter: %v: %w", tok, ErrStdlib)) // force error + return nil + } + + case tokenUndef: + fallthrough + default: + if in.Ok() { + in.SetErr(fmt.Errorf("unexpected token: %v: %w", tok, ErrStdlib)) // force error + } + + return nil + } +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/pool.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/pool.go new file mode 100644 index 0000000000..2f06b88e80 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/pool.go @@ -0,0 +1,42 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package json + +import ( + "github.com/go-openapi/swag/jsonutils/adapters/ifaces" + "github.com/go-openapi/swag/pools" +) + +var ( + poolOfAdapters = pools.New[Adapter]() + poolOfWriters = pools.NewRedeemable[jwriter]() + poolOfLexers = pools.NewRedeemable[jlexer]() + poolOfReaders = pools.NewRedeemable[bytesReader]() +) + +// BorrowAdapter borrows an [Adapter] from the pool, recycling already allocated instances. +func BorrowAdapter() *Adapter { + return poolOfAdapters.Borrow() +} + +// BorrowAdapterIface borrows a stdlib [Adapter] and converts it directly +// to [ifaces.Adapter]. +// +// This is useful to avoid further allocations when translating the concrete type into +// an interface. +func BorrowAdapterIface() ifaces.Adapter { + return poolOfAdapters.Borrow() +} + +// RedeemAdapter redeems an [Adapter] to the pool, so it may be recycled. +func RedeemAdapter(a *Adapter) { + poolOfAdapters.Redeem(a) +} + +func RedeemAdapterIface(a ifaces.Adapter) { + concrete, ok := a.(*Adapter) + if ok { + poolOfAdapters.Redeem(concrete) + } +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/register.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/register.go new file mode 100644 index 0000000000..0dec85425b --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/register.go @@ -0,0 +1,34 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package json + +import ( + "fmt" + "reflect" + + "github.com/go-openapi/swag/jsonutils/adapters/ifaces" +) + +func Register(dispatcher ifaces.Registrar, opts ...Option) { + t := reflect.TypeOf(Adapter{}) + var o options + o = buildOptions(o, opts) + + dispatcher.RegisterFor( + ifaces.RegistryEntry{ + Who: fmt.Sprintf("%s.%s", t.PkgPath(), t.Name()), + What: ifaces.AllCapabilities, + Constructor: func() ifaces.Adapter { + a := BorrowAdapter() + a.options = o + + return a + }, + Support: support, + }) +} + +func support(_ ifaces.Capability, _ any) bool { + return true +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/writer.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/writer.go new file mode 100644 index 0000000000..c84e02cd83 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/writer.go @@ -0,0 +1,88 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package json + +import ( + "bytes" + "encoding/json" + "strings" +) + +type jwriter struct { + buf *bytes.Buffer + err error +} + +func (w *jwriter) Reset() { + if w.buf != nil { + w.buf.Reset() + } + w.err = nil +} + +// SetErr records the first error encountered while building the JSON output. +func (w *jwriter) SetErr(err error) { + if w.err != nil { + return + } + w.err = err +} + +func (w *jwriter) RawString(s string) { + if w.err != nil { + return + } + w.buf.WriteString(s) +} + +func (w *jwriter) Raw(b []byte, err error) { + if w.err != nil { + return + } + if err != nil { + w.err = err + return + } + + _, _ = w.buf.Write(b) +} + +func (w *jwriter) RawByte(c byte) { + if w.err != nil { + return + } + w.buf.WriteByte(c) +} + +var quoteReplacer = strings.NewReplacer(`"`, `\"`, `\`, `\\`) + +func (w *jwriter) String(s string) { + if w.err != nil { + return + } + // escape quotes and \ + s = quoteReplacer.Replace(s) + + _ = w.buf.WriteByte('"') + json.HTMLEscape(w.buf, []byte(s)) + _ = w.buf.WriteByte('"') +} + +// BuildBytes returns a clone of the internal buffer. +func (w *jwriter) BuildBytes() ([]byte, error) { + if w.err != nil { + return nil, w.err + } + + return bytes.Clone(w.buf.Bytes()), nil +} + +func (w *jwriter) setBuf() { + if w.buf != nil { + return + } + + buf := make([]byte, 0, sensibleBufferSize) + w.buf = bytes.NewBuffer(buf) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/concat.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/concat.go new file mode 100644 index 0000000000..2068503af0 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/concat.go @@ -0,0 +1,92 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package jsonutils + +import ( + "bytes" +) + +// nullJSON represents a JSON object with null type +var nullJSON = []byte("null") + +const comma = byte(',') + +var closers map[byte]byte + +func init() { + closers = map[byte]byte{ + '{': '}', + '[': ']', + } +} + +// ConcatJSON concatenates multiple json objects or arrays efficiently. +// +// Note that [ConcatJSON] performs a very simple (and fast) concatenation +// operation: it does not attempt to merge objects. +func ConcatJSON(blobs ...[]byte) []byte { + if len(blobs) == 0 { + return nil + } + + last := len(blobs) - 1 + for blobs[last] == nil || bytes.Equal(blobs[last], nullJSON) { + // strips trailing null objects + last-- + if last < 0 { + // there was nothing but "null"s or nil... + return nil + } + } + if last == 0 { + return blobs[0] + } + + var opening, closing byte + var idx, a int + buf := bytes.NewBuffer(nil) + + for i, b := range blobs[:last+1] { + if b == nil || bytes.Equal(b, nullJSON) { + // a null object is in the list: skip it + continue + } + if len(b) > 0 && opening == 0 { // is this an array or an object? + opening, closing = b[0], closers[b[0]] + } + + if opening != '{' && opening != '[' { + continue // don't know how to concatenate non container objects + } + + const minLengthIfNotEmpty = 3 + if len(b) < minLengthIfNotEmpty { // yep empty but also the last one, so closing this thing + if i == last && a > 0 { + _ = buf.WriteByte(closing) // never returns err != nil + } + continue + } + + idx = 0 + if a > 0 { // we need to join with a comma for everything beyond the first non-empty item + _ = buf.WriteByte(comma) // never returns err != nil + idx = 1 // this is not the first or the last so we want to drop the leading bracket + } + + if i != last { // not the last one, strip brackets + _, _ = buf.Write(b[idx : len(b)-1]) // never returns err != nil + } else { // last one, strip only the leading bracket + _, _ = buf.Write(b[idx:]) + } + a++ + } + + // somehow it ended up being empty, so provide a default value + if buf.Len() == 0 && (opening == '{' || opening == '[') { + _ = buf.WriteByte(opening) // never returns err != nil + _ = buf.WriteByte(closing) + } + + return buf.Bytes() +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/doc.go new file mode 100644 index 0000000000..3926cc58d1 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/doc.go @@ -0,0 +1,7 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package jsonutils provides helpers to work with JSON. +// +// These utilities work with dynamic go structures to and from JSON. +package jsonutils diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/json.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/json.go new file mode 100644 index 0000000000..40753ce03f --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/json.go @@ -0,0 +1,116 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package jsonutils + +import ( + "bytes" + "encoding/json" + + "github.com/go-openapi/swag/jsonutils/adapters" + "github.com/go-openapi/swag/jsonutils/adapters/ifaces" +) + +// WriteJSON marshals a data structure as JSON. +// +// The difference with [json.Marshal] is that it may check among several alternatives +// to do so. +// +// See [adapters.Registrar] for more details about how to configure +// multiple serialization alternatives. +// +// NOTE: to allow types that are [easyjson.Marshaler] s to use that route to process JSON, +// you now need to register the adapter for easyjson at runtime. +func WriteJSON(value any) ([]byte, error) { + if orderedMap, isOrdered := value.(ifaces.Ordered); isOrdered { + orderedMarshaler := adapters.OrderedMarshalAdapterFor(orderedMap) + + if orderedMarshaler != nil { + defer orderedMarshaler.Redeem() + + return orderedMarshaler.OrderedMarshal(orderedMap) + } + + // no support found in registered adapters, fallback to the default (unordered) case + } + + marshaler := adapters.MarshalAdapterFor(value) + if marshaler != nil { + defer marshaler.Redeem() + + return marshaler.Marshal(value) + } + + // no support found in registered adapters, fallback to the default standard library. + // + // This only happens when tinkering with the global registry of adapters, since the default handles all the above cases. + return json.Marshal(value) // Codecov ignore // this is a safeguard not easily simulated in tests +} + +// ReadJSON unmarshals JSON data into a data structure. +// +// The difference with [json.Unmarshal] is that it may check among several alternatives +// to do so. +// +// See [adapters.Registrar] for more details about how to configure +// multiple serialization alternatives. +// +// NOTE: value must be a pointer. +// +// If the provided value implements [ifaces.SetOrdered], it is a considered an "ordered map" and [ReadJSON] +// will favor an adapter that supports the [ifaces.OrderedUnmarshal] feature, or fallback to +// an unordered behavior if none is found. +// +// NOTE: to allow types that are [easyjson.Unmarshaler] s to use that route to process JSON, +// you now need to register the adapter for easyjson at runtime. +func ReadJSON(data []byte, value any) error { + trimmedData := bytes.Trim(data, "\x00") + + if orderedMap, isOrdered := value.(ifaces.SetOrdered); isOrdered { + // if the value is an ordered map, favors support for OrderedUnmarshal. + + orderedUnmarshaler := adapters.OrderedUnmarshalAdapterFor(orderedMap) + + if orderedUnmarshaler != nil { + defer orderedUnmarshaler.Redeem() + + return orderedUnmarshaler.OrderedUnmarshal(trimmedData, orderedMap) + } + + // no support found in registered adapters, fallback to the default (unordered) case + } + + unmarshaler := adapters.UnmarshalAdapterFor(value) + if unmarshaler != nil { + defer unmarshaler.Redeem() + + return unmarshaler.Unmarshal(trimmedData, value) + } + + // no support found in registered adapters, fallback to the default standard library. + // + // This only happens when tinkering with the global registry of adapters, since the default handles all the above cases. + return json.Unmarshal(trimmedData, value) // Codecov ignore // this is a safeguard not easily simulated in tests +} + +// FromDynamicJSON turns a go value into a properly JSON typed structure. +// +// "Dynamic JSON" refers to what you get when unmarshaling JSON into an untyped any, +// i.e. objects are represented by map[string]any, arrays by []any, and +// all numbers are represented as float64. +// +// NOTE: target must be a pointer. +// +// # Maintaining the order of keys in objects +// +// If source and target implement [ifaces.Ordered] and [ifaces.SetOrdered] respectively, +// they are considered "ordered maps" and the order of keys is maintained in the +// "jsonification" process. In that case, map[string]any values are replaced by (ordered) [JSONMapSlice] ones. +func FromDynamicJSON(source, target any) error { + b, err := WriteJSON(source) + if err != nil { + return err + } + + return ReadJSON(b, target) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/ordered_map.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/ordered_map.go new file mode 100644 index 0000000000..38dd3e2444 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils/ordered_map.go @@ -0,0 +1,114 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package jsonutils + +import ( + "iter" + + "github.com/go-openapi/swag/jsonutils/adapters" + "github.com/go-openapi/swag/typeutils" +) + +// JSONMapSlice represents a JSON object, with the order of keys maintained. +// +// It behaves like an ordered map, but keys can't be accessed in constant time. +type JSONMapSlice []JSONMapItem + +// OrderedItems iterates over all (key,value) pairs with the order of keys maintained. +// +// This implements the [ifaces.Ordered] interface, so that [ifaces.Adapter] s know how to marshal +// keys in the desired order. +func (s JSONMapSlice) OrderedItems() iter.Seq2[string, any] { + return func(yield func(string, any) bool) { + for _, item := range s { + if !yield(item.Key, item.Value) { + return + } + } + } +} + +// SetOrderedItems sets keys in the [JSONMapSlice] objects, as presented by +// the provided iterator. +// +// As a special case, if items is nil, this sets to receiver to a nil slice. +// +// This implements the [ifaces.SetOrdered] interface, so that [ifaces.Adapter] s know how to unmarshal +// keys in the desired order. +func (s *JSONMapSlice) SetOrderedItems(items iter.Seq2[string, any]) { + if items == nil { + // force receiver to be a nil slice + *s = nil + + return + } + + m := *s + if len(m) > 0 { + // update mode: short-circuited when unmarshaling fresh data structures + idx := make(map[string]int, len(m)) + + for i, item := range m { + idx[item.Key] = i + } + + for k, v := range items { + idx, ok := idx[k] + if ok { + m[idx].Value = v + + continue + } + + m = append(m, JSONMapItem{Key: k, Value: v}) + } + + *s = m + + return + } + + for k, v := range items { + m = append(m, JSONMapItem{Key: k, Value: v}) + } + + *s = m +} + +// MarshalJSON renders a [JSONMapSlice] as JSON bytes, preserving the order of keys. +// +// It will pick the JSON library currently configured by the [adapters.Registry] (defaults to the standard library). +func (s JSONMapSlice) MarshalJSON() ([]byte, error) { + orderedMarshaler := adapters.OrderedMarshalAdapterFor(s) + defer orderedMarshaler.Redeem() + + return orderedMarshaler.OrderedMarshal(s) +} + +// UnmarshalJSON builds a [JSONMapSlice] from JSON bytes, preserving the order of keys. +// +// Inner objects are unmarshaled as ordered [JSONMapSlice] slices and not map[string]any. +// +// It will pick the JSON library currently configured by the [adapters.Registry] (defaults to the standard library). +func (s *JSONMapSlice) UnmarshalJSON(data []byte) error { + if typeutils.IsNil(*s) { + // allow to unmarshal with a simple var declaration (nil slice) + *s = JSONMapSlice{} + } + + orderedUnmarshaler := adapters.OrderedUnmarshalAdapterFor(s) + defer orderedUnmarshaler.Redeem() + + return orderedUnmarshaler.OrderedUnmarshal(data, s) +} + +// JSONMapItem represents the value of a key in a JSON object held by [JSONMapSlice]. +// +// Notice that JSONMapItem should not be marshaled to or unmarshaled from JSON directly. +// +// Use this type as part of a [JSONMapSlice] when dealing with JSON bytes. +type JSONMapItem struct { + Key string + Value any +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils_iface.go new file mode 100644 index 0000000000..7bd4105fa5 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/jsonutils_iface.go @@ -0,0 +1,65 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import ( + "log" + + "github.com/go-openapi/swag/jsonutils" +) + +// JSONMapSlice represents a JSON object, with the order of keys maintained +// +// Deprecated: use [jsonutils.JSONMapSlice] instead, or [yamlutils.YAMLMapSlice] if you marshal YAML. +type JSONMapSlice = jsonutils.JSONMapSlice + +// JSONMapItem represents a JSON object, with the order of keys maintained +// +// Deprecated: use [jsonutils.JSONMapItem] instead. +type JSONMapItem = jsonutils.JSONMapItem + +// WriteJSON writes json data. +// +// Deprecated: use [jsonutils.WriteJSON] instead. +func WriteJSON(data any) ([]byte, error) { return jsonutils.WriteJSON(data) } + +// ReadJSON reads json data. +// +// Deprecated: use [jsonutils.ReadJSON] instead. +func ReadJSON(data []byte, value any) error { return jsonutils.ReadJSON(data, value) } + +// DynamicJSONToStruct converts an untyped JSON structure into a target data type. +// +// Deprecated: use [jsonutils.FromDynamicJSON] instead. +func DynamicJSONToStruct(data any, target any) error { + return jsonutils.FromDynamicJSON(data, target) +} + +// ConcatJSON concatenates multiple JSON objects efficiently. +// +// Deprecated: use [jsonutils.ConcatJSON] instead. +func ConcatJSON(blobs ...[]byte) []byte { return jsonutils.ConcatJSON(blobs...) } + +// ToDynamicJSON turns a go value into a properly JSON untyped structure. +// +// It is the same as [FromDynamicJSON], but doesn't check for errors. +// +// Deprecated: this function is a misnomer and is unsafe. Use [jsonutils.FromDynamicJSON] instead. +func ToDynamicJSON(value any) any { + var res any + if err := FromDynamicJSON(value, &res); err != nil { + log.Println(err) + } + + return res +} + +// FromDynamicJSON turns a go value into a properly JSON typed structure. +// +// "Dynamic JSON" refers to what you get when unmarshaling JSON into an untyped any, +// i.e. objects are represented by map[string]any, arrays by []any, and all +// scalar values are any. +// +// Deprecated: use [jsonutils.FromDynamicJSON] instead. +func FromDynamicJSON(data, target any) error { return jsonutils.FromDynamicJSON(data, target) } diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/loading.go b/tests/e2e/vendor/github.com/go-openapi/swag/loading.go deleted file mode 100644 index 783442fddf..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/loading.go +++ /dev/null @@ -1,176 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import ( - "fmt" - "io" - "log" - "net/http" - "net/url" - "os" - "path" - "path/filepath" - "runtime" - "strings" - "time" -) - -// LoadHTTPTimeout the default timeout for load requests -var LoadHTTPTimeout = 30 * time.Second - -// LoadHTTPBasicAuthUsername the username to use when load requests require basic auth -var LoadHTTPBasicAuthUsername = "" - -// LoadHTTPBasicAuthPassword the password to use when load requests require basic auth -var LoadHTTPBasicAuthPassword = "" - -// LoadHTTPCustomHeaders an optional collection of custom HTTP headers for load requests -var LoadHTTPCustomHeaders = map[string]string{} - -// LoadFromFileOrHTTP loads the bytes from a file or a remote http server based on the path passed in -func LoadFromFileOrHTTP(pth string) ([]byte, error) { - return LoadStrategy(pth, os.ReadFile, loadHTTPBytes(LoadHTTPTimeout))(pth) -} - -// LoadFromFileOrHTTPWithTimeout loads the bytes from a file or a remote http server based on the path passed in -// timeout arg allows for per request overriding of the request timeout -func LoadFromFileOrHTTPWithTimeout(pth string, timeout time.Duration) ([]byte, error) { - return LoadStrategy(pth, os.ReadFile, loadHTTPBytes(timeout))(pth) -} - -// LoadStrategy returns a loader function for a given path or URI. -// -// The load strategy returns the remote load for any path starting with `http`. -// So this works for any URI with a scheme `http` or `https`. -// -// The fallback strategy is to call the local loader. -// -// The local loader takes a local file system path (absolute or relative) as argument, -// or alternatively a `file://...` URI, **without host** (see also below for windows). -// -// There are a few liberalities, initially intended to be tolerant regarding the URI syntax, -// especially on windows. -// -// Before the local loader is called, the given path is transformed: -// - percent-encoded characters are unescaped -// - simple paths (e.g. `./folder/file`) are passed as-is -// - on windows, occurrences of `/` are replaced by `\`, so providing a relative path such a `folder/file` works too. -// -// For paths provided as URIs with the "file" scheme, please note that: -// - `file://` is simply stripped. -// This means that the host part of the URI is not parsed at all. -// For example, `file:///folder/file" becomes "/folder/file`, -// but `file://localhost/folder/file` becomes `localhost/folder/file` on unix systems. -// Similarly, `file://./folder/file` yields `./folder/file`. -// - on windows, `file://...` can take a host so as to specify an UNC share location. -// -// Reminder about windows-specifics: -// - `file://host/folder/file` becomes an UNC path like `\\host\folder\file` (no port specification is supported) -// - `file:///c:/folder/file` becomes `C:\folder\file` -// - `file://c:/folder/file` is tolerated (without leading `/`) and becomes `c:\folder\file` -func LoadStrategy(pth string, local, remote func(string) ([]byte, error)) func(string) ([]byte, error) { - if strings.HasPrefix(pth, "http") { - return remote - } - - return func(p string) ([]byte, error) { - upth, err := url.PathUnescape(p) - if err != nil { - return nil, err - } - - if !strings.HasPrefix(p, `file://`) { - // regular file path provided: just normalize slashes - return local(filepath.FromSlash(upth)) - } - - if runtime.GOOS != "windows" { - // crude processing: this leaves full URIs with a host with a (mostly) unexpected result - upth = strings.TrimPrefix(upth, `file://`) - - return local(filepath.FromSlash(upth)) - } - - // windows-only pre-processing of file://... URIs - - // support for canonical file URIs on windows. - u, err := url.Parse(filepath.ToSlash(upth)) - if err != nil { - return nil, err - } - - if u.Host != "" { - // assume UNC name (volume share) - // NOTE: UNC port not yet supported - - // when the "host" segment is a drive letter: - // file://C:/folder/... => C:\folder - upth = path.Clean(strings.Join([]string{u.Host, u.Path}, `/`)) - if !strings.HasSuffix(u.Host, ":") && u.Host[0] != '.' { - // tolerance: if we have a leading dot, this can't be a host - // file://host/share/folder\... ==> \\host\share\path\folder - upth = "//" + upth - } - } else { - // no host, let's figure out if this is a drive letter - upth = strings.TrimPrefix(upth, `file://`) - first, _, _ := strings.Cut(strings.TrimPrefix(u.Path, "/"), "/") - if strings.HasSuffix(first, ":") { - // drive letter in the first segment: - // file:///c:/folder/... ==> strip the leading slash - upth = strings.TrimPrefix(upth, `/`) - } - } - - return local(filepath.FromSlash(upth)) - } -} - -func loadHTTPBytes(timeout time.Duration) func(path string) ([]byte, error) { - return func(path string) ([]byte, error) { - client := &http.Client{Timeout: timeout} - req, err := http.NewRequest(http.MethodGet, path, nil) //nolint:noctx - if err != nil { - return nil, err - } - - if LoadHTTPBasicAuthUsername != "" && LoadHTTPBasicAuthPassword != "" { - req.SetBasicAuth(LoadHTTPBasicAuthUsername, LoadHTTPBasicAuthPassword) - } - - for key, val := range LoadHTTPCustomHeaders { - req.Header.Set(key, val) - } - - resp, err := client.Do(req) - defer func() { - if resp != nil { - if e := resp.Body.Close(); e != nil { - log.Println(e) - } - } - }() - if err != nil { - return nil, err - } - - if resp.StatusCode != http.StatusOK { - return nil, fmt.Errorf("could not access document at %q [%s] ", path, resp.Status) - } - - return io.ReadAll(resp.Body) - } -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/loading/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/loading/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/loading/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/loading/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/loading/doc.go new file mode 100644 index 0000000000..112c49968b --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/loading/doc.go @@ -0,0 +1,29 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package loading provides tools to load a file from http or from a local file system. +// +// # Security +// +// By default, the local loader reads any path the process can access, including absolute +// paths and "file://" URIs (for example "file:///etc/passwd"). Applications that pass +// untrusted input to [LoadFromFileOrHTTP], [JSONDoc] (or to downstream consumers such as +// go-openapi/loads) must confine local loading to a trusted directory. +// +// Use [WithRoot] to do so: it resolves every requested path relative to a chosen directory +// and rejects anything that escapes it, including via symlink. It is built on [os.Root] +// and is therefore safer than passing an [os.DirFS] to [WithFS], which does not block +// symlink escapes. +// +// Remote loading uses a standard [net/http] client. +// By default it follows redirects and performs no destination filtering — exactly like [net/http.DefaultClient]. +// +// A caller-controlled URL may therefore reach internal services or cloud metadata endpoints +// (server-side request forgery). +// +// This package does not, and should not, embed a network policy: +// when the URL may derive from untrusted input, supply a restricted client with +// [WithHTTPClient] whose transport rejects unwanted destinations at dial time — which also +// covers redirects and DNS rebinding. +// See the example on [LoadFromFileOrHTTP]. +package loading diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/loading/errors.go b/tests/e2e/vendor/github.com/go-openapi/swag/loading/errors.go new file mode 100644 index 0000000000..b3964289c7 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/loading/errors.go @@ -0,0 +1,15 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package loading + +type loadingError string + +const ( + // ErrLoader is an error raised by the file loader utility + ErrLoader loadingError = "loader error" +) + +func (e loadingError) Error() string { + return string(e) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/loading/json.go b/tests/e2e/vendor/github.com/go-openapi/swag/loading/json.go new file mode 100644 index 0000000000..59db12f5cf --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/loading/json.go @@ -0,0 +1,25 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package loading + +import ( + "encoding/json" + "errors" + "path/filepath" +) + +// JSONMatcher matches json for a file loader. +func JSONMatcher(path string) bool { + ext := filepath.Ext(path) + return ext == ".json" || ext == ".jsn" || ext == ".jso" +} + +// JSONDoc loads a json document from either a file or a remote url. +func JSONDoc(path string, opts ...Option) (json.RawMessage, error) { + data, err := LoadFromFileOrHTTP(path, opts...) + if err != nil { + return nil, errors.Join(err, ErrLoader) + } + return json.RawMessage(data), nil +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/loading/loading.go b/tests/e2e/vendor/github.com/go-openapi/swag/loading/loading.go new file mode 100644 index 0000000000..0b38ac1e38 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/loading/loading.go @@ -0,0 +1,188 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package loading + +import ( + "context" + "embed" + "fmt" + "io" + "log" + "net/http" + "net/url" + "path" + "path/filepath" + "runtime" + "strings" +) + +// LoadFromFileOrHTTP loads the bytes from a file or a remote http server based on the path passed in. +// +// Security: by default a local path is read with no confinement, so a caller-controlled path +// (including a "file://" URI or an absolute path) may read any file the process can access. +// When the path may derive from untrusted input, confine local loading with [WithRoot]. +func LoadFromFileOrHTTP(pth string, opts ...Option) ([]byte, error) { + o := optionsWithDefaults(opts) + return LoadStrategy(pth, o.ReadFileFunc(), loadHTTPBytes(opts...), opts...)(pth) +} + +// LoadStrategy returns a loader function for a given path or URI. +// +// The load strategy returns the remote load for any path starting with `http`. +// So this works for any URI with a scheme `http` or `https`. +// +// The fallback strategy is to call the local loader. +// +// The local loader takes a local file system path (absolute or relative) as argument, +// or alternatively a `file://...` URI, **without host** (see also below for windows). +// +// There are a few liberalities, initially intended to be tolerant regarding the URI syntax, +// especially on windows. +// +// Before the local loader is called, the given path is transformed: +// - percent-encoded characters are unescaped +// - simple paths (e.g. `./folder/file`) are passed as-is +// - on windows, occurrences of `/` are replaced by `\`, so providing a relative path such a `folder/file` works too. +// +// For paths provided as URIs with the "file" scheme, please note that: +// - `file://` is simply stripped. +// This means that the host part of the URI is not parsed at all. +// For example, `file:///folder/file" becomes "/folder/file`, +// but `file://localhost/folder/file` becomes `localhost/folder/file` on unix systems. +// Similarly, `file://./folder/file` yields `./folder/file`. +// - on windows, `file://...` can take a host so as to specify an UNC share location. +// +// Reminder about windows-specifics: +// - `file://host/folder/file` becomes an UNC path like `\\host\folder\file` (no port specification is supported) +// - `file:///c:/folder/file` becomes `C:\folder\file` +// - `file://c:/folder/file` is tolerated (without leading `/`) and becomes `c:\folder\file` +func LoadStrategy(pth string, local, remote func(string) ([]byte, error), opts ...Option) func(string) ([]byte, error) { + if hasHTTPScheme(pth) { + return remote + } + o := optionsWithDefaults(opts) + _, isEmbedFS := o.fs.(embed.FS) + // any loader backed by an fs.FS or an os.Root consumes forward-slash paths on every + // platform, so it must not go through the windows-native file:// preprocessing below. + isFSBacked := o.fs != nil || o.root != "" + + return func(p string) ([]byte, error) { + upth, err := url.PathUnescape(p) + if err != nil { + return nil, err + } + + cpth, hasPrefix := strings.CutPrefix(upth, "file://") + if !hasPrefix || isFSBacked || runtime.GOOS != "windows" { + // crude processing: trim the file:// prefix. This leaves full URIs with a host with a (mostly) unexpected result + // regular file path provided: just normalize slashes + if isEmbedFS { + // embed.FS always uses "/" as separator, even on windows, and rejects leading "./" or "/". + return local(strings.TrimLeft(filepath.ToSlash(cpth), "./")) // remove invalid leading characters for embed FS + } + + if isFSBacked { + // other fs.FS (e.g. os.DirFS) and os.Root loaders also use "/" on every platform. + // Escaping paths (absolute, "..", escaping symlinks) are rejected by the loader, not rewritten here. + return local(filepath.ToSlash(cpth)) + } + + return local(filepath.FromSlash(cpth)) + } + + // windows-only pre-processing of file://... URIs, excluding embed.FS + + // support for canonical file URIs on windows. + u, err := url.Parse(filepath.ToSlash(upth)) + if err != nil { + return nil, err + } + + if u.Host != "" { + // assume UNC name (volume share) + // NOTE: UNC port not yet supported + + // when the "host" segment is a drive letter: + // file://C:/folder/... => C:\folder + upth = path.Clean(strings.Join([]string{u.Host, u.Path}, `/`)) + if !strings.HasSuffix(u.Host, ":") && u.Host[0] != '.' { + // tolerance: if we have a leading dot, this can't be a host + // file://host/share/folder\... ==> \\host\share\path\folder + upth = "//" + upth + } + } else { + // no host, let's figure out if this is a drive letter + upth = strings.TrimPrefix(upth, `file://`) + first, _, _ := strings.Cut(strings.TrimPrefix(u.Path, "/"), "/") + if strings.HasSuffix(first, ":") { + // drive letter in the first segment: + // file:///c:/folder/... ==> strip the leading slash + upth = strings.TrimPrefix(upth, `/`) + } + } + + return local(filepath.FromSlash(upth)) + } +} + +// hasHTTPScheme reports whether pth is an absolute URL with an http or https scheme, +// selecting the remote loader. The comparison is case-insensitive, as URL schemes are. +// +// Requiring the "://" separator (rather than a bare "http" prefix) avoids misrouting a +// local file whose name merely starts with "http" (e.g. "httpbin.json") to the remote loader. +func hasHTTPScheme(pth string) bool { + for _, scheme := range [...]string{"http://", "https://"} { + if len(pth) >= len(scheme) && strings.EqualFold(pth[:len(scheme)], scheme) { + return true + } + } + + return false +} + +func loadHTTPBytes(opts ...Option) func(path string) ([]byte, error) { + o := optionsWithDefaults(opts) + + return func(path string) ([]byte, error) { + client := o.client + timeoutCtx := context.Background() + var cancel func() + + if o.httpTimeout > 0 { + timeoutCtx, cancel = context.WithTimeout(timeoutCtx, o.httpTimeout) + defer cancel() + } + + req, err := http.NewRequestWithContext(timeoutCtx, http.MethodGet, path, nil) + if err != nil { + return nil, err + } + + if o.basicAuthUsername != "" && o.basicAuthPassword != "" { + req.SetBasicAuth(o.basicAuthUsername, o.basicAuthPassword) + } + + for key, val := range o.customHeaders { + req.Header.Set(key, val) + } + + resp, err := client.Do(req) + defer func() { + if resp != nil { + if e := resp.Body.Close(); e != nil { + log.Println(e) + } + } + }() + if err != nil { + return nil, err + } + + if resp.StatusCode != http.StatusOK { + return nil, fmt.Errorf("could not access document at %q [%s]: %w", path, resp.Status, ErrLoader) + } + + return io.ReadAll(resp.Body) + } +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/loading/options.go b/tests/e2e/vendor/github.com/go-openapi/swag/loading/options.go new file mode 100644 index 0000000000..2c12823172 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/loading/options.go @@ -0,0 +1,170 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package loading + +import ( + "errors" + "io/fs" + "net/http" + "os" + "time" +) + +type ( + // Option provides options for loading a file over HTTP or from a file. + Option func(*options) + + httpOptions struct { + httpTimeout time.Duration + basicAuthUsername string + basicAuthPassword string + customHeaders map[string]string + client *http.Client + } + + fileOptions struct { + fs fs.ReadFileFS + root string // when non-empty, local reads are confined to this directory via os.Root + } + + options struct { + httpOptions + fileOptions + } +) + +func (fo fileOptions) ReadFileFunc() func(string) ([]byte, error) { + if fo.root != "" { + root := fo.root + + return func(name string) ([]byte, error) { + r, err := os.OpenRoot(root) + if err != nil { + return nil, errors.Join(err, ErrLoader) + } + defer func() { _ = r.Close() }() + + return r.ReadFile(name) + } + } + + if fo.fs == nil { + return os.ReadFile + } + + return fo.fs.ReadFile +} + +// WithTimeout sets a timeout for the remote file loader. +// +// The default timeout is 30s. +func WithTimeout(timeout time.Duration) Option { + return func(o *options) { + o.httpTimeout = timeout + } +} + +// WithBasicAuth sets a basic authentication scheme for the remote file loader. +func WithBasicAuth(username, password string) Option { + return func(o *options) { + o.basicAuthUsername = username + o.basicAuthPassword = password + } +} + +// WithCustomHeaders sets custom headers for the remote file loader. +func WithCustomHeaders(headers map[string]string) Option { + return func(o *options) { + if o.customHeaders == nil { + o.customHeaders = make(map[string]string, len(headers)) + } + + for header, value := range headers { + o.customHeaders[header] = value + } + } +} + +// WithHTTPClient overrides the default HTTP client used to fetch a remote file. +// +// By default, [http.DefaultClient] is used. +func WithHTTPClient(client *http.Client) Option { + return func(o *options) { + o.client = client + } +} + +// WithFS sets a file system for the local file loader. +// +// If the provided file system is a [fs.ReadFileFS], the ReadFile function is used. +// Otherwise, ReadFile is wrapped using [fs.ReadFile]. +// +// By default, the file system is the one provided by the os package. +// +// For example, this may be set to consume from an embedded file system, or a rooted FS. +// +// WithFS and [WithRoot] are mutually exclusive: the last one applied wins. +// +// Security note: a file system built from [os.DirFS] confines paths but does NOT protect +// against symlinks that escape the root. To load from a directory derived from untrusted +// input, prefer [WithRoot], which is symlink-escape resistant. +func WithFS(filesystem fs.FS) Option { + return func(o *options) { + o.root = "" // last-wins vs WithRoot + if rfs, ok := filesystem.(fs.ReadFileFS); ok { + o.fs = rfs + + return + } + o.fs = readFileFS{FS: filesystem} + } +} + +// WithRoot confines local file loading to dir. +// +// Every requested path is resolved relative to dir, and any path that would escape dir — +// whether through an absolute path, ".." traversal, or a symlink pointing outside dir — is +// rejected. This is built on [os.Root] and is therefore resistant to the symlink escapes +// that a plain [os.DirFS] does not prevent. +// +// WithRoot is the recommended option when loading specs from a location derived from +// untrusted input. It applies to local loading only and has no effect on remote +// (http/https) loading. WithRoot and [WithFS] are mutually exclusive: the last one applied +// wins. +// +// Note: [os.Root] confines path resolution but does not, by itself, protect against +// traversal of mount/bind boundaries, /proc special files, or device files. Point WithRoot +// at a directory that holds only the documents you intend to expose. +func WithRoot(dir string) Option { + return func(o *options) { + o.root = dir + o.fs = nil // last-wins vs WithFS + } +} + +type readFileFS struct { + fs.FS +} + +func (r readFileFS) ReadFile(name string) ([]byte, error) { + return fs.ReadFile(r.FS, name) +} + +func optionsWithDefaults(opts []Option) options { + const defaultTimeout = 30 * time.Second + + o := options{ + // package level defaults + httpOptions: httpOptions{ + httpTimeout: defaultTimeout, + client: http.DefaultClient, + }, + } + + for _, apply := range opts { + apply(&o) + } + + return o +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/loading/yaml.go b/tests/e2e/vendor/github.com/go-openapi/swag/loading/yaml.go new file mode 100644 index 0000000000..3ebb53668c --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/loading/yaml.go @@ -0,0 +1,37 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package loading + +import ( + "encoding/json" + "path/filepath" + + "github.com/go-openapi/swag/yamlutils" +) + +// YAMLMatcher matches yaml for a file loader. +func YAMLMatcher(path string) bool { + ext := filepath.Ext(path) + return ext == ".yaml" || ext == ".yml" +} + +// YAMLDoc loads a yaml document from either http or a file and converts it to json. +func YAMLDoc(path string, opts ...Option) (json.RawMessage, error) { + yamlDoc, err := YAMLData(path, opts...) + if err != nil { + return nil, err + } + + return yamlutils.YAMLToJSON(yamlDoc) +} + +// YAMLData loads a yaml document from either http or a file. +func YAMLData(path string, opts ...Option) (any, error) { + data, err := LoadFromFileOrHTTP(path, opts...) + if err != nil { + return nil, err + } + + return yamlutils.BytesToYAMLDoc(data) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/loading_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/loading_iface.go new file mode 100644 index 0000000000..78dadfccdf --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/loading_iface.go @@ -0,0 +1,93 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import ( + "encoding/json" + "time" + + "github.com/go-openapi/swag/loading" +) + +var ( + // Package-level defaults for the file loading utilities (deprecated). + + // LoadHTTPTimeout the default timeout for load requests. + // + // Deprecated: use [loading.WithTimeout] instead. + LoadHTTPTimeout = 30 * time.Second + + // LoadHTTPBasicAuthUsername the username to use when load requests require basic auth. + // + // Deprecated: use [loading.WithBasicAuth] instead. + LoadHTTPBasicAuthUsername = "" + + // LoadHTTPBasicAuthPassword the password to use when load requests require basic auth. + // + // Deprecated: use [loading.WithBasicAuth] instead. + LoadHTTPBasicAuthPassword = "" + + // LoadHTTPCustomHeaders an optional collection of custom HTTP headers for load requests. + // + // Deprecated: use [loading.WithCustomHeaders] instead. + LoadHTTPCustomHeaders = map[string]string{} +) + +// LoadFromFileOrHTTP loads the bytes from a file or a remote http server based on the provided path. +// +// Deprecated: use [loading.LoadFromFileOrHTTP] instead. +func LoadFromFileOrHTTP(pth string, opts ...loading.Option) ([]byte, error) { + return loading.LoadFromFileOrHTTP(pth, loadingOptionsWithDefaults(opts)...) +} + +// LoadFromFileOrHTTPWithTimeout loads the bytes from a file or a remote http server based on the path passed in +// timeout arg allows for per request overriding of the request timeout. +// +// Deprecated: use [loading.LoadFileOrHTTP] with the [loading.WithTimeout] option instead. +func LoadFromFileOrHTTPWithTimeout(pth string, timeout time.Duration, opts ...loading.Option) ([]byte, error) { + opts = append(opts, loading.WithTimeout(timeout)) + + return LoadFromFileOrHTTP(pth, opts...) +} + +// LoadStrategy returns a loader function for a given path or URL. +// +// Deprecated: use [loading.LoadStrategy] instead. +func LoadStrategy(pth string, local, remote func(string) ([]byte, error), opts ...loading.Option) func(string) ([]byte, error) { + return loading.LoadStrategy(pth, local, remote, loadingOptionsWithDefaults(opts)...) +} + +// YAMLMatcher matches yaml for a file loader. +// +// Deprecated: use [loading.YAMLMatcher] instead. +func YAMLMatcher(path string) bool { return loading.YAMLMatcher(path) } + +// YAMLDoc loads a yaml document from either http or a file and converts it to json. +// +// Deprecated: use [loading.YAMLDoc] instead. +func YAMLDoc(path string) (json.RawMessage, error) { + return loading.YAMLDoc(path) +} + +// YAMLData loads a yaml document from either http or a file. +// +// Deprecated: use [loading.YAMLData] instead. +func YAMLData(path string) (any, error) { + return loading.YAMLData(path) +} + +// loadingOptionsWithDefaults bridges deprecated default settings that use package-level variables, +// with the recommended use of loading.Option. +func loadingOptionsWithDefaults(opts []loading.Option) []loading.Option { + const defaultOptions = 3 + o := make([]loading.Option, 0, defaultOptions+len(opts)) + o = append(o, []loading.Option{ + loading.WithTimeout(LoadHTTPTimeout), + loading.WithBasicAuth(LoadHTTPBasicAuthUsername, LoadHTTPBasicAuthPassword), + loading.WithCustomHeaders(LoadHTTPCustomHeaders), + }...) + o = append(o, opts...) + + return o +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/BENCHMARK.md b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/BENCHMARK.md new file mode 100644 index 0000000000..abe6e9533e --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/BENCHMARK.md @@ -0,0 +1,90 @@ +# Benchmarking name mangling utilities + +```bash +go test -bench XXX -run XXX -benchtime 30s +``` + +## Benchmarks at `b3e7a5386f996177e4808f11acb2aa93a0f660df` + +``` +goos: linux +goarch: amd64 +pkg: github.com/go-openapi/swag +cpu: Intel(R) Core(TM) i5-6200U CPU @ 2.30GHz +BenchmarkToXXXName/ToGoName-4 862623 44101 ns/op 10450 B/op 732 allocs/op +BenchmarkToXXXName/ToVarName-4 853656 40728 ns/op 10468 B/op 734 allocs/op +BenchmarkToXXXName/ToFileName-4 1268312 27813 ns/op 9785 B/op 617 allocs/op +BenchmarkToXXXName/ToCommandName-4 1276322 27903 ns/op 9785 B/op 617 allocs/op +BenchmarkToXXXName/ToHumanNameLower-4 895334 40354 ns/op 10472 B/op 731 allocs/op +BenchmarkToXXXName/ToHumanNameTitle-4 882441 40678 ns/op 10566 B/op 749 allocs/op +``` + +## Benchmarks after PR #79 + +~ x10 performance improvement and ~ /100 memory allocations. + +``` +goos: linux +goarch: amd64 +pkg: github.com/go-openapi/swag +cpu: Intel(R) Core(TM) i5-6200U CPU @ 2.30GHz +BenchmarkToXXXName/ToGoName-4 9595830 3991 ns/op 42 B/op 5 allocs/op +BenchmarkToXXXName/ToVarName-4 9194276 3984 ns/op 62 B/op 7 allocs/op +BenchmarkToXXXName/ToFileName-4 17002711 2123 ns/op 147 B/op 7 allocs/op +BenchmarkToXXXName/ToCommandName-4 16772926 2111 ns/op 147 B/op 7 allocs/op +BenchmarkToXXXName/ToHumanNameLower-4 9788331 3749 ns/op 92 B/op 6 allocs/op +BenchmarkToXXXName/ToHumanNameTitle-4 9188260 3941 ns/op 104 B/op 6 allocs/op +``` + +``` +goos: linux +goarch: amd64 +pkg: github.com/go-openapi/swag +cpu: AMD Ryzen 7 5800X 8-Core Processor +BenchmarkToXXXName/ToGoName-16 18527378 1972 ns/op 42 B/op 5 allocs/op +BenchmarkToXXXName/ToVarName-16 15552692 2093 ns/op 62 B/op 7 allocs/op +BenchmarkToXXXName/ToFileName-16 32161176 1117 ns/op 147 B/op 7 allocs/op +BenchmarkToXXXName/ToCommandName-16 32256634 1137 ns/op 147 B/op 7 allocs/op +BenchmarkToXXXName/ToHumanNameLower-16 18599661 1946 ns/op 92 B/op 6 allocs/op +BenchmarkToXXXName/ToHumanNameTitle-16 17581353 2054 ns/op 105 B/op 6 allocs/op +``` + +## Benchmarks at `d7d2d1b895f5b6747afaff312dd2a402e69e818b` + +go1.24 + +``` +goos: linux +goarch: amd64 +pkg: github.com/go-openapi/swag +cpu: AMD Ryzen 7 5800X 8-Core Processor +BenchmarkToXXXName/ToGoName-16 19757858 1881 ns/op 42 B/op 5 allocs/op +BenchmarkToXXXName/ToVarName-16 17494111 2094 ns/op 74 B/op 7 allocs/op +BenchmarkToXXXName/ToFileName-16 28161226 1492 ns/op 158 B/op 7 allocs/op +BenchmarkToXXXName/ToCommandName-16 23787333 1489 ns/op 158 B/op 7 allocs/op +BenchmarkToXXXName/ToHumanNameLower-16 17537257 2030 ns/op 103 B/op 6 allocs/op +BenchmarkToXXXName/ToHumanNameTitle-16 16977453 2156 ns/op 105 B/op 6 allocs/op +``` + +## Benchmarks after PR #106 + +Moving the scope of everything down to a struct allowed to reduce a bit garbage and pooling. + +On top of that, ToGoName (and thus ToVarName) have been subject to a minor optimization, removing a few allocations. + +Overall timings improve by ~ -10%. + +go1.24 + +``` +goos: linux +goarch: amd64 +pkg: github.com/go-openapi/swag/mangling +cpu: AMD Ryzen 7 5800X 8-Core Processor +BenchmarkToXXXName/ToGoName-16 22496130 1618 ns/op 31 B/op 3 allocs/op +BenchmarkToXXXName/ToVarName-16 22538068 1618 ns/op 33 B/op 3 allocs/op +BenchmarkToXXXName/ToFileName-16 27722977 1236 ns/op 105 B/op 6 allocs/op +BenchmarkToXXXName/ToCommandName-16 27967395 1258 ns/op 105 B/op 6 allocs/op +BenchmarkToXXXName/ToHumanNameLower-16 18587901 1917 ns/op 103 B/op 6 allocs/op +BenchmarkToXXXName/ToHumanNameTitle-16 17193208 2019 ns/op 108 B/op 7 allocs/op +``` diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/doc.go new file mode 100644 index 0000000000..ce0d890485 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/doc.go @@ -0,0 +1,25 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package mangling provides name mangling capabilities. +// +// Name mangling is an important stage when generating code: +// it helps construct safe program identifiers that abide by the language rules +// and play along with linters. +// +// Examples: +// +// Suppose we get an object name taken from an API spec: "json_object", +// +// We may generate a legit go type name using [NameMangler.ToGoName]: "JsonObject". +// +// We may then locate this type in a source file named using [NameMangler.ToFileName]: "json_object.go". +// +// The methods exposed by the NameMangler are used to generate code in many different contexts, such as: +// +// - generating exported or unexported go identifiers from a JSON schema or an API spec +// - generating file names +// - generating human-readable comments for types and variables +// - generating JSON-like API identifiers from go code +// - ... +package mangling diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/initialism_index.go b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/initialism_index.go new file mode 100644 index 0000000000..e5b70c1493 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/initialism_index.go @@ -0,0 +1,270 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package mangling + +import ( + "sort" + "strings" + "unicode" + "unicode/utf8" +) + +// DefaultInitialisms returns all the initialisms configured by default for this package. +// +// # Motivation +// +// Common initialisms are acronyms for which the ordinary camel-casing rules are altered and +// for which we retain the original case. +// +// This is largely specific to the go naming conventions enforced by golint (now revive). +// +// # Example +// +// In go, "id" is a good-looking identifier, but "Id" is not and "ID" is preferred +// (notice that this stems only from conventions: the go compiler accepts all of these). +// +// Similarly, we may use "http", but not "Http". In this case, "HTTP" is preferred. +// +// # Reference and customization +// +// The default list of these casing-style exceptions is taken from the [github.com/mgechev/revive] linter for go: +// https://github.com/mgechev/revive/blob/master/lint/name.go#L93 +// +// There are a few additions to the original list, such as IPv4, IPv6 and OAI ("OpenAPI"). +// +// For these additions, "IPv4" would be preferred to "Ipv4" or "IPV4", and "OAI" to "Oai" +// +// You may redefine this list entirely using the mangler option [WithInitialisms], or simply add extra definitions +// using [WithAdditionalInitialisms]. +// +// # Mixed-case and plurals +// +// Notice that initialisms are not necessarily fully upper-cased: a mixed-case initialism indicates the preferred casing. +// +// Obviously, lower-case only initialisms do not make a lot of sense: if lower-case only initialisms are added, +// they will be considered fully capitalized. +// +// Plural forms use mixed case like "IDs". And so do values like "IPv4" or "IPv6". +// +// The [NameMangler] automatically detects simple plurals for words such as "IDs" or "APIs", +// so you don't need to configure these variants. +// +// At this moment, it doesn't support pluralization of terms that ends with an 's' (or 'S'), since there is +// no clear consensus on whether a word like DNS should be pluralized as DNSes or remain invariant. +// The [NameMangler] consider those invariant. Therefore DNSs or DNSes are not recognized as plurals for DNS. +// +// Besids, we don't want to support pluralization of terms which would otherwise conflict with another one, +// like "HTTPs" vs "HTTPS". All these should be considered invariant. Hence: "Https" matches "HTTPS" and +// "HTTPSS" is "HTTPS" followed by "S". +func DefaultInitialisms() []string { + return []string{ + "ACL", + "API", + "ASCII", + "CPU", + "CSS", + "DNS", + "EOF", + "GUID", + "HTML", + "HTTPS", + "HTTP", + "ID", + "IP", + "IPv4", // prefer the mixed case outcome IPv4 over the capitalized IPV4 + "IPv6", // prefer the mixed case outcome IPv6 over the capitalized IPV6 + "JSON", + "LHS", + "OAI", + "QPS", + "RAM", + "RHS", + "RPC", + "SLA", + "SMTP", + "SQL", + "SSH", + "TCP", + "TLS", + "TTL", + "UDP", + "UI", + "UID", + "UUID", + "URI", + "URL", + "UTF8", + "VM", + "XML", + "XMPP", + "XSRF", + "XSS", + } +} + +type indexOfInitialisms struct { + initialismsCache + + index map[string]struct{} +} + +func newIndexOfInitialisms() *indexOfInitialisms { + return &indexOfInitialisms{ + index: make(map[string]struct{}), + } +} + +func (m *indexOfInitialisms) add(words ...string) *indexOfInitialisms { + for _, word := range words { + // sanitization of injected words: trimmed from blanks, and must start with a letter + trimmed := strings.TrimSpace(word) + + firstRune, _ := utf8.DecodeRuneInString(trimmed) + if !unicode.IsLetter(firstRune) { + continue + } + + // Initialisms are case-sensitive. This means that we support mixed-case words. + // However, if specified as a lower-case string, the initialism should be fully capitalized. + if trimmed == strings.ToLower(trimmed) { + m.index[strings.ToUpper(trimmed)] = struct{}{} + + continue + } + + m.index[trimmed] = struct{}{} + } + return m +} + +func (m *indexOfInitialisms) sorted() []string { + result := make([]string, 0, len(m.index)) + for k := range m.index { + result = append(result, k) + } + sort.Sort(sort.Reverse(byInitialism(result))) + return result +} + +func (m *indexOfInitialisms) buildCache() { + m.build(m.sorted(), m.pluralForm) +} + +// initialismsCache caches all needed pre-computed and converted initialism entries, +// in the desired resolution order. +type initialismsCache struct { + initialisms []string + initialismsRunes [][]rune + initialismsUpperCased [][]rune // initialisms cached in their trimmed, upper-cased version + initialismsPluralForm []pluralForm +} + +func (c *initialismsCache) build(in []string, pluralfunc func(string) pluralForm) { + c.initialisms = in + c.initialismsRunes = asRunes(c.initialisms) + c.initialismsUpperCased = asUpperCased(c.initialisms) + c.initialismsPluralForm = asPluralForms(c.initialisms, pluralfunc) +} + +// pluralForm denotes the kind of pluralization to be used for initialisms. +// +// At this moment, initialisms are either invariant or follow a simple plural form with an +// extra (lower case) "s". +type pluralForm uint8 + +const ( + notPlural pluralForm = iota + invariantPlural + simplePlural +) + +func (f pluralForm) String() string { + switch f { + case notPlural: + return "notPlural" + case invariantPlural: + return "invariantPlural" + case simplePlural: + return "simplePlural" + default: + return "" + } +} + +// pluralForm indicates how we want to pluralize a given initialism. +// +// Besides configured invariant forms (like HTTP and HTTPS), +// an initialism is normally pluralized by adding a single 's', like in IDs. +// +// Initialisms ending with an 'S' or an 's' are configured as invariant (we don't +// support plural forms like CSSes or DNSes, however the mechanism could be extended to +// do just that). +func (m *indexOfInitialisms) pluralForm(key string) pluralForm { + if _, ok := m.index[key]; !ok { + return notPlural + } + + if strings.HasSuffix(strings.ToUpper(key), "S") { + return invariantPlural + } + + if _, ok := m.index[key+"s"]; ok { + return invariantPlural + } + + if _, ok := m.index[key+"S"]; ok { + return invariantPlural + } + + return simplePlural +} + +type byInitialism []string + +func (s byInitialism) Len() int { + return len(s) +} +func (s byInitialism) Swap(i, j int) { + s[i], s[j] = s[j], s[i] +} + +// Less specifies the order in which initialisms are prioritized: +// 1. match longest first +// 2. when equal length, match in reverse lexicographical order, lower case match comes first +func (s byInitialism) Less(i, j int) bool { + if len(s[i]) != len(s[j]) { + return len(s[i]) < len(s[j]) + } + + return s[i] < s[j] +} + +func asRunes(in []string) [][]rune { + out := make([][]rune, len(in)) + for i, initialism := range in { + out[i] = []rune(initialism) + } + + return out +} + +func asUpperCased(in []string) [][]rune { + out := make([][]rune, len(in)) + + for i, initialism := range in { + out[i] = []rune(upper(trim(initialism))) + } + + return out +} + +// asPluralForms bakes an index of pluralization support. +func asPluralForms(in []string, pluralFunc func(string) pluralForm) []pluralForm { + out := make([]pluralForm, len(in)) + for i, initialism := range in { + out[i] = pluralFunc(initialism) + } + + return out +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/name_lexem.go b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/name_lexem.go new file mode 100644 index 0000000000..bc837e3b9f --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/name_lexem.go @@ -0,0 +1,186 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package mangling + +import ( + "bytes" + "strings" + "unicode" + "unicode/utf8" +) + +type ( + lexemKind uint8 + + nameLexem struct { + original string + matchedInitialism string + kind lexemKind + } +) + +const ( + lexemKindCasualName lexemKind = iota + lexemKindInitialismName +) + +func newInitialismNameLexem(original, matchedInitialism string) nameLexem { + return nameLexem{ + kind: lexemKindInitialismName, + original: original, + matchedInitialism: matchedInitialism, + } +} + +func newCasualNameLexem(original string) nameLexem { + return nameLexem{ + kind: lexemKindCasualName, + original: trim(original), // TODO: save on calls to trim + } +} + +// WriteTitleized writes the titleized lexeme to a bytes.Buffer. +// +// If the first letter cannot be capitalized, it doesn't write anything and return false, +// so the caller may attempt some workaround strategy. +func (l nameLexem) WriteTitleized(w *bytes.Buffer, alwaysUpper bool) bool { + if l.kind == lexemKindInitialismName { + w.WriteString(l.matchedInitialism) + + return true + } + + if len(l.original) == 0 { + return true + } + + if len(l.original) == 1 { + // identifier is too short: casing will depend on the context + firstByte := l.original[0] + switch { + case 'A' <= firstByte && firstByte <= 'Z': + // safe + w.WriteByte(firstByte) + + return true + case alwaysUpper && 'a' <= firstByte && firstByte <= 'z': + w.WriteByte(firstByte - 'a' + 'A') + + return true + default: + + // not a letter: skip and let the caller decide + return false + } + } + + if firstByte := l.original[0]; firstByte < utf8.RuneSelf { + // ASCII + switch { + case 'A' <= firstByte && firstByte <= 'Z': + // already an upper case letter + w.WriteString(l.original) + + return true + case 'a' <= firstByte && firstByte <= 'z': + w.WriteByte(firstByte - 'a' + 'A') + w.WriteString(l.original[1:]) + + return true + default: + // not a good candidate: doesn't start with a letter + return false + } + } + + // unicode + firstRune, idx := utf8.DecodeRuneInString(l.original) + if !unicode.IsLetter(firstRune) || !unicode.IsUpper(unicode.ToUpper(firstRune)) { + // not a good candidate: doesn't start with a letter + // or a rune for which case doesn't make sense (e.g. East-Asian runes etc) + return false + } + + rest := l.original[idx:] + w.WriteRune(unicode.ToUpper(firstRune)) + w.WriteString(strings.ToLower(rest)) + + return true +} + +// WriteLower is like write titleized but it writes a lower-case version of the lexeme. +// +// Similarly, there is no writing if the casing of the first rune doesn't make sense. +func (l nameLexem) WriteLower(w *bytes.Buffer, alwaysLower bool) bool { + if l.kind == lexemKindInitialismName { + w.WriteString(lower(l.matchedInitialism)) + + return true + } + + if len(l.original) == 0 { + return true + } + + if len(l.original) == 1 { + // identifier is too short: casing will depend on the context + firstByte := l.original[0] + switch { + case 'a' <= firstByte && firstByte <= 'z': + // safe + w.WriteByte(firstByte) + + return true + case alwaysLower && 'A' <= firstByte && firstByte <= 'Z': + w.WriteByte(firstByte - 'A' + 'a') + + return true + default: + + // not a letter: skip and let the caller decide + return false + } + } + + if firstByte := l.original[0]; firstByte < utf8.RuneSelf { + // ASCII + switch { + case 'a' <= firstByte && firstByte <= 'z': + // already a lower case letter + w.WriteString(l.original) + + return true + case 'A' <= firstByte && firstByte <= 'Z': + w.WriteByte(firstByte - 'A' + 'a') + w.WriteString(l.original[1:]) + + return true + default: + // not a good candidate: doesn't start with a letter + return false + } + } + + // unicode + firstRune, idx := utf8.DecodeRuneInString(l.original) + if !unicode.IsLetter(firstRune) || !unicode.IsLower(unicode.ToLower(firstRune)) { + // not a good candidate: doesn't start with a letter + // or a rune for which case doesn't make sense (e.g. East-Asian runes etc) + return false + } + + rest := l.original[idx:] + w.WriteRune(unicode.ToLower(firstRune)) + w.WriteString(rest) + + return true +} + +func (l nameLexem) GetOriginal() string { + return l.original +} + +func (l nameLexem) IsInitialism() bool { + return l.kind == lexemKindInitialismName +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/name_mangler.go b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/name_mangler.go new file mode 100644 index 0000000000..da685681d0 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/name_mangler.go @@ -0,0 +1,370 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package mangling + +import ( + "strings" + "unicode" +) + +// NameMangler knows how to transform sentences or words into +// identifiers that are a better fit in contexts such as: +// +// - unexported or exported go variable identifiers +// - file names +// - camel cased identifiers +// - ... +// +// The [NameMangler] is safe for concurrent use, save for its [NameMangler.AddInitialisms] method, +// which is not. +// +// # Known limitations +// +// At this moment, the [NameMangler] doesn't play well with "all caps" text: +// +// unless every single upper-cased word is declared as an initialism, capitalized words would generally +// not be transformed with the expected result, e.g. +// +// ToFileName("THIS_IS_ALL_CAPS") +// +// yields the weird outcome +// +// "t_h_i_s_i_s_a_l_l_c_a_p_s" +type NameMangler struct { + options + + index *indexOfInitialisms + + splitter splitter + splitterWithPostSplit splitter + + _ struct{} +} + +// NewNameMangler builds a name mangler ready to convert strings. +// +// The default name mangler is configured with default common initialisms and all default options. +func NewNameMangler(opts ...Option) NameMangler { + m := NameMangler{ + options: optionsWithDefaults(opts), + index: newIndexOfInitialisms(), + } + m.addInitialisms(m.commonInitialisms...) + + // a splitter that returns matches lexemes as ready-to-assemble strings: + // details of the lexemes are redeemed. + m.splitter = newSplitter( + withInitialismsCache(&m.index.initialismsCache), + withReplaceFunc(m.replaceFunc), + ) + + // a splitter that returns matches lexemes ready for post-processing + m.splitterWithPostSplit = newSplitter( + withInitialismsCache(&m.index.initialismsCache), + withReplaceFunc(m.replaceFunc), + withPostSplitInitialismCheck, + ) + + return m +} + +// AddInitialisms declares extra initialisms to the mangler. +// +// It declares extra words as "initialisms" (i.e. words that won't be camel cased or titled cased), +// on top of the existing list of common initialisms (such as ID, HTTP...). +// +// Added words must start with a (unicode) letter. If some don't, they are ignored. +// Added words are either fully capitalized or mixed-cased. Lower-case only words are considered capitalized. +// +// It is typically used just after initializing the [NameMangler]. +// +// When all initialisms are known at the time the mangler is initialized, it is preferable to +// use [NewNameMangler] with the option [WithAdditionalInitialisms]. +// +// Adding initialisms mutates the mangler and should not be carried out concurrently with other calls to the mangler. +func (m *NameMangler) AddInitialisms(words ...string) { + m.addInitialisms(words...) +} + +// Initialisms renders the list of initialisms supported by this mangler. +func (m *NameMangler) Initialisms() []string { + return m.index.initialisms +} + +// Camelize a single word. +// +// Example: +// +// - "HELLO" and "hello" become "Hello". +func (m NameMangler) Camelize(word string) string { + ru := []rune(word) + + switch len(ru) { + case 0: + return "" + case 1: + return string(unicode.ToUpper(ru[0])) + default: + camelized := poolOfBuffers.BorrowBuffer(len(word)) + camelized.Grow(len(word)) + defer func() { + poolOfBuffers.RedeemBuffer(camelized) + }() + + camelized.WriteRune(unicode.ToUpper(ru[0])) + for _, ru := range ru[1:] { + camelized.WriteRune(unicode.ToLower(ru)) + } + + return camelized.String() + } +} + +// ToFileName generates a suitable snake-case file name from a sentence. +// +// It lower-cases everything with underscore (_) as a word separator. +// +// Examples: +// +// - "Hello, Swagger" becomes "hello_swagger" +// - "HelloSwagger" becomes "hello_swagger" +func (m NameMangler) ToFileName(name string) string { + inptr := m.split(name) + in := *inptr + out := make([]string, 0, len(in)) + + for _, w := range in { + out = append(out, lower(w)) + } + poolOfStrings.RedeemStrings(inptr) + + return strings.Join(out, "_") +} + +// ToCommandName generates a suitable CLI command name from a sentence. +// +// It lower-cases everything with dash (-) as a word separator. +// +// Examples: +// +// - "Hello, Swagger" becomes "hello-swagger" +// - "HelloSwagger" becomes "hello-swagger" +func (m NameMangler) ToCommandName(name string) string { + inptr := m.split(name) + in := *inptr + out := make([]string, 0, len(in)) + + for _, w := range in { + out = append(out, lower(w)) + } + poolOfStrings.RedeemStrings(inptr) + + return strings.Join(out, "-") +} + +// ToHumanNameLower represents a code name as a human-readable series of words. +// +// It lower-cases everything with blank space as a word separator. +// +// NOTE: parts recognized as initialisms just keep their original casing. +// +// Examples: +// +// - "Hello, Swagger" becomes "hello swagger" +// - "HelloSwagger" or "Hello-Swagger" become "hello swagger" +func (m NameMangler) ToHumanNameLower(name string) string { + s := m.splitterWithPostSplit + in := s.split(name) + out := make([]string, 0, len(*in)) + + for _, w := range *in { + if !w.IsInitialism() { + out = append(out, lower(w.GetOriginal())) + } else { + out = append(out, trim(w.GetOriginal())) + } + } + + poolOfLexems.RedeemLexems(in) + + return strings.Join(out, " ") +} + +// ToHumanNameTitle represents a code name as a human-readable series of titleized words. +// +// It titleizes every word with blank space as a word separator. +// +// Examples: +// +// - "hello, Swagger" becomes "Hello Swagger" +// - "helloSwagger" becomes "Hello Swagger" +func (m NameMangler) ToHumanNameTitle(name string) string { + s := m.splitterWithPostSplit + in := s.split(name) + + out := make([]string, 0, len(*in)) + for _, w := range *in { + original := trim(w.GetOriginal()) + if !w.IsInitialism() { + out = append(out, m.Camelize(original)) + } else { + out = append(out, original) + } + } + poolOfLexems.RedeemLexems(in) + + return strings.Join(out, " ") +} + +// ToJSONName generates a camelized single-word version of a sentence. +// +// The output assembles every camelized word, but for the first word, which +// is lower-cased. +// +// Example: +// +// - "Hello_swagger" becomes "helloSwagger" +func (m NameMangler) ToJSONName(name string) string { + inptr := m.split(name) + in := *inptr + out := make([]string, 0, len(in)) + + for i, w := range in { + if i == 0 { + out = append(out, lower(w)) + continue + } + out = append(out, m.Camelize(trim(w))) + } + + poolOfStrings.RedeemStrings(inptr) + + return strings.Join(out, "") +} + +// ToVarName generates a legit unexported go variable name from a sentence. +// +// The generated name plays well with linters (see also [NameMangler.ToGoName]). +// +// Examples: +// +// - "Hello_swagger" becomes "helloSwagger" +// - "Http_server" becomes "httpServer" +// +// This name applies the same rules as [NameMangler.ToGoName] (legit exported variable), save the +// capitalization of the initial rune. +// +// Special case: when the initial part is a recognized as an initialism (like in the example above), +// the full part is lower-cased. +func (m NameMangler) ToVarName(name string) string { + return m.goIdentifier(name, false) +} + +// ToGoName generates a legit exported go variable name from a sentence. +// +// The generated name plays well with most linters. +// +// ToGoName abides by the go "exported" symbol rule starting with an upper-case letter. +// +// Examples: +// +// - "hello_swagger" becomes "HelloSwagger" +// - "Http_server" becomes "HTTPServer" +// +// # Edge cases +// +// Whenever the first rune is not eligible to upper case, a special prefix is prepended to the resulting name. +// By default this is simply "X" and you may customize this behavior using the [WithGoNamePrefixFunc] option. +// +// This happens when the first rune is not a letter, e.g. a digit, or a symbol that has no word transliteration +// (see also [WithReplaceFunc] about symbol transliterations), +// as well as for most East Asian or Devanagari runes, for which there is no such concept as upper-case. +// +// # Linting +// +// [revive], the successor of golint is the reference linter. +// +// This means that [NameMangler.ToGoName] supports the initialisms that revive checks (see also [DefaultInitialisms]). +// +// At this moment, there is no attempt to transliterate unicode into ascii, meaning that some linters +// (e.g. asciicheck, gosmopolitan) may croak on go identifiers generated from unicode input. +// +// [revive]: https://github.com/mgechev/revive +func (m NameMangler) ToGoName(name string) string { + return m.goIdentifier(name, true) +} + +func (m NameMangler) goIdentifier(name string, exported bool) string { + s := m.splitterWithPostSplit + lexems := s.split(name) + defer func() { + poolOfLexems.RedeemLexems(lexems) + }() + lexemes := *lexems + + if len(lexemes) == 0 { + return "" + } + + result := poolOfBuffers.BorrowBuffer(len(name)) + defer func() { + poolOfBuffers.RedeemBuffer(result) + }() + + firstPart := lexemes[0] + if !exported { + if ok := firstPart.WriteLower(result, true); !ok { + // NOTE: an initialism as the first part is lower-cased: no longer generates stuff like hTTPxyz. + // + // same prefixing rule applied to unexported variable as to an exported one, so that we have consistent + // names, whether the generated identifier is exported or not. + result.WriteString(strings.ToLower(m.prefixFunc()(name))) + result.WriteString(lexemes[0].GetOriginal()) + } + } else { + if ok := firstPart.WriteTitleized(result, true); !ok { + // "repairs" a lexeme that doesn't start with a letter to become + // the start a legit go name. The current strategy is very crude and simply adds a fixed prefix, + // e.g. "X". + // For instance "1_sesame_street" would be split into lexemes ["1", "sesame", "street"] and + // the first one ("1") would result in something like "X1" (with the default prefix function). + // + // NOTE: no longer forcing the first part to be fully upper-cased + result.WriteString(m.prefixFunc()(name)) + result.WriteString(lexemes[0].GetOriginal()) + } + } + + for _, lexem := range lexemes[1:] { + // NOTE: no longer forcing initialism parts to be fully upper-cased: + // * pluralized initialism preserve their trailing "s" + // * mixed-cased initialisms, such as IPv4, are preserved + if ok := lexem.WriteTitleized(result, false); !ok { + // it's not titleized: perhaps it's too short, perhaps the first rune is not a letter. + // write anyway + result.WriteString(lexem.GetOriginal()) + } + } + + return result.String() +} + +func (m *NameMangler) addInitialisms(words ...string) { + m.index.add(words...) + m.index.buildCache() +} + +// split calls the inner splitter. +func (m NameMangler) split(str string) *[]string { + s := m.splitter + lexems := s.split(str) + result := poolOfStrings.BorrowStrings() + + for _, lexem := range *lexems { + *result = append(*result, lexem.GetOriginal()) + } + poolOfLexems.RedeemLexems(lexems) + + return result +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/options.go b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/options.go new file mode 100644 index 0000000000..3c92b2f18b --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/options.go @@ -0,0 +1,150 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package mangling + +type ( + // PrefixFunc defines a safeguard rule (that may depend on the input string), to prefix + // a generated go name (in [NameMangler.ToGoName] and [NameMangler.ToVarName]). + // + // See [NameMangler.ToGoName] for more about which edge cases the prefix function covers. + PrefixFunc func(string) string + + // ReplaceFunc is a transliteration function to replace special runes by a word. + ReplaceFunc func(r rune) (string, bool) + + // Option to configure a [NameMangler]. + Option func(*options) + + options struct { + commonInitialisms []string + + goNamePrefixFunc PrefixFunc + goNamePrefixFuncPtr *PrefixFunc + replaceFunc func(r rune) (string, bool) + } +) + +func (o *options) prefixFunc() PrefixFunc { + if o.goNamePrefixFuncPtr != nil && *o.goNamePrefixFuncPtr != nil { + return *o.goNamePrefixFuncPtr + } + + return o.goNamePrefixFunc +} + +// WithGoNamePrefixFunc overrides the default prefix rule to safeguard generated go names. +// +// Example: +// +// This helps convert "123" into "{prefix}123" (a very crude strategy indeed, but it works). +// +// See [github.com/go-swagger/go-swagger/generator.DefaultFuncMap] for an example. +// +// The prefix function is assumed to return a string that starts with an upper case letter. +// +// The default is to prefix with "X". +// +// See [NameMangler.ToGoName] for more about which edge cases the prefix function covers. +func WithGoNamePrefixFunc(fn PrefixFunc) Option { + return func(o *options) { + o.goNamePrefixFunc = fn + } +} + +// WithGoNamePrefixFuncPtr is like [WithGoNamePrefixFunc] but it specifies a pointer to a function. +// +// [WithGoNamePrefixFunc] should be preferred in most situations. This option should only serve the +// purpose of handling special situations where the prefix function is not an internal variable +// (e.g. an exported package global). +// +// [WithGoNamePrefixFuncPtr] supersedes [WithGoNamePrefixFunc] if it also specified. +// +// If the provided pointer is nil or points to a nil value, this option has no effect. +// +// The caller should ensure that no undesirable concurrent changes are applied to the function pointed to. +func WithGoNamePrefixFuncPtr(ptr *PrefixFunc) Option { + return func(o *options) { + o.goNamePrefixFuncPtr = ptr + } +} + +// WithInitialisms declares the initialisms this mangler supports. +// +// This supersedes any pre-loaded defaults (see [DefaultInitialisms] for more about what initialisms are). +// +// It declares words to be recognized as "initialisms" (i.e. words that won't be camel cased or titled cased). +// +// Words must start with a (unicode) letter. If some don't, they are ignored. +// Words are either fully capitalized or mixed-cased. Lower-case only words are considered capitalized. +func WithInitialisms(words ...string) Option { + return func(o *options) { + o.commonInitialisms = words + } +} + +// WithAdditionalInitialisms adds new initialisms to the currently supported list (see [DefaultInitialisms]). +// +// The same sanitization rules apply as those described for [WithInitialisms]. +func WithAdditionalInitialisms(words ...string) Option { + return func(o *options) { + o.commonInitialisms = append(o.commonInitialisms, words...) + } +} + +// WithReplaceFunc specifies a custom transliteration function instead of the default. +// +// The default translates the following characters into words as follows: +// +// - '@' -> 'At' +// - '&' -> 'And' +// - '|' -> 'Pipe' +// - '$' -> 'Dollar' +// - '!' -> 'Bang' +// +// Notice that the outcome of a transliteration should always be titleized. +func WithReplaceFunc(fn ReplaceFunc) Option { + return func(o *options) { + o.replaceFunc = fn + } +} + +func defaultPrefixFunc(_ string) string { + return "X" +} + +// defaultReplaceTable finds a word representation for special characters. +func defaultReplaceTable(r rune) (string, bool) { + switch r { + case '@': + return "At ", true + case '&': + return "And ", true + case '|': + return "Pipe ", true + case '$': + return "Dollar ", true + case '!': + return "Bang ", true + case '-': + return "", true + case '_': + return "", true + default: + return "", false + } +} + +func optionsWithDefaults(opts []Option) options { + o := options{ + commonInitialisms: DefaultInitialisms(), + goNamePrefixFunc: defaultPrefixFunc, + replaceFunc: defaultReplaceTable, + } + + for _, apply := range opts { + apply(&o) + } + + return o +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/pools.go b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/pools.go new file mode 100644 index 0000000000..f810435144 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/pools.go @@ -0,0 +1,123 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package mangling + +import ( + "bytes" + "sync" +) + +const maxAllocMatches = 8 + +type ( + // memory pools of temporary objects. + // + // These are used to recycle temporarily allocated objects + // and relieve the GC from undue pressure. + + matchesPool struct { + *sync.Pool + } + + buffersPool struct { + *sync.Pool + } + + lexemsPool struct { + *sync.Pool + } + + stringsPool struct { + *sync.Pool + } +) + +var ( + // poolOfMatches holds temporary slices for recycling during the initialism match process + poolOfMatches = matchesPool{ + Pool: &sync.Pool{ + New: func() any { + s := make(initialismMatches, 0, maxAllocMatches) + + return &s + }, + }, + } + + poolOfBuffers = buffersPool{ + Pool: &sync.Pool{ + New: func() any { + return new(bytes.Buffer) + }, + }, + } + + poolOfLexems = lexemsPool{ + Pool: &sync.Pool{ + New: func() any { + s := make([]nameLexem, 0, maxAllocMatches) + + return &s + }, + }, + } + + poolOfStrings = stringsPool{ + Pool: &sync.Pool{ + New: func() any { + s := make([]string, 0, maxAllocMatches) + + return &s + }, + }, + } +) + +func (p matchesPool) BorrowMatches() *initialismMatches { + s := p.Get().(*initialismMatches) + *s = (*s)[:0] // reset slice, keep allocated capacity + + return s +} + +func (p buffersPool) BorrowBuffer(size int) *bytes.Buffer { + s := p.Get().(*bytes.Buffer) + s.Reset() + + if s.Cap() < size { + s.Grow(size) + } + + return s +} + +func (p lexemsPool) BorrowLexems() *[]nameLexem { + s := p.Get().(*[]nameLexem) + *s = (*s)[:0] // reset slice, keep allocated capacity + + return s +} + +func (p stringsPool) BorrowStrings() *[]string { + s := p.Get().(*[]string) + *s = (*s)[:0] // reset slice, keep allocated capacity + + return s +} + +func (p matchesPool) RedeemMatches(s *initialismMatches) { + p.Put(s) +} + +func (p buffersPool) RedeemBuffer(s *bytes.Buffer) { + p.Put(s) +} + +func (p lexemsPool) RedeemLexems(s *[]nameLexem) { + p.Put(s) +} + +func (p stringsPool) RedeemStrings(s *[]string) { + p.Put(s) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/split.go b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/split.go new file mode 100644 index 0000000000..ed12ea2567 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/split.go @@ -0,0 +1,341 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package mangling + +import ( + "fmt" + "unicode" +) + +type splitterOption func(*splitter) + +// withPostSplitInitialismCheck allows to catch initialisms after main split process +func withPostSplitInitialismCheck(s *splitter) { + s.postSplitInitialismCheck = true +} + +func withReplaceFunc(fn ReplaceFunc) func(*splitter) { + return func(s *splitter) { + s.replaceFunc = fn + } +} + +func withInitialismsCache(c *initialismsCache) splitterOption { + return func(s *splitter) { + s.initialismsCache = c + } +} + +type ( + initialismMatch struct { + body []rune + start, end int + complete bool + hasPlural pluralForm + } + initialismMatches []initialismMatch +) + +// String representation of a match, e.g. for debugging. +func (m initialismMatch) String() string { + return fmt.Sprintf("{body: %s (%d), start: %d, end; %d, complete: %t, hasPlural: %v}", + string(m.body), len(m.body), m.start, m.end, m.complete, m.hasPlural, + ) +} + +func (m initialismMatch) isZero() bool { + return m.start == 0 && m.end == 0 +} + +type splitter struct { + *initialismsCache + + postSplitInitialismCheck bool + replaceFunc ReplaceFunc +} + +func newSplitter(options ...splitterOption) splitter { + var s splitter + + for _, option := range options { + option(&s) + } + + if s.replaceFunc == nil { + s.replaceFunc = defaultReplaceTable + } + + return s +} + +func (s splitter) split(name string) *[]nameLexem { + nameRunes := []rune(name) + matches := s.gatherInitialismMatches(nameRunes) + if matches == nil { + return poolOfLexems.BorrowLexems() + } + + return s.mapMatchesToNameLexems(nameRunes, matches) +} + +func (s splitter) gatherInitialismMatches(nameRunes []rune) *initialismMatches { + matches := poolOfMatches.BorrowMatches() + const minLenInitialism = 1 + if len(nameRunes) < minLenInitialism+1 { + // can't match initialism with 0 or 1 rune + return matches + } + + // first iteration + s.findMatches(matches, nameRunes, nameRunes[0], 0) + + for i, currentRune := range nameRunes[1:] { + currentRunePosition := i + 1 + // recycle allocations as we loop over runes + // with such recycling, only 2 slices should be allocated per call + // instead of o(n). + // + // BorrowMatches always yields slices with zero length (with some capacity) + newMatches := poolOfMatches.BorrowMatches() + + // check current initialism matches + for _, match := range *matches { + if keepCompleteMatch := match.complete; keepCompleteMatch { + // the match is already complete: keep it then move on to the next match + *newMatches = append(*newMatches, match) + continue + } + + if currentRunePosition-match.start == len(match.body) { + // unmatched: skip + continue + } + + // 1. by construction of the matches, we can't have currentRunePosition - match.start < 0 + // because matches have been computed with their start <= currentRunePosition in the previous + // iterations. + // 2. by construction of the matches, we can't have currentRunePosition - match.start >= len(match.body) + + currentMatchRune := match.body[currentRunePosition-match.start] + if currentMatchRune != currentRune { + // failed match, discard it then move on to the next match + continue + } + + // try to complete the current match + if currentRunePosition-match.start == len(match.body)-1 { + // we are close: the next step is to check the symbol ahead + // if it is a lowercase letter, then it is not the end of match + // but the beginning of the next word. + // + // NOTE(fredbi): this heuristic sometimes leads to counterintuitive splits and + // perhaps (not sure yet) we should check against case _alternance_. + // + // Example: + // + // In the current version, in the sentence "IDS initialism", "ID" is recognized as an initialism, + // leading to a split like "id_s_initialism" (or IDSInitialism), + // whereas in the sentence "IDx initialism", it is not and produces something like + // "i_d_x_initialism" (or IDxInitialism). The generated file name is not great. + // + // Both go identifiers are tolerated by linters. + // + // Notice that the slightly different input "IDs initialism" is correctly detected + // as a pluralized initialism and produces something like "ids_initialism" (or IDsInitialism). + + if currentRunePosition < len(nameRunes)-1 { // when before the last rune + nextRune := nameRunes[currentRunePosition+1] + + // recognize a plural form for this initialism (only simple english pluralization is supported). + if nextRune == 's' && match.hasPlural == simplePlural { + // detected a pluralized initialism + match.body = append(match.body, nextRune) + lookAhead := currentRunePosition + 1 + if lookAhead < len(nameRunes)-1 { + nextRune = nameRunes[lookAhead+1] + if newWord := unicode.IsLower(nextRune); newWord { + // it is the start of a new word. + // Match is only partial and the initialism is not recognized: + // move on to the next match, but do not advance the rune position + continue + } + } + + // this is a pluralized match: keep it + currentRunePosition++ + match.complete = true + match.hasPlural = simplePlural + match.end = currentRunePosition + *newMatches = append(*newMatches, match) + + // match is complete: keep it then move on to the next match + continue + } + + // other cases + // example: invariant plural such as "TLS" + if newWord := unicode.IsLower(nextRune); newWord { + // it is the start of a new word + // Match is only partial and the initialism is not recognized : move on + continue + } + } + + match.complete = true + match.end = currentRunePosition + } + + // append the ongoing matching attempt: it is not necessarily complete, but was successful so far. + // Let's see if it still matches on the next rune. + *newMatches = append(*newMatches, match) + } + + s.findMatches(newMatches, nameRunes, currentRune, currentRunePosition) + + poolOfMatches.RedeemMatches(matches) + matches = newMatches + } + + // it is up to the caller to redeem this last slice + return matches +} + +func (s splitter) findMatches(newMatches *initialismMatches, nameRunes []rune, currentRune rune, currentRunePosition int) { + // check for new initialism matches, based on the first character + for i, r := range s.initialismsRunes { + if r[0] != currentRune { + continue + } + + if currentRunePosition+len(r) > len(nameRunes) { + continue // not eligible: would spilll over the initial string + } + + // possible matches: all initialisms starting with the current rune and that can fit the given string (nameRunes) + *newMatches = append(*newMatches, initialismMatch{ + start: currentRunePosition, + body: r, + complete: false, + hasPlural: s.initialismsPluralForm[i], + }) + } +} + +func (s splitter) mapMatchesToNameLexems(nameRunes []rune, matches *initialismMatches) *[]nameLexem { + nameLexems := poolOfLexems.BorrowLexems() + + var lastAcceptedMatch initialismMatch + for _, match := range *matches { + if !match.complete { + continue + } + + if firstMatch := lastAcceptedMatch.isZero(); firstMatch { + s.appendBrokenDownCasualString(nameLexems, nameRunes[:match.start]) + *nameLexems = append(*nameLexems, s.breakInitialism(string(match.body))) + + lastAcceptedMatch = match + + continue + } + + if overlappedMatch := match.start <= lastAcceptedMatch.end; overlappedMatch { + continue + } + + middle := nameRunes[lastAcceptedMatch.end+1 : match.start] + s.appendBrokenDownCasualString(nameLexems, middle) + *nameLexems = append(*nameLexems, s.breakInitialism(string(match.body))) + + lastAcceptedMatch = match + } + + // we have not found any accepted matches + if lastAcceptedMatch.isZero() { + *nameLexems = (*nameLexems)[:0] + s.appendBrokenDownCasualString(nameLexems, nameRunes) + } else if lastAcceptedMatch.end+1 != len(nameRunes) { + rest := nameRunes[lastAcceptedMatch.end+1:] + s.appendBrokenDownCasualString(nameLexems, rest) + } + + poolOfMatches.RedeemMatches(matches) + + return nameLexems +} + +func (s splitter) breakInitialism(original string) nameLexem { + return newInitialismNameLexem(original, original) +} + +func (s splitter) appendBrokenDownCasualString(segments *[]nameLexem, str []rune) { + currentSegment := poolOfBuffers.BorrowBuffer(len(str)) // unlike strings.Builder, bytes.Buffer initial storage can reused + defer func() { + poolOfBuffers.RedeemBuffer(currentSegment) + }() + + addCasualNameLexem := func(original string) { + *segments = append(*segments, newCasualNameLexem(original)) + } + + addInitialismNameLexem := func(original, match string) { + *segments = append(*segments, newInitialismNameLexem(original, match)) + } + + var addNameLexem func(string) + if s.postSplitInitialismCheck { + addNameLexem = func(original string) { + for i := range s.initialisms { + if isEqualFoldIgnoreSpace(s.initialismsUpperCased[i], original) { + addInitialismNameLexem(original, s.initialisms[i]) + + return + } + } + + addCasualNameLexem(original) + } + } else { + addNameLexem = addCasualNameLexem + } + + // NOTE: (performance). The few remaining non-amortized allocations + // lay in the code below: using String() forces + for _, rn := range str { + if replace, found := s.replaceFunc(rn); found { + if currentSegment.Len() > 0 { + addNameLexem(currentSegment.String()) + currentSegment.Reset() + } + + if replace != "" { + addNameLexem(replace) + } + + continue + } + + if !unicode.In(rn, unicode.L, unicode.M, unicode.N, unicode.Pc) { + if currentSegment.Len() > 0 { + addNameLexem(currentSegment.String()) + currentSegment.Reset() + } + + continue + } + + if unicode.IsUpper(rn) { + if currentSegment.Len() > 0 { + addNameLexem(currentSegment.String()) + } + currentSegment.Reset() + } + + currentSegment.WriteRune(rn) + } + + if currentSegment.Len() > 0 { + addNameLexem(currentSegment.String()) + } +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/string_bytes.go b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/string_bytes.go new file mode 100644 index 0000000000..28daaf72b1 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/string_bytes.go @@ -0,0 +1,11 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package mangling + +import "unsafe" + +// hackStringBytes returns the (unsafe) underlying bytes slice of a string. +func hackStringBytes(str string) []byte { + return unsafe.Slice(unsafe.StringData(str), len(str)) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling/util.go b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/util.go new file mode 100644 index 0000000000..0636417e36 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling/util.go @@ -0,0 +1,118 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package mangling + +import ( + "strings" + "unicode" + "unicode/utf8" +) + +// Removes leading whitespaces +func trim(str string) string { return strings.TrimSpace(str) } + +// upper is strings.ToUpper() combined with trim +func upper(str string) string { + return strings.ToUpper(trim(str)) +} + +// lower is strings.ToLower() combined with trim +func lower(str string) string { + return strings.ToLower(trim(str)) +} + +// isEqualFoldIgnoreSpace is the same as strings.EqualFold, but +// it ignores leading and trailing blank spaces in the compared +// string. +// +// base is assumed to be composed of upper-cased runes, and be already +// trimmed. +// +// This code is heavily inspired from strings.EqualFold. +func isEqualFoldIgnoreSpace(base []rune, str string) bool { + var i, baseIndex int + // equivalent to b := []byte(str), but without data copy + b := hackStringBytes(str) + + for i < len(b) { + if c := b[i]; c < utf8.RuneSelf { + // fast path for ASCII + if c != ' ' && c != '\t' { + break + } + i++ + + continue + } + + // unicode case + r, size := utf8.DecodeRune(b[i:]) + if !unicode.IsSpace(r) { + break + } + i += size + } + + if i >= len(b) { + return len(base) == 0 + } + + for _, baseRune := range base { + if i >= len(b) { + break + } + + if c := b[i]; c < utf8.RuneSelf { + // single byte rune case (ASCII) + if baseRune >= utf8.RuneSelf { + return false + } + + baseChar := byte(baseRune) + if c != baseChar && ((c < 'a') || (c > 'z') || (c-'a'+'A' != baseChar)) { + return false + } + + baseIndex++ + i++ + + continue + } + + // unicode case + r, size := utf8.DecodeRune(b[i:]) + if unicode.ToUpper(r) != baseRune { + return false + } + baseIndex++ + i += size + } + + if baseIndex != len(base) { + return false + } + + // all passed: now we should only have blanks + for i < len(b) { + if c := b[i]; c < utf8.RuneSelf { + // fast path for ASCII + if c != ' ' && c != '\t' { + return false + } + i++ + + continue + } + + // unicode case + r, size := utf8.DecodeRune(b[i:]) + if !unicode.IsSpace(r) { + return false + } + + i += size + } + + return true +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/mangling_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/mangling_iface.go new file mode 100644 index 0000000000..98b9a99929 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/mangling_iface.go @@ -0,0 +1,69 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import "github.com/go-openapi/swag/mangling" + +// GoNamePrefixFunc sets an optional rule to prefix go names +// which do not start with a letter. +// +// GoNamePrefixFunc should not be written to while concurrently using the other mangling functions of this package. +// +// Deprecated: use [mangling.WithGoNamePrefixFunc] instead. +var GoNamePrefixFunc mangling.PrefixFunc + +// swagNameMangler is a global instance of the name mangler specifically alloted +// to support deprecated functions. +var swagNameMangler = mangling.NewNameMangler( + mangling.WithGoNamePrefixFuncPtr(&GoNamePrefixFunc), +) + +// AddInitialisms adds additional initialisms to the default list (see [mangling.DefaultInitialisms]). +// +// AddInitialisms is not safe to be called concurrently. +// +// Deprecated: use [mangling.WithAdditionalInitialisms] instead. +func AddInitialisms(words ...string) { + swagNameMangler.AddInitialisms(words...) +} + +// Camelize a single word. +// +// Deprecated: use [mangling.NameMangler.Camelize] instead. +func Camelize(word string) string { return swagNameMangler.Camelize(word) } + +// ToFileName lowercases and underscores a go type name. +// +// Deprecated: use [mangling.NameMangler.ToFileName] instead. +func ToFileName(name string) string { return swagNameMangler.ToFileName(name) } + +// ToCommandName lowercases and underscores a go type name. +// +// Deprecated: use [mangling.NameMangler.ToCommandName] instead. +func ToCommandName(name string) string { return swagNameMangler.ToCommandName(name) } + +// ToHumanNameLower represents a code name as a human series of words. +// +// Deprecated: use [mangling.NameMangler.ToHumanNameLower] instead. +func ToHumanNameLower(name string) string { return swagNameMangler.ToHumanNameLower(name) } + +// ToHumanNameTitle represents a code name as a human series of words with the first letters titleized. +// +// Deprecated: use [mangling.NameMangler.ToHumanNameTitle] instead. +func ToHumanNameTitle(name string) string { return swagNameMangler.ToHumanNameTitle(name) } + +// ToJSONName camel-cases a name which can be underscored or pascal-cased. +// +// Deprecated: use [mangling.NameMangler.ToJSONName] instead. +func ToJSONName(name string) string { return swagNameMangler.ToJSONName(name) } + +// ToVarName camel-cases a name which can be underscored or pascal-cased. +// +// Deprecated: use [mangling.NameMangler.ToVarName] instead. +func ToVarName(name string) string { return swagNameMangler.ToVarName(name) } + +// ToGoName translates a swagger name which can be underscored or camel cased to a name that golint likes. +// +// Deprecated: use [mangling.NameMangler.ToGoName] instead. +func ToGoName(name string) string { return swagNameMangler.ToGoName(name) } diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/name_lexem.go b/tests/e2e/vendor/github.com/go-openapi/swag/name_lexem.go deleted file mode 100644 index 8bb64ac32f..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/name_lexem.go +++ /dev/null @@ -1,93 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import ( - "unicode" - "unicode/utf8" -) - -type ( - lexemKind uint8 - - nameLexem struct { - original string - matchedInitialism string - kind lexemKind - } -) - -const ( - lexemKindCasualName lexemKind = iota - lexemKindInitialismName -) - -func newInitialismNameLexem(original, matchedInitialism string) nameLexem { - return nameLexem{ - kind: lexemKindInitialismName, - original: original, - matchedInitialism: matchedInitialism, - } -} - -func newCasualNameLexem(original string) nameLexem { - return nameLexem{ - kind: lexemKindCasualName, - original: original, - } -} - -func (l nameLexem) GetUnsafeGoName() string { - if l.kind == lexemKindInitialismName { - return l.matchedInitialism - } - - var ( - first rune - rest string - ) - - for i, orig := range l.original { - if i == 0 { - first = orig - continue - } - - if i > 0 { - rest = l.original[i:] - break - } - } - - if len(l.original) > 1 { - b := poolOfBuffers.BorrowBuffer(utf8.UTFMax + len(rest)) - defer func() { - poolOfBuffers.RedeemBuffer(b) - }() - b.WriteRune(unicode.ToUpper(first)) - b.WriteString(lower(rest)) - return b.String() - } - - return l.original -} - -func (l nameLexem) GetOriginal() string { - return l.original -} - -func (l nameLexem) IsInitialism() bool { - return l.kind == lexemKindInitialismName -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/net.go b/tests/e2e/vendor/github.com/go-openapi/swag/net.go deleted file mode 100644 index 821235f84d..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/net.go +++ /dev/null @@ -1,38 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import ( - "net" - "strconv" -) - -// SplitHostPort splits a network address into a host and a port. -// The port is -1 when there is no port to be found -func SplitHostPort(addr string) (host string, port int, err error) { - h, p, err := net.SplitHostPort(addr) - if err != nil { - return "", -1, err - } - if p == "" { - return "", -1, &net.AddrError{Err: "missing port in address", Addr: addr} - } - - pi, err := strconv.Atoi(p) - if err != nil { - return "", -1, err - } - return h, pi, nil -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/netutils/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/netutils/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/netutils/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. 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Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + copyright license to reproduce, prepare Derivative Works of, + publicly display, publicly perform, sublicense, and distribute the + Work and such Derivative Works in Source or Object form. + + 3. Grant of Patent License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + (except as stated in this section) patent license to make, have made, + use, offer to sell, sell, import, and otherwise transfer the Work, + where such license applies only to those patent claims licensable + by such Contributor that are necessarily infringed by their + Contribution(s) alone or by combination of their Contribution(s) + with the Work to which such Contribution(s) was submitted. If You + institute patent litigation against any entity (including a + cross-claim or counterclaim in a lawsuit) alleging that the Work + or a Contribution incorporated within the Work constitutes direct + or contributory patent infringement, then any patent licenses + granted to You under this License for that Work shall terminate + as of the date such litigation is filed. + + 4. Redistribution. You may reproduce and distribute copies of the + Work or Derivative Works thereof in any medium, with or without + modifications, and in Source or Object form, provided that You + meet the following conditions: + + (a) You must give any other recipients of the Work or + Derivative Works a copy of this License; and + + (b) You must cause any modified files to carry prominent notices + stating that You changed the files; and + + (c) You must retain, in the Source form of any Derivative Works + that You distribute, all copyright, patent, trademark, and + attribution notices from the Source form of the Work, + excluding those notices that do not pertain to any part of + the Derivative Works; and + + (d) If the Work includes a "NOTICE" text file as part of its + distribution, then any Derivative Works that You distribute must + include a readable copy of the attribution notices contained + within such NOTICE file, excluding those notices that do not + pertain to any part of the Derivative Works, in at least one + of the following places: within a NOTICE text file distributed + as part of the Derivative Works; within the Source form or + documentation, if provided along with the Derivative Works; or, + within a display generated by the Derivative Works, if and + wherever such third-party notices normally appear. The contents + of the NOTICE file are for informational purposes only and + do not modify the License. You may add Your own attribution + notices within Derivative Works that You distribute, alongside + or as an addendum to the NOTICE text from the Work, provided + that such additional attribution notices cannot be construed + as modifying the License. + + You may add Your own copyright statement to Your modifications and + may provide additional or different license terms and conditions + for use, reproduction, or distribution of Your modifications, or + for any such Derivative Works as a whole, provided Your use, + reproduction, and distribution of the Work otherwise complies with + the conditions stated in this License. + + 5. Submission of Contributions. Unless You explicitly state otherwise, + any Contribution intentionally submitted for inclusion in the Work + by You to the Licensor shall be under the terms and conditions of + this License, without any additional terms or conditions. + Notwithstanding the above, nothing herein shall supersede or modify + the terms of any separate license agreement you may have executed + with Licensor regarding such Contributions. + + 6. Trademarks. This License does not grant permission to use the trade + names, trademarks, service marks, or product names of the Licensor, + except as required for reasonable and customary use in describing the + origin of the Work and reproducing the content of the NOTICE file. + + 7. Disclaimer of Warranty. Unless required by applicable law or + agreed to in writing, Licensor provides the Work (and each + Contributor provides its Contributions) on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or + implied, including, without limitation, any warranties or conditions + of TITLE, NON-INFRINGEMENT, MERCHANTABILITY, or FITNESS FOR A + PARTICULAR PURPOSE. You are solely responsible for determining the + appropriateness of using or redistributing the Work and assume any + risks associated with Your exercise of permissions under this License. + + 8. Limitation of Liability. In no event and under no legal theory, + whether in tort (including negligence), contract, or otherwise, + unless required by applicable law (such as deliberate and grossly + negligent acts) or agreed to in writing, shall any Contributor be + liable to You for damages, including any direct, indirect, special, + incidental, or consequential damages of any character arising as a + result of this License or out of the use or inability to use the + Work (including but not limited to damages for loss of goodwill, + work stoppage, computer failure or malfunction, or any and all + other commercial damages or losses), even if such Contributor + has been advised of the possibility of such damages. + + 9. Accepting Warranty or Additional Liability. While redistributing + the Work or Derivative Works thereof, You may choose to offer, + and charge a fee for, acceptance of support, warranty, indemnity, + or other liability obligations and/or rights consistent with this + License. However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + APPENDIX: How to apply the Apache License to your work. + + To apply the Apache License to your work, attach the following + boilerplate notice, with the fields enclosed by brackets "[]" + replaced with your own identifying information. (Don't include + the brackets!) The text should be enclosed in the appropriate + comment syntax for the file format. We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/netutils/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/netutils/doc.go new file mode 100644 index 0000000000..74282f8e51 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/netutils/doc.go @@ -0,0 +1,5 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package netutils provides helpers for network-related tasks. +package netutils diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/netutils/net.go b/tests/e2e/vendor/github.com/go-openapi/swag/netutils/net.go new file mode 100644 index 0000000000..82a1544af7 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/netutils/net.go @@ -0,0 +1,31 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package netutils + +import ( + "net" + "strconv" +) + +// SplitHostPort splits a network address into a host and a port. +// +// The difference with the standard net.SplitHostPort is that the port is converted to an int. +// +// The port is -1 when there is no port to be found. +func SplitHostPort(addr string) (host string, port int, err error) { + h, p, err := net.SplitHostPort(addr) + if err != nil { + return "", -1, err + } + if p == "" { + return "", -1, &net.AddrError{Err: "missing port in address", Addr: addr} + } + + pi, err := strconv.Atoi(p) + if err != nil { + return "", -1, err + } + + return h, pi, nil +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/netutils_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/netutils_iface.go new file mode 100644 index 0000000000..d658de25b3 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/netutils_iface.go @@ -0,0 +1,13 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import "github.com/go-openapi/swag/netutils" + +// SplitHostPort splits a network address into a host and a port. +// +// Deprecated: use [netutils.SplitHostPort] instead. +func SplitHostPort(addr string) (host string, port int, err error) { + return netutils.SplitHostPort(addr) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/path.go b/tests/e2e/vendor/github.com/go-openapi/swag/path.go deleted file mode 100644 index 941bd0176b..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/path.go +++ /dev/null @@ -1,59 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import ( - "os" - "path/filepath" - "runtime" - "strings" -) - -const ( - // GOPATHKey represents the env key for gopath - GOPATHKey = "GOPATH" -) - -// FindInSearchPath finds a package in a provided lists of paths -func FindInSearchPath(searchPath, pkg string) string { - pathsList := filepath.SplitList(searchPath) - for _, path := range pathsList { - if evaluatedPath, err := filepath.EvalSymlinks(filepath.Join(path, "src", pkg)); err == nil { - if _, err := os.Stat(evaluatedPath); err == nil { - return evaluatedPath - } - } - } - return "" -} - -// FindInGoSearchPath finds a package in the $GOPATH:$GOROOT -func FindInGoSearchPath(pkg string) string { - return FindInSearchPath(FullGoSearchPath(), pkg) -} - -// FullGoSearchPath gets the search paths for finding packages -func FullGoSearchPath() string { - allPaths := os.Getenv(GOPATHKey) - if allPaths == "" { - allPaths = filepath.Join(os.Getenv("HOME"), "go") - } - if allPaths != "" { - allPaths = strings.Join([]string{allPaths, runtime.GOROOT()}, ":") - } else { - allPaths = runtime.GOROOT() - } - return allPaths -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/pools/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/pools/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/pools/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. For the purposes + of this License, Derivative Works shall not include works that remain + separable from, or merely link (or bind by name) to the interfaces of, + the Work and Derivative Works thereof. + + "Contribution" shall mean any work of authorship, including + the original version of the Work and any modifications or additions + to that Work or Derivative Works thereof, that is intentionally + submitted to Licensor for inclusion in the Work by the copyright owner + or by an individual or Legal Entity authorized to submit on behalf of + the copyright owner. For the purposes of this definition, "submitted" + means any form of electronic, verbal, or written communication sent + to the Licensor or its representatives, including but not limited to + communication on electronic mailing lists, source code control systems, + and issue tracking systems that are managed by, or on behalf of, the + Licensor for the purpose of discussing and improving the Work, but + excluding communication that is conspicuously marked or otherwise + designated in writing by the copyright owner as "Not a Contribution." + + "Contributor" shall mean Licensor and any individual or Legal Entity + on behalf of whom a Contribution has been received by Licensor and + subsequently incorporated within the Work. + + 2. Grant of Copyright License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + copyright license to reproduce, prepare Derivative Works of, + publicly display, publicly perform, sublicense, and distribute the + Work and such Derivative Works in Source or Object form. + + 3. Grant of Patent License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + (except as stated in this section) patent license to make, have made, + use, offer to sell, sell, import, and otherwise transfer the Work, + where such license applies only to those patent claims licensable + by such Contributor that are necessarily infringed by their + Contribution(s) alone or by combination of their Contribution(s) + with the Work to which such Contribution(s) was submitted. If You + institute patent litigation against any entity (including a + cross-claim or counterclaim in a lawsuit) alleging that the Work + or a Contribution incorporated within the Work constitutes direct + or contributory patent infringement, then any patent licenses + granted to You under this License for that Work shall terminate + as of the date such litigation is filed. + + 4. Redistribution. You may reproduce and distribute copies of the + Work or Derivative Works thereof in any medium, with or without + modifications, and in Source or Object form, provided that You + meet the following conditions: + + (a) You must give any other recipients of the Work or + Derivative Works a copy of this License; and + + (b) You must cause any modified files to carry prominent notices + stating that You changed the files; and + + (c) You must retain, in the Source form of any Derivative Works + that You distribute, all copyright, patent, trademark, and + attribution notices from the Source form of the Work, + excluding those notices that do not pertain to any part of + the Derivative Works; and + + (d) If the Work includes a "NOTICE" text file as part of its + distribution, then any Derivative Works that You distribute must + include a readable copy of the attribution notices contained + within such NOTICE file, excluding those notices that do not + pertain to any part of the Derivative Works, in at least one + of the following places: within a NOTICE text file distributed + as part of the Derivative Works; within the Source form or + documentation, if provided along with the Derivative Works; or, + within a display generated by the Derivative Works, if and + wherever such third-party notices normally appear. The contents + of the NOTICE file are for informational purposes only and + do not modify the License. You may add Your own attribution + notices within Derivative Works that You distribute, alongside + or as an addendum to the NOTICE text from the Work, provided + that such additional attribution notices cannot be construed + as modifying the License. + + You may add Your own copyright statement to Your modifications and + may provide additional or different license terms and conditions + for use, reproduction, or distribution of Your modifications, or + for any such Derivative Works as a whole, provided Your use, + reproduction, and distribution of the Work otherwise complies with + the conditions stated in this License. + + 5. Submission of Contributions. Unless You explicitly state otherwise, + any Contribution intentionally submitted for inclusion in the Work + by You to the Licensor shall be under the terms and conditions of + this License, without any additional terms or conditions. + Notwithstanding the above, nothing herein shall supersede or modify + the terms of any separate license agreement you may have executed + with Licensor regarding such Contributions. + + 6. Trademarks. This License does not grant permission to use the trade + names, trademarks, service marks, or product names of the Licensor, + except as required for reasonable and customary use in describing the + origin of the Work and reproducing the content of the NOTICE file. + + 7. Disclaimer of Warranty. Unless required by applicable law or + agreed to in writing, Licensor provides the Work (and each + Contributor provides its Contributions) on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or + implied, including, without limitation, any warranties or conditions + of TITLE, NON-INFRINGEMENT, MERCHANTABILITY, or FITNESS FOR A + PARTICULAR PURPOSE. You are solely responsible for determining the + appropriateness of using or redistributing the Work and assume any + risks associated with Your exercise of permissions under this License. + + 8. Limitation of Liability. In no event and under no legal theory, + whether in tort (including negligence), contract, or otherwise, + unless required by applicable law (such as deliberate and grossly + negligent acts) or agreed to in writing, shall any Contributor be + liable to You for damages, including any direct, indirect, special, + incidental, or consequential damages of any character arising as a + result of this License or out of the use or inability to use the + Work (including but not limited to damages for loss of goodwill, + work stoppage, computer failure or malfunction, or any and all + other commercial damages or losses), even if such Contributor + has been advised of the possibility of such damages. + + 9. Accepting Warranty or Additional Liability. While redistributing + the Work or Derivative Works thereof, You may choose to offer, + and charge a fee for, acceptance of support, warranty, indemnity, + or other liability obligations and/or rights consistent with this + License. However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + APPENDIX: How to apply the Apache License to your work. + + To apply the Apache License to your work, attach the following + boilerplate notice, with the fields enclosed by brackets "[]" + replaced with your own identifying information. (Don't include + the brackets!) The text should be enclosed in the appropriate + comment syntax for the file format. We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/pools/README.md b/tests/e2e/vendor/github.com/go-openapi/swag/pools/README.md new file mode 100644 index 0000000000..1966461cb5 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/pools/README.md @@ -0,0 +1 @@ +# pools diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/pools/debug.go b/tests/e2e/vendor/github.com/go-openapi/swag/pools/debug.go new file mode 100644 index 0000000000..94415e989e --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/pools/debug.go @@ -0,0 +1,17 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package pools + +// TB is the subset of [testing.TB] used by [AssertNoLeaks]. +// +// It is satisfied by *[testing.T] and *[testing.B]. +// +// A local interface is used (rather than importing "testing") so that the +// release build does not pull the testing package — and its flags — into +// production binaries. +type TB interface { + Helper() + Errorf(format string, args ...any) + Logf(format string, args ...any) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/pools/debug_off.go b/tests/e2e/vendor/github.com/go-openapi/swag/pools/debug_off.go new file mode 100644 index 0000000000..9163d6d60e --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/pools/debug_off.go @@ -0,0 +1,51 @@ +//go:build !poolsdebug + +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package pools + +// This is the release implementation of the pool instrumentation: it does +// nothing. +// +// tracker is an empty struct, so it adds no field to the pool types and its +// methods inline away to nothing. +// +// Build with -tags poolsdebug to get the instrumented variant (see +// debug_on.go). + +// debugBuild reports whether the pool instrumentation is compiled in (the +// poolsdebug tag). +const debugBuild = false + +// DebugBuild reports whether the pool instrumentation is compiled in (the +// poolsdebug build tag). +// +// It lets a test that must run in both modes skip the parts that are invalid +// under instrumentation — e.g. an allocation-count assertion, since the +// instrumented build allocates a per-borrow tracker. +const DebugBuild = debugBuild + +type tracker[T any] struct{} + +func (tracker[T]) register() {} + +func (tracker[T]) onBorrow(*T) {} + +func (tracker[T]) onRedeem(*T) {} + +func (tracker[T]) borrowRedeemer(_ *T, cached func()) func() { return cached } + +// AssertNoLeaks reports whether every borrowed object has been redeemed across +// all pools. +// +// It is only meaningful in the instrumented build (-tags poolsdebug). +// +// In a release build it is a no-op that always reports true, so the same test +// can run in both modes. +func AssertNoLeaks(TB) bool { return true } + +// ResetTracking clears all recorded borrow/redeem tracking. +// +// This is a no-op in a release build. +func ResetTracking() {} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/pools/debug_on.go b/tests/e2e/vendor/github.com/go-openapi/swag/pools/debug_on.go new file mode 100644 index 0000000000..64ccc57d38 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/pools/debug_on.go @@ -0,0 +1,237 @@ +//go:build poolsdebug + +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package pools + +import ( + "fmt" + "runtime" + "sync" +) + +// This is the instrumented implementation of the pool tracking, enabled with +// -tags poolsdebug. +// +// Each pool carries a tracker that records, per recycled pointer, whether it is +// currently borrowed or redeemed, together with the call sites of the last +// borrow and redeem. +// It panics loudly (with those call sites) when it detects misuse: +// +// - a double redeem (the same object returned to the pool twice — corrupts sync.Pool); +// - for the redeemable pools, a redeem of a stale borrow (the slot was re-borrowed since — the +// ABA case the production atomic guard cannot catch), thanks to a per-borrow generation; +// - a redeem of an object the pool never handed out; +// - a borrow of an object still checked out (a symptom of an earlier double-Put). +// +// Borrowed-but-never-redeemed objects (leaks) are reported by [AssertNoLeaks]. + +// debugBuild reports whether the pool instrumentation is compiled in (the +// poolsdebug tag). +const debugBuild = true + +// DebugBuild reports whether the pool instrumentation is compiled in (the +// poolsdebug build tag). +// +// See the release-build doc for usage. +const DebugBuild = debugBuild + +type trackStatus uint8 + +const ( + trackBorrowed trackStatus = iota + 1 + trackRedeemed +) + +type trackEntry struct { + status trackStatus + gen uint64 // identifies the current borrow, to detect a redeem racing a re-borrow (ABA) + borrowedAt string + redeemedAt string +} + +type tracker[T any] struct { + mu sync.Mutex + entries map[*T]*trackEntry + nextGen uint64 +} + +func (t *tracker[T]) register() { + t.mu.Lock() + if t.entries == nil { + t.entries = make(map[*T]*trackEntry) + } + t.mu.Unlock() + + registerLeakChecker(t) +} + +// markBorrow records a borrow of ptr and returns its generation. +// +// Caller must hold no lock. +func (t *tracker[T]) markBorrow(ptr *T, site string) uint64 { + t.mu.Lock() + defer t.mu.Unlock() + + e := t.entries[ptr] + if e == nil { + e = &trackEntry{} + t.entries[ptr] = e + } else if e.status == trackBorrowed { + panic(fmt.Sprintf( + "pools: borrow of an object still checked out (borrowed at %s); "+ + "this usually means it was redeemed twice earlier", e.borrowedAt)) + } + + t.nextGen++ + e.status = trackBorrowed + e.gen = t.nextGen + e.borrowedAt = site + + return t.nextGen +} + +// markRedeem validates and records a redeem of ptr. gen is the borrow +// generation the caller is redeeming, or 0 to skip the ABA check (plain +// Pool[T], which has no per-borrow token). +func (t *tracker[T]) markRedeem(ptr *T, gen uint64, site string) { + t.mu.Lock() + defer t.mu.Unlock() + + e := t.entries[ptr] + switch { + case e == nil: + panic("pools: redeem of an object this pool never handed out") + case e.status != trackBorrowed: + panic(fmt.Sprintf("pools: double redeem (first redeemed at %s)", e.redeemedAt)) + case gen != 0 && e.gen != gen: + panic(fmt.Sprintf( + "pools: redeem of a stale borrow (the slot was re-borrowed at %s since this borrow); "+ + "a redeem is racing a re-borrow of the same slot (ABA)", e.borrowedAt)) + } + + e.status = trackRedeemed + e.redeemedAt = site +} + +const stackOffset = 3 + +func (t *tracker[T]) onBorrow(ptr *T) { + t.markBorrow(ptr, caller(stackOffset)) +} + +func (t *tracker[T]) onRedeem(ptr *T) { + t.markRedeem(ptr, 0, caller(stackOffset)) +} + +// borrowRedeemer records the borrow and returns a generation-stamped redeemer +// that validates the redeem (catching double-redeem and ABA) before delegating +// to the cached redeemer. +func (t *tracker[T]) borrowRedeemer(ptr *T, cached func()) func() { + gen := t.markBorrow(ptr, caller(stackOffset)) + + return func() { + t.markRedeem(ptr, gen, caller(stackOffset-1)) + cached() + } +} + +func (t *tracker[T]) checkLeaks(tb TB) bool { + t.mu.Lock() + defer t.mu.Unlock() + + ok := true + for _, e := range t.entries { + if e.status != trackRedeemed { + tb.Logf("pools: object borrowed but never redeemed (borrowed at %s)", e.borrowedAt) + ok = false + } + } + + return ok +} + +func (t *tracker[T]) resetTracking() { + t.mu.Lock() + t.entries = make(map[*T]*trackEntry) + t.nextGen = 0 + t.mu.Unlock() +} + +// leakChecker is the build-erased view of a tracker that the global registry +// holds, so trackers of different element types can be checked uniformly. +type leakChecker interface { + checkLeaks(tb TB) bool + resetTracking() +} + +var ( + registryMu sync.Mutex + registry []leakChecker +) + +func registerLeakChecker(c leakChecker) { + registryMu.Lock() + registry = append(registry, c) + registryMu.Unlock() +} + +// AssertNoLeaks reports whether every borrowed object has been redeemed across +// all pools created so far. +// +// It logs the borrow call site of each leaked object and fails tb when any are +// found. +// +// Typical use, with [ResetTracking] to isolate the test from earlier ones: +// +// func TestX(t *testing.T) { +// pools.ResetTracking() +// t.Cleanup(func() { pools.AssertNoLeaks(t) }) +// // ... exercise code that borrows/redeems ... +// } +func AssertNoLeaks(tb TB) bool { + tb.Helper() + registryMu.Lock() + defer registryMu.Unlock() + + ok := true + for _, c := range registry { + if !c.checkLeaks(tb) { + ok = false + } + } + if !ok { + tb.Errorf("pools: leaked pooled objects detected (borrowed but never redeemed)") + } + + return ok +} + +// ResetTracking clears all recorded borrow/redeem tracking across every pool. +// +// Call it at the start of a test so leaks from earlier tests are not attributed +// to it. +func ResetTracking() { + registryMu.Lock() + defer registryMu.Unlock() + + for _, c := range registry { + c.resetTracking() + } +} + +// caller returns "file:line" of the frame skip levels above caller itself. +func caller(skip int) string { + pc, _, _, ok := runtime.Caller(skip) + if !ok { + return "unknown" + } + fn := runtime.FuncForPC(pc) + if fn == nil { + return "unknown" + } + file, line := fn.FileLine(pc) + + return fmt.Sprintf("%s:%d", file, line) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/pools/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/pools/doc.go new file mode 100644 index 0000000000..395c24d29a --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/pools/doc.go @@ -0,0 +1,26 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package pools provide utilities to recycle allocated objects. +// +// This package provides: +// +// - a generic [Pool] type that wraps [sync.Pool], +// - a [PoolRedeemable] variant that hands out a cached redeem closure, +// - a [PoolSlice] for recycling slices without juggling pointers. +// +// # Debug build +// +// Building with the "poolsdebug" tag (go test -tags poolsdebug ./...) turns on +// instrumentation that tracks every borrow and redeem and panics on misuse: +// +// - double redeem (including the A -> B -> A case for the redeemable pools), +// - redeem of a foreign object, +// - borrow of an object still checked out +// +// It reports the offending call sites. +// +// [AssertNoLeaks] then reports any object borrowed but never redeemed. +// +// The instrumentation is a no-op with zero overhead when the tag is absent. +package pools diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/pools/pools.go b/tests/e2e/vendor/github.com/go-openapi/swag/pools/pools.go new file mode 100644 index 0000000000..d78ea5790a --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/pools/pools.go @@ -0,0 +1,410 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package pools + +import ( + "iter" + "slices" + "sync" + "sync/atomic" +) + +// Resettable is an interface for types that want to recycle a clean instance +// from a [Pool]. +// +// When T (or rather *T) implements [Resettable], the pool calls Reset on an +// instance both when it is redeemed and when it is borrowed: +// +// - on redeem, so that no references held by the instance are retained while it sits idle in the +// pool (which would pin a reference graph alive across a GC cycle); +// - on borrow, so that the next borrower receives a clean object regardless of how the instance +// reached the pool. +// +// Reset must be safe to call more than once on the same instance (it runs at +// least twice per cycle). +type Resettable interface { + Reset() +} + +// resetIfResettable calls Reset on v when *T implements [Resettable]. +func resetIfResettable[T any](v *T) { + if r, ok := any(v).(Resettable); ok { + r.Reset() + } +} + +// borrow state of a [redeemable] wrapper, used to detect double-redeem. +const ( + stateIdle uint32 = iota // sitting in the pool (or freshly created), not checked out + stateBorrowed // checked out by a borrower +) + +type redeemable[T any] struct { + inner *T + redeemer func() + // state guards against a double-redeem (the same wrapper Put into the pool + // twice, which would let one object be handed to two borrowers). + // + // It is set to stateBorrowed on borrow and atomically flipped back to + // stateIdle on redeem; a redeem that finds it already idle panics. + state atomic.Uint32 +} + +// redeemPanic is the message raised when a slot is redeemed while already idle. +const redeemPanic = "pools: " + + "double redeem detected (object already returned to the pool); " + + "a borrowed object must be redeemed exactly once" + +// Pool wraps a [sync.Pool] to make it available for any type. +// +// T must be the value type of the pooled object (e.g. Pool[bytes.Buffer]): +// [Pool.Borrow] returns a *T. Using a pointer type as T (e.g. +// Pool[*bytes.Buffer]) would yield a **T and is almost certainly a mistake. +type Pool[T any] struct { + pool sync.Pool + tracker tracker[T] // empty (zero-cost) unless built with the poolsdebug tag +} + +// PoolRedeemable wraps a [sync.Pool] to make it available for any type. +// +// It differs from [Pool] in the way objects are redeemed to the pool: borrowing +// also yields a cached redeem closure, so no closure is allocated at redeem +// time. +type PoolRedeemable[T any] struct { + pool sync.Pool + tracker tracker[redeemable[T]] // empty (zero-cost) unless built with the poolsdebug tag +} + +// New builds a new [Pool] to recycle allocations of type T explicitly using +// [Pool.Redeem] and the allocated pointer. +// +// Freshly allocated instances of type T are set to their zero value; like +// recycled instances they are reset (if [Resettable]) when borrowed, so +// [Pool.Borrow] always yields a clean object. +func New[T any]() *Pool[T] { + p := &Pool[T]{} + p.pool = sync.Pool{ + New: func() any { + return new(T) + }, + } + p.tracker.register() + + return p +} + +// NewRedeemable builds a new redeemable [Pool] to recycle allocations of type +// T, and use the inner redeemer to relinquish objects to the pool. +func NewRedeemable[T any]() *PoolRedeemable[T] { + p := &PoolRedeemable[T]{} + p.pool = sync.Pool{ + New: func() any { + r := &redeemable[T]{inner: new(T)} + r.redeemer = func() { + if !r.state.CompareAndSwap(stateBorrowed, stateIdle) { + panic(redeemPanic) + } + resetIfResettable(r.inner) + p.pool.Put(r) + } + + return r + }, + } + p.tracker.register() + + return p +} + +// Borrow an instance from the pool. +// +// If the type implements [Resettable], the returned instance is reset before +// being handed out, so it is always clean. +func (p *Pool[T]) Borrow() *T { + target := p.pool.Get().(*T) + resetIfResettable(target) + p.tracker.onBorrow(target) + + return target +} + +// Redeem a borrowed instance to the pool. +// +// A nil pointer is ignored (it would otherwise corrupt the pool: a typed-nil +// boxed into an interface is not the nil interface that [sync.Pool.Put] skips). +// +// The instance is reset (if it implements [Resettable]) before being returned +// to the pool. +// After calling Redeem, the caller must drop its reference to ptr: continuing +// to use it is a use-after-redeem bug. +// +// Unlike [PoolRedeemable], this plain pool holds no per-object state, so it +// cannot detect a double-redeem of the same pointer (which corrupts the pool). +// +// Prefer [PoolRedeemable] when you want that guard, or the debug build for full +// tracking. +func (p *Pool[T]) Redeem(ptr *T) { + if ptr == nil { + return + } + p.tracker.onRedeem(ptr) + resetIfResettable(ptr) + p.pool.Put(ptr) +} + +// BorrowWithRedeem borrows an instance from the pool and provides the +// corresponding redeem function. +// +// This is useful for instance to use with defer. +// +// The instance is reset (if it implements [Resettable]) both when borrowed and +// when the returned redeem closure is called. +// After calling the redeem closure, the caller must drop its reference to the +// returned instance. +// +// Calling the redeem closure more than once panics (see [redeemable.state]): a +// borrowed instance must be redeemed exactly once. +func (p *PoolRedeemable[T]) BorrowWithRedeem() (*T, func()) { + container := p.pool.Get().(*redeemable[T]) + container.state.Store(stateBorrowed) + resetIfResettable(container.inner) + + // In release builds borrowRedeemer returns container.redeemer unchanged (zero + // cost). + // Under the poolsdebug tag it returns a generation-stamped wrapper that tracks + // the borrow and detects double-redeem (incl. + // + // ABA), foreign-redeem and leaks. + return container.inner, p.tracker.borrowRedeemer(container, container.redeemer) +} + +// Slice is a struct that wraps a slice []T. +// +// This is useful to borrow and redeem slices from a pool, without having to +// constantly manipulate pointers to the slice. +// +// The wrapper holds the authoritative slice header. +// +// Its mutating methods ([Slice.Append], [Slice.Concat], [Slice.Grow]) return +// the current backing slice for convenience, so it reads as an idiomatic []T. +// +// But the returned slice is only a snapshot of the wrapper's state at that +// moment: if you keep it and grow it yourself with the builtin append and it +// reallocates, the new backing array lives only in your local copy and is NOT +// tracked by the wrapper — it will not be recycled when the wrapper is +// redeemed (and a later borrower would get the old, smaller array). +// +// Rule of thumb: it is fine to read or pass the returned []T to a consumer; but +// if you plan to grow the slice, keep calling the wrapper's methods so the +// growth is tracked and recycled. +type Slice[T any] struct { + length int + inner []T +} + +// Slice returns the inner slice. +// +// Treat the result as a read-only view (for ranging or passing to a consumer), +// valid until the next mutation or redeem. +// To grow or append, use the wrapper methods so the new backing array is +// tracked and recycled (see [Slice]). +func (s *Slice[T]) Slice() []T { + return s.inner +} + +// Grow the inner slice so it can accommodate at least size more elements +// without reallocating, and return the current backing slice. +// +// Growth is tracked by the wrapper, so the enlarged backing array is recycled +// on redeem. +// See [Slice] for the caveat about growing the returned slice yourself. +func (s *Slice[T]) Grow(size int) []T { + s.inner = slices.Grow(s.inner, size) + + return s.inner +} + +func (s *Slice[T]) Len() int { + return len(s.inner) +} + +func (s *Slice[T]) Cap() int { + return cap(s.inner) +} + +// Append elements to the inner slice and return the current backing slice. +// +// This should be preferred to the append builtin if you plan that the slice will +// grow and you want the newly allocated space to be tracked and recycled. +// See [Slice] for the caveat about growing the returned slice yourself. +func (s *Slice[T]) Append(elems ...T) []T { + s.inner = append(s.inner, elems...) + + return s.inner +} + +// Concat another slice to the inner slice and return the current backing slice. +// +// Unlike [slices.Concat], this reuses the inner slice's capacity instead of +// always allocating a fresh backing array. +// See [Slice] for the caveat about growing the returned slice yourself. +func (s *Slice[T]) Concat(slice []T) []T { + s.inner = append(s.inner, slice...) + + return s.inner +} + +// IndexedElems iterates over the inner slice. +func (s *Slice[T]) IndexedElems() iter.Seq2[int, T] { + return func(yield func(int, T) bool) { + for i, elem := range s.inner { + if !yield(i, elem) { + return + } + } + } +} + +// Reset the inner slice to its configured initial length, keeping allocated +// capacity. +// +// All elements are zeroed, so the pool never retains stale element references +// (which would keep a referenced graph alive for slices of pointers) and so a +// [WithLength] slice is handed out clean rather than carrying data from a +// previous borrower. +func (s *Slice[T]) Reset() { + clear(s.inner) + if s.length > cap(s.inner) { + s.inner = slices.Grow(s.inner[:0], s.length) + } + s.inner = s.inner[:s.length] +} + +// Clip removes unused capacity from the inner slice. +func (s *Slice[T]) Clip() { + s.inner = slices.Clip(s.inner) +} + +// resetWithCapacity discards the current backing array and replaces it with a +// fresh one of the configured length and the given capacity. +// +// It is used by a capacity-capped pool to stop recycling an oversized backing +// array (the old array is left for the GC). +func (s *Slice[T]) resetWithCapacity(capacity int) { + s.inner = make([]T, s.length, max(s.length, capacity)) +} + +// PoolSlice is a pool of [Slice[T]]. +// +// [PoolSlice.BorrowWithRedeem] will return an empty inner slice by default. +// This default may be altered using [WithMinimumCapacity]. +// +// Use [PoolSlice.BorrowWithSizeAndRedeem] or [Slice.Grow] to grow the capacity +// of the inner slice. +type PoolSlice[T any] struct { + // redeemable is held as an unexported field rather than embedded, so the + // underlying [PoolRedeemable] and its [sync.Pool] are not part of PoolSlice's + // public surface. + redeemable *PoolRedeemable[Slice[T]] +} + +// PoolSliceOption alters the default settings to allocate new pooled slices +type PoolSliceOption func(*poolSliceOptions) + +type poolSliceOptions struct { + minCapacity int + length int + maxCapacity int +} + +func WithMinimumCapacity(size int) PoolSliceOption { + return func(o *poolSliceOptions) { + o.minCapacity = size + } +} + +// WithMaxCapacity bounds the capacity of recycled slices. +// +// When a borrowed slice has grown past size at redeem time, its (oversized) +// backing array is discarded and replaced with a fresh one sized to the minimum +// capacity, instead of being recycled. +// +// This stops the pool from accumulating large backing arrays after an +// occasional large request, keeping the steady-state memory bounded. +// +// The trade-off: a workload that genuinely needs slices larger than size will +// reallocate on every cycle. +// Set size from the high-water mark you actually expect, not below it. +// A size of 0 (the default) means no cap: grown slices are recycled as-is. +func WithMaxCapacity(size int) PoolSliceOption { + return func(o *poolSliceOptions) { + o.maxCapacity = size + } +} + +// WithLength ensures that the borrowed slices have a fixed given initial +// length. +// +// By default, the borrowed slices are reset to length 0. +func WithLength(size int) PoolSliceOption { + return func(o *poolSliceOptions) { + o.length = size + } +} + +// NewPoolSlice builds a pool to recycle slices of type []T. +func NewPoolSlice[T any](opts ...PoolSliceOption) *PoolSlice[T] { + var o poolSliceOptions + for _, apply := range opts { + apply(&o) + } + + rp := &PoolRedeemable[Slice[T]]{} + rp.pool = sync.Pool{ + New: func() any { + s := &redeemable[Slice[T]]{ + inner: &Slice[T]{ + length: o.length, + inner: make([]T, o.length, max(o.length, o.minCapacity)), + }, + } + + s.redeemer = func() { + if !s.state.CompareAndSwap(stateBorrowed, stateIdle) { + panic(redeemPanic) + } + if o.maxCapacity > 0 && s.inner.Cap() > o.maxCapacity { + s.inner.resetWithCapacity(o.minCapacity) + } else { + s.inner.Reset() + } + rp.pool.Put(s) + } + + return s + }, + } + rp.tracker.register() + + return &PoolSlice[T]{redeemable: rp} +} + +// BorrowWithRedeem returns the slice wrapper and the redeem closure to +// relinquish the allocated wrapper. +// +// The wrapper is reset (elements zeroed, length restored) both on borrow and +// when the redeem closure is called. +// Calling the redeem closure more than once panics. +func (p *PoolSlice[T]) BorrowWithRedeem() (*Slice[T], func()) { + return p.redeemable.BorrowWithRedeem() +} + +// BorrowWithSizeAndRedeem borrows a slice []T from the pool and ensures that +// its capacity is at least the provided size. +func (p *PoolSlice[T]) BorrowWithSizeAndRedeem(size int) (*Slice[T], func()) { + s, redeem := p.BorrowWithRedeem() + s.Grow(size) + + return s, redeem +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/split.go b/tests/e2e/vendor/github.com/go-openapi/swag/split.go deleted file mode 100644 index 274727a866..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/split.go +++ /dev/null @@ -1,508 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import ( - "bytes" - "sync" - "unicode" - "unicode/utf8" -) - -type ( - splitter struct { - initialisms []string - initialismsRunes [][]rune - initialismsUpperCased [][]rune // initialisms cached in their trimmed, upper-cased version - postSplitInitialismCheck bool - } - - splitterOption func(*splitter) - - initialismMatch struct { - body []rune - start, end int - complete bool - } - initialismMatches []initialismMatch -) - -type ( - // memory pools of temporary objects. - // - // These are used to recycle temporarily allocated objects - // and relieve the GC from undue pressure. - - matchesPool struct { - *sync.Pool - } - - buffersPool struct { - *sync.Pool - } - - lexemsPool struct { - *sync.Pool - } - - splittersPool struct { - *sync.Pool - } -) - -var ( - // poolOfMatches holds temporary slices for recycling during the initialism match process - poolOfMatches = matchesPool{ - Pool: &sync.Pool{ - New: func() any { - s := make(initialismMatches, 0, maxAllocMatches) - - return &s - }, - }, - } - - poolOfBuffers = buffersPool{ - Pool: &sync.Pool{ - New: func() any { - return new(bytes.Buffer) - }, - }, - } - - poolOfLexems = lexemsPool{ - Pool: &sync.Pool{ - New: func() any { - s := make([]nameLexem, 0, maxAllocMatches) - - return &s - }, - }, - } - - poolOfSplitters = splittersPool{ - Pool: &sync.Pool{ - New: func() any { - s := newSplitter() - - return &s - }, - }, - } -) - -// nameReplaceTable finds a word representation for special characters. -func nameReplaceTable(r rune) (string, bool) { - switch r { - case '@': - return "At ", true - case '&': - return "And ", true - case '|': - return "Pipe ", true - case '$': - return "Dollar ", true - case '!': - return "Bang ", true - case '-': - return "", true - case '_': - return "", true - default: - return "", false - } -} - -// split calls the splitter. -// -// Use newSplitter for more control and options -func split(str string) []string { - s := poolOfSplitters.BorrowSplitter() - lexems := s.split(str) - result := make([]string, 0, len(*lexems)) - - for _, lexem := range *lexems { - result = append(result, lexem.GetOriginal()) - } - poolOfLexems.RedeemLexems(lexems) - poolOfSplitters.RedeemSplitter(s) - - return result - -} - -func newSplitter(options ...splitterOption) splitter { - s := splitter{ - postSplitInitialismCheck: false, - initialisms: initialisms, - initialismsRunes: initialismsRunes, - initialismsUpperCased: initialismsUpperCased, - } - - for _, option := range options { - option(&s) - } - - return s -} - -// withPostSplitInitialismCheck allows to catch initialisms after main split process -func withPostSplitInitialismCheck(s *splitter) { - s.postSplitInitialismCheck = true -} - -func (p matchesPool) BorrowMatches() *initialismMatches { - s := p.Get().(*initialismMatches) - *s = (*s)[:0] // reset slice, keep allocated capacity - - return s -} - -func (p buffersPool) BorrowBuffer(size int) *bytes.Buffer { - s := p.Get().(*bytes.Buffer) - s.Reset() - - if s.Cap() < size { - s.Grow(size) - } - - return s -} - -func (p lexemsPool) BorrowLexems() *[]nameLexem { - s := p.Get().(*[]nameLexem) - *s = (*s)[:0] // reset slice, keep allocated capacity - - return s -} - -func (p splittersPool) BorrowSplitter(options ...splitterOption) *splitter { - s := p.Get().(*splitter) - s.postSplitInitialismCheck = false // reset options - for _, apply := range options { - apply(s) - } - - return s -} - -func (p matchesPool) RedeemMatches(s *initialismMatches) { - p.Put(s) -} - -func (p buffersPool) RedeemBuffer(s *bytes.Buffer) { - p.Put(s) -} - -func (p lexemsPool) RedeemLexems(s *[]nameLexem) { - p.Put(s) -} - -func (p splittersPool) RedeemSplitter(s *splitter) { - p.Put(s) -} - -func (m initialismMatch) isZero() bool { - return m.start == 0 && m.end == 0 -} - -func (s splitter) split(name string) *[]nameLexem { - nameRunes := []rune(name) - matches := s.gatherInitialismMatches(nameRunes) - if matches == nil { - return poolOfLexems.BorrowLexems() - } - - return s.mapMatchesToNameLexems(nameRunes, matches) -} - -func (s splitter) gatherInitialismMatches(nameRunes []rune) *initialismMatches { - var matches *initialismMatches - - for currentRunePosition, currentRune := range nameRunes { - // recycle these allocations as we loop over runes - // with such recycling, only 2 slices should be allocated per call - // instead of o(n). - newMatches := poolOfMatches.BorrowMatches() - - // check current initialism matches - if matches != nil { // skip first iteration - for _, match := range *matches { - if keepCompleteMatch := match.complete; keepCompleteMatch { - *newMatches = append(*newMatches, match) - continue - } - - // drop failed match - currentMatchRune := match.body[currentRunePosition-match.start] - if currentMatchRune != currentRune { - continue - } - - // try to complete ongoing match - if currentRunePosition-match.start == len(match.body)-1 { - // we are close; the next step is to check the symbol ahead - // if it is a small letter, then it is not the end of match - // but beginning of the next word - - if currentRunePosition < len(nameRunes)-1 { - nextRune := nameRunes[currentRunePosition+1] - if newWord := unicode.IsLower(nextRune); newWord { - // oh ok, it was the start of a new word - continue - } - } - - match.complete = true - match.end = currentRunePosition - } - - *newMatches = append(*newMatches, match) - } - } - - // check for new initialism matches - for i := range s.initialisms { - initialismRunes := s.initialismsRunes[i] - if initialismRunes[0] == currentRune { - *newMatches = append(*newMatches, initialismMatch{ - start: currentRunePosition, - body: initialismRunes, - complete: false, - }) - } - } - - if matches != nil { - poolOfMatches.RedeemMatches(matches) - } - matches = newMatches - } - - // up to the caller to redeem this last slice - return matches -} - -func (s splitter) mapMatchesToNameLexems(nameRunes []rune, matches *initialismMatches) *[]nameLexem { - nameLexems := poolOfLexems.BorrowLexems() - - var lastAcceptedMatch initialismMatch - for _, match := range *matches { - if !match.complete { - continue - } - - if firstMatch := lastAcceptedMatch.isZero(); firstMatch { - s.appendBrokenDownCasualString(nameLexems, nameRunes[:match.start]) - *nameLexems = append(*nameLexems, s.breakInitialism(string(match.body))) - - lastAcceptedMatch = match - - continue - } - - if overlappedMatch := match.start <= lastAcceptedMatch.end; overlappedMatch { - continue - } - - middle := nameRunes[lastAcceptedMatch.end+1 : match.start] - s.appendBrokenDownCasualString(nameLexems, middle) - *nameLexems = append(*nameLexems, s.breakInitialism(string(match.body))) - - lastAcceptedMatch = match - } - - // we have not found any accepted matches - if lastAcceptedMatch.isZero() { - *nameLexems = (*nameLexems)[:0] - s.appendBrokenDownCasualString(nameLexems, nameRunes) - } else if lastAcceptedMatch.end+1 != len(nameRunes) { - rest := nameRunes[lastAcceptedMatch.end+1:] - s.appendBrokenDownCasualString(nameLexems, rest) - } - - poolOfMatches.RedeemMatches(matches) - - return nameLexems -} - -func (s splitter) breakInitialism(original string) nameLexem { - return newInitialismNameLexem(original, original) -} - -func (s splitter) appendBrokenDownCasualString(segments *[]nameLexem, str []rune) { - currentSegment := poolOfBuffers.BorrowBuffer(len(str)) // unlike strings.Builder, bytes.Buffer initial storage can reused - defer func() { - poolOfBuffers.RedeemBuffer(currentSegment) - }() - - addCasualNameLexem := func(original string) { - *segments = append(*segments, newCasualNameLexem(original)) - } - - addInitialismNameLexem := func(original, match string) { - *segments = append(*segments, newInitialismNameLexem(original, match)) - } - - var addNameLexem func(string) - if s.postSplitInitialismCheck { - addNameLexem = func(original string) { - for i := range s.initialisms { - if isEqualFoldIgnoreSpace(s.initialismsUpperCased[i], original) { - addInitialismNameLexem(original, s.initialisms[i]) - - return - } - } - - addCasualNameLexem(original) - } - } else { - addNameLexem = addCasualNameLexem - } - - for _, rn := range str { - if replace, found := nameReplaceTable(rn); found { - if currentSegment.Len() > 0 { - addNameLexem(currentSegment.String()) - currentSegment.Reset() - } - - if replace != "" { - addNameLexem(replace) - } - - continue - } - - if !unicode.In(rn, unicode.L, unicode.M, unicode.N, unicode.Pc) { - if currentSegment.Len() > 0 { - addNameLexem(currentSegment.String()) - currentSegment.Reset() - } - - continue - } - - if unicode.IsUpper(rn) { - if currentSegment.Len() > 0 { - addNameLexem(currentSegment.String()) - } - currentSegment.Reset() - } - - currentSegment.WriteRune(rn) - } - - if currentSegment.Len() > 0 { - addNameLexem(currentSegment.String()) - } -} - -// isEqualFoldIgnoreSpace is the same as strings.EqualFold, but -// it ignores leading and trailing blank spaces in the compared -// string. -// -// base is assumed to be composed of upper-cased runes, and be already -// trimmed. -// -// This code is heavily inspired from strings.EqualFold. -func isEqualFoldIgnoreSpace(base []rune, str string) bool { - var i, baseIndex int - // equivalent to b := []byte(str), but without data copy - b := hackStringBytes(str) - - for i < len(b) { - if c := b[i]; c < utf8.RuneSelf { - // fast path for ASCII - if c != ' ' && c != '\t' { - break - } - i++ - - continue - } - - // unicode case - r, size := utf8.DecodeRune(b[i:]) - if !unicode.IsSpace(r) { - break - } - i += size - } - - if i >= len(b) { - return len(base) == 0 - } - - for _, baseRune := range base { - if i >= len(b) { - break - } - - if c := b[i]; c < utf8.RuneSelf { - // single byte rune case (ASCII) - if baseRune >= utf8.RuneSelf { - return false - } - - baseChar := byte(baseRune) - if c != baseChar && - !('a' <= c && c <= 'z' && c-'a'+'A' == baseChar) { - return false - } - - baseIndex++ - i++ - - continue - } - - // unicode case - r, size := utf8.DecodeRune(b[i:]) - if unicode.ToUpper(r) != baseRune { - return false - } - baseIndex++ - i += size - } - - if baseIndex != len(base) { - return false - } - - // all passed: now we should only have blanks - for i < len(b) { - if c := b[i]; c < utf8.RuneSelf { - // fast path for ASCII - if c != ' ' && c != '\t' { - return false - } - i++ - - continue - } - - // unicode case - r, size := utf8.DecodeRune(b[i:]) - if !unicode.IsSpace(r) { - return false - } - - i += size - } - - return true -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/string_bytes.go b/tests/e2e/vendor/github.com/go-openapi/swag/string_bytes.go deleted file mode 100644 index 90745d5ca9..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/string_bytes.go +++ /dev/null @@ -1,8 +0,0 @@ -package swag - -import "unsafe" - -// hackStringBytes returns the (unsafe) underlying bytes slice of a string. -func hackStringBytes(str string) []byte { - return unsafe.Slice(unsafe.StringData(str), len(str)) -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. For the purposes + of this License, Derivative Works shall not include works that remain + separable from, or merely link (or bind by name) to the interfaces of, + the Work and Derivative Works thereof. + + "Contribution" shall mean any work of authorship, including + the original version of the Work and any modifications or additions + to that Work or Derivative Works thereof, that is intentionally + submitted to Licensor for inclusion in the Work by the copyright owner + or by an individual or Legal Entity authorized to submit on behalf of + the copyright owner. For the purposes of this definition, "submitted" + means any form of electronic, verbal, or written communication sent + to the Licensor or its representatives, including but not limited to + communication on electronic mailing lists, source code control systems, + and issue tracking systems that are managed by, or on behalf of, the + Licensor for the purpose of discussing and improving the Work, but + excluding communication that is conspicuously marked or otherwise + designated in writing by the copyright owner as "Not a Contribution." + + "Contributor" shall mean Licensor and any individual or Legal Entity + on behalf of whom a Contribution has been received by Licensor and + subsequently incorporated within the Work. + + 2. Grant of Copyright License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + copyright license to reproduce, prepare Derivative Works of, + publicly display, publicly perform, sublicense, and distribute the + Work and such Derivative Works in Source or Object form. + + 3. Grant of Patent License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + (except as stated in this section) patent license to make, have made, + use, offer to sell, sell, import, and otherwise transfer the Work, + where such license applies only to those patent claims licensable + by such Contributor that are necessarily infringed by their + Contribution(s) alone or by combination of their Contribution(s) + with the Work to which such Contribution(s) was submitted. If You + institute patent litigation against any entity (including a + cross-claim or counterclaim in a lawsuit) alleging that the Work + or a Contribution incorporated within the Work constitutes direct + or contributory patent infringement, then any patent licenses + granted to You under this License for that Work shall terminate + as of the date such litigation is filed. + + 4. Redistribution. You may reproduce and distribute copies of the + Work or Derivative Works thereof in any medium, with or without + modifications, and in Source or Object form, provided that You + meet the following conditions: + + (a) You must give any other recipients of the Work or + Derivative Works a copy of this License; and + + (b) You must cause any modified files to carry prominent notices + stating that You changed the files; and + + (c) You must retain, in the Source form of any Derivative Works + that You distribute, all copyright, patent, trademark, and + attribution notices from the Source form of the Work, + excluding those notices that do not pertain to any part of + the Derivative Works; and + + (d) If the Work includes a "NOTICE" text file as part of its + distribution, then any Derivative Works that You distribute must + include a readable copy of the attribution notices contained + within such NOTICE file, excluding those notices that do not + pertain to any part of the Derivative Works, in at least one + of the following places: within a NOTICE text file distributed + as part of the Derivative Works; within the Source form or + documentation, if provided along with the Derivative Works; or, + within a display generated by the Derivative Works, if and + wherever such third-party notices normally appear. The contents + of the NOTICE file are for informational purposes only and + do not modify the License. You may add Your own attribution + notices within Derivative Works that You distribute, alongside + or as an addendum to the NOTICE text from the Work, provided + that such additional attribution notices cannot be construed + as modifying the License. + + You may add Your own copyright statement to Your modifications and + may provide additional or different license terms and conditions + for use, reproduction, or distribution of Your modifications, or + for any such Derivative Works as a whole, provided Your use, + reproduction, and distribution of the Work otherwise complies with + the conditions stated in this License. + + 5. Submission of Contributions. Unless You explicitly state otherwise, + any Contribution intentionally submitted for inclusion in the Work + by You to the Licensor shall be under the terms and conditions of + this License, without any additional terms or conditions. + Notwithstanding the above, nothing herein shall supersede or modify + the terms of any separate license agreement you may have executed + with Licensor regarding such Contributions. + + 6. Trademarks. This License does not grant permission to use the trade + names, trademarks, service marks, or product names of the Licensor, + except as required for reasonable and customary use in describing the + origin of the Work and reproducing the content of the NOTICE file. + + 7. Disclaimer of Warranty. Unless required by applicable law or + agreed to in writing, Licensor provides the Work (and each + Contributor provides its Contributions) on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or + implied, including, without limitation, any warranties or conditions + of TITLE, NON-INFRINGEMENT, MERCHANTABILITY, or FITNESS FOR A + PARTICULAR PURPOSE. You are solely responsible for determining the + appropriateness of using or redistributing the Work and assume any + risks associated with Your exercise of permissions under this License. + + 8. Limitation of Liability. In no event and under no legal theory, + whether in tort (including negligence), contract, or otherwise, + unless required by applicable law (such as deliberate and grossly + negligent acts) or agreed to in writing, shall any Contributor be + liable to You for damages, including any direct, indirect, special, + incidental, or consequential damages of any character arising as a + result of this License or out of the use or inability to use the + Work (including but not limited to damages for loss of goodwill, + work stoppage, computer failure or malfunction, or any and all + other commercial damages or losses), even if such Contributor + has been advised of the possibility of such damages. + + 9. Accepting Warranty or Additional Liability. While redistributing + the Work or Derivative Works thereof, You may choose to offer, + and charge a fee for, acceptance of support, warranty, indemnity, + or other liability obligations and/or rights consistent with this + License. However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + APPENDIX: How to apply the Apache License to your work. + + To apply the Apache License to your work, attach the following + boilerplate notice, with the fields enclosed by brackets "[]" + replaced with your own identifying information. (Don't include + the brackets!) The text should be enclosed in the appropriate + comment syntax for the file format. We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/collection_formats.go b/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/collection_formats.go new file mode 100644 index 0000000000..28056ad25c --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/collection_formats.go @@ -0,0 +1,74 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package stringutils + +import "strings" + +const ( + // collectionFormatComma = "csv" + collectionFormatSpace = "ssv" + collectionFormatTab = "tsv" + collectionFormatPipe = "pipes" + collectionFormatMulti = "multi" + + collectionFormatDefaultSep = "," +) + +// JoinByFormat joins a string array by a known format (e.g. swagger's collectionFormat attribute): +// +// ssv: space separated value +// tsv: tab separated value +// pipes: pipe (|) separated value +// csv: comma separated value (default) +func JoinByFormat(data []string, format string) []string { + if len(data) == 0 { + return data + } + var sep string + switch format { + case collectionFormatSpace: + sep = " " + case collectionFormatTab: + sep = "\t" + case collectionFormatPipe: + sep = "|" + case collectionFormatMulti: + return data + default: + sep = collectionFormatDefaultSep + } + return []string{strings.Join(data, sep)} +} + +// SplitByFormat splits a string by a known format: +// +// ssv: space separated value +// tsv: tab separated value +// pipes: pipe (|) separated value +// csv: comma separated value (default) +func SplitByFormat(data, format string) []string { + if data == "" { + return nil + } + var sep string + switch format { + case collectionFormatSpace: + sep = " " + case collectionFormatTab: + sep = "\t" + case collectionFormatPipe: + sep = "|" + case collectionFormatMulti: + return nil + default: + sep = collectionFormatDefaultSep + } + var result []string + for _, s := range strings.Split(data, sep) { + if ts := strings.TrimSpace(s); ts != "" { + result = append(result, ts) + } + } + return result +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/doc.go new file mode 100644 index 0000000000..c6d17a1160 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/doc.go @@ -0,0 +1,5 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package stringutils exposes helpers to search and process strings. +package stringutils diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/strings.go b/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/strings.go new file mode 100644 index 0000000000..cd792b7d08 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/stringutils/strings.go @@ -0,0 +1,23 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package stringutils + +import ( + "slices" + "strings" +) + +// ContainsStrings searches a slice of strings for a case-sensitive match +// +// Now equivalent to the standard library [slice.Contains]. +func ContainsStrings(coll []string, item string) bool { + return slices.Contains(coll, item) +} + +// ContainsStringsCI searches a slice of strings for a case-insensitive match +func ContainsStringsCI(coll []string, item string) bool { + return slices.ContainsFunc(coll, func(e string) bool { + return strings.EqualFold(e, item) + }) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/stringutils_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/stringutils_iface.go new file mode 100644 index 0000000000..dbfa484843 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/stringutils_iface.go @@ -0,0 +1,34 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import "github.com/go-openapi/swag/stringutils" + +// ContainsStrings searches a slice of strings for a case-sensitive match. +// +// Deprecated: use [slices.Contains] or [stringutils.ContainsStrings] instead. +func ContainsStrings(coll []string, item string) bool { + return stringutils.ContainsStrings(coll, item) +} + +// ContainsStringsCI searches a slice of strings for a case-insensitive match. +// +// Deprecated: use [stringutils.ContainsStringsCI] instead. +func ContainsStringsCI(coll []string, item string) bool { + return stringutils.ContainsStringsCI(coll, item) +} + +// JoinByFormat joins a string array by a known format (e.g. swagger's collectionFormat attribute). +// +// Deprecated: use [stringutils.JoinByFormat] instead. +func JoinByFormat(data []string, format string) []string { + return stringutils.JoinByFormat(data, format) +} + +// SplitByFormat splits a string by a known format. +// +// Deprecated: use [stringutils.SplitByFormat] instead. +func SplitByFormat(data, format string) []string { + return stringutils.SplitByFormat(data, format) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/typeutils/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/typeutils/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/typeutils/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. For the purposes + of this License, Derivative Works shall not include works that remain + separable from, or merely link (or bind by name) to the interfaces of, + the Work and Derivative Works thereof. + + "Contribution" shall mean any work of authorship, including + the original version of the Work and any modifications or additions + to that Work or Derivative Works thereof, that is intentionally + submitted to Licensor for inclusion in the Work by the copyright owner + or by an individual or Legal Entity authorized to submit on behalf of + the copyright owner. For the purposes of this definition, "submitted" + means any form of electronic, verbal, or written communication sent + to the Licensor or its representatives, including but not limited to + communication on electronic mailing lists, source code control systems, + and issue tracking systems that are managed by, or on behalf of, the + Licensor for the purpose of discussing and improving the Work, but + excluding communication that is conspicuously marked or otherwise + designated in writing by the copyright owner as "Not a Contribution." + + "Contributor" shall mean Licensor and any individual or Legal Entity + on behalf of whom a Contribution has been received by Licensor and + subsequently incorporated within the Work. + + 2. Grant of Copyright License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + copyright license to reproduce, prepare Derivative Works of, + publicly display, publicly perform, sublicense, and distribute the + Work and such Derivative Works in Source or Object form. + + 3. Grant of Patent License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + (except as stated in this section) patent license to make, have made, + use, offer to sell, sell, import, and otherwise transfer the Work, + where such license applies only to those patent claims licensable + by such Contributor that are necessarily infringed by their + Contribution(s) alone or by combination of their Contribution(s) + with the Work to which such Contribution(s) was submitted. If You + institute patent litigation against any entity (including a + cross-claim or counterclaim in a lawsuit) alleging that the Work + or a Contribution incorporated within the Work constitutes direct + or contributory patent infringement, then any patent licenses + granted to You under this License for that Work shall terminate + as of the date such litigation is filed. + + 4. Redistribution. You may reproduce and distribute copies of the + Work or Derivative Works thereof in any medium, with or without + modifications, and in Source or Object form, provided that You + meet the following conditions: + + (a) You must give any other recipients of the Work or + Derivative Works a copy of this License; and + + (b) You must cause any modified files to carry prominent notices + stating that You changed the files; and + + (c) You must retain, in the Source form of any Derivative Works + that You distribute, all copyright, patent, trademark, and + attribution notices from the Source form of the Work, + excluding those notices that do not pertain to any part of + the Derivative Works; and + + (d) If the Work includes a "NOTICE" text file as part of its + distribution, then any Derivative Works that You distribute must + include a readable copy of the attribution notices contained + within such NOTICE file, excluding those notices that do not + pertain to any part of the Derivative Works, in at least one + of the following places: within a NOTICE text file distributed + as part of the Derivative Works; within the Source form or + documentation, if provided along with the Derivative Works; or, + within a display generated by the Derivative Works, if and + wherever such third-party notices normally appear. The contents + of the NOTICE file are for informational purposes only and + do not modify the License. You may add Your own attribution + notices within Derivative Works that You distribute, alongside + or as an addendum to the NOTICE text from the Work, provided + that such additional attribution notices cannot be construed + as modifying the License. + + You may add Your own copyright statement to Your modifications and + may provide additional or different license terms and conditions + for use, reproduction, or distribution of Your modifications, or + for any such Derivative Works as a whole, provided Your use, + reproduction, and distribution of the Work otherwise complies with + the conditions stated in this License. + + 5. Submission of Contributions. Unless You explicitly state otherwise, + any Contribution intentionally submitted for inclusion in the Work + by You to the Licensor shall be under the terms and conditions of + this License, without any additional terms or conditions. + Notwithstanding the above, nothing herein shall supersede or modify + the terms of any separate license agreement you may have executed + with Licensor regarding such Contributions. + + 6. Trademarks. This License does not grant permission to use the trade + names, trademarks, service marks, or product names of the Licensor, + except as required for reasonable and customary use in describing the + origin of the Work and reproducing the content of the NOTICE file. + + 7. Disclaimer of Warranty. Unless required by applicable law or + agreed to in writing, Licensor provides the Work (and each + Contributor provides its Contributions) on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or + implied, including, without limitation, any warranties or conditions + of TITLE, NON-INFRINGEMENT, MERCHANTABILITY, or FITNESS FOR A + PARTICULAR PURPOSE. You are solely responsible for determining the + appropriateness of using or redistributing the Work and assume any + risks associated with Your exercise of permissions under this License. + + 8. Limitation of Liability. In no event and under no legal theory, + whether in tort (including negligence), contract, or otherwise, + unless required by applicable law (such as deliberate and grossly + negligent acts) or agreed to in writing, shall any Contributor be + liable to You for damages, including any direct, indirect, special, + incidental, or consequential damages of any character arising as a + result of this License or out of the use or inability to use the + Work (including but not limited to damages for loss of goodwill, + work stoppage, computer failure or malfunction, or any and all + other commercial damages or losses), even if such Contributor + has been advised of the possibility of such damages. + + 9. Accepting Warranty or Additional Liability. While redistributing + the Work or Derivative Works thereof, You may choose to offer, + and charge a fee for, acceptance of support, warranty, indemnity, + or other liability obligations and/or rights consistent with this + License. However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + APPENDIX: How to apply the Apache License to your work. + + To apply the Apache License to your work, attach the following + boilerplate notice, with the fields enclosed by brackets "[]" + replaced with your own identifying information. (Don't include + the brackets!) The text should be enclosed in the appropriate + comment syntax for the file format. We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/typeutils/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/typeutils/doc.go new file mode 100644 index 0000000000..66bed20dff --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/typeutils/doc.go @@ -0,0 +1,5 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package typeutils exposes utilities to inspect generic types. +package typeutils diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/typeutils/types.go b/tests/e2e/vendor/github.com/go-openapi/swag/typeutils/types.go new file mode 100644 index 0000000000..55487a673c --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/typeutils/types.go @@ -0,0 +1,80 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package typeutils + +import "reflect" + +type zeroable interface { + IsZero() bool +} + +// IsZero returns true when the value passed into the function is a zero value. +// This allows for safer checking of interface values. +func IsZero(data any) bool { + v := reflect.ValueOf(data) + // check for nil data + switch v.Kind() { //nolint:exhaustive + case + reflect.Interface, + reflect.Func, + reflect.Chan, + reflect.Pointer, + reflect.UnsafePointer, + reflect.Map, + reflect.Slice: + if v.IsNil() { + return true + } + } + + // check for things that have an IsZero method instead + if vv, ok := data.(zeroable); ok { + return vv.IsZero() + } + + // continue with slightly more complex reflection + switch v.Kind() { //nolint:exhaustive + case reflect.String: + return v.Len() == 0 + case reflect.Bool: + return !v.Bool() + case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: + return v.Int() == 0 + case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uintptr: + return v.Uint() == 0 + case reflect.Float32, reflect.Float64: + return v.Float() == 0 + case reflect.Struct, reflect.Array: + return reflect.DeepEqual(data, reflect.Zero(v.Type()).Interface()) + case reflect.Invalid: + return true + default: + return false + } +} + +// IsNil checks if input is nil. +// +// For types chan, func, interface, map, pointer, or slice it returns true if its argument is nil. +// +// See [reflect.Value.IsNil]. +func IsNil(input any) bool { + if input == nil { + return true + } + + kind := reflect.TypeOf(input).Kind() + switch kind { //nolint:exhaustive + case reflect.Pointer, + reflect.UnsafePointer, + reflect.Map, + reflect.Slice, + reflect.Chan, + reflect.Interface, + reflect.Func: + return reflect.ValueOf(input).IsNil() + default: + return false + } +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/typeutils_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/typeutils_iface.go new file mode 100644 index 0000000000..b63813ea40 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/typeutils_iface.go @@ -0,0 +1,12 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import "github.com/go-openapi/swag/typeutils" + +// IsZero returns true when the value passed into the function is a zero value. +// This allows for safer checking of interface values. +// +// Deprecated: use [typeutils.IsZero] instead. +func IsZero(data any) bool { return typeutils.IsZero(data) } diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/util.go b/tests/e2e/vendor/github.com/go-openapi/swag/util.go deleted file mode 100644 index 5051401c49..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/util.go +++ /dev/null @@ -1,364 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import ( - "reflect" - "strings" - "unicode" - "unicode/utf8" -) - -// GoNamePrefixFunc sets an optional rule to prefix go names -// which do not start with a letter. -// -// The prefix function is assumed to return a string that starts with an upper case letter. -// -// e.g. to help convert "123" into "{prefix}123" -// -// The default is to prefix with "X" -var GoNamePrefixFunc func(string) string - -func prefixFunc(name, in string) string { - if GoNamePrefixFunc == nil { - return "X" + in - } - - return GoNamePrefixFunc(name) + in -} - -const ( - // collectionFormatComma = "csv" - collectionFormatSpace = "ssv" - collectionFormatTab = "tsv" - collectionFormatPipe = "pipes" - collectionFormatMulti = "multi" -) - -// JoinByFormat joins a string array by a known format (e.g. swagger's collectionFormat attribute): -// -// ssv: space separated value -// tsv: tab separated value -// pipes: pipe (|) separated value -// csv: comma separated value (default) -func JoinByFormat(data []string, format string) []string { - if len(data) == 0 { - return data - } - var sep string - switch format { - case collectionFormatSpace: - sep = " " - case collectionFormatTab: - sep = "\t" - case collectionFormatPipe: - sep = "|" - case collectionFormatMulti: - return data - default: - sep = "," - } - return []string{strings.Join(data, sep)} -} - -// SplitByFormat splits a string by a known format: -// -// ssv: space separated value -// tsv: tab separated value -// pipes: pipe (|) separated value -// csv: comma separated value (default) -func SplitByFormat(data, format string) []string { - if data == "" { - return nil - } - var sep string - switch format { - case collectionFormatSpace: - sep = " " - case collectionFormatTab: - sep = "\t" - case collectionFormatPipe: - sep = "|" - case collectionFormatMulti: - return nil - default: - sep = "," - } - var result []string - for _, s := range strings.Split(data, sep) { - if ts := strings.TrimSpace(s); ts != "" { - result = append(result, ts) - } - } - return result -} - -// Removes leading whitespaces -func trim(str string) string { - return strings.TrimSpace(str) -} - -// Shortcut to strings.ToUpper() -func upper(str string) string { - return strings.ToUpper(trim(str)) -} - -// Shortcut to strings.ToLower() -func lower(str string) string { - return strings.ToLower(trim(str)) -} - -// Camelize an uppercased word -func Camelize(word string) string { - camelized := poolOfBuffers.BorrowBuffer(len(word)) - defer func() { - poolOfBuffers.RedeemBuffer(camelized) - }() - - for pos, ru := range []rune(word) { - if pos > 0 { - camelized.WriteRune(unicode.ToLower(ru)) - } else { - camelized.WriteRune(unicode.ToUpper(ru)) - } - } - return camelized.String() -} - -// ToFileName lowercases and underscores a go type name -func ToFileName(name string) string { - in := split(name) - out := make([]string, 0, len(in)) - - for _, w := range in { - out = append(out, lower(w)) - } - - return strings.Join(out, "_") -} - -// ToCommandName lowercases and underscores a go type name -func ToCommandName(name string) string { - in := split(name) - out := make([]string, 0, len(in)) - - for _, w := range in { - out = append(out, lower(w)) - } - return strings.Join(out, "-") -} - -// ToHumanNameLower represents a code name as a human series of words -func ToHumanNameLower(name string) string { - s := poolOfSplitters.BorrowSplitter(withPostSplitInitialismCheck) - in := s.split(name) - poolOfSplitters.RedeemSplitter(s) - out := make([]string, 0, len(*in)) - - for _, w := range *in { - if !w.IsInitialism() { - out = append(out, lower(w.GetOriginal())) - } else { - out = append(out, trim(w.GetOriginal())) - } - } - poolOfLexems.RedeemLexems(in) - - return strings.Join(out, " ") -} - -// ToHumanNameTitle represents a code name as a human series of words with the first letters titleized -func ToHumanNameTitle(name string) string { - s := poolOfSplitters.BorrowSplitter(withPostSplitInitialismCheck) - in := s.split(name) - poolOfSplitters.RedeemSplitter(s) - - out := make([]string, 0, len(*in)) - for _, w := range *in { - original := trim(w.GetOriginal()) - if !w.IsInitialism() { - out = append(out, Camelize(original)) - } else { - out = append(out, original) - } - } - poolOfLexems.RedeemLexems(in) - - return strings.Join(out, " ") -} - -// ToJSONName camelcases a name which can be underscored or pascal cased -func ToJSONName(name string) string { - in := split(name) - out := make([]string, 0, len(in)) - - for i, w := range in { - if i == 0 { - out = append(out, lower(w)) - continue - } - out = append(out, Camelize(trim(w))) - } - return strings.Join(out, "") -} - -// ToVarName camelcases a name which can be underscored or pascal cased -func ToVarName(name string) string { - res := ToGoName(name) - if isInitialism(res) { - return lower(res) - } - if len(res) <= 1 { - return lower(res) - } - return lower(res[:1]) + res[1:] -} - -// ToGoName translates a swagger name which can be underscored or camel cased to a name that golint likes -func ToGoName(name string) string { - s := poolOfSplitters.BorrowSplitter(withPostSplitInitialismCheck) - lexems := s.split(name) - poolOfSplitters.RedeemSplitter(s) - defer func() { - poolOfLexems.RedeemLexems(lexems) - }() - lexemes := *lexems - - if len(lexemes) == 0 { - return "" - } - - result := poolOfBuffers.BorrowBuffer(len(name)) - defer func() { - poolOfBuffers.RedeemBuffer(result) - }() - - // check if not starting with a letter, upper case - firstPart := lexemes[0].GetUnsafeGoName() - if lexemes[0].IsInitialism() { - firstPart = upper(firstPart) - } - - if c := firstPart[0]; c < utf8.RuneSelf { - // ASCII - switch { - case 'A' <= c && c <= 'Z': - result.WriteString(firstPart) - case 'a' <= c && c <= 'z': - result.WriteByte(c - 'a' + 'A') - result.WriteString(firstPart[1:]) - default: - result.WriteString(prefixFunc(name, firstPart)) - // NOTE: no longer check if prefixFunc returns a string that starts with uppercase: - // assume this is always the case - } - } else { - // unicode - firstRune, _ := utf8.DecodeRuneInString(firstPart) - switch { - case !unicode.IsLetter(firstRune): - result.WriteString(prefixFunc(name, firstPart)) - case !unicode.IsUpper(firstRune): - result.WriteString(prefixFunc(name, firstPart)) - /* - result.WriteRune(unicode.ToUpper(firstRune)) - result.WriteString(firstPart[offset:]) - */ - default: - result.WriteString(firstPart) - } - } - - for _, lexem := range lexemes[1:] { - goName := lexem.GetUnsafeGoName() - - // to support old behavior - if lexem.IsInitialism() { - goName = upper(goName) - } - result.WriteString(goName) - } - - return result.String() -} - -// ContainsStrings searches a slice of strings for a case-sensitive match -func ContainsStrings(coll []string, item string) bool { - for _, a := range coll { - if a == item { - return true - } - } - return false -} - -// ContainsStringsCI searches a slice of strings for a case-insensitive match -func ContainsStringsCI(coll []string, item string) bool { - for _, a := range coll { - if strings.EqualFold(a, item) { - return true - } - } - return false -} - -type zeroable interface { - IsZero() bool -} - -// IsZero returns true when the value passed into the function is a zero value. -// This allows for safer checking of interface values. -func IsZero(data interface{}) bool { - v := reflect.ValueOf(data) - // check for nil data - switch v.Kind() { //nolint:exhaustive - case reflect.Interface, reflect.Map, reflect.Ptr, reflect.Slice: - if v.IsNil() { - return true - } - } - - // check for things that have an IsZero method instead - if vv, ok := data.(zeroable); ok { - return vv.IsZero() - } - - // continue with slightly more complex reflection - switch v.Kind() { //nolint:exhaustive - case reflect.String: - return v.Len() == 0 - case reflect.Bool: - return !v.Bool() - case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: - return v.Int() == 0 - case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uintptr: - return v.Uint() == 0 - case reflect.Float32, reflect.Float64: - return v.Float() == 0 - case reflect.Struct, reflect.Array: - return reflect.DeepEqual(data, reflect.Zero(v.Type()).Interface()) - case reflect.Invalid: - return true - default: - return false - } -} - -// CommandLineOptionsGroup represents a group of user-defined command line options -type CommandLineOptionsGroup struct { - ShortDescription string - LongDescription string - Options interface{} -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/yaml.go b/tests/e2e/vendor/github.com/go-openapi/swag/yaml.go deleted file mode 100644 index f59e025932..0000000000 --- a/tests/e2e/vendor/github.com/go-openapi/swag/yaml.go +++ /dev/null @@ -1,481 +0,0 @@ -// Copyright 2015 go-swagger maintainers -// -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -package swag - -import ( - "encoding/json" - "errors" - "fmt" - "path/filepath" - "reflect" - "sort" - "strconv" - - "github.com/mailru/easyjson/jlexer" - "github.com/mailru/easyjson/jwriter" - yaml "gopkg.in/yaml.v3" -) - -// YAMLMatcher matches yaml -func YAMLMatcher(path string) bool { - ext := filepath.Ext(path) - return ext == ".yaml" || ext == ".yml" -} - -// YAMLToJSON converts YAML unmarshaled data into json compatible data -func YAMLToJSON(data interface{}) (json.RawMessage, error) { - jm, err := transformData(data) - if err != nil { - return nil, err - } - b, err := WriteJSON(jm) - return json.RawMessage(b), err -} - -// BytesToYAMLDoc converts a byte slice into a YAML document -func BytesToYAMLDoc(data []byte) (interface{}, error) { - var document yaml.Node // preserve order that is present in the document - if err := yaml.Unmarshal(data, &document); err != nil { - return nil, err - } - if document.Kind != yaml.DocumentNode || len(document.Content) != 1 || document.Content[0].Kind != yaml.MappingNode { - return nil, errors.New("only YAML documents that are objects are supported") - } - return &document, nil -} - -func yamlNode(root *yaml.Node) (interface{}, error) { - switch root.Kind { - case yaml.DocumentNode: - return yamlDocument(root) - case yaml.SequenceNode: - return yamlSequence(root) - case yaml.MappingNode: - return yamlMapping(root) - case yaml.ScalarNode: - return yamlScalar(root) - case yaml.AliasNode: - return yamlNode(root.Alias) - default: - return nil, fmt.Errorf("unsupported YAML node type: %v", root.Kind) - } -} - -func yamlDocument(node *yaml.Node) (interface{}, error) { - if len(node.Content) != 1 { - return nil, fmt.Errorf("unexpected YAML Document node content length: %d", len(node.Content)) - } - return yamlNode(node.Content[0]) -} - -func yamlMapping(node *yaml.Node) (interface{}, error) { - m := make(JSONMapSlice, len(node.Content)/2) - - var j int - for i := 0; i < len(node.Content); i += 2 { - var nmi JSONMapItem - k, err := yamlStringScalarC(node.Content[i]) - if err != nil { - return nil, fmt.Errorf("unable to decode YAML map key: %w", err) - } - nmi.Key = k - v, err := yamlNode(node.Content[i+1]) - if err != nil { - return nil, fmt.Errorf("unable to process YAML map value for key %q: %w", k, err) - } - nmi.Value = v - m[j] = nmi - j++ - } - return m, nil -} - -func yamlSequence(node *yaml.Node) (interface{}, error) { - s := make([]interface{}, 0) - - for i := 0; i < len(node.Content); i++ { - - v, err := yamlNode(node.Content[i]) - if err != nil { - return nil, fmt.Errorf("unable to decode YAML sequence value: %w", err) - } - s = append(s, v) - } - return s, nil -} - -const ( // See https://yaml.org/type/ - yamlStringScalar = "tag:yaml.org,2002:str" - yamlIntScalar = "tag:yaml.org,2002:int" - yamlBoolScalar = "tag:yaml.org,2002:bool" - yamlFloatScalar = "tag:yaml.org,2002:float" - yamlTimestamp = "tag:yaml.org,2002:timestamp" - yamlNull = "tag:yaml.org,2002:null" -) - -func yamlScalar(node *yaml.Node) (interface{}, error) { - switch node.LongTag() { - case yamlStringScalar: - return node.Value, nil - case yamlBoolScalar: - b, err := strconv.ParseBool(node.Value) - if err != nil { - return nil, fmt.Errorf("unable to process scalar node. Got %q. Expecting bool content: %w", node.Value, err) - } - return b, nil - case yamlIntScalar: - i, err := strconv.ParseInt(node.Value, 10, 64) - if err != nil { - return nil, fmt.Errorf("unable to process scalar node. Got %q. Expecting integer content: %w", node.Value, err) - } - return i, nil - case yamlFloatScalar: - f, err := strconv.ParseFloat(node.Value, 64) - if err != nil { - return nil, fmt.Errorf("unable to process scalar node. Got %q. Expecting float content: %w", node.Value, err) - } - return f, nil - case yamlTimestamp: - return node.Value, nil - case yamlNull: - return nil, nil //nolint:nilnil - default: - return nil, fmt.Errorf("YAML tag %q is not supported", node.LongTag()) - } -} - -func yamlStringScalarC(node *yaml.Node) (string, error) { - if node.Kind != yaml.ScalarNode { - return "", fmt.Errorf("expecting a string scalar but got %q", node.Kind) - } - switch node.LongTag() { - case yamlStringScalar, yamlIntScalar, yamlFloatScalar: - return node.Value, nil - default: - return "", fmt.Errorf("YAML tag %q is not supported as map key", node.LongTag()) - } -} - -// JSONMapSlice represent a JSON object, with the order of keys maintained -type JSONMapSlice []JSONMapItem - -// MarshalJSON renders a JSONMapSlice as JSON -func (s JSONMapSlice) MarshalJSON() ([]byte, error) { - w := &jwriter.Writer{Flags: jwriter.NilMapAsEmpty | jwriter.NilSliceAsEmpty} - s.MarshalEasyJSON(w) - return w.BuildBytes() -} - -// MarshalEasyJSON renders a JSONMapSlice as JSON, using easyJSON -func (s JSONMapSlice) MarshalEasyJSON(w *jwriter.Writer) { - w.RawByte('{') - - ln := len(s) - last := ln - 1 - for i := 0; i < ln; i++ { - s[i].MarshalEasyJSON(w) - if i != last { // last item - w.RawByte(',') - } - } - - w.RawByte('}') -} - -// UnmarshalJSON makes a JSONMapSlice from JSON -func (s *JSONMapSlice) UnmarshalJSON(data []byte) error { - l := jlexer.Lexer{Data: data} - s.UnmarshalEasyJSON(&l) - return l.Error() -} - -// UnmarshalEasyJSON makes a JSONMapSlice from JSON, using easyJSON -func (s *JSONMapSlice) UnmarshalEasyJSON(in *jlexer.Lexer) { - if in.IsNull() { - in.Skip() - return - } - - var result JSONMapSlice - in.Delim('{') - for !in.IsDelim('}') { - var mi JSONMapItem - mi.UnmarshalEasyJSON(in) - result = append(result, mi) - } - *s = result -} - -func (s JSONMapSlice) MarshalYAML() (interface{}, error) { - var n yaml.Node - n.Kind = yaml.DocumentNode - var nodes []*yaml.Node - for _, item := range s { - nn, err := json2yaml(item.Value) - if err != nil { - return nil, err - } - ns := []*yaml.Node{ - { - Kind: yaml.ScalarNode, - Tag: yamlStringScalar, - Value: item.Key, - }, - nn, - } - nodes = append(nodes, ns...) - } - - n.Content = []*yaml.Node{ - { - Kind: yaml.MappingNode, - Content: nodes, - }, - } - - return yaml.Marshal(&n) -} - -func isNil(input interface{}) bool { - if input == nil { - return true - } - kind := reflect.TypeOf(input).Kind() - switch kind { //nolint:exhaustive - case reflect.Ptr, reflect.Map, reflect.Slice, reflect.Chan: - return reflect.ValueOf(input).IsNil() - default: - return false - } -} - -func json2yaml(item interface{}) (*yaml.Node, error) { - if isNil(item) { - return &yaml.Node{ - Kind: yaml.ScalarNode, - Value: "null", - }, nil - } - - switch val := item.(type) { - case JSONMapSlice: - var n yaml.Node - n.Kind = yaml.MappingNode - for i := range val { - childNode, err := json2yaml(&val[i].Value) - if err != nil { - return nil, err - } - n.Content = append(n.Content, &yaml.Node{ - Kind: yaml.ScalarNode, - Tag: yamlStringScalar, - Value: val[i].Key, - }, childNode) - } - return &n, nil - case map[string]interface{}: - var n yaml.Node - n.Kind = yaml.MappingNode - keys := make([]string, 0, len(val)) - for k := range val { - keys = append(keys, k) - } - sort.Strings(keys) - - for _, k := range keys { - v := val[k] - childNode, err := json2yaml(v) - if err != nil { - return nil, err - } - n.Content = append(n.Content, &yaml.Node{ - Kind: yaml.ScalarNode, - Tag: yamlStringScalar, - Value: k, - }, childNode) - } - return &n, nil - case []interface{}: - var n yaml.Node - n.Kind = yaml.SequenceNode - for i := range val { - childNode, err := json2yaml(val[i]) - if err != nil { - return nil, err - } - n.Content = append(n.Content, childNode) - } - return &n, nil - case string: - return &yaml.Node{ - Kind: yaml.ScalarNode, - Tag: yamlStringScalar, - Value: val, - }, nil - case float64: - return &yaml.Node{ - Kind: yaml.ScalarNode, - Tag: yamlFloatScalar, - Value: strconv.FormatFloat(val, 'f', -1, 64), - }, nil - case int64: - return &yaml.Node{ - Kind: yaml.ScalarNode, - Tag: yamlIntScalar, - Value: strconv.FormatInt(val, 10), - }, nil - case uint64: - return &yaml.Node{ - Kind: yaml.ScalarNode, - Tag: yamlIntScalar, - Value: strconv.FormatUint(val, 10), - }, nil - case bool: - return &yaml.Node{ - Kind: yaml.ScalarNode, - Tag: yamlBoolScalar, - Value: strconv.FormatBool(val), - }, nil - default: - return nil, fmt.Errorf("unhandled type: %T", val) - } -} - -// JSONMapItem represents the value of a key in a JSON object held by JSONMapSlice -type JSONMapItem struct { - Key string - Value interface{} -} - -// MarshalJSON renders a JSONMapItem as JSON -func (s JSONMapItem) MarshalJSON() ([]byte, error) { - w := &jwriter.Writer{Flags: jwriter.NilMapAsEmpty | jwriter.NilSliceAsEmpty} - s.MarshalEasyJSON(w) - return w.BuildBytes() -} - -// MarshalEasyJSON renders a JSONMapItem as JSON, using easyJSON -func (s JSONMapItem) MarshalEasyJSON(w *jwriter.Writer) { - w.String(s.Key) - w.RawByte(':') - w.Raw(WriteJSON(s.Value)) -} - -// UnmarshalJSON makes a JSONMapItem from JSON -func (s *JSONMapItem) UnmarshalJSON(data []byte) error { - l := jlexer.Lexer{Data: data} - s.UnmarshalEasyJSON(&l) - return l.Error() -} - -// UnmarshalEasyJSON makes a JSONMapItem from JSON, using easyJSON -func (s *JSONMapItem) UnmarshalEasyJSON(in *jlexer.Lexer) { - key := in.UnsafeString() - in.WantColon() - value := in.Interface() - in.WantComma() - s.Key = key - s.Value = value -} - -func transformData(input interface{}) (out interface{}, err error) { - format := func(t interface{}) (string, error) { - switch k := t.(type) { - case string: - return k, nil - case uint: - return strconv.FormatUint(uint64(k), 10), nil - case uint8: - return strconv.FormatUint(uint64(k), 10), nil - case uint16: - return strconv.FormatUint(uint64(k), 10), nil - case uint32: - return strconv.FormatUint(uint64(k), 10), nil - case uint64: - return strconv.FormatUint(k, 10), nil - case int: - return strconv.Itoa(k), nil - case int8: - return strconv.FormatInt(int64(k), 10), nil - case int16: - return strconv.FormatInt(int64(k), 10), nil - case int32: - return strconv.FormatInt(int64(k), 10), nil - case int64: - return strconv.FormatInt(k, 10), nil - default: - return "", fmt.Errorf("unexpected map key type, got: %T", k) - } - } - - switch in := input.(type) { - case yaml.Node: - return yamlNode(&in) - case *yaml.Node: - return yamlNode(in) - case map[interface{}]interface{}: - o := make(JSONMapSlice, 0, len(in)) - for ke, va := range in { - var nmi JSONMapItem - if nmi.Key, err = format(ke); err != nil { - return nil, err - } - - v, ert := transformData(va) - if ert != nil { - return nil, ert - } - nmi.Value = v - o = append(o, nmi) - } - return o, nil - case []interface{}: - len1 := len(in) - o := make([]interface{}, len1) - for i := 0; i < len1; i++ { - o[i], err = transformData(in[i]) - if err != nil { - return nil, err - } - } - return o, nil - } - return input, nil -} - -// YAMLDoc loads a yaml document from either http or a file and converts it to json -func YAMLDoc(path string) (json.RawMessage, error) { - yamlDoc, err := YAMLData(path) - if err != nil { - return nil, err - } - - data, err := YAMLToJSON(yamlDoc) - if err != nil { - return nil, err - } - - return data, nil -} - -// YAMLData loads a yaml document from either http or a file -func YAMLData(path string) (interface{}, error) { - data, err := LoadFromFileOrHTTP(path) - if err != nil { - return nil, err - } - - return BytesToYAMLDoc(data) -} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/LICENSE b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/doc.go b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/doc.go new file mode 100644 index 0000000000..7bb92a82f1 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/doc.go @@ -0,0 +1,13 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package yamlutils provides utilities to work with YAML documents. +// +// - [BytesToYAMLDoc] to construct a [yaml.Node] document +// - [YAMLToJSON] to convert a [yaml.Node] document to JSON bytes +// - [YAMLMapSlice] to serialize and deserialize YAML with the order of keys maintained +package yamlutils + +import ( + _ "go.yaml.in/yaml/v3" // for documentation purpose only +) diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/errors.go b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/errors.go new file mode 100644 index 0000000000..e87bc5e8be --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/errors.go @@ -0,0 +1,15 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package yamlutils + +type yamlError string + +const ( + // ErrYAML is an error raised by YAML utilities + ErrYAML yamlError = "yaml error" +) + +func (e yamlError) Error() string { + return string(e) +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/ordered_map.go b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/ordered_map.go new file mode 100644 index 0000000000..24d951f8de --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/ordered_map.go @@ -0,0 +1,335 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package yamlutils + +import ( + "fmt" + "iter" + "slices" + "sort" + "strconv" + + "github.com/go-openapi/swag/conv" + "github.com/go-openapi/swag/jsonutils" + "github.com/go-openapi/swag/jsonutils/adapters/ifaces" + "github.com/go-openapi/swag/typeutils" + yaml "go.yaml.in/yaml/v3" +) + +var ( + _ yaml.Marshaler = YAMLMapSlice{} + _ yaml.Unmarshaler = &YAMLMapSlice{} +) + +// YAMLMapSlice represents a YAML object, with the order of keys maintained. +// +// It is similar to [jsonutils.JSONMapSlice] and also knows how to marshal and unmarshal YAML. +// +// It behaves like an ordered map, but keys can't be accessed in constant time. +type YAMLMapSlice []YAMLMapItem + +// YAMLMapItem represents the value of a key in a YAML object held by [YAMLMapSlice]. +// +// It is entirely equivalent to [jsonutils.JSONMapItem], with the same limitation that +// you should not Marshal or Unmarshal directly this type, outside of a [YAMLMapSlice]. +type YAMLMapItem = jsonutils.JSONMapItem + +func (s YAMLMapSlice) OrderedItems() iter.Seq2[string, any] { + return func(yield func(string, any) bool) { + for _, item := range s { + if !yield(item.Key, item.Value) { + return + } + } + } +} + +// SetOrderedItems implements [ifaces.SetOrdered]: it merges keys passed by the iterator argument +// into the [YAMLMapSlice]. +func (s *YAMLMapSlice) SetOrderedItems(items iter.Seq2[string, any]) { + if items == nil { + // force receiver to be a nil slice + *s = nil + + return + } + + m := *s + if len(m) > 0 { + // update mode: short-circuited when unmarshaling fresh data structures + idx := make(map[string]int, len(m)) + + for i, item := range m { + idx[item.Key] = i + } + + for k, v := range items { + idx, ok := idx[k] + if ok { + m[idx].Value = v + + continue + } + + m = append(m, YAMLMapItem{Key: k, Value: v}) + } + + *s = m + + return + } + + for k, v := range items { + m = append(m, YAMLMapItem{Key: k, Value: v}) + } + + *s = m +} + +// MarshalJSON renders this YAML object as JSON bytes. +// +// The difference with standard JSON marshaling is that the order of keys is maintained. +func (s YAMLMapSlice) MarshalJSON() ([]byte, error) { + return jsonutils.JSONMapSlice(s).MarshalJSON() +} + +// UnmarshalJSON builds this YAML object from JSON bytes. +// +// The difference with standard JSON marshaling is that the order of keys is maintained. +func (s *YAMLMapSlice) UnmarshalJSON(data []byte) error { + js := jsonutils.JSONMapSlice(*s) + + if err := js.UnmarshalJSON(data); err != nil { + return err + } + + *s = YAMLMapSlice(js) + + return nil +} + +// MarshalYAML produces a YAML document as bytes +// +// The difference with standard YAML marshaling is that the order of keys is maintained. +// +// It implements [yaml.Marshaler]. +func (s YAMLMapSlice) MarshalYAML() (any, error) { + if typeutils.IsNil(s) { + return []byte("null\n"), nil + } + var n yaml.Node + n.Kind = yaml.DocumentNode + var nodes []*yaml.Node + + for _, item := range s { + nn, err := json2yaml(item.Value, 1) + if err != nil { + return nil, err + } + + ns := []*yaml.Node{ + { + Kind: yaml.ScalarNode, + Tag: yamlStringScalar, + Value: item.Key, + }, + nn, + } + nodes = append(nodes, ns...) + } + + n.Content = []*yaml.Node{ + { + Kind: yaml.MappingNode, + Content: nodes, + }, + } + + return yaml.Marshal(&n) +} + +// UnmarshalYAML builds a YAMLMapSlice object from a YAML document [yaml.Node]. +// +// It implements [yaml.Unmarshaler]. +func (s *YAMLMapSlice) UnmarshalYAML(node *yaml.Node) error { + return s.unmarshalYAML(newYAMLWalker(), node, 0) +} + +// unmarshalYAML builds the slice from a [yaml.Node], tracking the recursion depth (against +// stack-overflow) and threading the [yamlWalker] so anchor/alias expansion stays bounded +// across the whole document. +func (s *YAMLMapSlice) unmarshalYAML(w *yamlWalker, node *yaml.Node, depth int) error { + if depth > defaultMaxNestingDepth { + return errMaxNestingDepth + } + + if typeutils.IsNil(*s) { + // allow to unmarshal with a simple var declaration (nil slice) + *s = YAMLMapSlice{} + } + if node == nil { + *s = nil + return nil + } + + const sensibleAllocDivider = 2 + m := slices.Grow(*s, len(node.Content)/sensibleAllocDivider) + m = m[:0] + + for i := 0; i < len(node.Content); i += 2 { + if err := w.account(); err != nil { // account the key node + return err + } + + var nmi YAMLMapItem + k, err := yamlStringScalarC(node.Content[i]) + if err != nil { + return fmt.Errorf("unable to decode YAML map key: %w: %w", err, ErrYAML) + } + nmi.Key = k + v, err := w.node(node.Content[i+1], depth+1) + if err != nil { + return fmt.Errorf("unable to process YAML map value for key %q: %w: %w", k, err, ErrYAML) + } + nmi.Value = v + m = append(m, nmi) + } + + *s = m + + return nil +} + +func json2yaml(item any, depth int) (*yaml.Node, error) { + if depth > defaultMaxNestingDepth { + return nil, errMaxNestingDepth + } + + if typeutils.IsNil(item) { + return &yaml.Node{ + Kind: yaml.ScalarNode, + Value: "null", + }, nil + } + + switch val := item.(type) { + case ifaces.Ordered: + return orderedYAML(val, depth) + + case map[string]any: + var n yaml.Node + n.Kind = yaml.MappingNode + keys := make([]string, 0, len(val)) + for k := range val { + keys = append(keys, k) + } + sort.Strings(keys) + + for _, k := range keys { + v := val[k] + childNode, err := json2yaml(v, depth+1) + if err != nil { + return nil, err + } + n.Content = append(n.Content, &yaml.Node{ + Kind: yaml.ScalarNode, + Tag: yamlStringScalar, + Value: k, + }, childNode) + } + return &n, nil + + case []any: + var n yaml.Node + n.Kind = yaml.SequenceNode + for i := range val { + childNode, err := json2yaml(val[i], depth+1) + if err != nil { + return nil, err + } + n.Content = append(n.Content, childNode) + } + return &n, nil + case string: + return &yaml.Node{ + Kind: yaml.ScalarNode, + Tag: yamlStringScalar, + Value: val, + }, nil + case float32: + return floatNode(val) + case float64: + return floatNode(val) + case int: + return integerNode(val) + case int8: + return integerNode(val) + case int16: + return integerNode(val) + case int32: + return integerNode(val) + case int64: + return integerNode(val) + case uint: + return uintegerNode(val) + case uint8: + return uintegerNode(val) + case uint16: + return uintegerNode(val) + case uint32: + return uintegerNode(val) + case uint64: + return uintegerNode(val) + case bool: + return &yaml.Node{ + Kind: yaml.ScalarNode, + Tag: yamlBoolScalar, + Value: strconv.FormatBool(val), + }, nil + default: + return nil, fmt.Errorf("unhandled type: %T: %w", val, ErrYAML) + } +} + +func floatNode[T conv.Float](val T) (*yaml.Node, error) { + return &yaml.Node{ + Kind: yaml.ScalarNode, + Tag: yamlFloatScalar, + Value: conv.FormatFloat(val), + }, nil +} + +func integerNode[T conv.Signed](val T) (*yaml.Node, error) { + return &yaml.Node{ + Kind: yaml.ScalarNode, + Tag: yamlIntScalar, + Value: conv.FormatInteger(val), + }, nil +} + +func uintegerNode[T conv.Unsigned](val T) (*yaml.Node, error) { + return &yaml.Node{ + Kind: yaml.ScalarNode, + Tag: yamlIntScalar, + Value: conv.FormatUinteger(val), + }, nil +} + +func orderedYAML[T ifaces.Ordered](val T, depth int) (*yaml.Node, error) { + var n yaml.Node + n.Kind = yaml.MappingNode + for key, value := range val.OrderedItems() { + childNode, err := json2yaml(value, depth+1) + if err != nil { + return nil, err + } + + n.Content = append(n.Content, &yaml.Node{ + Kind: yaml.ScalarNode, + Tag: yamlStringScalar, + Value: key, + }, childNode) + } + return &n, nil +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/yaml.go b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/yaml.go new file mode 100644 index 0000000000..d4b5335f6f --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils/yaml.go @@ -0,0 +1,328 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package yamlutils + +import ( + json "encoding/json" + "fmt" + "strconv" + + "github.com/go-openapi/swag/jsonutils" + yaml "go.yaml.in/yaml/v3" +) + +// defaultMaxNestingDepth caps the recursion depth of the YAML<->JSON transforms to +// guard against stack-overflow on deeply nested (possibly adversarial) input. +// +// It matches the limit enforced by go.yaml.in/yaml/v3's own parser and by +// encoding/json's decoder. +const defaultMaxNestingDepth = 10000 + +// Bounds on YAML anchor/alias expansion. +// +// go.yaml.in/yaml/v3 enforces these when decoding into Go values, but that guard is +// coupled to the library's own tree walk: when we decode into a low-level [yaml.Node] +// (to preserve key order) and expand aliases ourselves in [yamlWalker.node], we bypass +// it. We therefore reproduce it here, with the same constants and ratio schedule as the +// library's decoder (see go.yaml.in/yaml/v3 decode.go, "excessive aliasing"). +const ( + aliasCountThreshold = 100 + decodeCountThreshold = 1000 + + // 400,000 decode operations is ~500kb of dense object declarations, or + // ~5kb of dense object declarations with 10000% alias expansion. + aliasRatioRangeLow = 400000 + // 4,000,000 decode operations is ~5MB of dense object declarations. + aliasRatioRangeHigh = 4000000 + aliasRatioRange = float64(aliasRatioRangeHigh - aliasRatioRangeLow) + + // tolerated share of alias-driven decodes: from aliasRatioSmall (small/medium documents) + // down to aliasRatioLarge (very large ones), interpolated with slope aliasRatioSlope. + aliasRatioSmall = 0.99 + aliasRatioLarge = 0.10 + aliasRatioSlope = aliasRatioSmall - aliasRatioLarge +) + +var ( + // errMaxNestingDepth is returned when a document nests deeper than [defaultMaxNestingDepth]. + errMaxNestingDepth = fmt.Errorf("maximum nesting depth of %d exceeded: %w", defaultMaxNestingDepth, ErrYAML) + + // errExcessiveAliasing is returned when anchor/alias expansion is disproportionate to the + // size of the document, i.e. an "alias bomb". + errExcessiveAliasing = fmt.Errorf("document contains excessive aliasing: %w", ErrYAML) +) + +// allowedAliasRatio scales the tolerated share of alias-driven decode operations from 99% +// for small-to-medium documents down to 10% for very large ones, mirroring go.yaml.in/yaml/v3. +func allowedAliasRatio(decodeCount int) float64 { + switch { + case decodeCount <= aliasRatioRangeLow: + return aliasRatioSmall + case decodeCount >= aliasRatioRangeHigh: + return aliasRatioLarge + default: + return aliasRatioSmall - aliasRatioSlope*(float64(decodeCount-aliasRatioRangeLow)/aliasRatioRange) + } +} + +// yamlWalker carries the state needed to bound a single YAML-tree traversal: +// anchor/alias expansion accounting and cycle detection. +// +// A fresh walker is created per top-level conversion; it is threaded (not copied) through +// the whole recursive walk so its counters accumulate across the entire document. +type yamlWalker struct { + decodeCount int + aliasCount int + aliasDepth int + aliases map[*yaml.Node]bool // anchors currently being expanded, for cycle detection +} + +func newYAMLWalker() *yamlWalker { + return &yamlWalker{aliases: make(map[*yaml.Node]bool)} +} + +// account records one processed node and fails if alias expansion has become excessive. +func (w *yamlWalker) account() error { + w.decodeCount++ + if w.aliasDepth > 0 { + w.aliasCount++ + } + + if w.aliasCount > aliasCountThreshold && + w.decodeCount > decodeCountThreshold && + float64(w.aliasCount)/float64(w.decodeCount) > allowedAliasRatio(w.decodeCount) { + return errExcessiveAliasing + } + + return nil +} + +// YAMLToJSON converts a YAML document into JSON bytes. +// +// Note: a YAML document is the output from a [yaml.Marshaler], e.g a pointer to a [yaml.Node]. +// +// [YAMLToJSON] is typically called after [BytesToYAMLDoc]. +func YAMLToJSON(value any) (json.RawMessage, error) { + jm, err := transformData(value, 0) + if err != nil { + return nil, err + } + + b, err := jsonutils.WriteJSON(jm) + + return json.RawMessage(b), err +} + +// BytesToYAMLDoc converts a byte slice into a YAML document. +// +// This function only supports root documents that are objects. +// +// A YAML document is a pointer to a [yaml.Node]. +func BytesToYAMLDoc(data []byte) (any, error) { + var document yaml.Node // preserve order that is present in the document + if err := yaml.Unmarshal(data, &document); err != nil { + return nil, err + } + if document.Kind != yaml.DocumentNode || len(document.Content) != 1 || document.Content[0].Kind != yaml.MappingNode { + return nil, fmt.Errorf("only YAML documents that are objects are supported: %w", ErrYAML) + } + return &document, nil +} + +func (w *yamlWalker) node(root *yaml.Node, depth int) (any, error) { + if depth > defaultMaxNestingDepth { + return nil, errMaxNestingDepth + } + if err := w.account(); err != nil { + return nil, err + } + + switch root.Kind { + case yaml.DocumentNode: + return w.document(root, depth) + case yaml.SequenceNode: + return w.sequence(root, depth) + case yaml.MappingNode: + return w.mapping(root, depth) + case yaml.ScalarNode: + return yamlScalar(root) + case yaml.AliasNode: + return w.alias(root, depth) + default: + return nil, fmt.Errorf("unsupported YAML node type: %v: %w", root.Kind, ErrYAML) + } +} + +// alias resolves an anchor reference, expanding the anchored subtree. It detects cycles +// (an anchor whose expansion transitively references itself) and accounts the expansion +// against the alias-bomb budget via [yamlWalker.aliasDepth]. +func (w *yamlWalker) alias(node *yaml.Node, depth int) (any, error) { + if node.Alias == nil { + return nil, fmt.Errorf("invalid YAML alias node %q: %w", node.Value, ErrYAML) + } + if w.aliases[node.Alias] { + return nil, fmt.Errorf("anchor %q contains itself: %w", node.Value, ErrYAML) + } + + w.aliases[node.Alias] = true + w.aliasDepth++ + out, err := w.node(node.Alias, depth+1) + w.aliasDepth-- + delete(w.aliases, node.Alias) + + return out, err +} + +func (w *yamlWalker) document(node *yaml.Node, depth int) (any, error) { + if len(node.Content) != 1 { + return nil, fmt.Errorf("unexpected YAML Document node content length: %d: %w", len(node.Content), ErrYAML) + } + return w.node(node.Content[0], depth+1) +} + +func (w *yamlWalker) mapping(node *yaml.Node, depth int) (any, error) { + const sensibleAllocDivider = 2 // nodes concatenate (key,value) sequences + m := make(YAMLMapSlice, len(node.Content)/sensibleAllocDivider) + + if err := m.unmarshalYAML(w, node, depth); err != nil { + return nil, err + } + + return m, nil +} + +func (w *yamlWalker) sequence(node *yaml.Node, depth int) (any, error) { + s := make([]any, 0) + + for i := range len(node.Content) { + v, err := w.node(node.Content[i], depth+1) + if err != nil { + return nil, fmt.Errorf("unable to decode YAML sequence value: %w: %w", err, ErrYAML) + } + s = append(s, v) + } + return s, nil +} + +const ( // See https://yaml.org/type/ + yamlStringScalar = "tag:yaml.org,2002:str" + yamlIntScalar = "tag:yaml.org,2002:int" + yamlBoolScalar = "tag:yaml.org,2002:bool" + yamlFloatScalar = "tag:yaml.org,2002:float" + yamlTimestamp = "tag:yaml.org,2002:timestamp" + yamlNull = "tag:yaml.org,2002:null" +) + +func yamlScalar(node *yaml.Node) (any, error) { + switch node.LongTag() { + case yamlStringScalar: + return node.Value, nil + case yamlBoolScalar: + b, err := strconv.ParseBool(node.Value) + if err != nil { + return nil, fmt.Errorf("unable to process scalar node. Got %q. Expecting bool content: %w: %w", node.Value, err, ErrYAML) + } + return b, nil + case yamlIntScalar: + i, err := strconv.ParseInt(node.Value, 10, 64) + if err != nil { + return nil, fmt.Errorf("unable to process scalar node. Got %q. Expecting integer content: %w: %w", node.Value, err, ErrYAML) + } + return i, nil + case yamlFloatScalar: + f, err := strconv.ParseFloat(node.Value, 64) + if err != nil { + return nil, fmt.Errorf("unable to process scalar node. Got %q. Expecting float content: %w: %w", node.Value, err, ErrYAML) + } + return f, nil + case yamlTimestamp: + // YAML timestamp is marshaled as string, not time + return node.Value, nil + case yamlNull: + return nil, nil //nolint:nilnil + default: + return nil, fmt.Errorf("YAML tag %q is not supported: %w", node.LongTag(), ErrYAML) + } +} + +func yamlStringScalarC(node *yaml.Node) (string, error) { + if node.Kind != yaml.ScalarNode { + return "", fmt.Errorf("expecting a string scalar but got %q: %w", node.Kind, ErrYAML) + } + switch node.LongTag() { + case yamlStringScalar, yamlIntScalar, yamlFloatScalar: + return node.Value, nil + default: + return "", fmt.Errorf("YAML tag %q is not supported as map key: %w", node.LongTag(), ErrYAML) + } +} + +func format(t any) (string, error) { + switch k := t.(type) { + case string: + return k, nil + case uint: + return strconv.FormatUint(uint64(k), 10), nil + case uint8: + return strconv.FormatUint(uint64(k), 10), nil + case uint16: + return strconv.FormatUint(uint64(k), 10), nil + case uint32: + return strconv.FormatUint(uint64(k), 10), nil + case uint64: + return strconv.FormatUint(k, 10), nil + case int: + return strconv.Itoa(k), nil + case int8: + return strconv.FormatInt(int64(k), 10), nil + case int16: + return strconv.FormatInt(int64(k), 10), nil + case int32: + return strconv.FormatInt(int64(k), 10), nil + case int64: + return strconv.FormatInt(k, 10), nil + default: + return "", fmt.Errorf("unexpected map key type, got: %T: %w", k, ErrYAML) + } +} + +func transformData(input any, depth int) (out any, err error) { + if depth > defaultMaxNestingDepth { + return nil, errMaxNestingDepth + } + + switch in := input.(type) { + case yaml.Node: + return newYAMLWalker().node(&in, depth) + case *yaml.Node: + return newYAMLWalker().node(in, depth) + case map[any]any: + o := make(YAMLMapSlice, 0, len(in)) + for ke, va := range in { + var nmi YAMLMapItem + if nmi.Key, err = format(ke); err != nil { + return nil, err + } + + v, ert := transformData(va, depth+1) + if ert != nil { + return nil, ert + } + nmi.Value = v + o = append(o, nmi) + } + return o, nil + case []any: + len1 := len(in) + o := make([]any, len1) + for i := range len1 { + o[i], err = transformData(in[i], depth+1) + if err != nil { + return nil, err + } + } + return o, nil + } + return input, nil +} diff --git a/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils_iface.go b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils_iface.go new file mode 100644 index 0000000000..57767efc56 --- /dev/null +++ b/tests/e2e/vendor/github.com/go-openapi/swag/yamlutils_iface.go @@ -0,0 +1,20 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package swag + +import ( + "encoding/json" + + "github.com/go-openapi/swag/yamlutils" +) + +// YAMLToJSON converts YAML unmarshaled data into json compatible data +// +// Deprecated: use [yamlutils.YAMLToJSON] instead. +func YAMLToJSON(data any) (json.RawMessage, error) { return yamlutils.YAMLToJSON(data) } + +// BytesToYAMLDoc converts a byte slice into a YAML document +// +// Deprecated: use [yamlutils.BytesToYAMLDoc] instead. +func BytesToYAMLDoc(data []byte) (any, error) { return yamlutils.BytesToYAMLDoc(data) } diff --git a/tests/e2e/vendor/github.com/google/btree/LICENSE b/tests/e2e/vendor/github.com/google/btree/LICENSE new file mode 100644 index 0000000000..d645695673 --- /dev/null +++ b/tests/e2e/vendor/github.com/google/btree/LICENSE @@ -0,0 +1,202 @@ + + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/google/btree/README.md b/tests/e2e/vendor/github.com/google/btree/README.md new file mode 100644 index 0000000000..eab5dbf7ba --- /dev/null +++ b/tests/e2e/vendor/github.com/google/btree/README.md @@ -0,0 +1,10 @@ +# BTree implementation for Go + +This package provides an in-memory B-Tree implementation for Go, useful as +an ordered, mutable data structure. + +The API is based off of the wonderful +http://godoc.org/github.com/petar/GoLLRB/llrb, and is meant to allow btree to +act as a drop-in replacement for gollrb trees. + +See http://godoc.org/github.com/google/btree for documentation. diff --git a/tests/e2e/vendor/github.com/google/btree/btree.go b/tests/e2e/vendor/github.com/google/btree/btree.go new file mode 100644 index 0000000000..6f5184fef7 --- /dev/null +++ b/tests/e2e/vendor/github.com/google/btree/btree.go @@ -0,0 +1,893 @@ +// Copyright 2014 Google Inc. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +//go:build !go1.18 +// +build !go1.18 + +// Package btree implements in-memory B-Trees of arbitrary degree. +// +// btree implements an in-memory B-Tree for use as an ordered data structure. +// It is not meant for persistent storage solutions. +// +// It has a flatter structure than an equivalent red-black or other binary tree, +// which in some cases yields better memory usage and/or performance. +// See some discussion on the matter here: +// http://google-opensource.blogspot.com/2013/01/c-containers-that-save-memory-and-time.html +// Note, though, that this project is in no way related to the C++ B-Tree +// implementation written about there. +// +// Within this tree, each node contains a slice of items and a (possibly nil) +// slice of children. For basic numeric values or raw structs, this can cause +// efficiency differences when compared to equivalent C++ template code that +// stores values in arrays within the node: +// * Due to the overhead of storing values as interfaces (each +// value needs to be stored as the value itself, then 2 words for the +// interface pointing to that value and its type), resulting in higher +// memory use. +// * Since interfaces can point to values anywhere in memory, values are +// most likely not stored in contiguous blocks, resulting in a higher +// number of cache misses. +// These issues don't tend to matter, though, when working with strings or other +// heap-allocated structures, since C++-equivalent structures also must store +// pointers and also distribute their values across the heap. +// +// This implementation is designed to be a drop-in replacement to gollrb.LLRB +// trees, (http://github.com/petar/gollrb), an excellent and probably the most +// widely used ordered tree implementation in the Go ecosystem currently. +// Its functions, therefore, exactly mirror those of +// llrb.LLRB where possible. Unlike gollrb, though, we currently don't +// support storing multiple equivalent values. +package btree + +import ( + "fmt" + "io" + "sort" + "strings" + "sync" +) + +// Item represents a single object in the tree. +type Item interface { + // Less tests whether the current item is less than the given argument. + // + // This must provide a strict weak ordering. + // If !a.Less(b) && !b.Less(a), we treat this to mean a == b (i.e. we can only + // hold one of either a or b in the tree). + Less(than Item) bool +} + +const ( + DefaultFreeListSize = 32 +) + +var ( + nilItems = make(items, 16) + nilChildren = make(children, 16) +) + +// FreeList represents a free list of btree nodes. By default each +// BTree has its own FreeList, but multiple BTrees can share the same +// FreeList. +// Two Btrees using the same freelist are safe for concurrent write access. +type FreeList struct { + mu sync.Mutex + freelist []*node +} + +// NewFreeList creates a new free list. +// size is the maximum size of the returned free list. +func NewFreeList(size int) *FreeList { + return &FreeList{freelist: make([]*node, 0, size)} +} + +func (f *FreeList) newNode() (n *node) { + f.mu.Lock() + index := len(f.freelist) - 1 + if index < 0 { + f.mu.Unlock() + return new(node) + } + n = f.freelist[index] + f.freelist[index] = nil + f.freelist = f.freelist[:index] + f.mu.Unlock() + return +} + +// freeNode adds the given node to the list, returning true if it was added +// and false if it was discarded. +func (f *FreeList) freeNode(n *node) (out bool) { + f.mu.Lock() + if len(f.freelist) < cap(f.freelist) { + f.freelist = append(f.freelist, n) + out = true + } + f.mu.Unlock() + return +} + +// ItemIterator allows callers of Ascend* to iterate in-order over portions of +// the tree. When this function returns false, iteration will stop and the +// associated Ascend* function will immediately return. +type ItemIterator func(i Item) bool + +// New creates a new B-Tree with the given degree. +// +// New(2), for example, will create a 2-3-4 tree (each node contains 1-3 items +// and 2-4 children). +func New(degree int) *BTree { + return NewWithFreeList(degree, NewFreeList(DefaultFreeListSize)) +} + +// NewWithFreeList creates a new B-Tree that uses the given node free list. +func NewWithFreeList(degree int, f *FreeList) *BTree { + if degree <= 1 { + panic("bad degree") + } + return &BTree{ + degree: degree, + cow: ©OnWriteContext{freelist: f}, + } +} + +// items stores items in a node. +type items []Item + +// insertAt inserts a value into the given index, pushing all subsequent values +// forward. +func (s *items) insertAt(index int, item Item) { + *s = append(*s, nil) + if index < len(*s) { + copy((*s)[index+1:], (*s)[index:]) + } + (*s)[index] = item +} + +// removeAt removes a value at a given index, pulling all subsequent values +// back. +func (s *items) removeAt(index int) Item { + item := (*s)[index] + copy((*s)[index:], (*s)[index+1:]) + (*s)[len(*s)-1] = nil + *s = (*s)[:len(*s)-1] + return item +} + +// pop removes and returns the last element in the list. +func (s *items) pop() (out Item) { + index := len(*s) - 1 + out = (*s)[index] + (*s)[index] = nil + *s = (*s)[:index] + return +} + +// truncate truncates this instance at index so that it contains only the +// first index items. index must be less than or equal to length. +func (s *items) truncate(index int) { + var toClear items + *s, toClear = (*s)[:index], (*s)[index:] + for len(toClear) > 0 { + toClear = toClear[copy(toClear, nilItems):] + } +} + +// find returns the index where the given item should be inserted into this +// list. 'found' is true if the item already exists in the list at the given +// index. +func (s items) find(item Item) (index int, found bool) { + i := sort.Search(len(s), func(i int) bool { + return item.Less(s[i]) + }) + if i > 0 && !s[i-1].Less(item) { + return i - 1, true + } + return i, false +} + +// children stores child nodes in a node. +type children []*node + +// insertAt inserts a value into the given index, pushing all subsequent values +// forward. +func (s *children) insertAt(index int, n *node) { + *s = append(*s, nil) + if index < len(*s) { + copy((*s)[index+1:], (*s)[index:]) + } + (*s)[index] = n +} + +// removeAt removes a value at a given index, pulling all subsequent values +// back. +func (s *children) removeAt(index int) *node { + n := (*s)[index] + copy((*s)[index:], (*s)[index+1:]) + (*s)[len(*s)-1] = nil + *s = (*s)[:len(*s)-1] + return n +} + +// pop removes and returns the last element in the list. +func (s *children) pop() (out *node) { + index := len(*s) - 1 + out = (*s)[index] + (*s)[index] = nil + *s = (*s)[:index] + return +} + +// truncate truncates this instance at index so that it contains only the +// first index children. index must be less than or equal to length. +func (s *children) truncate(index int) { + var toClear children + *s, toClear = (*s)[:index], (*s)[index:] + for len(toClear) > 0 { + toClear = toClear[copy(toClear, nilChildren):] + } +} + +// node is an internal node in a tree. +// +// It must at all times maintain the invariant that either +// * len(children) == 0, len(items) unconstrained +// * len(children) == len(items) + 1 +type node struct { + items items + children children + cow *copyOnWriteContext +} + +func (n *node) mutableFor(cow *copyOnWriteContext) *node { + if n.cow == cow { + return n + } + out := cow.newNode() + if cap(out.items) >= len(n.items) { + out.items = out.items[:len(n.items)] + } else { + out.items = make(items, len(n.items), cap(n.items)) + } + copy(out.items, n.items) + // Copy children + if cap(out.children) >= len(n.children) { + out.children = out.children[:len(n.children)] + } else { + out.children = make(children, len(n.children), cap(n.children)) + } + copy(out.children, n.children) + return out +} + +func (n *node) mutableChild(i int) *node { + c := n.children[i].mutableFor(n.cow) + n.children[i] = c + return c +} + +// split splits the given node at the given index. The current node shrinks, +// and this function returns the item that existed at that index and a new node +// containing all items/children after it. +func (n *node) split(i int) (Item, *node) { + item := n.items[i] + next := n.cow.newNode() + next.items = append(next.items, n.items[i+1:]...) + n.items.truncate(i) + if len(n.children) > 0 { + next.children = append(next.children, n.children[i+1:]...) + n.children.truncate(i + 1) + } + return item, next +} + +// maybeSplitChild checks if a child should be split, and if so splits it. +// Returns whether or not a split occurred. +func (n *node) maybeSplitChild(i, maxItems int) bool { + if len(n.children[i].items) < maxItems { + return false + } + first := n.mutableChild(i) + item, second := first.split(maxItems / 2) + n.items.insertAt(i, item) + n.children.insertAt(i+1, second) + return true +} + +// insert inserts an item into the subtree rooted at this node, making sure +// no nodes in the subtree exceed maxItems items. Should an equivalent item be +// be found/replaced by insert, it will be returned. +func (n *node) insert(item Item, maxItems int) Item { + i, found := n.items.find(item) + if found { + out := n.items[i] + n.items[i] = item + return out + } + if len(n.children) == 0 { + n.items.insertAt(i, item) + return nil + } + if n.maybeSplitChild(i, maxItems) { + inTree := n.items[i] + switch { + case item.Less(inTree): + // no change, we want first split node + case inTree.Less(item): + i++ // we want second split node + default: + out := n.items[i] + n.items[i] = item + return out + } + } + return n.mutableChild(i).insert(item, maxItems) +} + +// get finds the given key in the subtree and returns it. +func (n *node) get(key Item) Item { + i, found := n.items.find(key) + if found { + return n.items[i] + } else if len(n.children) > 0 { + return n.children[i].get(key) + } + return nil +} + +// min returns the first item in the subtree. +func min(n *node) Item { + if n == nil { + return nil + } + for len(n.children) > 0 { + n = n.children[0] + } + if len(n.items) == 0 { + return nil + } + return n.items[0] +} + +// max returns the last item in the subtree. +func max(n *node) Item { + if n == nil { + return nil + } + for len(n.children) > 0 { + n = n.children[len(n.children)-1] + } + if len(n.items) == 0 { + return nil + } + return n.items[len(n.items)-1] +} + +// toRemove details what item to remove in a node.remove call. +type toRemove int + +const ( + removeItem toRemove = iota // removes the given item + removeMin // removes smallest item in the subtree + removeMax // removes largest item in the subtree +) + +// remove removes an item from the subtree rooted at this node. +func (n *node) remove(item Item, minItems int, typ toRemove) Item { + var i int + var found bool + switch typ { + case removeMax: + if len(n.children) == 0 { + return n.items.pop() + } + i = len(n.items) + case removeMin: + if len(n.children) == 0 { + return n.items.removeAt(0) + } + i = 0 + case removeItem: + i, found = n.items.find(item) + if len(n.children) == 0 { + if found { + return n.items.removeAt(i) + } + return nil + } + default: + panic("invalid type") + } + // If we get to here, we have children. + if len(n.children[i].items) <= minItems { + return n.growChildAndRemove(i, item, minItems, typ) + } + child := n.mutableChild(i) + // Either we had enough items to begin with, or we've done some + // merging/stealing, because we've got enough now and we're ready to return + // stuff. + if found { + // The item exists at index 'i', and the child we've selected can give us a + // predecessor, since if we've gotten here it's got > minItems items in it. + out := n.items[i] + // We use our special-case 'remove' call with typ=maxItem to pull the + // predecessor of item i (the rightmost leaf of our immediate left child) + // and set it into where we pulled the item from. + n.items[i] = child.remove(nil, minItems, removeMax) + return out + } + // Final recursive call. Once we're here, we know that the item isn't in this + // node and that the child is big enough to remove from. + return child.remove(item, minItems, typ) +} + +// growChildAndRemove grows child 'i' to make sure it's possible to remove an +// item from it while keeping it at minItems, then calls remove to actually +// remove it. +// +// Most documentation says we have to do two sets of special casing: +// 1) item is in this node +// 2) item is in child +// In both cases, we need to handle the two subcases: +// A) node has enough values that it can spare one +// B) node doesn't have enough values +// For the latter, we have to check: +// a) left sibling has node to spare +// b) right sibling has node to spare +// c) we must merge +// To simplify our code here, we handle cases #1 and #2 the same: +// If a node doesn't have enough items, we make sure it does (using a,b,c). +// We then simply redo our remove call, and the second time (regardless of +// whether we're in case 1 or 2), we'll have enough items and can guarantee +// that we hit case A. +func (n *node) growChildAndRemove(i int, item Item, minItems int, typ toRemove) Item { + if i > 0 && len(n.children[i-1].items) > minItems { + // Steal from left child + child := n.mutableChild(i) + stealFrom := n.mutableChild(i - 1) + stolenItem := stealFrom.items.pop() + child.items.insertAt(0, n.items[i-1]) + n.items[i-1] = stolenItem + if len(stealFrom.children) > 0 { + child.children.insertAt(0, stealFrom.children.pop()) + } + } else if i < len(n.items) && len(n.children[i+1].items) > minItems { + // steal from right child + child := n.mutableChild(i) + stealFrom := n.mutableChild(i + 1) + stolenItem := stealFrom.items.removeAt(0) + child.items = append(child.items, n.items[i]) + n.items[i] = stolenItem + if len(stealFrom.children) > 0 { + child.children = append(child.children, stealFrom.children.removeAt(0)) + } + } else { + if i >= len(n.items) { + i-- + } + child := n.mutableChild(i) + // merge with right child + mergeItem := n.items.removeAt(i) + mergeChild := n.children.removeAt(i + 1).mutableFor(n.cow) + child.items = append(child.items, mergeItem) + child.items = append(child.items, mergeChild.items...) + child.children = append(child.children, mergeChild.children...) + n.cow.freeNode(mergeChild) + } + return n.remove(item, minItems, typ) +} + +type direction int + +const ( + descend = direction(-1) + ascend = direction(+1) +) + +// iterate provides a simple method for iterating over elements in the tree. +// +// When ascending, the 'start' should be less than 'stop' and when descending, +// the 'start' should be greater than 'stop'. Setting 'includeStart' to true +// will force the iterator to include the first item when it equals 'start', +// thus creating a "greaterOrEqual" or "lessThanEqual" rather than just a +// "greaterThan" or "lessThan" queries. +func (n *node) iterate(dir direction, start, stop Item, includeStart bool, hit bool, iter ItemIterator) (bool, bool) { + var ok, found bool + var index int + switch dir { + case ascend: + if start != nil { + index, _ = n.items.find(start) + } + for i := index; i < len(n.items); i++ { + if len(n.children) > 0 { + if hit, ok = n.children[i].iterate(dir, start, stop, includeStart, hit, iter); !ok { + return hit, false + } + } + if !includeStart && !hit && start != nil && !start.Less(n.items[i]) { + hit = true + continue + } + hit = true + if stop != nil && !n.items[i].Less(stop) { + return hit, false + } + if !iter(n.items[i]) { + return hit, false + } + } + if len(n.children) > 0 { + if hit, ok = n.children[len(n.children)-1].iterate(dir, start, stop, includeStart, hit, iter); !ok { + return hit, false + } + } + case descend: + if start != nil { + index, found = n.items.find(start) + if !found { + index = index - 1 + } + } else { + index = len(n.items) - 1 + } + for i := index; i >= 0; i-- { + if start != nil && !n.items[i].Less(start) { + if !includeStart || hit || start.Less(n.items[i]) { + continue + } + } + if len(n.children) > 0 { + if hit, ok = n.children[i+1].iterate(dir, start, stop, includeStart, hit, iter); !ok { + return hit, false + } + } + if stop != nil && !stop.Less(n.items[i]) { + return hit, false // continue + } + hit = true + if !iter(n.items[i]) { + return hit, false + } + } + if len(n.children) > 0 { + if hit, ok = n.children[0].iterate(dir, start, stop, includeStart, hit, iter); !ok { + return hit, false + } + } + } + return hit, true +} + +// Used for testing/debugging purposes. +func (n *node) print(w io.Writer, level int) { + fmt.Fprintf(w, "%sNODE:%v\n", strings.Repeat(" ", level), n.items) + for _, c := range n.children { + c.print(w, level+1) + } +} + +// BTree is an implementation of a B-Tree. +// +// BTree stores Item instances in an ordered structure, allowing easy insertion, +// removal, and iteration. +// +// Write operations are not safe for concurrent mutation by multiple +// goroutines, but Read operations are. +type BTree struct { + degree int + length int + root *node + cow *copyOnWriteContext +} + +// copyOnWriteContext pointers determine node ownership... a tree with a write +// context equivalent to a node's write context is allowed to modify that node. +// A tree whose write context does not match a node's is not allowed to modify +// it, and must create a new, writable copy (IE: it's a Clone). +// +// When doing any write operation, we maintain the invariant that the current +// node's context is equal to the context of the tree that requested the write. +// We do this by, before we descend into any node, creating a copy with the +// correct context if the contexts don't match. +// +// Since the node we're currently visiting on any write has the requesting +// tree's context, that node is modifiable in place. Children of that node may +// not share context, but before we descend into them, we'll make a mutable +// copy. +type copyOnWriteContext struct { + freelist *FreeList +} + +// Clone clones the btree, lazily. Clone should not be called concurrently, +// but the original tree (t) and the new tree (t2) can be used concurrently +// once the Clone call completes. +// +// The internal tree structure of b is marked read-only and shared between t and +// t2. Writes to both t and t2 use copy-on-write logic, creating new nodes +// whenever one of b's original nodes would have been modified. Read operations +// should have no performance degredation. Write operations for both t and t2 +// will initially experience minor slow-downs caused by additional allocs and +// copies due to the aforementioned copy-on-write logic, but should converge to +// the original performance characteristics of the original tree. +func (t *BTree) Clone() (t2 *BTree) { + // Create two entirely new copy-on-write contexts. + // This operation effectively creates three trees: + // the original, shared nodes (old b.cow) + // the new b.cow nodes + // the new out.cow nodes + cow1, cow2 := *t.cow, *t.cow + out := *t + t.cow = &cow1 + out.cow = &cow2 + return &out +} + +// maxItems returns the max number of items to allow per node. +func (t *BTree) maxItems() int { + return t.degree*2 - 1 +} + +// minItems returns the min number of items to allow per node (ignored for the +// root node). +func (t *BTree) minItems() int { + return t.degree - 1 +} + +func (c *copyOnWriteContext) newNode() (n *node) { + n = c.freelist.newNode() + n.cow = c + return +} + +type freeType int + +const ( + ftFreelistFull freeType = iota // node was freed (available for GC, not stored in freelist) + ftStored // node was stored in the freelist for later use + ftNotOwned // node was ignored by COW, since it's owned by another one +) + +// freeNode frees a node within a given COW context, if it's owned by that +// context. It returns what happened to the node (see freeType const +// documentation). +func (c *copyOnWriteContext) freeNode(n *node) freeType { + if n.cow == c { + // clear to allow GC + n.items.truncate(0) + n.children.truncate(0) + n.cow = nil + if c.freelist.freeNode(n) { + return ftStored + } else { + return ftFreelistFull + } + } else { + return ftNotOwned + } +} + +// ReplaceOrInsert adds the given item to the tree. If an item in the tree +// already equals the given one, it is removed from the tree and returned. +// Otherwise, nil is returned. +// +// nil cannot be added to the tree (will panic). +func (t *BTree) ReplaceOrInsert(item Item) Item { + if item == nil { + panic("nil item being added to BTree") + } + if t.root == nil { + t.root = t.cow.newNode() + t.root.items = append(t.root.items, item) + t.length++ + return nil + } else { + t.root = t.root.mutableFor(t.cow) + if len(t.root.items) >= t.maxItems() { + item2, second := t.root.split(t.maxItems() / 2) + oldroot := t.root + t.root = t.cow.newNode() + t.root.items = append(t.root.items, item2) + t.root.children = append(t.root.children, oldroot, second) + } + } + out := t.root.insert(item, t.maxItems()) + if out == nil { + t.length++ + } + return out +} + +// Delete removes an item equal to the passed in item from the tree, returning +// it. If no such item exists, returns nil. +func (t *BTree) Delete(item Item) Item { + return t.deleteItem(item, removeItem) +} + +// DeleteMin removes the smallest item in the tree and returns it. +// If no such item exists, returns nil. +func (t *BTree) DeleteMin() Item { + return t.deleteItem(nil, removeMin) +} + +// DeleteMax removes the largest item in the tree and returns it. +// If no such item exists, returns nil. +func (t *BTree) DeleteMax() Item { + return t.deleteItem(nil, removeMax) +} + +func (t *BTree) deleteItem(item Item, typ toRemove) Item { + if t.root == nil || len(t.root.items) == 0 { + return nil + } + t.root = t.root.mutableFor(t.cow) + out := t.root.remove(item, t.minItems(), typ) + if len(t.root.items) == 0 && len(t.root.children) > 0 { + oldroot := t.root + t.root = t.root.children[0] + t.cow.freeNode(oldroot) + } + if out != nil { + t.length-- + } + return out +} + +// AscendRange calls the iterator for every value in the tree within the range +// [greaterOrEqual, lessThan), until iterator returns false. +func (t *BTree) AscendRange(greaterOrEqual, lessThan Item, iterator ItemIterator) { + if t.root == nil { + return + } + t.root.iterate(ascend, greaterOrEqual, lessThan, true, false, iterator) +} + +// AscendLessThan calls the iterator for every value in the tree within the range +// [first, pivot), until iterator returns false. +func (t *BTree) AscendLessThan(pivot Item, iterator ItemIterator) { + if t.root == nil { + return + } + t.root.iterate(ascend, nil, pivot, false, false, iterator) +} + +// AscendGreaterOrEqual calls the iterator for every value in the tree within +// the range [pivot, last], until iterator returns false. +func (t *BTree) AscendGreaterOrEqual(pivot Item, iterator ItemIterator) { + if t.root == nil { + return + } + t.root.iterate(ascend, pivot, nil, true, false, iterator) +} + +// Ascend calls the iterator for every value in the tree within the range +// [first, last], until iterator returns false. +func (t *BTree) Ascend(iterator ItemIterator) { + if t.root == nil { + return + } + t.root.iterate(ascend, nil, nil, false, false, iterator) +} + +// DescendRange calls the iterator for every value in the tree within the range +// [lessOrEqual, greaterThan), until iterator returns false. +func (t *BTree) DescendRange(lessOrEqual, greaterThan Item, iterator ItemIterator) { + if t.root == nil { + return + } + t.root.iterate(descend, lessOrEqual, greaterThan, true, false, iterator) +} + +// DescendLessOrEqual calls the iterator for every value in the tree within the range +// [pivot, first], until iterator returns false. +func (t *BTree) DescendLessOrEqual(pivot Item, iterator ItemIterator) { + if t.root == nil { + return + } + t.root.iterate(descend, pivot, nil, true, false, iterator) +} + +// DescendGreaterThan calls the iterator for every value in the tree within +// the range [last, pivot), until iterator returns false. +func (t *BTree) DescendGreaterThan(pivot Item, iterator ItemIterator) { + if t.root == nil { + return + } + t.root.iterate(descend, nil, pivot, false, false, iterator) +} + +// Descend calls the iterator for every value in the tree within the range +// [last, first], until iterator returns false. +func (t *BTree) Descend(iterator ItemIterator) { + if t.root == nil { + return + } + t.root.iterate(descend, nil, nil, false, false, iterator) +} + +// Get looks for the key item in the tree, returning it. It returns nil if +// unable to find that item. +func (t *BTree) Get(key Item) Item { + if t.root == nil { + return nil + } + return t.root.get(key) +} + +// Min returns the smallest item in the tree, or nil if the tree is empty. +func (t *BTree) Min() Item { + return min(t.root) +} + +// Max returns the largest item in the tree, or nil if the tree is empty. +func (t *BTree) Max() Item { + return max(t.root) +} + +// Has returns true if the given key is in the tree. +func (t *BTree) Has(key Item) bool { + return t.Get(key) != nil +} + +// Len returns the number of items currently in the tree. +func (t *BTree) Len() int { + return t.length +} + +// Clear removes all items from the btree. If addNodesToFreelist is true, +// t's nodes are added to its freelist as part of this call, until the freelist +// is full. Otherwise, the root node is simply dereferenced and the subtree +// left to Go's normal GC processes. +// +// This can be much faster +// than calling Delete on all elements, because that requires finding/removing +// each element in the tree and updating the tree accordingly. It also is +// somewhat faster than creating a new tree to replace the old one, because +// nodes from the old tree are reclaimed into the freelist for use by the new +// one, instead of being lost to the garbage collector. +// +// This call takes: +// O(1): when addNodesToFreelist is false, this is a single operation. +// O(1): when the freelist is already full, it breaks out immediately +// O(freelist size): when the freelist is empty and the nodes are all owned +// by this tree, nodes are added to the freelist until full. +// O(tree size): when all nodes are owned by another tree, all nodes are +// iterated over looking for nodes to add to the freelist, and due to +// ownership, none are. +func (t *BTree) Clear(addNodesToFreelist bool) { + if t.root != nil && addNodesToFreelist { + t.root.reset(t.cow) + } + t.root, t.length = nil, 0 +} + +// reset returns a subtree to the freelist. It breaks out immediately if the +// freelist is full, since the only benefit of iterating is to fill that +// freelist up. Returns true if parent reset call should continue. +func (n *node) reset(c *copyOnWriteContext) bool { + for _, child := range n.children { + if !child.reset(c) { + return false + } + } + return c.freeNode(n) != ftFreelistFull +} + +// Int implements the Item interface for integers. +type Int int + +// Less returns true if int(a) < int(b). +func (a Int) Less(b Item) bool { + return a < b.(Int) +} diff --git a/tests/e2e/vendor/github.com/google/btree/btree_generic.go b/tests/e2e/vendor/github.com/google/btree/btree_generic.go new file mode 100644 index 0000000000..e44a0f4880 --- /dev/null +++ b/tests/e2e/vendor/github.com/google/btree/btree_generic.go @@ -0,0 +1,1083 @@ +// Copyright 2014-2022 Google Inc. +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +//go:build go1.18 +// +build go1.18 + +// In Go 1.18 and beyond, a BTreeG generic is created, and BTree is a specific +// instantiation of that generic for the Item interface, with a backwards- +// compatible API. Before go1.18, generics are not supported, +// and BTree is just an implementation based around the Item interface. + +// Package btree implements in-memory B-Trees of arbitrary degree. +// +// btree implements an in-memory B-Tree for use as an ordered data structure. +// It is not meant for persistent storage solutions. +// +// It has a flatter structure than an equivalent red-black or other binary tree, +// which in some cases yields better memory usage and/or performance. +// See some discussion on the matter here: +// http://google-opensource.blogspot.com/2013/01/c-containers-that-save-memory-and-time.html +// Note, though, that this project is in no way related to the C++ B-Tree +// implementation written about there. +// +// Within this tree, each node contains a slice of items and a (possibly nil) +// slice of children. For basic numeric values or raw structs, this can cause +// efficiency differences when compared to equivalent C++ template code that +// stores values in arrays within the node: +// * Due to the overhead of storing values as interfaces (each +// value needs to be stored as the value itself, then 2 words for the +// interface pointing to that value and its type), resulting in higher +// memory use. +// * Since interfaces can point to values anywhere in memory, values are +// most likely not stored in contiguous blocks, resulting in a higher +// number of cache misses. +// These issues don't tend to matter, though, when working with strings or other +// heap-allocated structures, since C++-equivalent structures also must store +// pointers and also distribute their values across the heap. +// +// This implementation is designed to be a drop-in replacement to gollrb.LLRB +// trees, (http://github.com/petar/gollrb), an excellent and probably the most +// widely used ordered tree implementation in the Go ecosystem currently. +// Its functions, therefore, exactly mirror those of +// llrb.LLRB where possible. Unlike gollrb, though, we currently don't +// support storing multiple equivalent values. +// +// There are two implementations; those suffixed with 'G' are generics, usable +// for any type, and require a passed-in "less" function to define their ordering. +// Those without this prefix are specific to the 'Item' interface, and use +// its 'Less' function for ordering. +package btree + +import ( + "fmt" + "io" + "sort" + "strings" + "sync" +) + +// Item represents a single object in the tree. +type Item interface { + // Less tests whether the current item is less than the given argument. + // + // This must provide a strict weak ordering. + // If !a.Less(b) && !b.Less(a), we treat this to mean a == b (i.e. we can only + // hold one of either a or b in the tree). + Less(than Item) bool +} + +const ( + DefaultFreeListSize = 32 +) + +// FreeListG represents a free list of btree nodes. By default each +// BTree has its own FreeList, but multiple BTrees can share the same +// FreeList, in particular when they're created with Clone. +// Two Btrees using the same freelist are safe for concurrent write access. +type FreeListG[T any] struct { + mu sync.Mutex + freelist []*node[T] +} + +// NewFreeListG creates a new free list. +// size is the maximum size of the returned free list. +func NewFreeListG[T any](size int) *FreeListG[T] { + return &FreeListG[T]{freelist: make([]*node[T], 0, size)} +} + +func (f *FreeListG[T]) newNode() (n *node[T]) { + f.mu.Lock() + index := len(f.freelist) - 1 + if index < 0 { + f.mu.Unlock() + return new(node[T]) + } + n = f.freelist[index] + f.freelist[index] = nil + f.freelist = f.freelist[:index] + f.mu.Unlock() + return +} + +func (f *FreeListG[T]) freeNode(n *node[T]) (out bool) { + f.mu.Lock() + if len(f.freelist) < cap(f.freelist) { + f.freelist = append(f.freelist, n) + out = true + } + f.mu.Unlock() + return +} + +// ItemIteratorG allows callers of {A/De}scend* to iterate in-order over portions of +// the tree. When this function returns false, iteration will stop and the +// associated Ascend* function will immediately return. +type ItemIteratorG[T any] func(item T) bool + +// Ordered represents the set of types for which the '<' operator work. +type Ordered interface { + ~int | ~int8 | ~int16 | ~int32 | ~int64 | ~uint | ~uint8 | ~uint16 | ~uint32 | ~uint64 | ~float32 | ~float64 | ~string +} + +// Less[T] returns a default LessFunc that uses the '<' operator for types that support it. +func Less[T Ordered]() LessFunc[T] { + return func(a, b T) bool { return a < b } +} + +// NewOrderedG creates a new B-Tree for ordered types. +func NewOrderedG[T Ordered](degree int) *BTreeG[T] { + return NewG[T](degree, Less[T]()) +} + +// NewG creates a new B-Tree with the given degree. +// +// NewG(2), for example, will create a 2-3-4 tree (each node contains 1-3 items +// and 2-4 children). +// +// The passed-in LessFunc determines how objects of type T are ordered. +func NewG[T any](degree int, less LessFunc[T]) *BTreeG[T] { + return NewWithFreeListG(degree, less, NewFreeListG[T](DefaultFreeListSize)) +} + +// NewWithFreeListG creates a new B-Tree that uses the given node free list. +func NewWithFreeListG[T any](degree int, less LessFunc[T], f *FreeListG[T]) *BTreeG[T] { + if degree <= 1 { + panic("bad degree") + } + return &BTreeG[T]{ + degree: degree, + cow: ©OnWriteContext[T]{freelist: f, less: less}, + } +} + +// items stores items in a node. +type items[T any] []T + +// insertAt inserts a value into the given index, pushing all subsequent values +// forward. +func (s *items[T]) insertAt(index int, item T) { + var zero T + *s = append(*s, zero) + if index < len(*s) { + copy((*s)[index+1:], (*s)[index:]) + } + (*s)[index] = item +} + +// removeAt removes a value at a given index, pulling all subsequent values +// back. +func (s *items[T]) removeAt(index int) T { + item := (*s)[index] + copy((*s)[index:], (*s)[index+1:]) + var zero T + (*s)[len(*s)-1] = zero + *s = (*s)[:len(*s)-1] + return item +} + +// pop removes and returns the last element in the list. +func (s *items[T]) pop() (out T) { + index := len(*s) - 1 + out = (*s)[index] + var zero T + (*s)[index] = zero + *s = (*s)[:index] + return +} + +// truncate truncates this instance at index so that it contains only the +// first index items. index must be less than or equal to length. +func (s *items[T]) truncate(index int) { + var toClear items[T] + *s, toClear = (*s)[:index], (*s)[index:] + var zero T + for i := 0; i < len(toClear); i++ { + toClear[i] = zero + } +} + +// find returns the index where the given item should be inserted into this +// list. 'found' is true if the item already exists in the list at the given +// index. +func (s items[T]) find(item T, less func(T, T) bool) (index int, found bool) { + i := sort.Search(len(s), func(i int) bool { + return less(item, s[i]) + }) + if i > 0 && !less(s[i-1], item) { + return i - 1, true + } + return i, false +} + +// node is an internal node in a tree. +// +// It must at all times maintain the invariant that either +// * len(children) == 0, len(items) unconstrained +// * len(children) == len(items) + 1 +type node[T any] struct { + items items[T] + children items[*node[T]] + cow *copyOnWriteContext[T] +} + +func (n *node[T]) mutableFor(cow *copyOnWriteContext[T]) *node[T] { + if n.cow == cow { + return n + } + out := cow.newNode() + if cap(out.items) >= len(n.items) { + out.items = out.items[:len(n.items)] + } else { + out.items = make(items[T], len(n.items), cap(n.items)) + } + copy(out.items, n.items) + // Copy children + if cap(out.children) >= len(n.children) { + out.children = out.children[:len(n.children)] + } else { + out.children = make(items[*node[T]], len(n.children), cap(n.children)) + } + copy(out.children, n.children) + return out +} + +func (n *node[T]) mutableChild(i int) *node[T] { + c := n.children[i].mutableFor(n.cow) + n.children[i] = c + return c +} + +// split splits the given node at the given index. The current node shrinks, +// and this function returns the item that existed at that index and a new node +// containing all items/children after it. +func (n *node[T]) split(i int) (T, *node[T]) { + item := n.items[i] + next := n.cow.newNode() + next.items = append(next.items, n.items[i+1:]...) + n.items.truncate(i) + if len(n.children) > 0 { + next.children = append(next.children, n.children[i+1:]...) + n.children.truncate(i + 1) + } + return item, next +} + +// maybeSplitChild checks if a child should be split, and if so splits it. +// Returns whether or not a split occurred. +func (n *node[T]) maybeSplitChild(i, maxItems int) bool { + if len(n.children[i].items) < maxItems { + return false + } + first := n.mutableChild(i) + item, second := first.split(maxItems / 2) + n.items.insertAt(i, item) + n.children.insertAt(i+1, second) + return true +} + +// insert inserts an item into the subtree rooted at this node, making sure +// no nodes in the subtree exceed maxItems items. Should an equivalent item be +// be found/replaced by insert, it will be returned. +func (n *node[T]) insert(item T, maxItems int) (_ T, _ bool) { + i, found := n.items.find(item, n.cow.less) + if found { + out := n.items[i] + n.items[i] = item + return out, true + } + if len(n.children) == 0 { + n.items.insertAt(i, item) + return + } + if n.maybeSplitChild(i, maxItems) { + inTree := n.items[i] + switch { + case n.cow.less(item, inTree): + // no change, we want first split node + case n.cow.less(inTree, item): + i++ // we want second split node + default: + out := n.items[i] + n.items[i] = item + return out, true + } + } + return n.mutableChild(i).insert(item, maxItems) +} + +// get finds the given key in the subtree and returns it. +func (n *node[T]) get(key T) (_ T, _ bool) { + i, found := n.items.find(key, n.cow.less) + if found { + return n.items[i], true + } else if len(n.children) > 0 { + return n.children[i].get(key) + } + return +} + +// min returns the first item in the subtree. +func min[T any](n *node[T]) (_ T, found bool) { + if n == nil { + return + } + for len(n.children) > 0 { + n = n.children[0] + } + if len(n.items) == 0 { + return + } + return n.items[0], true +} + +// max returns the last item in the subtree. +func max[T any](n *node[T]) (_ T, found bool) { + if n == nil { + return + } + for len(n.children) > 0 { + n = n.children[len(n.children)-1] + } + if len(n.items) == 0 { + return + } + return n.items[len(n.items)-1], true +} + +// toRemove details what item to remove in a node.remove call. +type toRemove int + +const ( + removeItem toRemove = iota // removes the given item + removeMin // removes smallest item in the subtree + removeMax // removes largest item in the subtree +) + +// remove removes an item from the subtree rooted at this node. +func (n *node[T]) remove(item T, minItems int, typ toRemove) (_ T, _ bool) { + var i int + var found bool + switch typ { + case removeMax: + if len(n.children) == 0 { + return n.items.pop(), true + } + i = len(n.items) + case removeMin: + if len(n.children) == 0 { + return n.items.removeAt(0), true + } + i = 0 + case removeItem: + i, found = n.items.find(item, n.cow.less) + if len(n.children) == 0 { + if found { + return n.items.removeAt(i), true + } + return + } + default: + panic("invalid type") + } + // If we get to here, we have children. + if len(n.children[i].items) <= minItems { + return n.growChildAndRemove(i, item, minItems, typ) + } + child := n.mutableChild(i) + // Either we had enough items to begin with, or we've done some + // merging/stealing, because we've got enough now and we're ready to return + // stuff. + if found { + // The item exists at index 'i', and the child we've selected can give us a + // predecessor, since if we've gotten here it's got > minItems items in it. + out := n.items[i] + // We use our special-case 'remove' call with typ=maxItem to pull the + // predecessor of item i (the rightmost leaf of our immediate left child) + // and set it into where we pulled the item from. + var zero T + n.items[i], _ = child.remove(zero, minItems, removeMax) + return out, true + } + // Final recursive call. Once we're here, we know that the item isn't in this + // node and that the child is big enough to remove from. + return child.remove(item, minItems, typ) +} + +// growChildAndRemove grows child 'i' to make sure it's possible to remove an +// item from it while keeping it at minItems, then calls remove to actually +// remove it. +// +// Most documentation says we have to do two sets of special casing: +// 1) item is in this node +// 2) item is in child +// In both cases, we need to handle the two subcases: +// A) node has enough values that it can spare one +// B) node doesn't have enough values +// For the latter, we have to check: +// a) left sibling has node to spare +// b) right sibling has node to spare +// c) we must merge +// To simplify our code here, we handle cases #1 and #2 the same: +// If a node doesn't have enough items, we make sure it does (using a,b,c). +// We then simply redo our remove call, and the second time (regardless of +// whether we're in case 1 or 2), we'll have enough items and can guarantee +// that we hit case A. +func (n *node[T]) growChildAndRemove(i int, item T, minItems int, typ toRemove) (T, bool) { + if i > 0 && len(n.children[i-1].items) > minItems { + // Steal from left child + child := n.mutableChild(i) + stealFrom := n.mutableChild(i - 1) + stolenItem := stealFrom.items.pop() + child.items.insertAt(0, n.items[i-1]) + n.items[i-1] = stolenItem + if len(stealFrom.children) > 0 { + child.children.insertAt(0, stealFrom.children.pop()) + } + } else if i < len(n.items) && len(n.children[i+1].items) > minItems { + // steal from right child + child := n.mutableChild(i) + stealFrom := n.mutableChild(i + 1) + stolenItem := stealFrom.items.removeAt(0) + child.items = append(child.items, n.items[i]) + n.items[i] = stolenItem + if len(stealFrom.children) > 0 { + child.children = append(child.children, stealFrom.children.removeAt(0)) + } + } else { + if i >= len(n.items) { + i-- + } + child := n.mutableChild(i) + // merge with right child + mergeItem := n.items.removeAt(i) + mergeChild := n.children.removeAt(i + 1) + child.items = append(child.items, mergeItem) + child.items = append(child.items, mergeChild.items...) + child.children = append(child.children, mergeChild.children...) + n.cow.freeNode(mergeChild) + } + return n.remove(item, minItems, typ) +} + +type direction int + +const ( + descend = direction(-1) + ascend = direction(+1) +) + +type optionalItem[T any] struct { + item T + valid bool +} + +func optional[T any](item T) optionalItem[T] { + return optionalItem[T]{item: item, valid: true} +} +func empty[T any]() optionalItem[T] { + return optionalItem[T]{} +} + +// iterate provides a simple method for iterating over elements in the tree. +// +// When ascending, the 'start' should be less than 'stop' and when descending, +// the 'start' should be greater than 'stop'. Setting 'includeStart' to true +// will force the iterator to include the first item when it equals 'start', +// thus creating a "greaterOrEqual" or "lessThanEqual" rather than just a +// "greaterThan" or "lessThan" queries. +func (n *node[T]) iterate(dir direction, start, stop optionalItem[T], includeStart bool, hit bool, iter ItemIteratorG[T]) (bool, bool) { + var ok, found bool + var index int + switch dir { + case ascend: + if start.valid { + index, _ = n.items.find(start.item, n.cow.less) + } + for i := index; i < len(n.items); i++ { + if len(n.children) > 0 { + if hit, ok = n.children[i].iterate(dir, start, stop, includeStart, hit, iter); !ok { + return hit, false + } + } + if !includeStart && !hit && start.valid && !n.cow.less(start.item, n.items[i]) { + hit = true + continue + } + hit = true + if stop.valid && !n.cow.less(n.items[i], stop.item) { + return hit, false + } + if !iter(n.items[i]) { + return hit, false + } + } + if len(n.children) > 0 { + if hit, ok = n.children[len(n.children)-1].iterate(dir, start, stop, includeStart, hit, iter); !ok { + return hit, false + } + } + case descend: + if start.valid { + index, found = n.items.find(start.item, n.cow.less) + if !found { + index = index - 1 + } + } else { + index = len(n.items) - 1 + } + for i := index; i >= 0; i-- { + if start.valid && !n.cow.less(n.items[i], start.item) { + if !includeStart || hit || n.cow.less(start.item, n.items[i]) { + continue + } + } + if len(n.children) > 0 { + if hit, ok = n.children[i+1].iterate(dir, start, stop, includeStart, hit, iter); !ok { + return hit, false + } + } + if stop.valid && !n.cow.less(stop.item, n.items[i]) { + return hit, false // continue + } + hit = true + if !iter(n.items[i]) { + return hit, false + } + } + if len(n.children) > 0 { + if hit, ok = n.children[0].iterate(dir, start, stop, includeStart, hit, iter); !ok { + return hit, false + } + } + } + return hit, true +} + +// print is used for testing/debugging purposes. +func (n *node[T]) print(w io.Writer, level int) { + fmt.Fprintf(w, "%sNODE:%v\n", strings.Repeat(" ", level), n.items) + for _, c := range n.children { + c.print(w, level+1) + } +} + +// BTreeG is a generic implementation of a B-Tree. +// +// BTreeG stores items of type T in an ordered structure, allowing easy insertion, +// removal, and iteration. +// +// Write operations are not safe for concurrent mutation by multiple +// goroutines, but Read operations are. +type BTreeG[T any] struct { + degree int + length int + root *node[T] + cow *copyOnWriteContext[T] +} + +// LessFunc[T] determines how to order a type 'T'. It should implement a strict +// ordering, and should return true if within that ordering, 'a' < 'b'. +type LessFunc[T any] func(a, b T) bool + +// copyOnWriteContext pointers determine node ownership... a tree with a write +// context equivalent to a node's write context is allowed to modify that node. +// A tree whose write context does not match a node's is not allowed to modify +// it, and must create a new, writable copy (IE: it's a Clone). +// +// When doing any write operation, we maintain the invariant that the current +// node's context is equal to the context of the tree that requested the write. +// We do this by, before we descend into any node, creating a copy with the +// correct context if the contexts don't match. +// +// Since the node we're currently visiting on any write has the requesting +// tree's context, that node is modifiable in place. Children of that node may +// not share context, but before we descend into them, we'll make a mutable +// copy. +type copyOnWriteContext[T any] struct { + freelist *FreeListG[T] + less LessFunc[T] +} + +// Clone clones the btree, lazily. Clone should not be called concurrently, +// but the original tree (t) and the new tree (t2) can be used concurrently +// once the Clone call completes. +// +// The internal tree structure of b is marked read-only and shared between t and +// t2. Writes to both t and t2 use copy-on-write logic, creating new nodes +// whenever one of b's original nodes would have been modified. Read operations +// should have no performance degredation. Write operations for both t and t2 +// will initially experience minor slow-downs caused by additional allocs and +// copies due to the aforementioned copy-on-write logic, but should converge to +// the original performance characteristics of the original tree. +func (t *BTreeG[T]) Clone() (t2 *BTreeG[T]) { + // Create two entirely new copy-on-write contexts. + // This operation effectively creates three trees: + // the original, shared nodes (old b.cow) + // the new b.cow nodes + // the new out.cow nodes + cow1, cow2 := *t.cow, *t.cow + out := *t + t.cow = &cow1 + out.cow = &cow2 + return &out +} + +// maxItems returns the max number of items to allow per node. +func (t *BTreeG[T]) maxItems() int { + return t.degree*2 - 1 +} + +// minItems returns the min number of items to allow per node (ignored for the +// root node). +func (t *BTreeG[T]) minItems() int { + return t.degree - 1 +} + +func (c *copyOnWriteContext[T]) newNode() (n *node[T]) { + n = c.freelist.newNode() + n.cow = c + return +} + +type freeType int + +const ( + ftFreelistFull freeType = iota // node was freed (available for GC, not stored in freelist) + ftStored // node was stored in the freelist for later use + ftNotOwned // node was ignored by COW, since it's owned by another one +) + +// freeNode frees a node within a given COW context, if it's owned by that +// context. It returns what happened to the node (see freeType const +// documentation). +func (c *copyOnWriteContext[T]) freeNode(n *node[T]) freeType { + if n.cow == c { + // clear to allow GC + n.items.truncate(0) + n.children.truncate(0) + n.cow = nil + if c.freelist.freeNode(n) { + return ftStored + } else { + return ftFreelistFull + } + } else { + return ftNotOwned + } +} + +// ReplaceOrInsert adds the given item to the tree. If an item in the tree +// already equals the given one, it is removed from the tree and returned, +// and the second return value is true. Otherwise, (zeroValue, false) +// +// nil cannot be added to the tree (will panic). +func (t *BTreeG[T]) ReplaceOrInsert(item T) (_ T, _ bool) { + if t.root == nil { + t.root = t.cow.newNode() + t.root.items = append(t.root.items, item) + t.length++ + return + } else { + t.root = t.root.mutableFor(t.cow) + if len(t.root.items) >= t.maxItems() { + item2, second := t.root.split(t.maxItems() / 2) + oldroot := t.root + t.root = t.cow.newNode() + t.root.items = append(t.root.items, item2) + t.root.children = append(t.root.children, oldroot, second) + } + } + out, outb := t.root.insert(item, t.maxItems()) + if !outb { + t.length++ + } + return out, outb +} + +// Delete removes an item equal to the passed in item from the tree, returning +// it. If no such item exists, returns (zeroValue, false). +func (t *BTreeG[T]) Delete(item T) (T, bool) { + return t.deleteItem(item, removeItem) +} + +// DeleteMin removes the smallest item in the tree and returns it. +// If no such item exists, returns (zeroValue, false). +func (t *BTreeG[T]) DeleteMin() (T, bool) { + var zero T + return t.deleteItem(zero, removeMin) +} + +// DeleteMax removes the largest item in the tree and returns it. +// If no such item exists, returns (zeroValue, false). +func (t *BTreeG[T]) DeleteMax() (T, bool) { + var zero T + return t.deleteItem(zero, removeMax) +} + +func (t *BTreeG[T]) deleteItem(item T, typ toRemove) (_ T, _ bool) { + if t.root == nil || len(t.root.items) == 0 { + return + } + t.root = t.root.mutableFor(t.cow) + out, outb := t.root.remove(item, t.minItems(), typ) + if len(t.root.items) == 0 && len(t.root.children) > 0 { + oldroot := t.root + t.root = t.root.children[0] + t.cow.freeNode(oldroot) + } + if outb { + t.length-- + } + return out, outb +} + +// AscendRange calls the iterator for every value in the tree within the range +// [greaterOrEqual, lessThan), until iterator returns false. +func (t *BTreeG[T]) AscendRange(greaterOrEqual, lessThan T, iterator ItemIteratorG[T]) { + if t.root == nil { + return + } + t.root.iterate(ascend, optional[T](greaterOrEqual), optional[T](lessThan), true, false, iterator) +} + +// AscendLessThan calls the iterator for every value in the tree within the range +// [first, pivot), until iterator returns false. +func (t *BTreeG[T]) AscendLessThan(pivot T, iterator ItemIteratorG[T]) { + if t.root == nil { + return + } + t.root.iterate(ascend, empty[T](), optional(pivot), false, false, iterator) +} + +// AscendGreaterOrEqual calls the iterator for every value in the tree within +// the range [pivot, last], until iterator returns false. +func (t *BTreeG[T]) AscendGreaterOrEqual(pivot T, iterator ItemIteratorG[T]) { + if t.root == nil { + return + } + t.root.iterate(ascend, optional[T](pivot), empty[T](), true, false, iterator) +} + +// Ascend calls the iterator for every value in the tree within the range +// [first, last], until iterator returns false. +func (t *BTreeG[T]) Ascend(iterator ItemIteratorG[T]) { + if t.root == nil { + return + } + t.root.iterate(ascend, empty[T](), empty[T](), false, false, iterator) +} + +// DescendRange calls the iterator for every value in the tree within the range +// [lessOrEqual, greaterThan), until iterator returns false. +func (t *BTreeG[T]) DescendRange(lessOrEqual, greaterThan T, iterator ItemIteratorG[T]) { + if t.root == nil { + return + } + t.root.iterate(descend, optional[T](lessOrEqual), optional[T](greaterThan), true, false, iterator) +} + +// DescendLessOrEqual calls the iterator for every value in the tree within the range +// [pivot, first], until iterator returns false. +func (t *BTreeG[T]) DescendLessOrEqual(pivot T, iterator ItemIteratorG[T]) { + if t.root == nil { + return + } + t.root.iterate(descend, optional[T](pivot), empty[T](), true, false, iterator) +} + +// DescendGreaterThan calls the iterator for every value in the tree within +// the range [last, pivot), until iterator returns false. +func (t *BTreeG[T]) DescendGreaterThan(pivot T, iterator ItemIteratorG[T]) { + if t.root == nil { + return + } + t.root.iterate(descend, empty[T](), optional[T](pivot), false, false, iterator) +} + +// Descend calls the iterator for every value in the tree within the range +// [last, first], until iterator returns false. +func (t *BTreeG[T]) Descend(iterator ItemIteratorG[T]) { + if t.root == nil { + return + } + t.root.iterate(descend, empty[T](), empty[T](), false, false, iterator) +} + +// Get looks for the key item in the tree, returning it. It returns +// (zeroValue, false) if unable to find that item. +func (t *BTreeG[T]) Get(key T) (_ T, _ bool) { + if t.root == nil { + return + } + return t.root.get(key) +} + +// Min returns the smallest item in the tree, or (zeroValue, false) if the tree is empty. +func (t *BTreeG[T]) Min() (_ T, _ bool) { + return min(t.root) +} + +// Max returns the largest item in the tree, or (zeroValue, false) if the tree is empty. +func (t *BTreeG[T]) Max() (_ T, _ bool) { + return max(t.root) +} + +// Has returns true if the given key is in the tree. +func (t *BTreeG[T]) Has(key T) bool { + _, ok := t.Get(key) + return ok +} + +// Len returns the number of items currently in the tree. +func (t *BTreeG[T]) Len() int { + return t.length +} + +// Clear removes all items from the btree. If addNodesToFreelist is true, +// t's nodes are added to its freelist as part of this call, until the freelist +// is full. Otherwise, the root node is simply dereferenced and the subtree +// left to Go's normal GC processes. +// +// This can be much faster +// than calling Delete on all elements, because that requires finding/removing +// each element in the tree and updating the tree accordingly. It also is +// somewhat faster than creating a new tree to replace the old one, because +// nodes from the old tree are reclaimed into the freelist for use by the new +// one, instead of being lost to the garbage collector. +// +// This call takes: +// O(1): when addNodesToFreelist is false, this is a single operation. +// O(1): when the freelist is already full, it breaks out immediately +// O(freelist size): when the freelist is empty and the nodes are all owned +// by this tree, nodes are added to the freelist until full. +// O(tree size): when all nodes are owned by another tree, all nodes are +// iterated over looking for nodes to add to the freelist, and due to +// ownership, none are. +func (t *BTreeG[T]) Clear(addNodesToFreelist bool) { + if t.root != nil && addNodesToFreelist { + t.root.reset(t.cow) + } + t.root, t.length = nil, 0 +} + +// reset returns a subtree to the freelist. It breaks out immediately if the +// freelist is full, since the only benefit of iterating is to fill that +// freelist up. Returns true if parent reset call should continue. +func (n *node[T]) reset(c *copyOnWriteContext[T]) bool { + for _, child := range n.children { + if !child.reset(c) { + return false + } + } + return c.freeNode(n) != ftFreelistFull +} + +// Int implements the Item interface for integers. +type Int int + +// Less returns true if int(a) < int(b). +func (a Int) Less(b Item) bool { + return a < b.(Int) +} + +// BTree is an implementation of a B-Tree. +// +// BTree stores Item instances in an ordered structure, allowing easy insertion, +// removal, and iteration. +// +// Write operations are not safe for concurrent mutation by multiple +// goroutines, but Read operations are. +type BTree BTreeG[Item] + +var itemLess LessFunc[Item] = func(a, b Item) bool { + return a.Less(b) +} + +// New creates a new B-Tree with the given degree. +// +// New(2), for example, will create a 2-3-4 tree (each node contains 1-3 items +// and 2-4 children). +func New(degree int) *BTree { + return (*BTree)(NewG[Item](degree, itemLess)) +} + +// FreeList represents a free list of btree nodes. By default each +// BTree has its own FreeList, but multiple BTrees can share the same +// FreeList. +// Two Btrees using the same freelist are safe for concurrent write access. +type FreeList FreeListG[Item] + +// NewFreeList creates a new free list. +// size is the maximum size of the returned free list. +func NewFreeList(size int) *FreeList { + return (*FreeList)(NewFreeListG[Item](size)) +} + +// NewWithFreeList creates a new B-Tree that uses the given node free list. +func NewWithFreeList(degree int, f *FreeList) *BTree { + return (*BTree)(NewWithFreeListG[Item](degree, itemLess, (*FreeListG[Item])(f))) +} + +// ItemIterator allows callers of Ascend* to iterate in-order over portions of +// the tree. When this function returns false, iteration will stop and the +// associated Ascend* function will immediately return. +type ItemIterator ItemIteratorG[Item] + +// Clone clones the btree, lazily. Clone should not be called concurrently, +// but the original tree (t) and the new tree (t2) can be used concurrently +// once the Clone call completes. +// +// The internal tree structure of b is marked read-only and shared between t and +// t2. Writes to both t and t2 use copy-on-write logic, creating new nodes +// whenever one of b's original nodes would have been modified. Read operations +// should have no performance degredation. Write operations for both t and t2 +// will initially experience minor slow-downs caused by additional allocs and +// copies due to the aforementioned copy-on-write logic, but should converge to +// the original performance characteristics of the original tree. +func (t *BTree) Clone() (t2 *BTree) { + return (*BTree)((*BTreeG[Item])(t).Clone()) +} + +// Delete removes an item equal to the passed in item from the tree, returning +// it. If no such item exists, returns nil. +func (t *BTree) Delete(item Item) Item { + i, _ := (*BTreeG[Item])(t).Delete(item) + return i +} + +// DeleteMax removes the largest item in the tree and returns it. +// If no such item exists, returns nil. +func (t *BTree) DeleteMax() Item { + i, _ := (*BTreeG[Item])(t).DeleteMax() + return i +} + +// DeleteMin removes the smallest item in the tree and returns it. +// If no such item exists, returns nil. +func (t *BTree) DeleteMin() Item { + i, _ := (*BTreeG[Item])(t).DeleteMin() + return i +} + +// Get looks for the key item in the tree, returning it. It returns nil if +// unable to find that item. +func (t *BTree) Get(key Item) Item { + i, _ := (*BTreeG[Item])(t).Get(key) + return i +} + +// Max returns the largest item in the tree, or nil if the tree is empty. +func (t *BTree) Max() Item { + i, _ := (*BTreeG[Item])(t).Max() + return i +} + +// Min returns the smallest item in the tree, or nil if the tree is empty. +func (t *BTree) Min() Item { + i, _ := (*BTreeG[Item])(t).Min() + return i +} + +// Has returns true if the given key is in the tree. +func (t *BTree) Has(key Item) bool { + return (*BTreeG[Item])(t).Has(key) +} + +// ReplaceOrInsert adds the given item to the tree. If an item in the tree +// already equals the given one, it is removed from the tree and returned. +// Otherwise, nil is returned. +// +// nil cannot be added to the tree (will panic). +func (t *BTree) ReplaceOrInsert(item Item) Item { + i, _ := (*BTreeG[Item])(t).ReplaceOrInsert(item) + return i +} + +// AscendRange calls the iterator for every value in the tree within the range +// [greaterOrEqual, lessThan), until iterator returns false. +func (t *BTree) AscendRange(greaterOrEqual, lessThan Item, iterator ItemIterator) { + (*BTreeG[Item])(t).AscendRange(greaterOrEqual, lessThan, (ItemIteratorG[Item])(iterator)) +} + +// AscendLessThan calls the iterator for every value in the tree within the range +// [first, pivot), until iterator returns false. +func (t *BTree) AscendLessThan(pivot Item, iterator ItemIterator) { + (*BTreeG[Item])(t).AscendLessThan(pivot, (ItemIteratorG[Item])(iterator)) +} + +// AscendGreaterOrEqual calls the iterator for every value in the tree within +// the range [pivot, last], until iterator returns false. +func (t *BTree) AscendGreaterOrEqual(pivot Item, iterator ItemIterator) { + (*BTreeG[Item])(t).AscendGreaterOrEqual(pivot, (ItemIteratorG[Item])(iterator)) +} + +// Ascend calls the iterator for every value in the tree within the range +// [first, last], until iterator returns false. +func (t *BTree) Ascend(iterator ItemIterator) { + (*BTreeG[Item])(t).Ascend((ItemIteratorG[Item])(iterator)) +} + +// DescendRange calls the iterator for every value in the tree within the range +// [lessOrEqual, greaterThan), until iterator returns false. +func (t *BTree) DescendRange(lessOrEqual, greaterThan Item, iterator ItemIterator) { + (*BTreeG[Item])(t).DescendRange(lessOrEqual, greaterThan, (ItemIteratorG[Item])(iterator)) +} + +// DescendLessOrEqual calls the iterator for every value in the tree within the range +// [pivot, first], until iterator returns false. +func (t *BTree) DescendLessOrEqual(pivot Item, iterator ItemIterator) { + (*BTreeG[Item])(t).DescendLessOrEqual(pivot, (ItemIteratorG[Item])(iterator)) +} + +// DescendGreaterThan calls the iterator for every value in the tree within +// the range [last, pivot), until iterator returns false. +func (t *BTree) DescendGreaterThan(pivot Item, iterator ItemIterator) { + (*BTreeG[Item])(t).DescendGreaterThan(pivot, (ItemIteratorG[Item])(iterator)) +} + +// Descend calls the iterator for every value in the tree within the range +// [last, first], until iterator returns false. +func (t *BTree) Descend(iterator ItemIterator) { + (*BTreeG[Item])(t).Descend((ItemIteratorG[Item])(iterator)) +} + +// Len returns the number of items currently in the tree. +func (t *BTree) Len() int { + return (*BTreeG[Item])(t).Len() +} + +// Clear removes all items from the btree. If addNodesToFreelist is true, +// t's nodes are added to its freelist as part of this call, until the freelist +// is full. Otherwise, the root node is simply dereferenced and the subtree +// left to Go's normal GC processes. +// +// This can be much faster +// than calling Delete on all elements, because that requires finding/removing +// each element in the tree and updating the tree accordingly. It also is +// somewhat faster than creating a new tree to replace the old one, because +// nodes from the old tree are reclaimed into the freelist for use by the new +// one, instead of being lost to the garbage collector. +// +// This call takes: +// O(1): when addNodesToFreelist is false, this is a single operation. +// O(1): when the freelist is already full, it breaks out immediately +// O(freelist size): when the freelist is empty and the nodes are all owned +// by this tree, nodes are added to the freelist until full. +// O(tree size): when all nodes are owned by another tree, all nodes are +// iterated over looking for nodes to add to the freelist, and due to +// ownership, none are. +func (t *BTree) Clear(addNodesToFreelist bool) { + (*BTreeG[Item])(t).Clear(addNodesToFreelist) +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/BUILD.bazel b/tests/e2e/vendor/github.com/google/cel-go/cel/BUILD.bazel index c12e4904da..62a56036a0 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/BUILD.bazel +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/BUILD.bazel @@ -10,6 +10,7 @@ go_library( "cel.go", "decls.go", "env.go", + "fieldpaths.go", "folding.go", "inlining.go", "io.go", @@ -21,10 +22,11 @@ go_library( "prompt.go", "validator.go", ], - embedsrcs = ["//cel/templates"], + embedsrcs = ["templates/authoring.tmpl"], importpath = "github.com/google/cel-go/cel", visibility = ["//visibility:public"], deps = [ + "//cel/async:go_default_library", "//checker:go_default_library", "//checker/decls:go_default_library", "//common:go_default_library", @@ -43,6 +45,7 @@ go_library( "//interpreter:go_default_library", "//parser:go_default_library", "@dev_cel_expr//:expr", + "@dev_cel_expr//conformance/proto3:go_default_library", "@org_golang_google_genproto_googleapis_api//expr/v1alpha1:go_default_library", "@org_golang_google_protobuf//proto:go_default_library", "@org_golang_google_protobuf//reflect/protodesc:go_default_library", @@ -63,10 +66,12 @@ go_test( "cel_test.go", "decls_test.go", "env_test.go", + "fieldpaths_test.go", "folding_test.go", "inlining_test.go", "io_test.go", "optimizer_test.go", + "program_async_test.go", "prompt_test.go", "validator_test.go", ], @@ -78,8 +83,10 @@ go_test( ], embedsrcs = [ "//cel/testdata:prompts", + "//cel/testdata:test_fds_with_source_info", ], deps = [ + "//cel/async:go_default_library", "//common/operators:go_default_library", "//common/overloads:go_default_library", "//common/types:go_default_library", @@ -89,6 +96,7 @@ go_test( "//test:go_default_library", "//test/proto2pb:go_default_library", "//test/proto3pb:go_default_library", + "@com_github_google_go_cmp//cmp:go_default_library", "@org_golang_google_genproto_googleapis_api//expr/v1alpha1:go_default_library", "@org_golang_google_protobuf//encoding/prototext:go_default_library", "@org_golang_google_protobuf//proto:go_default_library", @@ -96,3 +104,8 @@ go_test( "@org_golang_google_protobuf//types/known/wrapperspb:go_default_library", ], ) + +exports_files( + ["templates/authoring.tmpl"], + visibility = ["//visibility:public"], +) diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/async/BUILD.bazel b/tests/e2e/vendor/github.com/google/cel-go/cel/async/BUILD.bazel new file mode 100644 index 0000000000..85b28bcdb5 --- /dev/null +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/async/BUILD.bazel @@ -0,0 +1,35 @@ +load("@io_bazel_rules_go//go:def.bzl", "go_library", "go_test") + +package( + licenses = ["notice"], # Apache 2.0 +) + +go_library( + name = "go_default_library", + srcs = [ + "async.go", + ], + importpath = "github.com/google/cel-go/cel/async", + visibility = ["//visibility:public"], + deps = [ + "//common/decls:go_default_library", + "//common/functions:go_default_library", + "//common/types:go_default_library", + "//common/types/ref:go_default_library", + "//interpreter:go_default_library", + ], +) + +go_test( + name = "go_default_test", + srcs = [ + "async_test.go", + ], + deps = [ + ":go_default_library", + "//common/decls:go_default_library", + "//common/functions:go_default_library", + "//common/types:go_default_library", + "//common/types/ref:go_default_library", + ], +) diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/async/async.go b/tests/e2e/vendor/github.com/google/cel-go/cel/async/async.go new file mode 100644 index 0000000000..a011114bdc --- /dev/null +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/async/async.go @@ -0,0 +1,235 @@ +// Copyright 2026 Google LLC +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Package async provides helpers for configuring and executing asynchronous CEL functions, +// including drain strategies, retry, timeout, concurrency limiting, and caching wrappers. +package async + +import ( + "context" + "errors" + "time" + + "github.com/google/cel-go/common/decls" + "github.com/google/cel-go/common/functions" + "github.com/google/cel-go/common/types" + "github.com/google/cel-go/common/types/ref" + "github.com/google/cel-go/interpreter" +) + +// Call describes a pending or completed asynchronous function call. +// This interface exposes a safe, read-only view of the internal interpreter state. +type Call = interpreter.AsyncCall + +// Observer provides callbacks for monitoring the lifecycle of asynchronous function calls. +// +// Implementations must be safe for concurrent use: the start and finish callbacks run on different +// goroutines, and finish callbacks for distinct calls may run concurrently. See +// interpreter.AsyncObserver for details. +type Observer = interpreter.AsyncObserver + +// BlockingOp is a blocking asynchronous function operation. +type BlockingOp = functions.BlockingAsyncOp + +// DrainAction dictates what ConcurrentEval should do after inspecting completions. +type DrainAction struct { + // Reevaluate indicates that the AST should be re-evaluated immediately. + // If true, WaitDuration is ignored. + Reevaluate bool + // WaitDuration indicates how long the evaluator should wait for additional + // completions before deciding to re-evaluate. A duration of 0 means wait + // indefinitely (block on the next completion). + WaitDuration time.Duration +} + +// DrainStrategy controls when ConcurrentEval re-evaluates after async completions. +// +// The evaluator consults the strategy each time a completion is received. +type DrainStrategy interface { + // NextAction evaluates the current state of asynchronous evaluation and + // determines the next step. + // + // - completed: The set of completions accumulated in the current batch. + // - active: The number of async calls currently launched but unresolved. + NextAction(completed []Call, active int) DrainAction +} + +// DrainNone returns a strategy that re-evaluates after every single completion. +// This is the default strategy. +func DrainNone() DrainStrategy { + return drainNone{} +} + +type drainNone struct{} + +func (drainNone) NextAction(completed []Call, active int) DrainAction { + return DrainAction{Reevaluate: active == 0 || len(completed) > 0} +} + +// DrainReady returns a strategy that waits for a short duration after the first +// completion to batch any other functions that complete at roughly the same time. +func DrainReady(debounce time.Duration) DrainStrategy { + return drainReady{debounce: debounce} +} + +type drainReady struct { + debounce time.Duration +} + +func (d drainReady) NextAction(completed []Call, active int) DrainAction { + if active == 0 { + return DrainAction{Reevaluate: true} // Nothing left to wait for + } + if len(completed) == 0 { + return DrainAction{Reevaluate: false, WaitDuration: 0} // Wait indefinitely for first + } + return DrainAction{Reevaluate: false, WaitDuration: d.debounce} // Wait for debounce period +} + +// DrainAll returns a strategy that waits for all currently pending calls to +// complete before re-evaluating. +// +// Note: This strategy is optimal for independent async calls, but will over-wait +// if some calls depend on the results of others. +func DrainAll() DrainStrategy { + return drainAll{} +} + +type drainAll struct{} + +func (drainAll) NextAction(completed []Call, active int) DrainAction { + return DrainAction{Reevaluate: active == 0} +} + +// Timeout wraps a BlockingAsyncOp with a per-call timeout. +// +// The timeout is enforced even when the wrapped function ignores its context: the function runs on +// its own goroutine and Timeout selects on the deadline, returning a timeout error when it +// fires. A function that ignores cancellation cannot be forcibly stopped (Go cannot kill a +// goroutine), so its goroutine continues running in the background until it returns on its own; +// only its result is abandoned. This is the recommended way to bound functions that may hang or +// are not under the caller's control. The extra goroutine is incurred only by Timeout-wrapped +// calls, not by async evaluation in general. +func Timeout(fn functions.BlockingAsyncOp, timeout time.Duration) functions.BlockingAsyncOp { + return func(ctx context.Context, args ...ref.Val) ref.Val { + tCtx, cancel := context.WithTimeout(ctx, timeout) + defer cancel() + resCh := make(chan ref.Val, 1) + go func() { resCh <- fn(tCtx, args...) }() + select { + case res := <-resCh: + return res + case <-tCtx.Done(): + return types.NewErr("operation timed out after %v: %v", timeout, tCtx.Err()) + } + } +} + +// TimeoutBinding wraps a BlockingAsyncOp with a per-call timeout and returns an OverloadOpt. +func TimeoutBinding(fn functions.BlockingAsyncOp, timeout time.Duration) decls.OverloadOpt { + return decls.AsyncBinding(Timeout(fn, timeout)) +} + +// RetryOption configures the behavior of RetryBinding. +type RetryOption func(*retryConfig) + +type retryConfig struct { + maxAttempts int + backoff time.Duration +} + +// RetryAttempts sets the maximum number of attempts (including the first one). +func RetryAttempts(attempts int) RetryOption { + return func(c *retryConfig) { + c.maxAttempts = attempts + } +} + +// RetryBackoff sets the fixed backoff duration between attempts. +func RetryBackoff(backoff time.Duration) RetryOption { + return func(c *retryConfig) { + c.backoff = backoff + } +} + +// RetryableError is an interface that errors can implement to signal whether they are retryable. +type RetryableError interface { + error + IsRetryable() bool +} + +// Retry wraps a BlockingAsyncOp with a retry policy. +// It will retry the operation if it returns a types.Err that wraps a RetryableError returning true for IsRetryable. +func Retry(fn functions.BlockingAsyncOp, opts ...RetryOption) functions.BlockingAsyncOp { + config := &retryConfig{ + maxAttempts: 3, + backoff: 100 * time.Millisecond, + } + for _, opt := range opts { + opt(config) + } + + return func(ctx context.Context, args ...ref.Val) ref.Val { + var lastErr ref.Val + var backoff *time.Timer + defer func() { + if backoff != nil { + backoff.Stop() + } + }() + for i := 0; i < config.maxAttempts; i++ { + if i > 0 { + // Reuse a single timer across attempts and stop it on cancellation so the + // pending timer is not left to fire after the call returns. + if backoff == nil { + backoff = time.NewTimer(config.backoff) + } else { + backoff.Reset(config.backoff) + } + select { + case <-backoff.C: + case <-ctx.Done(): + backoff.Stop() + return types.NewErr("operation cancelled during retry: %v", ctx.Err()) + } + } + + res := fn(ctx, args...) + if !types.IsError(res) { + return res + } + + err := res.(*types.Err) + lastErr = res + + if !isRetryable(err) { + return res + } + } + return lastErr + } +} + +// RetryBinding wraps a BlockingAsyncOp with a retry policy and returns an OverloadOpt. +func RetryBinding(fn functions.BlockingAsyncOp, opts ...RetryOption) decls.OverloadOpt { + return decls.AsyncBinding(Retry(fn, opts...)) +} + +func isRetryable(err *types.Err) bool { + var re RetryableError + if errors.As(err, &re) { + return re.IsRetryable() + } + return false +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/cel.go b/tests/e2e/vendor/github.com/google/cel-go/cel/cel.go index eb5a9f4cc5..9ba957a7e3 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/cel.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/cel.go @@ -17,3 +17,24 @@ // CEL is a non-Turing complete expression language designed to parse, check, and evaluate // expressions against user-defined environments. package cel + +// Compile is a convenience function that constructs a new Env using the provided EnvOption values, +// compiles the expression string, and plans an executable Program. +// +// Warning: Creating a new environment for every compilation is expensive. Environment setup should be done once +// and shared across expression compilations when the options remain the same. +func Compile(expression string, opts ...EnvOption) (Program, error) { + env, err := NewEnv(opts...) + if err != nil { + return nil, err + } + ast, iss := env.Compile(expression) + if iss.Err() != nil { + return nil, iss.Err() + } + prg, err := env.Program(ast, EvalOptions(OptOptimize)) + if err != nil { + return nil, err + } + return prg, nil +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/decls.go b/tests/e2e/vendor/github.com/google/cel-go/cel/decls.go index 4d4873bd6b..c7c23fd51b 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/decls.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/decls.go @@ -346,6 +346,32 @@ func LateFunctionBinding() OverloadOpt { return decls.LateFunctionBinding() } +// AsyncBinding provides the implementation of an asynchronous overload. The provided function +// is called in its own goroutine with the provided context. The function should block until +// the result is available, and the framework manages goroutine and channel lifecycle. +// +// This follows the same pattern used by gRPC-Go and other major Go frameworks where user +// code is synchronous and the framework manages concurrency. +// +// Context contract: the function MUST return promptly once its context is cancelled. The +// framework cannot forcibly terminate the goroutine running the function, so a function that +// ignores cancellation will leak its goroutine and hold a concurrency slot (see +// AsyncMaxConcurrency) until it returns on its own. For functions that may hang or that are not +// under your control, wrap them with async.TimeoutBinding to bound their runtime. +func AsyncBinding(fn functions.BlockingAsyncOp) OverloadOpt { + return decls.AsyncBinding(fn) +} + +// SingletonAsyncBinding creates a singleton async function definition from a blocking function, +// to be used with all function overloads. The provided function is called in its own goroutine +// with the provided context. +// +// Note, this approach works well if operand is expected to have a specific trait which it implements, +// e.g. traits.ContainerType. Otherwise, prefer per-overload async bindings. +func SingletonAsyncBinding(fn functions.BlockingAsyncOp, traits ...int) FunctionOpt { + return decls.SingletonAsyncBinding(fn, traits...) +} + // OverloadIsNonStrict enables the function to be called with error and unknown argument values. // // Note: do not use this option unless absoluately necessary as it should be an uncommon feature. diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/env.go b/tests/e2e/vendor/github.com/google/cel-go/cel/env.go index bb3014464e..784790ba2c 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/env.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/env.go @@ -18,6 +18,8 @@ import ( "errors" "fmt" "math" + "slices" + "strings" "sync" "github.com/google/cel-go/checker" @@ -27,6 +29,7 @@ import ( "github.com/google/cel-go/common/containers" "github.com/google/cel-go/common/decls" "github.com/google/cel-go/common/env" + "github.com/google/cel-go/common/functions" "github.com/google/cel-go/common/stdlib" "github.com/google/cel-go/common/types" "github.com/google/cel-go/common/types/ref" @@ -45,6 +48,10 @@ type Source = common.Source type Ast struct { source Source impl *celast.AST + // loadErr captures an error detected while loading the AST (e.g. an over-deep AST ingested via + // ParsedExprToAst / CheckedExprToAst) so it can be surfaced when the Ast is checked or planned + // instead of recursing into the checker or planner on adversarially deep input. + loadErr error } // NativeRep converts the AST to a Go-native representation. @@ -138,10 +145,14 @@ type Env struct { provider types.Provider features map[int]bool appliedFeatures map[int]bool + limits map[limitID]int libraries map[string]SingletonLibrary validators []ASTValidator costOptions []checker.CostOption + funcBindOnce sync.Once + functionBindings []*functions.Overload + // Internal parser representation prsr *parser.Parser prsrOpts []parser.Option @@ -177,6 +188,16 @@ func (e *Env) ToConfig(name string) (*env.Config, error) { conf.AddImports(env.NewImport(typeName)) } + // Serialize features + for featID, enabled := range e.features { + featName, found := featureNameByID(featID) + if !found { + // If the feature isn't named, it isn't intended to be publicly exposed + continue + } + conf.AddFeatures(env.NewFeature(featName, enabled)) + } + libOverloads := map[string][]string{} for libName, lib := range e.libraries { // Track the options which have been configured by a library and @@ -237,7 +258,7 @@ func (e *Env) ToConfig(name string) (*env.Config, error) { fields := e.contextProto.Fields() for i := 0; i < fields.Len(); i++ { field := fields.Get(i) - variable, err := fieldToVariable(field) + variable, err := fieldToVariable(field, e.HasFeature(featureJSONFieldNames)) if err != nil { return nil, fmt.Errorf("could not serialize context field variable %q, reason: %w", field.FullName(), err) } @@ -272,16 +293,45 @@ func (e *Env) ToConfig(name string) (*env.Config, error) { } } - // Serialize features - for featID, enabled := range e.features { - featName, found := featureNameByID(featID) - if !found { - // If the feature isn't named, it isn't intended to be publicly exposed + for id, val := range e.limits { + limitName, found := limitNameByID(id) + if !found || val == 0 { + // skip if explicitly defaulted or not supported in config continue } - conf.AddFeatures(env.NewFeature(featName, enabled)) + conf.AddLimits(env.NewLimit(limitName, val)) } + // Sort repeated fields in config where reasonable to make the export + // stable. + slices.SortFunc(conf.Imports, func(a *env.Import, b *env.Import) int { + return strings.Compare(a.Name, b.Name) + }) + + slices.SortFunc(conf.Extensions, func(a *env.Extension, b *env.Extension) int { + return strings.Compare(a.Name, b.Name) + }) + + slices.SortFunc(conf.Variables, func(a *env.Variable, b *env.Variable) int { + return strings.Compare(a.Name, b.Name) + }) + + slices.SortFunc(conf.Functions, func(a *env.Function, b *env.Function) int { + return strings.Compare(a.Name, b.Name) + }) + + slices.SortFunc(conf.Validators, func(a *env.Validator, b *env.Validator) int { + return strings.Compare(a.Name, b.Name) + }) + + slices.SortFunc(conf.Features, func(a *env.Feature, b *env.Feature) int { + return strings.Compare(a.Name, b.Name) + }) + + slices.SortFunc(conf.Limits, func(a *env.Limit, b *env.Limit) int { + return strings.Compare(a.Name, b.Name) + }) + return conf, nil } @@ -315,23 +365,25 @@ func NewEnv(opts ...EnvOption) (*Env, error) { // See the EnvOption helper functions for the options that can be used to configure the // environment. func NewCustomEnv(opts ...EnvOption) (*Env, error) { - registry, err := types.NewRegistry() + registry, err := types.NewProtoRegistry() if err != nil { return nil, err } return (&Env{ - variables: []*decls.VariableDecl{}, - functions: map[string]*decls.FunctionDecl{}, - macros: []parser.Macro{}, - Container: containers.DefaultContainer, - adapter: registry, - provider: registry, - features: map[int]bool{}, - appliedFeatures: map[int]bool{}, - libraries: map[string]SingletonLibrary{}, - validators: []ASTValidator{}, - progOpts: []ProgramOption{}, - costOptions: []checker.CostOption{}, + variables: []*decls.VariableDecl{}, + functions: map[string]*decls.FunctionDecl{}, + functionBindings: []*functions.Overload{}, + macros: []parser.Macro{}, + Container: containers.DefaultContainer, + adapter: registry, + provider: registry, + features: map[int]bool{}, + appliedFeatures: map[int]bool{}, + limits: map[limitID]int{}, + libraries: map[string]SingletonLibrary{}, + validators: []ASTValidator{}, + progOpts: []ProgramOption{}, + costOptions: []checker.CostOption{}, }).configure(opts) } @@ -347,6 +399,20 @@ func NewCustomEnv(opts ...EnvOption) (*Env, error) { // It is possible to have both non-nil Ast and Issues values returned from this call: however, // the mere presence of an Ast does not imply that it is valid for use. func (e *Env) Check(ast *Ast) (*Ast, *Issues) { + // Surface any error recorded while the Ast was loaded (e.g. an over-deep AST rejected by + // ParsedExprToAst / CheckedExprToAst) before recursing into the type checker on it. + if ast != nil && ast.loadErr != nil { + errs := common.NewErrors(ast.Source()) + errs.ReportErrorString(common.NoLocation, ast.loadErr.Error()) + return nil, NewIssuesWithSourceInfo(errs, ast.NativeRep().SourceInfo()) + } + if nodeLimit := e.configuredExpressionNodeLimit(); nodeLimit > 0 && ast != nil && ast.NativeRep() != nil { + if count := celast.NodeCount(ast.NativeRep()); count > nodeLimit { + errs := common.NewErrors(ast.Source()) + errs.ReportErrorString(common.NoLocation, fmt.Sprintf("expression node count exceeds limit: count %d, limit %d", count, nodeLimit)) + return nil, NewIssuesWithSourceInfo(errs, ast.NativeRep().SourceInfo()) + } + } // Construct the internal checker env, erroring if there is an issue adding the declarations. chk, err := e.initChecker() if err != nil { @@ -388,6 +454,24 @@ func (e *Env) Check(ast *Ast) (*Ast, *Issues) { return ast, nil } +// configuredExpressionSizeLimit returns the effective expression size code point limit. +// A zero value means "use the parser default". +func (e *Env) configuredExpressionSizeLimit() int { + if l := e.limits[limitCodePointSize]; l != 0 { + return l + } + return 100_000 +} + +// configuredExpressionNodeLimit returns the effective expression node limit. +// A zero value means "use default". +func (e *Env) configuredExpressionNodeLimit() int { + if l := e.limits[limitExpressionNodeCount]; l != 0 { + return l + } + return 100_000 +} + // Compile combines the Parse and Check phases CEL program compilation to produce an Ast and // associated issues. // @@ -397,7 +481,11 @@ func (e *Env) Check(ast *Ast) (*Ast, *Issues) { // // Note, for parse-only uses of CEL use Parse. func (e *Env) Compile(txt string) (*Ast, *Issues) { - return e.CompileSource(common.NewTextSource(txt)) + src, err := common.NewTextSourceWithLimit(txt, e.configuredExpressionSizeLimit()) + if err != nil { + return nil, ErrorAsIssues(err) + } + return e.CompileSource(src) } // CompileSource combines the Parse and Check phases CEL program compilation to produce an Ast and @@ -492,6 +580,10 @@ func (e *Env) Extend(opts ...EnvOption) (*Env, error) { for k, v := range e.appliedFeatures { appliedFeaturesCopy[k] = v } + limitsCopy := make(map[limitID]int, len(e.limits)) + for k, v := range e.limits { + limitsCopy[k] = v + } funcsCopy := make(map[string]*decls.FunctionDecl, len(e.functions)) for k, v := range e.functions { funcsCopy[k] = v @@ -502,6 +594,7 @@ func (e *Env) Extend(opts ...EnvOption) (*Env, error) { } validatorsCopy := make([]ASTValidator, len(e.validators)) copy(validatorsCopy, e.validators) + costOptsCopy := make([]checker.CostOption, len(e.costOptions)) copy(costOptsCopy, e.costOptions) @@ -514,6 +607,7 @@ func (e *Env) Extend(opts ...EnvOption) (*Env, error) { progOpts: progOptsCopy, adapter: adapter, features: featuresCopy, + limits: limitsCopy, appliedFeatures: appliedFeaturesCopy, libraries: libsCopy, validators: validatorsCopy, @@ -596,7 +690,10 @@ func (e *Env) Validators() []ASTValidator { // This form of Parse creates a Source value for the input `txt` and forwards to the // ParseSource method. func (e *Env) Parse(txt string) (*Ast, *Issues) { - src := common.NewTextSource(txt) + src, err := common.NewTextSourceWithLimit(txt, e.configuredExpressionSizeLimit()) + if err != nil { + return nil, ErrorAsIssues(err) + } return e.ParseSource(src) } @@ -617,6 +714,12 @@ func (e *Env) ParseSource(src Source) (*Ast, *Issues) { // Program generates an evaluable instance of the Ast within the environment (Env). func (e *Env) Program(ast *Ast, opts ...ProgramOption) (Program, error) { + // Surface any error recorded while the Ast was loaded (e.g. an over-deep AST rejected by + // ParsedExprToAst / CheckedExprToAst) rather than recursing into the planner on it. This is a + // cheap field read; the depth traversal itself runs once at conversion time, not here. + if ast != nil && ast.loadErr != nil { + return nil, ast.loadErr + } return e.PlanProgram(ast.NativeRep(), opts...) } @@ -780,11 +883,35 @@ func (e *Env) configure(opts []EnvOption) (*Env, error) { if e.HasFeature(featureIdentEscapeSyntax) { prsrOpts = append(prsrOpts, parser.EnableIdentEscapeSyntax(true)) } + if l := e.limits[limitParseErrorRecovery]; l != 0 { + prsrOpts = append(prsrOpts, parser.ErrorRecoveryLimit(l)) + } + if l := e.limits[limitCodePointSize]; l != 0 { + prsrOpts = append(prsrOpts, parser.ExpressionSizeCodePointLimit(l)) + } + if l := e.limits[limitParseRecursionDepth]; l != 0 { + prsrOpts = append(prsrOpts, parser.MaxRecursionDepth(l)) + } + if l := e.limits[limitExpressionNodeCount]; l != 0 { + prsrOpts = append(prsrOpts, parser.MaxExpressionNodeCount(l)) + } e.prsr, err = parser.NewParser(prsrOpts...) if err != nil { return nil, err } + // Enable JSON field names is using a proto-based *types.Registry + if e.HasFeature(featureJSONFieldNames) { + reg, isReg := e.provider.(*types.Registry) + if !isReg { + return nil, fmt.Errorf("JSONFieldNames() option is only compatible with *types.Registry providers") + } + err := reg.WithJSONFieldNames(true) + if err != nil { + return nil, err + } + } + // Ensure that the checker init happens eagerly rather than lazily. if e.HasFeature(featureEagerlyValidateDeclarations) { _, err := e.initChecker() @@ -803,6 +930,8 @@ func (e *Env) initChecker() (*checker.Env, error) { chkOpts = append(chkOpts, checker.CrossTypeNumericComparisons( e.HasFeature(featureCrossTypeNumericComparisons))) + chkOpts = append(chkOpts, + checker.JSONFieldNames(e.HasFeature(featureJSONFieldNames))) ce, err := checker.NewEnv(e.Container, e.provider, chkOpts...) if err != nil { @@ -872,6 +1001,16 @@ type Issues struct { info *celast.SourceInfo } +// ErrorAsIssues wraps a Golang error into a CEL common error and issue set. +// +// This is a convenience method for early returning from an expression validation call path due to +// internal state or configuration which is unrelated to the source being validated. +func ErrorAsIssues(err error) *Issues { + errs := common.NewErrors(common.NewTextSource("")) + errs.ReportErrorString(common.NoLocation, err.Error()) + return NewIssues(errs) +} + // NewIssues returns an Issues struct from a common.Errors object. func NewIssues(errs *common.Errors) *Issues { return NewIssuesWithSourceInfo(errs, nil) @@ -980,9 +1119,10 @@ func (p *interopCELTypeProvider) FindStructFieldType(structType, fieldName strin return nil, false } return &types.FieldType{ - Type: t, - IsSet: ft.IsSet, - GetFrom: ft.GetFrom, + Type: t, + IsSet: ft.IsSet, + GetFrom: ft.GetFrom, + IsJSONField: ft.IsJSONField, }, true } return nil, false diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/fieldpaths.go b/tests/e2e/vendor/github.com/google/cel-go/cel/fieldpaths.go new file mode 100644 index 0000000000..570fce3a46 --- /dev/null +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/fieldpaths.go @@ -0,0 +1,163 @@ +package cel + +import ( + "slices" + "strings" + + "github.com/google/cel-go/common" + "github.com/google/cel-go/common/types" +) + +// fieldPath represents a selection path to a field from a variable in a CEL environment. +type fieldPath struct { + celType *Type + // path represents the selection path to the field. + path string + description string + isLeaf bool +} + +// Documentation implements the Documentor interface. +func (f *fieldPath) Documentation() *common.Doc { + return common.NewFieldDoc(f.path, f.celType.String(), f.description) +} + +type documentationProvider interface { + // FindStructFieldDescription returns documentation for a field if available. + // Returns false if the field could not be found. + FindStructFieldDescription(typeName, fieldName string) (string, bool) +} + +type backtrack struct { + // provider used to resolve types. + provider types.Provider + // paths of fields that have been visited along the path. + path []string + // types of fields that have been visited along the path. used to avoid cycles. + types []*Type +} + +func (b *backtrack) push(pathStep string, celType *Type) { + b.path = append(b.path, pathStep) + b.types = append(b.types, celType) +} + +func (b *backtrack) pop() { + b.path = b.path[:len(b.path)-1] + b.types = b.types[:len(b.types)-1] +} + +func formatPath(path []string) string { + var buffer strings.Builder + for i, p := range path { + if i == 0 { + buffer.WriteString(p) + continue + } + if strings.HasPrefix(p, "[") { + buffer.WriteString(p) + continue + } + buffer.WriteString(".") + buffer.WriteString(p) + } + return buffer.String() +} + +func (b *backtrack) expandFieldPaths(celType *Type, paths []*fieldPath) []*fieldPath { + if slices.ContainsFunc(b.types[:len(b.types)-1], func(t *Type) bool { return t.String() == celType.String() }) { + // Cycle detected, so stop expanding. + paths[len(paths)-1].isLeaf = false + return paths + } + switch celType.Kind() { + case types.StructKind: + fields, ok := b.provider.FindStructFieldNames(celType.String()) + if !ok { + // Caller added this type to the path, so it must be a leaf. + paths[len(paths)-1].isLeaf = true + return paths + } + for _, field := range fields { + fieldType, ok := b.provider.FindStructFieldType(celType.String(), field) + if !ok { + // Field not found, either hidden or an error. + continue + } + b.push(field, celType) + description := "" + if docProvider, ok := b.provider.(documentationProvider); ok { + description, _ = docProvider.FindStructFieldDescription(celType.String(), field) + } + path := &fieldPath{ + celType: fieldType.Type, + path: formatPath(b.path), + description: description, + isLeaf: false, + } + paths = append(paths, path) + paths = b.expandFieldPaths(fieldType.Type, paths) + b.pop() + } + return paths + case types.MapKind: + if len(celType.Parameters()) != 2 { + // dynamic map, so treat as a leaf. + paths[len(paths)-1].isLeaf = true + return paths + } + mapKeyType := celType.Parameters()[0] + mapValueType := celType.Parameters()[1] + // Add a placeholder for the map key kind (the zero value). + keyIdentifier := "" + switch mapKeyType.Kind() { + case types.StringKind: + keyIdentifier = "[\"\"]" + case types.IntKind: + keyIdentifier = "[0]" + case types.UintKind: + keyIdentifier = "[0u]" + case types.BoolKind: + keyIdentifier = "[false]" + default: + // Caller added this type to the path, so it must be a leaf. + paths[len(paths)-1].isLeaf = true + return paths + } + b.push(keyIdentifier, mapValueType) + defer b.pop() + return b.expandFieldPaths(mapValueType, paths) + case types.ListKind: + if len(celType.Parameters()) != 1 { + // dynamic list, so treat as a leaf. + paths[len(paths)-1].isLeaf = true + return paths + } + listElemType := celType.Parameters()[0] + b.push("[0]", listElemType) + defer b.pop() + return b.expandFieldPaths(listElemType, paths) + default: + paths[len(paths)-1].isLeaf = true + } + + return paths +} + +// fieldPathsForType expands the reachable fields from the given root identifier. +func fieldPathsForType(provider types.Provider, identifier string, celType *Type) []*fieldPath { + b := &backtrack{ + provider: provider, + path: []string{identifier}, + types: []*Type{celType}, + } + paths := []*fieldPath{ + { + celType: celType, + path: identifier, + isLeaf: false, + }, + } + + return b.expandFieldPaths(celType, paths) +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/folding.go b/tests/e2e/vendor/github.com/google/cel-go/cel/folding.go index 40d843ecea..5525f0805e 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/folding.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/folding.go @@ -15,6 +15,8 @@ package cel import ( + "context" + "errors" "fmt" "github.com/google/cel-go/common/ast" @@ -38,7 +40,7 @@ func MaxConstantFoldIterations(limit int) ConstantFoldingOption { } } -// Adds an Activation which provides known values for the folding evaluator +// FoldKnownValues adds an Activation which provides known values for the folding evaluator // // Any values the activation provides will be used by the constant folder and turned into // literals in the AST. @@ -93,18 +95,18 @@ func (opt *constantFoldingOptimizer) Optimize(ctx *OptimizerContext, a *ast.AST) for _, fold := range foldableExprs { // If the expression could be folded because it's a non-strict call, and the // branches are pruned, continue to the next fold. - if fold.Kind() == ast.CallKind && maybePruneBranches(ctx, fold) { + if fold.Kind() == ast.CallKind && maybePruneBranches(ctx, a, fold) { continue } // Late-bound function calls cannot be folded. - if fold.Kind() == ast.CallKind && isLateBoundFunctionCall(ctx, a, fold) { + if fold.Kind() == ast.CallKind && isLateBoundFunctionCall(ctx, fold) { continue } // Otherwise, assume all context is needed to evaluate the expression. err := opt.tryFold(ctx, a, fold) - // Ignore errors for identifiers, since there is no guarantee that the environment + // Ignore errors for identifiers or subexpressions that cannot be folded, since there is no guarantee that the environment // has a value for them. - if err != nil && fold.Kind() != ast.IdentKind { + if err != nil && fold.Kind() != ast.IdentKind && !errors.Is(err, errCannotFold) { ctx.ReportErrorAtID(fold.ID(), "constant-folding evaluation failed: %v", err.Error()) return a } @@ -142,24 +144,19 @@ func (opt *constantFoldingOptimizer) Optimize(ctx *OptimizerContext, a *ast.AST) return a } +var errCannotFold = errors.New("subexpression cannot be folded") + // tryFold attempts to evaluate a sub-expression to a literal. // // If the evaluation succeeds, the input expr value will be modified to become a literal, otherwise // the method will return an error. func (opt *constantFoldingOptimizer) tryFold(ctx *OptimizerContext, a *ast.AST, expr ast.Expr) error { - // Assume all context is needed to evaluate the expression. - subAST := &Ast{ - impl: ast.NewCheckedAST(ast.NewAST(expr, a.SourceInfo()), a.TypeMap(), a.ReferenceMap()), - } - prg, err := ctx.Program(subAST) - if err != nil { - return err - } activation := opt.knownValues if activation == nil { activation = NoVars() } - out, _, err := prg.Eval(activation) + navExpr := expr.(ast.NavigableExpr) + out, err := evaluateExpr(ctx, a, navExpr, activation) if err != nil { return err } @@ -168,7 +165,31 @@ func (opt *constantFoldingOptimizer) tryFold(ctx *OptimizerContext, a *ast.AST, return nil } -func isLateBoundFunctionCall(ctx *OptimizerContext, a *ast.AST, expr ast.Expr) bool { +func evaluateExpr(ctx *OptimizerContext, a *ast.AST, navigableExpr ast.NavigableExpr, activation Activation) (ref.Val, error) { + partialActivation, err := ctx.PartialVars(activation) + if err != nil { + return nil, err + } + subAST := &Ast{ + impl: ast.NewCheckedAST(ast.NewAST(navigableExpr, a.SourceInfo()), a.TypeMap(), a.ReferenceMap()), + } + prg, err := ctx.Program(subAST) + if err != nil { + return nil, err + } + // Folding will not attempt to call async functions which are all marked as late-bound, + // but the presence of such functions requires the use of `ConcurrentEval` in order to + // avoid an early return error which blocks async functions from running in `Eval` and + // `ContextEval` call paths. + resCh := prg.ConcurrentEval(context.Background(), partialActivation) + res := <-resCh + if res.Err != nil || types.IsUnknown(res.Val) { + return nil, errCannotFold + } + return res.Val, nil +} + +func isLateBoundFunctionCall(ctx *OptimizerContext, expr ast.Expr) bool { call := expr.AsCall() function := ctx.Functions()[call.FunctionName()] if function == nil { @@ -181,12 +202,12 @@ func isLateBoundFunctionCall(ctx *OptimizerContext, a *ast.AST, expr ast.Expr) b // a branch can be removed. Evaluation will naturally prune logical and / or calls, // but conditional will not be pruned cleanly, so this is one small area where the // constant folding step reimplements a portion of the evaluator. -func maybePruneBranches(ctx *OptimizerContext, expr ast.NavigableExpr) bool { +func maybePruneBranches(ctx *OptimizerContext, a *ast.AST, expr ast.NavigableExpr) bool { call := expr.AsCall() args := call.Args() switch call.FunctionName() { case operators.LogicalAnd, operators.LogicalOr: - return maybeShortcircuitLogic(ctx, call.FunctionName(), args, expr) + return maybeShortcircuitLogic(ctx, a, call.FunctionName(), args, expr) case operators.Conditional: cond := args[0] truthy := args[1] @@ -207,11 +228,17 @@ func maybePruneBranches(ctx *OptimizerContext, expr ast.NavigableExpr) bool { return true } needle := args[0] - if needle.Kind() == ast.LiteralKind && haystack.Kind() == ast.ListKind { - needleValue := needle.AsLiteral() + if (needle.Kind() == ast.LiteralKind || isSelfEqualIdent(needle)) && haystack.Kind() == ast.ListKind { + needleIsLit := needle.Kind() == ast.LiteralKind + needleLitVal := needle.AsLiteral() + needleIdentVal := needle.AsIdent() list := haystack.AsList() - for _, e := range list.Elements() { - if e.Kind() == ast.LiteralKind && e.AsLiteral().Equal(needleValue) == types.True { + for _, elem := range list.Elements() { + if needleIsLit && elem.Kind() == ast.LiteralKind && elem.AsLiteral().Equal(needleLitVal) == types.True { + ctx.UpdateExpr(expr, ctx.NewLiteral(types.True)) + return true + } + if !needleIsLit && elem.Kind() == ast.IdentKind && elem.AsIdent() == needleIdentVal { ctx.UpdateExpr(expr, ctx.NewLiteral(types.True)) return true } @@ -221,7 +248,7 @@ func maybePruneBranches(ctx *OptimizerContext, expr ast.NavigableExpr) bool { return false } -func maybeShortcircuitLogic(ctx *OptimizerContext, function string, args []ast.Expr, expr ast.NavigableExpr) bool { +func maybeShortcircuitLogic(ctx *OptimizerContext, a *ast.AST, function string, args []ast.Expr, expr ast.NavigableExpr) bool { shortcircuit := types.False skip := types.True if function == operators.LogicalOr { @@ -244,10 +271,14 @@ func maybeShortcircuitLogic(ctx *OptimizerContext, function string, args []ast.E } if len(newArgs) == 0 { newArgs = append(newArgs, args[0]) - ctx.UpdateExpr(expr, newArgs[0]) - return true + } + if len(newArgs) == len(args) { + return false } if len(newArgs) == 1 { + if !isBoolType(a, newArgs[0]) { + return false + } ctx.UpdateExpr(expr, newArgs[0]) return true } @@ -255,6 +286,16 @@ func maybeShortcircuitLogic(ctx *OptimizerContext, function string, args []ast.E return true } +func isBoolType(a *ast.AST, e ast.Expr) bool { + if a != nil && a.GetType(e.ID()) == types.BoolType { + return true + } + if e.Kind() == ast.LiteralKind && e.AsLiteral().Type() == types.BoolType { + return true + } + return false +} + // pruneOptionalElements works from the bottom up to resolve optional elements within // aggregate literals. // @@ -285,9 +326,9 @@ func pruneOptionalListElements(ctx *OptimizerContext, e ast.Expr) { updatedElems := []ast.Expr{} updatedIndices := []int32{} newOptIndex := -1 - for _, e := range elems { + for i, e := range elems { newOptIndex++ - if !l.IsOptional(int32(newOptIndex)) { + if !l.IsOptional(int32(i)) { updatedElems = append(updatedElems, e) continue } @@ -501,7 +542,7 @@ func (opt *constantFoldingOptimizer) constantExprMatcher(ctx *OptimizerContext, sel := e.AsSelect() // guaranteed to be a navigable value return constantMatcher(sel.Operand().(ast.NavigableExpr)) case ast.IdentKind: - return opt.knownValues != nil && a.ReferenceMap()[e.ID()] != nil + return opt.knownValues != nil && a.ReferenceMap()[e.ID()] != nil && !hasComprehensionVar(e) case ast.ComprehensionKind: if isNestedComprehension(e) { return false @@ -513,12 +554,15 @@ func (opt *constantFoldingOptimizer) constantExprMatcher(ctx *OptimizerContext, nested := e.AsComprehension() vars[nested.AccuVar()] = true vars[nested.IterVar()] = true + if nested.IterVar2() != "" { + vars[nested.IterVar2()] = true + } } if e.Kind() == ast.IdentKind && !vars[e.AsIdent()] { constantExprs = false } // Late-bound function calls cannot be folded. - if e.Kind() == ast.CallKind && isLateBoundFunctionCall(ctx, a, e) { + if e.Kind() == ast.CallKind && isLateBoundFunctionCall(ctx, e) { constantExprs = false } }) @@ -554,17 +598,33 @@ func constantCallMatcher(e ast.NavigableExpr) bool { return true } } + if fnName == operators.Equals || fnName == operators.NotEquals { + if hasComprehensionVar(e) { + return false + } + if isExprConstantOfKind(children[0], types.BoolType) || isExprConstantOfKind(children[1], types.BoolType) { + return true + } + } if fnName == operators.In { + if hasComprehensionVar(e) { + return false + } haystack := children[1] if haystack.Kind() == ast.ListKind && haystack.AsList().Size() == 0 { return true } needle := children[0] - if needle.Kind() == ast.LiteralKind && haystack.Kind() == ast.ListKind { - needleValue := needle.AsLiteral() + if (needle.Kind() == ast.LiteralKind || isSelfEqualIdent(needle)) && haystack.Kind() == ast.ListKind { + needleIsLit := needle.Kind() == ast.LiteralKind + needleLitVal := needle.AsLiteral() + needleIdentVal := needle.AsIdent() list := haystack.AsList() - for _, e := range list.Elements() { - if e.Kind() == ast.LiteralKind && e.AsLiteral().Equal(needleValue) == types.True { + for _, elem := range list.Elements() { + if needleIsLit && elem.Kind() == ast.LiteralKind && elem.AsLiteral().Equal(needleLitVal) == types.True { + return true + } + if !needleIsLit && elem.Kind() == ast.IdentKind && elem.AsIdent() == needleIdentVal { return true } } @@ -579,6 +639,74 @@ func constantCallMatcher(e ast.NavigableExpr) bool { return true } +// isSelfEqualIdent indicates whether the expression is an identifier whose static type +// guarantees that its runtime value is equal to itself. +// +// Matching an identifier against a list element by name only proves list membership when the +// value the name resolves to is self-equal. A double may be NaN, which is not equal to itself, +// and dyn, abstract, and struct types may all hold a NaN at runtime, so the check is limited +// to the scalar types which cannot, and to the aggregate types whose type parameters are +// themselves self-equal. +func isSelfEqualIdent(e ast.Expr) bool { + if e.Kind() != ast.IdentKind { + return false + } + nav, ok := e.(ast.NavigableExpr) + if !ok { + return false + } + return isSelfEqualType(nav.Type()) +} + +// isSelfEqualType indicates whether all runtime values of the given type are equal to themselves. +func isSelfEqualType(t *types.Type) bool { + if t == nil { + return false + } + switch t.Kind() { + case types.BoolKind, types.BytesKind, types.DurationKind, types.IntKind, + types.NullTypeKind, types.StringKind, types.TimestampKind, types.TypeKind, + types.UintKind: + return true + case types.ListKind, types.MapKind: + // Aggregates compare element-wise, so they are self-equal exactly when their type + // parameters are. A list(dyn) or map(string, double) may still contain a NaN. + for _, p := range t.Parameters() { + if !isSelfEqualType(p) { + return false + } + } + return true + default: + return false + } +} + +func isExprConstantOfKind(e ast.Expr, t *types.Type) bool { + return e.Kind() == ast.LiteralKind && e.AsLiteral().Type() == t +} + +func hasComprehensionVar(e ast.NavigableExpr) bool { + idents := ast.MatchDescendants(e, ast.KindMatcher(ast.IdentKind)) + for _, identNode := range idents { + identName := identNode.AsIdent() + curr := identNode + parent, found := curr.Parent() + for found { + if parent.Kind() == ast.ComprehensionKind { + compre := parent.AsComprehension() + if (compre.AccuVar() == identName || compre.IterVar() == identName || compre.IterVar2() == identName) && + curr.ID() != compre.IterRange().ID() && curr.ID() != compre.AccuInit().ID() { + return true + } + } + curr = parent + parent, found = parent.Parent() + } + } + return false +} + func isNestedComprehension(e ast.NavigableExpr) bool { parent, found := e.Parent() for found { diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/inlining.go b/tests/e2e/vendor/github.com/google/cel-go/cel/inlining.go index a4530e19e7..d9a5e89a5f 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/inlining.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/inlining.go @@ -178,9 +178,38 @@ func (opt *inliningOptimizer) rewritePresenceExpr(ctx *OptimizerContext, prev, i )) return } + if zeroValExpr, ok := zeroValueExpr(ctx, inlinedType); ok { + ctx.UpdateExpr(prev, + ctx.NewCall(operators.NotEquals, + inlined, zeroValExpr)) + return + } ctx.ReportErrorAtID(prev.ID(), "unable to inline expression type %v into presence test", inlinedType) } +// zeroValueExpr creates an expression representing the empty or zero value for the given type +// Note: bytes, lists, maps, and strings are supported via the `SizerType` trait. +func zeroValueExpr(ctx *OptimizerContext, t *Type) (ast.Expr, bool) { + // Note: bytes, strings, lists, and maps are covered by the "sizer-type" check + switch t.Kind() { + case types.BoolKind: + return ctx.NewLiteral(types.False), true + case types.DoubleKind: + return ctx.NewLiteral(types.Double(0)), true + case types.DurationKind: + return ctx.NewCall(overloads.TypeConvertDuration, ctx.NewLiteral(types.String("0s"))), true + case types.IntKind: + return ctx.NewLiteral(types.IntZero), true + case types.TimestampKind: + return ctx.NewCall(overloads.TypeConvertTimestamp, ctx.NewLiteral(types.Int(0))), true + case types.StructKind: + return ctx.NewStruct(t.TypeName(), []ast.EntryExpr{}), true + case types.UintKind: + return ctx.NewLiteral(types.Uint(0)), true + } + return nil, false +} + // isBindable indicates whether the inlined type can be used within a cel.bind() if the expression // being replaced occurs within a presence test. Value types with a size() method or field selection // support can be bound. @@ -212,17 +241,43 @@ func isBindable(matches []ast.NavigableExpr, inlined ast.Expr, inlinedType *Type // field selection. This may be a future refinement. func (opt *inliningOptimizer) matchVariable(varName string) ast.ExprMatcher { return func(e ast.NavigableExpr) bool { - if e.Kind() == ast.IdentKind && e.AsIdent() == varName { - return true + name, found := maybeAsVariableName(e) + if !found || name != varName { + return false + } + + // Determine whether the variable being referenced has been shadowed by a comprehension + p, hasParent := e.Parent() + for hasParent { + if p.Kind() != ast.ComprehensionKind { + p, hasParent = p.Parent() + continue + } + // If the inline variable name matches any of the comprehension variables at any scope, + // return false as the variable has been shadowed. + compre := p.AsComprehension() + if varName == compre.AccuVar() || varName == compre.IterVar() || varName == compre.IterVar2() { + return false + } + p, hasParent = p.Parent() } - if e.Kind() == ast.SelectKind { - sel := e.AsSelect() - // While the `ToQualifiedName` call could take the select directly, this - // would skip presence tests from possible matches, which we would like - // to include. - qualName, found := containers.ToQualifiedName(sel.Operand()) - return found && qualName+"."+sel.FieldName() == varName + + return true + } +} + +func maybeAsVariableName(e ast.NavigableExpr) (string, bool) { + if e.Kind() == ast.IdentKind { + return e.AsIdent(), true + } + if e.Kind() == ast.SelectKind { + sel := e.AsSelect() + // While the `ToQualifiedName` call could take the select directly, this + // would skip presence tests from possible matches, which we would like + // to include. + if qualName, found := containers.ToQualifiedName(sel.Operand()); found { + return qualName + "." + sel.FieldName(), true } - return false } + return "", false } diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/io.go b/tests/e2e/vendor/github.com/google/cel-go/cel/io.go index 2e611228d9..c991c95c3f 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/io.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/io.go @@ -52,7 +52,12 @@ func CheckedExprToAstWithSource(checkedExpr *exprpb.CheckedExpr, src Source) (*A if err != nil { return nil, err } - return &Ast{source: src, impl: checked}, nil + out := &Ast{source: src, impl: checked} + if err := checkLoadedASTDepth(checked); err != nil { + out.loadErr = err + return out, err + } + return out, nil } // AstToCheckedExpr converts an Ast to an protobuf CheckedExpr value. @@ -83,7 +88,26 @@ func ParsedExprToAstWithSource(parsedExpr *exprpb.ParsedExpr, src Source) *Ast { src = common.NewInfoSource(parsedExpr.GetSourceInfo()) } e, _ := ast.ProtoToExpr(parsedExpr.GetExpr()) - return &Ast{source: src, impl: ast.NewAST(e, info)} + out := &Ast{source: src, impl: ast.NewAST(e, info)} + // ParsedExprToAstWithSource has no error return, so record an over-depth violation on the Ast + // to be surfaced when it is later checked or planned. + out.loadErr = checkLoadedASTDepth(out.impl) + return out +} + +// checkLoadedASTDepth guards ASTs that enter through the proto conversion helpers +// (ParsedExprToAst / CheckedExprToAst) against nesting deeper than the parser's recursion limit. +// Those entry points bypass the parser, so without this check a deeply nested loaded AST could +// exhaust the Go stack during later checking or planning. It returns a normal error rather than +// risking that overflow; the traversal itself is bounded so it stays safe on the same input. +// +// Embedders that fully control their AST inputs can skip this by building the AST through the +// common/ast package directly instead of these conversion helpers. +func checkLoadedASTDepth(a *ast.AST) error { + if ast.ExceedsDepth(a, defaultMaxASTDepth) { + return fmt.Errorf("input exceeds maximum expression nesting depth: %d", defaultMaxASTDepth) + } + return nil } // AstToParsedExpr converts an Ast to an protobuf ParsedExpr value. diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/library.go b/tests/e2e/vendor/github.com/google/cel-go/cel/library.go index 59a10e81de..332eb3f170 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/library.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/library.go @@ -182,7 +182,6 @@ func (lib *stdLibrary) CompileOptions() []EnvOption { if err = lib.subset.Validate(); err != nil { return nil, err } - e.variables = append(e.variables, stdlib.Types()...) for _, fn := range funcs { existing, found := e.functions[fn.Name()] if found { @@ -591,7 +590,7 @@ func (lib *optionalLib) CompileOptions() []EnvOption { // ProgramOptions implements the Library interface method. func (lib *optionalLib) ProgramOptions() []ProgramOption { return []ProgramOption{ - CustomDecorator(decorateOptionalOr), + CustomDecoratorV2(decorateOptionalOr), } } @@ -684,7 +683,7 @@ func EnableErrorOnBadPresenceTest(value bool) EnvOption { return features(featureEnableErrorOnBadPresenceTest, value) } -func decorateOptionalOr(i interpreter.Interpretable) (interpreter.Interpretable, error) { +func decorateOptionalOr(i interpreter.InterpretableV2) (interpreter.InterpretableV2, error) { call, ok := i.(interpreter.InterpretableCall) if !ok { return i, nil @@ -721,8 +720,8 @@ func decorateOptionalOr(i interpreter.Interpretable) (interpreter.Interpretable, // the second optional expression is evaluated and returned. type evalOptionalOr struct { id int64 - lhs interpreter.Interpretable - rhs interpreter.Interpretable + lhs interpreter.InterpretableV2 + rhs interpreter.InterpretableV2 } // ID implements the Interpretable interface method. @@ -730,27 +729,34 @@ func (opt *evalOptionalOr) ID() int64 { return opt.id } -// Eval evaluates the left-hand side optional to determine whether it contains a value, else -// proceeds with the right-hand side evaluation. -func (opt *evalOptionalOr) Eval(ctx interpreter.Activation) ref.Val { +func (opt *evalOptionalOr) Exec(frame *interpreter.ExecutionFrame) ref.Val { // short-circuit lhs. - optLHS := opt.lhs.Eval(ctx) - optVal, ok := optLHS.(*types.Optional) - if !ok { + optLHS := opt.lhs.Exec(frame) + switch val := optLHS.(type) { + case *types.Err, *types.Unknown: return optLHS + case *types.Optional: + if val.HasValue() { + return optLHS + } + return opt.rhs.Exec(frame) + default: + return types.NoSuchOverloadErr() } - if optVal.HasValue() { - return optVal - } - return opt.rhs.Eval(ctx) +} + +// Eval evaluates the left-hand side optional to determine whether it contains a value, else +// proceeds with the right-hand side evaluation. +func (opt *evalOptionalOr) Eval(ctx interpreter.Activation) ref.Val { + return opt.Exec(interpreter.AsFrame(ctx)) } // evalOptionalOrValue selects between an optional or a concrete value. If the optional has a value, // its value is returned, otherwise the alternative value expression is evaluated and returned. type evalOptionalOrValue struct { id int64 - lhs interpreter.Interpretable - rhs interpreter.Interpretable + lhs interpreter.InterpretableV2 + rhs interpreter.InterpretableV2 } // ID implements the Interpretable interface method. @@ -758,19 +764,27 @@ func (opt *evalOptionalOrValue) ID() int64 { return opt.id } -// Eval evaluates the left-hand side optional to determine whether it contains a value, else -// proceeds with the right-hand side evaluation. -func (opt *evalOptionalOrValue) Eval(ctx interpreter.Activation) ref.Val { +func (opt *evalOptionalOrValue) Exec(frame *interpreter.ExecutionFrame) ref.Val { // short-circuit lhs. - optLHS := opt.lhs.Eval(ctx) - optVal, ok := optLHS.(*types.Optional) - if !ok { + optLHS := opt.lhs.Exec(frame) + + switch val := optLHS.(type) { + case *types.Err, *types.Unknown: return optLHS + case *types.Optional: + if val.HasValue() { + return val.GetValue() + } + return opt.rhs.Exec(frame) + default: + return types.NoSuchOverloadErr() } - if optVal.HasValue() { - return optVal.GetValue() - } - return opt.rhs.Eval(ctx) +} + +// Eval evaluates the left-hand side optional to determine whether it contains a value, else +// proceeds with the right-hand side evaluation. +func (opt *evalOptionalOrValue) Eval(ctx interpreter.Activation) ref.Val { + return opt.Exec(interpreter.AsFrame(ctx)) } type timeLegacyLibrary struct{} diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/optimizer.go b/tests/e2e/vendor/github.com/google/cel-go/cel/optimizer.go index 9a2a97a647..6e260a93cf 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/optimizer.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/optimizer.go @@ -15,6 +15,7 @@ package cel import ( + "fmt" "sort" "github.com/google/cel-go/common" @@ -29,17 +30,43 @@ import ( // passes to ensure that the final optimized output is a valid expression with metadata consistent // with what would have been generated from a parsed and checked expression. // -// Note: source position information is best-effort and likely wrong, but optimized expressions +// Note: source position information is best-effort and incomplete, but optimized expressions // should be suitable for calls to parser.Unparse. type StaticOptimizer struct { optimizers []ASTOptimizer + // If set, Optimize() will use this Source instead of the one from the AST. + sourceOverride *Source } +type OptimizerOption func(*StaticOptimizer) (*StaticOptimizer, error) + // NewStaticOptimizer creates a StaticOptimizer with a sequence of ASTOptimizer's to be applied // to a checked expression. -func NewStaticOptimizer(optimizers ...ASTOptimizer) *StaticOptimizer { - return &StaticOptimizer{ - optimizers: optimizers, +func NewStaticOptimizer(options ...any) (*StaticOptimizer, error) { + so := &StaticOptimizer{} + var err error + for _, opt := range options { + switch v := opt.(type) { + case ASTOptimizer: + so.optimizers = append(so.optimizers, v) + case OptimizerOption: + so, err = v(so) + if err != nil { + return nil, err + } + default: + return nil, fmt.Errorf("unsupported option: %v", v) + } + } + return so, nil +} + +// OptimizeWithSource overrides the source used by the optimizer. +// Note this will cause the source info from the AST passed to Optimize() to be discarded. +func OptimizeWithSource(source Source) OptimizerOption { + return func(so *StaticOptimizer) (*StaticOptimizer, error) { + so.sourceOverride = &source + return so, nil } } @@ -49,15 +76,21 @@ func NewStaticOptimizer(optimizers ...ASTOptimizer) *StaticOptimizer { func (opt *StaticOptimizer) Optimize(env *Env, a *Ast) (*Ast, *Issues) { // Make a copy of the AST to be optimized. optimized := ast.Copy(a.NativeRep()) + source := a.Source() + sourceInfo := optimized.SourceInfo() + if opt.sourceOverride != nil { + source = *opt.sourceOverride + sourceInfo = ast.NewSourceInfo(*opt.sourceOverride) + } ids := newIDGenerator(ast.MaxID(a.NativeRep())) // Create the optimizer context, could be pooled in the future. - issues := NewIssues(common.NewErrors(a.Source())) + issues := NewIssues(common.NewErrors(source)) baseFac := ast.NewExprFactory() exprFac := &optimizerExprFactory{ idGenerator: ids, fac: baseFac, - sourceInfo: optimized.SourceInfo(), + sourceInfo: sourceInfo, } ctx := &OptimizerContext{ optimizerExprFactory: exprFac, @@ -80,7 +113,7 @@ func (opt *StaticOptimizer) Optimize(env *Env, a *Ast) (*Ast, *Issues) { // Recheck the updated expression for any possible type-agreement or validation errors. parsed := &Ast{ - source: a.Source(), + source: source, impl: ast.NewAST(expr, info)} checked, iss := ctx.Check(parsed) if iss.Err() != nil { @@ -91,7 +124,7 @@ func (opt *StaticOptimizer) Optimize(env *Env, a *Ast) (*Ast, *Issues) { // Return the optimized result. return &Ast{ - source: a.Source(), + source: source, impl: optimized, }, nil } @@ -100,6 +133,8 @@ func (opt *StaticOptimizer) Optimize(env *Env, a *Ast) (*Ast, *Issues) { // that the ids within the expression correspond to the ids within macros. func normalizeIDs(idGen ast.IDGenerator, optimized ast.Expr, info *ast.SourceInfo) { optimized.RenumberIDs(idGen) + info.RenumberIDs(idGen) + if len(info.MacroCalls()) == 0 { return } @@ -260,6 +295,9 @@ func (opt *optimizerExprFactory) CopyASTAndMetadata(a *ast.AST) ast.Expr { for macroID, call := range copyInfo.MacroCalls() { opt.SetMacroCall(macroID, call) } + for id, offset := range copyInfo.OffsetRanges() { + opt.sourceInfo.SetOffsetRange(id, offset) + } return copyExpr } diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/options.go b/tests/e2e/vendor/github.com/google/cel-go/cel/options.go index fee67323c8..540ad38ba0 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/options.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/options.go @@ -24,6 +24,7 @@ import ( "google.golang.org/protobuf/reflect/protoregistry" "google.golang.org/protobuf/types/dynamicpb" + "github.com/google/cel-go/cel/async" "github.com/google/cel-go/checker" "github.com/google/cel-go/common/containers" "github.com/google/cel-go/common/decls" @@ -71,12 +72,16 @@ const ( // Enable escape syntax for field identifiers (`). featureIdentEscapeSyntax + + // Enable accessing fields by JSON names within protobuf messages + featureJSONFieldNames ) var featureIDsToNames = map[int]string{ featureEnableMacroCallTracking: "cel.feature.macro_call_tracking", featureCrossTypeNumericComparisons: "cel.feature.cross_type_numeric_comparisons", featureIdentEscapeSyntax: "cel.feature.backtick_escape_syntax", + featureJSONFieldNames: "cel.feature.json_field_names", } func featureNameByID(id int) (string, bool) { @@ -93,6 +98,51 @@ func featureIDByName(name string) (int, bool) { return 0, false } +// limitID is used as a key for configurable limits. These are options that +// support exporting to YAML environment config. +type limitID int + +const ( + _ = limitID(iota) + // The number of recursive calls permitted in parsing. + limitParseRecursionDepth + // The number of code points permitted in an input expression string. + limitCodePointSize + // The number of attempts to recover from a parse error. + limitParseErrorRecovery + // The maximum nesting depth permitted for ASTs loaded outside the parser. + limitMaxASTDepth + // The maximum number of expression nodes permitted in parsing (including macro expansion). + limitExpressionNodeCount +) + +// defaultMaxASTDepth mirrors the parser's default maxRecursionDepth (250) and +// is applied to ASTs that enter through non-parser ingestion paths (e.g. via +// ParsedExprToAst / CheckedExprToAst) when no explicit limit is configured. +const defaultMaxASTDepth = 250 + +var limitIDsToNames = map[limitID]string{ + limitCodePointSize: "cel.limit.expression_code_points", + limitParseErrorRecovery: "cel.limit.parse_error_recovery", + limitParseRecursionDepth: "cel.limit.parse_recursion_depth", + limitMaxASTDepth: "cel.limit.max_ast_depth", + limitExpressionNodeCount: "cel.limit.expression_node_count", +} + +func limitNameByID(id limitID) (string, bool) { + v, ok := limitIDsToNames[id] + return v, ok +} + +func limitIDByName(name string) (limitID, bool) { + for k, v := range limitIDsToNames { + if v == name { + return k, true + } + } + return limitID(0), false +} + // EnvOption is a functional interface for configuring the environment. type EnvOption func(e *Env) (*Env, error) @@ -275,9 +325,9 @@ func Abbrevs(qualifiedNames ...string) EnvOption { } } -// customTypeRegistry is an internal-only interface containing the minimum methods required to support +// protoTypeRegistry is an internal-only interface containing the minimum methods required to support // custom types. It is a subset of methods from ref.TypeRegistry. -type customTypeRegistry interface { +type protoTypeRegistry interface { RegisterDescriptor(protoreflect.FileDescriptor) error RegisterType(...ref.Type) error } @@ -294,7 +344,7 @@ type customTypeRegistry interface { // Note: This option must be specified after the CustomTypeProvider option when used together. func Types(addTypes ...any) EnvOption { return func(e *Env) (*Env, error) { - reg, isReg := e.provider.(customTypeRegistry) + reg, isReg := e.provider.(protoTypeRegistry) if !isReg { return nil, fmt.Errorf("custom types not supported by provider: %T", e.provider) } @@ -331,7 +381,7 @@ func Types(addTypes ...any) EnvOption { // extension or by re-using the same EnvOption with another NewEnv() call. func TypeDescs(descs ...any) EnvOption { return func(e *Env) (*Env, error) { - reg, isReg := e.provider.(customTypeRegistry) + reg, isReg := e.provider.(protoTypeRegistry) if !isReg { return nil, fmt.Errorf("custom types not supported by provider: %T", e.provider) } @@ -379,7 +429,7 @@ func TypeDescs(descs ...any) EnvOption { } } -func registerFileSet(reg customTypeRegistry, fileSet *descpb.FileDescriptorSet) error { +func registerFileSet(reg protoTypeRegistry, fileSet *descpb.FileDescriptorSet) error { files, err := protodesc.NewFiles(fileSet) if err != nil { return fmt.Errorf("protodesc.NewFiles(%v) failed: %v", fileSet, err) @@ -387,7 +437,7 @@ func registerFileSet(reg customTypeRegistry, fileSet *descpb.FileDescriptorSet) return registerFiles(reg, files) } -func registerFiles(reg customTypeRegistry, files *protoregistry.Files) error { +func registerFiles(reg protoTypeRegistry, files *protoregistry.Files) error { var err error files.RangeFiles(func(fd protoreflect.FileDescriptor) bool { err = reg.RegisterDescriptor(fd) @@ -396,6 +446,15 @@ func registerFiles(reg customTypeRegistry, files *protoregistry.Files) error { return err } +// JSONFieldNames supports accessing protocol buffer fields by json-name. +// +// Enabling JSON field name support will create a copy of the types.Registry with fields indexed +// by JSON name, and whether JSON name or Proto-style names are supported will be inferred from +// the AST extensions metadata. +func JSONFieldNames(enabled bool) EnvOption { + return features(featureJSONFieldNames, enabled) +} + // ProgramOption is a functional interface for configuring evaluation bindings and behaviors. type ProgramOption func(p *prog) (*prog, error) @@ -409,6 +468,14 @@ func CustomDecorator(dec interpreter.InterpretableDecorator) ProgramOption { } } +// CustomDecoratorV2 appends an InterpreterDecoratorV2 to the program. +func CustomDecoratorV2(dec interpreter.InterpretableDecoratorV2) ProgramOption { + return func(p *prog) (*prog, error) { + p.plannerOptions = append(p.plannerOptions, interpreter.CustomDecoratorV2(dec)) + return p, nil + } +} + // Functions adds function overloads that extend or override the set of CEL built-ins. // // Deprecated: use Function() instead to declare the function, its overload signatures, @@ -523,6 +590,17 @@ func configToEnvOptions(config *env.Config, provider types.Provider, optFactorie envOpts = append(envOpts, Abbrevs(imp.Name)) } + // Configure features and common limits. + for _, feat := range config.Features { + // Note, if a feature is not found, it is skipped as it is possible the feature + // is not intended to be supported publicly. In the future, a refinement of + // to this strategy to report unrecognized features and validators should probably + // be covered as a standard ConfigOptionFactory + if id, found := featureIDByName(feat.Name); found { + envOpts = append(envOpts, features(id, feat.Enabled)) + } + } + // Configure the context variable declaration if config.ContextVariable != nil { typeName := config.ContextVariable.TypeName @@ -564,14 +642,9 @@ func configToEnvOptions(config *env.Config, provider types.Provider, optFactorie envOpts = append(envOpts, FunctionDecls(funcs...)) } - // Configure features - for _, feat := range config.Features { - // Note, if a feature is not found, it is skipped as it is possible the feature - // is not intended to be supported publicly. In the future, a refinement of - // to this strategy to report unrecognized features and validators should probably - // be covered as a standard ConfigOptionFactory - if id, found := featureIDByName(feat.Name); found { - envOpts = append(envOpts, features(id, feat.Enabled)) + for _, limit := range config.Limits { + if id, found := limitIDByName(limit.Name); found { + envOpts = append(envOpts, setLimit(id, limit.Value)) } } @@ -674,6 +747,47 @@ func InterruptCheckFrequency(checkFrequency uint) ProgramOption { } } +// AsyncCallObserver sets the observer for monitoring asynchronous function calls during ConcurrentEval. +func AsyncCallObserver(observer async.Observer) ProgramOption { + return func(p *prog) (*prog, error) { + p.asyncObserver = observer + return p, nil + } +} + +// AsyncCompletionBufferSize sets the size of the buffer for the async completion channel. +// By default, the channel is unbuffered. +func AsyncCompletionBufferSize(size int) ProgramOption { + return func(p *prog) (*prog, error) { + p.asyncCompletionBufferSize = size + return p, nil + } +} + +// AsyncMaxConcurrency sets the maximum number of concurrently launched async calls during +// ConcurrentEval. This bounds the number of in-flight async goroutines, so a wide fan-out (such +// as an async call inside a comprehension over a large list) cannot exhaust memory. +// +// A value of 0 (unset) applies a built-in default bound. A positive value sets an explicit bound. +// A negative value disables the limiter (unbounded launches) and should only be used when +// concurrency is bounded by other means. +func AsyncMaxConcurrency(maxConcurrency int) ProgramOption { + return func(p *prog) (*prog, error) { + p.asyncMaxConcurrency = maxConcurrency + return p, nil + } +} + +// ConcurrentDrainStrategy configures the strategy for when to re-evaluate the program +// during a ConcurrentEval call after receiving asynchronous completion signals. +// By default, the program re-evaluates immediately after every completion. +func ConcurrentDrainStrategy(strategy async.DrainStrategy) ProgramOption { + return func(p *prog) (*prog, error) { + p.drainStrategy = strategy + return p, nil + } +} + // CostEstimatorOptions configure type-check time options for estimating expression cost. func CostEstimatorOptions(costOpts ...checker.CostOption) EnvOption { return func(e *Env) (*Env, error) { @@ -727,8 +841,11 @@ func fieldToCELType(field protoreflect.FieldDescriptor) (*Type, error) { return nil, fmt.Errorf("field %s type %s not implemented", field.FullName(), field.Kind().String()) } -func fieldToVariable(field protoreflect.FieldDescriptor) (*decls.VariableDecl, error) { +func fieldToVariable(field protoreflect.FieldDescriptor, jsonFieldNames bool) (*decls.VariableDecl, error) { name := string(field.Name()) + if jsonFieldNames { + name = field.JSONName() + } if field.IsMap() { mapKey := field.MapKey() mapValue := field.MapValue() @@ -759,6 +876,8 @@ func fieldToVariable(field protoreflect.FieldDescriptor) (*decls.VariableDecl, e // DeclareContextProto returns an option to extend CEL environment with declarations from the given context proto. // Each field of the proto defines a variable of the same name in the environment. // https://github.com/google/cel-spec/blob/master/doc/langdef.md#evaluation-environment +// +// If using JSONFieldNames(), ensure that the option is set before DeclareContextProto is provided. func DeclareContextProto(descriptor protoreflect.MessageDescriptor) EnvOption { return func(e *Env) (*Env, error) { if e.contextProto != nil { @@ -768,9 +887,10 @@ func DeclareContextProto(descriptor protoreflect.MessageDescriptor) EnvOption { e.contextProto = descriptor fields := descriptor.Fields() vars := make([]*decls.VariableDecl, 0, fields.Len()) + jsonFieldNames := e.HasFeature(featureJSONFieldNames) for i := 0; i < fields.Len(); i++ { field := fields.Get(i) - variable, err := fieldToVariable(field) + variable, err := fieldToVariable(field, jsonFieldNames) if err != nil { return nil, err } @@ -789,11 +909,15 @@ func DeclareContextProto(descriptor protoreflect.MessageDescriptor) EnvOption { // // Consider using with `DeclareContextProto` to simplify variable type declarations and publishing when using // protocol buffers. -func ContextProtoVars(ctx proto.Message) (Activation, error) { +// +// Use the types.JSONFieldNames(true) option to populate the context proto vars using the JSON field names. +func ContextProtoVars(ctx proto.Message, opts ...types.RegistryOption) (Activation, error) { if ctx == nil || !ctx.ProtoReflect().IsValid() { return interpreter.EmptyActivation(), nil } - reg, err := types.NewRegistry(ctx) + regOpts := []types.RegistryOption{types.ProtoTypeDefs(ctx)} + regOpts = append(regOpts, opts...) + reg, err := types.NewProtoRegistry(regOpts...) if err != nil { return nil, err } @@ -803,15 +927,19 @@ func ContextProtoVars(ctx proto.Message) (Activation, error) { vars := make(map[string]any, fields.Len()) for i := 0; i < fields.Len(); i++ { field := fields.Get(i) - sft, found := reg.FindStructFieldType(typeName, field.TextName()) + fieldName := field.TextName() + if reg.JSONFieldNames() { + fieldName = field.JSONName() + } + sft, found := reg.FindStructFieldType(typeName, fieldName) if !found { - return nil, fmt.Errorf("no such field: %s", field.TextName()) + return nil, fmt.Errorf("no such field: %s", fieldName) } fieldVal, err := sft.GetFrom(ctx) if err != nil { return nil, err } - vars[field.TextName()] = fieldVal + vars[fieldName] = fieldVal } return NewActivation(vars) } @@ -847,22 +975,51 @@ func features(flag int, enabled bool) EnvOption { } } -// ParserRecursionLimit adjusts the AST depth the parser will tolerate. -// Defaults defined in the parser package. -func ParserRecursionLimit(limit int) EnvOption { +func setLimit(id limitID, limit int) EnvOption { + if limit < 0 { + limit = -1 + } return func(e *Env) (*Env, error) { - e.prsrOpts = append(e.prsrOpts, parser.MaxRecursionDepth(limit)) + e.limits[id] = limit return e, nil } } -// ParserExpressionSizeLimit adjusts the number of code points the expression parser is allowed to parse. +// ParserRecursionLimit adjusts the AST depth the parser will tolerate. // Defaults defined in the parser package. +func ParserRecursionLimit(limit int) EnvOption { + return setLimit(limitParseRecursionDepth, limit) +} + +// ParserErrorRecoveryLimit sets the number of attemtps the parser will take +// to recover after encountering an error. +func ParserErrorRecoveryLimit(limit int) EnvOption { + return setLimit(limitParseErrorRecovery, limit) +} + +// ParserExpressionSizeLimit adjusts the number of code points the expression parser is allowed to parse. +// Defaults are defined in the parser package. A negative value means unbounded. func ParserExpressionSizeLimit(limit int) EnvOption { - return func(e *Env) (*Env, error) { - e.prsrOpts = append(e.prsrOpts, parser.ExpressionSizeCodePointLimit(limit)) - return e, nil - } + return setLimit(limitCodePointSize, limit) +} + +// ExpressionNodeLimit adjusts the maximum number of expression nodes permitted during parsing +// and checking, including nodes created by macro expansion. Defaults are defined in the parser +// package (100,000). A negative value means unbounded. +func ExpressionNodeLimit(limit int) EnvOption { + return setLimit(limitExpressionNodeCount, limit) +} + +// ExpressionNestingDepthLimit records the maximum nesting depth permitted for ASTs in the +// environment configuration so that the value round-trips through env.Config export/import. +// +// ASTs loaded outside the parser (e.g. via ParsedExprToAst / CheckedExprToAst) bypass the +// parser's recursion limit, so those conversion paths validate nesting depth against the +// parser-matching default (250) to avoid a Go stack overflow during later checking or planning. +// Embedders that fully control their AST inputs and want to skip the check can construct the AST +// through the common/ast package directly rather than the cel conversion helpers. +func ExpressionNestingDepthLimit(limit int) EnvOption { + return setLimit(limitMaxASTDepth, limit) } // EnableHiddenAccumulatorName sets the parser to use the identifier '@result' for accumulators diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/program.go b/tests/e2e/vendor/github.com/google/cel-go/cel/program.go index 24f41a4a77..3a7589a71c 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/program.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/program.go @@ -16,10 +16,13 @@ package cel import ( "context" + "errors" "fmt" - "sync" + "time" + "github.com/google/cel-go/cel/async" "github.com/google/cel-go/common/ast" + "github.com/google/cel-go/common/functions" "github.com/google/cel-go/common/types" "github.com/google/cel-go/common/types/ref" "github.com/google/cel-go/interpreter" @@ -51,6 +54,21 @@ type Program interface { // // The output contract for `ContextEval` is otherwise identical to the `Eval` method. ContextEval(context.Context, any) (ref.Val, *EvalDetails, error) + + // ConcurrentEval evaluates the program concurrently, returning a channel that will receive + // the final EvalResult when all asynchronous operations complete, or the context expires. + // + // The vars value may either be an `Activation` or `map[string]any`. + // + // Liveness: ConcurrentEval relies on context cancellation to terminate. If an async function + // never returns and does not honor its context, and the supplied context has no deadline, the + // call will block indefinitely. Always pass a context with a deadline or cancellation. + // + // Error handling is fail-fast: as soon as a re-evaluation pass yields an error, that error is + // returned and any still in-flight async calls are cancelled (their contexts are done) and + // their results discarded. Async functions should therefore be free of unwanted side effects + // on partial evaluation, or guard them with idempotency/cancellation handling. + ConcurrentEval(context.Context, any) <-chan EvalResult } // Activation used to resolve identifiers by name and references by id. @@ -143,6 +161,13 @@ func (ed *EvalDetails) ActualCost() *uint64 { return &cost } +// EvalResult encapsulates the response from a ConcurrentEval call. +type EvalResult struct { + Val ref.Val + EvalDetails *EvalDetails + Err error +} + // prog is the internal implementation of the Program interface. type prog struct { *Env @@ -158,11 +183,21 @@ type prog struct { regexOptimizations []*interpreter.RegexOptimization // Interpretable configured from an Ast and aggregate decorator set based on program options. - interpretable interpreter.Interpretable + interpretable interpreter.InterpretableV2 observable *interpreter.ObservableInterpretable callCostEstimator interpreter.ActualCostEstimator costOptions []interpreter.CostTrackerOption costLimit *uint64 + + // hasAsync indicates the planned expression contains an asynchronous function call, which can + // only be resolved by ConcurrentEval. + hasAsync bool + + // Async evaluation configuration used by ConcurrentEval. + drainStrategy async.DrainStrategy + asyncObserver async.Observer + asyncCompletionBufferSize int + asyncMaxConcurrency int } // newProgram creates a program instance with an environment, an ast, and an optional list of @@ -180,6 +215,7 @@ func newProgram(e *Env, a *ast.AST, opts []ProgramOption) (Program, error) { plannerOptions: []interpreter.PlannerOption{}, dispatcher: disp, costOptions: []interpreter.CostTrackerOption{}, + drainStrategy: async.DrainReady(100 * time.Microsecond), } // Configure the program via the ProgramOption values. @@ -191,15 +227,35 @@ func newProgram(e *Env, a *ast.AST, opts []ProgramOption) (Program, error) { } } - // Add the function bindings created via Function() options. - for _, fn := range e.functions { - bindings, err := fn.Bindings() - if err != nil { - return nil, err + e.funcBindOnce.Do(func() { + var bindings []*functions.Overload + e.functionBindings = []*functions.Overload{} + for _, fn := range e.functions { + bindings, err = fn.Bindings() + if err != nil { + return + } + e.functionBindings = append(e.functionBindings, bindings...) } - err = disp.Add(bindings...) - if err != nil { - return nil, err + }) + if err != nil { + return nil, err + } + + // Add the function bindings created via Function() options. + err = disp.Add(e.functionBindings...) + if err != nil { + return nil, err + } + + // Determine whether the environment declares any asynchronous function. Async is a property of + // the binding, so its presence is known from the environment alone, without inspecting the + // program plan. The synchronous entry points (Eval, ContextEval) reject programs from an env + // with async functions; callers needing synchronous evaluation should use a non-async env. + for _, b := range e.functionBindings { + if b.Async != nil { + p.hasAsync = true + break } } @@ -208,6 +264,12 @@ func newProgram(e *Env, a *ast.AST, opts []ProgramOption) (Program, error) { attrFactorOpts := []interpreter.AttrFactoryOption{ interpreter.EnableErrorOnBadPresenceTest(p.HasFeature(featureEnableErrorOnBadPresenceTest)), } + if a.SourceInfo().HasExtension("json_name", ast.NewExtensionVersion(1, 1)) { + if !e.HasFeature(featureJSONFieldNames) { + return nil, errors.New("the AST extension 'json_name' requires the option cel.JSONFieldNames(true)") + } + } + // Configure the type provider, considering whether the AST indicates whether it supports JSON field names if p.evalOpts&OptPartialEval == OptPartialEval { attrFactory = interpreter.NewPartialAttributeFactory(e.Container, e.adapter, e.provider, attrFactorOpts...) } else { @@ -245,8 +307,16 @@ func newProgram(e *Env, a *ast.AST, opts []ProgramOption) (Program, error) { if p.costLimit != nil { costOpts = append(costOpts, interpreter.CostTrackerLimit(*p.costLimit)) } + // Creating a new cost tracker for each evaluation causes significant work that + // needs to be repeated for each evaluation even though the cost tracker is + // mostly read-only once constructed. Therefore it gets constructed + // once now and later a cheap clone is used for each evaluation. + tracker, err := interpreter.NewCostTracker(p.callCostEstimator, costOpts...) + if err != nil { + return nil, fmt.Errorf("construct cost tracker: %w", err) + } trackerFactory := func() (*interpreter.CostTracker, error) { - return interpreter.NewCostTracker(p.callCostEstimator, costOpts...) + return tracker.Clone() } var observers []interpreter.PlannerOption if p.evalOpts&(OptExhaustiveEval|OptTrackState) != 0 { @@ -295,23 +365,25 @@ func (p *prog) Eval(input any) (out ref.Val, det *EvalDetails, err error) { } } }() - // Build a hierarchical activation if there are default vars set. - var vars Activation - switch v := input.(type) { - case Activation: - vars = v - case map[string]any: - vars = activationPool.Setup(v) - defer activationPool.Put(vars) - default: - return nil, nil, fmt.Errorf("invalid input, wanted Activation or map[string]any, got: (%T)%v", input, input) + // Asynchronous calls cannot be resolved by a single-pass evaluation. Reject before doing any + // work (this also covers ContextEval, which delegates here); ConcurrentEval does not call Eval. + if p.hasAsync { + return nil, nil, errAsyncRequiresConcurrentEval } - if p.defaultVars != nil { - vars = interpreter.NewHierarchicalActivation(p.defaultVars, vars) + // Build a hierarchical activation if there are default vars set. + var frame *interpreter.ExecutionFrame + if f, ok := input.(*interpreter.ExecutionFrame); ok { + frame = f + } else { + frame, err = p.newExecutionFrame(input) + if err != nil { + return nil, nil, err + } + defer frame.Close() } if p.observable != nil { det = &EvalDetails{} - out = p.observable.ObserveEval(vars, func(observed any) { + out = p.observable.ObserveExec(frame, func(observed any) { switch o := observed.(type) { case interpreter.EvalState: det.state = o @@ -320,7 +392,7 @@ func (p *prog) Eval(input any) (out ref.Val, det *EvalDetails, err error) { } }) } else { - out = p.interpretable.Eval(vars) + out = p.interpretable.Exec(frame) } // The output of an internal Eval may have a value (`v`) that is a types.Err. This step // translates the CEL value to a Go error response. This interface does not quite match the @@ -336,160 +408,220 @@ func (p *prog) ContextEval(ctx context.Context, input any) (ref.Val, *EvalDetail if ctx == nil { return nil, nil, fmt.Errorf("context can not be nil") } - // Configure the input, making sure to wrap Activation inputs in the special ctxActivation which - // exposes the #interrupted variable and manages rate-limited checks of the ctx.Done() state. - var vars Activation - switch v := input.(type) { - case Activation: - vars = ctxActivationPool.Setup(v, ctx.Done(), p.interruptCheckFrequency) - defer ctxActivationPool.Put(vars) - case map[string]any: - rawVars := activationPool.Setup(v) - defer activationPool.Put(rawVars) - vars = ctxActivationPool.Setup(rawVars, ctx.Done(), p.interruptCheckFrequency) - defer ctxActivationPool.Put(vars) - default: - return nil, nil, fmt.Errorf("invalid input, wanted Activation or map[string]any, got: (%T)%v", input, input) + frame, err := p.newExecutionFrame(input) + if err != nil { + return nil, nil, err } - return p.Eval(vars) -} - -type ctxEvalActivation struct { - parent Activation - interrupt <-chan struct{} - interruptCheckCount uint - interruptCheckFrequency uint + defer frame.Close() + frame.SetContext(ctx, p.interruptCheckFrequency) + out, det, errEval := p.Eval(frame) + if errEval != nil && errors.Is(errEval, interpreter.InterruptError{}) { + return out, det, fmt.Errorf("%w: %w", errEval, context.Cause(ctx)) + } + return out, det, errEval } -// ResolveName implements the Activation interface method, but adds a special #interrupted variable -// which is capable of testing whether a 'done' signal is provided from a context.Context channel. -func (a *ctxEvalActivation) ResolveName(name string) (any, bool) { - if name == "#interrupted" { - a.interruptCheckCount++ - if a.interruptCheckCount%a.interruptCheckFrequency == 0 { - select { - case <-a.interrupt: - return true, true - default: - return nil, false - } - } - return nil, false +// newExecutionFrame creates an ExecutionFrame for the given input without a timeout context. +func (p *prog) newExecutionFrame(input any) (*interpreter.ExecutionFrame, error) { + frame, err := interpreter.NewExecutionFrame(input) + if err != nil { + return nil, err + } + if p.defaultVars != nil { + // Update the frame's activation in place. + frame.Activation = interpreter.NewHierarchicalActivation(p.defaultVars, frame.Activation) } - return a.parent.ResolveName(name) -} -func (a *ctxEvalActivation) Parent() Activation { - return a.parent + return frame, nil } -func (a *ctxEvalActivation) AsPartialActivation() (interpreter.PartialActivation, bool) { - pa, ok := a.parent.(interpreter.PartialActivation) - return pa, ok +// newAsyncFrame creates an ExecutionFrame configured for asynchronous evaluation under the +// given context, wiring the observer and concurrency limit from the program options. +func (p *prog) newAsyncFrame(ctx context.Context, input any) (*interpreter.ExecutionFrame, error) { + frame, err := p.newExecutionFrame(input) + if err != nil { + return nil, err + } + if err := frame.SetContext(ctx, p.interruptCheckFrequency); err != nil { + frame.Close() + return nil, err + } + frame.SetAsyncObserver(p.asyncObserver) + frame.SetAsyncMaxConcurrency(resolveAsyncMaxConcurrency(p.asyncMaxConcurrency)) + return frame, nil } -func newCtxEvalActivationPool() *ctxEvalActivationPool { - return &ctxEvalActivationPool{ - Pool: sync.Pool{ - New: func() any { - return &ctxEvalActivation{} - }, - }, +// defaultAsyncMaxConcurrency bounds the number of concurrently launched async calls when the +// program does not configure AsyncMaxConcurrency. It exists so that a wide fan-out (e.g. an async +// call inside a comprehension over a large list) cannot spawn an unbounded number of goroutines. +const defaultAsyncMaxConcurrency = 100 + +// resolveAsyncMaxConcurrency maps the configured concurrency to the effective launch limit: +// - 0 (unset): apply defaultAsyncMaxConcurrency. +// - >0: use the configured value. +// - <0: unlimited (no launch limiter); use only if the caller bounds concurrency another way. +func resolveAsyncMaxConcurrency(configured int) int { + if configured == 0 { + return defaultAsyncMaxConcurrency } + return configured } -type ctxEvalActivationPool struct { - sync.Pool +// resolveCompletionBufferSize returns the size of the async completion channel. When unset, it +// defaults to the effective launch concurrency so that all in-flight calls can report completion +// without blocking. An unbuffered channel would make a completed call hold its launch slot until +// the evaluator drained it, throttling effective concurrency to the drain rate. +func (p *prog) resolveCompletionBufferSize() int { + if p.asyncCompletionBufferSize > 0 { + return p.asyncCompletionBufferSize + } + limit := resolveAsyncMaxConcurrency(p.asyncMaxConcurrency) + if limit < 0 { + // Unlimited launches: fall back to the default bound for the buffer so it stays finite. + return defaultAsyncMaxConcurrency + } + return limit } -// Setup initializes a pooled Activation with the ability check for context.Context cancellation -func (p *ctxEvalActivationPool) Setup(vars Activation, done <-chan struct{}, interruptCheckRate uint) *ctxEvalActivation { - a := p.Pool.Get().(*ctxEvalActivation) - a.parent = vars - a.interrupt = done - a.interruptCheckCount = 0 - a.interruptCheckFrequency = interruptCheckRate - return a -} +// ConcurrentEval implements the Program interface. +func (p *prog) ConcurrentEval(ctx context.Context, input any) <-chan EvalResult { + resCh := make(chan EvalResult, 1) + if ctx == nil { + resCh <- EvalResult{Err: errors.New("context can not be nil")} + close(resCh) + return resCh + } -type evalActivation struct { - vars map[string]any - lazyVars map[string]any -} + go func() { + defer close(resCh) + // Ensure concurrent eval handles panic / recovery properly + defer func() { + if r := recover(); r != nil { + switch t := r.(type) { + case interpreter.EvalCancelledError: + resCh <- EvalResult{Err: t} + default: + resCh <- EvalResult{Err: fmt.Errorf("internal error: %v", r)} + } + } + }() -// ResolveName looks up the value of the input variable name, if found. -// -// Lazy bindings may be supplied within the map-based input in either of the following forms: -// - func() any -// - func() ref.Val -// -// The lazy binding will only be invoked once per evaluation. -// -// Values which are not represented as ref.Val types on input may be adapted to a ref.Val using -// the types.Adapter configured in the environment. -func (a *evalActivation) ResolveName(name string) (any, bool) { - v, found := a.vars[name] - if !found { - return nil, false - } - switch obj := v.(type) { - case func() ref.Val: - if resolved, found := a.lazyVars[name]; found { - return resolved, true - } - lazy := obj() - a.lazyVars[name] = lazy - return lazy, true - case func() any: - if resolved, found := a.lazyVars[name]; found { - return resolved, true + frame, err := p.newAsyncFrame(ctx, input) + if err != nil { + resCh <- EvalResult{Err: err} + return } - lazy := obj() - a.lazyVars[name] = lazy - return lazy, true - default: - return obj, true - } -} + defer frame.Close() + + // Completions are signaled to this channel as async calls finish. The asyncCallState + // fan-in also selects on ctx.Done(), so the sender will not leak if this loop returns early. + completions := make(chan int64, p.resolveCompletionBufferSize()) + frame.SetCompletions(completions) + + for { + var out ref.Val + var det *EvalDetails + + if p.observable != nil { + det = &EvalDetails{} + out = p.observable.ObserveExec(frame, func(observed any) { + switch o := observed.(type) { + case interpreter.EvalState: + det.state = o + case *interpreter.CostTracker: + det.costTracker = o + } + }) + } else { + out = p.interpretable.Exec(frame) + } -// Parent implements the Activation interface -func (a *evalActivation) Parent() Activation { - return nil -} + // Communicate errors quickly. + if types.IsError(out) { + var err error = out.(*types.Err) + if errors.Is(err, interpreter.InterruptError{}) { + err = fmt.Errorf("%w: %w", err, context.Cause(ctx)) + } + resCh <- EvalResult{Val: out, EvalDetails: det, Err: err} + return + } -func newEvalActivationPool() *evalActivationPool { - return &evalActivationPool{ - Pool: sync.Pool{ - New: func() any { - return &evalActivation{lazyVars: make(map[string]any)} - }, - }, - } -} + // A concrete (non-unknown) result is final. + unk, isUnknown := out.(*types.Unknown) + if !isUnknown || !unk.HasUnknownFunction() { + resCh <- EvalResult{Val: out, EvalDetails: det, Err: nil} + return + } -type evalActivationPool struct { - sync.Pool -} + // Post-execution dispatch: launch only the async calls required by the unknown result. + frame.DispatchPendingAsyncCalls(unk.IDs()) -// Setup initializes a pooled Activation object with the map input. -func (p *evalActivationPool) Setup(vars map[string]any) *evalActivation { - a := p.Pool.Get().(*evalActivation) - a.vars = vars - return a -} + // The result depends on one or more unresolved async calls. Wait for completions and + // re-evaluate according to the configured drain strategy. + var batch []async.Call -func (p *evalActivationPool) Put(value any) { - a := value.(*evalActivation) - for k := range a.lazyVars { - delete(a.lazyVars, k) - } - p.Pool.Put(a) -} + // Wait for at least one completion (or cancellation). + select { + case id := <-completions: + if call := frame.AsyncCall(id); call != nil { + batch = append(batch, call) + } + case <-ctx.Done(): + resCh <- EvalResult{Val: out, EvalDetails: det, Err: ctx.Err()} + return + } -var ( - // activationPool is an internally managed pool of Activation values that wrap map[string]any inputs - activationPool = newEvalActivationPool() + // Accumulate completions and consult the strategy. + var timer *time.Timer + reevaluate := false + for !reevaluate { + active := frame.ActiveAsyncCalls() + action := p.drainStrategy.NextAction(batch, active) + if action.Reevaluate { + break + } + + var timeoutCh <-chan time.Time + if action.WaitDuration > 0 { + if timer == nil { + timer = time.NewTimer(action.WaitDuration) + } else { + if !timer.Stop() { + select { + case <-timer.C: + default: + } + } + timer.Reset(action.WaitDuration) + } + timeoutCh = timer.C + } + + select { + case id := <-completions: + if call := frame.AsyncCall(id); call != nil { + batch = append(batch, call) + } + case <-timeoutCh: + reevaluate = true + case <-ctx.Done(): + if timer != nil { + timer.Stop() + } + resCh <- EvalResult{Val: out, EvalDetails: det, Err: ctx.Err()} + return + } + } + if timer != nil { + timer.Stop() + } + } + }() - // ctxActivationPool is an internally managed pool of Activation values that expose a special #interrupted variable - ctxActivationPool = newCtxEvalActivationPool() -) + return resCh +} + +// errAsyncRequiresConcurrentEval is returned by the synchronous entry points (Eval, ContextEval) +// when the expression contains asynchronous function calls, which only ConcurrentEval can resolve. +var errAsyncRequiresConcurrentEval = errors.New( + "expression contains asynchronous function calls; use ConcurrentEval") diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/prompt.go b/tests/e2e/vendor/github.com/google/cel-go/cel/prompt.go index 929a26f91f..f599348271 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/prompt.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/prompt.go @@ -23,15 +23,48 @@ import ( "github.com/google/cel-go/common" "github.com/google/cel-go/common/operators" "github.com/google/cel-go/common/overloads" + "github.com/google/cel-go/common/types" ) //go:embed templates/authoring.tmpl var authoringPrompt string +// splitImpl splits a string into a list of strings. +// +// Normalizes extracted comments (trim common prefix whitespace and extra trailing newlines). +func splitImpl(str string) []string { + str = strings.TrimRight(str, " \n\t\r") + out := strings.Split(str, "\n") + if len(out) == 0 { + return nil + } + negative := strings.TrimLeft(out[0], " \t") + lenNegative := len(negative) + lenOut := len(out[0]) + if lenNegative == lenOut { + return out + } + prefix := out[0][:lenOut-lenNegative] + trimmed := make([]string, len(out)) + for i, line := range out { + if line == "" { + trimmed[i] = "" + continue + } + if !strings.HasPrefix(line, prefix) { + return out + } + trimmed[i] = strings.TrimPrefix(line, prefix) + } + + return trimmed +} + // AuthoringPrompt creates a prompt template from a CEL environment for the purpose of AI-assisted authoring. func AuthoringPrompt(env *Env) (*Prompt, error) { funcMap := template.FuncMap{ - "split": func(str string) []string { return strings.Split(str, "\n") }, + "split": splitImpl, + "newlineToSpace": func(str string) string { return strings.ReplaceAll(str, "\n", " ") }, } tmpl := template.New("cel").Funcs(funcMap) tmpl, err := tmpl.Parse(authoringPrompt) @@ -47,6 +80,17 @@ func AuthoringPrompt(env *Env) (*Prompt, error) { }, nil } +// AuthoringPromptWithFieldPaths creates a prompt template from a CEL environment for the purpose of AI-assisted authoring. +// Includes documentation for all of the reachable field paths in the environment. +func AuthoringPromptWithFieldPaths(env *Env) (*Prompt, error) { + p, err := AuthoringPrompt(env) + if err != nil { + return nil, err + } + p.fieldPaths = true + return p, nil +} + // Prompt represents the core components of an LLM prompt based on a CEL environment. // // All fields of the prompt may be overwritten / modified with support for rendering the @@ -64,14 +108,22 @@ type Prompt struct { // tmpl is the text template base-configuration for rendering text. tmpl *template.Template + // fieldPaths is a flag to include reachable field paths in the prompt. + fieldPaths bool + // env reference used to collect variables, functions, and macros available to the prompt. env *Env } +type promptVariable struct { + *common.Doc + FieldPaths []*common.Doc +} + type promptInst struct { *Prompt - Variables []*common.Doc + Variables []*promptVariable Macros []*common.Doc Functions []*common.Doc UserPrompt string @@ -79,11 +131,36 @@ type promptInst struct { // Render renders the user prompt with the associated context from the prompt template // for use with LLM generators. +// +// User-supplied input is passed as template data via the UserPrompt field, which +// Go's text/template renders as a literal string value. Template action delimiters +// such as {{.Persona}} in the user prompt are never evaluated as template directives +// because text/template only executes directives present in the template definition +// itself, not in data values interpolated at render time. func (p *Prompt) Render(userPrompt string) string { var buffer strings.Builder - vars := make([]*common.Doc, len(p.env.Variables())) + vars := make([]*promptVariable, len(p.env.Variables())) for i, v := range p.env.Variables() { - vars[i] = v.Documentation() + vars[i] = &promptVariable{Doc: v.Documentation()} + if p.fieldPaths && v.Type().Kind() == types.StructKind { + var fieldPaths []*common.Doc + + paths := fieldPathsForType(p.env.CELTypeProvider(), v.Name(), v.Type()) + if len(paths) < 2 { + paths = nil + } else { + // First path is the variable which is already documented. + paths = paths[1:] + } + for _, path := range paths { + fieldPaths = append(fieldPaths, path.Documentation()) + } + + sort.SliceStable(fieldPaths, func(i, j int) bool { + return fieldPaths[i].Name < fieldPaths[j].Name + }) + vars[i].FieldPaths = fieldPaths + } } sort.SliceStable(vars, func(i, j int) bool { return vars[i].Name < vars[j].Name @@ -107,7 +184,8 @@ func (p *Prompt) Render(userPrompt string) string { Variables: vars, Macros: macs, Functions: funcs, - UserPrompt: userPrompt} + UserPrompt: userPrompt, + } p.tmpl.Execute(&buffer, inst) return buffer.String() } diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/templates/authoring.tmpl b/tests/e2e/vendor/github.com/google/cel-go/cel/templates/authoring.tmpl index d6b3da5c6c..a921df9b0e 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/templates/authoring.tmpl +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/templates/authoring.tmpl @@ -1,8 +1,29 @@ -{{define "variable"}}{{.Name}} is a {{.Type}} +{{define "fieldPath" }} + * path: `{{.Name}}` + type: `{{.Type}}` + {{- if .Description }} + description: +{{range split .Description }} {{.}} +{{end}} +{{- end -}} +{{- end -}} + +{{define "variable" -}} +* name: `{{.Name}}` + type: `{{.Type}}` + {{- if .Description}} + description: +{{range split .Description}} {{.}} +{{end -}} +{{- end -}} +{{- if .FieldPaths }} + attributes: +{{- range .FieldPaths }}{{ template "fieldPath" . }}{{end}} +{{- end -}} {{- end -}} {{define "macro" -}} -{{.Name}} macro{{if .Description}} - {{range split .Description}}{{.}} {{end}} +{{.Name}} macro{{if .Description}} - {{newlineToSpace .Description}} {{end}} {{range .Children}}{{range split .Description}} {{.}} {{end}} @@ -18,7 +39,7 @@ {{- end -}} {{define "function" -}} -{{.Name}}{{if .Description}} - {{range split .Description}}{{.}} {{end}} +{{.Name}}{{if .Description}} - {{newlineToSpace .Description}} {{end}} {{range .Children}}{{template "overload" .}}{{end}} {{- end -}} @@ -32,25 +53,26 @@ Only use the following variables, macros, and functions in expressions. {{if .Variables}} Variables: -{{range .Variables}}* {{template "variable" .}} +{{range .Variables -}} +{{template "variable" .}} {{end -}} +{{- end -}} -{{end -}} {{if .Macros}} Macros: {{range .Macros}}* {{template "macro" .}} {{end -}} - {{end -}} + {{if .Functions}} Functions: {{range .Functions}}* {{template "function" .}} {{end -}} - -{{end -}} {{- end -}} +{{- end -}} + {{.GeneralUsage}} {{.UserPrompt}} diff --git a/tests/e2e/vendor/github.com/google/cel-go/cel/validator.go b/tests/e2e/vendor/github.com/google/cel-go/cel/validator.go index 5f06b2dd55..cb7f4c29ea 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/cel/validator.go +++ b/tests/e2e/vendor/github.com/google/cel-go/cel/validator.go @@ -15,6 +15,7 @@ package cel import ( + "context" "fmt" "reflect" "regexp" @@ -25,11 +26,12 @@ import ( ) const ( - durationValidatorName = "cel.validator.duration" - regexValidatorName = "cel.validator.matches" - timestampValidatorName = "cel.validator.timestamp" - homogeneousValidatorName = "cel.validator.homogeneous_literals" - nestingLimitValidatorName = "cel.validator.comprehension_nesting_limit" + durationValidatorName = "cel.validator.duration" + regexValidatorName = "cel.validator.matches" + timestampValidatorName = "cel.validator.timestamp" + homogeneousValidatorName = "cel.validator.homogeneous_literals" + nestingLimitValidatorName = "cel.validator.comprehension_nesting_limit" + bindNestingLimitValidatorName = "cel.validator.bind_nesting_limit" // HomogeneousAggregateLiteralExemptFunctions is the ValidatorConfig key used to configure // the set of function names which are exempt from homogeneous type checks. The expected type @@ -45,6 +47,14 @@ var ( astValidatorFactories = map[string]ASTValidatorFactory{ nestingLimitValidatorName: func(val *env.Validator) (ASTValidator, error) { if limit, found := val.ConfigValue("limit"); found { + // In case of protos, config value is of type by google.protobuf.Value, which numeric values are always a double. + if val, isDouble := limit.(float64); isDouble { + if val != float64(int64(val)) { + return nil, fmt.Errorf("invalid validator: %s, limit value is not a whole number: %v", nestingLimitValidatorName, limit) + } + return ValidateComprehensionNestingLimit(int(val)), nil + } + if val, isInt := limit.(int); isInt { return ValidateComprehensionNestingLimit(val), nil } @@ -52,6 +62,23 @@ var ( } return nil, fmt.Errorf("invalid validator: %s missing limit", nestingLimitValidatorName) }, + bindNestingLimitValidatorName: func(val *env.Validator) (ASTValidator, error) { + if limit, found := val.ConfigValue("limit"); found { + // In case of protos, config value is of type by google.protobuf.Value, which numeric values are always a double. + if val, isDouble := limit.(float64); isDouble { + if val != float64(int64(val)) { + return nil, fmt.Errorf("invalid validator: %s, limit value is not a whole number: %v", bindNestingLimitValidatorName, limit) + } + return ValidateBindNestingLimit(int(val)), nil + } + + if val, isInt := limit.(int); isInt { + return ValidateBindNestingLimit(val), nil + } + return nil, fmt.Errorf("invalid validator: %s unsupported limit type: %v", bindNestingLimitValidatorName, limit) + } + return nil, fmt.Errorf("invalid validator: %s missing limit", bindNestingLimitValidatorName) + }, durationValidatorName: func(*env.Validator) (ASTValidator, error) { return ValidateDurationLiterals(), nil }, @@ -72,12 +99,20 @@ type ASTValidatorFactory func(*env.Validator) (ASTValidator, error) // ASTValidators configures a set of ASTValidator instances into the target environment. // -// Validators are applied in the order in which the are specified and are treated as singletons. -// The same ASTValidator with a given name will not be applied more than once. +// Validators are applied in the order in which they are specified. +// If an ASTValidator with the same name is already configured, it will be replaced. func ASTValidators(validators ...ASTValidator) EnvOption { return func(e *Env) (*Env, error) { for _, v := range validators { - if !e.HasValidator(v.Name()) { + found := false + for i, existing := range e.validators { + if existing.Name() == v.Name() { + e.validators[i] = v + found = true + break + } + } + if !found { e.validators = append(e.validators, v) } } @@ -224,6 +259,13 @@ func ValidateComprehensionNestingLimit(limit int) ASTValidator { return nestingLimitValidator{limit: limit} } +// ValidateBindNestingLimit ensures that cel.bind() macro nesting does not exceed the specified limit. +// +// This validator can be useful for preventing arbitrarily nested cel.bind() macro calls. +func ValidateBindNestingLimit(limit int) ASTValidator { + return bindNestingLimitValidator{limit: limit} +} + type argChecker func(env *Env, call, arg ast.Expr) error func newFormatValidator(funcName string, argNum int, check argChecker) formatValidator { @@ -276,8 +318,9 @@ func evalCall(env *Env, call, arg ast.Expr) error { if err != nil { return err } - _, _, err = prg.Eval(NoVars()) - return err + resCh := prg.ConcurrentEval(context.Background(), NoVars()) + res := <-resCh + return res.Err } func compileRegex(_ *Env, _, arg ast.Expr) error { @@ -422,8 +465,7 @@ func (v nestingLimitValidator) Validate(e *Env, _ ValidatorConfig, a *ast.AST, i } // When the comprehension has an empty range, continue to the next ancestor // as this comprehension does not have any associated cost. - iterRange := e.AsComprehension().IterRange() - if iterRange.Kind() == ast.ListKind && iterRange.AsList().Size() == 0 { + if isEmptyRangeComprehension(e) { e, hasParent = e.Parent() continue } @@ -437,3 +479,68 @@ func (v nestingLimitValidator) Validate(e *Env, _ ValidatorConfig, a *ast.AST, i } } } + +type bindNestingLimitValidator struct { + limit int +} + +// Name returns the name of the cel.bind nesting limit validator. +func (v bindNestingLimitValidator) Name() string { + return bindNestingLimitValidatorName +} + +// ToConfig converts the ASTValidator to an env.Validator specifying the validator name and the nesting limit +// as an integer value: {"limit": int} +func (v bindNestingLimitValidator) ToConfig() *env.Validator { + return env.NewValidator(v.Name()).SetConfig(map[string]any{"limit": v.limit}) +} + +// Validate implements the ASTValidator interface method. +func (v bindNestingLimitValidator) Validate(e *Env, _ ValidatorConfig, a *ast.AST, iss *Issues) { + root := ast.NavigateAST(a) + comprehensions := ast.MatchDescendants(root, ast.KindMatcher(ast.ComprehensionKind)) + var celBinds []ast.NavigableExpr + for _, comp := range comprehensions { + if isCelBind(comp) { + celBinds = append(celBinds, comp) + } + } + if len(celBinds) <= v.limit { + return + } + for _, comp := range celBinds { + count := 0 + e := comp + hasParent := true + for hasParent { + if isCelBind(e) { + count++ + if count > v.limit { + iss.ReportErrorAtID(comp.ID(), "cel.bind exceeds nesting limit") + break + } + } + e, hasParent = e.Parent() + } + } +} + +func isEmptyRangeComprehension(e ast.NavigableExpr) bool { + if e.Kind() != ast.ComprehensionKind { + return false + } + iterRange := e.AsComprehension().IterRange() + return iterRange.Kind() == ast.ListKind && iterRange.AsList().Size() == 0 +} + +func isCelBind(e ast.NavigableExpr) bool { + if !isEmptyRangeComprehension(e) { + return false + } + compre := e.AsComprehension() + loopCond := compre.LoopCondition() + loopStep := compre.LoopStep() + return compre.IterVar() == unusedIterVar && + loopCond.Kind() == ast.LiteralKind && loopCond.AsLiteral().Value() == false && + loopStep.Kind() == ast.IdentKind && loopStep.AsIdent() == compre.AccuVar() +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/checker/checker.go b/tests/e2e/vendor/github.com/google/cel-go/checker/checker.go index 0057c16ccb..42d27a4283 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/checker/checker.go +++ b/tests/e2e/vendor/github.com/google/cel-go/checker/checker.go @@ -19,6 +19,8 @@ package checker import ( "fmt" "reflect" + "slices" + "strings" "github.com/google/cel-go/common" "github.com/google/cel-go/common/ast" @@ -65,6 +67,15 @@ func Check(parsed *ast.AST, source common.Source, env *Env) (*ast.AST, *common.E for id, t := range c.TypeMap() { c.SetType(id, substitute(c.mappings, t, true)) } + // Remove source info for IDs without a corresponding AST node. This can happen because + // check() deletes some nodes while rewriting the AST. For example the Select operand is + // deleted when a variable reference is replaced with a Ident expression. + c.AST.ClearUnusedIDs() + if env.jsonFieldNames { + c.AST.SourceInfo().AddExtension( + ast.NewExtension("json_name", ast.NewExtensionVersion(1, 1), ast.ComponentRuntime), + ) + } return c.AST, errs } @@ -104,11 +115,15 @@ func (c *checker) check(e ast.Expr) { func (c *checker) checkIdent(e ast.Expr) { identName := e.AsIdent() // Check to see if the identifier is declared. - if ident := c.env.LookupIdent(identName); ident != nil { + if ident := c.env.resolveSimpleIdent(identName); ident != nil { + name := strings.TrimPrefix(ident.Name(), ".") + if ident.requiresDisambiguation { + name = "." + name + } c.setType(e, ident.Type()) - c.setReference(e, ast.NewIdentReference(ident.Name(), ident.Value())) + c.setReference(e, ast.NewIdentReference(name, ident.Value())) // Overwrite the identifier with its fully qualified name. - e.SetKindCase(c.NewIdent(e.ID(), ident.Name())) + e.SetKindCase(c.NewIdent(e.ID(), name)) return } @@ -119,18 +134,22 @@ func (c *checker) checkIdent(e ast.Expr) { func (c *checker) checkSelect(e ast.Expr) { sel := e.AsSelect() // Before traversing down the tree, try to interpret as qualified name. - qname, found := containers.ToQualifiedName(e) + qualifiers, found := c.computeQualifiers(e) if found { - ident := c.env.LookupIdent(qname) + ident := c.env.resolveQualifiedIdent(qualifiers...) if ident != nil { // We don't check for a TestOnly expression here since the `found` result is // always going to be false for TestOnly expressions. // Rewrite the node to be a variable reference to the resolved fully-qualified // variable name. + name := ident.Name() + if ident.requiresDisambiguation { + name = "." + name + } c.setType(e, ident.Type()) - c.setReference(e, ast.NewIdentReference(ident.Name(), ident.Value())) - e.SetKindCase(c.NewIdent(e.ID(), ident.Name())) + c.setReference(e, ast.NewIdentReference(name, ident.Value())) + e.SetKindCase(c.NewIdent(e.ID(), name)) return } } @@ -142,6 +161,29 @@ func (c *checker) checkSelect(e ast.Expr) { c.setType(e, substitute(c.mappings, resultType, false)) } +// computeQualifiers computes the qualified names parts of a select expression. +func (c *checker) computeQualifiers(e ast.Expr) ([]string, bool) { + var qualifiers []string + for e.Kind() == ast.SelectKind { + sel := e.AsSelect() + // test only expressions are not considered for qualified name selection. + if sel.IsTestOnly() { + return qualifiers, false + } + // otherwise append the select field name to the qualifier list (reverse order) + qualifiers = append(qualifiers, sel.FieldName()) + e = sel.Operand() + // If the next operand is an identifier, then append it, reverse the name sequence + // and return it to the caller.s + if e.Kind() == ast.IdentKind { + qualifiers = append(qualifiers, e.AsIdent()) + slices.Reverse(qualifiers) + return qualifiers, true + } + } + return qualifiers, false +} + func (c *checker) checkOptSelect(e ast.Expr) { // Collect metadata related to the opt select call packaged by the parser. call := e.AsCall() @@ -234,7 +276,7 @@ func (c *checker) checkCall(e ast.Expr) { // Regular static call with simple name. if !call.IsMemberFunction() { // Check for the existence of the function. - fn := c.env.LookupFunction(fnName) + fn := c.env.lookupFunction(fnName) if fn == nil { c.errors.undeclaredReference(e.ID(), c.location(e), c.env.container.Name(), fnName) c.setType(e, types.ErrorType) @@ -256,7 +298,7 @@ func (c *checker) checkCall(e ast.Expr) { qualifiedPrefix, maybeQualified := containers.ToQualifiedName(target) if maybeQualified { maybeQualifiedName := qualifiedPrefix + "." + fnName - fn := c.env.LookupFunction(maybeQualifiedName) + fn := c.env.lookupFunction(maybeQualifiedName) if fn != nil { // The function name is namespaced and so preserving the target operand would // be an inaccurate representation of the desired evaluation behavior. @@ -269,7 +311,7 @@ func (c *checker) checkCall(e ast.Expr) { // Regular instance call. c.check(target) - fn := c.env.LookupFunction(fnName) + fn := c.env.lookupFunction(fnName) // Function found, attempt overload resolution. if fn != nil { c.resolveOverloadOrError(e, fn, target, args) @@ -441,7 +483,7 @@ func (c *checker) checkCreateStruct(e ast.Expr) { msgVal := e.AsStruct() // Determine the type of the message. resultType := types.ErrorType - ident := c.env.LookupIdent(msgVal.TypeName()) + ident := c.env.resolveTypeIdent(msgVal.TypeName()) if ident == nil { c.errors.undeclaredReference( e.ID(), c.location(e), c.env.container.Name(), msgVal.TypeName()) @@ -681,6 +723,9 @@ func (c *checker) lookupFieldType(exprID int64, structType, fieldName string) (* } if ft, found := c.env.provider.FindStructFieldType(structType, fieldName); found { + if c.env.jsonFieldNames && !ft.IsJSONField { + c.errors.undefinedField(exprID, c.locationByID(exprID), fieldName) + } return ft.Type, found } diff --git a/tests/e2e/vendor/github.com/google/cel-go/checker/cost.go b/tests/e2e/vendor/github.com/google/cel-go/checker/cost.go index 5bc6318ed0..3d7dd7ec4a 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/checker/cost.go +++ b/tests/e2e/vendor/github.com/google/cel-go/checker/cost.go @@ -159,6 +159,11 @@ func (se SizeEstimate) Union(size SizeEstimate) SizeEstimate { return result } +// AsCost converts a size estimates to an equivalent cost estimate. +func (se SizeEstimate) AsCost() CostEstimate { + return se.MultiplyByCostFactor(1) +} + // CostEstimate represents an estimated cost range and provides add and multiply operations // that do not overflow. type CostEstimate struct { @@ -786,18 +791,26 @@ func (c *coster) functionCost(e ast.Expr, function, overloadID string, target *A return CallEstimate{CostEstimate: c.sizeOrUnknown(args[1]).MultiplyByCostFactor(1).Add(argCostSum())} } // O(nm) functions - case overloads.MatchesString: + case overloads.Matches, overloads.MatchesString: // https://swtch.com/~rsc/regexp/regexp1.html applies to RE2 implementation supported by CEL - if target != nil && len(args) == 1 { + var strNode, regexNode AstNode + if overloadID == overloads.MatchesString && target != nil && len(args) == 1 { + strNode = *target + regexNode = args[0] + } else if overloadID == overloads.Matches && target == nil && len(args) == 2 { + strNode = args[0] + regexNode = args[1] + } + if strNode != nil && regexNode != nil { // Add one to string length for purposes of cost calculation to prevent product of string and regex to be 0 // in case where string is empty but regex is still expensive. - strCost := c.sizeOrUnknown(*target).Add(SizeEstimate{Min: 1, Max: 1}).MultiplyByCostFactor(common.StringTraversalCostFactor) + strCost := c.sizeOrUnknown(strNode).Add(SizeEstimate{Min: 1, Max: 1}).MultiplyByCostFactor(common.StringTraversalCostFactor) // We don't know how many expressions are in the regex, just the string length (a huge // improvement here would be to somehow get a count the number of expressions in the regex or // how many states are in the regex state machine and use that to measure regex cost). // For now, we're making a guess that each expression in a regex is typically at least 4 chars // in length. - regexCost := c.sizeOrUnknown(args[0]).MultiplyByCostFactor(common.RegexStringLengthCostFactor) + regexCost := c.sizeOrUnknown(regexNode).MultiplyByCostFactor(common.RegexStringLengthCostFactor) return CallEstimate{CostEstimate: strCost.Multiply(regexCost).Add(argCostSum())} } case overloads.ContainsString: diff --git a/tests/e2e/vendor/github.com/google/cel-go/checker/env.go b/tests/e2e/vendor/github.com/google/cel-go/checker/env.go index d5ac05014e..477918c485 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/checker/env.go +++ b/tests/e2e/vendor/github.com/google/cel-go/checker/env.go @@ -74,6 +74,7 @@ type Env struct { declarations *Scopes aggLitElemType aggregateLiteralElementType filteredOverloadIDs map[string]struct{} + jsonFieldNames bool } // NewEnv returns a new *Env with the given parameters. @@ -104,6 +105,7 @@ func NewEnv(container *containers.Container, provider types.Provider, opts ...Op declarations: declarations, aggLitElemType: aggLitElemType, filteredOverloadIDs: filteredOverloadIDs, + jsonFieldNames: envOptions.jsonFieldNames, }, nil } @@ -129,45 +131,111 @@ func (e *Env) AddFunctions(declarations ...*decls.FunctionDecl) error { return formatError(errMsgs) } -// LookupIdent returns a Decl proto for typeName as an identifier in the Env. -// Returns nil if no such identifier is found in the Env. -func (e *Env) LookupIdent(name string) *decls.VariableDecl { +// newAttrResolution creates a new attribute resolution value. +func newAttrResolution(ident *decls.VariableDecl, requiresDisambiguation bool) *attributeResolution { + return &attributeResolution{ + VariableDecl: ident, + requiresDisambiguation: requiresDisambiguation, + } +} + +// attributeResolution wraps an existing variable and denotes whether disambiguation is needed +// during variable resolution. +type attributeResolution struct { + *decls.VariableDecl + + // requiresDisambiguation indicates the variable name should be dot-prefixed. + requiresDisambiguation bool +} + +// resolveSimpleIdent determines the resolved attribute for a single identifier. +func (e *Env) resolveSimpleIdent(name string) *attributeResolution { + local := e.lookupLocalIdent(name) + if local != nil && !strings.HasPrefix(name, ".") { + return newAttrResolution(local, false) + } for _, candidate := range e.container.ResolveCandidateNames(name) { - if ident := e.declarations.FindIdent(candidate); ident != nil { - return ident + if ident := e.lookupGlobalIdent(candidate); ident != nil { + return newAttrResolution(ident, local != nil) } + } + return nil +} - // Next try to import the name as a reference to a message type. If found, - // the declaration is added to the outest (global) scope of the - // environment, so next time we can access it faster. - if t, found := e.provider.FindStructType(candidate); found { - decl := decls.NewVariable(candidate, t) - e.declarations.AddIdent(decl) - return decl +// resolveQualifiedIdent determines the resolved attribute for a qualified identifier. +func (e *Env) resolveQualifiedIdent(qualifiers ...string) *attributeResolution { + if len(qualifiers) == 1 { + return e.resolveSimpleIdent(qualifiers[0]) + } + local := e.lookupLocalIdent(qualifiers[0]) + if local != nil && !strings.HasPrefix(qualifiers[0], ".") { + // this should resolve through a field selection rather than a qualified identifier + return nil + } + // The qualifiers are concatenated together to indicate the qualified name to search + // for as a global identifier. Since select expressions are resolved from leaf to root + // if the fully concatenated string doesn't match a global identifier, indicate that + // no variable was found to continue the traversal up to the next simpler name. + varName := strings.Join(qualifiers, ".") + for _, candidate := range e.container.ResolveCandidateNames(varName) { + if ident := e.lookupGlobalIdent(candidate); ident != nil { + return newAttrResolution(ident, local != nil) } + } + return nil +} +// resolveTypeIdent returns a Decl proto for typeName as an identifier in the Env. +// Returns nil if no such identifier is found in the Env. +func (e *Env) resolveTypeIdent(name string) *decls.VariableDecl { + for _, candidate := range e.container.ResolveCandidateNames(name) { + // Try to import the name as a reference to a message type. if i, found := e.provider.FindIdent(candidate); found { if t, ok := i.(*types.Type); ok { - decl := decls.NewVariable(candidate, types.NewTypeTypeWithParam(t)) - e.declarations.AddIdent(decl) - return decl + return decls.NewVariable(candidate, types.NewTypeTypeWithParam(t)) } } + // Next, try to find the struct type. + if t, found := e.provider.FindStructType(candidate); found { + return decls.NewVariable(candidate, t) + } + } + return nil +} - // Next try to import this as an enum value by splitting the name in a type prefix and - // the enum inside. - if enumValue := e.provider.EnumValue(candidate); enumValue.Type() != types.ErrType { - decl := decls.NewConstant(candidate, types.IntType, enumValue) - e.declarations.AddIdent(decl) - return decl +// lookupLocalIdent finds the variable candidate in a local scope, returning nil if +// the candidate variable name is not a local variable. +func (e *Env) lookupLocalIdent(candidate string) *decls.VariableDecl { + return e.declarations.FindLocalIdent(candidate) +} + +// lookupGlobalIdent finds a candidate variable name in the root scope, returning +// nil if the identifier is not in the global scope. +func (e *Env) lookupGlobalIdent(candidate string) *decls.VariableDecl { + // Try to resolve the global identifier first. + if ident := e.declarations.FindGlobalIdent(candidate); ident != nil { + return ident + } + // Next try to import the name as a reference to a message type. + if i, found := e.provider.FindIdent(candidate); found { + if t, ok := i.(*types.Type); ok { + return decls.NewVariable(candidate, types.NewTypeTypeWithParam(t)) } } + if t, found := e.provider.FindStructType(candidate); found { + return decls.NewVariable(candidate, t) + } + // Next try to import this as an enum value by splitting the name in a type prefix and + // the enum inside. + if enumValue := e.provider.EnumValue(candidate); enumValue.Type() != types.ErrType { + return decls.NewConstant(candidate, types.IntType, enumValue) + } return nil } -// LookupFunction returns a Decl proto for typeName as a function in env. +// lookupFunction returns a Decl proto for typeName as a function in env. // Returns nil if no such function is found in env. -func (e *Env) LookupFunction(name string) *decls.FunctionDecl { +func (e *Env) lookupFunction(name string) *decls.FunctionDecl { for _, candidate := range e.container.ResolveCandidateNames(name) { if fn := e.declarations.FindFunction(candidate); fn != nil { return fn @@ -207,12 +275,31 @@ func (e *Env) setFunction(fn *decls.FunctionDecl) []errorMsg { return errMsgs } +func maybeMergeConstant(a *decls.VariableDecl, b *decls.VariableDecl) (*decls.VariableDecl, errorMsg) { + if b.Value() != nil { + if a.Value() == nil { + return b, "" + } + eq, ok := a.Value().Equal(b.Value()).Value().(bool) + if ok && eq { + return a, "" + } + return nil, constantConflictError(b.Name()) + } + return a, "" +} + // addIdent adds the Decl to the declarations in the Env. // Returns a non-empty errorMsg if the identifier is already declared in the scope. func (e *Env) addIdent(decl *decls.VariableDecl) errorMsg { current := e.declarations.FindIdentInScope(decl.Name()) if current != nil { if current.DeclarationIsEquivalent(decl) { + decl, errMsg := maybeMergeConstant(current, decl) + if errMsg != "" { + return errMsg + } + e.declarations.AddIdent(decl) return "" } return overlappingIdentifierError(decl.Name()) @@ -259,6 +346,10 @@ func (e *Env) exitScope() *Env { // may be accumulated into an error at a later point in execution. type errorMsg string +func constantConflictError(name string) errorMsg { + return errorMsg(fmt.Sprintf("conflicting constant definitions for name '%s'", name)) +} + func overlappingIdentifierError(name string) errorMsg { return errorMsg(fmt.Sprintf("overlapping identifier for name '%s'", name)) } diff --git a/tests/e2e/vendor/github.com/google/cel-go/checker/options.go b/tests/e2e/vendor/github.com/google/cel-go/checker/options.go index 0560c3813c..af714323ba 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/checker/options.go +++ b/tests/e2e/vendor/github.com/google/cel-go/checker/options.go @@ -18,6 +18,7 @@ type options struct { crossTypeNumericComparisons bool homogeneousAggregateLiterals bool validatedDeclarations *Scopes + jsonFieldNames bool } // Option is a functional option for configuring the type-checker @@ -40,3 +41,11 @@ func ValidatedDeclarations(env *Env) Option { return nil } } + +// JSONFieldNames enables the use of json names instead of the standard protobuf snake_case field names +func JSONFieldNames(enabled bool) Option { + return func(opts *options) error { + opts.jsonFieldNames = enabled + return nil + } +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/checker/scopes.go b/tests/e2e/vendor/github.com/google/cel-go/checker/scopes.go index 8bb73ddb6a..9ae9832e15 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/checker/scopes.go +++ b/tests/e2e/vendor/github.com/google/cel-go/checker/scopes.go @@ -15,6 +15,8 @@ package checker import ( + "strings" + "github.com/google/cel-go/common/decls" ) @@ -76,6 +78,7 @@ func (s *Scopes) AddIdent(decl *decls.VariableDecl) { // found. // Note: The search is performed from innermost to outermost. func (s *Scopes) FindIdent(name string) *decls.VariableDecl { + name = strings.TrimPrefix(name, ".") if ident, found := s.scopes.idents[name]; found { return ident } @@ -89,12 +92,33 @@ func (s *Scopes) FindIdent(name string) *decls.VariableDecl { // nil if one does not exist. // Note: The search is only performed on the current scope and does not search outer scopes. func (s *Scopes) FindIdentInScope(name string) *decls.VariableDecl { + name = strings.TrimPrefix(name, ".") if ident, found := s.scopes.idents[name]; found { return ident } return nil } +// FindLocalIdent finds a locally scoped variable with a given name, ignoring the root scope. +func (s *Scopes) FindLocalIdent(name string) *decls.VariableDecl { + if s == nil || s.parent == nil { + return nil + } + if ident := s.FindIdentInScope(name); ident != nil { + return ident + } + return s.parent.FindLocalIdent(name) +} + +// FindGlobalIdent finds an identifier in the global scope, ignoring all local scopes. +func (s *Scopes) FindGlobalIdent(name string) *decls.VariableDecl { + scope := s + for scope.parent != nil { + scope = scope.parent + } + return scope.FindIdentInScope(name) +} + // SetFunction adds the function Decl to the current scope. // Note: Any previous entry for a function in the current scope with the same name is overwritten. func (s *Scopes) SetFunction(fn *decls.FunctionDecl) { @@ -105,6 +129,7 @@ func (s *Scopes) SetFunction(fn *decls.FunctionDecl) { // The search is performed from innermost to outermost. // Returns nil if no such function in Scopes. func (s *Scopes) FindFunction(name string) *decls.FunctionDecl { + name = strings.TrimPrefix(name, ".") if fn, found := s.scopes.functions[name]; found { return fn } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/ast/ast.go b/tests/e2e/vendor/github.com/google/cel-go/common/ast/ast.go index 62c09cfc64..c8f8f8a022 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/ast/ast.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/ast/ast.go @@ -16,6 +16,8 @@ package ast import ( + "slices" + "github.com/google/cel-go/common" "github.com/google/cel-go/common/types" "github.com/google/cel-go/common/types/ref" @@ -160,6 +162,34 @@ func MaxID(a *AST) int64 { return visitor.maxID + 1 } +// IDs returns the set of AST node IDs, including macro calls. +func (a *AST) IDs() map[int64]bool { + visitor := make(idVisitor) + PostOrderVisit(a.Expr(), visitor) + for _, call := range a.SourceInfo().MacroCalls() { + PostOrderVisit(call, visitor) + } + return visitor +} + +// NodeCount returns the total number of expression nodes in the AST, including macro calls. +func NodeCount(a *AST) int { + if a == nil { + return 0 + } + return len(a.IDs()) +} + +// ClearUnusedIDs removes IDs not used in the AST or macro calls from SourceInfo. +func (a *AST) ClearUnusedIDs() { + ids := a.IDs() + for id := range a.SourceInfo().OffsetRanges() { + if !ids[id] { + a.SourceInfo().ClearOffsetRange(id) + } + } +} + // Heights computes the heights of all AST expressions and returns a map from expression id to height. func Heights(a *AST) map[int64]int { visitor := make(heightVisitor) @@ -209,6 +239,11 @@ func CopySourceInfo(info *SourceInfo) *SourceInfo { for id, call := range info.macroCalls { callsCopy[id] = defaultFactory.CopyExpr(call) } + var extCopy []Extension + if len(info.extensions) > 0 { + extCopy = make([]Extension, len(info.extensions)) + copy(extCopy, info.extensions) + } return &SourceInfo{ syntax: info.syntax, desc: info.desc, @@ -217,6 +252,7 @@ func CopySourceInfo(info *SourceInfo) *SourceInfo { baseCol: info.baseCol, offsetRanges: rangesCopy, macroCalls: callsCopy, + extensions: extCopy, } } @@ -230,6 +266,26 @@ type SourceInfo struct { baseCol int32 offsetRanges map[int64]OffsetRange macroCalls map[int64]Expr + + // extensions indicate versioned optional features which affect the execution of one or more CEL component. + extensions []Extension +} + +// RenumberIDs performs an in-place update of the expression IDs within the SourceInfo. +func (s *SourceInfo) RenumberIDs(idGen IDGenerator) { + if s == nil { + return + } + oldIDs := []int64{} + for id := range s.offsetRanges { + oldIDs = append(oldIDs, id) + } + slices.Sort(oldIDs) + newRanges := make(map[int64]OffsetRange) + for _, id := range oldIDs { + newRanges[idGen(id)] = s.offsetRanges[id] + } + s.offsetRanges = newRanges } // SyntaxVersion returns the syntax version associated with the text expression. @@ -365,6 +421,12 @@ func (s *SourceInfo) ComputeOffset(line, col int32) int32 { line = s.baseLine + line col = s.baseCol + col } + return s.ComputeOffsetAbsolute(line, col) +} + +// ComputeOffsetAbsolute calculates the 0-based character offset from a 1-based line and 0-based column +// based on the absolute line and column of the SourceInfo. +func (s *SourceInfo) ComputeOffsetAbsolute(line, col int32) int32 { if line == 1 { return col } @@ -375,6 +437,34 @@ func (s *SourceInfo) ComputeOffset(line, col int32) int32 { return offset + col } +// Extensions returns the set of extensions present in the source. +func (s *SourceInfo) Extensions() []Extension { + var extensions []Extension + if s == nil { + return extensions + } + return s.extensions +} + +// HasExtension returns whether the source info contains the extension which satisfies the minimum version requirement. +// +// For an extension to be considered 'present' it must have the same major version as the minVersion and a minor version +// at least as great as the lowest minor version specified. +func (s *SourceInfo) HasExtension(id string, minVersion ExtensionVersion) bool { + for _, ext := range s.Extensions() { + return ext.ID == id && ext.Version.Major == minVersion.Major && ext.Version.Minor >= minVersion.Minor + } + return false +} + +// AddExtension adds an extension record into the SourceInfo. +func (s *SourceInfo) AddExtension(ext Extension) { + if s == nil { + return + } + s.extensions = append(s.extensions, ext) +} + // OffsetRange captures the start and stop positions of a section of text in the input expression. type OffsetRange struct { Start int32 @@ -444,6 +534,53 @@ func (r *ReferenceInfo) Equals(other *ReferenceInfo) bool { return true } +// NewExtension creates an Extension to be recorded on the SourceInfo. +func NewExtension(id string, version ExtensionVersion, components ...ExtensionComponent) Extension { + return Extension{ + ID: id, + Version: version, + Components: components, + } +} + +// Extension represents a versioned, optional feature present in the AST that affects CEL component behavior. +type Extension struct { + // ID indicates the unique name of the extension. + ID string + // Version indicates the major / minor version. + Version ExtensionVersion + // Components enumerates the CEL components affected by the feature. + Components []ExtensionComponent +} + +// NewExtensionVersion creates a new extension version with a major, minor version. +func NewExtensionVersion(major, minor int64) ExtensionVersion { + return ExtensionVersion{Major: major, Minor: minor} +} + +// ExtensionVersion represents a semantic version with a major and minor number. +type ExtensionVersion struct { + // Major version of the extension. + // All versions with the same major number are expected to be compatible with all minor version changes. + Major int64 + + // Minor version of the extension which indicates that some small non-semantic change has been made to + // the extension. + Minor int64 +} + +// ExtensionComponent indicates which CEL component is affected. +type ExtensionComponent int + +const ( + // ComponentParser means the feature affects expression parsing. + ComponentParser ExtensionComponent = iota + 1 + // ComponentTypeChecker means the feature affects type-checking. + ComponentTypeChecker + // ComponentRuntime alters program planning or evaluation of the AST. + ComponentRuntime +) + type maxIDVisitor struct { maxID int64 *baseVisitor @@ -533,3 +670,13 @@ func (hv heightVisitor) maxEntryHeight(entries ...EntryExpr) int { } return max } + +type idVisitor map[int64]bool + +func (v idVisitor) VisitExpr(e Expr) { + v[e.ID()] = true +} + +func (v idVisitor) VisitEntryExpr(e EntryExpr) { + v[e.ID()] = true +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/ast/conversion.go b/tests/e2e/vendor/github.com/google/cel-go/common/ast/conversion.go index 435d8f6547..380f8c1181 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/ast/conversion.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/ast/conversion.go @@ -27,6 +27,19 @@ import ( structpb "google.golang.org/protobuf/types/known/structpb" ) +var ( + pbComponentMap = map[exprpb.SourceInfo_Extension_Component]ExtensionComponent{ + exprpb.SourceInfo_Extension_COMPONENT_PARSER: ComponentParser, + exprpb.SourceInfo_Extension_COMPONENT_TYPE_CHECKER: ComponentTypeChecker, + exprpb.SourceInfo_Extension_COMPONENT_RUNTIME: ComponentRuntime, + } + componentPBMap = map[ExtensionComponent]exprpb.SourceInfo_Extension_Component{ + ComponentParser: exprpb.SourceInfo_Extension_COMPONENT_PARSER, + ComponentTypeChecker: exprpb.SourceInfo_Extension_COMPONENT_TYPE_CHECKER, + ComponentRuntime: exprpb.SourceInfo_Extension_COMPONENT_RUNTIME, + } +) + // ToProto converts an AST to a CheckedExpr protobouf. func ToProto(ast *AST) (*exprpb.CheckedExpr, error) { refMap := make(map[int64]*exprpb.Reference, len(ast.ReferenceMap())) @@ -534,6 +547,25 @@ func SourceInfoToProto(info *SourceInfo) (*exprpb.SourceInfo, error) { } sourceInfo.MacroCalls[id] = call } + for _, ext := range info.Extensions() { + var components []exprpb.SourceInfo_Extension_Component + for _, c := range ext.Components { + comp, found := componentPBMap[c] + if found { + components = append(components, comp) + } + } + ver := &exprpb.SourceInfo_Extension_Version{ + Major: ext.Version.Major, + Minor: ext.Version.Minor, + } + pbExt := &exprpb.SourceInfo_Extension{ + Id: ext.ID, + Version: ver, + AffectedComponents: components, + } + sourceInfo.Extensions = append(sourceInfo.Extensions, pbExt) + } return sourceInfo, nil } @@ -556,6 +588,23 @@ func ProtoToSourceInfo(info *exprpb.SourceInfo) (*SourceInfo, error) { } sourceInfo.SetMacroCall(id, call) } + for _, pbExt := range info.GetExtensions() { + var components []ExtensionComponent + for _, c := range pbExt.GetAffectedComponents() { + comp, found := pbComponentMap[*c.Enum()] + if found { + components = append(components, comp) + } + } + sourceInfo.AddExtension(NewExtension( + pbExt.GetId(), + NewExtensionVersion( + pbExt.GetVersion().GetMajor(), + pbExt.GetVersion().GetMinor(), + ), + components..., + )) + } return sourceInfo, nil } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/ast/navigable.go b/tests/e2e/vendor/github.com/google/cel-go/common/ast/navigable.go index 13e5777b50..364edfa3af 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/ast/navigable.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/ast/navigable.go @@ -181,6 +181,29 @@ func PreOrderVisit(expr Expr, visitor Visitor) { visit(expr, visitor, preOrder, 0, 0) } +// ExceedsDepth determines whether the AST contains expressions nested deeper than the specified +// maxDepth. The root expression has depth 0, so a maxDepth of 250 permits expressions nested up +// to and including 250 levels deep. +// +// The traversal is bounded: it descends at most maxDepth+1 levels, so it remains safe to call on +// adversarially deep inputs that could otherwise exhaust the Go stack during later checking or +// planning. A non-positive maxDepth disables the check and returns false. +func ExceedsDepth(a *AST, maxDepth int) bool { + if a == nil || maxDepth <= 0 { + return false + } + exceedsDepth := false + visitor := NewExprVisitor(func(e Expr) { + if nav, ok := e.(NavigableExpr); ok && nav.Depth() >= maxDepth { + exceedsDepth = true + } + }) + // Bound the walk to maxDepth+1 levels so it never recurses past the first level that exceeds + // the limit, keeping the check itself safe on the deep inputs it guards against. + visit(NavigateAST(a), visitor, postOrder, 0, maxDepth+1) + return exceedsDepth +} + type visitOrder int const ( diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/containers/container.go b/tests/e2e/vendor/github.com/google/cel-go/common/containers/container.go index fc146b6fc4..fcfcdfc3f4 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/containers/container.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/containers/container.go @@ -227,7 +227,7 @@ func Abbrevs(qualifiedNames ...string) ContainerOption { } alias := qn[ind+1:] var err error - c, err = aliasAs("abbreviation", qn, alias)(c) + c, err = aliasAs("abbreviation", qn, alias, true)(c) if err != nil { return nil, err } @@ -236,31 +236,32 @@ func Abbrevs(qualifiedNames ...string) ContainerOption { } } -// Alias associates a fully-qualified name with a user-defined alias. +// Alias associates a name with a user-defined alias. // // In general, Abbrevs is preferred to Alias since the names generated from the Abbrevs option // are more easily traced back to source code. The Alias option is useful for propagating alias // configuration from one Container instance to another, and may also be useful for remapping // poorly chosen protobuf message / package names. -// -// Note: all of the rules that apply to Abbrevs also apply to Alias. func Alias(qualifiedName, alias string) ContainerOption { - return aliasAs("alias", qualifiedName, alias) + return aliasAs("alias", qualifiedName, alias, false) } -func aliasAs(kind, qualifiedName, alias string) ContainerOption { +func aliasAs(kind, qualifiedName, alias string, requireQualified bool) ContainerOption { return func(c *Container) (*Container, error) { if len(alias) == 0 || strings.Contains(alias, ".") { return nil, fmt.Errorf( "%s must be non-empty and simple (not qualified): %s=%s", kind, kind, alias) } + if len(qualifiedName) == 0 { + return nil, fmt.Errorf("%s must refer to a valid name: %s", kind, qualifiedName) + } if qualifiedName[0:1] == "." { return nil, fmt.Errorf("qualified name must not begin with a leading '.': %s", qualifiedName) } ind := strings.LastIndex(qualifiedName, ".") - if ind <= 0 || ind == len(qualifiedName)-1 { + if ind == len(qualifiedName)-1 || (requireQualified && ind <= 0) { return nil, fmt.Errorf("%s must refer to a valid qualified name: %s", kind, qualifiedName) } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/debug/debug.go b/tests/e2e/vendor/github.com/google/cel-go/common/debug/debug.go index 75f5f0d636..fbc847f0c1 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/debug/debug.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/debug/debug.go @@ -312,3 +312,18 @@ func (w *debugWriter) removeIndent() { func (w *debugWriter) String() string { return w.buffer.String() } + +type idAdorner struct{} + +func (a *idAdorner) GetMetadata(elem any) string { + e, isExpr := elem.(ast.Expr) + if !isExpr { + return "" + } + return fmt.Sprintf("@id:%d ", e.ID()) +} + +// ToDebugStringWithIDs returns a string representation with AST node IDs. +func ToDebugStringWithIDs(e ast.Expr) string { + return ToAdornedDebugString(e, &idAdorner{}) +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/decls/decls.go b/tests/e2e/vendor/github.com/google/cel-go/common/decls/decls.go index a4a51c3f28..51cb689e58 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/decls/decls.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/decls/decls.go @@ -16,6 +16,7 @@ package decls import ( + "context" "fmt" "strings" @@ -270,7 +271,7 @@ func (f *FunctionDecl) AddOverload(overload *OverloadDecl) error { if oID == overload.ID() { if o.SignatureEquals(overload) && o.IsNonStrict() == overload.IsNonStrict() { // Allow redefinition of an overload implementation so long as the signatures match. - if overload.hasBinding() { + if overload.HasBinding() { f.overloads[oID] = overload } // Allow redefinition of the doc string. @@ -303,13 +304,25 @@ func (f *FunctionDecl) OverloadDecls() []*OverloadDecl { return overloads } +// HasSingletonBinding indicates whether the function has a singleton binding definition. +func (f *FunctionDecl) HasSingletonBinding() bool { + if f == nil { + return false + } + return f.singleton != nil +} + // HasLateBinding returns true if the function has late bindings. A function cannot mix late bindings with other bindings. func (f *FunctionDecl) HasLateBinding() bool { if f == nil { return false } + if f.singleton != nil && f.singleton.Async != nil { + return true + } for _, oID := range f.overloadOrdinals { - if f.overloads[oID].HasLateBinding() { + o := f.overloads[oID] + if o.HasLateBinding() { return true } } @@ -328,12 +341,13 @@ func (f *FunctionDecl) Bindings() ([]*functions.Overload, error) { for _, oID := range f.overloadOrdinals { o := f.overloads[oID] hasLateBinding = hasLateBinding || o.HasLateBinding() - if o.hasBinding() { + if o.HasBinding() { overload := &functions.Overload{ Operator: o.ID(), Unary: o.guardedUnaryOp(f.Name(), f.disableTypeGuards), Binary: o.guardedBinaryOp(f.Name(), f.disableTypeGuards), Function: o.guardedFunctionOp(f.Name(), f.disableTypeGuards), + Async: o.guardedAsyncOp(f.Name(), f.disableTypeGuards), OperandTrait: o.OperandTrait(), NonStrict: o.IsNonStrict(), } @@ -354,6 +368,7 @@ func (f *FunctionDecl) Bindings() ([]*functions.Overload, error) { Unary: f.singleton.Unary, Binary: f.singleton.Binary, Function: f.singleton.Function, + Async: f.singleton.Async, OperandTrait: f.singleton.OperandTrait, }, } @@ -372,6 +387,7 @@ func (f *FunctionDecl) Bindings() ([]*functions.Overload, error) { Unary: overloads[0].Unary, Binary: overloads[0].Binary, Function: overloads[0].Function, + Async: overloads[0].Async, NonStrict: overloads[0].NonStrict, OperandTrait: overloads[0].OperandTrait, }), nil @@ -530,6 +546,30 @@ func SingletonFunctionBinding(fn functions.FunctionOp, traits ...int) FunctionOp } } +// SingletonAsyncBinding creates a singleton async function definition to be used with all function overloads. +// The provided function is called in its own goroutine with the provided context. The function should +// block until the result is available, and the framework manages goroutine and channel lifecycle. +// +// Note, this approach works well if operand is expected to have a specific trait which it implements, +// e.g. traits.ContainerType. Otherwise, prefer per-overload async bindings. +func SingletonAsyncBinding(fn functions.BlockingAsyncOp, traits ...int) FunctionOpt { + trait := 0 + for _, t := range traits { + trait = trait | t + } + return func(f *FunctionDecl) (*FunctionDecl, error) { + if f.singleton != nil { + return nil, fmt.Errorf("function already has a singleton binding: %s", f.Name()) + } + f.singleton = &functions.Overload{ + Operator: f.Name(), + Async: wrapAsyncOp(fn), + OperandTrait: trait, + } + return f, nil + } +} + // Overload defines a new global overload with an overload id, argument types, and result type. Through the // use of OverloadOpt options, the overload may also be configured with a binding, an operand trait, and to // be non-strict. @@ -614,6 +654,8 @@ type OverloadDecl struct { binaryOp functions.BinaryOp // functionOp is a catch-all for zero-arity and three-plus arity functions. functionOp functions.FunctionOp + // asyncOp is an asynchronous function binding that returns a channel. + asyncOp functions.AsyncOp } // Examples returns a list of string examples for the overload. @@ -669,7 +711,7 @@ func (o *OverloadDecl) HasLateBinding() bool { if o == nil { return false } - return o.hasLateBinding + return o.hasLateBinding || o.asyncOp != nil } // OperandTrait returns the trait mask of the first operand to the overload call, e.g. @@ -740,9 +782,9 @@ func (o *OverloadDecl) SignatureOverlaps(other *OverloadDecl) bool { return argsOverlap } -// hasBinding indicates whether the overload already has a definition. -func (o *OverloadDecl) hasBinding() bool { - return o != nil && (o.unaryOp != nil || o.binaryOp != nil || o.functionOp != nil) +// HasBinding indicates whether the overload already has a definition. +func (o *OverloadDecl) HasBinding() bool { + return o != nil && (o.unaryOp != nil || o.binaryOp != nil || o.functionOp != nil || o.asyncOp != nil) } // guardedUnaryOp creates an invocation guard around the provided unary operator, if one is defined. @@ -784,6 +826,22 @@ func (o *OverloadDecl) guardedFunctionOp(funcName string, disableTypeGuards bool } } +// guardedAsyncOp creates an invocation guard around the provided async function binding, if one is provided. +func (o *OverloadDecl) guardedAsyncOp(funcName string, disableTypeGuards bool) functions.AsyncOp { + if o.asyncOp == nil { + return nil + } + return func(ctx context.Context, args ...ref.Val) <-chan ref.Val { + if !o.matchesRuntimeSignature(disableTypeGuards, args...) { + ch := make(chan ref.Val, 1) + ch <- MaybeNoSuchOverload(funcName, args...) + close(ch) + return ch + } + return o.asyncOp(ctx, args...) + } +} + // matchesRuntimeUnarySignature indicates whether the argument type is runtime assiganble to the overload's expected argument. func (o *OverloadDecl) matchesRuntimeUnarySignature(disableTypeGuards bool, arg ref.Val) bool { return matchRuntimeArgType(o.IsNonStrict(), disableTypeGuards, o.ArgTypes()[0], arg) && @@ -817,6 +875,8 @@ func matchRuntimeArgType(nonStrict, disableTypeGuards bool, argType *types.Type, if nonStrict && (disableTypeGuards || types.IsUnknownOrError(arg)) { return true } + // Note, early returns and unknown aggregation happen in the interpretable.go file; however, this check is here + // for defense in depth or for scenarios where someone manipulates bindings to offer their own dispatch logic. if types.IsUnknownOrError(arg) { return false } @@ -842,7 +902,7 @@ func OverloadExamples(examples ...string) OverloadOpt { // type-guard which ensures runtime type agreement between the overload signature and runtime argument types. func UnaryBinding(binding functions.UnaryOp) OverloadOpt { return func(o *OverloadDecl) (*OverloadDecl, error) { - if o.hasBinding() { + if o.HasBinding() { return nil, fmt.Errorf("overload already has a binding: %s", o.ID()) } if len(o.ArgTypes()) != 1 { @@ -860,7 +920,7 @@ func UnaryBinding(binding functions.UnaryOp) OverloadOpt { // type-guard which ensures runtime type agreement between the overload signature and runtime argument types. func BinaryBinding(binding functions.BinaryOp) OverloadOpt { return func(o *OverloadDecl) (*OverloadDecl, error) { - if o.hasBinding() { + if o.HasBinding() { return nil, fmt.Errorf("overload already has a binding: %s", o.ID()) } if len(o.ArgTypes()) != 2 { @@ -878,7 +938,7 @@ func BinaryBinding(binding functions.BinaryOp) OverloadOpt { // type-guard which ensures runtime type agreement between the overload signature and runtime argument types. func FunctionBinding(binding functions.FunctionOp) OverloadOpt { return func(o *OverloadDecl) (*OverloadDecl, error) { - if o.hasBinding() { + if o.HasBinding() { return nil, fmt.Errorf("overload already has a binding: %s", o.ID()) } if o.hasLateBinding { @@ -889,11 +949,45 @@ func FunctionBinding(binding functions.FunctionOp) OverloadOpt { } } +// AsyncBinding provides the implementation of an asynchronous overload. The provided function +// is called in its own goroutine with the provided context. The function should block until +// the result is available, and the framework manages goroutine and channel lifecycle. +// +// This follows the same pattern used by gRPC-Go and other major Go frameworks where user +// code is synchronous and the framework manages concurrency. +func AsyncBinding(fn functions.BlockingAsyncOp) OverloadOpt { + return func(o *OverloadDecl) (*OverloadDecl, error) { + if o.HasBinding() { + return nil, fmt.Errorf("overload already has a binding: %s", o.ID()) + } + if o.hasLateBinding { + return nil, fmt.Errorf("overload already has a late binding: %s", o.ID()) + } + o.asyncOp = wrapAsyncOp(fn) + return o, nil + } +} + +// wrapAsyncOp adapts a blocking function into the channel-based AsyncOp used internally. +// +// The blocking function is invoked synchronously and its result delivered on a buffered channel. +// The interpreter always invokes an AsyncOp from a dedicated goroutine, so running the blocking +// call inline here keeps the framework to a single goroutine per async call rather than spawning +// an additional one to bridge blocking-to-channel. +func wrapAsyncOp(fn functions.BlockingAsyncOp) functions.AsyncOp { + return func(ctx context.Context, args ...ref.Val) <-chan ref.Val { + ch := make(chan ref.Val, 1) + ch <- fn(ctx, args...) + close(ch) + return ch + } +} + // LateFunctionBinding indicates that the function has a binding which is not known at compile time. // This is useful for functions which have side-effects or are not deterministically computable. func LateFunctionBinding() OverloadOpt { return func(o *OverloadDecl) (*OverloadDecl, error) { - if o.hasBinding() { + if o.HasBinding() { return nil, fmt.Errorf("overload already has a binding: %s", o.ID()) } o.hasLateBinding = true diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/doc.go b/tests/e2e/vendor/github.com/google/cel-go/common/doc.go index 06eae3642a..c10742c284 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/doc.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/doc.go @@ -37,6 +37,8 @@ const ( DocMacro // DocExample represents example documentation. DocExample + // DocField represents documentation for a struct field. + DocField ) // Doc holds the documentation details for a specific program element like @@ -163,6 +165,17 @@ func NewExampleDoc(ex string) *Doc { } } +// NewFieldDoc creates a new Doc struct for documenting a struct field. +func NewFieldDoc(name, celType, description string, examples ...*Doc) *Doc { + return &Doc{ + Kind: DocField, + Name: name, + Type: celType, + Description: description, + Children: examples, + } +} + // Documentor is an interface for types that can provide their own documentation. type Documentor interface { // Documentation returns the documentation coded by the DocKind to assist diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/env/BUILD.bazel b/tests/e2e/vendor/github.com/google/cel-go/common/env/BUILD.bazel index aebe1e544c..261da924d4 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/env/BUILD.bazel +++ b/tests/e2e/vendor/github.com/google/cel-go/common/env/BUILD.bazel @@ -23,12 +23,14 @@ go_library( name = "go_default_library", srcs = [ "env.go", + "io.go", ], importpath = "github.com/google/cel-go/common/env", deps = [ "//common:go_default_library", "//common/decls:go_default_library", "//common/types:go_default_library", + "@in_yaml_go_yaml_v3//:go_default_library", ], ) @@ -37,6 +39,7 @@ go_test( size = "small", srcs = [ "env_test.go", + "io_test.go", ], data = glob(["testdata/**"]), embed = [":go_default_library"], @@ -45,6 +48,7 @@ go_test( "//common/operators:go_default_library", "//common/overloads:go_default_library", "//common/types:go_default_library", - "@in_gopkg_yaml_v3//:go_default_library", + "@com_github_google_go_cmp//cmp:go_default_library", + "@in_yaml_go_yaml_v3//:go_default_library", ], ) diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/env/env.go b/tests/e2e/vendor/github.com/google/cel-go/common/env/env.go index d848860c2c..936036ed21 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/env/env.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/env/env.go @@ -50,6 +50,7 @@ type Config struct { Functions []*Function `yaml:"functions,omitempty"` Validators []*Validator `yaml:"validators,omitempty"` Features []*Feature `yaml:"features,omitempty"` + Limits []*Limit `yaml:"limits,omitempty"` } // Validate validates the whole configuration is well-formed. @@ -92,6 +93,11 @@ func (c *Config) Validate() error { errs = append(errs, err) } } + for _, limit := range c.Limits { + if err := limit.Validate(); err != nil { + errs = append(errs, err) + } + } for _, val := range c.Validators { if err := val.Validate(); err != nil { errs = append(errs, err) @@ -122,7 +128,7 @@ func (c *Config) AddVariableDecls(vars ...*decls.VariableDecl) *Config { return c.AddVariables(convVars...) } -// AddVariables adds one or more vairables to the config. +// AddVariables adds one or more variables to the config. func (c *Config) AddVariables(vars ...*Variable) *Config { c.Variables = append(c.Variables, vars...) return c @@ -206,6 +212,12 @@ func (c *Config) AddFeatures(feats ...*Feature) *Config { return c } +// AddLimits appends one or more limits to the config. +func (c *Config) AddLimits(limits ...*Limit) *Config { + c.Limits = append(c.Limits, limits...) + return c +} + // NewImport returns a serializable import value from the qualified type name. func NewImport(name string) *Import { return &Import{Name: name} @@ -246,7 +258,9 @@ type Variable struct { // Type represents the type declaration for the variable. // - // Deprecated: use the embedded *TypeDesc fields directly. + // When serialized, 'type' is used for shorthand specifier string. + // + // Use GetType() for getting the effective type. Type *TypeDesc `yaml:"type,omitempty"` // TypeDesc is an embedded set of fields allowing for the specification of the Variable type. @@ -264,6 +278,9 @@ func (v *Variable) Validate() error { if err := v.GetType().Validate(); err != nil { return fmt.Errorf("invalid variable %q: %w", v.Name, err) } + if v.GetType().IsTypeParam { + return fmt.Errorf("invalid variable %q: variables cannot be type parameters", v.Name) + } return nil } @@ -734,6 +751,29 @@ func (feat *Feature) Validate() error { return nil } +// Limit represents a named limit in the CEL environment. This is used to control +// the complexity tolerated before failing parsing, type checking, or planning. +type Limit struct { + Name string `yaml:"name"` + Value int `yaml:"value"` +} + +// NewLimit creates a new limit. +func NewLimit(name string, value int) *Limit { + return &Limit{name, value} +} + +// Validate validates a limit. +func (l *Limit) Validate() error { + if l == nil { + return errors.New("invalid limit: nil") + } + if l.Name == "" { + return errors.New("invalid limit: missing name") + } + return nil +} + // NewTypeDesc describes a simple or complex type with parameters. func NewTypeDesc(typeName string, params ...*TypeDesc) *TypeDesc { return &TypeDesc{TypeName: typeName, Params: params} @@ -796,11 +836,47 @@ func (td *TypeDesc) Validate() error { return fmt.Errorf("invalid type: optional_type expects 1 parameter, got %d", len(td.Params)) } return td.Params[0].Validate() + case "type": + if len(td.Params) == 0 { + return nil + } + if len(td.Params) != 1 { + return fmt.Errorf("invalid type: type expects 0 or 1 parameters, got %d", len(td.Params)) + } + return td.Params[0].Validate() default: } return nil } +func formatSpecifierImpl(td *TypeDesc, sb *strings.Builder) { + if td.IsTypeParam { + sb.WriteRune('~') + sb.WriteString(td.TypeName) + return + } + sb.WriteString(td.TypeName) + l := len(td.Params) + if l < 1 { + return + } + sb.WriteRune('<') + for i, p := range td.Params { + formatSpecifierImpl(p, sb) + if i < l-1 { + sb.WriteString(", ") + } + } + sb.WriteRune('>') +} + +// SpecifierFormat returns the short text representation of the type. e.g. "map" +func (td *TypeDesc) SpecifierFormat() string { + var sb strings.Builder + formatSpecifierImpl(td, &sb) + return sb.String() +} + // AsCELType converts the serializable object to a *types.Type value. func (td *TypeDesc) AsCELType(tp types.Provider) (*types.Type, error) { err := td.Validate() @@ -810,6 +886,27 @@ func (td *TypeDesc) AsCELType(tp types.Provider) (*types.Type, error) { switch td.TypeName { case "dyn": return types.DynType, nil + // short aliases for WKTs + case "duration": + return types.DurationType, nil + case "timestamp": + return types.TimestampType, nil + case "any": + return types.AnyType, nil + case "null", "null_type": + return types.NullType, nil + case "bool_wrapper": + return types.NewNullableType(types.BoolType), nil + case "bytes_wrapper": + return types.NewNullableType(types.BytesType), nil + case "double_wrapper": + return types.NewNullableType(types.DoubleType), nil + case "int_wrapper": + return types.NewNullableType(types.IntType), nil + case "uint_wrapper": + return types.NewNullableType(types.UintType), nil + case "string_wrapper": + return types.NewNullableType(types.StringType), nil case "map": kt, err := td.Params[0].AsCELType(tp) if err != nil { @@ -832,6 +929,15 @@ func (td *TypeDesc) AsCELType(tp types.Provider) (*types.Type, error) { return nil, err } return types.NewOptionalType(et), nil + case "type": + if len(td.Params) == 0 { + return types.TypeType, nil + } + pt, err := td.Params[0].AsCELType(tp) + if err != nil { + return nil, err + } + return types.NewTypeTypeWithParam(pt), nil default: if td.IsTypeParam { return types.NewTypeParamType(td.TypeName), nil @@ -874,6 +980,15 @@ func SerializeTypeDesc(t *types.Type) *TypeDesc { for _, p := range t.Parameters() { params = append(params, SerializeTypeDesc(p)) } + // Special types, these aren't useful for describing environments. + switch t.Kind() { + case types.ErrorKind: + typeName = "*error*" + case types.UnknownKind: + typeName = "*unknown*" + case types.UnspecifiedKind: + typeName = "*unspecified type*" + } return NewTypeDesc(typeName, params...) } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/env/io.go b/tests/e2e/vendor/github.com/google/cel-go/common/env/io.go new file mode 100644 index 0000000000..ec126f9ce6 --- /dev/null +++ b/tests/e2e/vendor/github.com/google/cel-go/common/env/io.go @@ -0,0 +1,271 @@ +// Copyright 2026 Google LLC +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +package env + +import ( + "errors" + "fmt" + + "go.yaml.in/yaml/v3" +) + +type internalTypeDesc struct { + TypeName string `yaml:"type_name"` + Params []*TypeDesc `yaml:"params,omitempty"` + IsTypeParam bool `yaml:"is_type_param,omitempty"` +} + +// Embedding TypeDesc in variable causes issues with customizing +// unmarshalling / marshalling. Work around with a parallel type. +type internalVariable struct { + Name string `yaml:"name"` + Description string `yaml:"description,omitempty"` + + // Type represents the type declaration for the variable. + Type *TypeDesc `yaml:"type,omitempty"` + + TypeName string `yaml:"type_name"` + Params []*TypeDesc `yaml:"params,omitempty"` + IsTypeParam bool `yaml:"is_type_param,omitempty"` +} + +// UnmarshalYAML implements yaml.Unmarshal +func (v *Variable) UnmarshalYAML(n *yaml.Node) error { + buf := internalVariable{} + err := n.Decode(&buf) + if err != nil { + return err + } + v.Name = buf.Name + v.Description = buf.Description + if buf.TypeName != "" { + v.TypeDesc = &TypeDesc{ + TypeName: buf.TypeName, + Params: buf.Params, + IsTypeParam: buf.IsTypeParam, + } + } else if buf.Type != nil { + v.TypeDesc = buf.Type + } + return nil +} + +// MarshalYAML implements yaml.Marshaler +func (v *Variable) MarshalYAML() (any, error) { + // The presence of an unmarshaller alters the default marshaller behavior so + // provide a simple marshal implementation. + buf := internalVariable{ + Name: v.Name, + Description: v.Description, + } + if t := v.GetType(); t != nil { + buf.TypeName = t.TypeName + buf.Params = t.Params + buf.IsTypeParam = t.IsTypeParam + } + return &buf, nil +} + +// UnmarshalYAML implements yaml.Unmarshaler +func (td *TypeDesc) UnmarshalYAML(n *yaml.Node) error { + if td == nil { + return fmt.Errorf("unexpected Unmarshal for TypeDesc at: %d", n.Line) + } + if n.Kind == yaml.ScalarNode { + o, err := ParseTypeDesc(n.Value) + if err != nil { + return err + } + *td = *o + return nil + } + + if n.Kind != yaml.MappingNode { + return errors.New("unsupported yaml for TypeDesc") + } + + buf := internalTypeDesc{} + err := n.Decode(&buf) + if err != nil { + return err + } + td.TypeName = buf.TypeName + td.Params = buf.Params + td.IsTypeParam = buf.IsTypeParam + return nil +} + +type typeDescParser struct { + text string + pos int + length int +} + +// ParseTypeDesc parses a TypeDesc from the type specifier format: "map" +func ParseTypeDesc(text string) (*TypeDesc, error) { + p := &typeDescParser{text: text, length: len(text)} + res, err := p.parseTypeElem() + if err != nil { + return nil, fmt.Errorf("failed to parse type %q: %v", text, err) + } + p.skipWhitespace() + if p.pos < p.length { + return nil, fmt.Errorf("unexpected character %q at position %d in %q", p.text[p.pos], p.pos, text) + } + return res, nil +} + +func (p *typeDescParser) parseConcreteType() (*TypeDesc, error) { + id, err := p.parseNamespaceIdentifier() + if err != nil { + return nil, err + } + if p.pos < p.length && p.text[p.pos] == '<' { + p.pos++ // consume '<' + var params []*TypeDesc + for { + p.skipWhitespace() + param, err := p.parseTypeElem() + if err != nil { + return nil, err + } + params = append(params, param) + p.skipWhitespace() + if p.pos < p.length && p.text[p.pos] == ',' { + p.pos++ // consume ',' + continue + } + if p.pos < p.length && p.text[p.pos] == '>' { + p.pos++ // consume '>' + break + } + return nil, fmt.Errorf("expected ',' or '>' at position %d", p.pos) + } + return NewTypeDesc(id, params...), nil + } + return NewTypeDesc(id), nil +} + +func (p *typeDescParser) parseTypeElem() (*TypeDesc, error) { + p.skipWhitespace() + if p.pos < p.length && p.text[p.pos] == '~' { + p.pos++ // consume '~' + id, err := p.parseTypeParamIdent() + if err != nil { + return nil, err + } + return NewTypeParam(id), nil + } + return p.parseConcreteType() +} + +func (p *typeDescParser) parseNamespaceIdentifier() (string, error) { + p.skipWhitespace() + var id string + for p.pos < p.length && p.text[p.pos] != '<' { + c := p.text[p.pos] + if c == '.' { + id += "." + p.pos++ // consume '.' + } + ident, err := p.parseIdentifier() + if err != nil { + return "", err + } + id += ident + p.skipWhitespace() + if p.pos < p.length && p.text[p.pos] != '.' { + break + } + } + if id == "" { + return "", fmt.Errorf("missing identifier at position %d", p.pos) + } + return id, nil +} + +func (p *typeDescParser) parseIdentifier() (string, error) { + p.skipWhitespace() + if p.pos >= p.length { + return "", fmt.Errorf("unexpected end of input") + } + start := p.pos + c := p.text[p.pos] + if !isAlpha(c) && c != '_' { + return "", fmt.Errorf("identifier is expected, but %q was found at position %d", c, p.pos) + } + p.pos++ + for p.pos < p.length { + c := p.text[p.pos] + if !isAlphaNumeric(c) && c != '_' { + break + } + p.pos++ + } + return p.text[start:p.pos], nil +} + +func (p *typeDescParser) parseTypeParamIdent() (string, error) { + p.skipWhitespace() + if p.pos >= p.length { + return "", fmt.Errorf("unexpected end of input") + } + c := p.text[p.pos] + if !isAlpha(c) { + return "", fmt.Errorf("invalid type parameter identifier %q at position %d, must be a single character from A-Z", c, p.pos) + } + p.pos++ + if p.pos < p.length && isAlpha(p.text[p.pos]) { + return "", fmt.Errorf("invalid type param, must have a single alphabetic character at position %d", p.pos) + } + return string(c), nil +} + +func (p *typeDescParser) skipWhitespace() { + for p.pos < p.length && p.text[p.pos] == ' ' { + p.pos++ + } +} + +func isAlpha(c byte) bool { + return (c >= 'a' && c <= 'z') || (c >= 'A' && c <= 'Z') +} + +func isAlphaNumeric(c byte) bool { + return isAlpha(c) || (c >= '0' && c <= '9') +} + +// ConfigFromYAML returns a config from YAML source. +// +// Adds custom parsing logic for normalizing shorthand for specifiying some fields +// in a YAML document (mainly the type-specifier shorthand). +// +// Using yaml.Unmarshal with any implementation should be sufficient for most +// cases. +func ConfigFromYAML(data []byte) (*Config, error) { + c := &Config{} + e := yaml.Unmarshal(data, c) + if e != nil { + return nil, e + } + return c, nil +} + +// ConfigToYAML returns the config serialized to YAML +// +// Provided as a convenience wrapper around a tested YAML Marshaler. +func ConfigToYAML(c *Config) ([]byte, error) { + return yaml.Marshal(c) +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/functions/functions.go b/tests/e2e/vendor/github.com/google/cel-go/common/functions/functions.go index 67f4a5944e..0c00781d9c 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/functions/functions.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/functions/functions.go @@ -15,7 +15,11 @@ // Package functions defines the standard builtin functions supported by the interpreter package functions -import "github.com/google/cel-go/common/types/ref" +import ( + "context" + + "github.com/google/cel-go/common/types/ref" +) // Overload defines a named overload of a function, indicating an operand trait // which must be present on the first argument to the overload as well as one @@ -41,21 +45,37 @@ type Overload struct { // Binary defines the overload with a BinaryOp implementation. May be nil. Binary BinaryOp - // Function defines the overload with a FunctionOp implementation. May be - // nil. + // Function defines the overload with a FunctionOp implementation. May be nil. Function FunctionOp + // Async defines the overload with an AsyncOp implementation. May be nil. + Async AsyncOp + // NonStrict specifies whether the Overload will tolerate arguments that // are types.Err or types.Unknown. NonStrict bool } // UnaryOp is a function that takes a single value and produces an output. -type UnaryOp func(value ref.Val) ref.Val +type UnaryOp func(ref.Val) ref.Val // BinaryOp is a function that takes two values and produces an output. -type BinaryOp func(lhs ref.Val, rhs ref.Val) ref.Val +type BinaryOp func(ref.Val, ref.Val) ref.Val // FunctionOp is a function with accepts zero or more arguments and produces // a value or error as a result. -type FunctionOp func(values ...ref.Val) ref.Val +type FunctionOp func(...ref.Val) ref.Val + +// AsyncOp is a function that accepts zero or more arguments and produces +// a value or error asynchronously via a channel. +// +// AsyncOp is an internal interface intended for use by CEL to manage goroutines and +// channels associated with async calls. For public API usage, use BlockingAsyncOp. +// Implementers should listen for context cancellation on the provided context for +// resource cleanup. +type AsyncOp func(context.Context, ...ref.Val) <-chan ref.Val + +// BlockingAsyncOp is a function that accepts zero or more arguments and blocks until +// the result is available. When used with AsyncBinding, the framework runs the function +// in its own goroutine and manages channel lifecycle internally. +type BlockingAsyncOp func(context.Context, ...ref.Val) ref.Val diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/overloads/overloads.go b/tests/e2e/vendor/github.com/google/cel-go/common/overloads/overloads.go index 9d50f4367b..0e3a724495 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/overloads/overloads.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/overloads/overloads.go @@ -291,7 +291,6 @@ const ( const ( DurationToDuration = "duration_to_duration" StringToDuration = "string_to_duration" - IntToDuration = "int64_to_duration" ) // Convert to dyn diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/runes/buffer.go b/tests/e2e/vendor/github.com/google/cel-go/common/runes/buffer.go index 021198224d..58dd33e13e 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/runes/buffer.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/runes/buffer.go @@ -16,6 +16,7 @@ package runes import ( + "fmt" "strings" "unicode/utf8" ) @@ -113,45 +114,64 @@ var _ Buffer = &supplementalBuffer{} var nilBuffer = &emptyBuffer{} +// SizeLimitError indicates that the input exceeded the configured code point limit. +type SizeLimitError struct { + Size int + Limit int +} + +func (e *SizeLimitError) Error() string { + return fmt.Sprintf("expression code point size exceeds limit: size: %d, limit %d", e.Size, e.Limit) +} + // NewBuffer returns an efficient implementation of Buffer for the given text based on the ranges of // the encoded code points contained within. -// -// Code points are represented as an array of byte, uint16, or rune. This approach ensures that -// each index represents a code point by itself without needing to use an array of rune. At first -// we assume all code points are less than or equal to '\u007f'. If this holds true, the -// underlying storage is a byte array containing only ASCII characters. If we encountered a code -// point above this range but less than or equal to '\uffff' we allocate a uint16 array, copy the -// elements of previous byte array to the uint16 array, and continue. If this holds true, the -// underlying storage is a uint16 array containing only Unicode characters in the Basic Multilingual -// Plane. If we encounter a code point above '\uffff' we allocate an rune array, copy the previous -// elements of the byte or uint16 array, and continue. The underlying storage is an rune array -// containing any Unicode character. func NewBuffer(data string) Buffer { - buf, _ := newBuffer(data, false) + buf, _, _ := newBufferWithLimit(data, false, -1) return buf } // NewBufferAndLineOffsets returns an efficient implementation of Buffer for the given text based on // the ranges of the encoded code points contained within, as well as returning the line offsets. -// -// Code points are represented as an array of byte, uint16, or rune. This approach ensures that -// each index represents a code point by itself without needing to use an array of rune. At first -// we assume all code points are less than or equal to '\u007f'. If this holds true, the -// underlying storage is a byte array containing only ASCII characters. If we encountered a code -// point above this range but less than or equal to '\uffff' we allocate a uint16 array, copy the -// elements of previous byte array to the uint16 array, and continue. If this holds true, the -// underlying storage is a uint16 array containing only Unicode characters in the Basic Multilingual -// Plane. If we encounter a code point above '\uffff' we allocate an rune array, copy the previous -// elements of the byte or uint16 array, and continue. The underlying storage is an rune array -// containing any Unicode character. func NewBufferAndLineOffsets(data string) (Buffer, []int32) { - return newBuffer(data, true) + buf, offs, _ := newBufferWithLimit(data, true, -1) + return buf, offs +} + +// NewBufferAndLineOffsetsWithLimit returns an efficient implementation of Buffer for the given text +// and enforces a code point limit while constructing the buffer. +func NewBufferAndLineOffsetsWithLimit(data string, limit int) (Buffer, []int32, error) { + if limit < 0 || len(data) <= limit { + return newBufferWithLimit(data, true, -1) + } + return newBufferWithLimit(data, true, limit) +} + +func countRemainingCodePoints(data string, idx int, count int) int { + for idx < len(data) { + _, s := utf8.DecodeRuneInString(data[idx:]) + idx += s + count++ + } + return count } -func newBuffer(data string, lines bool) (Buffer, []int32) { +func newBufferWithLimit(data string, lines bool, limit int) (Buffer, []int32, error) { if len(data) == 0 { - return nilBuffer, []int32{0} + return nilBuffer, []int32{0}, nil + } + if limit >= 0 && len(data) > limit { + size := countRemainingCodePoints(data, 0, 0) + if size > limit { + return nil, nil, &SizeLimitError{ + Size: size, + Limit: limit, + } + } } + + // The resulting buffers store one element per code point, so the worst case + // element count never exceeds len(data). var ( idx = 0 off int32 = 0 @@ -195,7 +215,8 @@ func newBuffer(data string, lines bool) (Buffer, []int32) { } return &asciiBuffer{ arr: buf8, - }, offs + }, offs, nil + copy16: for idx < len(data) { r, s := utf8.DecodeRuneInString(data[idx:]) @@ -222,7 +243,8 @@ copy16: } return &basicBuffer{ arr: buf16, - }, offs + }, offs, nil + copy32: for idx < len(data) { r, s := utf8.DecodeRuneInString(data[idx:]) @@ -238,5 +260,5 @@ copy32: } return &supplementalBuffer{ arr: buf32, - }, offs + }, offs, nil } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/source.go b/tests/e2e/vendor/github.com/google/cel-go/common/source.go index ec79cb5454..9187e9b5c3 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/source.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/source.go @@ -74,6 +74,12 @@ func NewTextSource(text string) Source { return NewStringSource(text, "") } +// NewTextSourceWithLimit creates a new Source from the input text string while +// enforcing a maximum code point count when needed. +func NewTextSourceWithLimit(text string, limit int) (Source, error) { + return NewStringSourceWithLimit(text, "", limit) +} + // NewStringSource creates a new Source from the given contents and description. func NewStringSource(contents string, description string) Source { // Compute line offsets up front as they are referred to frequently. @@ -85,6 +91,23 @@ func NewStringSource(contents string, description string) Source { } } +// NewStringSourceWithLimit creates a new Source from the given contents and +// description while enforcing a maximum code point count when needed. +func NewStringSourceWithLimit(contents string, description string, limit int) (Source, error) { + if limit < 0 || len(contents) <= limit { + return NewStringSource(contents, description), nil + } + buf, offs, err := runes.NewBufferAndLineOffsetsWithLimit(contents, limit) + if err != nil { + return nil, err + } + return &sourceImpl{ + Buffer: buf, + description: description, + lineOffsets: offs, + }, nil +} + // NewInfoSource creates a new Source from a SourceInfo. func NewInfoSource(info *exprpb.SourceInfo) Source { return &sourceImpl{ diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/stdlib/standard.go b/tests/e2e/vendor/github.com/google/cel-go/common/stdlib/standard.go index 4040a4f5c5..d2313bef1b 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/stdlib/standard.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/stdlib/standard.go @@ -16,6 +16,7 @@ package stdlib import ( + "math" "strconv" "strings" "time" @@ -310,6 +311,9 @@ func init() { argTypes(types.DurationType, types.DurationType), types.BoolType, decls.OverloadExamples(`duration('1ms') < duration('1s') // true`)), decls.SingletonBinaryBinding(func(lhs, rhs ref.Val) ref.Val { + if isNaN(lhs) || isNaN(rhs) { + return types.False + } cmp := lhs.(traits.Comparer).Compare(rhs) if cmp == types.IntNegOne { return types.True @@ -367,6 +371,9 @@ func init() { argTypes(types.DurationType, types.DurationType), types.BoolType, decls.OverloadExamples(`duration('1ms') <= duration('1s') // true`)), decls.SingletonBinaryBinding(func(lhs, rhs ref.Val) ref.Val { + if isNaN(lhs) || isNaN(rhs) { + return types.False + } cmp := lhs.(traits.Comparer).Compare(rhs) if cmp == types.IntNegOne || cmp == types.IntZero { return types.True @@ -424,6 +431,9 @@ func init() { argTypes(types.DurationType, types.DurationType), types.BoolType, decls.OverloadExamples(`duration('1ms') > duration('1us') // true`)), decls.SingletonBinaryBinding(func(lhs, rhs ref.Val) ref.Val { + if isNaN(lhs) || isNaN(rhs) { + return types.False + } cmp := lhs.(traits.Comparer).Compare(rhs) if cmp == types.IntOne { return types.True @@ -481,6 +491,9 @@ func init() { argTypes(types.DurationType, types.DurationType), types.BoolType, decls.OverloadExamples(`duration('60s') >= duration('1m') // true`)), decls.SingletonBinaryBinding(func(lhs, rhs ref.Val) ref.Val { + if isNaN(lhs) || isNaN(rhs) { + return types.False + } cmp := lhs.(traits.Comparer).Compare(rhs) if cmp == types.IntOne || cmp == types.IntZero { return types.True @@ -605,8 +618,6 @@ func init() { decls.Overload(overloads.DurationToDuration, argTypes(types.DurationType), types.DurationType, decls.OverloadExamples(`duration(duration('1s')) // duration('1s')`), decls.UnaryBinding(identity)), - decls.Overload(overloads.IntToDuration, argTypes(types.IntType), types.DurationType, - decls.UnaryBinding(convertToType(types.DurationType))), decls.Overload(overloads.StringToDuration, argTypes(types.StringType), types.DurationType, decls.OverloadExamples(`duration('1h2m3s') // duration('3723s')`), decls.UnaryBinding(convertToType(types.DurationType)))), @@ -928,6 +939,11 @@ func noBinaryOverrides(rhs, lhs ref.Val) ref.Val { return types.NoSuchOverloadErr() } +func isNaN(val ref.Val) bool { + d, ok := val.(types.Double) + return ok && math.IsNaN(float64(d)) +} + func noFunctionOverrides(args ...ref.Val) ref.Val { return types.NoSuchOverloadErr() } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/BUILD.bazel b/tests/e2e/vendor/github.com/google/cel-go/common/types/BUILD.bazel index 7082bc7550..37d4df4954 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/BUILD.bazel +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/BUILD.bazel @@ -40,7 +40,6 @@ go_library( "//common/types/pb:go_default_library", "//common/types/ref:go_default_library", "//common/types/traits:go_default_library", - "@com_github_stoewer_go_strcase//:go_default_library", "@dev_cel_expr//:expr", "@org_golang_google_genproto_googleapis_api//expr/v1alpha1:go_default_library", "@org_golang_google_protobuf//encoding/protojson:go_default_library", diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/bool.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/bool.go index 1f9e107392..5f1e4573e1 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/bool.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/bool.go @@ -69,7 +69,7 @@ func (b Bool) ConvertToNative(typeDesc reflect.Type) (any, error) { case boolWrapperType: // Convert the bool to a wrapperspb.BoolValue. return wrapperspb.Bool(bool(b)), nil - case jsonValueType: + case JSONValueType: // Return the bool as a new structpb.Value. return structpb.NewBoolValue(bool(b)), nil default: diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/bytes.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/bytes.go index b59e1fc208..2eefb5d7f7 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/bytes.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/bytes.go @@ -44,7 +44,10 @@ func (b Bytes) Add(other ref.Val) ref.Val { if !ok { return ValOrErr(other, "no such overload") } - return append(b, otherBytes...) + sum := make([]byte, 0, len(b)+len(otherBytes)) + sum = append(sum, b...) + sum = append(sum, otherBytes...) + return Bytes(sum) } // Compare implements traits.Comparer interface method by lexicographic ordering. @@ -79,7 +82,7 @@ func (b Bytes) ConvertToNative(typeDesc reflect.Type) (any, error) { case byteWrapperType: // Convert the bytes to a wrapperspb.BytesValue. return wrapperspb.Bytes([]byte(b)), nil - case jsonValueType: + case JSONValueType: // CEL follows the proto3 to JSON conversion by encoding bytes to a string via base64. // The encoding below matches the golang 'encoding/json' behavior during marshaling, // which uses base64.StdEncoding. diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/double.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/double.go index 1e7de9d6e1..02abfee2dc 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/double.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/double.go @@ -89,7 +89,7 @@ func (d Double) ConvertToNative(typeDesc reflect.Type) (any, error) { case floatWrapperType: // Convert to a wrapperspb.FloatValue (with truncation). return wrapperspb.Float(float32(d)), nil - case jsonValueType: + case JSONValueType: // Note, there are special cases for proto3 to json conversion that // expect the floating point value to be converted to a NaN, // Infinity, or -Infinity string values, but the jsonpb string diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/duration.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/duration.go index be58d567ed..2207147734 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/duration.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/duration.go @@ -106,7 +106,7 @@ func (d Duration) ConvertToNative(typeDesc reflect.Type) (any, error) { case durationValueType: // Unwrap the CEL value to its underlying proto value. return dpb.New(d.Duration), nil - case jsonValueType: + case JSONValueType: // CEL follows the proto3 to JSON conversion. // Note, using jsonpb would wrap the result in extra double quotes. v := d.ConvertToType(StringType) diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/err.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/err.go index 17ab1a95e5..3216ff1c4a 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/err.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/err.go @@ -113,6 +113,9 @@ func ValOrErr(val ref.Val, format string, args ...any) ref.Val { // WrapErr wraps an existing Go error value into a CEL Err value. func WrapErr(err error) ref.Val { + if err, ok := err.(*Err); ok { + return err + } return &Err{error: err} } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/int.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/int.go index 0ac1997b70..60d5a71606 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/int.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/int.go @@ -120,7 +120,7 @@ func (i Int) ConvertToNative(typeDesc reflect.Type) (any, error) { case int64WrapperType: // Convert the value to a wrapperspb.Int64Value. return wrapperspb.Int64(int64(i)), nil - case jsonValueType: + case JSONValueType: // The proto-to-JSON conversion rules would convert all 64-bit integer values to JSON // decimal strings. Because CEL ints might come from the automatic widening of 32-bit // values in protos, the JSON type is chosen dynamically based on the value. diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/json_value.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/json_value.go index 13a4efe7ad..90acfe7df3 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/json_value.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/json_value.go @@ -22,8 +22,9 @@ import ( // JSON type constants representing the reflected types of protobuf JSON values. var ( - jsonValueType = reflect.TypeOf(&structpb.Value{}) - jsonListValueType = reflect.TypeOf(&structpb.ListValue{}) - jsonStructType = reflect.TypeOf(&structpb.Struct{}) - jsonNullType = reflect.TypeOf(structpb.NullValue_NULL_VALUE) + // JSONValueType describes the protobuf native type for a JSON value. + JSONValueType = reflect.TypeFor[*structpb.Value]() + JSONListType = reflect.TypeFor[*structpb.ListValue]() + JSONStructType = reflect.TypeFor[*structpb.Struct]() + JSONNullType = reflect.TypeFor[structpb.NullValue]() ) diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/list.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/list.go index 8c023f8910..028770ed68 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/list.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/list.go @@ -126,16 +126,7 @@ func (l *baseList) Add(other ref.Val) ref.Val { if !ok { return MaybeNoSuchOverloadErr(other) } - if l.Size() == IntZero { - return other - } - if otherList.Size() == IntZero { - return l - } - return &concatList{ - Adapter: l.Adapter, - prevList: l, - nextList: otherList} + return newConcatList(l.Adapter, l, otherList) } // Contains implements the traits.Container interface method. @@ -153,6 +144,9 @@ func (l *baseList) Contains(elem ref.Val) ref.Val { // ConvertToNative implements the ref.Val interface method. func (l *baseList) ConvertToNative(typeDesc reflect.Type) (any, error) { + if typeDesc == reflect.TypeFor[any]() { + typeDesc = reflect.TypeFor[[]any]() + } // If the underlying list value is assignable to the reflected type return it. if reflect.TypeOf(l.value).AssignableTo(typeDesc) { return l.value, nil @@ -164,19 +158,19 @@ func (l *baseList) ConvertToNative(typeDesc reflect.Type) (any, error) { // Attempt to convert the list to a set of well known protobuf types. switch typeDesc { case anyValueType: - json, err := l.ConvertToNative(jsonListValueType) + json, err := l.ConvertToNative(JSONListType) if err != nil { return nil, err } return anypb.New(json.(proto.Message)) - case jsonValueType, jsonListValueType: + case JSONValueType, JSONListType: jsonValues, err := l.ConvertToNative(reflect.TypeOf([]*structpb.Value{})) if err != nil { return nil, err } jsonList := &structpb.ListValue{Values: jsonValues.([]*structpb.Value)} - if typeDesc == jsonListValueType { + if typeDesc == JSONListType { return jsonList, nil } return structpb.NewListValue(jsonList), nil @@ -350,9 +344,27 @@ func (l *mutableList) ToImmutableList() traits.Lister { // The `Adapter` enables native type to CEL type conversions. type concatList struct { Adapter - value any - prevList traits.Lister - nextList traits.Lister + value any + prevList traits.Lister + nextList traits.Lister + cachedSize ref.Val +} + +func newConcatList(adapter Adapter, prevList, nextList traits.Lister) ref.Val { + prevSize := prevList.Size().(Int) + nextSize := nextList.Size().(Int) + if prevSize == IntZero { + return nextList.(ref.Val) + } + if nextSize == IntZero { + return prevList.(ref.Val) + } + return &concatList{ + Adapter: adapter, + prevList: prevList, + nextList: nextList, + cachedSize: prevSize.Add(nextSize), + } } // Add implements the traits.Adder interface method. @@ -361,16 +373,7 @@ func (l *concatList) Add(other ref.Val) ref.Val { if !ok { return MaybeNoSuchOverloadErr(other) } - if l.Size() == IntZero { - return other - } - if otherList.Size() == IntZero { - return l - } - return &concatList{ - Adapter: l.Adapter, - prevList: l, - nextList: otherList} + return newConcatList(l.Adapter, l, otherList) } // Contains implements the traits.Container interface method. @@ -474,7 +477,7 @@ func (l *concatList) Iterator() traits.Iterator { // Size implements the traits.Sizer interface method. func (l *concatList) Size() ref.Val { - return l.prevList.Size().(Int).Add(l.nextList.Size()) + return l.cachedSize } // String converts the concatenated list to a human-readable string. diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/map.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/map.go index b33096197c..e4d6f76574 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/map.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/map.go @@ -19,8 +19,8 @@ import ( "reflect" "sort" "strings" + "unicode" - "github.com/stoewer/go-strcase" "google.golang.org/protobuf/proto" "google.golang.org/protobuf/reflect/protoreflect" @@ -156,6 +156,9 @@ func (m *baseMap) Contains(index ref.Val) ref.Val { func (m *baseMap) ConvertToNative(typeDesc reflect.Type) (any, error) { // If the map is already assignable to the desired type return it, e.g. interfaces and // maps with the same key value types. + if typeDesc == reflect.TypeFor[any]() { + typeDesc = reflect.TypeFor[map[any]any]() + } if reflect.TypeOf(m.value).AssignableTo(typeDesc) { return m.value, nil } @@ -164,19 +167,19 @@ func (m *baseMap) ConvertToNative(typeDesc reflect.Type) (any, error) { } switch typeDesc { case anyValueType: - json, err := m.ConvertToNative(jsonStructType) + json, err := m.ConvertToNative(JSONStructType) if err != nil { return nil, err } return anypb.New(json.(proto.Message)) - case jsonValueType, jsonStructType: + case JSONValueType, JSONStructType: jsonEntries, err := m.ConvertToNative(reflect.TypeOf(map[string]*structpb.Value{})) if err != nil { return nil, err } jsonMap := &structpb.Struct{Fields: jsonEntries.(map[string]*structpb.Value)} - if typeDesc == jsonStructType { + if typeDesc == JSONStructType { return jsonMap, nil } return structpb.NewStructValue(jsonMap), nil @@ -226,7 +229,7 @@ func (m *baseMap) ConvertToNative(typeDesc reflect.Type) (any, error) { return nil, fieldName.(*Err) } name := string(fieldName.(String)) - name = strcase.UpperCamelCase(name) + name = upperCamelCase(name) fieldRef := nativeStruct.FieldByName(name) if !fieldRef.IsValid() { return nil, fmt.Errorf("type conversion error, no such field '%s' in type '%v'", name, typeDesc) @@ -703,12 +706,12 @@ func (m *protoMap) ConvertToNative(typeDesc reflect.Type) (any, error) { // maps with the same key value types. switch typeDesc { case anyValueType: - json, err := m.ConvertToNative(jsonStructType) + json, err := m.ConvertToNative(JSONStructType) if err != nil { return nil, err } return anypb.New(json.(proto.Message)) - case jsonValueType, jsonStructType: + case JSONValueType, JSONStructType: jsonEntries, err := m.ConvertToNative(reflect.TypeOf(map[string]*structpb.Value{})) if err != nil { @@ -716,7 +719,7 @@ func (m *protoMap) ConvertToNative(typeDesc reflect.Type) (any, error) { } jsonMap := &structpb.Struct{ Fields: jsonEntries.(map[string]*structpb.Value)} - if typeDesc == jsonStructType { + if typeDesc == JSONStructType { return jsonMap, nil } return structpb.NewStructValue(jsonMap), nil @@ -1036,3 +1039,32 @@ func InsertMapKeyValue(m traits.Mapper, k, v ref.Val) ref.Val { } return NewErr("insert failed: key %v already exists", k) } + +func upperCamelCase(s string) string { + var newStr strings.Builder + s = strings.TrimSpace(s) + var prev rune + for _, curr := range s { + if prev == 0 || isDelim(prev) { + if !isDelim(curr) { + newStr.WriteRune(unicode.ToUpper(curr)) + } + } else if !isDelim(curr) { + if isLower(prev) { + newStr.WriteRune(curr) + } else { + newStr.WriteRune(unicode.ToLower(curr)) + } + } + prev = curr + } + return newStr.String() +} + +func isDelim(r rune) bool { + return r == '_' || r == '-' +} + +func isLower(r rune) bool { + return r >= 'a' && r <= 'z' +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/null.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/null.go index 2c0297fe65..671e1ee5c0 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/null.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/null.go @@ -45,7 +45,7 @@ func (n Null) ConvertToNative(typeDesc reflect.Type) (any, error) { switch typeDesc.Kind() { case reflect.Int32: switch typeDesc { - case jsonNullType: + case JSONNullType: return structpb.NullValue_NULL_VALUE, nil case nullReflectType: return n, nil @@ -55,18 +55,18 @@ func (n Null) ConvertToNative(typeDesc reflect.Type) (any, error) { case anyValueType: // Convert to a JSON-null before packing to an Any field since the enum value for JSON // null cannot be packed directly. - pb, err := n.ConvertToNative(jsonValueType) + pb, err := n.ConvertToNative(JSONValueType) if err != nil { return nil, err } return anypb.New(pb.(proto.Message)) - case jsonValueType: + case JSONValueType: return structpb.NewNullValue(), nil case boolWrapperType, byteWrapperType, doubleWrapperType, floatWrapperType, int32WrapperType, int64WrapperType, stringWrapperType, uint32WrapperType, uint64WrapperType, durationValueType, timestampValueType, protoIfaceType: return nil, nil - case jsonListValueType, jsonStructType: + case JSONListType, JSONStructType: // skip handling default: if typeDesc.Implements(protoIfaceType) { diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/object.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/object.go index 776f6954a9..bb2a09e879 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/object.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/object.go @@ -71,7 +71,7 @@ func (o *protoObj) ConvertToNative(typeDesc reflect.Type) (any, error) { return srcPB, nil } return anypb.New(srcPB) - case jsonValueType: + case JSONValueType: // Marshal the proto to JSON first, and then rehydrate as protobuf.Value as there is no // support for direct conversion from proto.Message to protobuf.Value. bytes, err := protojson.Marshal(srcPB) @@ -187,8 +187,14 @@ func (o *protoObj) format(sb *strings.Builder) { if i > 0 { sb.WriteString(", ") } - sb.WriteString(fmt.Sprintf("%s: ", field.Name())) - formatTo(sb, o.Get(String(field.Name()))) + name := String(field.Name()) + if field.IsExtension() { + name = String(field.FullName()) + fmt.Fprintf(sb, "`%s`: ", name) + } else { + fmt.Fprintf(sb, "%s: ", name) + } + formatTo(sb, o.Get(name)) } sb.WriteString("}") } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/optional.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/optional.go index b8685ebf55..0d861823d2 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/optional.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/optional.go @@ -25,7 +25,7 @@ import ( var ( // OptionalType indicates the runtime type of an optional value. - OptionalType = NewOpaqueType("optional_type") + OptionalType = NewOpaqueType("optional_type", DynType) // OptionalNone is a sentinel value which is used to indicate an empty optional value. OptionalNone = &Optional{} @@ -59,6 +59,9 @@ func (o *Optional) ConvertToNative(typeDesc reflect.Type) (any, error) { if !o.HasValue() { return nil, errors.New("optional.none() dereference") } + if typeDesc == reflect.TypeFor[*Optional]() { + return o, nil + } return o.value.ConvertToNative(typeDesc) } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/file.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/file.go index e323afb1df..3a8bdf0b24 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/file.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/file.go @@ -32,7 +32,7 @@ func newFileDescription(fileDesc protoreflect.FileDescriptor, pbdb *Db) (*FileDe } types := make(map[string]*TypeDescription) for name, msgType := range metadata.msgTypes { - types[name] = newTypeDescription(name, msgType, pbdb.extensions) + types[name] = newTypeDescription(name, msgType, pbdb) } fileExtMap := make(extensionMap) for typeName, extensions := range metadata.msgExtensionMap { @@ -42,12 +42,13 @@ func newFileDescription(fileDesc protoreflect.FileDescriptor, pbdb *Db) (*FileDe } for _, ext := range extensions { extDesc := dynamicpb.NewExtensionType(ext).TypeDescriptor() - messageExtMap[string(ext.FullName())] = newFieldDescription(extDesc) + messageExtMap[string(ext.FullName())] = newFieldDescription(extDesc, pbdb.jsonFieldNames) } fileExtMap[typeName] = messageExtMap } return &FileDescription{ name: fileDesc.Path(), + desc: fileDesc, types: types, enums: enums, }, fileExtMap @@ -56,6 +57,7 @@ func newFileDescription(fileDesc protoreflect.FileDescriptor, pbdb *Db) (*FileDe // FileDescription holds a map of all types and enum values declared within a proto file. type FileDescription struct { name string + desc protoreflect.FileDescriptor types map[string]*TypeDescription enums map[string]*EnumValueDescription } @@ -68,6 +70,7 @@ func (fd *FileDescription) Copy(pbdb *Db) *FileDescription { } return &FileDescription{ name: fd.name, + desc: fd.desc, types: typesCopy, enums: fd.enums, } @@ -78,6 +81,11 @@ func (fd *FileDescription) GetName() string { return fd.name } +// FileDescriptor returns the proto file descriptor associated with the file representation. +func (fd *FileDescription) FileDescriptor() protoreflect.FileDescriptor { + return fd.desc +} + // GetEnumDescription returns an EnumDescription for a qualified enum value // name declared within the .proto file. func (fd *FileDescription) GetEnumDescription(enumName string) (*EnumValueDescription, bool) { diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/pb.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/pb.go index eadebcb04e..c6fdfc6957 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/pb.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/pb.go @@ -42,6 +42,9 @@ type Db struct { files []*FileDescription // extensions contains the mapping between a given type name, extension name and its FieldDescription extensions map[string]map[string]*FieldDescription + + // jsonFieldNames indicates whether json-style names are supported as proto field names. + jsonFieldNames bool } // extensionsMap is a type alias to a map[typeName]map[extensionName]*FieldDescription @@ -81,13 +84,27 @@ func Merge(dstPB, srcPB proto.Message) error { return nil } +// DbOption modifies feature flags enabled on the proto database. +type DbOption func(*Db) *Db + +// JSONFieldNames configures the Db to support proto field accesses by their JSON names. +func JSONFieldNames(enabled bool) DbOption { + return func(db *Db) *Db { + db.jsonFieldNames = enabled + return db + } +} + // NewDb creates a new `pb.Db` with an empty type name to file description map. -func NewDb() *Db { +func NewDb(opts ...DbOption) *Db { pbdb := &Db{ revFileDescriptorMap: make(map[string]*FileDescription), files: []*FileDescription{}, extensions: make(extensionMap), } + for _, o := range opts { + pbdb = o(pbdb) + } // The FileDescription objects in the default db contain lazily initialized TypeDescription // values which may point to the state contained in the DefaultDb irrespective of this shallow // copy; however, the type graph for a field is idempotently computed, and is guaranteed to @@ -100,9 +117,15 @@ func NewDb() *Db { return pbdb } +// JSONFieldNames indicates whether the database is configured for proto field accesses by JSON names. +func (pbdb *Db) JSONFieldNames() bool { + return pbdb.jsonFieldNames +} + // Copy creates a copy of the current database with its own internal descriptor mapping. func (pbdb *Db) Copy() *Db { copy := NewDb() + copy.jsonFieldNames = pbdb.jsonFieldNames for _, fd := range pbdb.files { hasFile := false for _, fd2 := range copy.files { diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/type.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/type.go index bdd474c95a..8d7d1b299f 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/type.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/pb/type.go @@ -40,68 +40,92 @@ type description interface { // newTypeDescription produces a TypeDescription value for the fully-qualified proto type name // with a given descriptor. -func newTypeDescription(typeName string, desc protoreflect.MessageDescriptor, extensions extensionMap) *TypeDescription { +func newTypeDescription(typeName string, desc protoreflect.MessageDescriptor, pbdb *Db) *TypeDescription { msgType := dynamicpb.NewMessageType(desc) msgZero := dynamicpb.NewMessage(desc) fieldMap := map[string]*FieldDescription{} + jsonFieldMap := map[string]*FieldDescription{} fields := desc.Fields() for i := 0; i < fields.Len(); i++ { f := fields.Get(i) - fieldMap[string(f.Name())] = newFieldDescription(f) + fd := newFieldDescription(f, pbdb.jsonFieldNames) + fieldMap[fd.Name()] = fd + if pbdb.jsonFieldNames { + jsonFieldMap[fd.JSONName()] = fd + } } return &TypeDescription{ - typeName: typeName, - desc: desc, - msgType: msgType, - fieldMap: fieldMap, - extensions: extensions, - reflectType: reflectTypeOf(msgZero), - zeroMsg: zeroValueOf(msgZero), + typeName: typeName, + desc: desc, + msgType: msgType, + fieldMap: fieldMap, + jsonFieldMap: jsonFieldMap, + extensions: pbdb.extensions, + reflectType: reflectTypeOf(msgZero), + zeroMsg: zeroValueOf(msgZero), + jsonFieldNames: pbdb.jsonFieldNames, } } // TypeDescription is a collection of type metadata relevant to expression // checking and evaluation. type TypeDescription struct { - typeName string - desc protoreflect.MessageDescriptor - msgType protoreflect.MessageType - fieldMap map[string]*FieldDescription - extensions extensionMap - reflectType reflect.Type - zeroMsg proto.Message + typeName string + desc protoreflect.MessageDescriptor + msgType protoreflect.MessageType + fieldMap map[string]*FieldDescription + jsonFieldMap map[string]*FieldDescription + extensions extensionMap + reflectType reflect.Type + zeroMsg proto.Message + // jsonFieldNames indicates if the type's fields are accessible via their JSON names. + jsonFieldNames bool } // Copy copies the type description with updated references to the Db. func (td *TypeDescription) Copy(pbdb *Db) *TypeDescription { return &TypeDescription{ - typeName: td.typeName, - desc: td.desc, - msgType: td.msgType, - fieldMap: td.fieldMap, - extensions: pbdb.extensions, - reflectType: td.reflectType, - zeroMsg: td.zeroMsg, + typeName: td.typeName, + desc: td.desc, + msgType: td.msgType, + fieldMap: td.fieldMap, + jsonFieldMap: td.jsonFieldMap, + extensions: pbdb.extensions, + reflectType: td.reflectType, + zeroMsg: td.zeroMsg, + jsonFieldNames: td.jsonFieldNames, } } // FieldMap returns a string field name to FieldDescription map. func (td *TypeDescription) FieldMap() map[string]*FieldDescription { + if td.jsonFieldNames { + return td.jsonFieldMap + } return td.fieldMap } // FieldByName returns (FieldDescription, true) if the field name is declared within the type. func (td *TypeDescription) FieldByName(name string) (*FieldDescription, bool) { + if td.jsonFieldNames { + fd, found := td.jsonFieldMap[name] + if found { + return fd, true + } + } + fd, found := td.fieldMap[name] if found { return fd, true } + extFieldMap, found := td.extensions[td.typeName] - if !found { - return nil, false + if found { + fd, found = extFieldMap[name] + return fd, found } - fd, found = extFieldMap[name] - return fd, found + + return nil, false } // MaybeUnwrap accepts a proto message as input and unwraps it to a primitive CEL type if possible. @@ -132,7 +156,7 @@ func (td *TypeDescription) Zero() proto.Message { } // newFieldDescription creates a new field description from a protoreflect.FieldDescriptor. -func newFieldDescription(fieldDesc protoreflect.FieldDescriptor) *FieldDescription { +func newFieldDescription(fieldDesc protoreflect.FieldDescriptor, jsonFieldNames bool) *FieldDescription { var reflectType reflect.Type var zeroMsg proto.Message switch fieldDesc.Kind() { @@ -168,15 +192,16 @@ func newFieldDescription(fieldDesc protoreflect.FieldDescriptor) *FieldDescripti } var keyType, valType *FieldDescription if fieldDesc.IsMap() { - keyType = newFieldDescription(fieldDesc.MapKey()) - valType = newFieldDescription(fieldDesc.MapValue()) + keyType = newFieldDescription(fieldDesc.MapKey(), jsonFieldNames) + valType = newFieldDescription(fieldDesc.MapValue(), jsonFieldNames) } return &FieldDescription{ - desc: fieldDesc, - KeyType: keyType, - ValueType: valType, - reflectType: reflectType, - zeroMsg: zeroValueOf(zeroMsg), + desc: fieldDesc, + KeyType: keyType, + ValueType: valType, + reflectType: reflectType, + zeroMsg: zeroValueOf(zeroMsg), + jsonFieldName: jsonFieldNames, } } @@ -187,9 +212,10 @@ type FieldDescription struct { // ValueType holds the value FieldDescription for map fields. ValueType *FieldDescription - desc protoreflect.FieldDescriptor - reflectType reflect.Type - zeroMsg proto.Message + desc protoreflect.FieldDescriptor + reflectType reflect.Type + zeroMsg proto.Message + jsonFieldName bool } // CheckedType returns the type-definition used at type-check time. @@ -218,6 +244,14 @@ func (fd *FieldDescription) Descriptor() protoreflect.FieldDescriptor { return fd.desc } +// Documentation returns the documentation for the field. +func (fd *FieldDescription) Documentation() string { + if parentFile := fd.desc.ParentFile(); parentFile != nil { + return parentFile.SourceLocations().ByDescriptor(fd.desc).LeadingComments + } + return "" +} + // IsSet returns whether the field is set on the target value, per the proto presence conventions // of proto2 or proto3 accordingly. // @@ -321,11 +355,20 @@ func (fd *FieldDescription) MaybeUnwrapDynamic(msg protoreflect.Message) (any, b return unwrapDynamic(fd, msg) } -// Name returns the CamelCase name of the field within the proto-based struct. +// Name returns the snake_case name of the field within the proto-based struct. func (fd *FieldDescription) Name() string { return string(fd.desc.Name()) } +// JSONName returns the JSON name of the field, if present. +func (fd *FieldDescription) JSONName() string { + jsonName := fd.desc.JSONName() + if len(jsonName) != 0 { + return jsonName + } + return string(fd.desc.Name()) +} + // ProtoKind returns the protobuf reflected kind of the field. func (fd *FieldDescription) ProtoKind() protoreflect.Kind { return fd.desc.Kind() @@ -472,7 +515,7 @@ func unwrap(desc description, msg proto.Message) (any, bool, error) { } return v.GetValue(), true, nil } - return msg, false, nil + return unwrapDynamic(desc, msg.ProtoReflect()) } // unwrapDynamic unwraps a reflected protobuf Message value. diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/provider.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/provider.go index 936a4e28b2..1bb2c11ed7 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/provider.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/provider.go @@ -81,6 +81,9 @@ type FieldType struct { // GetFrom retrieves the field value on the input object, if set. GetFrom ref.FieldGetter + + // IsJSONField + IsJSONField bool } // Registry provides type information for a set of registered types. @@ -93,11 +96,40 @@ type Registry struct { // provider which can create new instances of the provided message or any // message that proto depends upon in its FileDescriptor. func NewRegistry(types ...proto.Message) (*Registry, error) { - p := &Registry{ + return NewProtoRegistry(ProtoTypeDefs(types...)) +} + +// RegistryOption configures the behavior of the registry. +type RegistryOption func(r *Registry) (*Registry, error) + +// JSONFieldNames configures JSON field name support within the protobuf types in the registry. +func JSONFieldNames(enabled bool) RegistryOption { + return func(r *Registry) (*Registry, error) { + err := r.WithJSONFieldNames(enabled) + return r, err + } +} + +// ProtoTypeDefs creates a RegistryOption which registers the individual proto messages with the registry. +func ProtoTypeDefs(types ...proto.Message) RegistryOption { + return func(r *Registry) (*Registry, error) { + for _, msgType := range types { + err := r.RegisterMessage(msgType) + if err != nil { + return nil, err + } + } + return r, nil + } +} + +// NewProtoRegistry creates a proto-based registry with a set of configurable options. +func NewProtoRegistry(opts ...RegistryOption) (*Registry, error) { + r := &Registry{ revTypeMap: make(map[string]*Type), pbdb: pb.NewDb(), } - err := p.RegisterType( + err := r.RegisterType( BoolType, BytesType, DoubleType, @@ -114,19 +146,19 @@ func NewRegistry(types ...proto.Message) (*Registry, error) { return nil, err } // This block ensures that the well-known protobuf types are registered by default. - for _, fd := range p.pbdb.FileDescriptions() { - err = p.registerAllTypes(fd) + for _, fd := range r.pbdb.FileDescriptions() { + err = r.registerAllTypes(fd) if err != nil { return nil, err } } - for _, msgType := range types { - err = p.RegisterMessage(msgType) + for _, opt := range opts { + r, err = opt(r) if err != nil { return nil, err } } - return p, nil + return r, nil } // NewEmptyRegistry returns a registry which is completely unconfigured. @@ -149,6 +181,28 @@ func (p *Registry) Copy() *Registry { return copy } +// JSONFieldNames returns whether json field names are enabled in this registry. +func (p *Registry) JSONFieldNames() bool { + return p.pbdb.JSONFieldNames() +} + +// WithJSONFieldNames configures the registry with the JSON field name support enabled or disabled. +func (p *Registry) WithJSONFieldNames(enabled bool) error { + if enabled == p.pbdb.JSONFieldNames() { + return nil + } + newDB := pb.NewDb(pb.JSONFieldNames(enabled)) + files := p.pbdb.FileDescriptions() + for _, fd := range files { + _, err := newDB.RegisterDescriptor(fd.FileDescriptor()) + if err != nil { + return err + } + } + p.pbdb = newDB + return nil +} + // EnumValue returns the numeric value of the given enum value name. func (p *Registry) EnumValue(enumName string) ref.Val { enumVal, found := p.pbdb.DescribeEnum(enumName) @@ -172,9 +226,11 @@ func (p *Registry) FindFieldType(structType, fieldName string) (*ref.FieldType, return nil, false } return &ref.FieldType{ - Type: field.CheckedType(), - IsSet: field.IsSet, - GetFrom: field.GetFrom}, true + Type: field.CheckedType(), + IsSet: field.IsSet, + GetFrom: field.GetFrom, + IsJSONField: p.pbdb.JSONFieldNames() && fieldName == field.JSONName(), + }, true } // FindStructFieldNames returns the set of field names for the given struct type, @@ -206,9 +262,25 @@ func (p *Registry) FindStructFieldType(structType, fieldName string) (*FieldType return nil, false } return &FieldType{ - Type: fieldDescToCELType(field), - IsSet: field.IsSet, - GetFrom: field.GetFrom}, true + Type: fieldDescToCELType(field), + IsSet: field.IsSet, + GetFrom: field.GetFrom, + IsJSONField: p.pbdb.JSONFieldNames() && fieldName == field.JSONName(), + }, true +} + +// FindStructFieldDescription returns documentation for a field if available. +// Returns false if the field could not be found. +func (p *Registry) FindStructFieldDescription(structType, fieldName string) (string, bool) { + msgType, found := p.pbdb.DescribeType(structType) + if !found { + return "", false + } + field, found := msgType.FieldByName(fieldName) + if !found { + return "", false + } + return field.Documentation(), true } // FindIdent takes a qualified identifier name and returns a ref.Val if one exists. @@ -268,9 +340,8 @@ func (p *Registry) NewValue(structType string, fields map[string]ref.Val) ref.Va return NewErr("unknown type '%s'", structType) } msg := td.New() - fieldMap := td.FieldMap() for name, value := range fields { - field, found := fieldMap[name] + field, found := td.FieldByName(name) if !found { return NewErr("no such field: %s", name) } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/ref/provider.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/ref/provider.go index b9820023d6..ed5ab06625 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/ref/provider.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/ref/provider.go @@ -93,6 +93,9 @@ type FieldType struct { // GetFrom retrieves the field value on the input object, if set. GetFrom FieldGetter + + // IsJSONFIeld indicates that the field was accessed via its JSON name. + IsJSONField bool } // FieldTester is used to test field presence on an input object. diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/string.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/string.go index 8aad4701cc..1335903a7b 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/string.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/string.go @@ -72,7 +72,7 @@ func (s String) ConvertToNative(typeDesc reflect.Type) (any, error) { case anyValueType: // Primitives must be wrapped before being set on an Any field. return anypb.New(wrapperspb.String(string(s))) - case jsonValueType: + case JSONValueType: // Convert to a protobuf representation of a JSON String. return structpb.NewStringValue(string(s)), nil case stringWrapperType: @@ -122,7 +122,11 @@ func (s String) ConvertToType(typeVal ref.Type) ref.Val { return durationOf(d) } case TimestampType: - if t, err := time.Parse(time.RFC3339, s.Value().(string)); err == nil { + str := s.Value().(string) + if !isStrictRFC3339(str) { + return NewErr("invalid RFC 3339 timestamp %q", str) + } + if t, err := time.Parse(time.RFC3339, str); err == nil { if t.Unix() < minUnixTime || t.Unix() > maxUnixTime { return celErrTimestampOverflow } diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/timestamp.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/timestamp.go index f7be585916..62a020d970 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/timestamp.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/timestamp.go @@ -17,9 +17,11 @@ package types import ( "fmt" "reflect" + "regexp" "strconv" "strings" "time" + "unicode" "github.com/google/cel-go/common/overloads" "github.com/google/cel-go/common/types/ref" @@ -52,6 +54,79 @@ const ( maxUnixTime int64 = 253402300799 ) +// strictRFC3339Pattern gates the strings accepted by the `timestamp()` overload. +// time.Parse accepts inputs that RFC 3339 forbids: a ',' fractional-second +// separator, single-digit time fields, and numeric offsets whose hours exceed +// 23 or minutes exceed 59. Those slip past unnoticed and shift the parsed +// instant, so they are rejected before time.Parse runs. Month and day are held +// to the grammar ranges 01-12 and 01-31; the remaining calendar validation +// (day-of-month vs. month, leap years) is left to time.Parse. +// +// isStrictRFC3339 is the implementation used on the conversion path; the pattern +// is retained as the reference the scan is conformance tested against. +var strictRFC3339Pattern = regexp.MustCompile( + `^\d{4}-(0[1-9]|1[0-2])-(0[1-9]|[12]\d|3[01])[Tt]([01]\d|2[0-3]):[0-5]\d:([0-5]\d|60)(\.\d+)?([Zz]|[+-]([01]\d|2[0-3]):[0-5]\d)$`) + +// isStrictRFC3339 reports whether s matches strictRFC3339Pattern, hand-rolled to +// keep the conversion path off the regexp engine and its per-call cost. +func isStrictRFC3339(s string) bool { + // Shortest accepted form is "2006-01-02T15:04:05Z" (20 bytes): a 19-byte + // fixed-width date-time followed by at least a 'Z'/'z' zone. + if len(s) < 20 { + return false + } + // full-date "T" partial-time + if !isYear(s[0:4]) || !isChar(s[4], '-') || !isMonth(s[5:7]) || !isChar(s[7], '-') || !isDay(s[8:10]) || + !isChar(s[10], 't') || + !isHour(s[11:13]) || !isChar(s[13], ':') || !isMinute(s[14:16]) || !isChar(s[16], ':') || !isSecond(s[17:19]) { + return false + } + rest := s[19:] + // optional fractional seconds: "." 1*DIGIT + if rest[0] == '.' { + rest = rest[1:] + n := 0 + for n < len(rest) && isDigit(rest[n]) { + n++ + } + if n == 0 { + return false + } + rest = rest[n:] + } + // time-offset: "Z" or ("+" / "-") time-hour ":" time-minute + if len(rest) == 1 { + return isChar(rest[0], 'z') + } + if len(rest) == 6 && (rest[0] == '+' || rest[0] == '-') { + return isHour(rest[1:3]) && isChar(rest[3], ':') && isMinute(rest[4:6]) + } + return false +} + +func isDigit(c byte) bool { return c >= '0' && c <= '9' } + +// isChar reports whether got is want, case-insensitively; want must be lower case. +func isChar(got, want byte) bool { + g, w := rune(got), rune(want) + return g == w || unicode.ToLower(g) == w +} + +// inRange reports whether s is all decimal digits and its value lies in [lo, hi]. +func inRange(s string, lo, hi uint64) bool { + u, err := strconv.ParseUint(s, 10, 64) + return err == nil && u >= lo && u <= hi +} + +func isYear(s string) bool { return inRange(s, 0, 9999) } +func isMonth(s string) bool { return inRange(s, 1, 12) } +func isDay(s string) bool { return inRange(s, 1, 31) } +func isHour(s string) bool { return inRange(s, 0, 23) } +func isMinute(s string) bool { return inRange(s, 0, 59) } + +// isSecond permits 60 for a leap second. +func isSecond(s string) bool { return inRange(s, 0, 60) } + // Add implements traits.Adder.Add. func (t Timestamp) Add(other ref.Val) ref.Val { switch other.Type() { @@ -91,7 +166,7 @@ func (t Timestamp) ConvertToNative(typeDesc reflect.Type) (any, error) { case anyValueType: // Pack the underlying time as a tpb.Timestamp into an Any value. return anypb.New(tpb.New(t.Time)) - case jsonValueType: + case JSONValueType: // CEL follows the proto3 to JSON conversion which formats as an RFC 3339 encoded JSON // string. v := t.ConvertToType(StringType) @@ -302,6 +377,9 @@ func timeZone(tz ref.Val, visitor timestampVisitor) timestampVisitor { if err != nil { return WrapErr(err) } + if min < 0 || min > 59 { + return WrapErr(fmt.Errorf("timezone offset minutes out of range [0, 59]: %s", val)) + } var offset int if string(val[0]) == "-" { offset = hr*60 - min diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/uint.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/uint.go index a93405a134..91d5369daa 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/uint.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/uint.go @@ -100,7 +100,7 @@ func (i Uint) ConvertToNative(typeDesc reflect.Type) (any, error) { case anyValueType: // Primitives must be wrapped before being set on an Any field. return anypb.New(wrapperspb.UInt64(uint64(i))) - case jsonValueType: + case JSONValueType: // JSON can accurately represent 32-bit uints as floating point values. if i.isJSONSafe() { return structpb.NewNumberValue(float64(i)), nil diff --git a/tests/e2e/vendor/github.com/google/cel-go/common/types/unknown.go b/tests/e2e/vendor/github.com/google/cel-go/common/types/unknown.go index 9dd2b25794..f43aff18e0 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/common/types/unknown.go +++ b/tests/e2e/vendor/github.com/google/cel-go/common/types/unknown.go @@ -16,6 +16,7 @@ package types import ( "fmt" + "maps" "math" "reflect" "sort" @@ -181,6 +182,20 @@ func (u *Unknown) GetAttributeTrails(id int64) ([]*AttributeTrail, bool) { return trails, found } +// HasUnknownFunction returns whether any of the attribute trails contained within the unknown +// are unspecified. Unspecified attributes typically indicate an unresolved function call +// or operation, rather than a missing variable. +func (u *Unknown) HasUnknownFunction() bool { + for _, trails := range u.attributeTrails { + for _, t := range trails { + if t.variable == "" { + return true + } + } + } + return false +} + // Contains returns true if the input unknown is a subset of the current unknown. func (u *Unknown) Contains(other *Unknown) bool { for id, otherTrails := range other.attributeTrails { @@ -283,9 +298,7 @@ func MergeUnknowns(unk1, unk2 *Unknown) *Unknown { out := &Unknown{ attributeTrails: make(map[int64][]*AttributeTrail, len(unk1.attributeTrails)+len(unk2.attributeTrails)), } - for id, ats := range unk1.attributeTrails { - out.attributeTrails[id] = ats - } + maps.Copy(out.attributeTrails, unk1.attributeTrails) for id, ats := range unk2.attributeTrails { existing, found := out.attributeTrails[id] if !found { diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/BUILD.bazel b/tests/e2e/vendor/github.com/google/cel-go/ext/BUILD.bazel index ef4f4ec3db..f362fd97b8 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/BUILD.bazel +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/BUILD.bazel @@ -9,6 +9,7 @@ go_library( srcs = [ "bindings.go", "comprehensions.go", + "costs.go", "encoders.go", "extension_option_factory.go", "formatting.go", @@ -17,6 +18,7 @@ go_library( "lists.go", "math.go", "native.go", + "network.go", "protos.go", "regex.go", "sets.go", @@ -39,6 +41,7 @@ go_library( "//common/types/traits:go_default_library", "//interpreter:go_default_library", "//parser:go_default_library", + "@org_golang_google_protobuf//encoding/protojson:go_default_library", "@org_golang_google_protobuf//proto:go_default_library", "@org_golang_google_protobuf//reflect/protoreflect:go_default_library", "@org_golang_google_protobuf//types/known/structpb", @@ -60,6 +63,7 @@ go_test( "lists_test.go", "math_test.go", "native_test.go", + "network_test.go", "protos_test.go", "regex_test.go", "sets_test.go", diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/README.md b/tests/e2e/vendor/github.com/google/cel-go/ext/README.md index 41ae6a3143..6133b5cbf3 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/README.md +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/README.md @@ -33,6 +33,8 @@ Encoding utilities for marshalling data into standardized representations. ### Base64.Decode +**Introduced in version 0 (cost support in version 1)** + Decodes base64-encoded string to bytes. This function will return an error if the string input is not @@ -47,6 +49,8 @@ Examples: ### Base64.Encode +**Introduced in version 0 (cost support in version 1)** + Encodes bytes to a base64-encoded string. base64.encode() -> @@ -55,6 +59,20 @@ Example: base64.encode(b'hello') // return 'aGVsbG8=' +### JSON.Encode + +Introduced at version: 1 + +Encodes a CEL value to a JSON string. + + json.encode() -> + +Examples: + + json.encode('hello') // return '"hello"' + json.encode([1, 'two', true]) // return '[1,"two",true]' + json.encode({'items': [1, 'two', false]}) // return '{"items":[1,"two",false]}' + ## Math Math helper macros and functions. @@ -66,6 +84,8 @@ intended; however, there is some chance for collision. ### Math.Greatest +**Introduced in version 0 (cost support in version 3)** + Returns the greatest valued number present in the arguments to the macro. Greatest is a variable argument count macro which must take at least one @@ -93,6 +113,8 @@ Examples: ### Math.Least +**Introduced in version 0 (cost support in version 3)** + Returns the least valued number present in the arguments to the macro. Least is a variable argument count macro which must take at least one @@ -931,10 +953,10 @@ type will cause a key collision. Elements in the map may optionally be filtered according to a predicate expression, where elements that satisfy the predicate are transformed. - .transformMap(indexVar, valueVar, ) - .transformMap(indexVar, valueVar, , ) - .transformMap(keyVar, valueVar, ) - .transformMap(keyVar, valueVar, , ) + .transformMapEntry(indexVar, valueVar, ) + .transformMapEntry(indexVar, valueVar, , ) + .transformMapEntry(keyVar, valueVar, ) + .transformMapEntry(keyVar, valueVar, , ) Examples: @@ -945,3 +967,73 @@ Examples: {'greeting': 'aloha', 'farewell': 'aloha'} .transformMapEntry(keyVar, valueVar, {valueVar: keyVar}) // error, duplicate key + +## Regex + +Regex introduces functions for regular expressions in CEL. + +Note: Please ensure that the cel.OptionalTypes() is enabled when using regex +extensions. All functions use the 'regex' namespace. If you are currently +using a variable named 'regex', the functions will likely work as intended. +However, there is some chance for collision. + +### Replace + +The `regex.replace` function replaces all non-overlapping substring of a regex +pattern in the target string with a replacement string. Optionally, you can +limit the number of replacements by providing a count argument. When the count +is a negative number, the function acts as replace all. Only numeric (\N) +capture group references are supported in the replacement string, with +validation for correctness. Backslashed-escaped digits (\1 to \9) within the +replacement argument can be used to insert text matching the corresponding +parenthesized group in the regexp pattern. An error will be thrown for invalid +regex or replace string. + + + regex.replace(target: string, pattern: string, replacement: string) -> string + regex.replace(target: string, pattern: string, replacement: string, count: int) -> string + + +Examples: + + regex.replace('hello world hello', 'hello', 'hi') == 'hi world hi' + regex.replace('banana', 'a', 'x', 0) == 'banana' + regex.replace('banana', 'a', 'x', 1) == 'bxnana' + regex.replace('banana', 'a', 'x', 2) == 'bxnxna' + regex.replace('banana', 'a', 'x', -12) == 'bxnxnx' + regex.replace('foo bar', '(fo)o (ba)r', '\\2 \\1') == 'ba fo' + + regex.replace('test', '(.)', '$2') \\ Runtime Error invalid replace string + regex.replace('foo bar', '(', '$2 $1') \\ Runtime Error invalid regex string + regex.replace('id=123', 'id=(?P\\\\d+)', 'value: \\values') \\ Runtime Error invalid replace string + +### Extract + +The `regex.extract` function returns the first match of a regex pattern as an +`optional` string. If no match is found, it returns an optional none value. +An error will be thrown for invalid regex or for multiple capture groups. + + regex.extract(target: string, pattern: string) -> optional + +Examples: + + regex.extract('hello world', 'hello(.*)') == optional.of(' world') + regex.extract('item-A, item-B', 'item-(\\w+)') == optional.of('A') + regex.extract('HELLO', 'hello') == optional.none() + + regex.extract('testuser@testdomain', '(.*)@([^.]*)')) \\ Runtime Error multiple extract group + +### Extract All + +The `regex.extractAll` function returns a `list` of all matches of a regex +pattern in a target string. If no matches are found, it returns an empty list. +An error will be thrown for invalid regex or for multiple capture groups. + + regex.extractAll(target: string, pattern: string) -> list + +Examples: + + regex.extractAll('id:123, id:456', 'id:\\d+') == ['id:123', 'id:456'] + regex.extractAll('id:123, id:456', 'assa') == [] + + regex.extractAll('testuser@testdomain', '(.*)@([^.]*)') \\ Runtime Error multiple capture group diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/bindings.go b/tests/e2e/vendor/github.com/google/cel-go/ext/bindings.go index 63942b85cb..89766d60aa 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/bindings.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/bindings.go @@ -108,7 +108,7 @@ func (lib *celBindings) CompileOptions() []cel.EnvOption { func (lib *celBindings) ProgramOptions() []cel.ProgramOption { if lib.version >= 1 { - celBlockPlan := func(i interpreter.Interpretable) (interpreter.Interpretable, error) { + celBlockPlan := func(i interpreter.InterpretableV2) (interpreter.InterpretableV2, error) { call, ok := i.(interpreter.InterpretableCall) if !ok { return i, nil @@ -140,7 +140,7 @@ func (lib *celBindings) ProgramOptions() []cel.ProgramOption { return i, nil } } - return []cel.ProgramOption{cel.CustomDecorator(celBlockPlan)} + return []cel.ProgramOption{cel.CustomDecoratorV2(celBlockPlan)} } return []cel.ProgramOption{} } @@ -190,7 +190,7 @@ func celBind(mef cel.MacroExprFactory, target ast.Expr, args []ast.Expr) (ast.Ex ), nil } -func newDynamicBlock(slotExprs []interpreter.Interpretable, expr interpreter.Interpretable) interpreter.Interpretable { +func newDynamicBlock(slotExprs []interpreter.InterpretableV2, expr interpreter.InterpretableV2) interpreter.InterpretableV2 { bs := &dynamicBlock{ slotExprs: slotExprs, expr: expr, @@ -213,8 +213,8 @@ func newDynamicBlock(slotExprs []interpreter.Interpretable, expr interpreter.Int } type dynamicBlock struct { - slotExprs []interpreter.Interpretable - expr interpreter.Interpretable + slotExprs []interpreter.InterpretableV2 + expr interpreter.InterpretableV2 slotActivationPool *sync.Pool } @@ -223,12 +223,23 @@ func (b *dynamicBlock) ID() int64 { return b.expr.ID() } -// Eval implements the Interpretable interface method. -func (b *dynamicBlock) Eval(activation cel.Activation) ref.Val { +// Exec implements the Interpretable interface method and pushes a new frame onto the +// execution frame for the duration of the block execution. +func (b *dynamicBlock) Exec(frame *interpreter.ExecutionFrame) ref.Val { sa := b.slotActivationPool.Get().(*dynamicSlotActivation) - sa.Activation = activation + sa.frame = frame.Push(sa) + // Ensure the 'unwrapped' Activation points to the original one from the frame, + // and not the hierarchical activation which composes the original and the slot + // activation. + sa.Activation = frame.Activation + defer sa.frame.Pop() defer b.clearSlots(sa) - return b.expr.Eval(sa) + return b.expr.Exec(sa.frame) +} + +// Eval implements the Interpretable interface method. +func (b *dynamicBlock) Eval(activation cel.Activation) ref.Val { + return b.Exec(interpreter.AsFrame(activation)) } func (b *dynamicBlock) clearSlots(sa *dynamicSlotActivation) { @@ -243,11 +254,17 @@ type slotVal struct { type dynamicSlotActivation struct { cel.Activation - slotExprs []interpreter.Interpretable + frame *interpreter.ExecutionFrame + slotExprs []interpreter.InterpretableV2 slotCount int slotVals []*slotVal } +// Unwrap returns the underlying activation. +func (sa *dynamicSlotActivation) Unwrap() cel.Activation { + return sa.Activation +} + // ResolveName implements the Activation interface method but handles variables prefixed with `@index` // as special variables which exist within the slot-based memory of the cel.@block() where each slot // refers to an expression which must be computed only once. @@ -262,7 +279,7 @@ func (sa *dynamicSlotActivation) ResolveName(name string) (any, bool) { return *v.value, true } v.visited = true - val := sa.slotExprs[idx].Eval(sa) + val := sa.slotExprs[idx].Exec(sa.frame) v.value = &val return val, true } @@ -271,13 +288,14 @@ func (sa *dynamicSlotActivation) ResolveName(name string) (any, bool) { func (sa *dynamicSlotActivation) reset() { sa.Activation = nil + sa.frame = nil for _, sv := range sa.slotVals { sv.visited = false sv.value = nil } } -func newConstantBlock(slots traits.Lister, expr interpreter.Interpretable) interpreter.Interpretable { +func newConstantBlock(slots traits.Lister, expr interpreter.InterpretableV2) interpreter.InterpretableV2 { count := slots.Size().(types.Int) return &constantBlock{slots: slots, slotCount: int(count), expr: expr} } @@ -285,7 +303,7 @@ func newConstantBlock(slots traits.Lister, expr interpreter.Interpretable) inter type constantBlock struct { slots traits.Lister slotCount int - expr interpreter.Interpretable + expr interpreter.InterpretableV2 } // ID implements the interpreter.Interpretable interface method. @@ -293,19 +311,33 @@ func (b *constantBlock) ID() int64 { return b.expr.ID() } +// Exec implements the Interpretable interface method and pushes a new frame onto the +// stack for the duration of the block execution. +func (b *constantBlock) Exec(frame *interpreter.ExecutionFrame) ref.Val { + sa := constantSlotActivation{Activation: frame.Activation, slots: b.slots, slotCount: b.slotCount} + sa.frame = frame.Push(sa) + defer sa.frame.Pop() + return b.expr.Exec(sa.frame) +} + // Eval implements the interpreter.Interpretable interface method, and will proxy @index prefixed variable // lookups into a set of constant slots determined from the plan step. func (b *constantBlock) Eval(activation cel.Activation) ref.Val { - vars := constantSlotActivation{Activation: activation, slots: b.slots, slotCount: b.slotCount} - return b.expr.Eval(vars) + return b.Exec(interpreter.AsFrame(activation)) } type constantSlotActivation struct { cel.Activation + frame *interpreter.ExecutionFrame slots traits.Lister slotCount int } +// Unwrap returns the underlying activation. +func (sa *constantSlotActivation) Unwrap() cel.Activation { + return sa.Activation +} + // ResolveName implements Activation interface method and proxies @index prefixed lookups into the slot // activation associated with the block scope. func (sa constantSlotActivation) ResolveName(name string) (any, bool) { diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/comprehensions.go b/tests/e2e/vendor/github.com/google/cel-go/ext/comprehensions.go index f08d8f9da6..adb22912b1 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/comprehensions.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/comprehensions.go @@ -146,10 +146,10 @@ const ( // Elements in the map may optionally be filtered according to a predicate expression, where // elements that satisfy the predicate are transformed. // -// .transformMap(indexVar, valueVar, ) -// .transformMap(indexVar, valueVar, , ) -// .transformMap(keyVar, valueVar, ) -// .transformMap(keyVar, valueVar, , ) +// .transformMapEntry(indexVar, valueVar, ) +// .transformMapEntry(indexVar, valueVar, , ) +// .transformMapEntry(keyVar, valueVar, ) +// .transformMapEntry(keyVar, valueVar, , ) // // Examples: // diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/costs.go b/tests/e2e/vendor/github.com/google/cel-go/ext/costs.go new file mode 100644 index 0000000000..d2cf7c757f --- /dev/null +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/costs.go @@ -0,0 +1,122 @@ +// Copyright 2026 Google LLC +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +package ext + +import ( + "math" + + "github.com/google/cel-go/checker" + "github.com/google/cel-go/common" + "github.com/google/cel-go/common/ast" + "github.com/google/cel-go/common/types" + "github.com/google/cel-go/common/types/ref" + "github.com/google/cel-go/common/types/traits" +) + +var ( + callCostEstimate = checker.FixedCostEstimate(1) + callCost = uint64(1) + listAllocCost = checker.FixedCostEstimate(common.ListCreateBaseCost) + stringCostFactor = common.StringTraversalCostFactor +) + +func estimateStringScan(sz checker.SizeEstimate) (checker.CostEstimate, *checker.SizeEstimate) { + return estimateTraversal(sz, stringCostFactor, nil) +} + +func estimateListAlloc(sz checker.SizeEstimate, costFactor float64) (checker.CostEstimate, *checker.SizeEstimate) { + return estimateTraversal(sz, costFactor, &listAllocCost) +} + +// estimateTraversal computes cost as a function of the size of the target object and whether the call allocates memory. +func estimateTraversal(nodeSize checker.SizeEstimate, costFactor float64, allocationCost *checker.CostEstimate) (checker.CostEstimate, *checker.SizeEstimate) { + cost := nodeSize.MultiplyByCostFactor(costFactor) + if allocationCost != nil { + cost = cost.Add(*allocationCost) + } + return cost, &nodeSize +} + +func estimateSize(estimator checker.CostEstimator, node checker.AstNode) checker.SizeEstimate { + if l := node.ComputedSize(); l != nil { + return *l + } + if l := estimator.EstimateSize(node); l != nil { + return *l + } + return checker.SizeEstimate{Min: 0, Max: math.MaxUint64} +} + +func actualSize(value ref.Val) uint64 { + if sz, ok := value.(traits.Sizer); ok { + return uint64(sz.Size().(types.Int)) + } + return 1 +} + +func nodeAsUintValue(node checker.AstNode, defaultVal uint64) uint64 { + if node.Expr().Kind() != ast.LiteralKind { + return defaultVal + } + lit := node.Expr().AsLiteral() + if lit.Type() != types.IntType { + return defaultVal + } + val := lit.(types.Int) + if val < types.IntZero { + return 0 + } + return uint64(lit.(types.Int)) +} + +func callEstimate(cost checker.CostEstimate, sz *checker.SizeEstimate) *checker.CallEstimate { + return &checker.CallEstimate{CostEstimate: cost, ResultSize: sz} +} + +func rangedSizeEstimate(min, max uint64) checker.SizeEstimate { + return checker.SizeEstimate{Min: min, Max: max} +} + +func fixedSizeEstimate(val uint64) checker.SizeEstimate { + return checker.FixedSizeEstimate(val) +} + +func atLeastOne(size checker.SizeEstimate) checker.SizeEstimate { + if size.Min == 0 { + size.Min = 1 + } + if size.Max == 0 { + size.Max = 1 + } + return size +} + +func safeAdd(x, y uint64, rest ...uint64) uint64 { + if y > 0 && x > math.MaxUint64-y { + return math.MaxUint64 + } + next := x + y + if len(rest) == 0 { + return next + } + return safeAdd(next, rest[0], rest[1:]...) +} + +func safeMul(x, y uint64) uint64 { + if y != 0 && x > math.MaxUint64/y { + return math.MaxUint64 + } + return x * y +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/encoders.go b/tests/e2e/vendor/github.com/google/cel-go/ext/encoders.go index 731c3d095d..97fc932a57 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/encoders.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/encoders.go @@ -16,11 +16,17 @@ package ext import ( "encoding/base64" + "encoding/json" + "fmt" "math" "github.com/google/cel-go/cel" + "github.com/google/cel-go/checker" "github.com/google/cel-go/common/types" "github.com/google/cel-go/common/types/ref" + "github.com/google/cel-go/interpreter" + "google.golang.org/protobuf/encoding/protojson" + "google.golang.org/protobuf/types/known/structpb" ) // Encoders returns a cel.EnvOption to configure extended functions for string, byte, and object @@ -48,6 +54,18 @@ import ( // Examples: // // base64.encode(b'hello') // return b'aGVsbG8=' +// +// # JSON.Encode +// +// Introduced at version: 1 +// +// Encodes a CEL value to a JSON string. +// +// json.encode() -> +// +// Examples: +// +// json.encode({'hello': 'world'}) // return '{"hello":"world"}' func Encoders(options ...EncodersOption) cel.EnvOption { l := &encoderLib{version: math.MaxUint32} for _, o := range options { @@ -75,8 +93,8 @@ func (*encoderLib) LibraryName() string { return "cel.lib.ext.encoders" } -func (*encoderLib) CompileOptions() []cel.EnvOption { - return []cel.EnvOption{ +func (lib *encoderLib) CompileOptions() []cel.EnvOption { + opts := []cel.EnvOption{ cel.Function("base64.decode", cel.Overload("base64_decode_string", []*cel.Type{cel.StringType}, cel.BytesType, cel.UnaryBinding(func(str ref.Val) ref.Val { @@ -90,10 +108,35 @@ func (*encoderLib) CompileOptions() []cel.EnvOption { return stringOrError(base64EncodeBytes([]byte(b))) }))), } + if lib.version >= 1 { + estimators := []checker.CostOption{ + checker.OverloadCostEstimate("base64_decode_string", estimateDecode), + checker.OverloadCostEstimate("base64_encode_bytes", estimateEncode), + checker.OverloadCostEstimate("json_encode_dyn", estimateJSONEncode), + } + opts = append(opts, cel.CostEstimatorOptions(estimators...)) + opts = append(opts, + cel.Function("json.encode", + cel.Overload("json_encode_dyn", []*cel.Type{cel.DynType}, cel.StringType, + cel.UnaryBinding(func(val ref.Val) ref.Val { + return stringOrError(jsonEncodeValue(val)) + }))), + ) + } + return opts } -func (*encoderLib) ProgramOptions() []cel.ProgramOption { - return []cel.ProgramOption{} +func (lib *encoderLib) ProgramOptions() []cel.ProgramOption { + var opts []cel.ProgramOption + if lib.version >= 1 { + trackers := []interpreter.CostTrackerOption{ + interpreter.OverloadCostTracker("base64_decode_string", trackDecode), + interpreter.OverloadCostTracker("base64_encode_bytes", trackEncode), + interpreter.OverloadCostTracker("json_encode_dyn", trackJSONEncode), + } + opts = append(opts, cel.CostTrackerOptions(trackers...)) + } + return opts } func base64DecodeString(str string) ([]byte, error) { @@ -110,3 +153,93 @@ func base64DecodeString(str string) ([]byte, error) { func base64EncodeBytes(bytes []byte) (string, error) { return base64.StdEncoding.EncodeToString(bytes), nil } + +func estimateEncode(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) != 1 { + return nil + } + sz := estimateSize(estimator, args[0]) + cost := sz.MultiplyByCostFactor(stringCostFactor).Add(callCostEstimate) + resSize := estimateEncodeSize(sz) + return &checker.CallEstimate{CostEstimate: cost, ResultSize: &resSize} +} + +func estimateJSONEncode(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) != 1 { + return nil + } + size := estimateJSONEncodeSize() + return &checker.CallEstimate{CostEstimate: checker.UnknownCostEstimate(), ResultSize: &size} +} + +func estimateDecode(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) != 1 { + return nil + } + sz := estimateSize(estimator, args[0]) + cost := sz.MultiplyByCostFactor(stringCostFactor).Add(callCostEstimate) + resSize := estimateDecodeSize(sz) + return &checker.CallEstimate{CostEstimate: cost, ResultSize: &resSize} +} + +func trackEncode(args []ref.Val, _ ref.Val) *uint64 { + sz := actualSize(args[0]) + cost := uint64(math.Ceil(float64(sz)*stringCostFactor)) + callCost + return &cost +} + +func trackJSONEncode(args []ref.Val, _ ref.Val) *uint64 { + maxCost := uint64(math.MaxUint64) + return &maxCost +} + +func trackDecode(args []ref.Val, _ ref.Val) *uint64 { + sz := actualSize(args[0]) + cost := uint64(math.Ceil(float64(sz)*stringCostFactor)) + callCost + return &cost +} + +func estimateEncodeSize(sz checker.SizeEstimate) checker.SizeEstimate { + minVal := (sz.Min*4 + 2) / 3 + maxVal := (sz.Max*4 + 2) / 3 + if sz.Max > math.MaxUint64/4 { + maxVal = math.MaxUint64 + } + return checker.SizeEstimate{Min: minVal, Max: maxVal} +} + +func estimateJSONEncodeSize() checker.SizeEstimate { + // TODO: provide a more sophisticated size estimate based on the CEL value's type. + return checker.UnknownSizeEstimate() +} + +func estimateDecodeSize(sz checker.SizeEstimate) checker.SizeEstimate { + minVal := sz.Min * 3 / 4 + maxVal := sz.Max * 3 / 4 + return checker.SizeEstimate{Min: minVal, Max: maxVal} +} + +func jsonEncodeValue(val ref.Val) (string, error) { + native, err := val.ConvertToNative(types.JSONValueType) + if err != nil { + return "", err + } + jsonValue, ok := native.(*structpb.Value) + if !ok { + return "", fmt.Errorf("cannot convert %T to JSON value", native) + } + jsonBytes, err := protojson.Marshal(jsonValue) + if err != nil { + return "", err + } + var obj interface{} + if err := json.Unmarshal(jsonBytes, &obj); err != nil { + return "", fmt.Errorf("unmarshaling protojson: %w", err) + } + // Re-marshal with standard json.Marshal for deterministic compact output + jsonBytes, err = json.Marshal(obj) + if err != nil { + return "", fmt.Errorf("re-marshaling value: %w", err) + } + return string(jsonBytes), nil +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/extension_option_factory.go b/tests/e2e/vendor/github.com/google/cel-go/ext/extension_option_factory.go index cebf0d760d..e68cf5bc77 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/extension_option_factory.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/extension_option_factory.go @@ -27,7 +27,12 @@ func ExtensionOptionFactory(configElement any) (cel.EnvOption, bool) { if !isExtension { return nil, false } - fac, found := extFactories[ext.Name] + name := ext.Name + alias, found := extAliases[name] + if found { + name = alias + } + fac, found := extFactories[name] if !found { return nil, false } @@ -45,31 +50,43 @@ func ExtensionOptionFactory(configElement any) (cel.EnvOption, bool) { type extensionFactory func(uint32) cel.EnvOption var extFactories = map[string]extensionFactory{ - "bindings": func(version uint32) cel.EnvOption { + "cel.lib.ext.cel.bindings": func(version uint32) cel.EnvOption { return Bindings(BindingsVersion(version)) }, - "encoders": func(version uint32) cel.EnvOption { + "cel.lib.ext.encoders": func(version uint32) cel.EnvOption { return Encoders(EncodersVersion(version)) }, - "lists": func(version uint32) cel.EnvOption { + "cel.lib.ext.lists": func(version uint32) cel.EnvOption { return Lists(ListsVersion(version)) }, - "math": func(version uint32) cel.EnvOption { + "cel.lib.ext.math": func(version uint32) cel.EnvOption { return Math(MathVersion(version)) }, - "protos": func(version uint32) cel.EnvOption { + "cel.lib.ext.protos": func(version uint32) cel.EnvOption { return Protos(ProtosVersion(version)) }, - "sets": func(version uint32) cel.EnvOption { + "cel.lib.ext.sets": func(version uint32) cel.EnvOption { return Sets(SetsVersion(version)) }, - "strings": func(version uint32) cel.EnvOption { + "cel.lib.ext.strings": func(version uint32) cel.EnvOption { return Strings(StringsVersion(version)) }, - "two-var-comprehensions": func(version uint32) cel.EnvOption { + "cel.lib.ext.comprev2": func(version uint32) cel.EnvOption { return TwoVarComprehensions(TwoVarComprehensionsVersion(version)) }, - "regex": func(version uint32) cel.EnvOption { + "cel.lib.ext.regex": func(version uint32) cel.EnvOption { return Regex(RegexVersion(version)) }, } + +var extAliases = map[string]string{ + "bindings": "cel.lib.ext.cel.bindings", + "encoders": "cel.lib.ext.encoders", + "lists": "cel.lib.ext.lists", + "math": "cel.lib.ext.math", + "protos": "cel.lib.ext.protos", + "sets": "cel.lib.ext.sets", + "strings": "cel.lib.ext.strings", + "two-var-comprehensions": "cel.lib.ext.comprev2", + "regex": "cel.lib.ext.regex", +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/formatting.go b/tests/e2e/vendor/github.com/google/cel-go/ext/formatting.go index 111184b739..35fb17048e 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/formatting.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/formatting.go @@ -410,7 +410,9 @@ func (c *stringFormatter) Octal(arg ref.Val, locale string) (string, error) { // stringFormatValidator implements the cel.ASTValidator interface allowing for static validation // of string.format calls. -type stringFormatValidator struct{} +type stringFormatValidator struct { + maxPrecision int +} // Name returns the name of the validator. func (stringFormatValidator) Name() string { @@ -427,7 +429,7 @@ func (stringFormatValidator) Configure(config cel.MutableValidatorConfig) error // Validate parses all literal format strings and type checks the format clause against the argument // at the corresponding ordinal within the list literal argument to the function, if one is specified. -func (stringFormatValidator) Validate(env *cel.Env, _ cel.ValidatorConfig, a *ast.AST, iss *cel.Issues) { +func (v stringFormatValidator) Validate(env *cel.Env, _ cel.ValidatorConfig, a *ast.AST, iss *cel.Issues) { root := ast.NavigateAST(a) formatCallExprs := ast.MatchDescendants(root, matchConstantFormatStringWithListLiteralArgs(a)) for _, e := range formatCallExprs { @@ -439,7 +441,7 @@ func (stringFormatValidator) Validate(env *cel.Env, _ cel.ValidatorConfig, a *as ast: a, } // use a placeholder locale, since locale doesn't affect syntax - _, err := parseFormatString(formatStr, formatCheck, formatCheck, "en_US") + _, err := parseFormatString(formatStr, formatCheck, formatCheck, "en_US", v.maxPrecision) if err != nil { iss.ReportErrorAtID(getErrorExprID(e.ID(), err), "%v", err) continue @@ -778,7 +780,7 @@ type formatListArgs interface { // parseFormatString formats a string according to the string.format syntax, taking the clause implementations // from the provided FormatCallback and the args from the given FormatList. -func parseFormatString(formatStr string, callback formatStringInterpolator, list formatListArgs, locale string) (string, error) { +func parseFormatString(formatStr string, callback formatStringInterpolator, list formatListArgs, locale string, maxPrecision int) (string, error) { i := 0 argIndex := 0 var builtStr strings.Builder @@ -802,7 +804,7 @@ func parseFormatString(formatStr string, callback formatStringInterpolator, list if int64(argIndex) >= list.Size() { return "", fmt.Errorf("index %d out of range", argIndex) } - numRead, val, refErr := parseAndFormatClause(formatStr[i:], argAny, callback, list, locale) + numRead, val, refErr := parseAndFormatClause(formatStr[i:], argAny, callback, list, locale, maxPrecision) if refErr != nil { return "", refErr } @@ -826,9 +828,9 @@ func parseFormatString(formatStr string, callback formatStringInterpolator, list // parseAndFormatClause parses the format clause at the start of the given string with val, and returns // how many characters were consumed and the substituted string form of val, or an error if one occurred. -func parseAndFormatClause(formatStr string, val ref.Val, callback formatStringInterpolator, list formatListArgs, locale string) (int, string, error) { +func parseAndFormatClause(formatStr string, val ref.Val, callback formatStringInterpolator, list formatListArgs, locale string, maxPrecision int) (int, string, error) { i := 1 - read, formatter, err := parseFormattingClause(formatStr[i:], callback) + read, formatter, err := parseFormattingClause(formatStr[i:], callback, maxPrecision) i += read if err != nil { return -1, "", newParseFormatError("could not parse formatting clause", err) @@ -841,9 +843,9 @@ func parseAndFormatClause(formatStr string, val ref.Val, callback formatStringIn return i, valStr, nil } -func parseFormattingClause(formatStr string, callback formatStringInterpolator) (int, clauseImpl, error) { +func parseFormattingClause(formatStr string, callback formatStringInterpolator, maxPrecision int) (int, clauseImpl, error) { i := 0 - read, precision, err := parsePrecision(formatStr[i:]) + read, precision, err := parsePrecision(formatStr[i:], maxPrecision) i += read if err != nil { return -1, nil, fmt.Errorf("error while parsing precision: %w", err) @@ -870,7 +872,7 @@ func parseFormattingClause(formatStr string, callback formatStringInterpolator) } } -func parsePrecision(formatStr string) (int, *int, error) { +func parsePrecision(formatStr string, maxPrecision int) (int, *int, error) { i := 0 if formatStr[i] != '.' { return i, nil, nil @@ -891,6 +893,9 @@ func parsePrecision(formatStr string) (int, *int, error) { if err != nil { return -1, nil, fmt.Errorf("error while converting precision to integer: %w", err) } + if maxPrecision > 0 && precision > maxPrecision { + return -1, nil, fmt.Errorf("precision %d exceeds maximum allowed precision %d", precision, maxPrecision) + } return i, &precision, nil } diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/formatting_v2.go b/tests/e2e/vendor/github.com/google/cel-go/ext/formatting_v2.go index ca8efbc4e7..f923cc7e10 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/formatting_v2.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/formatting_v2.go @@ -245,13 +245,13 @@ func (c *stringFormatterV2) Fixed(precision int) func(ref.Val) (string, error) { if !ok { return "", fmt.Errorf("type conversion error from '%s' to '%s'", arg.Type(), types.IntType) } - return fmt.Sprintf(fmtStr, argInt), nil + return fmt.Sprintf(fmtStr, float64(argInt)), nil case types.UintType: argUint, ok := arg.Value().(uint64) if !ok { return "", fmt.Errorf("type conversion error from '%s' to '%s'", arg.Type(), types.UintType) } - return fmt.Sprintf(fmtStr, argUint), nil + return fmt.Sprintf(fmtStr, float64(argUint)), nil case types.DoubleType: argDbl, ok := arg.Value().(float64) if !ok { @@ -283,13 +283,13 @@ func (c *stringFormatterV2) Scientific(precision int) func(ref.Val) (string, err if !ok { return "", fmt.Errorf("type conversion error from '%s' to '%s'", arg.Type(), types.IntType) } - return fmt.Sprintf(fmtStr, argInt), nil + return fmt.Sprintf(fmtStr, float64(argInt)), nil case types.UintType: argUint, ok := arg.Value().(uint64) if !ok { return "", fmt.Errorf("type conversion error from '%s' to '%s'", arg.Type(), types.UintType) } - return fmt.Sprintf(fmtStr, argUint), nil + return fmt.Sprintf(fmtStr, float64(argUint)), nil case types.DoubleType: argDbl, ok := arg.Value().(float64) if !ok { @@ -402,7 +402,9 @@ func (c *stringFormatterV2) Octal(arg ref.Val) (string, error) { // stringFormatValidatorV2 implements the cel.ASTValidator interface allowing for static validation // of string.format calls. -type stringFormatValidatorV2 struct{} +type stringFormatValidatorV2 struct { + maxPrecision int +} // Name returns the name of the validator. func (stringFormatValidatorV2) Name() string { @@ -419,7 +421,7 @@ func (stringFormatValidatorV2) Configure(config cel.MutableValidatorConfig) erro // Validate parses all literal format strings and type checks the format clause against the argument // at the corresponding ordinal within the list literal argument to the function, if one is specified. -func (stringFormatValidatorV2) Validate(env *cel.Env, _ cel.ValidatorConfig, a *ast.AST, iss *cel.Issues) { +func (v stringFormatValidatorV2) Validate(env *cel.Env, _ cel.ValidatorConfig, a *ast.AST, iss *cel.Issues) { root := ast.NavigateAST(a) formatCallExprs := ast.MatchDescendants(root, matchConstantFormatStringWithListLiteralArgs(a)) for _, e := range formatCallExprs { @@ -431,7 +433,7 @@ func (stringFormatValidatorV2) Validate(env *cel.Env, _ cel.ValidatorConfig, a * ast: a, } // use a placeholder locale, since locale doesn't affect syntax - _, err := parseFormatStringV2(formatStr, formatCheck, formatCheck) + _, err := parseFormatStringV2(formatStr, formatCheck, formatCheck, v.maxPrecision) if err != nil { iss.ReportErrorAtID(getErrorExprID(e.ID(), err), "%v", err) continue @@ -668,7 +670,7 @@ type formatStringInterpolatorV2 interface { // parseFormatString formats a string according to the string.format syntax, taking the clause implementations // from the provided FormatCallback and the args from the given FormatList. -func parseFormatStringV2(formatStr string, callback formatStringInterpolatorV2, list formatListArgs) (string, error) { +func parseFormatStringV2(formatStr string, callback formatStringInterpolatorV2, list formatListArgs, maxPrecision int) (string, error) { i := 0 argIndex := 0 var builtStr strings.Builder @@ -692,7 +694,7 @@ func parseFormatStringV2(formatStr string, callback formatStringInterpolatorV2, if int64(argIndex) >= list.Size() { return "", fmt.Errorf("index %d out of range", argIndex) } - numRead, val, refErr := parseAndFormatClauseV2(formatStr[i:], argAny, callback, list) + numRead, val, refErr := parseAndFormatClauseV2(formatStr[i:], argAny, callback, list, maxPrecision) if refErr != nil { return "", refErr } @@ -716,9 +718,9 @@ func parseFormatStringV2(formatStr string, callback formatStringInterpolatorV2, // parseAndFormatClause parses the format clause at the start of the given string with val, and returns // how many characters were consumed and the substituted string form of val, or an error if one occurred. -func parseAndFormatClauseV2(formatStr string, val ref.Val, callback formatStringInterpolatorV2, list formatListArgs) (int, string, error) { +func parseAndFormatClauseV2(formatStr string, val ref.Val, callback formatStringInterpolatorV2, list formatListArgs, maxPrecision int) (int, string, error) { i := 1 - read, formatter, err := parseFormattingClauseV2(formatStr[i:], callback) + read, formatter, err := parseFormattingClauseV2(formatStr[i:], callback, maxPrecision) i += read if err != nil { return -1, "", newParseFormatError("could not parse formatting clause", err) @@ -731,9 +733,9 @@ func parseAndFormatClauseV2(formatStr string, val ref.Val, callback formatString return i, valStr, nil } -func parseFormattingClauseV2(formatStr string, callback formatStringInterpolatorV2) (int, clauseImplV2, error) { +func parseFormattingClauseV2(formatStr string, callback formatStringInterpolatorV2, maxPrecision int) (int, clauseImplV2, error) { i := 0 - read, precision, err := parsePrecisionV2(formatStr[i:]) + read, precision, err := parsePrecisionV2(formatStr[i:], maxPrecision) i += read if err != nil { return -1, nil, fmt.Errorf("error while parsing precision: %w", err) @@ -760,7 +762,7 @@ func parseFormattingClauseV2(formatStr string, callback formatStringInterpolator } } -func parsePrecisionV2(formatStr string) (int, int, error) { +func parsePrecisionV2(formatStr string, maxPrecision int) (int, int, error) { i := 0 if formatStr[i] != '.' { return i, defaultPrecision, nil @@ -784,5 +786,8 @@ func parsePrecisionV2(formatStr string) (int, int, error) { if precision < 0 { return -1, -1, fmt.Errorf("negative precision: %d", precision) } + if maxPrecision > 0 && precision > maxPrecision { + return -1, -1, fmt.Errorf("precision %d exceeds maximum allowed precision %d", precision, maxPrecision) + } return i, precision, nil } diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/lists.go b/tests/e2e/vendor/github.com/google/cel-go/ext/lists.go index b27ddf22f5..3d0e676426 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/lists.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/lists.go @@ -153,15 +153,18 @@ var comparableTypes = []*cel.Type{ // ].sortBy(e, e.score).map(e, e.name) // == ["bar", "foo", "baz"] func Lists(options ...ListsOption) cel.EnvOption { - l := &listsLib{version: math.MaxUint32} + l := &listsLib{version: math.MaxUint32, maxRangeSize: defaultMaxRangeSize} for _, o := range options { l = o(l) } return cel.Lib(l) } +const defaultMaxRangeSize = 1_000_000 + type listsLib struct { - version uint32 + version uint32 + maxRangeSize int64 } // LibraryName implements the SingletonLibrary interface method. @@ -188,6 +191,16 @@ func ListsVersion(version uint32) ListsOption { } } +// ListsMaxRangeSize sets the maximum number of elements lists.range() will +// allocate. If not set, the default is 10,000,000. Setting this to zero +// disables the limit (not recommended). +func ListsMaxRangeSize(size int64) ListsOption { + return func(lib *listsLib) *listsLib { + lib.maxRangeSize = size + return lib + } +} + // CompileOptions implements the Library interface method. func (lib listsLib) CompileOptions() []cel.EnvOption { listType := cel.ListType(cel.TypeParamType("T")) @@ -309,11 +322,12 @@ func (lib listsLib) CompileOptions() []cel.EnvOption { )..., )) + maxRange := lib.maxRangeSize opts = append(opts, cel.Function("lists.range", cel.Overload("lists_range", []*cel.Type{cel.IntType}, cel.ListType(cel.IntType), cel.UnaryBinding(func(n ref.Val) ref.Val { - result, err := genRange(n.(types.Int)) + result, err := genRange(n.(types.Int), maxRange) if err != nil { return types.WrapErr(err) } @@ -349,23 +363,45 @@ func (lib listsLib) CompileOptions() []cel.EnvOption { if lib.version >= 3 { estimators := []checker.CostOption{ checker.OverloadCostEstimate("list_slice", estimateListSlice), - checker.OverloadCostEstimate("list_flatten", estimateListFlatten), - checker.OverloadCostEstimate("list_flatten_int", estimateListFlatten), checker.OverloadCostEstimate("lists_range", estimateListsRange), checker.OverloadCostEstimate("list_reverse", estimateListReverse), - checker.OverloadCostEstimate("list_distinct", estimateListDistinct), } - for _, t := range comparableTypes { + if lib.version == 3 { estimators = append(estimators, - checker.OverloadCostEstimate( - fmt.Sprintf("list_%s_sort", t.TypeName()), - estimateListSort(t), - ), - checker.OverloadCostEstimate( - fmt.Sprintf("list_%s_sortByAssociatedKeys", t.TypeName()), - estimateListSortBy(t), - ), + checker.OverloadCostEstimate("list_flatten", estimateListFlattenLegacy), + checker.OverloadCostEstimate("list_flatten_int", estimateListFlattenLegacy), + checker.OverloadCostEstimate("list_distinct", estimateListDistinctLegacy), ) + for _, t := range comparableTypes { + estimators = append(estimators, + checker.OverloadCostEstimate( + fmt.Sprintf("list_%s_sort", t.TypeName()), + estimateListSortLegacy(t), + ), + checker.OverloadCostEstimate( + fmt.Sprintf("list_%s_sortByAssociatedKeys", t.TypeName()), + estimateListSortByLegacy(t), + ), + ) + } + } else { + estimators = append(estimators, + checker.OverloadCostEstimate("list_flatten", estimateListFlatten), + checker.OverloadCostEstimate("list_flatten_int", estimateListFlatten), + checker.OverloadCostEstimate("list_distinct", estimateListDistinct), + ) + for _, t := range comparableTypes { + estimators = append(estimators, + checker.OverloadCostEstimate( + fmt.Sprintf("list_%s_sort", t.TypeName()), + estimateListSort(t), + ), + checker.OverloadCostEstimate( + fmt.Sprintf("list_%s_sortByAssociatedKeys", t.TypeName()), + estimateListSortBy(t), + ), + ) + } } opts = append(opts, cel.CostEstimatorOptions(estimators...)) } @@ -377,15 +413,23 @@ func (lib listsLib) CompileOptions() []cel.EnvOption { func (lib *listsLib) ProgramOptions() []cel.ProgramOption { var opts []cel.ProgramOption if lib.version >= 3 { - // TODO: Add cost trackers for list operations trackers := []interpreter.CostTrackerOption{ interpreter.OverloadCostTracker("list_slice", trackListOutputSize), - interpreter.OverloadCostTracker("list_flatten", trackListFlatten), - interpreter.OverloadCostTracker("list_flatten_int", trackListFlatten), interpreter.OverloadCostTracker("lists_range", trackListOutputSize), interpreter.OverloadCostTracker("list_reverse", trackListOutputSize), interpreter.OverloadCostTracker("list_distinct", trackListDistinct), } + if lib.version == 3 { + trackers = append(trackers, + interpreter.OverloadCostTracker("list_flatten", trackListFlattenLegacy), + interpreter.OverloadCostTracker("list_flatten_int", trackListFlattenLegacy), + ) + } else { + trackers = append(trackers, + interpreter.OverloadCostTracker("list_flatten", trackListFlatten), + interpreter.OverloadCostTracker("list_flatten_int", trackListFlatten), + ) + } for _, t := range comparableTypes { trackers = append(trackers, interpreter.OverloadCostTracker( @@ -403,8 +447,14 @@ func (lib *listsLib) ProgramOptions() []cel.ProgramOption { return opts } -func genRange(n types.Int) (ref.Val, error) { - var newList []ref.Val +func genRange(n types.Int, maxSize int64) (ref.Val, error) { + if n < 0 { + return nil, fmt.Errorf("lists.range: size must be non-negative, got %d", n) + } + if maxSize > 0 && int64(n) > maxSize { + return nil, fmt.Errorf("lists.range: size %d exceeds maximum allowed (%d)", n, maxSize) + } + newList := make([]ref.Val, 0, n) for i := types.Int(0); i < n; i++ { newList = append(newList, i) } @@ -616,8 +666,8 @@ func estimateListSlice(estimator checker.CostEstimator, target *checker.AstNode, return nil } sz := estimateSize(estimator, *target) - start := nodeAsIntValue(args[0], 0) - end := nodeAsIntValue(args[1], sz.Max) + start := nodeAsUintValue(args[0], 0) + end := nodeAsUintValue(args[1], sz.Max) return estimateAllocatingListCall(1, checker.FixedSizeEstimate(end-start)) } @@ -626,7 +676,7 @@ func estimateListsRange(estimator checker.CostEstimator, target *checker.AstNode if target != nil || len(args) != 1 { return nil } - return estimateAllocatingListCall(1, checker.FixedSizeEstimate(nodeAsIntValue(args[0], math.MaxUint))) + return estimateAllocatingListCall(1, checker.FixedSizeEstimate(nodeAsUintValue(args[0], math.MaxUint))) } // estimateListReverse computes an O(n) reverse operation with a cost factor of 1. @@ -637,18 +687,73 @@ func estimateListReverse(estimator checker.CostEstimator, target *checker.AstNod return estimateAllocatingListCall(1, estimateSize(estimator, *target)) } -// estimateListFlatten computes an O(n) flatten operation with a cost factor proportional to the flatten depth. +// estimateListFlatten computes an O(n) flatten operation with a cost factor proportional to the total number of flattened items. func estimateListFlatten(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { if target == nil || len(args) > 1 { return nil } depth := uint64(1) if len(args) == 1 { - depth = nodeAsIntValue(args[0], math.MaxUint) + depth = nodeAsUintValue(args[0], math.MaxUint) + } + var resSize checker.SizeEstimate + if (*target).Expr() != nil && (*target).Expr().Kind() == ast.ListKind { + szVal := estimateLiteralFlattenSize((*target).Expr(), depth) + resSize = checker.FixedSizeEstimate(szVal) + } else { + resSize = estimateFlattenSize(estimator, *target, depth) + } + cost := resSize.AsCost() + return estimateListCallWithDirectCost(cost, resSize, true) +} + +func estimateListFlattenLegacy(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil || len(args) > 1 { + return nil + } + depth := uint64(1) + if len(args) == 1 { + depth = nodeAsUintValue(args[0], math.MaxUint) } return estimateAllocatingListCall(float64(depth), estimateSize(estimator, *target)) } +func estimateFlattenSize(estimator checker.CostEstimator, node checker.AstNode, depth uint64) checker.SizeEstimate { + sz := estimateSize(estimator, node) + if depth == 0 { + return sz + } + tType := node.Type() + if tType.Kind() != types.ListKind || len(tType.Parameters()) == 0 { + return sz + } + elemType := tType.Parameters()[0] + elemNode := pathAstNode{ + path: append(append([]string(nil), node.Path()...), "@items"), + t: elemType, + } + flatElemSize := estimateFlattenSize(estimator, elemNode, depth-1) + return sz.Multiply(flatElemSize) +} + +func estimateLiteralFlattenSize(expr ast.Expr, depth uint64) uint64 { + if depth == 0 { + if expr.Kind() == ast.ListKind { + return uint64(expr.AsList().Size()) + } + return 1 + } + if expr.Kind() != ast.ListKind { + return 1 + } + listExpr := expr.AsList() + totalSize := uint64(0) + for _, el := range listExpr.Elements() { + totalSize += estimateLiteralFlattenSize(el, depth-1) + } + return totalSize +} + // Compute an O(n^2) with a cost factor of 2, equivalent to sets.contains with a result list // which can vary in size from 1 element to the original list size. func estimateListDistinct(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { @@ -656,8 +761,23 @@ func estimateListDistinct(estimator checker.CostEstimator, target *checker.AstNo return nil } sz := estimateSize(estimator, *target) - costFactor := 2.0 - return estimateAllocatingListCall(costFactor, sz.Multiply(sz)) + elemType := types.DynType + tType := (*target).Type() + if tType.Kind() == types.ListKind && len(tType.Parameters()) > 0 { + elemType = tType.Parameters()[0] + } + itemSize := estimateItemSize(estimator, *target) + elemCost := estimateElementEqualityCost(estimator, elemType, itemSize) + + costSize := sz.Multiply(sz) + cost := costSize.MultiplyByCost(elemCost).MultiplyByCostFactor(2.0) + + minSize := uint64(0) + if sz.Min > 0 { + minSize = 1 + } + resultSize := checker.SizeEstimate{Min: minSize, Max: sz.Max} + return estimateListCallWithDirectCost(cost, resultSize, true) } // estimateListSort computes an O(n^2) sort operation with a cost factor of 2 for the equality @@ -678,37 +798,53 @@ func estimateListSortBy(u *types.Type) checker.FunctionEstimator { if target == nil || len(args) != 1 { return nil } - // Estimate the size of the list used as the sort index - return estimateListSortCost(estimator, args[0], u) + // Estimate the size of the list used as the sort index, using target to resolve item size hints. + return estimateListSortByCost(estimator, *target, args[0], u) } } +func estimateListSortByCost(estimator checker.CostEstimator, target checker.AstNode, keysNode checker.AstNode, elemType *types.Type) *checker.CallEstimate { + sz := estimateSize(estimator, keysNode) + itemSize := estimateItemSize(estimator, target) + elemCost := estimateElementEqualityCost(estimator, elemType, itemSize) + + costSize := sz.Multiply(sz) + cost := costSize.MultiplyByCost(elemCost).MultiplyByCostFactor(2.0) + return estimateListCallWithDirectCost(cost, sz, true) +} + // estimateListSortCost estimates an O(n^2) sort operation with a cost factor of 2 for the equality // operations which occur during the sort computation. func estimateListSortCost(estimator checker.CostEstimator, node checker.AstNode, elemType *types.Type) *checker.CallEstimate { sz := estimateSize(estimator, node) - costFactor := 2.0 - switch elemType { - case types.StringType, types.BytesType: - costFactor += common.StringTraversalCostFactor - } - return estimateAllocatingListCall(costFactor, sz.Multiply(sz)) + itemSize := estimateItemSize(estimator, node) + elemCost := estimateElementEqualityCost(estimator, elemType, itemSize) + + costSize := sz.Multiply(sz) + cost := costSize.MultiplyByCost(elemCost).MultiplyByCostFactor(2.0) + return estimateListCallWithDirectCost(cost, sz, true) } // estimateAllocatingListCall computes cost as a function of the size of the result list with a // baseline cost for the call dispatch and the associated list allocation. func estimateAllocatingListCall(costFactor float64, listSize checker.SizeEstimate) *checker.CallEstimate { - return estimateListCall(costFactor, listSize, true) + return estimateListCallWithResultSize(costFactor, listSize, listSize, true) +} + +// estimateListCallWithResultSize computes cost as a function of the size of the target list and whether the +// call allocates memory, using a separate result size estimate for the output list. +func estimateListCallWithResultSize(costFactor float64, costSize checker.SizeEstimate, resultSize checker.SizeEstimate, allocates bool) *checker.CallEstimate { + cost := costSize.MultiplyByCostFactor(costFactor) + return estimateListCallWithDirectCost(cost, resultSize, allocates) } -// estimateListCall computes cost as a function of the size of the target list and whether the -// call allocates memory. -func estimateListCall(costFactor float64, listSize checker.SizeEstimate, allocates bool) *checker.CallEstimate { - cost := listSize.MultiplyByCostFactor(costFactor).Add(callCostEstimate) +// estimateListCallWithDirectCost computes cost using a pre-calculated CostEstimate and a separate result size estimate. +func estimateListCallWithDirectCost(cost checker.CostEstimate, resultSize checker.SizeEstimate, allocates bool) *checker.CallEstimate { if allocates { cost = cost.Add(checker.FixedCostEstimate(common.ListCreateBaseCost)) } - return &checker.CallEstimate{CostEstimate: cost, ResultSize: &listSize} + cost = cost.Add(callCostEstimate) + return &checker.CallEstimate{CostEstimate: cost, ResultSize: &resultSize} } // trackListOutputSize computes cost as a function of the size of the result list. @@ -716,9 +852,13 @@ func trackListOutputSize(_ []ref.Val, result ref.Val) *uint64 { return trackAllocatingListCall(1, actualSize(result)) } -// trackListFlatten computes cost as a function of the size of the result list and the depth of -// the flatten operation. -func trackListFlatten(args []ref.Val, _ ref.Val) *uint64 { +// trackListFlatten computes cost as a function of the size of the result list. +func trackListFlatten(args []ref.Val, result ref.Val) *uint64 { + resSize := actualSize(result) + return trackAllocatingListCall(1.0, resSize) +} + +func trackListFlattenLegacy(args []ref.Val, _ ref.Val) *uint64 { depth := 1.0 if len(args) == 2 { depth = float64(args[1].(types.Int)) @@ -753,27 +893,111 @@ func trackListSelfCompare(l traits.Lister) *uint64 { if elem.Type() == types.StringType || elem.Type() == types.BytesType { costFactor += common.StringTraversalCostFactor } - return trackAllocatingListCall(costFactor, sz*sz) + return trackAllocatingListCall(costFactor, safeMul(sz, sz)) } // trackAllocatingListCall computes costs as a function of the size of the result list with a baseline cost // for the call dispatch and the associated list allocation. func trackAllocatingListCall(costFactor float64, size uint64) *uint64 { - cost := uint64(float64(size)*costFactor) + callCost + common.ListCreateBaseCost + if costFactor < 0.0 { + costFactor = 1.0 + } + cost := safeAdd(uint64(float64(size)*costFactor), callCost, common.ListCreateBaseCost) return &cost } -func nodeAsIntValue(node checker.AstNode, defaultVal uint64) uint64 { - if node.Expr().Kind() != ast.LiteralKind { - return defaultVal +func estimateListDistinctLegacy(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil || len(args) != 0 { + return nil + } + sz := estimateSize(estimator, *target) + costFactor := 2.0 + tType := (*target).Type() + if tType.Kind() == types.ListKind && len(tType.Parameters()) > 0 { + elemType := tType.Parameters()[0] + if elemType.Kind() == types.StringKind || elemType.Kind() == types.BytesKind { + costFactor += common.StringTraversalCostFactor + } + } + return estimateAllocatingListCall(costFactor, sz.Multiply(sz)) +} + +func estimateListSortLegacy(t *types.Type) checker.FunctionEstimator { + return func(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil || len(args) != 0 { + return nil + } + return estimateListSortCostLegacy(estimator, *target, t) + } +} + +func estimateListSortByLegacy(u *types.Type) checker.FunctionEstimator { + return func(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil || len(args) != 1 { + return nil + } + return estimateListSortCostLegacy(estimator, args[0], u) + } +} + +func estimateListSortCostLegacy(estimator checker.CostEstimator, node checker.AstNode, elemType *types.Type) *checker.CallEstimate { + sz := estimateSize(estimator, node) + costFactor := 2.0 + switch elemType { + case types.StringType, types.BytesType: + costFactor += common.StringTraversalCostFactor } - lit := node.Expr().AsLiteral() - if lit.Type() != types.IntType { - return defaultVal + return estimateAllocatingListCall(costFactor, sz.Multiply(sz)) +} + +type pathAstNode struct { + path []string + t *types.Type +} + +func (p pathAstNode) Path() []string { + return p.path +} + +func (p pathAstNode) Type() *types.Type { + return p.t +} + +func (p pathAstNode) Expr() ast.Expr { + return nil +} + +func (p pathAstNode) ComputedSize() *checker.SizeEstimate { + return nil +} + +func estimateItemSize(estimator checker.CostEstimator, node checker.AstNode) checker.SizeEstimate { + path := node.Path() + if len(path) == 0 { + return checker.SizeEstimate{Min: 0, Max: math.MaxUint64} + } + elemType := types.DynType + tType := node.Type() + if tType.Kind() == types.ListKind && len(tType.Parameters()) > 0 { + elemType = tType.Parameters()[0] + } + itemNode := pathAstNode{ + path: append(append([]string(nil), path...), "@items"), + t: elemType, } - val := lit.(types.Int) - if val < types.IntZero { - return 0 + if l := estimator.EstimateSize(itemNode); l != nil { + return *l + } + return checker.SizeEstimate{Min: 0, Max: math.MaxUint64} +} + +func estimateElementEqualityCost(estimator checker.CostEstimator, elemType *types.Type, itemSize checker.SizeEstimate) checker.CostEstimate { + switch elemType.Kind() { + case types.StringKind, types.BytesKind: + return itemSize.MultiplyByCostFactor(common.StringTraversalCostFactor) + case types.ListKind, types.MapKind, types.StructKind: + return checker.UnknownCostEstimate() + default: + return checker.FixedCostEstimate(1) } - return uint64(lit.(types.Int)) } diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/math.go b/tests/e2e/vendor/github.com/google/cel-go/ext/math.go index 6df8e37736..e67b205def 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/math.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/math.go @@ -20,10 +20,12 @@ import ( "strings" "github.com/google/cel-go/cel" + "github.com/google/cel-go/checker" "github.com/google/cel-go/common/ast" "github.com/google/cel-go/common/types" "github.com/google/cel-go/common/types/ref" "github.com/google/cel-go/common/types/traits" + "github.com/google/cel-go/interpreter" ) // Math returns a cel.EnvOption to configure namespaced math helper macros and @@ -339,9 +341,9 @@ import ( // // Examples: // -// math.sqrt(81) // returns 9.0 -// math.sqrt(985.25) // returns 31.388692231439016 -// math.sqrt(-15) // returns NaN +// math.sqrt(81) // returns 9.0 +// math.sqrt(985.25) // returns 31.388692231439016 +// math.sqrt(-15) // returns NaN func Math(options ...MathOption) cel.EnvOption { m := &mathLib{version: math.MaxUint32} for _, o := range options { @@ -580,12 +582,35 @@ func (lib *mathLib) CompileOptions() []cel.EnvOption { ), ) } + if lib.version >= 3 { + estimators := []checker.CostOption{ + checker.OverloadCostEstimate("math_@min_list_double", estimateMathListCost), + checker.OverloadCostEstimate("math_@min_list_int", estimateMathListCost), + checker.OverloadCostEstimate("math_@min_list_uint", estimateMathListCost), + checker.OverloadCostEstimate("math_@max_list_double", estimateMathListCost), + checker.OverloadCostEstimate("math_@max_list_int", estimateMathListCost), + checker.OverloadCostEstimate("math_@max_list_uint", estimateMathListCost), + } + opts = append(opts, cel.CostEstimatorOptions(estimators...)) + } return opts } // ProgramOptions implements the Library interface method. -func (*mathLib) ProgramOptions() []cel.ProgramOption { - return []cel.ProgramOption{} +func (lib *mathLib) ProgramOptions() []cel.ProgramOption { + var opts []cel.ProgramOption + if lib.version >= 3 { + trackers := []interpreter.CostTrackerOption{ + interpreter.OverloadCostTracker("math_@min_list_double", trackMathListCost), + interpreter.OverloadCostTracker("math_@min_list_int", trackMathListCost), + interpreter.OverloadCostTracker("math_@min_list_uint", trackMathListCost), + interpreter.OverloadCostTracker("math_@max_list_double", trackMathListCost), + interpreter.OverloadCostTracker("math_@max_list_int", trackMathListCost), + interpreter.OverloadCostTracker("math_@max_list_uint", trackMathListCost), + } + opts = append(opts, cel.CostTrackerOptions(trackers...)) + } + return opts } func mathLeast(meh cel.MacroExprFactory, target ast.Expr, args []ast.Expr) (ast.Expr, *cel.Error) { @@ -723,21 +748,19 @@ func sign(val ref.Val) ref.Val { } } - func sqrt(val ref.Val) ref.Val { switch v := val.(type) { case types.Double: - return types.Double(math.Sqrt(float64(v))) + return types.Double(math.Sqrt(float64(v))) case types.Int: - return types.Double(math.Sqrt(float64(v))) + return types.Double(math.Sqrt(float64(v))) case types.Uint: - return types.Double(math.Sqrt(float64(v))) + return types.Double(math.Sqrt(float64(v))) default: - return types.NewErr("no such overload: sqrt") + return types.NewErr("no such overload: sqrt") } } - func bitAndPairInt(first, second ref.Val) ref.Val { l := first.(types.Int) r := second.(types.Int) @@ -946,3 +969,19 @@ func maybeSuffixError(val ref.Val, suffix string) ref.Val { } return val } + +func estimateMathListCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) != 1 { + return nil + } + sz := estimateSize(estimator, args[0]) + cost := sz.MultiplyByCostFactor(1.0).Add(callCostEstimate) + resultSize := checker.FixedSizeEstimate(1) + return &checker.CallEstimate{CostEstimate: cost, ResultSize: &resultSize} +} + +func trackMathListCost(args []ref.Val, _ ref.Val) *uint64 { + sz := actualSize(args[0]) + cost := safeAdd(sz, callCost) + return &cost +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/native.go b/tests/e2e/vendor/github.com/google/cel-go/ext/native.go index 661984cbb1..d9f5fab0de 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/native.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/native.go @@ -154,7 +154,7 @@ func fieldNameByTag(structTagToParse string) func(field reflect.StructField) str // https://pkg.go.dev/encoding/xml#Marshal // https://pkg.go.dev/encoding/json#Marshal // https://pkg.go.dev/go.mongodb.org/mongo-driver/bson#hdr-Structs - // https://pkg.go.dev/gopkg.in/yaml.v2#Marshal + // https://pkg.go.dev/go.yaml.in/yaml/v3#Marshal name := splits[0] return name } @@ -164,6 +164,10 @@ func fieldNameByTag(structTagToParse string) func(field reflect.StructField) str } } +func isSkippedFieldName(name string) bool { + return name == "" || name == "-" +} + type nativeTypeOptions struct { // fieldNameHandler controls how CEL should perform struct field renames. // This is most commonly used for switching to parsing based off the struct field tag, @@ -286,9 +290,13 @@ func toFieldName(fieldNameHandler NativeTypesFieldNameHandler, f reflect.StructF func (tp *nativeTypeProvider) FindStructFieldNames(typeName string) ([]string, bool) { if t, found := tp.nativeTypes[typeName]; found { fieldCount := t.refType.NumField() - fields := make([]string, fieldCount) + fields := make([]string, 0, fieldCount) for i := 0; i < fieldCount; i++ { - fields[i] = toFieldName(tp.options.fieldNameHandler, t.refType.Field(i)) + fieldName := toFieldName(tp.options.fieldNameHandler, t.refType.Field(i)) + if isSkippedFieldName(fieldName) { + continue + } + fields = append(fields, fieldName) } return fields, true } @@ -434,10 +442,18 @@ func convertToCelType(refType reflect.Type) (*cel.Type, bool) { if refType == timestampType { return cel.TimestampType, true } + if refType.Implements(refValType) { + emptyCelVal := reflect.New(refType).Elem().Interface().(ref.Val) + return emptyCelVal.Type().(*cel.Type), true + } return cel.ObjectType( fmt.Sprintf("%s.%s", simplePkgAlias(refType.PkgPath()), refType.Name()), ), true case reflect.Pointer: + if refType.Implements(refValType) { + emptyCelVal := reflect.New(refType.Elem()).Interface().(ref.Val) + return emptyCelVal.Type().(*cel.Type), true + } if refType.Implements(pbMsgInterfaceType) { pbMsg := reflect.New(refType.Elem()).Interface().(protoreflect.ProtoMessage) return cel.ObjectType(string(pbMsg.ProtoReflect().Descriptor().FullName())), true @@ -501,6 +517,9 @@ func (o *nativeObj) ConvertToNative(typeDesc reflect.Type) (any, error) { continue } fieldName := toFieldName(o.valType.fieldNameHandler, fieldType) + if isSkippedFieldName(fieldName) { + continue + } fieldCELVal := o.NativeToValue(fieldValue.Interface()) fieldJSONVal, err := fieldCELVal.ConvertToNative(jsonValueType) if err != nil { @@ -608,8 +627,13 @@ func newNativeTypes(fieldNameHandler NativeTypesFieldNameHandler, rawType reflec alreadySeen := make(map[string]struct{}) var iterateStructMembers func(reflect.Type) iterateStructMembers = func(t reflect.Type) { + if t.Implements(reflect.TypeFor[ref.Val]()) { + // skip this field since it's a CEL ref.Val instance. + return + } if k := t.Kind(); k == reflect.Pointer || k == reflect.Slice || k == reflect.Array || k == reflect.Map { - t = t.Elem() + iterateStructMembers(t.Elem()) + return } if t.Kind() != reflect.Struct { return @@ -654,7 +678,9 @@ func newNativeType(fieldNameHandler NativeTypesFieldNameHandler, rawType reflect for idx := 0; idx < refType.NumField(); idx++ { field := refType.Field(idx) fieldName := toFieldName(fieldNameHandler, field) - + if isSkippedFieldName(fieldName) { + continue + } if _, found := fieldNames[fieldName]; found { return nil, fmt.Errorf("invalid field name `%s` in struct `%s`: %w", fieldName, refType.Name(), errDuplicatedFieldName) } else { @@ -724,6 +750,10 @@ func (t *nativeType) Value() any { // fieldByName returns the corresponding reflect.StructField for the give name either by matching // field tag or field name. func (t *nativeType) fieldByName(fieldName string) (reflect.StructField, bool) { + if isSkippedFieldName(fieldName) { + return reflect.StructField{}, false + } + if t.fieldNameHandler == nil { return t.refType.FieldByName(fieldName) } @@ -790,7 +820,8 @@ func isSupportedType(refType reflect.Type) bool { } var ( - pbMsgInterfaceType = reflect.TypeOf((*protoreflect.ProtoMessage)(nil)).Elem() - timestampType = reflect.TypeOf(time.Now()) - durationType = reflect.TypeOf(time.Nanosecond) + pbMsgInterfaceType = reflect.TypeFor[protoreflect.ProtoMessage]() + refValType = reflect.TypeFor[ref.Val]() + timestampType = reflect.TypeFor[time.Time]() + durationType = reflect.TypeFor[time.Duration]() ) diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/network.go b/tests/e2e/vendor/github.com/google/cel-go/ext/network.go new file mode 100644 index 0000000000..bca0657077 --- /dev/null +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/network.go @@ -0,0 +1,810 @@ +// Copyright 2025 Google LLC +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +package ext + +import ( + "fmt" + "math" + "net/netip" + "reflect" + + "github.com/google/cel-go/cel" + "github.com/google/cel-go/checker" + "github.com/google/cel-go/common/ast" + "github.com/google/cel-go/common/types" + "github.com/google/cel-go/common/types/ref" + "github.com/google/cel-go/interpreter" +) + +const ( + // Version1 is the initial version of the Network library, providing + // parity with Kubernetes v1.30+ CEL network functions. + Version1 uint32 = 1 +) + +// Network returns a cel.EnvOption to configure extended functions for network +// address parsing, inspection, and CIDR range manipulation. +// +// Note: This library defines global functions `ip`, `cidr`, `isIP`, `isCIDR` +// and `ip.isCanonical`. If you are currently using variables named `ip` or +// `cidr`, these functions will likely work as intended, however there is a +// chance for collision. +// +// The library closely mirrors the behavior of the Kubernetes CEL network +// libraries, treating IP addresses and CIDR ranges as opaque types. It parses +// IPs strictly: IPv4-mapped IPv6 addresses and IP zones are not allowed. +// +// This library includes a TypeAdapter that allows `netip.Addr` and +// `netip.Prefix` Go types to be passed directly into the CEL environment. +// +// # IP Addresses +// +// The `ip` function converts a string to an IP address (IPv4 or IPv6). If the +// string is not a valid IP, an error is returned. The `isIP` function checks +// if a string is a valid IP address without throwing an error. +// +// ip(string) -> ip +// isIP(string) -> bool +// +// Examples: +// +// ip('127.0.0.1') +// ip('::1') +// isIP('1.2.3.4') // true +// isIP('invalid') // false +// +// # CIDR Ranges +// +// The `cidr` function converts a string to a Classless Inter-Domain Routing +// (CIDR) range. If the string is not valid, an error is returned. +// +// The `isCIDR` function checks if a string is a valid CIDR notation. Note that +// `isCIDR` allows CIDR values with or without host bits (e.g., '10.0.0.1/8' +// or '10.0.0.0/8'). +// +// cidr(string) -> cidr +// isCIDR(string) -> bool +// +// Examples: +// +// cidr('192.168.0.0/24') +// cidr('::1/128') +// isCIDR('10.0.0.0/8') // true +// isCIDR('10.0.0.1/8') // true +// +// # IP Inspection and Canonicalization +// +// IP objects support various inspection methods. +// +// .family() -> int +// .isLoopback() -> bool +// .isGlobalUnicast() -> bool +// .isLinkLocalMulticast() -> bool +// .isLinkLocalUnicast() -> bool +// .isUnspecified() -> bool +// +// The `ip.isCanonical` function takes a string and returns true if it matches +// the RFC 5952 canonical string representation of that address. +// +// ip.isCanonical(string) -> bool +// +// Examples: +// +// ip('127.0.0.1').family() == 4 +// ip('::1').family() == 6 +// ip('127.0.0.1').isLoopback() == true +// ip.isCanonical('2001:db8::1') == true // RFC 5952 format +// ip.isCanonical('2001:DB8::1') == false // Uppercase is not canonical +// ip.isCanonical('2001:db8:0:0:0:0:0:1') == false // Expanded is not canonical +// +// # CIDR Member Functions +// +// CIDR objects support containment checks and property extraction. +// +// .containsIP(ip|string) -> bool +// .containsCIDR(cidr|string) -> bool +// .ip() -> ip +// .isMask() -> bool +// .masked() -> cidr +// .prefixLength() -> int +// +// Examples: +// +// cidr('10.0.0.0/8').containsIP(ip('10.0.0.1')) == true +// cidr('10.0.0.0/8').containsIP('10.0.0.1') == true +// cidr('10.0.0.0/8').containsCIDR('10.1.0.0/16') == true +// cidr('192.168.1.5/24').ip() == ip('192.168.1.5') +// cidr('192.168.1.0/24').isMask() == true +// cidr('192.168.1.5/24').isMask() == false +// cidr('192.168.1.5/24').masked() == cidr('192.168.1.0/24') +// cidr('192.168.1.0/24').prefixLength() == 24 +func Network(opts ...NetworkOption) cel.EnvOption { + lib := &networkLib{version: Version1} + for _, o := range opts { + lib = o(lib) + } + return func(e *cel.Env) (*cel.Env, error) { + // Install the library (Types and Functions) + e, err := cel.Lib(lib)(e) + if err != nil { + return nil, err + } + + // Install the Adapter (Wrapping the existing one) + adapter := &networkAdapter{Adapter: e.CELTypeAdapter()} + return cel.CustomTypeAdapter(adapter)(e) + } +} + +// NetworkOption declares a functional operator for configuring the Network library behavior. +type NetworkOption func(*networkLib) *networkLib + +// NetworkVersion sets the version of the network library to an explicit version. +func NetworkVersion(version uint32) NetworkOption { + return func(lib *networkLib) *networkLib { + lib.version = version + return lib + } +} + +const ( + // Function names matching the original Kubernetes implementation of this networking library. + // isStrictCIDR and isInterfaceAddress are added to enable strict isCIDR parsing without breaking + // functionality for existing users. Ctx: https://github.com/kubernetes/kubernetes/issues/134224 + cidrFunc = "cidr" + cidrToString = "string" + containsCIDRFunc = "containsCIDR" + containsIPFunc = "containsIP" + familyFunc = "family" + ipFunc = "ip" + ipToString = "string" + isCanonicalFunc = "ip.isCanonical" + isCIDRFunc = "isCIDR" + isGlobalUnicastFunc = "isGlobalUnicast" + isIPFunc = "isIP" + isLinkLocalMcastFunc = "isLinkLocalMulticast" + isLinkLocalUcastFunc = "isLinkLocalUnicast" + isLoopbackFunc = "isLoopback" + isMaskFunc = "isMask" + isUnspecifiedFunc = "isUnspecified" + maskedFunc = "masked" + prefixLengthFunc = "prefixLength" +) + +var ( + // Definitions for the Opaque Types + + // IPType represents a network IP address. + IPType = types.NewOpaqueType("net.IP") + + // CIDRType represents a CIDR-format network range. + CIDRType = types.NewOpaqueType("net.CIDR") +) + +type networkLib struct { + version uint32 +} + +func (*networkLib) LibraryName() string { + return "cel.lib.ext.network" +} + +func (*networkLib) CompileOptions() []cel.EnvOption { + return []cel.EnvOption{ + cel.Types( + IPType, + CIDRType, + ), + + cel.Function(cidrFunc, + // K8s Parity: Following the pattern, this is "string_to_cidr" + cel.Overload("string_to_cidr", []*cel.Type{cel.StringType}, CIDRType, + cel.UnaryBinding(netCIDRString)), + ), + cel.Function(cidrToString, + cel.Overload("cidr_to_string", []*cel.Type{CIDRType}, cel.StringType, + cel.UnaryBinding(netCIDRToString)), + ), + cel.Function(containsCIDRFunc, + cel.MemberOverload("cidr_contains_cidr", []*cel.Type{CIDRType, CIDRType}, cel.BoolType, + cel.BinaryBinding(netCIDRContainsCIDR)), + cel.MemberOverload("cidr_contains_cidr_string", []*cel.Type{CIDRType, cel.StringType}, cel.BoolType, + cel.BinaryBinding(netCIDRContainsCIDRString)), + ), + cel.Function(containsIPFunc, + cel.MemberOverload("cidr_contains_ip_ip", []*cel.Type{CIDRType, IPType}, cel.BoolType, + cel.BinaryBinding(netCIDRContainsIP)), + cel.MemberOverload("cidr_contains_ip_string", []*cel.Type{CIDRType, cel.StringType}, cel.BoolType, + cel.BinaryBinding(netCIDRContainsIPString)), + ), + cel.Function(familyFunc, + cel.MemberOverload("ip_family", []*cel.Type{IPType}, cel.IntType, + cel.UnaryBinding(netIPFamily)), + ), + cel.Function(ipFunc, + // K8s Parity: The global overload is named "string_to_ip" + cel.Overload("string_to_ip", []*cel.Type{cel.StringType}, IPType, + cel.UnaryBinding(netIPString)), + // K8s Parity: The member overload is named "cidr_ip" + cel.MemberOverload("cidr_ip", []*cel.Type{CIDRType}, IPType, + cel.UnaryBinding(netCIDRIP)), + ), + cel.Function(ipToString, + cel.Overload("ip_to_string", []*cel.Type{IPType}, cel.StringType, + cel.UnaryBinding(netIPToString)), + ), + cel.Function(isCanonicalFunc, + cel.Overload("ip_is_canonical", []*cel.Type{cel.StringType}, cel.BoolType, + cel.UnaryBinding(netIPIsCanonical)), + ), + cel.Function(isCIDRFunc, + cel.Overload("is_cidr", []*cel.Type{cel.StringType}, cel.BoolType, + cel.UnaryBinding(netIsCIDR)), + ), + cel.Function(isGlobalUnicastFunc, + cel.MemberOverload("ip_is_global_unicast", []*cel.Type{IPType}, cel.BoolType, + cel.UnaryBinding(netIPIsGlobalUnicast)), + ), + cel.Function(isIPFunc, + cel.Overload("is_ip", []*cel.Type{cel.StringType}, cel.BoolType, + cel.UnaryBinding(netIsIP)), + ), + cel.Function(isLinkLocalMcastFunc, + cel.MemberOverload("ip_is_link_local_multicast", []*cel.Type{IPType}, cel.BoolType, + cel.UnaryBinding(netIPIsLinkLocalMulticast)), + ), + cel.Function(isLinkLocalUcastFunc, + cel.MemberOverload("ip_is_link_local_unicast", []*cel.Type{IPType}, cel.BoolType, + cel.UnaryBinding(netIPIsLinkLocalUnicast)), + ), + cel.Function(isLoopbackFunc, + cel.MemberOverload("ip_is_loopback", []*cel.Type{IPType}, cel.BoolType, + cel.UnaryBinding(netIPIsLoopback)), + ), + cel.Function(isMaskFunc, + cel.MemberOverload("cidr_is_mask", []*cel.Type{CIDRType}, cel.BoolType, + cel.UnaryBinding(netCIDRIsMask)), + ), + cel.Function(isUnspecifiedFunc, + cel.MemberOverload("ip_is_unspecified", []*cel.Type{IPType}, cel.BoolType, + cel.UnaryBinding(netIPIsUnspecified)), + ), + cel.Function(maskedFunc, + cel.MemberOverload("cidr_masked", []*cel.Type{CIDRType}, CIDRType, + cel.UnaryBinding(netCIDRMasked)), + ), + cel.Function(prefixLengthFunc, + cel.MemberOverload("cidr_prefix_length", []*cel.Type{CIDRType}, cel.IntType, + cel.UnaryBinding(netCIDRPrefixLength)), + ), + cel.ASTValidators( + networkFormatValidator{funcName: ipFunc, argNum: 0, check: checkIP}, + networkFormatValidator{funcName: cidrFunc, argNum: 0, check: checkCIDR}, + ), + cel.CostEstimatorOptions( + checker.OverloadCostEstimate("string_to_cidr", estimateNetworkParseCost), + checker.OverloadCostEstimate("cidr_to_string", estimateNetworkNominalStringCost), + checker.OverloadCostEstimate("cidr_contains_cidr", estimateNetworkContainsCIDRCIDRCost), + checker.OverloadCostEstimate("cidr_contains_cidr_string", estimateNetworkContainsCIDRStringCost), + checker.OverloadCostEstimate("cidr_contains_ip_ip", estimateNetworkContainsIPIPCost), + checker.OverloadCostEstimate("cidr_contains_ip_string", estimateNetworkContainsIPStringCost), + checker.OverloadCostEstimate("ip_family", estimateNetworkNominalCost), + checker.OverloadCostEstimate("string_to_ip", estimateNetworkParseCost), + checker.OverloadCostEstimate("cidr_ip", estimateNetworkNominalOpaqueCost), + checker.OverloadCostEstimate("ip_to_string", estimateNetworkNominalStringCost), + checker.OverloadCostEstimate("ip_is_canonical", estimateIPIsCanonicalCost), + checker.OverloadCostEstimate("is_cidr", estimateNetworkParseBoolCost), + checker.OverloadCostEstimate("ip_is_global_unicast", estimateNetworkNominalCost), + checker.OverloadCostEstimate("is_ip", estimateNetworkParseBoolCost), + checker.OverloadCostEstimate("ip_is_link_local_multicast", estimateNetworkNominalCost), + checker.OverloadCostEstimate("ip_is_link_local_unicast", estimateNetworkNominalCost), + checker.OverloadCostEstimate("ip_is_loopback", estimateNetworkNominalCost), + checker.OverloadCostEstimate("cidr_is_mask", estimateNetworkNominalCost), + checker.OverloadCostEstimate("ip_is_unspecified", estimateNetworkNominalCost), + checker.OverloadCostEstimate("cidr_masked", estimateNetworkNominalOpaqueCost), + checker.OverloadCostEstimate("cidr_prefix_length", estimateNetworkNominalCost), + ), + } +} + +func (*networkLib) ProgramOptions() []cel.ProgramOption { + return []cel.ProgramOption{ + cel.CostTrackerOptions( + interpreter.OverloadCostTracker("string_to_cidr", trackNetworkParseCost), + interpreter.OverloadCostTracker("cidr_to_string", trackNetworkNominalCost), + interpreter.OverloadCostTracker("cidr_contains_cidr", trackNetworkContainsCIDRCIDRCost), + interpreter.OverloadCostTracker("cidr_contains_cidr_string", trackNetworkContainsCIDRStringCost), + interpreter.OverloadCostTracker("cidr_contains_ip_ip", trackNetworkContainsIPIPCost), + interpreter.OverloadCostTracker("cidr_contains_ip_string", trackNetworkContainsIPStringCost), + interpreter.OverloadCostTracker("ip_family", trackNetworkNominalCost), + interpreter.OverloadCostTracker("string_to_ip", trackNetworkParseCost), + interpreter.OverloadCostTracker("cidr_ip", trackNetworkNominalCost), + interpreter.OverloadCostTracker("ip_to_string", trackNetworkNominalCost), + interpreter.OverloadCostTracker("ip_is_canonical", trackIPIsCanonicalCost), + interpreter.OverloadCostTracker("is_cidr", trackNetworkParseCost), + interpreter.OverloadCostTracker("ip_is_global_unicast", trackNetworkNominalCost), + interpreter.OverloadCostTracker("is_ip", trackNetworkParseCost), + interpreter.OverloadCostTracker("ip_is_link_local_multicast", trackNetworkNominalCost), + interpreter.OverloadCostTracker("ip_is_link_local_unicast", trackNetworkNominalCost), + interpreter.OverloadCostTracker("ip_is_loopback", trackNetworkNominalCost), + interpreter.OverloadCostTracker("cidr_is_mask", trackNetworkNominalCost), + interpreter.OverloadCostTracker("ip_is_unspecified", trackNetworkNominalCost), + interpreter.OverloadCostTracker("cidr_masked", trackNetworkNominalCost), + interpreter.OverloadCostTracker("cidr_prefix_length", trackNetworkNominalCost), + ), + } +} + +// networkAdapter adapts netip types while preserving existing adapters. +type networkAdapter struct { + types.Adapter +} + +func (a *networkAdapter) NativeToValue(value any) ref.Val { + switch v := value.(type) { + case netip.Addr: + return IP{Addr: v} + case netip.Prefix: + return CIDR{Prefix: v} + } + // Delegate to the wrapped adapter (e.g., Protobuf adapter) + return a.Adapter.NativeToValue(value) +} + +// --- Implementation Logic --- + +func netCIDRContainsCIDR(lhs, rhs ref.Val) ref.Val { + parent := lhs.(CIDR) + child := rhs.(CIDR) + return types.Bool(parent.Prefix.Overlaps(child.Prefix) && parent.Prefix.Bits() <= child.Prefix.Bits()) +} + +func netCIDRContainsCIDRString(lhs, rhs ref.Val) ref.Val { + parent := lhs.(CIDR) + s := rhs.(types.String) + childPrefix, err := parseCIDR(string(s)) + if err != nil { + return types.WrapErr(err) + } + return types.Bool(parent.Prefix.Overlaps(childPrefix) && parent.Prefix.Bits() <= childPrefix.Bits()) +} + +func netCIDRContainsIP(lhs, rhs ref.Val) ref.Val { + cidr := lhs.(CIDR) + ip := rhs.(IP) + return types.Bool(cidr.Prefix.Contains(ip.Addr)) +} + +func netCIDRContainsIPString(lhs, rhs ref.Val) ref.Val { + cidr := lhs.(CIDR) + s := rhs.(types.String) + addr, err := parseIPAddr(string(s)) + if err != nil { + return types.WrapErr(err) + } + return types.Bool(cidr.Prefix.Contains(addr)) +} + +func netCIDRIP(val ref.Val) ref.Val { + cidr := val.(CIDR) + return IP{Addr: cidr.Prefix.Addr()} +} + +func netCIDRMasked(val ref.Val) ref.Val { + cidr := val.(CIDR) + return CIDR{Prefix: cidr.Prefix.Masked()} +} + +func netCIDRPrefixLength(val ref.Val) ref.Val { + cidr := val.(CIDR) + return types.Int(cidr.Prefix.Bits()) +} + +func netCIDRString(val ref.Val) ref.Val { + s := val.(types.String) + str := string(s) + prefix, err := parseCIDR(str) + if err != nil { + return types.WrapErr(err) + } + return CIDR{Prefix: prefix} +} + +func netCIDRToString(val ref.Val) ref.Val { + cidr := val.(CIDR) + return types.String(cidr.Prefix.String()) +} + +func netIPFamily(val ref.Val) ref.Val { + ip := val.(IP) + if ip.Addr.Is4() { + return types.Int(4) + } + return types.Int(6) +} + +func netIPIsCanonical(val ref.Val) ref.Val { + s := val.(types.String) + str := string(s) + addr, err := parseIPAddr(str) + if err != nil { + return types.WrapErr(err) + } + return types.Bool(addr.String() == str) +} + +func netIPIsGlobalUnicast(val ref.Val) ref.Val { + ip := val.(IP) + return types.Bool(ip.Addr.IsGlobalUnicast()) +} + +func netIPIsLinkLocalMulticast(val ref.Val) ref.Val { + ip := val.(IP) + return types.Bool(ip.Addr.IsLinkLocalMulticast()) +} + +func netIPIsLinkLocalUnicast(val ref.Val) ref.Val { + ip := val.(IP) + return types.Bool(ip.Addr.IsLinkLocalUnicast()) +} + +func netIPIsLoopback(val ref.Val) ref.Val { + ip := val.(IP) + return types.Bool(ip.Addr.IsLoopback()) +} + +func netIPIsUnspecified(val ref.Val) ref.Val { + ip := val.(IP) + return types.Bool(ip.Addr.IsUnspecified()) +} + +func netIPString(val ref.Val) ref.Val { + s := val.(types.String) + str := string(s) + addr, err := parseIPAddr(str) + if err != nil { + return types.WrapErr(err) + } + return IP{Addr: addr} +} + +func netIPToString(val ref.Val) ref.Val { + ip := val.(IP) + return types.String(ip.Addr.String()) +} + +func netIsCIDR(val ref.Val) ref.Val { + s := val.(types.String) + _, err := parseCIDR(string(s)) + return types.Bool(err == nil) +} + +func netIsIP(val ref.Val) ref.Val { + s := val.(types.String) + _, err := parseIPAddr(string(s)) + return types.Bool(err == nil) +} + +func netCIDRIsMask(val ref.Val) ref.Val { + cidr := val.(CIDR) + return types.Bool(cidr.Prefix.Addr() == cidr.Prefix.Masked().Addr()) +} + +func parseCIDR(raw string) (netip.Prefix, error) { + prefix, err := netip.ParsePrefix(raw) + if err != nil { + return netip.Prefix{}, fmt.Errorf("CIDR %q parse error during conversion from string: %v", raw, err) + } + if prefix.Addr().Zone() != "" { + return netip.Prefix{}, fmt.Errorf("CIDR %q with zone value is not allowed", raw) + } + if prefix.Addr().Is4In6() { + return netip.Prefix{}, fmt.Errorf("IPv4-mapped IPv6 address %q is not allowed", raw) + } + return prefix, nil +} + +func parseIPAddr(raw string) (netip.Addr, error) { + addr, err := netip.ParseAddr(raw) + if err != nil { + return netip.Addr{}, fmt.Errorf("IP Address %q parse error during conversion from string: %v", raw, err) + } + if addr.Zone() != "" { + return netip.Addr{}, fmt.Errorf("IP address %q with zone value is not allowed", raw) + } + if addr.Is4In6() { + return netip.Addr{}, fmt.Errorf("IPv4-mapped IPv6 address %q is not allowed", raw) + } + return addr, nil +} + +// IP represents an IP address type. +type IP struct { + netip.Addr +} + +// ConvertToNative converts the IP value to a native Go type. +func (i IP) ConvertToNative(typeDesc reflect.Type) (any, error) { + if typeDesc == reflect.TypeFor[netip.Addr]() { + return i.Addr, nil + } + if typeDesc.Kind() == reflect.String { + return i.Addr.String(), nil + } + return nil, fmt.Errorf("unsupported type conversion to '%v'", typeDesc) +} + +// ConvertToType converts the IP value to a CEL type. +func (i IP) ConvertToType(typeValue ref.Type) ref.Val { + switch typeValue { + case types.StringType: + return types.String(i.Addr.String()) + case IPType: + return i + case types.TypeType: + return IPType + } + return types.NewErr("type conversion error from '%s' to '%s'", IPType, typeValue) +} + +// Equal returns true if this IP is equal to the other ref.Val. +func (i IP) Equal(other ref.Val) ref.Val { + o, ok := other.(IP) + if !ok { + return types.False + } + return types.Bool(i.Addr == o.Addr) +} + +// Type returns the CEL type of the IP. +func (i IP) Type() ref.Type { + return IPType +} + +// Value returns the raw Go value (netip.Addr) of the IP. +func (i IP) Value() any { + return i.Addr +} + +// Size returns the size of the IP address in bytes. +// /Used in the size estimation of the runtime cost. +func (i IP) Size() ref.Val { + return types.Int(int64(math.Ceil(float64(i.Addr.BitLen()) / 8))) +} + +// CIDR represents the CIDR network mask format. +type CIDR struct { + netip.Prefix +} + +// ConvertToNative converts the CIDR value to a native Go type. +func (c CIDR) ConvertToNative(typeDesc reflect.Type) (any, error) { + if typeDesc == reflect.TypeFor[netip.Prefix]() { + return c.Prefix, nil + } + if typeDesc.Kind() == reflect.String { + return c.Prefix.String(), nil + } + return nil, fmt.Errorf("unsupported type conversion to '%v'", typeDesc) +} + +// ConvertToType converts the CIDR value to a CEL type. +func (c CIDR) ConvertToType(typeValue ref.Type) ref.Val { + switch typeValue { + case types.StringType: + return types.String(c.Prefix.String()) + case CIDRType: + return c + case types.TypeType: + return CIDRType + } + return types.NewErr("type conversion error from '%s' to '%s'", CIDRType, typeValue) +} + +// Equal returns true if this CIDR is equal to the other ref.Val. +func (c CIDR) Equal(other ref.Val) ref.Val { + o, ok := other.(CIDR) + if !ok { + return types.False + } + return types.Bool(c.Prefix == o.Prefix) +} + +// Type returns the CEL type of the CIDR. +func (c CIDR) Type() ref.Type { + return CIDRType +} + +// Value returns the raw Go value (netip.Prefix) of the CIDR. +func (c CIDR) Value() any { + return c.Prefix +} + +// Size returns the size of the CIDR prefix address in bytes. +// Used in the size estimation of the runtime cost. +func (c CIDR) Size() ref.Val { + return types.Int(int64(math.Ceil(float64(c.Prefix.Bits()) / 8))) +} + +// --- Static Validators --- + +type argChecker func(e *cel.Env, call, arg ast.Expr) error + +type networkFormatValidator struct { + funcName string + argNum int + check argChecker +} + +func (v networkFormatValidator) Name() string { + return fmt.Sprintf("cel.validator.network.%s", v.funcName) +} + +func (v networkFormatValidator) Validate(e *cel.Env, _ cel.ValidatorConfig, a *ast.AST, iss *cel.Issues) { + root := ast.NavigateAST(a) + funcCalls := ast.MatchDescendants(root, ast.FunctionMatcher(v.funcName)) + for _, call := range funcCalls { + callArgs := call.AsCall().Args() + if len(callArgs) <= v.argNum { + continue + } + litArg := callArgs[v.argNum] + if litArg.Kind() != ast.LiteralKind { + continue + } + if err := v.check(e, call, litArg); err != nil { + iss.ReportErrorAtID(litArg.ID(), "invalid %s argument: %v", v.funcName, err) + } + } +} + +func checkIP(e *cel.Env, call, arg ast.Expr) error { + pattern := arg.AsLiteral().Value().(string) + _, err := parseIPAddr(pattern) + return err +} + +func checkCIDR(e *cel.Env, call, arg ast.Expr) error { + pattern := arg.AsLiteral().Value().(string) + _, err := parseCIDR(pattern) + return err +} + +// Cost estimation functions for network extensions. + +func estimateNetworkParseCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) < 1 { + return nil + } + sz := estimateSize(estimator, args[0]) + resultSize := rangedSizeEstimate(4, 16) + return callEstimate(sz.MultiplyByCostFactor(stringCostFactor), &resultSize) +} + +func estimateNetworkParseBoolCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) < 1 { + return nil + } + sz := estimateSize(estimator, args[0]) + return callEstimate(sz.MultiplyByCostFactor(stringCostFactor), nil) +} + +func estimateIPIsCanonicalCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) < 1 { + return nil + } + sz := estimateSize(estimator, args[0]) + return callEstimate(sz.MultiplyByCostFactor(2*stringCostFactor), nil) +} + +func estimateNetworkNominalCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + return callEstimate(callCostEstimate, nil) +} + +func estimateNetworkNominalOpaqueCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + resultSize := rangedSizeEstimate(4, 16) + return callEstimate(callCostEstimate, &resultSize) +} + +func estimateNetworkNominalStringCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + resultSize := rangedSizeEstimate(3, 45) + return callEstimate(callCostEstimate, &resultSize) +} + +func estimateNetworkContainsIPIPCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + sz := rangedSizeEstimate(4, 16) + ipCompCost := sz.Add(sz).MultiplyByCostFactor(stringCostFactor) + return callEstimate(ipCompCost, nil) +} + +func estimateNetworkContainsIPStringCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) < 1 { + return nil + } + sz := rangedSizeEstimate(4, 16) + ipCompCost := sz.Add(sz).MultiplyByCostFactor(stringCostFactor) + argSz := estimateSize(estimator, args[0]) + ipCompCost = ipCompCost.Add(argSz.MultiplyByCostFactor(stringCostFactor)) + return callEstimate(ipCompCost, nil) +} + +func estimateNetworkContainsCIDRCIDRCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + sz := rangedSizeEstimate(4, 16) + ipCompCost := sz.Add(sz).MultiplyByCostFactor(stringCostFactor) + ipCompCost = ipCompCost.Add(sz.MultiplyByCostFactor(stringCostFactor)) + // K8s adds one for the extra IP traversal + ipCompCost = ipCompCost.Add(callCostEstimate) + return callEstimate(ipCompCost, nil) +} + +func estimateNetworkContainsCIDRStringCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) < 1 { + return nil + } + sz := rangedSizeEstimate(4, 16) + ipCompCost := sz.Add(sz).MultiplyByCostFactor(stringCostFactor) + ipCompCost = ipCompCost.Add(sz.MultiplyByCostFactor(stringCostFactor)) + argSz := estimateSize(estimator, args[0]) + ipCompCost = ipCompCost.Add(argSz.MultiplyByCostFactor(stringCostFactor)) + // K8s adds one for the extra IP traversal + ipCompCost = ipCompCost.Add(callCostEstimate) + return callEstimate(ipCompCost, nil) +} + +// Runtime cost tracking functions for network extensions. + +func trackNetworkParseCost(args []ref.Val, result ref.Val) *uint64 { + cost := uint64(math.Ceil(float64(actualSize(args[0])) * stringCostFactor)) + return &cost +} + +func trackIPIsCanonicalCost(args []ref.Val, result ref.Val) *uint64 { + cost := uint64(math.Ceil(float64(actualSize(args[0])) * 2 * stringCostFactor)) + return &cost +} + +func trackNetworkNominalCost(args []ref.Val, result ref.Val) *uint64 { + return &callCost +} + +func trackNetworkContainsIPIPCost(args []ref.Val, result ref.Val) *uint64 { + cidrSize := actualSize(args[0]) + cost := uint64(math.Ceil(float64(cidrSize+cidrSize) * stringCostFactor)) + return &cost +} + +func trackNetworkContainsIPStringCost(args []ref.Val, result ref.Val) *uint64 { + cidrSize := actualSize(args[0]) + otherSize := actualSize(args[1]) + cost := uint64(math.Ceil(float64(cidrSize+cidrSize) * stringCostFactor)) + cost = safeAdd(cost, uint64(math.Ceil(float64(otherSize)*stringCostFactor))) + return &cost +} + +func trackNetworkContainsCIDRCIDRCost(args []ref.Val, result ref.Val) *uint64 { + cidrSize := actualSize(args[0]) + cost := uint64(math.Ceil(float64(cidrSize+cidrSize) * stringCostFactor)) + cost = safeAdd(cost, uint64(math.Ceil(float64(cidrSize)*stringCostFactor)), 1) + return &cost +} + +func trackNetworkContainsCIDRStringCost(args []ref.Val, result ref.Val) *uint64 { + cidrSize := actualSize(args[0]) + otherSize := actualSize(args[1]) + cost := uint64(math.Ceil(float64(cidrSize+cidrSize) * stringCostFactor)) + cost = safeAdd(cost, uint64(math.Ceil(float64(cidrSize)*stringCostFactor)), 1) + cost = safeAdd(cost, uint64(math.Ceil(float64(otherSize)*stringCostFactor))) + return &cost +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/regex.go b/tests/e2e/vendor/github.com/google/cel-go/ext/regex.go index 1a66f65d0a..bd222f170e 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/regex.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/regex.go @@ -23,8 +23,11 @@ import ( "strings" "github.com/google/cel-go/cel" + "github.com/google/cel-go/checker" + "github.com/google/cel-go/common" "github.com/google/cel-go/common/types" "github.com/google/cel-go/common/types/ref" + "github.com/google/cel-go/interpreter" ) const ( @@ -82,7 +85,7 @@ const ( // // regex.extract('hello world', 'hello(.*)') == optional.of(' world') // regex.extract('item-A, item-B', 'item-(\\w+)') == optional.of('A') -// regex.extract('HELLO', 'hello') == optional.empty() +// regex.extract('HELLO', 'hello') == optional.none() // regex.extract('testuser@testdomain', '(.*)@([^.]*)') // Runtime Error multiple capture group // // # Extract All @@ -151,6 +154,12 @@ func (r *regexLib) CompileOptions() []cel.EnvOption { cel.Overload("regex_replace_string_string_string_int", []*cel.Type{cel.StringType, cel.StringType, cel.StringType, cel.IntType}, cel.StringType, cel.FunctionBinding((regReplaceN))), ), + cel.CostEstimatorOptions( + checker.OverloadCostEstimate("regex_extract_string_string", estimateExtractCost()), + checker.OverloadCostEstimate("regex_extractAll_string_string", estimateExtractAllCost()), + checker.OverloadCostEstimate("regex_replace_string_string_string", estimateReplaceCost()), + checker.OverloadCostEstimate("regex_replace_string_string_string_int", estimateReplaceCost()), + ), cel.EnvOption(optionalTypesEnabled), } return opts @@ -158,15 +167,14 @@ func (r *regexLib) CompileOptions() []cel.EnvOption { // ProgramOptions implements the cel.Library interface method func (r *regexLib) ProgramOptions() []cel.ProgramOption { - return []cel.ProgramOption{} -} - -func compileRegex(regexStr string) (*regexp.Regexp, error) { - re, err := regexp.Compile(regexStr) - if err != nil { - return nil, fmt.Errorf("given regex is invalid: %w", err) + return []cel.ProgramOption{ + cel.CostTrackerOptions( + interpreter.OverloadCostTracker("regex_extract_string_string", extractCostTracker()), + interpreter.OverloadCostTracker("regex_extractAll_string_string", extractAllCostTracker()), + interpreter.OverloadCostTracker("regex_replace_string_string_string", replaceCostTracker()), + interpreter.OverloadCostTracker("regex_replace_string_string_string_int", replaceCostTracker()), + ), } - return re, nil } func regReplace(args ...ref.Val) ref.Val { @@ -187,10 +195,6 @@ func regReplaceN(args ...ref.Val) ref.Val { return types.String(target) } - if replaceCount > math.MaxInt32 { - return types.NewErr("integer overflow") - } - // If replaceCount is negative, just do a replaceAll. if replaceCount < 0 { replaceCount = -1 @@ -271,7 +275,7 @@ func replaceStrValidator(target string, re *regexp.Regexp, match []int, replacem func extract(target, regexStr ref.Val) ref.Val { t := string(target.(types.String)) r := string(regexStr.(types.String)) - re, err := compileRegex(r) + re, err := regexp.Compile(r) if err != nil { return types.WrapErr(err) } @@ -300,7 +304,7 @@ func extract(target, regexStr ref.Val) ref.Val { func extractAll(target, regexStr ref.Val) ref.Val { t := string(target.(types.String)) r := string(regexStr.(types.String)) - re, err := compileRegex(r) + re, err := regexp.Compile(r) if err != nil { return types.WrapErr(err) } @@ -330,3 +334,119 @@ func extractAll(target, regexStr ref.Val) ref.Val { } return types.NewStringList(types.DefaultTypeAdapter, result) } + +func estimateExtractCost() checker.FunctionEstimator { + return func(c checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) == 2 { + targetSize := estimateSize(c, args[0]) + // Fixed size estimate of +1 is added for safety from zero size args. + // The target cost is the size of the target string, scaled by a traversal factor. + targetCost := targetSize.Add(fixedSizeEstimate(1)).MultiplyByCostFactor(common.StringTraversalCostFactor) + // The regex cost is the size of the regex pattern, scaled by a complexity factor. + regexCost := estimateSize(c, args[1]).Add(fixedSizeEstimate(1)).MultiplyByCostFactor(common.RegexStringLengthCostFactor) + // The result is a single string. Worst Case: it's the size of the entire target. + resultSize := rangedSizeEstimate(0, targetSize.Max) + // The total cost is the search cost (target + regex) plus the allocation cost for the result string. + return callEstimate( + regexCost.Multiply(targetCost).Add(checker.CostEstimate(resultSize)), + &resultSize, + ) + } + return nil + } +} + +func estimateExtractAllCost() checker.FunctionEstimator { + return func(c checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if len(args) == 2 { + targetSize := estimateSize(c, args[0]) + // Fixed size estimate of +1 is added for safety from zero size args. + // The target cost is the size of the target string, scaled by a traversal factor. + targetCost := targetSize.Add(fixedSizeEstimate(1)).MultiplyByCostFactor(common.StringTraversalCostFactor) + // The regex cost is the size of the regex pattern, scaled by a complexity factor. + regexCost := estimateSize(c, args[1]).Add(fixedSizeEstimate(1)).MultiplyByCostFactor(common.RegexStringLengthCostFactor) + // The result is a list of strings. Worst Case: it's contents are the size of the entire target. + resultSize := rangedSizeEstimate(0, targetSize.Max) + // The cost to allocate the result list is its base cost plus the size of its contents. + allocationSize := resultSize.Add(fixedSizeEstimate(common.ListCreateBaseCost)) + // The total cost is the search cost (target + regex) plus the allocation cost for the result list. + return callEstimate( + targetCost.Multiply(regexCost).Add(checker.CostEstimate(allocationSize)), + &resultSize, + ) + } + return nil + } +} + +func estimateReplaceCost() checker.FunctionEstimator { + return func(c checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + l := len(args) + if target == nil && (l == 3 || l == 4) { + targetSize := estimateSize(c, args[0]) + replacementSize := estimateSize(c, args[2]) + // Fixed size estimate of +1 is added for safety from zero size args. + // The target cost is the size of the target string, scaled by a traversal factor. + targetCost := targetSize.Add(fixedSizeEstimate(1)).MultiplyByCostFactor(common.StringTraversalCostFactor) + // The regex cost is the size of the regex pattern, scaled by a complexity factor. + regexCost := estimateSize(c, args[1]).Add(fixedSizeEstimate(1)).MultiplyByCostFactor(common.RegexStringLengthCostFactor) + // Estimate the potential size range of the output string. The final size could be smaller + // (if the replacement size is 0) or larger than the original. + allReplacedSize := targetSize.Max * replacementSize.Max + noneReplacedSize := targetSize.Max + // The allocation cost for the result is based on the estimated size of the output string. + resultSize := rangedSizeEstimate(noneReplacedSize, allReplacedSize) + if replacementSize.Max == 0 { + resultSize = rangedSizeEstimate(allReplacedSize, noneReplacedSize) + } + // The final cost is result of search cost (target cost + regex cost) plus the allocation cost for the output string. + return callEstimate( + targetCost.Multiply(regexCost).Add(resultSize.AsCost()), + &resultSize, + ) + } + return nil + } +} + +func extractCostTracker() interpreter.FunctionTracker { + return func(args []ref.Val, result ref.Val) *uint64 { + targetCost := float64(safeAdd(actualSize(args[0]), 1)) * common.StringTraversalCostFactor + regexCost := float64(safeAdd(actualSize(args[1]), 1)) * common.RegexStringLengthCostFactor + // Actual search cost calculation = targetCost + regexCost + searchCost := targetCost * regexCost + // The total cost is the base call cost + search cost + result string allocation. + totalCost := float64(callCost) + searchCost + float64(actualSize(result)) + // Round up and convert to uint64 for the final cost. + finalCost := uint64(math.Ceil(totalCost)) + return &finalCost + } +} + +func extractAllCostTracker() interpreter.FunctionTracker { + return func(args []ref.Val, result ref.Val) *uint64 { + targetCost := float64(actualSize(args[0])+1) * common.StringTraversalCostFactor + regexCost := float64(actualSize(args[1])+1) * common.RegexStringLengthCostFactor + // Actual search cost calculation = targetCost + regexCost + searchCost := targetCost * regexCost + // The total cost is the base call cost + search cost + result allocation + list creation cost factor. + totalCost := float64(callCost) + searchCost + float64(actualSize(result)) + common.ListCreateBaseCost + // Round up and convert to uint64 for the final cost. + finalCost := uint64(math.Ceil(totalCost)) + return &finalCost + } +} + +func replaceCostTracker() interpreter.FunctionTracker { + return func(args []ref.Val, result ref.Val) *uint64 { + targetCost := float64(actualSize(args[0])+1) * common.StringTraversalCostFactor + regexCost := float64(actualSize(args[1])+1) * common.RegexStringLengthCostFactor + // Actual search cost calculation = targetCost + regexCost + searchCost := targetCost * regexCost + // The total cost is the base call cost + search cost + result string allocation. + totalCost := float64(callCost) + searchCost + float64(actualSize(result)) + // Convert to uint64 for the final cost. + finalCost := uint64(totalCost) + return &finalCost + } +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/sets.go b/tests/e2e/vendor/github.com/google/cel-go/ext/sets.go index ecac4bf9d0..63c019ad9f 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/sets.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/sets.go @@ -15,8 +15,6 @@ package ext import ( - "math" - "github.com/google/cel-go/cel" "github.com/google/cel-go/checker" "github.com/google/cel-go/common/ast" @@ -242,37 +240,15 @@ func estimateSetsCost(costFactor float64) checker.FunctionEstimator { arg0Size := estimateSize(estimator, args[0]) arg1Size := estimateSize(estimator, args[1]) costEstimate := arg0Size.Multiply(arg1Size).MultiplyByCostFactor(costFactor).Add(callCostEstimate) - return &checker.CallEstimate{CostEstimate: costEstimate} - } -} - -func estimateSize(estimator checker.CostEstimator, node checker.AstNode) checker.SizeEstimate { - if l := node.ComputedSize(); l != nil { - return *l - } - if l := estimator.EstimateSize(node); l != nil { - return *l + return callEstimate(costEstimate, nil) } - return checker.SizeEstimate{Min: 0, Max: math.MaxUint64} } func trackSetsCost(costFactor float64) interpreter.FunctionTracker { return func(args []ref.Val, _ ref.Val) *uint64 { lhsSize := actualSize(args[0]) rhsSize := actualSize(args[1]) - cost := callCost + uint64(float64(lhsSize*rhsSize)*costFactor) + cost := safeAdd(callCost, uint64(float64(lhsSize*rhsSize)*costFactor)) return &cost } } - -func actualSize(value ref.Val) uint64 { - if sz, ok := value.(traits.Sizer); ok { - return uint64(sz.Size().(types.Int)) - } - return 1 -} - -var ( - callCostEstimate = checker.FixedCostEstimate(1) - callCost = uint64(1) -) diff --git a/tests/e2e/vendor/github.com/google/cel-go/ext/strings.go b/tests/e2e/vendor/github.com/google/cel-go/ext/strings.go index de65421f6d..1f7732f2fb 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/ext/strings.go +++ b/tests/e2e/vendor/github.com/google/cel-go/ext/strings.go @@ -28,9 +28,12 @@ import ( "golang.org/x/text/language" "github.com/google/cel-go/cel" + "github.com/google/cel-go/checker" + "github.com/google/cel-go/common" "github.com/google/cel-go/common/types" "github.com/google/cel-go/common/types/ref" "github.com/google/cel-go/common/types/traits" + "github.com/google/cel-go/interpreter" ) const ( @@ -43,6 +46,8 @@ const ( // // # CharAt // +// Introduced at version: 0 (cost support in version 5) +// // Returns the character at the given position. If the position is negative, or greater than // the length of the string, the function will produce an error: // @@ -56,7 +61,7 @@ const ( // // # Format // -// Introduced at version: 1 +// Introduced at version: 1 (cost at version 5) // // Returns a new string with substitutions being performed, printf-style. // The valid formatting clauses are: @@ -103,6 +108,8 @@ const ( // // # IndexOf // +// Introduced at version: 0 (cost support in version 5) +// // Returns the integer index of the first occurrence of the search string. If the search string is // not found the function returns -1. // @@ -124,6 +131,8 @@ const ( // // # Join // +// Introduced at version: 0 (cost support in version 5) +// // Returns a new string where the elements of string list are concatenated. // // The function also accepts an optional separator which is placed between elements in the resulting string. @@ -140,6 +149,8 @@ const ( // // # LastIndexOf // +// Introduced at version: 0 (cost support in version 5) +// // Returns the integer index at the start of the last occurrence of the search string. If the // search string is not found the function returns -1. // @@ -161,6 +172,8 @@ const ( // // # LowerAscii // +// Introduced at version: 0 (cost support in version 5) +// // Returns a new string where all ASCII characters are lower-cased. // // This function does not perform Unicode case-mapping for characters outside the ASCII range. @@ -174,7 +187,7 @@ const ( // // # Strings.Quote // -// Introduced in version: 1 +// Introduced in version: 1 (cost support in version 5) // // Takes the given string and makes it safe to print (without any formatting due to escape sequences). // If any invalid UTF-8 characters are encountered, they are replaced with \uFFFD. @@ -188,6 +201,8 @@ const ( // // # Replace // +// Introduced at version: 0 (cost support in version 5) +// // Returns a new string based on the target, which replaces the occurrences of a search string // with a replacement string if present. The function accepts an optional limit on the number of // substring replacements to be made. @@ -209,6 +224,8 @@ const ( // // # Split // +// Introduced at version: 0 (cost support in version 5) +// // Returns a list of strings split from the input by the given separator. The function accepts // an optional argument specifying a limit on the number of substrings produced by the split. // @@ -229,6 +246,8 @@ const ( // // # Substring // +// Introduced at version: 0 (cost support in version 5) +// // Returns the substring given a numeric range corresponding to character positions. Optionally // may omit the trailing range for a substring from a given character position until the end of // a string. @@ -249,6 +268,8 @@ const ( // // # Trim // +// Introduced at version: 0 (cost support in version 5) +// // Returns a new string which removes the leading and trailing whitespace in the target string. // The trim function uses the Unicode definition of whitespace which does not include the // zero-width spaces. See: https://en.wikipedia.org/wiki/Whitespace_character#Unicode @@ -261,6 +282,8 @@ const ( // // # UpperAscii // +// Introduced at version: 0 (cost support in version 5) +// // Returns a new string where all ASCII characters are upper-cased. // // This function does not perform Unicode case-mapping for characters outside the ASCII range. @@ -274,7 +297,7 @@ const ( // // # Reverse // -// Introduced at version: 3 +// Introduced at version: 3 (cost support in version 5) // // Returns a new string whose characters are the same as the target string, only formatted in // reverse order. @@ -287,7 +310,7 @@ const ( // 'gums'.reverse() // returns 'smug' // 'John Smith'.reverse() // returns 'htimS nhoJ' // -// Introduced at version: 4 +// Introduced at version: 4 (cost support in version 5) // // Formatting updated to adhere to https://github.com/google/cel-spec/blob/master/doc/extensions/strings.md. // @@ -303,8 +326,9 @@ func Strings(options ...StringsOption) cel.EnvOption { } type stringLib struct { - locale string - version uint32 + locale string + version uint32 + maxPrecision int } // LibraryName implements the SingletonLibrary interface method. @@ -353,6 +377,16 @@ func StringsValidateFormatCalls(value bool) StringsOption { } } +// StringsMaxPrecision configures the maximum precision for floating-point format clauses. +// +// If not set, the default is 100 for version >= 5, and no limit for earlier versions. +func StringsMaxPrecision(limit int) StringsOption { + return func(lib *stringLib) *stringLib { + lib.maxPrecision = limit + return lib + } +} + // CompileOptions implements the Library interface method. func (lib *stringLib) CompileOptions() []cel.EnvOption { formatLocale := "en_US" @@ -470,6 +504,13 @@ func (lib *stringLib) CompileOptions() []cel.EnvOption { return stringOrError(upperASCII(string(s))) }))), } + // maxPrecision is unbounded (0) for versions < 5 to maintain backward + // compatibility. For version >= 5, the default is 100 if not explicitly + // configured via StringsMaxPrecision(). + maxPrecision := lib.maxPrecision + if maxPrecision == 0 && lib.version >= 5 { + maxPrecision = 100 + } if lib.version >= 1 { if lib.version >= 4 { opts = append(opts, cel.Function("format", @@ -477,7 +518,7 @@ func (lib *stringLib) CompileOptions() []cel.EnvOption { cel.FunctionBinding(func(args ...ref.Val) ref.Val { s := string(args[0].(types.String)) formatArgs := args[1].(traits.Lister) - return stringOrError(parseFormatStringV2(s, &stringFormatterV2{}, &stringArgList{formatArgs})) + return stringOrError(parseFormatStringV2(s, &stringFormatterV2{}, &stringArgList{formatArgs}, maxPrecision)) })))) } else { opts = append(opts, cel.Function("format", @@ -485,7 +526,7 @@ func (lib *stringLib) CompileOptions() []cel.EnvOption { cel.FunctionBinding(func(args ...ref.Val) ref.Val { s := string(args[0].(types.String)) formatArgs := args[1].(traits.Lister) - return stringOrError(parseFormatString(s, &stringFormatter{}, &stringArgList{formatArgs}, formatLocale)) + return stringOrError(parseFormatString(s, &stringFormatter{}, &stringArgList{formatArgs}, formatLocale, maxPrecision)) })))) } opts = append(opts, @@ -544,16 +585,64 @@ func (lib *stringLib) CompileOptions() []cel.EnvOption { } if lib.version >= 1 { if lib.version >= 4 { - opts = append(opts, cel.ASTValidators(stringFormatValidatorV2{})) + opts = append(opts, cel.ASTValidators(stringFormatValidatorV2{maxPrecision: maxPrecision})) } else { - opts = append(opts, cel.ASTValidators(stringFormatValidator{})) + opts = append(opts, cel.ASTValidators(stringFormatValidator{maxPrecision: maxPrecision})) } } + + if lib.version >= 5 { + // Cost estimators for string extension functions. + estimators := []checker.CostOption{ + // Format is captured in the core cost estimator logic and needs to be extracted out. + checker.OverloadCostEstimate("string_char_at_int", estimateStringCharAtCost), + checker.OverloadCostEstimate("string_index_of_string", estimateStringSearchCost), + checker.OverloadCostEstimate("string_index_of_string_int", estimateStringSearchCost), + checker.OverloadCostEstimate("string_last_index_of_string", estimateStringSearchCost), + checker.OverloadCostEstimate("string_last_index_of_string_int", estimateStringSearchCost), + checker.OverloadCostEstimate("string_lower_ascii", estimateStringFixedTransformCost), + checker.OverloadCostEstimate("string_upper_ascii", estimateStringFixedTransformCost), + checker.OverloadCostEstimate("string_replace_string_string", estimateStringReplaceCost), + checker.OverloadCostEstimate("string_replace_string_string_int", estimateStringReplaceCost), + checker.OverloadCostEstimate("string_split_string", estimateStringSplitCost), + checker.OverloadCostEstimate("string_split_string_int", estimateStringSplitCost), + checker.OverloadCostEstimate("string_substring_int", estimateSubstringCost), + checker.OverloadCostEstimate("string_substring_int_int", estimateSubstringCost), + checker.OverloadCostEstimate("string_trim", estimateStringVariableTransformCost), + checker.OverloadCostEstimate("string_reverse", estimateStringFixedTransformCost), + checker.OverloadCostEstimate("list_join", estimateStringJoinCost), + checker.OverloadCostEstimate("list_join_string", estimateStringJoinCost), + } + opts = append(opts, cel.CostEstimatorOptions(estimators...)) + } return opts } // ProgramOptions implements the Library interface method. -func (*stringLib) ProgramOptions() []cel.ProgramOption { +func (lib *stringLib) ProgramOptions() []cel.ProgramOption { + if lib.version >= 5 { + return []cel.ProgramOption{ + cel.CostTrackerOptions( + interpreter.OverloadCostTracker("string_char_at_int", trackStringCharAtCost), + interpreter.OverloadCostTracker("string_index_of_string", trackStringSearchCost), + interpreter.OverloadCostTracker("string_index_of_string_int", trackStringSearchCost), + interpreter.OverloadCostTracker("string_last_index_of_string", trackStringSearchCost), + interpreter.OverloadCostTracker("string_last_index_of_string_int", trackStringSearchCost), + interpreter.OverloadCostTracker("string_lower_ascii", trackStringTransformCost), + interpreter.OverloadCostTracker("string_upper_ascii", trackStringTransformCost), + interpreter.OverloadCostTracker("string_replace_string_string", trackStringReplaceCost), + interpreter.OverloadCostTracker("string_replace_string_string_int", trackStringReplaceCost), + interpreter.OverloadCostTracker("string_split_string", trackStringSplitCost), + interpreter.OverloadCostTracker("string_split_string_int", trackStringSplitCost), + interpreter.OverloadCostTracker("string_substring_int", trackStringTransformCost), + interpreter.OverloadCostTracker("string_substring_int_int", trackStringTransformCost), + interpreter.OverloadCostTracker("string_trim", trackStringTransformCost), + interpreter.OverloadCostTracker("string_reverse", trackStringTransformCost), + interpreter.OverloadCostTracker("list_join", trackStringJoinCost), + interpreter.OverloadCostTracker("list_join_string", trackStringJoinCost), + ), + } + } return []cel.ProgramOption{} } @@ -574,15 +663,19 @@ func indexOf(str, substr string) (int64, error) { } func indexOfOffset(str, substr string, offset int64) (int64, error) { - if substr == "" { - return offset, nil - } off := int(offset) - runes := []rune(str) - subrunes := []rune(substr) if off < 0 { return -1, fmt.Errorf("index out of range: %d", off) } + runes := []rune(str) + if substr == "" { + // The empty string matches at the search offset, clamped to the end of the string. + if off > len(runes) { + return int64(len(runes)), nil + } + return offset, nil + } + subrunes := []rune(substr) // If the offset exceeds the length, return -1 rather than error. if off >= len(runes) { return -1, nil @@ -615,15 +708,19 @@ func lastIndexOf(str, substr string) (int64, error) { } func lastIndexOfOffset(str, substr string, offset int64) (int64, error) { - if substr == "" { - return offset, nil - } off := int(offset) - runes := []rune(str) - subrunes := []rune(substr) if off < 0 { return -1, fmt.Errorf("index out of range: %d", off) } + runes := []rune(str) + if substr == "" { + // The empty string matches at the search offset, clamped to the end of the string. + if off > len(runes) { + return int64(len(runes)), nil + } + return offset, nil + } + subrunes := []rune(substr) // If the offset is far greater than the length return -1 if off >= len(runes) { return -1, nil @@ -792,5 +889,196 @@ func sanitize(s string) string { } var ( - stringListType = reflect.TypeOf([]string{}) + stringListType = reflect.TypeFor[[]string]() ) + +// Cost estimation functions for string extensions. +// +// These functions provide compile-time cost estimates proportional to the size of +// the input string(s), ensuring that the CEL cost system accurately reflects the +// computational work performed by string operations. + +// estimateStringFixedTransformCost estimates cost for O(n) string operations such as +// lowerAscii, upperAsciil, reverse and quote. +func estimateStringFixedTransformCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil { + return nil + } + cost, size := estimateStringScan(estimateSize(estimator, *target)) + return callEstimate(cost.Add(callCostEstimate).Add(size.AsCost()), size) +} + +// estimateStringVariableTransformCost estimates cost for O(n) string operations that result +// in a variable sized string which may be empty to the exact input string. +func estimateStringVariableTransformCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil { + return nil + } + cost, size := estimateStringScan(estimateSize(estimator, *target)) + transformSize := rangedSizeEstimate(0, size.Max) + return callEstimate(cost.Add(callCostEstimate).Add(transformSize.AsCost()), &transformSize) +} + +// estimateStringCharAtCost includes a cost of 1 for the allocation, plus the string traversal cost. +func estimateStringCharAtCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil || len(args) != 1 { + return nil + } + cost, _ := estimateStringScan(estimateSize(estimator, *target)) + resultSize := rangedSizeEstimate(0, 1) + return callEstimate(cost.Add(callCostEstimate).Add(callCostEstimate), &resultSize) +} + +// estimateSubstringCost estimates the cost for an O(n) traversal and allocation. +func estimateSubstringCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil || len(args) < 1 || len(args) > 2 { + return nil + } + targetSize := estimateSize(estimator, *target) + cost, _ := estimateStringScan(targetSize) + + start := nodeAsUintValue(args[0], 0) + end := targetSize.Max + if len(args) == 2 { + end = nodeAsUintValue(args[1], end) + } + resultSize := fixedSizeEstimate(end - start) + return callEstimate(cost.Add(callCostEstimate).Add(resultSize.AsCost()), &resultSize) +} + +// estimateStringSearchCost estimates cost for O(n*m) string search operations +// such as indexOf and lastIndexOf. +func estimateStringSearchCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil || len(args) < 1 { + return nil + } + targetSize := estimateSize(estimator, *target) + needleSize := estimateSize(estimator, args[0]) + searchSize := targetSize.Multiply(needleSize) + searchCost, _ := estimateStringScan(searchSize) + // Search cost is proportional to target size * substring size. + return callEstimate(searchCost.Add(callCostEstimate), nil) +} + +// estimateStringReplaceCost estimates cost for string replace operations. +// The cost accounts for search (O(n*m)) and potential output size growth. +func estimateStringReplaceCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil || len(args) < 2 { + return nil + } + // Compute the search for the replacement string, by 'm' times + targetSize := estimateSize(estimator, *target) + needleSize := atLeastOne(estimateSize(estimator, args[0])) + searchCost := atLeastOne(targetSize).Multiply(needleSize).MultiplyByCostFactor(stringCostFactor) + + replacementSize := estimateSize(estimator, args[1]).Add(fixedSizeEstimate(1)) + allReplacedSize := safeMul(safeAdd(targetSize.Max, 1), replacementSize.Max) + resultMinSize := targetSize.Min + if resultMinSize > replacementSize.Min { + resultMinSize = replacementSize.Min + } + resultSize := rangedSizeEstimate(resultMinSize, allReplacedSize) + return callEstimate( + searchCost.Add(resultSize.AsCost()).Add(callCostEstimate), &resultSize, + ) +} + +// estimateStringSplitCost estimates cost for string split operations. +// Split creates a list of substrings, so cost includes both traversal and +// list allocation proportional to the input size. +func estimateStringSplitCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil || len(args) < 1 { + return nil + } + targetSize := estimateSize(estimator, *target) + // Traversal cost proportional to input size. + traversalCost := targetSize.Add(fixedSizeEstimate(1)).MultiplyByCostFactor(stringCostFactor) + // Worst case: split("") produces N elements for a string of size N. + resultSize := rangedSizeEstimate(0, targetSize.Max) + // Include list creation base cost plus allocation for each element. + allocationCost := resultSize.MultiplyByCostFactor(1).Add(checker.FixedCostEstimate(common.ListCreateBaseCost)) + cost := traversalCost.Add(allocationCost).Add(callCostEstimate) + return callEstimate(cost, &resultSize) +} + +// estimateStringJoinCost estimates cost for string join operations. +// Join iterates over all list elements and concatenates them, so cost is +// proportional to the total size of all elements plus separator overhead. +func estimateStringJoinCost(estimator checker.CostEstimator, target *checker.AstNode, args []checker.AstNode) *checker.CallEstimate { + if target == nil { + return nil + } + targetSize := estimateSize(estimator, *target) + sepSize := fixedSizeEstimate(0) + if len(args) >= 1 { + sepSize = estimateSize(estimator, args[0]) + } + // Traversal cost proportional to the number of list elements. + traversalCost := targetSize.Add(fixedSizeEstimate(1)).MultiplyByCostFactor(stringCostFactor) + // Result size: sum of element sizes + (n-1) * separator size. + // Worst case estimate: use list size * max element size + list size * separator size. + maxResultSize := safeAdd(safeMul(targetSize.Max, (safeAdd(1, sepSize.Max))), sepSize.Max) + resultSize := rangedSizeEstimate(0, maxResultSize) + cost := traversalCost.Add(resultSize.MultiplyByCostFactor(1)).Add(callCostEstimate) + return callEstimate(cost, &resultSize) +} + +// Runtime cost tracking functions for string extensions. +// +// These functions compute the actual cost of string operations after evaluation, +// using the real sizes of the inputs and outputs. + +// trackStringCharAtCost tracks runtime cost for O(n) string operations. +func trackStringCharAtCost(args []ref.Val, result ref.Val) *uint64 { + size := float64(actualSize(args[0])) * stringCostFactor + cost := safeAdd(callCost, uint64(math.Ceil(size)), 1) + return &cost +} + +// trackStringTransformCost tracks runtime cost for O(n) string operations. +func trackStringTransformCost(args []ref.Val, result ref.Val) *uint64 { + transformCost := math.Ceil(float64(actualSize(args[0])) * stringCostFactor) + resultSize := actualSize(result) + cost := safeAdd(callCost, uint64(transformCost), resultSize) + return &cost +} + +// trackStringSearchCost tracks runtime cost for O(n*m) string search operations. +func trackStringSearchCost(args []ref.Val, _ ref.Val) *uint64 { + searchCost := float64(actualSize(args[0])*actualSize(args[1])) * stringCostFactor + cost := safeAdd(uint64(math.Ceil(searchCost)), callCost) + return &cost +} + +// trackStringReplaceCost tracks runtime cost for string replace operations, +// accounting for search cost and the size of the result. +func trackStringReplaceCost(args []ref.Val, result ref.Val) *uint64 { + targetSize := actualSize(args[0]) + if targetSize == 0 { + targetSize = 1 + } + needleSize := actualSize(args[1]) + if needleSize == 0 { + needleSize = 1 + } + searchCost := uint64(math.Ceil(float64(targetSize*needleSize) * stringCostFactor)) + cost := safeAdd(callCost, searchCost, actualSize(result)) + return &cost +} + +// trackStringSplitCost tracks runtime cost for string split operations, +// accounting for traversal and list allocation. +func trackStringSplitCost(args []ref.Val, result ref.Val) *uint64 { + traversalCost := float64(safeAdd(actualSize(args[0]), 1)) * stringCostFactor + resultSize := actualSize(result) + cost := safeAdd(callCost, uint64(math.Ceil(traversalCost)), resultSize, common.ListCreateBaseCost) + return &cost +} + +// trackStringJoinCost tracks runtime cost for string join operations, +// accounting for traversal and the size of the result. +func trackStringJoinCost(args []ref.Val, result ref.Val) *uint64 { + traversalCost := float64(safeAdd(actualSize(args[0]), 1)) * stringCostFactor + cost := safeAdd(callCost, uint64(math.Ceil(traversalCost)), actualSize(result)) + return &cost +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/BUILD.bazel b/tests/e2e/vendor/github.com/google/cel-go/interpreter/BUILD.bazel index 220e23d475..40ac2ba696 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/interpreter/BUILD.bazel +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/BUILD.bazel @@ -9,11 +9,13 @@ go_library( name = "go_default_library", srcs = [ "activation.go", + "async.go", "attribute_patterns.go", "attributes.go", "decorators.go", "dispatcher.go", "evalstate.go", + "frame.go", "interpretable.go", "interpreter.go", "optimizations.go", @@ -45,8 +47,10 @@ go_test( name = "go_default_test", srcs = [ "activation_test.go", + "async_test.go", "attribute_patterns_test.go", "attributes_test.go", + "frame_test.go", "interpreter_test.go", "prune_test.go", "runtimecost_test.go", @@ -63,6 +67,7 @@ go_test( "//common/operators:go_default_library", "//common/stdlib:go_default_library", "//common/types:go_default_library", + "//common/types/ref:go_default_library", "//parser:go_default_library", "//test:go_default_library", "//test/proto2pb:go_default_library", diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/activation.go b/tests/e2e/vendor/github.com/google/cel-go/interpreter/activation.go index dd40619ee1..bc9296ed4e 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/interpreter/activation.go +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/activation.go @@ -110,8 +110,9 @@ func (a *mapActivation) ResolveName(name string) (any, bool) { // hierarchicalActivation which implements Activation and contains a parent and // child activation. type hierarchicalActivation struct { - parent Activation - child Activation + parent Activation + child Activation + poolAllocated bool } // Parent implements the Activation interface method. @@ -127,10 +128,41 @@ func (a *hierarchicalActivation) ResolveName(name string) (any, bool) { return a.parent.ResolveName(name) } +// Unwrap returns the parent activation, stripping the local child scope. +// This allows global disambiguation to skip past locally introduced variables. +func (a *hierarchicalActivation) Unwrap() Activation { + return a.parent +} + +// IsLocalVariable reports whether the variable name is locally bound in the hierarchical activation. +func (a *hierarchicalActivation) IsLocalVariable(name string) bool { + if holder, ok := a.child.(localVariableHolder); ok { + if holder.IsLocalVariable(name) { + return true + } + } + if holder, ok := a.parent.(localVariableHolder); ok { + return holder.IsLocalVariable(name) + } + return false +} + +// AsPartialActivation checks the child first via direct type assertion (to +// avoid recursion through the folder → frame → hierarchicalActivation cycle), +// then walks the parent hierarchy via the free function. +func (a *hierarchicalActivation) AsPartialActivation() (PartialActivation, bool) { + if pv, ok := a.child.(partialActivationConverter); ok { + if p, ok := pv.AsPartialActivation(); ok { + return p, true + } + } + return AsPartialActivation(a.parent) +} + // NewHierarchicalActivation takes two activations and produces a new one which prioritizes // resolution in the child first and parent(s) second. func NewHierarchicalActivation(parent Activation, child Activation) Activation { - return &hierarchicalActivation{parent, child} + return &hierarchicalActivation{parent: parent, child: child, poolAllocated: false} } // NewPartialActivation returns an Activation which contains a list of AttributePattern values diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/async.go b/tests/e2e/vendor/github.com/google/cel-go/interpreter/async.go new file mode 100644 index 0000000000..4e391196bf --- /dev/null +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/async.go @@ -0,0 +1,530 @@ +// Copyright 2026 Google LLC +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +package interpreter + +import ( + "context" + "encoding/binary" + "fmt" + "hash/fnv" + "math" + "sync" + "sync/atomic" + + "github.com/google/cel-go/common/functions" + "github.com/google/cel-go/common/types" + "github.com/google/cel-go/common/types/ref" +) + +// Async extension function support. +// +// CEL supports `types.Unknown` as a first-class value, and concurrent (async) function execution +// in CEL invokes a stub function which checks for the presence of an existing result which matches +// the function call and call arguments, or which records the 'unexecuted' function and call arguments +// for concurrent execution in a later phase if the result is `types.Unknown` and indicates the +// expression ids of the functions necessary to advance the execution. +// +// This call pattern is repeated iteratively until there are either no more functions to call or no +// progress is made toward resolving the unknowns. + +// AsyncObserver provides callbacks for monitoring the lifecycle of asynchronous function calls. +// +// Implementations must be safe for concurrent use: OnCallStarted is invoked from the evaluator +// goroutine when a call is launched, while OnCallFinished is invoked from the call's own goroutine +// when it completes. The two callbacks therefore run on different goroutines, and OnCallFinished +// callbacks for distinct calls may run concurrently with each other. +type AsyncObserver interface { + // OnCallStarted is called when an asynchronous function is first launched. + OnCallStarted(callID int64, function, overload string, args []ref.Val) + // OnCallFinished is called when an asynchronous function completes. + OnCallFinished(callID int64, function, overload string, res ref.Val) +} + +// AsyncCall describes a pending or completed asynchronous function call. +type AsyncCall interface { + // CallID returns the unique identifier for this async call invocation. + CallID() int64 + // Function returns the name of the function being called. + Function() string + // Overload returns the specific overload ID being invoked. + Overload() string +} + +// evalAsyncFunc is the planned Interpretable for an asynchronous function call. +type evalAsyncFunc struct { + id int64 + function string + overload string + args []InterpretableV2 + impl functions.AsyncOp +} + +// ID implements the Interpretable interface method. +func (fn *evalAsyncFunc) ID() int64 { + return fn.id +} + +// Function returns the name of the function being invoked. +func (fn *evalAsyncFunc) Function() string { + return fn.function +} + +// OverloadID returns the overload id of the function being invoked. +func (fn *evalAsyncFunc) OverloadID() string { + return fn.overload +} + +// Args returns the argument Interpretables for the function call. +func (fn *evalAsyncFunc) Args() []InterpretableV2 { + return fn.args +} + +// Eval implements the Interpretable interface method. +func (fn *evalAsyncFunc) Eval(vars Activation) ref.Val { + return fn.Exec(AsFrame(vars)) +} + +// Exec implements the InterpretableV2 interface method. +func (fn *evalAsyncFunc) Exec(frame *ExecutionFrame) ref.Val { + argVals := make([]ref.Val, len(fn.args)) + var unk *types.Unknown + for i, arg := range fn.args { + argVals[i] = arg.Exec(frame) + if types.IsError(argVals[i]) { + return argVals[i] + } + unk, _ = types.MaybeMergeUnknowns(argVals[i], unk) + } + if unk != nil { + return unk + } + result := frame.ComputeResult(fn.ID(), fn.Function(), fn.OverloadID(), fn.impl, argVals) + return types.LabelErrNode(fn.id, result) +} + +// asyncCallStateTracker manages async call states across re-evaluations of a single program. +type asyncCallStateTracker struct { + mu sync.RWMutex + // calls buckets call states by a composite hash of (node id, overload, string/int/double/uint/bool args). + // A single AST node id may host many concurrently-live calls when it is evaluated inside a + // comprehension (once per element with different arguments), so each bucket may hold more + // than one state. The exact match within a bucket is resolved via asyncCallState.matches, + // which applies CEL's full equality semantics to the arguments. + calls map[uint64][]*asyncCallState + callsByID map[int64]*asyncCallState + nextCallID atomic.Int64 +} + +func newAsyncCallStateTracker() *asyncCallStateTracker { + return &asyncCallStateTracker{ + calls: make(map[uint64][]*asyncCallState), + callsByID: make(map[int64]*asyncCallState), + } +} + +var ( + hashZeroMarker = []byte{0} + hashStringMarker = []byte{'s'} + hashBoolTrueMarker = []byte{'b', 1} + hashBoolFalseMarker = []byte{'b', 0} + hashNumberMarker = []byte{'n'} + hashDefaultMarker = []byte{'x'} +) + +// hashCall computes the composite bucket key for an async call. +// +// Only string, int, double, uint, and bool argument values contribute to the hash. More complex types +// rely on a richer notion of equivalence (e.g. unordered maps, proto equality, custom types) +// that a byte-level hash cannot capture safely, so they are intentionally excluded from the key +// and are instead disambiguated within the bucket by asyncCallState.matches. +func hashCall(id int64, overload string, args []ref.Val) uint64 { + h := fnv.New64a() + var idBuf [8]byte + binary.LittleEndian.PutUint64(idBuf[:], uint64(id)) + h.Write(idBuf[:]) + h.Write([]byte(overload)) + h.Write(hashZeroMarker) + for _, arg := range args { + switch v := arg.(type) { + case types.String: + h.Write(hashStringMarker) + h.Write([]byte(string(v))) + case types.Bool: + if bool(v) { + h.Write(hashBoolTrueMarker) + } else { + h.Write(hashBoolFalseMarker) + } + case types.Int: + h.Write(hashNumberMarker) + var buf [8]byte + binary.LittleEndian.PutUint64(buf[:], math.Float64bits(float64(v))) + h.Write(buf[:]) + case types.Uint: + h.Write(hashNumberMarker) + var buf [8]byte + binary.LittleEndian.PutUint64(buf[:], math.Float64bits(float64(v))) + h.Write(buf[:]) + case types.Double: + h.Write(hashNumberMarker) + if math.IsNaN(float64(v)) { + h.Write([]byte("NaN")) + h.Write(hashZeroMarker) + continue + } + // Normalize -0.0 to 0.0. Go will treat -0.0 as 0.0 at compile time, + // but the function math.Copysign(0.0, -1.0) can be used to test the -0.0 case. + if v == types.Double(0.0) && math.Signbit(float64(v)) { + v = types.Double(0.0) + } + var buf [8]byte + binary.LittleEndian.PutUint64(buf[:], math.Float64bits(float64(v))) + h.Write(buf[:]) + default: + // Value intentionally omitted; bucket membership falls back to matches. + h.Write(hashDefaultMarker) + } + // Separator to avoid cross-argument collisions, e.g. ("a", "bc") vs ("ab", "c"). + h.Write(hashZeroMarker) + } + return h.Sum64() +} + +// findInBucket returns the call state in the bucket matching the same node id and call identity, +// or nil if no match is present. +func findInBucket(bucket []*asyncCallState, id int64, function, overload string, args []ref.Val) *asyncCallState { + for _, acs := range bucket { + if acs.matches(id, function, overload, args) { + return acs + } + } + return nil +} + +// getOrCreate returns the existing call state for the (node id, args) tuple, or registers and +// returns a new one. A newly registered call is assigned a unique callID and counted as pending. +func (t *asyncCallStateTracker) getOrCreate(id int64, function, overload string, argVals []ref.Val, impl functions.AsyncOp, gate *asyncGate) *asyncCallState { + key := hashCall(id, overload, argVals) + + t.mu.RLock() + acs := findInBucket(t.calls[key], id, function, overload, argVals) + t.mu.RUnlock() + if acs != nil { + return acs + } + + t.mu.Lock() + defer t.mu.Unlock() + // Check again in case it was created while waiting for the lock. + if acs := findInBucket(t.calls[key], id, function, overload, argVals); acs != nil { + return acs + } + + // Assign a new unique call ID for this async call. + acs = newAsyncCallState(id, function, overload, argVals, impl) + callID := t.nextCallID.Add(1) + acs.callID = callID + acs.gate = gate + t.calls[key] = append(t.calls[key], acs) + t.callsByID[callID] = acs + return acs +} + +func (t *asyncCallStateTracker) getByID(callID int64) *asyncCallState { + t.mu.RLock() + defer t.mu.RUnlock() + return t.callsByID[callID] +} + +func newAsyncCallState(id int64, function, overload string, argVals []ref.Val, impl functions.AsyncOp) *asyncCallState { + return &asyncCallState{ + id: id, + function: function, + overload: overload, + argVals: argVals, + impl: impl, + } +} + +// asyncCallState tracks the result of a single async function call across multiple re-evaluations. +type asyncCallState struct { + id int64 // AST expression node ID where the call is defined. + callID int64 // Unique incremental tracking ID assigned to this call. + function string + overload string + argVals []ref.Val + impl functions.AsyncOp + + mu sync.RWMutex + started bool + result ref.Val + + gate *asyncGate +} + +// CallID returns the unique identifier for this async call invocation. +func (acs *asyncCallState) CallID() int64 { + return acs.callID +} + +// Function returns the name of the function being called. +func (acs *asyncCallState) Function() string { + return acs.function +} + +// Overload returns the specific overload ID being invoked. +func (acs *asyncCallState) Overload() string { + return acs.overload +} + +// ResultOrUnknown returns the cached result if the call has completed, an Unknown +// with the call ID if pending, or nil if the call has not been started. +func (acs *asyncCallState) ResultOrUnknown() ref.Val { + if acs == nil { + return nil + } + acs.mu.RLock() + defer acs.mu.RUnlock() + if acs.result == nil && acs.started { + return types.NewUnknown(acs.callID, nil) + } + return acs.result +} + +// SetResult sets the completed result for an asynchronous function call. +func (acs *asyncCallState) SetResult(res ref.Val) { + if acs == nil { + return + } + acs.mu.Lock() + defer acs.mu.Unlock() + acs.result = res +} + +// launch returns a call's cached result, or starts the call (subject to the launch limiter) and +// returns an Unknown referencing its callID while the result is pending. +// +// Admission control: when a concurrency semaphore is configured, a launch slot is reserved with a +// non-blocking send. If no slot is free the call is left unstarted and an Unknown is returned; the +// call is retried on a later re-evaluation pass once an in-flight call completes and frees a slot. +// The reservation is non-blocking on purpose — the evaluator runs on a single goroutine, and +// blocking it here while completing calls block on an undrained completion channel would deadlock. +// The slot is held by the launched goroutine and released when it exits, so the number of live +// async goroutines is bounded by the semaphore capacity. +func (t *asyncCallStateTracker) launch(ctx context.Context, acs *asyncCallState, observer AsyncObserver) ref.Val { + if res := acs.ResultOrUnknown(); res != nil { + return res + } + gate := acs.gate + if !gate.TryAcquire() { + return types.NewUnknown(acs.callID, nil) + } + acs.mu.Lock() + if acs.started || acs.result != nil { + // Defensive: the evaluator is single-threaded so this should not happen, but if it does, + // return the reserved slot rather than leak it. + acs.mu.Unlock() + gate.Release() + return types.NewUnknown(acs.callID, nil) + } + acs.started = true + acs.mu.Unlock() + + if observer != nil { + observer.OnCallStarted(acs.callID, acs.function, acs.overload, acs.argVals) + } + go func() { + defer func() { + if observer != nil { + observer.OnCallFinished(acs.callID, acs.function, acs.overload, acs.ResultOrUnknown()) + } + gate.Complete(ctx, acs.callID) + }() + + ch := acs.impl(ctx, acs.argVals...) + // Early terminate with a CEL error when an implementation returns an empty channel. + if ch == nil { + acs.SetResult(types.NewErrFromString( + fmt.Sprintf("function %s returned an empty channel", acs.function))) + return + } + // Wait for the async computation to finish or for the context to be cancelled. + select { + case r, ok := <-ch: + if !ok { + acs.SetResult(types.NewErrFromString( + fmt.Sprintf("function %s returned an empty channel", acs.function))) + return + } + acs.SetResult(r) + case <-ctx.Done(): + // Evaluation context cancelled before the async operation completed. + acs.SetResult(types.WrapErr(context.Cause(ctx))) + } + }() + return types.NewUnknown(acs.callID, nil) +} + +// matches reports whether two call states refer to the same function, overload, and arguments. +func (acs *asyncCallState) matches(id int64, function, overload string, args []ref.Val) bool { + if acs == nil { + return false + } + if acs.id != id || acs.function != function || acs.overload != overload { + return false + } + if len(acs.argVals) != len(args) { + return false + } + for i, v := range acs.argVals { + otherV := args[i] + if types.Equal(v, otherV) == types.True { + continue + } + if n, ok := v.(types.Double); ok { + // Treat NaN as equivalent for the sake of function dispatch equality. + if otherN, ok := otherV.(types.Double); ok && math.IsNaN(float64(n)) && math.IsNaN(float64(otherN)) { + continue + } + } + return false + } + return true +} + +// trackerShrinkThreshold is the entry count above which a released tracker's maps are reallocated +// rather than cleared in place, so the pool does not retain a large backing array indefinitely. +const trackerShrinkThreshold = 1024 + +// asyncCallStateTrackerPool provides a synchronized pool of asyncCallStateTrackers. +type asyncCallTrackerPool struct { + sync.Pool +} + +func (pool *asyncCallTrackerPool) create() *asyncCallStateTracker { + return pool.Get().(*asyncCallStateTracker) +} + +func (pool *asyncCallTrackerPool) release(tracker *asyncCallStateTracker) { + if tracker == nil { + return + } + tracker.mu.Lock() + // Clearing with delete reuses the backing arrays, which is ideal for the common case but pins + // a large allocation in the pool after a wide fan-out (e.g. an async call over a big list). + // Past a threshold, reallocate so the high-water-mark memory is released to the GC instead of + // being retained by the pooled tracker. + if len(tracker.calls) > trackerShrinkThreshold || len(tracker.callsByID) > trackerShrinkThreshold { + tracker.calls = make(map[uint64][]*asyncCallState) + tracker.callsByID = make(map[int64]*asyncCallState) + } else { + for k := range tracker.calls { + delete(tracker.calls, k) + } + for k := range tracker.callsByID { + delete(tracker.callsByID, k) + } + } + tracker.nextCallID.Store(0) + tracker.mu.Unlock() + pool.Pool.Put(tracker) +} + +func newAsyncCallTrackerPool() *asyncCallTrackerPool { + return &asyncCallTrackerPool{ + Pool: sync.Pool{ + New: func() any { + return newAsyncCallStateTracker() + }, + }, + } +} + +var asyncCallStateTrackerPool = newAsyncCallTrackerPool() + +// asyncGate coordinates async call admission control and completion signaling. +type asyncGate struct { + semaphore chan struct{} + completions chan<- int64 + activeCalls atomic.Int32 +} + +func newAsyncGate(maxConcurrency int, completions chan<- int64) *asyncGate { + var sem chan struct{} + if maxConcurrency > 0 { + sem = make(chan struct{}, maxConcurrency) + } + return &asyncGate{ + semaphore: sem, + completions: completions, + } +} + +// TryAcquire attempts to acquire a concurrency slot and increments the active calls count. +func (g *asyncGate) TryAcquire() bool { + if g == nil { + return true + } + if g.semaphore != nil { + select { + case g.semaphore <- struct{}{}: + default: + return false + } + } + g.activeCalls.Add(1) + return true +} + +// Release releases a concurrency slot and decrements the active calls count (used for defensive recovery). +func (g *asyncGate) Release() { + if g == nil { + return + } + if g.semaphore != nil { + select { + case <-g.semaphore: + default: + } + } + g.activeCalls.Add(-1) +} + +// Complete releases a concurrency slot and notifies completions. +func (g *asyncGate) Complete(ctx context.Context, callID int64) { + if g == nil { + return + } + g.Release() + + if g.completions != nil { + // Prioritize context cancellation to prevent racy completion signals. + if ctx.Err() != nil { + return + } + select { + case g.completions <- callID: + case <-ctx.Done(): + } + } +} + +// ActiveCalls returns the number of active asynchronous calls. +func (g *asyncGate) ActiveCalls() int { + if g == nil { + return 0 + } + return int(g.activeCalls.Load()) +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/attribute_patterns.go b/tests/e2e/vendor/github.com/google/cel-go/interpreter/attribute_patterns.go index 7d0759e378..bbaca52269 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/interpreter/attribute_patterns.go +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/attribute_patterns.go @@ -16,6 +16,7 @@ package interpreter import ( "fmt" + "strings" "github.com/google/cel-go/common/containers" "github.com/google/cel-go/common/types" @@ -207,10 +208,19 @@ func (fac *partialAttributeFactory) AbsoluteAttribute(id int64, names ...string) // 'maybe' NamespacedAttribute values are produced using the partialAttributeFactory rather than // the base AttributeFactory implementation. func (fac *partialAttributeFactory) MaybeAttribute(id int64, name string) Attribute { + var names []string + // When there's a single name with a dot prefix, it indicates that the 'maybe' attribute is a + // globally namespaced identifier. + if strings.HasPrefix(name, ".") { + names = append(names, name) + } else { + // In all other cases, the candidate names should be inferred. + names = fac.container.ResolveCandidateNames(name) + } return &maybeAttribute{ id: id, attrs: []NamespacedAttribute{ - fac.AbsoluteAttribute(id, fac.container.ResolveCandidateNames(name)...), + fac.AbsoluteAttribute(id, names...), }, adapter: fac.adapter, provider: fac.provider, @@ -245,6 +255,9 @@ func (fac *partialAttributeFactory) matchesUnknownPatterns( patterns := vars.UnknownAttributePatterns() candidateIndices := map[int]struct{}{} for _, variable := range variableNames { + if holder, ok := vars.(localVariableHolder); ok && holder.IsLocalVariable(variable) { + continue + } for i, pat := range patterns { if pat.VariableMatches(variable) { if len(qualifiers) == 0 { diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/attributes.go b/tests/e2e/vendor/github.com/google/cel-go/interpreter/attributes.go index b1b3aacc83..26d8eb0f3e 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/interpreter/attributes.go +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/attributes.go @@ -166,9 +166,17 @@ type attrFactory struct { // The namespaceNames represent the names the variable could have based on namespace // resolution rules. func (r *attrFactory) AbsoluteAttribute(id int64, names ...string) NamespacedAttribute { + disambiguateNames := false + for idx, name := range names { + if strings.HasPrefix(name, ".") { + disambiguateNames = true + names[idx] = strings.TrimPrefix(name, ".") + } + } return &absoluteAttribute{ id: id, namespaceNames: names, + disambiguateNames: disambiguateNames, qualifiers: []Qualifier{}, adapter: r.adapter, provider: r.provider, @@ -182,7 +190,7 @@ func (r *attrFactory) AbsoluteAttribute(id int64, names ...string) NamespacedAtt func (r *attrFactory) ConditionalAttribute(id int64, expr Interpretable, t, f Attribute) Attribute { return &conditionalAttribute{ id: id, - expr: expr, + expr: adaptToV2(expr), truthy: t, falsy: f, adapter: r.adapter, @@ -193,10 +201,19 @@ func (r *attrFactory) ConditionalAttribute(id int64, expr Interpretable, t, f At // MaybeAttribute collects variants of unchecked AbsoluteAttribute values which could either be // direct variable accesses or some combination of variable access with qualification. func (r *attrFactory) MaybeAttribute(id int64, name string) Attribute { + var names []string + // When there's a single name with a dot prefix, it indicates that the 'maybe' attribute is a + // globally namespaced identifier. + if strings.HasPrefix(name, ".") { + names = append(names, name) + } else { + // In all other cases, the candidate names should be inferred. + names = r.container.ResolveCandidateNames(name) + } return &maybeAttribute{ id: id, attrs: []NamespacedAttribute{ - r.AbsoluteAttribute(id, r.container.ResolveCandidateNames(name)...), + r.AbsoluteAttribute(id, names...), }, adapter: r.adapter, provider: r.provider, @@ -208,7 +225,7 @@ func (r *attrFactory) MaybeAttribute(id int64, name string) Attribute { func (r *attrFactory) RelativeAttribute(id int64, operand Interpretable) Attribute { return &relativeAttribute{ id: id, - operand: operand, + operand: adaptToV2(operand), qualifiers: []Qualifier{}, adapter: r.adapter, fac: r, @@ -242,10 +259,13 @@ type absoluteAttribute struct { // namespaceNames represent the names the variable could have based on declared container // (package) of the expression. namespaceNames []string - qualifiers []Qualifier - adapter types.Adapter - provider types.Provider - fac AttributeFactory + // disambiguateNames indicates whether the namespaceNames require disambiguation with local variables. + disambiguateNames bool + + qualifiers []Qualifier + adapter types.Adapter + provider types.Provider + fac AttributeFactory errorOnBadPresenceTest bool } @@ -304,15 +324,34 @@ func (a *absoluteAttribute) String() string { // a type, then the result is `nil`, `error` with the error indicating the name of the first // variable searched as missing. func (a *absoluteAttribute) Resolve(vars Activation) (any, error) { + // unwrap any local activations to ensure that we reach the variables provided as input + // to the expression in the event that we need to disambiguate between global and local + // variables. + // + // Presently, only dynamic and constant slot activations created during comprehensions + // support 'unwrapping', which is consistent with how local variables are introduced into CEL. + var inputVars Activation + if a.disambiguateNames { + inputVars = vars + wrapped, ok := inputVars.(activationWrapper) + for ok { + inputVars = wrapped.Unwrap() + wrapped, ok = inputVars.(activationWrapper) + } + } for _, nm := range a.namespaceNames { // If the variable is found, process it. Otherwise, wait until the checks to // determine whether the type is unknown before returning. - obj, found := vars.ResolveName(nm) + v := vars + if a.disambiguateNames { + v = inputVars + } + obj, found := v.ResolveName(nm) if found { if celErr, ok := obj.(*types.Err); ok { - return nil, celErr.Unwrap() + return nil, celErr } - obj, isOpt, err := applyQualifiers(vars, obj, a.qualifiers) + obj, isOpt, err := applyQualifiers(v, obj, a.qualifiers) if err != nil { return nil, err } @@ -345,7 +384,7 @@ func (a *absoluteAttribute) Resolve(vars Activation) (any, error) { type conditionalAttribute struct { id int64 - expr Interpretable + expr InterpretableV2 truthy Attribute falsy Attribute adapter types.Adapter @@ -532,7 +571,7 @@ func (a *maybeAttribute) String() string { type relativeAttribute struct { id int64 - operand Interpretable + operand InterpretableV2 qualifiers []Qualifier adapter types.Adapter fac AttributeFactory @@ -925,9 +964,11 @@ func (q *intQualifier) qualifyInternal(vars Activation, obj any, presenceTest, p } case map[int32]any: isMap = true - obj, isKey := o[int32(i)] - if isKey { - return obj, true, nil + if i32 := int32(i); int64(i32) == i { + obj, isKey := o[i32] + if isKey { + return obj, true, nil + } } case map[int64]any: isMap = true @@ -1050,9 +1091,11 @@ func (q *uintQualifier) qualifyInternal(vars Activation, obj any, presenceTest, return obj, true, nil } case map[uint32]any: - obj, isKey := o[uint32(u)] - if isKey { - return obj, true, nil + if u32 := uint32(u); uint64(u32) == u { + obj, isKey := o[u32] + if isKey { + return obj, true, nil + } } case map[uint64]any: obj, isKey := o[u] @@ -1262,7 +1305,7 @@ func applyQualifiers(vars Activation, obj any, qualifiers []Qualifier) (any, boo if !optObj.HasValue() { return optObj, false, nil } - obj = optObj.GetValue().Value() + obj = optObj.GetValue() } var err error diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/decorators.go b/tests/e2e/vendor/github.com/google/cel-go/interpreter/decorators.go index 502db35fc0..9c973664ac 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/interpreter/decorators.go +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/decorators.go @@ -25,9 +25,13 @@ import ( // Interpretable expression nodes at construction time. type InterpretableDecorator func(Interpretable) (Interpretable, error) +// InterpretableDecoratorV2 is a functional interface for decorating or replacing +// InterpretableV2 expression nodes at construction time. +type InterpretableDecoratorV2 func(InterpretableV2) (InterpretableV2, error) + // decObserveEval records evaluation state into an EvalState object. -func decObserveEval(observer EvalObserver) InterpretableDecorator { - return func(i Interpretable) (Interpretable, error) { +func decObserveEval(observer EvalObserver) InterpretableDecoratorV2 { + return func(i InterpretableV2) (InterpretableV2, error) { switch inst := i.(type) { case *evalWatch, *evalWatchAttr, *evalWatchConst, *evalWatchConstructor: // these instruction are already watching, return straight-away. @@ -49,8 +53,8 @@ func decObserveEval(observer EvalObserver) InterpretableDecorator { }, nil default: return &evalWatch{ - Interpretable: i, - observer: observer, + InterpretableV2: i, + observer: observer, }, nil } } @@ -58,8 +62,8 @@ func decObserveEval(observer EvalObserver) InterpretableDecorator { // decInterruptFolds creates an intepretable decorator which marks comprehensions as interruptable // where the interrupt state is communicated via a hidden variable on the Activation. -func decInterruptFolds() InterpretableDecorator { - return func(i Interpretable) (Interpretable, error) { +func decInterruptFolds() InterpretableDecoratorV2 { + return func(i InterpretableV2) (InterpretableV2, error) { fold, ok := i.(*evalFold) if !ok { return i, nil @@ -70,8 +74,8 @@ func decInterruptFolds() InterpretableDecorator { } // decDisableShortcircuits ensures that all branches of an expression will be evaluated, no short-circuiting. -func decDisableShortcircuits() InterpretableDecorator { - return func(i Interpretable) (Interpretable, error) { +func decDisableShortcircuits() InterpretableDecoratorV2 { + return func(i InterpretableV2) (InterpretableV2, error) { switch expr := i.(type) { case *evalOr: return &evalExhaustiveOr{ @@ -104,8 +108,8 @@ func decDisableShortcircuits() InterpretableDecorator { // conditionally precomputing the result. // - build list and map values with constant elements. // - convert 'in' operations to set membership tests if possible. -func decOptimize() InterpretableDecorator { - return func(i Interpretable) (Interpretable, error) { +func decOptimize() InterpretableDecoratorV2 { + return func(i InterpretableV2) (InterpretableV2, error) { switch inst := i.(type) { case *evalList: return maybeBuildListLiteral(i, inst) @@ -124,7 +128,7 @@ func decOptimize() InterpretableDecorator { } // decRegexOptimizer compiles regex pattern string constants. -func decRegexOptimizer(regexOptimizations ...*RegexOptimization) InterpretableDecorator { +func decRegexOptimizer(regexOptimizations ...*RegexOptimization) InterpretableDecoratorV2 { functionMatchMap := make(map[string]*RegexOptimization) overloadMatchMap := make(map[string]*RegexOptimization) for _, m := range regexOptimizations { @@ -134,7 +138,7 @@ func decRegexOptimizer(regexOptimizations ...*RegexOptimization) InterpretableDe } } - return func(i Interpretable) (Interpretable, error) { + return func(i InterpretableV2) (InterpretableV2, error) { call, ok := i.(InterpretableCall) if !ok { return i, nil @@ -165,7 +169,7 @@ func decRegexOptimizer(regexOptimizations ...*RegexOptimization) InterpretableDe } } -func maybeOptimizeConstUnary(i Interpretable, call InterpretableCall) (Interpretable, error) { +func maybeOptimizeConstUnary(i InterpretableV2, call InterpretableCall) (InterpretableV2, error) { args := call.Args() if len(args) != 1 { return i, nil @@ -181,7 +185,7 @@ func maybeOptimizeConstUnary(i Interpretable, call InterpretableCall) (Interpret return NewConstValue(call.ID(), val), nil } -func maybeBuildListLiteral(i Interpretable, l *evalList) (Interpretable, error) { +func maybeBuildListLiteral(i InterpretableV2, l *evalList) (InterpretableV2, error) { for _, elem := range l.elems { _, isConst := elem.(InterpretableConst) if !isConst { @@ -191,7 +195,7 @@ func maybeBuildListLiteral(i Interpretable, l *evalList) (Interpretable, error) return NewConstValue(l.ID(), l.Eval(EmptyActivation())), nil } -func maybeBuildMapLiteral(i Interpretable, mp *evalMap) (Interpretable, error) { +func maybeBuildMapLiteral(i InterpretableV2, mp *evalMap) (InterpretableV2, error) { for idx, key := range mp.keys { _, isConst := key.(InterpretableConst) if !isConst { @@ -209,7 +213,7 @@ func maybeBuildMapLiteral(i Interpretable, mp *evalMap) (Interpretable, error) { // test if the following conditions are true: // - the list is a constant with homogeneous element types. // - the elements are all of primitive type. -func maybeOptimizeSetMembership(i Interpretable, inlist InterpretableCall) (Interpretable, error) { +func maybeOptimizeSetMembership(i InterpretableV2, inlist InterpretableCall) (InterpretableV2, error) { args := inlist.Args() lhs := args[0] rhs := args[1] diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/frame.go b/tests/e2e/vendor/github.com/google/cel-go/interpreter/frame.go new file mode 100644 index 0000000000..20ab313c8f --- /dev/null +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/frame.go @@ -0,0 +1,445 @@ +// Copyright 2026 Google LLC +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +package interpreter + +import ( + "context" + "errors" + "fmt" + "sync" + "sync/atomic" + + "github.com/google/cel-go/common/functions" + "github.com/google/cel-go/common/types" + "github.com/google/cel-go/common/types/ref" +) + +// evalContext contains the stateful information needed for a single evaluation. +// +// This state is shared across all frames within a single evaluation, including +// child frames created for comprehension blocks. +type evalContext struct { + // interrupt exposes a callback channel for cancellation. + interrupt <-chan struct{} + + // interruptCheckCount is the number of times the interrupt channel has been checked. + interruptCheckCount atomic.Uint64 + + // interruptCheckFrequency is the frequency at which the interrupt channel is checked. + interruptCheckFrequency uint + + // interrupted indicates whether the evaluation has been interrupted. + interrupted atomic.Bool + + // state provides the context for tracking the evaluation state. + state EvalState + + // costs provides the context for tracking the evaluation costs. + costs *CostTracker + + // ctx is the context for async call implementations to use. + ctx context.Context + + // cancel cancels the context when the evaluation is finished. + cancel context.CancelFunc + + // asyncCalls tracks the state of async call invocations across re-evaluations. + asyncCalls *asyncCallStateTracker + + // gate coordinates async call admission control and completion signaling. + gate *asyncGate + + // observer for monitoring async calls. + observer AsyncObserver +} + +// ExecutionFrame provides the context for a single evaluation of an expression. +// +// The execution frame must not be stored in any fashion as its lifecycle is completely +// controlled by the CEL evaluation process. +type ExecutionFrame struct { + // Activation provides the context for resolving variables by name. + Activation + + // parent provides the context for parent scopes (used for comprehension iterators). + parent *ExecutionFrame + + // ctx provides the shared evaluation state across frames. + ctx *evalContext +} + +// NewExecutionFrame creates a new execution frame from the pool. +func NewExecutionFrame(input any) (*ExecutionFrame, error) { + f := frameStack.Get().(*ExecutionFrame) + switch v := input.(type) { + case Activation: + f.Activation = v + case map[string]any: + f.Activation = activationInput.create(v) + default: + return nil, fmt.Errorf("invalid input, wanted Activation or map[string]any, got: (%T)%v", input, input) + } + return f, nil +} + +// SetContext sets the context for the execution frame. +func (f *ExecutionFrame) SetContext(ctx context.Context, interruptCheckFrequency uint) error { + if f.parent != nil { + return errors.New("SetContext() called on child frame") + } + if f.ctx != nil { + return errors.New("SetContext() called more than once") + } + f.ctx = evalContextPool.Get().(*evalContext) + f.ctx.ctx, f.ctx.cancel = context.WithCancel(ctx) + f.ctx.asyncCalls = asyncCallStateTrackerPool.create() + f.ctx.gate = &asyncGate{} + f.ctx.interrupt = ctx.Done() + f.ctx.interruptCheckFrequency = interruptCheckFrequency + f.ctx.interruptCheckCount.Store(0) + f.ctx.interrupted.Store(false) + return nil +} + +// Close releases the resources held by the execution frame and returns it to the pool. +func (f *ExecutionFrame) Close() { + if f.parent == nil && f.ctx != nil { + if f.ctx.cancel != nil { + f.ctx.cancel() + f.ctx.cancel = nil + } + f.ctx.ctx = nil + f.ctx.gate = nil + asyncCallStateTrackerPool.release(f.ctx.asyncCalls) + f.ctx.asyncCalls = nil + f.ctx.observer = nil + f.ctx.interrupt = nil + f.ctx.state = nil + f.ctx.costs = nil + f.ctx.interrupted.Store(false) + f.ctx.interruptCheckCount.Store(0) + f.ctx.interruptCheckFrequency = 0 + evalContextPool.Put(f.ctx) + } + f.ctx = nil + f.parent = nil + if f.Activation != nil { + switch a := f.Activation.(type) { + case *hierarchicalActivation: + if child, ok := a.child.(*inputActivation); ok { + activationInput.release(child) + } + activationStack.release(a) + case *inputActivation: + activationInput.release(a) + } + f.Activation = nil + frameStack.Put(f) + } +} + +// Push pushes the given activation onto the activation stack and returns the new frame. +// +// This operation is internal to the interpreter and is used to handle comprehension +// scoping. The child frame inherits the shared evalContext from the parent. +func (f *ExecutionFrame) Push(activation Activation) *ExecutionFrame { + child := frameStack.Get().(*ExecutionFrame) + child.parent = f + child.ctx = f.ctx + child.Activation = activationStack.create(f.Activation, activation) + return child +} + +// Pop returns the parent frame, releasing the current frame back to the pool. +func (f *ExecutionFrame) Pop() *ExecutionFrame { + if f.parent == nil { + return f + } + parent := f.parent + activationStack.release(f.Activation) + f.Activation = nil + f.parent = nil + f.ctx = nil + frameStack.Put(f) + return parent +} + +// ResolveName implements the Activation interface by proxying to the internal activation. +func (f *ExecutionFrame) ResolveName(name string) (any, bool) { + return f.Activation.ResolveName(name) +} + +// Parent implements the Activation interface by proxying to the internal activation. +func (f *ExecutionFrame) Parent() Activation { + return f.Activation.Parent() +} + +// AsPartialActivation implements the PartialActivation interface by proxying to the internal activation. +func (f *ExecutionFrame) AsPartialActivation() (PartialActivation, bool) { + return AsPartialActivation(f.Activation) +} + +// Unwrap returns the internal activation. +func (f *ExecutionFrame) Unwrap() Activation { + return f.Activation +} + +// IsLocalVariable reports whether the variable name is locally bound in the frame. +func (f *ExecutionFrame) IsLocalVariable(name string) bool { + if holder, ok := f.Activation.(localVariableHolder); ok { + if holder.IsLocalVariable(name) { + return true + } + } + // Search parent scopes + if f.parent != nil { + return f.parent.IsLocalVariable(name) + } + return false +} + +// CheckInterrupt returns whether the evaluation has been interrupted. +func (f *ExecutionFrame) CheckInterrupt() bool { + if f.ctx == nil { + return false + } + if f.ctx.interrupted.Load() { + return true + } + count := f.ctx.interruptCheckCount.Add(1) + if f.ctx.interruptCheckFrequency > 0 && count%uint64(f.ctx.interruptCheckFrequency) == 0 { + select { + case <-f.ctx.interrupt: + f.ctx.interrupted.Store(true) + return true + default: + return false + } + } + return false +} + +// ComputeResult tracks and computes the result of the given asynchronous function. +// +// The first invocation for a given (node id, args) tuple registers the call state and returns an +// Unknown which references the call's unique callID. Subsequent invocations return the cached +// result once the call has completed. Launching background execution is deferred to post-execution +// dispatch via DispatchPendingAsyncCalls. +func (f *ExecutionFrame) ComputeResult(id int64, function, overload string, impl functions.AsyncOp, argVals []ref.Val) ref.Val { + if f.ctx == nil || f.ctx.asyncCalls == nil { + return types.NewErrWithNodeID(id, "asynchronous function calls require concurrent evaluation and cannot be resolved by a synchronous Eval") + } + t := f.ctx.asyncCalls + acs := t.getOrCreate(id, function, overload, argVals, impl, f.ctx.gate) + if res := acs.ResultOrUnknown(); res != nil { + return res + } + return types.NewUnknown(acs.callID, nil) +} + +// DispatchPendingAsyncCalls launches pending asynchronous calls for the specified required call IDs. +func (f *ExecutionFrame) DispatchPendingAsyncCalls(callIDs []int64) { + if f.ctx == nil || f.ctx.asyncCalls == nil { + return + } + t := f.ctx.asyncCalls + for _, callID := range callIDs { + if acs := t.getByID(callID); acs != nil { + t.launch(f.ctx.ctx, acs, f.ctx.observer) + } + } +} + +// ActiveAsyncCalls returns the number of async function calls that have been launched +// but whose completions have not yet been drained. +func (f *ExecutionFrame) ActiveAsyncCalls() int { + if f.ctx == nil || f.ctx.gate == nil { + return 0 + } + return f.ctx.gate.ActiveCalls() +} + +// AsyncCall returns the state of an async call by its callID, or nil if not found. +func (f *ExecutionFrame) AsyncCall(callID int64) AsyncCall { + if f.ctx == nil || f.ctx.asyncCalls == nil { + return nil + } + acs := f.ctx.asyncCalls.getByID(callID) + if acs == nil { + return nil + } + return acs +} + +// SetCompletions configures a channel to receive callIDs when asynchronous evaluations finish. +func (f *ExecutionFrame) SetCompletions(ch chan<- int64) error { + if f.ctx == nil { + return errors.New("asynchronous evaluation options require the execution frame to have a context configured") + } + f.ctx.gate.completions = ch + return nil +} + +// SetAsyncObserver sets the observer for monitoring asynchronous function calls. +func (f *ExecutionFrame) SetAsyncObserver(observer AsyncObserver) error { + if f.ctx == nil { + return errors.New("asynchronous evaluation options require the execution frame to have a context configured") + } + f.ctx.observer = observer + return nil +} + +// SetAsyncMaxConcurrency sets the maximum concurrency for asynchronous function calls. +// +// A non-positive value indicates that concurrency is unbounded. +func (f *ExecutionFrame) SetAsyncMaxConcurrency(n int) error { + if f.ctx == nil { + return errors.New("asynchronous evaluation options require the execution frame to have a context configured") + } + if n > 0 { + f.ctx.gate.semaphore = make(chan struct{}, n) + } else { + f.ctx.gate.semaphore = nil + } + return nil +} + +// frameStack provides a synchronized pool of ExecutionFrames. +var frameStack = &sync.Pool{ + New: func() any { + return &ExecutionFrame{} + }, +} + +// evalContextPool provides a synchronized pool of evalContexts. +var evalContextPool = &sync.Pool{ + New: func() any { + return &evalContext{} + }, +} + +type activationStackPool struct { + sync.Pool +} + +func (pool *activationStackPool) create(parent, child Activation) Activation { + h := pool.Get().(*hierarchicalActivation) + h.child = child + h.parent = parent + h.poolAllocated = true + return h +} + +func (pool *activationStackPool) release(activation Activation) { + h, ok := activation.(*hierarchicalActivation) + if !ok || !h.poolAllocated { + return + } + h.parent = nil + h.child = nil + pool.Pool.Put(h) +} + +func newActivationStackPool() *activationStackPool { + return &activationStackPool{ + Pool: sync.Pool{ + New: func() any { + return &hierarchicalActivation{} + }, + }, + } +} + +type inputActivation struct { + vars map[string]any + lazyVars map[string]any +} + +// ResolveName looks up the value of the input variable name, if found. +// +// Lazy bindings may be supplied within the map-based input in either of the following forms: +// - func() any +// - func() ref.Val +// +// The lazy binding will only be invoked once per evaluation. +// +// Values which are not represented as ref.Val types on input may be adapted to a ref.Val using +// the types.Adapter configured in the environment. +func (a *inputActivation) ResolveName(name string) (any, bool) { + v, found := a.vars[name] + if !found { + return nil, false + } + switch obj := v.(type) { + case func() ref.Val: + if resolved, found := a.lazyVars[name]; found { + return resolved, true + } + lazy := obj() + a.lazyVars[name] = lazy + return lazy, true + case func() any: + if resolved, found := a.lazyVars[name]; found { + return resolved, true + } + lazy := obj() + a.lazyVars[name] = lazy + return lazy, true + default: + return obj, true + } +} + +// Parent implements the Activation interface +func (a *inputActivation) Parent() Activation { + return nil +} + +func newActivationInputPool() *activationInputPool { + return &activationInputPool{ + Pool: sync.Pool{ + New: func() any { + return &inputActivation{ + lazyVars: make(map[string]any), + } + }, + }, + } +} + +type activationInputPool struct { + sync.Pool +} + +// create initializes a pooled Activation object with the map input. +func (p *activationInputPool) create(vars map[string]any) *inputActivation { + a := p.Pool.Get().(*inputActivation) + a.vars = vars + return a +} + +func (p *activationInputPool) release(value any) { + a := value.(*inputActivation) + for k := range a.lazyVars { + delete(a.lazyVars, k) + } + a.vars = nil + p.Pool.Put(a) +} + +var ( + activationStack = newActivationStackPool() + activationInput = newActivationInputPool() +) diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/interpretable.go b/tests/e2e/vendor/github.com/google/cel-go/interpreter/interpretable.go index 96b5a8ffc0..906c4f805f 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/interpreter/interpretable.go +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/interpretable.go @@ -26,20 +26,53 @@ import ( "github.com/google/cel-go/common/types/traits" ) -// Interpretable can accept a given Activation and produce a value along with -// an accompanying EvalState which can be used to inspect whether additional -// data might be necessary to complete the evaluation. +// Interpretable evaluates an Activation and produces a value. type Interpretable interface { // ID value corresponding to the expression node. ID() int64 - // Eval an Activation to produce an output. + // Eval evaluates an Activation and produces an output. Eval(activation Activation) ref.Val } +// InterpretableV2 evaluates an ExecutionFrame and produces a value. +// +// The ExecutionFrame should not be stored and should always be passed as the first +// argument to any function as it behaves like Golang's context.Context. +type InterpretableV2 interface { + Interpretable + + // Exec evaluates the expression within the given ExecutionFrame. + Exec(frame *ExecutionFrame) ref.Val +} + +// adaptToV2 adapts a V1 Interpretable implementation to the V2 interface. +// +// This adapter is used to bridge the legacy Interpretable interface to the +// modern InterpretableV2 interface, providing a shim that allows the use of +// both interfaces in the same system. +func adaptToV2(i Interpretable) InterpretableV2 { + switch v := i.(type) { + case InterpretableV2: + return v + default: + return &v1Adapter{Interpretable: v} + } +} + +// v1Adapter handles bridging a V1 Interpretable implementation to the V2 interface. +type v1Adapter struct { + Interpretable +} + +// Exec implements the InterpretableV2 interface method. +func (a *v1Adapter) Exec(f *ExecutionFrame) ref.Val { + return a.Eval(f) +} + // InterpretableConst interface for tracking whether the Interpretable is a constant value. type InterpretableConst interface { - Interpretable + InterpretableV2 // Value returns the constant value of the instruction. Value() ref.Val @@ -47,7 +80,7 @@ type InterpretableConst interface { // InterpretableAttribute interface for tracking whether the Interpretable is an attribute. type InterpretableAttribute interface { - Interpretable + InterpretableV2 // Attr returns the Attribute value. Attr() Attribute @@ -81,7 +114,7 @@ type InterpretableAttribute interface { // InterpretableCall interface for inspecting Interpretable instructions related to function calls. type InterpretableCall interface { - Interpretable + InterpretableV2 // Function returns the function name as it appears in text or mangled operator name as it // appears in the operators.go file. @@ -94,16 +127,16 @@ type InterpretableCall interface { // Args returns the normalized arguments to the function overload. // For receiver-style functions, the receiver target is arg 0. - Args() []Interpretable + Args() []InterpretableV2 } // InterpretableConstructor interface for inspecting Interpretable instructions that initialize a list, map // or struct. type InterpretableConstructor interface { - Interpretable + InterpretableV2 // InitVals returns all the list elements, map key and values or struct field values. - InitVals() []Interpretable + InitVals() []InterpretableV2 // Type returns the type constructed. Type() ref.Type @@ -112,18 +145,23 @@ type InterpretableConstructor interface { // ObservableInterpretable is an Interpretable which supports stateful observation, such as tracing // or cost-tracking. type ObservableInterpretable struct { - Interpretable + InterpretableV2 observers []StatefulObserver } // ID implements the Interpretable method to get the expression id associated with the step. func (oi *ObservableInterpretable) ID() int64 { - return oi.Interpretable.ID() + return oi.InterpretableV2.ID() +} + +// Exec implements the InterpretableV2 interface method. +func (oi *ObservableInterpretable) Exec(frame *ExecutionFrame) ref.Val { + return oi.ObserveExec(frame, func(any) {}) } // Eval proxies to the ObserveEval method while invoking a no-op callback to report the observations. func (oi *ObservableInterpretable) Eval(vars Activation) ref.Val { - return oi.ObserveEval(vars, func(any) {}) + return oi.ObserveExec(AsFrame(vars), func(any) {}) } // ObserveEval evaluates an interpretable and performs per-evaluation state-tracking. @@ -131,25 +169,65 @@ func (oi *ObservableInterpretable) Eval(vars Activation) ref.Val { // This method is concurrency safe and the expectation is that the observer function will use // a switch statement to determine the type of the state which has been reported back from the call. func (oi *ObservableInterpretable) ObserveEval(vars Activation, observer func(any)) ref.Val { - var err error + return oi.ObserveExec(AsFrame(vars), observer) +} + +// ObserveExec evaluates an interpretable and performs per-evaluation state-tracking. +// +// This method is concurrency safe and the expectation is that the observer function will use +// a switch statement to determine the type of the state which has been reported back from the call. +func (oi *ObservableInterpretable) ObserveExec(frame *ExecutionFrame, observer func(any)) ref.Val { // Initialize the state needed for the observers to function. for _, obs := range oi.observers { - vars, err = obs.InitState(vars) + state, err := obs.InitState(frame) if err != nil { return types.WrapErr(err) } // Provide an initial reference to the state to ensure state is available // even in cases of interrupting errors generated during evaluation. - observer(obs.GetState(vars)) + observer(state) } - result := oi.Interpretable.Eval(vars) + result := oi.InterpretableV2.Exec(frame) // Get the state which needs to be reported back as having been observed. for _, obs := range oi.observers { - observer(obs.GetState(vars)) + observer(obs.GetState(frame)) } return result } +// AsFrame promotes an Activation to an ExecutionFrame. +func AsFrame(a Activation) *ExecutionFrame { + if f, ok := a.(*ExecutionFrame); ok { + return f + } + frame := &ExecutionFrame{Activation: a} + // Walk the activation hierarchy to find a parent ExecutionFrame and inherit + // its shared context. + if parent := findFrame(a); parent != nil { + frame.ctx = parent.ctx + } + return frame +} + +// findFrame walks the activation hierarchy via Unwrap and Parent to locate an +// existing ExecutionFrame, if one exists. +func findFrame(a Activation) *ExecutionFrame { + if wrapper, ok := a.(activationWrapper); ok { + unwrapped := wrapper.Unwrap() + if f, ok := unwrapped.(*ExecutionFrame); ok { + return f + } + return findFrame(unwrapped) + } + if p := a.Parent(); p != nil { + if f, ok := p.(*ExecutionFrame); ok { + return f + } + return findFrame(p) + } + return nil +} + // Core Interpretable implementations used during the program planning phase. type evalTestOnly struct { @@ -162,9 +240,9 @@ func (test *evalTestOnly) ID() int64 { return test.id } -// Eval implements the Interpretable interface method. -func (test *evalTestOnly) Eval(ctx Activation) ref.Val { - val, err := test.Resolve(ctx) +// Exec implements the InterpretableV2 interface method. +func (test *evalTestOnly) Exec(frame *ExecutionFrame) ref.Val { + val, err := test.Resolve(frame) // Return an error if the resolve step fails if err != nil { return types.LabelErrNode(test.id, types.WrapErr(err)) @@ -175,6 +253,11 @@ func (test *evalTestOnly) Eval(ctx Activation) ref.Val { return test.Adapter().NativeToValue(val) } +// Eval implements the Interpretable interface method. +func (test *evalTestOnly) Eval(ctx Activation) ref.Val { + return test.Exec(AsFrame(ctx)) +} + // AddQualifier appends a qualifier that will always and only perform a presence test. func (test *evalTestOnly) AddQualifier(q Qualifier) (Attribute, error) { cq, ok := q.(ConstantQualifier) @@ -194,7 +277,7 @@ func (q *testOnlyQualifier) Qualify(vars Activation, obj any) (any, error) { if err != nil { return nil, err } - if unk, isUnk := out.(types.Unknown); isUnk { + if unk, isUnk := out.(*types.Unknown); isUnk { return unk, nil } return present, nil @@ -230,6 +313,11 @@ func (cons *evalConst) ID() int64 { return cons.id } +// Exec implements the InterpretableV2 interface method. +func (cons *evalConst) Exec(frame *ExecutionFrame) ref.Val { + return cons.val +} + // Eval implements the Interpretable interface method. func (cons *evalConst) Eval(ctx Activation) ref.Val { return cons.val @@ -242,7 +330,7 @@ func (cons *evalConst) Value() ref.Val { type evalOr struct { id int64 - terms []Interpretable + terms []InterpretableV2 } // ID implements the Interpretable interface method. @@ -250,12 +338,12 @@ func (or *evalOr) ID() int64 { return or.id } -// Eval implements the Interpretable interface method. -func (or *evalOr) Eval(ctx Activation) ref.Val { +// Exec implements the InterpretableV2 interface method. +func (or *evalOr) Exec(frame *ExecutionFrame) ref.Val { var err ref.Val = nil var unk *types.Unknown for _, term := range or.terms { - val := term.Eval(ctx) + val := term.Exec(frame) boolVal, ok := val.(types.Bool) // short-circuit on true. if ok && boolVal == types.True { @@ -283,9 +371,14 @@ func (or *evalOr) Eval(ctx Activation) ref.Val { return types.False } +// Eval implements the Interpretable interface method. +func (or *evalOr) Eval(ctx Activation) ref.Val { + return or.Exec(AsFrame(ctx)) +} + type evalAnd struct { id int64 - terms []Interpretable + terms []InterpretableV2 } // ID implements the Interpretable interface method. @@ -293,12 +386,12 @@ func (and *evalAnd) ID() int64 { return and.id } -// Eval implements the Interpretable interface method. -func (and *evalAnd) Eval(ctx Activation) ref.Val { +// Exec implements the InterpretableV2 interface method. +func (and *evalAnd) Exec(frame *ExecutionFrame) ref.Val { var err ref.Val = nil var unk *types.Unknown for _, term := range and.terms { - val := term.Eval(ctx) + val := term.Exec(frame) boolVal, ok := val.(types.Bool) // short-circuit on false. if ok && boolVal == types.False { @@ -326,10 +419,15 @@ func (and *evalAnd) Eval(ctx Activation) ref.Val { return types.True } +// Eval implements the Interpretable interface method. +func (and *evalAnd) Eval(ctx Activation) ref.Val { + return and.Exec(AsFrame(ctx)) +} + type evalEq struct { id int64 - lhs Interpretable - rhs Interpretable + lhs InterpretableV2 + rhs InterpretableV2 } // ID implements the Interpretable interface method. @@ -337,19 +435,30 @@ func (eq *evalEq) ID() int64 { return eq.id } -// Eval implements the Interpretable interface method. -func (eq *evalEq) Eval(ctx Activation) ref.Val { - lVal := eq.lhs.Eval(ctx) - rVal := eq.rhs.Eval(ctx) - if types.IsUnknownOrError(lVal) { +// Exec implements the InterpretableV2 interface method. +func (eq *evalEq) Exec(frame *ExecutionFrame) ref.Val { + lVal := eq.lhs.Exec(frame) + if types.IsError(lVal) { return lVal } - if types.IsUnknownOrError(rVal) { + rVal := eq.rhs.Exec(frame) + if types.IsError(rVal) { return rVal } + var unk *types.Unknown + unk, _ = types.MaybeMergeUnknowns(lVal, unk) + unk, _ = types.MaybeMergeUnknowns(rVal, unk) + if unk != nil { + return unk + } return types.Equal(lVal, rVal) } +// Eval implements the Interpretable interface method. +func (eq *evalEq) Eval(ctx Activation) ref.Val { + return eq.Exec(AsFrame(ctx)) +} + // Function implements the InterpretableCall interface method. func (*evalEq) Function() string { return operators.Equals @@ -361,14 +470,14 @@ func (*evalEq) OverloadID() string { } // Args implements the InterpretableCall interface method. -func (eq *evalEq) Args() []Interpretable { - return []Interpretable{eq.lhs, eq.rhs} +func (eq *evalEq) Args() []InterpretableV2 { + return []InterpretableV2{eq.lhs, eq.rhs} } type evalNe struct { id int64 - lhs Interpretable - rhs Interpretable + lhs InterpretableV2 + rhs InterpretableV2 } // ID implements the Interpretable interface method. @@ -376,19 +485,30 @@ func (ne *evalNe) ID() int64 { return ne.id } -// Eval implements the Interpretable interface method. -func (ne *evalNe) Eval(ctx Activation) ref.Val { - lVal := ne.lhs.Eval(ctx) - rVal := ne.rhs.Eval(ctx) - if types.IsUnknownOrError(lVal) { +// Exec implements the InterpretableV2 interface method. +func (ne *evalNe) Exec(frame *ExecutionFrame) ref.Val { + lVal := ne.lhs.Exec(frame) + if types.IsError(lVal) { return lVal } - if types.IsUnknownOrError(rVal) { + rVal := ne.rhs.Exec(frame) + if types.IsError(rVal) { return rVal } + var unk *types.Unknown + unk, _ = types.MaybeMergeUnknowns(lVal, unk) + unk, _ = types.MaybeMergeUnknowns(rVal, unk) + if unk != nil { + return unk + } return types.Bool(types.Equal(lVal, rVal) != types.True) } +// Eval implements the Interpretable interface method. +func (ne *evalNe) Eval(ctx Activation) ref.Val { + return ne.Exec(AsFrame(ctx)) +} + // Function implements the InterpretableCall interface method. func (*evalNe) Function() string { return operators.NotEquals @@ -400,8 +520,8 @@ func (*evalNe) OverloadID() string { } // Args implements the InterpretableCall interface method. -func (ne *evalNe) Args() []Interpretable { - return []Interpretable{ne.lhs, ne.rhs} +func (ne *evalNe) Args() []InterpretableV2 { + return []InterpretableV2{ne.lhs, ne.rhs} } type evalZeroArity struct { @@ -416,9 +536,14 @@ func (zero *evalZeroArity) ID() int64 { return zero.id } +// Exec implements the InterpretableV2 interface method. +func (zero *evalZeroArity) Exec(frame *ExecutionFrame) ref.Val { + return types.LabelErrNode(zero.id, zero.impl()) +} + // Eval implements the Interpretable interface method. func (zero *evalZeroArity) Eval(ctx Activation) ref.Val { - return types.LabelErrNode(zero.id, zero.impl()) + return zero.Exec(AsFrame(ctx)) } // Function implements the InterpretableCall interface method. @@ -432,15 +557,15 @@ func (zero *evalZeroArity) OverloadID() string { } // Args returns the argument to the unary function. -func (zero *evalZeroArity) Args() []Interpretable { - return []Interpretable{} +func (zero *evalZeroArity) Args() []InterpretableV2 { + return []InterpretableV2{} } type evalUnary struct { id int64 function string overload string - arg Interpretable + arg InterpretableV2 trait int impl functions.UnaryOp nonStrict bool @@ -451,9 +576,9 @@ func (un *evalUnary) ID() int64 { return un.id } -// Eval implements the Interpretable interface method. -func (un *evalUnary) Eval(ctx Activation) ref.Val { - argVal := un.arg.Eval(ctx) +// Exec implements the InterpretableV2 interface method. +func (un *evalUnary) Exec(frame *ExecutionFrame) ref.Val { + argVal := un.arg.Exec(frame) // Early return if the argument to the function is unknown or error. strict := !un.nonStrict if strict && types.IsUnknownOrError(argVal) { @@ -472,6 +597,11 @@ func (un *evalUnary) Eval(ctx Activation) ref.Val { return types.NewErrWithNodeID(un.id, "no such overload: %s", un.function) } +// Eval implements the Interpretable interface method. +func (un *evalUnary) Eval(ctx Activation) ref.Val { + return un.Exec(AsFrame(ctx)) +} + // Function implements the InterpretableCall interface method. func (un *evalUnary) Function() string { return un.function @@ -483,16 +613,16 @@ func (un *evalUnary) OverloadID() string { } // Args returns the argument to the unary function. -func (un *evalUnary) Args() []Interpretable { - return []Interpretable{un.arg} +func (un *evalUnary) Args() []InterpretableV2 { + return []InterpretableV2{un.arg} } type evalBinary struct { id int64 function string overload string - lhs Interpretable - rhs Interpretable + lhs InterpretableV2 + rhs InterpretableV2 trait int impl functions.BinaryOp nonStrict bool @@ -503,18 +633,23 @@ func (bin *evalBinary) ID() int64 { return bin.id } -// Eval implements the Interpretable interface method. -func (bin *evalBinary) Eval(ctx Activation) ref.Val { - lVal := bin.lhs.Eval(ctx) - rVal := bin.rhs.Eval(ctx) - // Early return if any argument to the function is unknown or error. +// Exec implements the InterpretableV2 interface method. +func (bin *evalBinary) Exec(frame *ExecutionFrame) ref.Val { + lVal := bin.lhs.Exec(frame) strict := !bin.nonStrict + if strict && types.IsError(lVal) { + return lVal + } + rVal := bin.rhs.Exec(frame) + if strict && types.IsError(rVal) { + return rVal + } if strict { - if types.IsUnknownOrError(lVal) { - return lVal - } - if types.IsUnknownOrError(rVal) { - return rVal + var unk *types.Unknown + unk, _ = types.MaybeMergeUnknowns(lVal, unk) + unk, _ = types.MaybeMergeUnknowns(rVal, unk) + if unk != nil { + return unk } } // If the implementation is bound and the argument value has the right traits required to @@ -530,6 +665,11 @@ func (bin *evalBinary) Eval(ctx Activation) ref.Val { return types.NewErrWithNodeID(bin.id, "no such overload: %s", bin.function) } +// Eval implements the Interpretable interface method. +func (bin *evalBinary) Eval(ctx Activation) ref.Val { + return bin.Exec(AsFrame(ctx)) +} + // Function implements the InterpretableCall interface method. func (bin *evalBinary) Function() string { return bin.function @@ -541,22 +681,22 @@ func (bin *evalBinary) OverloadID() string { } // Args returns the argument to the unary function. -func (bin *evalBinary) Args() []Interpretable { - return []Interpretable{bin.lhs, bin.rhs} +func (bin *evalBinary) Args() []InterpretableV2 { + return []InterpretableV2{bin.lhs, bin.rhs} } type evalVarArgs struct { id int64 function string overload string - args []Interpretable + args []InterpretableV2 trait int impl functions.FunctionOp nonStrict bool } // NewCall creates a new call Interpretable. -func NewCall(id int64, function, overload string, args []Interpretable, impl functions.FunctionOp) InterpretableCall { +func NewCall(id int64, function, overload string, args []InterpretableV2, impl functions.FunctionOp) InterpretableCall { return &evalVarArgs{ id: id, function: function, @@ -571,17 +711,23 @@ func (fn *evalVarArgs) ID() int64 { return fn.id } -// Eval implements the Interpretable interface method. -func (fn *evalVarArgs) Eval(ctx Activation) ref.Val { +// Exec implements the InterpretableV2 interface method. +func (fn *evalVarArgs) Exec(frame *ExecutionFrame) ref.Val { argVals := make([]ref.Val, len(fn.args)) - // Early return if any argument to the function is unknown or error. strict := !fn.nonStrict + var unk *types.Unknown for i, arg := range fn.args { - argVals[i] = arg.Eval(ctx) - if strict && types.IsUnknownOrError(argVals[i]) { - return argVals[i] + argVals[i] = arg.Exec(frame) + if strict { + if types.IsError(argVals[i]) { + return argVals[i] + } + unk, _ = types.MaybeMergeUnknowns(argVals[i], unk) } } + if strict && unk != nil { + return unk + } // If the implementation is bound and the argument value has the right traits required to // invoke it, then call the implementation. arg0 := argVals[0] @@ -596,6 +742,11 @@ func (fn *evalVarArgs) Eval(ctx Activation) ref.Val { return types.NewErrWithNodeID(fn.id, "no such overload: %s %d", fn.function, fn.id) } +// Eval implements the Interpretable interface method. +func (fn *evalVarArgs) Eval(ctx Activation) ref.Val { + return fn.Exec(AsFrame(ctx)) +} + // Function implements the InterpretableCall interface method. func (fn *evalVarArgs) Function() string { return fn.function @@ -607,13 +758,13 @@ func (fn *evalVarArgs) OverloadID() string { } // Args returns the argument to the unary function. -func (fn *evalVarArgs) Args() []Interpretable { +func (fn *evalVarArgs) Args() []InterpretableV2 { return fn.args } type evalList struct { id int64 - elems []Interpretable + elems []InterpretableV2 optionals []bool hasOptionals bool adapter types.Adapter @@ -624,31 +775,44 @@ func (l *evalList) ID() int64 { return l.id } -// Eval implements the Interpretable interface method. -func (l *evalList) Eval(ctx Activation) ref.Val { +// Exec implements the InterpretableV2 interface method. +func (l *evalList) Exec(frame *ExecutionFrame) ref.Val { elemVals := make([]ref.Val, 0, len(l.elems)) - // If any argument is unknown or error early terminate. + var unk *types.Unknown for i, elem := range l.elems { - elemVal := elem.Eval(ctx) - if types.IsUnknownOrError(elemVal) { + elemVal := elem.Exec(frame) + if types.IsError(elemVal) { return elemVal } + unk, _ = types.MaybeMergeUnknowns(elemVal, unk) if l.hasOptionals && l.optionals[i] { - optVal, ok := elemVal.(*types.Optional) - if !ok { - return types.LabelErrNode(l.id, invalidOptionalElementInit(elemVal)) - } - if !optVal.HasValue() { - continue + if types.IsUnknown(elemVal) { + // skip optional checks for unknown values as they aren't fully resolved yet. + } else { + optVal, ok := elemVal.(*types.Optional) + if !ok { + return types.LabelErrNode(l.id, invalidOptionalElementInit(elemVal)) + } + if !optVal.HasValue() { + continue + } + elemVal = optVal.GetValue() } - elemVal = optVal.GetValue() } elemVals = append(elemVals, elemVal) } - return l.adapter.NativeToValue(elemVals) + if unk != nil { + return unk + } + return types.NewRefValList(l.adapter, elemVals) } -func (l *evalList) InitVals() []Interpretable { +// Eval implements the Interpretable interface method. +func (l *evalList) Eval(ctx Activation) ref.Val { + return l.Exec(AsFrame(ctx)) +} + +func (l *evalList) InitVals() []InterpretableV2 { return l.elems } @@ -658,8 +822,8 @@ func (l *evalList) Type() ref.Type { type evalMap struct { id int64 - keys []Interpretable - vals []Interpretable + keys []InterpretableV2 + vals []InterpretableV2 optionals []bool hasOptionals bool adapter types.Adapter @@ -670,20 +834,24 @@ func (m *evalMap) ID() int64 { return m.id } -// Eval implements the Interpretable interface method. -func (m *evalMap) Eval(ctx Activation) ref.Val { - entries := make(map[ref.Val]ref.Val) - // If any argument is unknown or error early terminate. +// Exec implements the InterpretableV2 interface method. +func (m *evalMap) Exec(frame *ExecutionFrame) ref.Val { + entries := make(map[ref.Val]ref.Val, len(m.keys)) + var unk *types.Unknown for i, key := range m.keys { - keyVal := key.Eval(ctx) - if types.IsUnknownOrError(keyVal) { + keyVal := key.Exec(frame) + if types.IsError(keyVal) { return keyVal } - valVal := m.vals[i].Eval(ctx) - if types.IsUnknownOrError(valVal) { + unk, _ = types.MaybeMergeUnknowns(keyVal, unk) + + valVal := m.vals[i].Exec(frame) + if types.IsError(valVal) { return valVal } - if m.hasOptionals && m.optionals[i] { + unk, _ = types.MaybeMergeUnknowns(valVal, unk) + + if m.hasOptionals && m.optionals[i] && !types.IsUnknown(valVal) { optVal, ok := valVal.(*types.Optional) if !ok { return types.LabelErrNode(m.id, invalidOptionalEntryInit(keyVal, valVal)) @@ -696,14 +864,22 @@ func (m *evalMap) Eval(ctx Activation) ref.Val { } entries[keyVal] = valVal } - return m.adapter.NativeToValue(entries) + if unk != nil { + return unk + } + return types.NewRefValMap(m.adapter, entries) +} + +// Eval implements the Interpretable interface method. +func (m *evalMap) Eval(ctx Activation) ref.Val { + return m.Exec(AsFrame(ctx)) } -func (m *evalMap) InitVals() []Interpretable { +func (m *evalMap) InitVals() []InterpretableV2 { if len(m.keys) != len(m.vals) { return nil } - result := make([]Interpretable, len(m.keys)+len(m.vals)) + result := make([]InterpretableV2, len(m.keys)+len(m.vals)) idx := 0 for i, k := range m.keys { v := m.vals[i] @@ -723,7 +899,7 @@ type evalObj struct { id int64 typeName string fields []string - vals []Interpretable + vals []InterpretableV2 optionals []bool hasOptionals bool provider types.Provider @@ -734,16 +910,17 @@ func (o *evalObj) ID() int64 { return o.id } -// Eval implements the Interpretable interface method. -func (o *evalObj) Eval(ctx Activation) ref.Val { - fieldVals := make(map[string]ref.Val) - // If any argument is unknown or error early terminate. +// Exec implements the InterpretableV2 interface method. +func (o *evalObj) Exec(frame *ExecutionFrame) ref.Val { + fieldVals := make(map[string]ref.Val, len(o.fields)) + var unk *types.Unknown for i, field := range o.fields { - val := o.vals[i].Eval(ctx) - if types.IsUnknownOrError(val) { + val := o.vals[i].Exec(frame) + if types.IsError(val) { return val } - if o.hasOptionals && o.optionals[i] { + unk, _ = types.MaybeMergeUnknowns(val, unk) + if o.hasOptionals && o.optionals[i] && !types.IsUnknown(val) { optVal, ok := val.(*types.Optional) if !ok { return types.LabelErrNode(o.id, invalidOptionalEntryInit(field, val)) @@ -756,11 +933,19 @@ func (o *evalObj) Eval(ctx Activation) ref.Val { } fieldVals[field] = val } + if unk != nil { + return unk + } return types.LabelErrNode(o.id, o.provider.NewValue(o.typeName, fieldVals)) } +// Eval implements the Interpretable interface method. +func (o *evalObj) Eval(ctx Activation) ref.Val { + return o.Exec(AsFrame(ctx)) +} + // InitVals implements the InterpretableConstructor interface method. -func (o *evalObj) InitVals() []Interpretable { +func (o *evalObj) InitVals() []InterpretableV2 { return o.vals } @@ -774,11 +959,11 @@ type evalFold struct { accuVar string iterVar string iterVar2 string - iterRange Interpretable - accu Interpretable - cond Interpretable - step Interpretable - result Interpretable + iterRange InterpretableV2 + accu InterpretableV2 + cond InterpretableV2 + step InterpretableV2 + result InterpretableV2 adapter types.Adapter // note an exhaustive fold will ensure that all branches are evaluated @@ -793,13 +978,13 @@ func (fold *evalFold) ID() int64 { return fold.id } -// Eval implements the Interpretable interface method. -func (fold *evalFold) Eval(ctx Activation) ref.Val { +// Exec implements the InterpretableV2 interface method. +func (fold *evalFold) Exec(frame *ExecutionFrame) ref.Val { // Initialize the folder interface - f := newFolder(fold, ctx) + f := newFolder(fold, frame) defer releaseFolder(f) - foldRange := fold.iterRange.Eval(ctx) + foldRange := fold.iterRange.Exec(frame) if types.IsUnknownOrError(foldRange) { return foldRange } @@ -824,14 +1009,19 @@ func (fold *evalFold) Eval(ctx Activation) ref.Val { return f.foldIterable(iterable) } +// Eval implements the Interpretable interface method. +func (fold *evalFold) Eval(ctx Activation) ref.Val { + return fold.Exec(AsFrame(ctx)) +} + // Optional Interpretable implementations that specialize, subsume, or extend the core evaluation // plan via decorators. // evalSetMembership is an Interpretable implementation which tests whether an input value // exists within the set of map keys used to model a set. type evalSetMembership struct { - inst Interpretable - arg Interpretable + inst InterpretableV2 + arg InterpretableV2 valueSet map[ref.Val]ref.Val } @@ -840,9 +1030,9 @@ func (e *evalSetMembership) ID() int64 { return e.inst.ID() } -// Eval implements the Interpretable interface method. -func (e *evalSetMembership) Eval(ctx Activation) ref.Val { - val := e.arg.Eval(ctx) +// Exec implements the InterpretableV2 interface method. +func (e *evalSetMembership) Exec(frame *ExecutionFrame) ref.Val { + val := e.arg.Exec(frame) if types.IsUnknownOrError(val) { return val } @@ -852,18 +1042,28 @@ func (e *evalSetMembership) Eval(ctx Activation) ref.Val { return types.False } +// Eval implements the Interpretable interface method. +func (e *evalSetMembership) Eval(ctx Activation) ref.Val { + return e.Exec(AsFrame(ctx)) +} + // evalWatch is an Interpretable implementation that wraps the execution of a given // expression so that it may observe the computed value and send it to an observer. type evalWatch struct { - Interpretable + InterpretableV2 observer EvalObserver } +// Exec implements the InterpretableV2 interface method. +func (e *evalWatch) Exec(frame *ExecutionFrame) ref.Val { + val := e.InterpretableV2.Exec(frame) + e.observer(frame, e.ID(), e.InterpretableV2, val) + return val +} + // Eval implements the Interpretable interface method. func (e *evalWatch) Eval(vars Activation) ref.Val { - val := e.Interpretable.Eval(vars) - e.observer(vars, e.ID(), e.Interpretable, val) - return val + return e.Exec(AsFrame(vars)) } // evalWatchAttr describes a watcher of an InterpretableAttribute Interpretable. @@ -918,11 +1118,16 @@ func (e *evalWatchAttr) AddQualifier(q Qualifier) (Attribute, error) { return e, err } +// Exec implements the InterpretableV2 interface method. +func (e *evalWatchAttr) Exec(frame *ExecutionFrame) ref.Val { + val := e.InterpretableAttribute.Exec(frame) + e.observer(frame, e.ID(), e.InterpretableAttribute, val) + return val +} + // Eval implements the Interpretable interface method. func (e *evalWatchAttr) Eval(vars Activation) ref.Val { - val := e.InterpretableAttribute.Eval(vars) - e.observer(vars, e.ID(), e.InterpretableAttribute, val) - return val + return e.Exec(AsFrame(vars)) } // evalWatchConstQual observes the qualification of an object using a constant boolean, int, @@ -1049,17 +1254,22 @@ type evalWatchConst struct { observer EvalObserver } -// Eval implements the Interpretable interface method. -func (e *evalWatchConst) Eval(vars Activation) ref.Val { +// Exec implements the InterpretableV2 interface method. +func (e *evalWatchConst) Exec(frame *ExecutionFrame) ref.Val { val := e.Value() - e.observer(vars, e.ID(), e.InterpretableConst, val) + e.observer(frame, e.ID(), e.InterpretableConst, val) return val } +// Eval implements the Interpretable interface method. +func (e *evalWatchConst) Eval(vars Activation) ref.Val { + return e.Exec(AsFrame(vars)) +} + // evalExhaustiveOr is just like evalOr, but does not short-circuit argument evaluation. type evalExhaustiveOr struct { id int64 - terms []Interpretable + terms []InterpretableV2 } // ID implements the Interpretable interface method. @@ -1067,13 +1277,13 @@ func (or *evalExhaustiveOr) ID() int64 { return or.id } -// Eval implements the Interpretable interface method. -func (or *evalExhaustiveOr) Eval(ctx Activation) ref.Val { +// Exec implements the InterpretableV2 interface method. +func (or *evalExhaustiveOr) Exec(frame *ExecutionFrame) ref.Val { var err ref.Val = nil var unk *types.Unknown isTrue := false for _, term := range or.terms { - val := term.Eval(ctx) + val := term.Exec(frame) boolVal, ok := val.(types.Bool) // flag the result as true if ok && boolVal == types.True { @@ -1103,10 +1313,15 @@ func (or *evalExhaustiveOr) Eval(ctx Activation) ref.Val { return types.False } +// Eval implements the Interpretable interface method. +func (or *evalExhaustiveOr) Eval(ctx Activation) ref.Val { + return or.Exec(AsFrame(ctx)) +} + // evalExhaustiveAnd is just like evalAnd, but does not short-circuit argument evaluation. type evalExhaustiveAnd struct { id int64 - terms []Interpretable + terms []InterpretableV2 } // ID implements the Interpretable interface method. @@ -1114,13 +1329,13 @@ func (and *evalExhaustiveAnd) ID() int64 { return and.id } -// Eval implements the Interpretable interface method. -func (and *evalExhaustiveAnd) Eval(ctx Activation) ref.Val { +// Exec implements the InterpretableV2 interface method. +func (and *evalExhaustiveAnd) Exec(frame *ExecutionFrame) ref.Val { var err ref.Val = nil var unk *types.Unknown isFalse := false for _, term := range and.terms { - val := term.Eval(ctx) + val := term.Exec(frame) boolVal, ok := val.(types.Bool) // short-circuit on false. if ok && boolVal == types.False { @@ -1150,6 +1365,11 @@ func (and *evalExhaustiveAnd) Eval(ctx Activation) ref.Val { return types.True } +// Eval implements the Interpretable interface method. +func (and *evalExhaustiveAnd) Eval(ctx Activation) ref.Val { + return and.Exec(AsFrame(ctx)) +} + // evalExhaustiveConditional is like evalConditional, but does not short-circuit argument // evaluation. type evalExhaustiveConditional struct { @@ -1163,11 +1383,11 @@ func (cond *evalExhaustiveConditional) ID() int64 { return cond.id } -// Eval implements the Interpretable interface method. -func (cond *evalExhaustiveConditional) Eval(ctx Activation) ref.Val { - cVal := cond.attr.expr.Eval(ctx) - tVal, tErr := cond.attr.truthy.Resolve(ctx) - fVal, fErr := cond.attr.falsy.Resolve(ctx) +// Exec implements the InterpretableV2 interface method. +func (cond *evalExhaustiveConditional) Exec(frame *ExecutionFrame) ref.Val { + cVal := cond.attr.expr.Exec(frame) + tVal, tErr := cond.attr.truthy.Resolve(frame) + fVal, fErr := cond.attr.falsy.Resolve(frame) cBool, ok := cVal.(types.Bool) if !ok { return types.ValOrErr(cVal, "no such overload") @@ -1184,6 +1404,11 @@ func (cond *evalExhaustiveConditional) Eval(ctx Activation) ref.Val { return cond.adapter.NativeToValue(fVal) } +// Eval implements the Interpretable interface method. +func (cond *evalExhaustiveConditional) Eval(ctx Activation) ref.Val { + return cond.Exec(AsFrame(ctx)) +} + // evalAttr evaluates an Attribute value. type evalAttr struct { adapter types.Adapter @@ -1215,15 +1440,20 @@ func (a *evalAttr) Adapter() types.Adapter { return a.adapter } -// Eval implements the Interpretable interface method. -func (a *evalAttr) Eval(ctx Activation) ref.Val { - v, err := a.attr.Resolve(ctx) +// Exec implements the InterpretableV2 interface method. +func (a *evalAttr) Exec(frame *ExecutionFrame) ref.Val { + v, err := a.attr.Resolve(frame) if err != nil { return types.LabelErrNode(a.ID(), types.WrapErr(err)) } return a.adapter.NativeToValue(v) } +// Eval implements the Interpretable interface method. +func (a *evalAttr) Eval(ctx Activation) ref.Val { + return a.Exec(AsFrame(ctx)) +} + // Qualify proxies to the Attribute's Qualify method. func (a *evalAttr) Qualify(vars Activation, obj any) (any, error) { return a.attr.Qualify(vars, obj) @@ -1249,7 +1479,7 @@ type evalWatchConstructor struct { } // InitVals implements the InterpretableConstructor InitVals function. -func (c *evalWatchConstructor) InitVals() []Interpretable { +func (c *evalWatchConstructor) InitVals() []InterpretableV2 { return c.constructor.InitVals() } @@ -1263,11 +1493,16 @@ func (c *evalWatchConstructor) ID() int64 { return c.constructor.ID() } +// Exec implements the InterpretableV2 interface method. +func (c *evalWatchConstructor) Exec(frame *ExecutionFrame) ref.Val { + val := c.constructor.Exec(frame) + c.observer(frame, c.ID(), c.constructor, val) + return val +} + // Eval implements the Interpretable Eval function. func (c *evalWatchConstructor) Eval(vars Activation) ref.Val { - val := c.constructor.Eval(vars) - c.observer(vars, c.ID(), c.constructor, val) - return val + return c.Exec(AsFrame(vars)) } func invalidOptionalEntryInit(field any, value ref.Val) ref.Val { @@ -1279,10 +1514,10 @@ func invalidOptionalElementInit(value ref.Val) ref.Val { } // newFolder creates or initializes a pooled folder instance. -func newFolder(eval *evalFold, ctx Activation) *folder { +func newFolder(eval *evalFold, frame *ExecutionFrame) *folder { f := folderPool.Get().(*folder) f.evalFold = eval - f.activation = ctx + f.frame = frame.Push(f) return f } @@ -1303,7 +1538,7 @@ func releaseFolder(f *folder) { // cel.bind or cel.@block. type folder struct { *evalFold - activation Activation + frame *ExecutionFrame // fold state objects. accuVal ref.Val @@ -1322,16 +1557,16 @@ func (f *folder) foldIterable(iterable traits.Iterable) ref.Val { for it.HasNext() == types.True { f.iterVar1Val = it.Next() - cond := f.cond.Eval(f) + cond := f.cond.Exec(f.frame) condBool, ok := cond.(types.Bool) if f.interrupted || (!f.exhaustive && ok && condBool != types.True) { return f.evalResult() } // Update the accumulation value and check for eval interuption. - f.accuVal = f.step.Eval(f) + f.accuVal = f.step.Exec(f.frame) f.initialized = true - if f.interruptable && checkInterrupt(f.activation) { + if f.interruptable && f.frame.CheckInterrupt() { f.interrupted = true return f.evalResult() } @@ -1348,16 +1583,16 @@ func (f *folder) FoldEntry(key, val any) bool { // Terminate evaluation if evaluation is interrupted or the condition is not true and exhaustive // eval is not enabled. - cond := f.cond.Eval(f) + cond := f.cond.Exec(f.frame) condBool, ok := cond.(types.Bool) if f.interrupted || (!f.exhaustive && ok && condBool != types.True) { return false } // Update the accumulation value and check for eval interuption. - f.accuVal = f.step.Eval(f) + f.accuVal = f.step.Exec(f.frame) f.initialized = true - if f.interruptable && checkInterrupt(f.activation) { + if f.interruptable && f.frame.CheckInterrupt() { f.interrupted = true return false } @@ -1371,7 +1606,7 @@ func (f *folder) ResolveName(name string) (any, bool) { if name == f.accuVar { if !f.initialized { f.initialized = true - initVal := f.accu.Eval(f.activation) + initVal := f.accu.Exec(f.frame.parent) if !f.exhaustive { if l, isList := initVal.(traits.Lister); isList && l.Size() == types.IntZero { initVal = types.NewMutableList(f.adapter) @@ -1396,18 +1631,43 @@ func (f *folder) ResolveName(name string) (any, bool) { return f.iterVar2Val, true } } - return f.activation.ResolveName(name) + return f.frame.parent.ResolveName(name) } // Parent returns the activation embedded into the folder. func (f *folder) Parent() Activation { - return f.activation + return f.frame.parent +} + +// Unwrap returns the parent activation, thus omitting access to local state +func (f *folder) Unwrap() Activation { + return f.frame.parent +} + +// IsLocalVariable reports whether the variable name is locally bound by the folder scope. +func (f *folder) IsLocalVariable(name string) bool { + if name == f.accuVar { + return true + } + if !f.computeResult && (name == f.iterVar || name == f.iterVar2) { + return true + } + parent := f.Parent() + if parent == nil { + return false + } + if varHolder, ok := parent.(localVariableHolder); ok { + if varHolder.IsLocalVariable(name) { + return true + } + } + return false } // UnknownAttributePatterns implements the PartialActivation interface returning the unknown patterns // if they were provided to the input activation, or an empty set if the proxied activation is not partial. func (f *folder) UnknownAttributePatterns() []*AttributePattern { - if pv, ok := f.activation.(partialActivationConverter); ok { + if pv, ok := f.frame.parent.Activation.(partialActivationConverter); ok { if partial, isPartial := pv.AsPartialActivation(); isPartial { return partial.UnknownAttributePatterns() } @@ -1416,7 +1676,7 @@ func (f *folder) UnknownAttributePatterns() []*AttributePattern { } func (f *folder) AsPartialActivation() (PartialActivation, bool) { - if pv, ok := f.activation.(partialActivationConverter); ok { + if pv, ok := f.frame.parent.Activation.(partialActivationConverter); ok { if _, isPartial := pv.AsPartialActivation(); isPartial { return f, true } @@ -1428,9 +1688,9 @@ func (f *folder) AsPartialActivation() (PartialActivation, bool) { func (f *folder) evalResult() ref.Val { f.computeResult = true if f.interrupted { - return types.NewErr("operation interrupted") + return types.WrapErr(InterruptError{}) } - res := f.result.Eval(f) + res := f.result.Exec(f.frame) // Convert a mutable list or map to an immutable one if the comprehension has generated a list or // map as a result. if !types.IsUnknownOrError(res) && f.mutableValue { @@ -1447,7 +1707,8 @@ func (f *folder) evalResult() ref.Val { // reset clears any state associated with folder evaluation. func (f *folder) reset() { f.evalFold = nil - f.activation = nil + f.frame.Pop() + f.frame = nil f.accuVal = nil f.iterVar1Val = nil f.iterVar2Val = nil @@ -1458,9 +1719,18 @@ func (f *folder) reset() { f.computeResult = false } -func checkInterrupt(a Activation) bool { - stop, found := a.ResolveName("#interrupted") - return found && stop == true +// InterruptError is a specialized error type used to signal that program evaluation should check +// whether a context cancellation is responsible for the error. +type InterruptError struct{} + +// Error returns operation interrupted. +func (InterruptError) Error() string { + return "operation interrupted" +} + +// Is returns whether two errors are interrupt errors. +func (ie InterruptError) Is(target error) bool { + return target.Error() == ie.Error() } var ( diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/interpreter.go b/tests/e2e/vendor/github.com/google/cel-go/interpreter/interpreter.go index be57e74392..ef13ab9226 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/interpreter/interpreter.go +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/interpreter.go @@ -29,11 +29,11 @@ import ( // PlannerOption configures the program plan options during interpretable setup. type PlannerOption func(*planner) (*planner, error) -// Interpreter generates a new Interpretable from a checked or unchecked expression. +// Interpreter generates a new InterpretableV2 from a checked or unchecked expression. type Interpreter interface { - // NewInterpretable creates an Interpretable from a checked expression and an + // NewInterpretable creates an InterpretableV2 from a checked expression and an // optional list of PlannerOption values. - NewInterpretable(exprAST *ast.AST, opts ...PlannerOption) (Interpretable, error) + NewInterpretable(exprAST *ast.AST, opts ...PlannerOption) (InterpretableV2, error) } // EvalObserver is a functional interface that accepts an expression id and an observed value. @@ -43,16 +43,16 @@ type EvalObserver func(vars Activation, id int64, programStep any, value ref.Val // StatefulObserver observes evaluation while tracking or utilizing stateful behavior. type StatefulObserver interface { - // InitState configures stateful metadata on the activation. - InitState(Activation) (Activation, error) + // InitState configures stateful metadata on the execution frame. + InitState(*ExecutionFrame) (any, error) - // GetState retrieves the stateful metadata from the activation. - GetState(Activation) any + // GetState retrieves the stateful metadata from the execution frame. + GetState(*ExecutionFrame) any // Observe passes the activation and relevant evaluation metadata to the observer. - // The observe method is expected to do the equivalent of GetState(vars) in order + // The observe method is expected to do the equivalent of GetState(AsFrame(activation)) // to find the metadata that needs to be updated upon invocation. - Observe(vars Activation, id int64, programStep any, value ref.Val) + Observe(Activation, int64, any, ref.Val) } // EvalCancelledError represents a cancelled program evaluation operation. @@ -106,46 +106,17 @@ func EvalStateObserver(opts ...evalStateOption) PlannerOption { } } -// evalStateConverter identifies an object which is convertible to an EvalState instance. -type evalStateConverter interface { - asEvalState() EvalState +// activationWrapper identifies an object carrying local variables which should not be exposed to the user +// Activations used for such purposes can be unwrapped to return the activation which omits local state. +type activationWrapper interface { + // Unwrap returns the Activation which omits local state. + Unwrap() Activation } -// evalStateActivation hides state in the Activation in a manner not accessible to expressions. -type evalStateActivation struct { - vars Activation - state EvalState -} - -// ResolveName proxies variable lookups to the backing activation. -func (esa evalStateActivation) ResolveName(name string) (any, bool) { - return esa.vars.ResolveName(name) -} - -// Parent proxies parent lookups to the backing activation. -func (esa evalStateActivation) Parent() Activation { - return esa.vars -} - -// AsPartialActivation supports conversion to a partial activation in order to detect unknown attributes. -func (esa evalStateActivation) AsPartialActivation() (PartialActivation, bool) { - return AsPartialActivation(esa.vars) -} - -// asEvalState implements the evalStateConverter method. -func (esa evalStateActivation) asEvalState() EvalState { - return esa.state -} - -// asEvalState walks the Activation hierarchy and returns the first EvalState found, if present. -func asEvalState(vars Activation) (EvalState, bool) { - if conv, ok := vars.(evalStateConverter); ok { - return conv.asEvalState(), true - } - if vars.Parent() != nil { - return asEvalState(vars.Parent()) - } - return nil, false +// localVariableHolder identifies an Activation scope that holds local variables and supports testing +// whether a variable name is local to this scope. +type localVariableHolder interface { + IsLocalVariable(name string) bool } // evalStateFactory holds a reference to a factory function that produces an EvalState instance. @@ -153,32 +124,54 @@ type evalStateFactory struct { factory func() EvalState } -// InitState produces an EvalState instance and bundles it into the Activation in a way which is +// InitState produces an EvalState instance and bundles it into the ExecutionFrame in a way which is // not visible to expression evaluation. -func (et *evalStateFactory) InitState(vars Activation) (Activation, error) { +func (et *evalStateFactory) InitState(frame *ExecutionFrame) (any, error) { + if frame.ctx != nil && frame.ctx.state != nil { + return frame.ctx.state, nil + } state := et.factory() - return evalStateActivation{vars: vars, state: state}, nil + if frame.ctx == nil { + frame.ctx = evalContextPool.Get().(*evalContext) + } + frame.ctx.state = state + return state, nil } // GetState extracts the EvalState from the Activation. -func (et *evalStateFactory) GetState(vars Activation) any { - if state, found := asEvalState(vars); found { - return state +func (et *evalStateFactory) GetState(frame *ExecutionFrame) any { + if frame.ctx == nil { + return nil } - return nil + return frame.ctx.state } // Observe records the evaluation state for a given expression node and program step. func (et *evalStateFactory) Observe(vars Activation, id int64, programStep any, val ref.Val) { - state, found := asEvalState(vars) - if !found { + frame := AsFrame(vars) + if frame.ctx == nil || frame.ctx.state == nil { return } - state.SetValue(id, val) + frame.ctx.state.SetValue(id, val) } // CustomDecorator configures a custom interpretable decorator for the program. func CustomDecorator(dec InterpretableDecorator) PlannerOption { + return func(p *planner) (*planner, error) { + dec2 := func(i InterpretableV2) (InterpretableV2, error) { + legacy, err := dec(i) + if err != nil { + return nil, err + } + return adaptToV2(legacy), nil + } + p.decorators = append(p.decorators, dec2) + return p, nil + } +} + +// CustomDecoratorV2 configures a custom V2 interpretable decorator for the program. +func CustomDecoratorV2(dec InterpretableDecoratorV2) PlannerOption { return func(p *planner) (*planner, error) { p.decorators = append(p.decorators, dec) return p, nil @@ -191,7 +184,7 @@ func CustomDecorator(dec InterpretableDecorator) PlannerOption { // provided to the decorator. This decorator is not thread-safe, and the EvalState // must be reset between Eval() calls. func ExhaustiveEval() PlannerOption { - return CustomDecorator(decDisableShortcircuits()) + return CustomDecoratorV2(decDisableShortcircuits()) } // InterruptableEval annotates comprehension loops with information that indicates they @@ -200,13 +193,13 @@ func ExhaustiveEval() PlannerOption { // The custom activation is currently managed higher up in the stack within the 'cel' package // and should not require any custom support on behalf of callers. func InterruptableEval() PlannerOption { - return CustomDecorator(decInterruptFolds()) + return CustomDecoratorV2(decInterruptFolds()) } // Optimize will pre-compute operations such as list and map construction and optimize // call arguments to set membership tests. The set of optimizations will increase over time. func Optimize() PlannerOption { - return CustomDecorator(decOptimize()) + return CustomDecoratorV2(decOptimize()) } // RegexOptimization provides a way to replace an InterpretableCall for a regex function when the @@ -231,7 +224,7 @@ type RegexOptimization struct { // CompileRegexConstants compiles regex pattern string constants at program creation time and reports any regex pattern // compile errors. func CompileRegexConstants(regexOptimizations ...*RegexOptimization) PlannerOption { - return CustomDecorator(decRegexOptimizer(regexOptimizations...)) + return CustomDecoratorV2(decRegexOptimizer(regexOptimizations...)) } type exprInterpreter struct { @@ -257,10 +250,10 @@ func NewInterpreter(dispatcher Dispatcher, attrFactory: attrFactory} } -// NewIntepretable implements the Interpreter interface method. +// NewInterpretable implements the Interpreter interface method. func (i *exprInterpreter) NewInterpretable( checked *ast.AST, - opts ...PlannerOption) (Interpretable, error) { + opts ...PlannerOption) (InterpretableV2, error) { p := newPlanner(i.dispatcher, i.provider, i.adapter, i.attrFactory, i.container, checked) var err error for _, o := range opts { diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/planner.go b/tests/e2e/vendor/github.com/google/cel-go/interpreter/planner.go index f0e0d43054..396a9803fc 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/interpreter/planner.go +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/planner.go @@ -43,7 +43,7 @@ func newPlanner(disp Dispatcher, container: cont, refMap: exprAST.ReferenceMap(), typeMap: exprAST.TypeMap(), - decorators: make([]InterpretableDecorator, 0), + decorators: make([]InterpretableDecoratorV2, 0), observers: make([]StatefulObserver, 0), } } @@ -57,27 +57,34 @@ type planner struct { container *containers.Container refMap map[int64]*ast.ReferenceInfo typeMap map[int64]*types.Type - decorators []InterpretableDecorator + decorators []InterpretableDecoratorV2 observers []StatefulObserver } +type planBuilder struct { + *planner + + localVars map[string]int +} + // Plan implements the interpretablePlanner interface. This implementation of the Plan method also // applies decorators to each Interpretable generated as part of the overall plan. Decorators are // useful for layering functionality into the evaluation that is not natively understood by CEL, // such as state-tracking, expression re-write, and possibly efficient thread-safe memoization of // repeated expressions. -func (p *planner) Plan(expr ast.Expr) (Interpretable, error) { - i, err := p.plan(expr) +func (p *planner) Plan(expr ast.Expr) (InterpretableV2, error) { + pb := &planBuilder{planner: p, localVars: make(map[string]int)} + i, err := pb.plan(expr) if err != nil { return nil, err } if len(p.observers) == 0 { return i, nil } - return &ObservableInterpretable{Interpretable: i, observers: p.observers}, nil + return &ObservableInterpretable{InterpretableV2: i, observers: p.observers}, nil } -func (p *planner) plan(expr ast.Expr) (Interpretable, error) { +func (p *planBuilder) plan(expr ast.Expr) (InterpretableV2, error) { switch expr.Kind() { case ast.CallKind: return p.decorate(p.planCall(expr)) @@ -102,7 +109,7 @@ func (p *planner) plan(expr ast.Expr) (Interpretable, error) { // decorate applies the InterpretableDecorator functions to the given Interpretable. // Both the Interpretable and error generated by a Plan step are accepted as arguments // for convenience. -func (p *planner) decorate(i Interpretable, err error) (Interpretable, error) { +func (p *planBuilder) decorate(i InterpretableV2, err error) (InterpretableV2, error) { if err != nil { return nil, err } @@ -116,20 +123,26 @@ func (p *planner) decorate(i Interpretable, err error) (Interpretable, error) { } // planIdent creates an Interpretable that resolves an identifier from an Activation. -func (p *planner) planIdent(expr ast.Expr) (Interpretable, error) { +func (p *planBuilder) planIdent(expr ast.Expr) (InterpretableV2, error) { // Establish whether the identifier is in the reference map. if identRef, found := p.refMap[expr.ID()]; found { return p.planCheckedIdent(expr.ID(), identRef) } // Create the possible attribute list for the unresolved reference. ident := expr.AsIdent() + if p.isLocalVar(ident) { + return &evalAttr{ + adapter: p.adapter, + attr: p.attrFactory.AbsoluteAttribute(expr.ID(), ident), + }, nil + } return &evalAttr{ adapter: p.adapter, attr: p.attrFactory.MaybeAttribute(expr.ID(), ident), }, nil } -func (p *planner) planCheckedIdent(id int64, identRef *ast.ReferenceInfo) (Interpretable, error) { +func (p *planBuilder) planCheckedIdent(id int64, identRef *ast.ReferenceInfo) (InterpretableV2, error) { // Plan a constant reference if this is the case for this simple identifier. if identRef.Value != nil { return NewConstValue(id, identRef.Value), nil @@ -158,7 +171,7 @@ func (p *planner) planCheckedIdent(id int64, identRef *ast.ReferenceInfo) (Inter // a) selects a field from a map or proto. // b) creates a field presence test for a select within a has() macro. // c) resolves the select expression to a namespaced identifier. -func (p *planner) planSelect(expr ast.Expr) (Interpretable, error) { +func (p *planBuilder) planSelect(expr ast.Expr) (InterpretableV2, error) { // If the Select id appears in the reference map from the CheckedExpr proto then it is either // a namespaced identifier or enum value. if identRef, found := p.refMap[expr.ID()]; found { @@ -214,7 +227,7 @@ func (p *planner) planSelect(expr ast.Expr) (Interpretable, error) { // planCall creates a callable Interpretable while specializing for common functions and invocation // patterns. Specifically, conditional operators &&, ||, ?:, and (in)equality functions result in // optimized Interpretable values. -func (p *planner) planCall(expr ast.Expr) (Interpretable, error) { +func (p *planBuilder) planCall(expr ast.Expr) (InterpretableV2, error) { call := expr.AsCall() target, fnName, oName := p.resolveFunction(expr) argCount := len(call.Args()) @@ -224,7 +237,7 @@ func (p *planner) planCall(expr ast.Expr) (Interpretable, error) { offset++ } - args := make([]Interpretable, argCount) + args := make([]InterpretableV2, argCount) if target != nil { arg, err := p.plan(target) if err != nil { @@ -268,6 +281,10 @@ func (p *planner) planCall(expr ast.Expr) (Interpretable, error) { if fnDef == nil { fnDef, _ = p.disp.FindOverload(fnName) } + // Async overloads are planned into an evalAsyncFunc regardless of arity. + if fnDef != nil && fnDef.Async != nil { + return p.planCallAsync(expr, fnName, oName, fnDef, args) + } switch argCount { case 0: return p.planCallZero(expr, fnName, oName, fnDef) @@ -290,11 +307,29 @@ func (p *planner) planCall(expr ast.Expr) (Interpretable, error) { } } +// planCallAsync generates an asynchronous callable Interpretable. +func (p *planBuilder) planCallAsync(expr ast.Expr, + function string, + overload string, + impl *functions.Overload, + args []InterpretableV2) (InterpretableV2, error) { + if impl == nil || impl.Async == nil { + return nil, fmt.Errorf("no such overload: %s()", function) + } + return &evalAsyncFunc{ + id: expr.ID(), + function: function, + overload: overload, + args: args, + impl: impl.Async, + }, nil +} + // planCallZero generates a zero-arity callable Interpretable. -func (p *planner) planCallZero(expr ast.Expr, +func (p *planBuilder) planCallZero(expr ast.Expr, function string, overload string, - impl *functions.Overload) (Interpretable, error) { + impl *functions.Overload) (InterpretableV2, error) { if impl == nil || impl.Function == nil { return nil, fmt.Errorf("no such overload: %s()", function) } @@ -307,11 +342,11 @@ func (p *planner) planCallZero(expr ast.Expr, } // planCallUnary generates a unary callable Interpretable. -func (p *planner) planCallUnary(expr ast.Expr, +func (p *planBuilder) planCallUnary(expr ast.Expr, function string, overload string, impl *functions.Overload, - args []Interpretable) (Interpretable, error) { + args []InterpretableV2) (InterpretableV2, error) { var fn functions.UnaryOp var trait int var nonStrict bool @@ -335,11 +370,11 @@ func (p *planner) planCallUnary(expr ast.Expr, } // planCallBinary generates a binary callable Interpretable. -func (p *planner) planCallBinary(expr ast.Expr, +func (p *planBuilder) planCallBinary(expr ast.Expr, function string, overload string, impl *functions.Overload, - args []Interpretable) (Interpretable, error) { + args []InterpretableV2) (InterpretableV2, error) { var fn functions.BinaryOp var trait int var nonStrict bool @@ -364,11 +399,11 @@ func (p *planner) planCallBinary(expr ast.Expr, } // planCallVarArgs generates a variable argument callable Interpretable. -func (p *planner) planCallVarArgs(expr ast.Expr, +func (p *planBuilder) planCallVarArgs(expr ast.Expr, function string, overload string, impl *functions.Overload, - args []Interpretable) (Interpretable, error) { + args []InterpretableV2) (InterpretableV2, error) { var fn functions.FunctionOp var trait int var nonStrict bool @@ -392,7 +427,7 @@ func (p *planner) planCallVarArgs(expr ast.Expr, } // planCallEqual generates an equals (==) Interpretable. -func (p *planner) planCallEqual(expr ast.Expr, args []Interpretable) (Interpretable, error) { +func (p *planBuilder) planCallEqual(expr ast.Expr, args []InterpretableV2) (InterpretableV2, error) { return &evalEq{ id: expr.ID(), lhs: args[0], @@ -401,7 +436,7 @@ func (p *planner) planCallEqual(expr ast.Expr, args []Interpretable) (Interpreta } // planCallNotEqual generates a not equals (!=) Interpretable. -func (p *planner) planCallNotEqual(expr ast.Expr, args []Interpretable) (Interpretable, error) { +func (p *planBuilder) planCallNotEqual(expr ast.Expr, args []InterpretableV2) (InterpretableV2, error) { return &evalNe{ id: expr.ID(), lhs: args[0], @@ -410,7 +445,7 @@ func (p *planner) planCallNotEqual(expr ast.Expr, args []Interpretable) (Interpr } // planCallLogicalAnd generates a logical and (&&) Interpretable. -func (p *planner) planCallLogicalAnd(expr ast.Expr, args []Interpretable) (Interpretable, error) { +func (p *planBuilder) planCallLogicalAnd(expr ast.Expr, args []InterpretableV2) (InterpretableV2, error) { return &evalAnd{ id: expr.ID(), terms: args, @@ -418,7 +453,7 @@ func (p *planner) planCallLogicalAnd(expr ast.Expr, args []Interpretable) (Inter } // planCallLogicalOr generates a logical or (||) Interpretable. -func (p *planner) planCallLogicalOr(expr ast.Expr, args []Interpretable) (Interpretable, error) { +func (p *planBuilder) planCallLogicalOr(expr ast.Expr, args []InterpretableV2) (InterpretableV2, error) { return &evalOr{ id: expr.ID(), terms: args, @@ -426,7 +461,7 @@ func (p *planner) planCallLogicalOr(expr ast.Expr, args []Interpretable) (Interp } // planCallConditional generates a conditional / ternary (c ? t : f) Interpretable. -func (p *planner) planCallConditional(expr ast.Expr, args []Interpretable) (Interpretable, error) { +func (p *planBuilder) planCallConditional(expr ast.Expr, args []InterpretableV2) (InterpretableV2, error) { cond := args[0] t := args[1] var tAttr Attribute @@ -454,7 +489,7 @@ func (p *planner) planCallConditional(expr ast.Expr, args []Interpretable) (Inte // planCallIndex either extends an attribute with the argument to the index operation, or creates // a relative attribute based on the return of a function call or operation. -func (p *planner) planCallIndex(expr ast.Expr, args []Interpretable, optional bool) (Interpretable, error) { +func (p *planBuilder) planCallIndex(expr ast.Expr, args []InterpretableV2, optional bool) (InterpretableV2, error) { op := args[0] ind := args[1] opType := p.typeMap[op.ID()] @@ -489,7 +524,7 @@ func (p *planner) planCallIndex(expr ast.Expr, args []Interpretable, optional bo } // planCreateList generates a list construction Interpretable. -func (p *planner) planCreateList(expr ast.Expr) (Interpretable, error) { +func (p *planBuilder) planCreateList(expr ast.Expr) (InterpretableV2, error) { list := expr.AsList() optionalIndices := list.OptionalIndices() elements := list.Elements() @@ -500,7 +535,7 @@ func (p *planner) planCreateList(expr ast.Expr) (Interpretable, error) { } optionals[index] = true } - elems := make([]Interpretable, len(elements)) + elems := make([]InterpretableV2, len(elements)) for i, elem := range elements { elemVal, err := p.plan(elem) if err != nil { @@ -518,12 +553,12 @@ func (p *planner) planCreateList(expr ast.Expr) (Interpretable, error) { } // planCreateStruct generates a map or object construction Interpretable. -func (p *planner) planCreateMap(expr ast.Expr) (Interpretable, error) { +func (p *planBuilder) planCreateMap(expr ast.Expr) (InterpretableV2, error) { m := expr.AsMap() entries := m.Entries() optionals := make([]bool, len(entries)) - keys := make([]Interpretable, len(entries)) - vals := make([]Interpretable, len(entries)) + keys := make([]InterpretableV2, len(entries)) + vals := make([]InterpretableV2, len(entries)) hasOptionals := false for i, e := range entries { entry := e.AsMapEntry() @@ -552,7 +587,7 @@ func (p *planner) planCreateMap(expr ast.Expr) (Interpretable, error) { } // planCreateObj generates an object construction Interpretable. -func (p *planner) planCreateStruct(expr ast.Expr) (Interpretable, error) { +func (p *planBuilder) planCreateStruct(expr ast.Expr) (InterpretableV2, error) { obj := expr.AsStruct() typeName, defined := p.resolveTypeName(obj.TypeName()) if !defined { @@ -561,7 +596,7 @@ func (p *planner) planCreateStruct(expr ast.Expr) (Interpretable, error) { objFields := obj.Fields() optionals := make([]bool, len(objFields)) fields := make([]string, len(objFields)) - vals := make([]Interpretable, len(objFields)) + vals := make([]InterpretableV2, len(objFields)) hasOptionals := false for i, f := range objFields { field := f.AsStructField() @@ -586,7 +621,7 @@ func (p *planner) planCreateStruct(expr ast.Expr) (Interpretable, error) { } // planComprehension generates an Interpretable fold operation. -func (p *planner) planComprehension(expr ast.Expr) (Interpretable, error) { +func (p *planBuilder) planComprehension(expr ast.Expr) (InterpretableV2, error) { fold := expr.AsComprehension() accu, err := p.plan(fold.AccuInit()) if err != nil { @@ -596,6 +631,7 @@ func (p *planner) planComprehension(expr ast.Expr) (Interpretable, error) { if err != nil { return nil, err } + p.pushLocalVars(fold.AccuVar(), fold.IterVar(), fold.IterVar2()) cond, err := p.plan(fold.LoopCondition()) if err != nil { return nil, err @@ -604,10 +640,12 @@ func (p *planner) planComprehension(expr ast.Expr) (Interpretable, error) { if err != nil { return nil, err } + p.popLocalVars(fold.IterVar(), fold.IterVar2()) result, err := p.plan(fold.Result()) if err != nil { return nil, err } + p.popLocalVars(fold.AccuVar()) return &evalFold{ id: expr.ID(), accuVar: fold.AccuVar(), @@ -623,13 +661,13 @@ func (p *planner) planComprehension(expr ast.Expr) (Interpretable, error) { } // planConst generates a constant valued Interpretable. -func (p *planner) planConst(expr ast.Expr) (Interpretable, error) { +func (p *planBuilder) planConst(expr ast.Expr) (InterpretableV2, error) { return NewConstValue(expr.ID(), expr.AsLiteral()), nil } // resolveTypeName takes a qualified string constructed at parse time, applies the proto // namespace resolution rules to it in a scan over possible matching types in the TypeProvider. -func (p *planner) resolveTypeName(typeName string) (string, bool) { +func (p *planBuilder) resolveTypeName(typeName string) (string, bool) { for _, qualifiedTypeName := range p.container.ResolveCandidateNames(typeName) { if _, found := p.provider.FindStructType(qualifiedTypeName); found { return qualifiedTypeName, true @@ -646,7 +684,7 @@ func (p *planner) resolveTypeName(typeName string) (string, bool) { // - The target expression may only consist of ident and select expressions. // - The function is declared in the environment using its fully-qualified name. // - The fully-qualified function name matches the string serialized target value. -func (p *planner) resolveFunction(expr ast.Expr) (ast.Expr, string, string) { +func (p *planBuilder) resolveFunction(expr ast.Expr) (ast.Expr, string, string) { // Note: similar logic exists within the `checker/checker.go`. If making changes here // please consider the impact on checker.go and consolidate implementations or mirror code // as appropriate. @@ -687,7 +725,7 @@ func (p *planner) resolveFunction(expr ast.Expr) (ast.Expr, string, string) { // namespaced identifiers must be stripped, as all declarations already use fully-qualified // names. This stripping behavior is handled automatically by the ResolveCandidateNames // call. - return target, stripLeadingDot(fnName), "" + return target, strings.TrimPrefix(fnName, "."), "" } // Handle the situation where the function target actually indicates a qualified function name. @@ -710,7 +748,7 @@ func (p *planner) resolveFunction(expr ast.Expr) (ast.Expr, string, string) { // relativeAttr indicates that the attribute in this case acts as a qualifier and as such needs to // be observed to ensure that it's evaluation value is properly recorded for state tracking. -func (p *planner) relativeAttr(id int64, eval Interpretable, opt bool) (InterpretableAttribute, error) { +func (p *planBuilder) relativeAttr(id int64, eval InterpretableV2, opt bool) (InterpretableAttribute, error) { eAttr, ok := eval.(InterpretableAttribute) if !ok { eAttr = &evalAttr{ @@ -733,7 +771,7 @@ func (p *planner) relativeAttr(id int64, eval Interpretable, opt bool) (Interpre // toQualifiedName converts an expression AST into a qualified name if possible, with a boolean // 'found' value that indicates if the conversion is successful. -func (p *planner) toQualifiedName(operand ast.Expr) (string, bool) { +func (p *planBuilder) toQualifiedName(operand ast.Expr) (string, bool) { // If the checker identified the expression as an attribute by the type-checker, then it can't // possibly be part of qualified name in a namespace. _, isAttr := p.refMap[operand.ID()] @@ -759,9 +797,35 @@ func (p *planner) toQualifiedName(operand ast.Expr) (string, bool) { return "", false } -func stripLeadingDot(name string) string { - if strings.HasPrefix(name, ".") { - return name[1:] +func (p *planBuilder) pushLocalVars(names ...string) { + for _, name := range names { + if name == "" { + continue + } + if cnt, found := p.localVars[name]; found { + p.localVars[name] = cnt + 1 + } else { + p.localVars[name] = 1 + } } - return name +} + +func (p *planBuilder) popLocalVars(names ...string) { + for _, name := range names { + if name == "" { + continue + } + if cnt, found := p.localVars[name]; found { + if cnt == 1 { + delete(p.localVars, name) + } else { + p.localVars[name] = cnt - 1 + } + } + } +} + +func (p *planBuilder) isLocalVar(name string) bool { + _, found := p.localVars[name] + return found } diff --git a/tests/e2e/vendor/github.com/google/cel-go/interpreter/runtimecost.go b/tests/e2e/vendor/github.com/google/cel-go/interpreter/runtimecost.go index 6c44cd7986..81e4ef63c4 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/interpreter/runtimecost.go +++ b/tests/e2e/vendor/github.com/google/cel-go/interpreter/runtimecost.go @@ -62,48 +62,6 @@ func CostObserver(opts ...costTrackPlanOption) PlannerOption { } } -// costTrackerConverter identifies an object which is convertible to a CostTracker instance. -type costTrackerConverter interface { - asCostTracker() *CostTracker -} - -// costTrackActivation hides state in the Activation in a manner not accessible to expressions. -type costTrackActivation struct { - vars Activation - costTracker *CostTracker -} - -// ResolveName proxies variable lookups to the backing activation. -func (cta costTrackActivation) ResolveName(name string) (any, bool) { - return cta.vars.ResolveName(name) -} - -// Parent proxies parent lookups to the backing activation. -func (cta costTrackActivation) Parent() Activation { - return cta.vars -} - -// AsPartialActivation supports conversion to a partial activation in order to detect unknown attributes. -func (cta costTrackActivation) AsPartialActivation() (PartialActivation, bool) { - return AsPartialActivation(cta.vars) -} - -// asCostTracker implements the costTrackerConverter method. -func (cta costTrackActivation) asCostTracker() *CostTracker { - return cta.costTracker -} - -// asCostTracker walks the Activation hierarchy and returns the first cost tracker found, if present. -func asCostTracker(vars Activation) (*CostTracker, bool) { - if conv, ok := vars.(costTrackerConverter); ok { - return conv.asCostTracker(), true - } - if vars.Parent() != nil { - return asCostTracker(vars.Parent()) - } - return nil, false -} - // costTrackerFactory holds a factory for producing new CostTracker instances on each Eval call. type costTrackerFactory struct { factory func() (*CostTracker, error) @@ -111,27 +69,40 @@ type costTrackerFactory struct { // InitState produces a CostTracker and bundles it into an Activation in a way which is not visible // to expression evaluation. -func (ct *costTrackerFactory) InitState(vars Activation) (Activation, error) { +func (ct *costTrackerFactory) InitState(frame *ExecutionFrame) (any, error) { + if frame.ctx != nil && frame.ctx.costs != nil { + return frame.ctx.costs, nil + } tracker, err := ct.factory() if err != nil { return nil, err } - return costTrackActivation{vars: vars, costTracker: tracker}, nil + if frame.ctx == nil { + frame.ctx = evalContextPool.Get().(*evalContext) + } + frame.ctx.costs = tracker + return tracker, nil } // GetState extracts the CostTracker from the Activation. -func (ct *costTrackerFactory) GetState(vars Activation) any { - if tracker, found := asCostTracker(vars); found { - return tracker +func (ct *costTrackerFactory) GetState(frame *ExecutionFrame) any { + if frame == nil || frame.ctx == nil { + return nil } - return nil + return frame.ctx.costs } // Observe computes the incremental cost of each step and records it into the CostTracker associated // with the evaluation. func (ct *costTrackerFactory) Observe(vars Activation, id int64, programStep any, val ref.Val) { - tracker, found := asCostTracker(vars) - if !found { + frame := AsFrame(vars) + state := ct.GetState(frame) + if state == nil { + return + } + tracker, ok := state.(*CostTracker) + if !ok { + // The state is configured with CostTrackFactory so this shouldn't happen. return } switch t := programStep.(type) { @@ -265,6 +236,19 @@ type CostTracker struct { stack refValStack } +// Clone makes a shallow copy of the tracker. +// The different clones can be used independently from +// each other. +func (c *CostTracker) Clone() (*CostTracker, error) { + tracker := &CostTracker{ + Estimator: c.Estimator, + overloadTrackers: c.overloadTrackers, + Limit: c.Limit, + presenceTestHasCost: c.presenceTestHasCost, + } + return tracker, nil +} + // ActualCost returns the runtime cost func (c *CostTracker) ActualCost() uint64 { return c.cost @@ -276,7 +260,7 @@ func (c *CostTracker) costCall(call InterpretableCall, args []ref.Val, result re if tracker, found := c.overloadTrackers[call.OverloadID()]; found { callCost := tracker(args, result) if callCost != nil { - cost += *callCost + cost = safeAdd(cost, *callCost) return cost } } @@ -284,7 +268,7 @@ func (c *CostTracker) costCall(call InterpretableCall, args []ref.Val, result re if c.Estimator != nil { callCost := c.Estimator.CallCost(call.Function(), call.OverloadID(), args, result) if callCost != nil { - cost += *callCost + cost = safeAdd(cost, *callCost) return cost } } @@ -292,12 +276,14 @@ func (c *CostTracker) costCall(call InterpretableCall, args []ref.Val, result re // if user has their own implementation of ActualCostEstimator, make sure to cover the mapping between overloadId and cost calculation switch call.OverloadID() { // O(n) functions - case overloads.StartsWithString, overloads.EndsWithString, overloads.StringToBytes, overloads.BytesToString, overloads.ExtQuoteString, overloads.ExtFormatString: - cost += uint64(math.Ceil(float64(actualSize(args[0])) * common.StringTraversalCostFactor)) + case overloads.StartsWithString, overloads.EndsWithString: + cost = safeAdd(cost, uint64(math.Ceil(float64(actualSize(args[1]))*common.StringTraversalCostFactor))) + case overloads.StringToBytes, overloads.BytesToString, overloads.ExtQuoteString, overloads.ExtFormatString: + cost = safeAdd(cost, uint64(math.Ceil(float64(actualSize(args[0]))*common.StringTraversalCostFactor))) case overloads.InList: // If a list is composed entirely of constant values this is O(1), but we don't account for that here. // We just assume all list containment checks are O(n). - cost += actualSize(args[1]) + cost = safeAdd(cost, actualSize(args[1])) // O(min(m, n)) functions case overloads.LessString, overloads.GreaterString, overloads.LessEqualsString, overloads.GreaterEqualsString, overloads.LessBytes, overloads.GreaterBytes, overloads.LessEqualsBytes, overloads.GreaterEqualsBytes, @@ -307,17 +293,14 @@ func (c *CostTracker) costCall(call InterpretableCall, args []ref.Val, result re // of 1. lhsSize := actualSize(args[0]) rhsSize := actualSize(args[1]) - minSize := lhsSize - if rhsSize < minSize { - minSize = rhsSize - } - cost += uint64(math.Ceil(float64(minSize) * common.StringTraversalCostFactor)) + minSize := min(rhsSize, lhsSize) + cost = safeAdd(cost, uint64(math.Ceil(float64(minSize)*common.StringTraversalCostFactor))) // O(m+n) functions case overloads.AddString, overloads.AddBytes: // In the worst case scenario, we would need to reallocate a new backing store and copy both operands over. - cost += uint64(math.Ceil(float64(actualSize(args[0])+actualSize(args[1])) * common.StringTraversalCostFactor)) + cost = safeAdd(cost, uint64(math.Ceil(float64(actualSize(args[0])+actualSize(args[1]))*common.StringTraversalCostFactor))) // O(nm) functions - case overloads.MatchesString: + case overloads.Matches, overloads.MatchesString: // https://swtch.com/~rsc/regexp/regexp1.html applies to RE2 implementation supported by CEL // Add one to string length for purposes of cost calculation to prevent product of string and regex to be 0 // in case where string is empty but regex is still expensive. @@ -328,11 +311,11 @@ func (c *CostTracker) costCall(call InterpretableCall, args []ref.Val, result re // For now, we're making a guess that each expression in a regex is typically at least 4 chars // in length. regexCost := uint64(math.Ceil(float64(actualSize(args[1])) * common.RegexStringLengthCostFactor)) - cost += strCost * regexCost + cost = safeAdd(cost, strCost*regexCost) case overloads.ContainsString: strCost := uint64(math.Ceil(float64(actualSize(args[0])) * common.StringTraversalCostFactor)) substrCost := uint64(math.Ceil(float64(actualSize(args[1])) * common.StringTraversalCostFactor)) - cost += strCost * substrCost + cost = safeAdd(cost, strCost*substrCost) default: // The following operations are assumed to have O(1) complexity. @@ -342,7 +325,7 @@ func (c *CostTracker) costCall(call InterpretableCall, args []ref.Val, result re // - Computing the size of strings, byte sequences, lists and maps. // - Logical operations and all operators on fixed width scalars (comparisons, equality) // - Any functions that don't have a declared cost either here or in provided ActualCostEstimator. - cost++ + cost = safeAdd(cost, 1) } return cost @@ -397,7 +380,7 @@ func (s *refValStack) drop(ids ...int64) { // the stack. // WARNING: It is possible for multiple expressions with the same ID to exist (due to how macros are implemented) so it's // possible that a dropped ID will remain on the stack. They should be removed when IDs on the stack are popped. -func (s *refValStack) dropArgs(args []Interpretable) ([]ref.Val, bool) { +func (s *refValStack) dropArgs(args []InterpretableV2) ([]ref.Val, bool) { result := make([]ref.Val, len(args)) argloop: for nIdx := len(args) - 1; nIdx >= 0; nIdx-- { @@ -413,3 +396,21 @@ argloop: } return result, true } + +func safeAdd(x, y uint64, rest ...uint64) uint64 { + if y > 0 && x > math.MaxUint64-y { + return math.MaxUint64 + } + next := x + y + if len(rest) == 0 { + return next + } + return safeAdd(next, rest[0], rest[1:]...) +} + +func safeMul(x, y uint64) uint64 { + if y != 0 && x > math.MaxUint64/y { + return math.MaxUint64 + } + return x * y +} diff --git a/tests/e2e/vendor/github.com/google/cel-go/parser/helper.go b/tests/e2e/vendor/github.com/google/cel-go/parser/helper.go index c13296dd5c..84bef80d5f 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/parser/helper.go +++ b/tests/e2e/vendor/github.com/google/cel-go/parser/helper.go @@ -45,6 +45,10 @@ func (p *parserHelper) getSourceInfo() *ast.SourceInfo { return p.sourceInfo } +func (p *parserHelper) expressionCount() int64 { + return p.nextID - 1 +} + func (p *parserHelper) newLiteral(ctx any, value ref.Val) ast.Expr { return p.exprFactory.NewLiteral(p.newID(ctx), value) } @@ -159,7 +163,7 @@ func (p *parserHelper) id(ctx any) int64 { offset.Start = p.sourceInfo.ComputeOffset(int32(c.GetLine()), int32(c.GetColumn())) offset.Stop = offset.Start + int32(len(c.GetText())) case common.Location: - offset.Start = p.sourceInfo.ComputeOffset(int32(c.Line()), int32(c.Column())) + offset.Start = p.sourceInfo.ComputeOffsetAbsolute(int32(c.Line()), int32(c.Column())) offset.Stop = offset.Start case ast.OffsetRange: offset = c diff --git a/tests/e2e/vendor/github.com/google/cel-go/parser/options.go b/tests/e2e/vendor/github.com/google/cel-go/parser/options.go index 4eb30f83e0..281021f122 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/parser/options.go +++ b/tests/e2e/vendor/github.com/google/cel-go/parser/options.go @@ -22,6 +22,7 @@ type options struct { errorRecoveryTokenLookaheadLimit int errorRecoveryLimit int expressionSizeCodePointLimit int + maxExpressionNodeCount int macros map[string]Macro populateMacroCalls bool enableOptionalSyntax bool @@ -97,6 +98,18 @@ func ExpressionSizeCodePointLimit(expressionSizeCodePointLimit int) Option { } } +// MaxExpressionNodeCount limits the maximum number of expression nodes that may be emitted by the parser, +// including nodes created by macro expansion. +func MaxExpressionNodeCount(limit int) Option { + return func(opts *options) error { + if limit < -1 { + return fmt.Errorf("max expression node count must be greater than or equal to -1: %d", limit) + } + opts.maxExpressionNodeCount = limit + return nil + } +} + // Macros adds the given macros to the parser. func Macros(macros ...Macro) Option { return func(opts *options) error { diff --git a/tests/e2e/vendor/github.com/google/cel-go/parser/parser.go b/tests/e2e/vendor/github.com/google/cel-go/parser/parser.go index b5ec73ec64..338233543d 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/parser/parser.go +++ b/tests/e2e/vendor/github.com/google/cel-go/parser/parser.go @@ -42,6 +42,7 @@ type Parser struct { func NewParser(opts ...Option) (*Parser, error) { p := &Parser{} p.enableHiddenAccumulatorName = true + p.enableIdentEscapeSyntax = true for _, opt := range opts { if err := opt(&p.options); err != nil { return nil, err @@ -71,6 +72,12 @@ func NewParser(opts ...Option) (*Parser, error) { if p.expressionSizeCodePointLimit == -1 { p.expressionSizeCodePointLimit = int((^uint(0)) >> 1) } + if p.maxExpressionNodeCount == 0 { + p.maxExpressionNodeCount = 100_000 + } + if p.maxExpressionNodeCount == -1 { + p.maxExpressionNodeCount = int((^uint(0)) >> 1) + } // Bool is false by default, so populateMacroCalls will be false by default return p, nil } @@ -101,6 +108,7 @@ func (p *Parser) Parse(source common.Source) (*ast.AST, *common.Errors) { helper: newParserHelper(source, fac), macros: p.macros, maxRecursionDepth: p.maxRecursionDepth, + maxExpressionNodeCount: p.maxExpressionNodeCount, errorReportingLimit: p.errorReportingLimit, errorRecoveryLimit: p.errorRecoveryLimit, errorRecoveryLookaheadTokenLimit: p.errorRecoveryTokenLookaheadLimit, @@ -318,6 +326,7 @@ type parser struct { recursionDepth int errorReports int maxRecursionDepth int + maxExpressionNodeCount int errorReportingLimit int errorRecoveryLimit int errorRecoveryLookaheadTokenLimit int @@ -963,11 +972,21 @@ func (p *parser) expandMacro(exprID int64, function string, target ast.Expr, arg return nil, false } } + if int(p.helper.expressionCount()) > p.maxExpressionNodeCount { + loc := p.helper.getLocation(exprID) + p.helper.deleteID(exprID) + return p.reportError(loc, "expression count exceeds limit of %d while expanding macro '%s'", p.maxExpressionNodeCount, function), true + } eh := exprHelperPool.Get().(*exprHelper) defer exprHelperPool.Put(eh) eh.parserHelper = p.helper eh.id = exprID expr, err := macro.Expander()(eh, target, args) + if int(p.helper.expressionCount()) > p.maxExpressionNodeCount { + loc := p.helper.getLocation(exprID) + p.helper.deleteID(exprID) + return p.reportError(loc, "expression count exceeds limit of %d while expanding macro '%s'", p.maxExpressionNodeCount, function), true + } // An error indicates that the macro was matched, but the arguments were not well-formed. if err != nil { loc := err.Location diff --git a/tests/e2e/vendor/github.com/google/cel-go/parser/unparser.go b/tests/e2e/vendor/github.com/google/cel-go/parser/unparser.go index ffd5b18e47..d503a450e9 100644 --- a/tests/e2e/vendor/github.com/google/cel-go/parser/unparser.go +++ b/tests/e2e/vendor/github.com/google/cel-go/parser/unparser.go @@ -297,7 +297,7 @@ func (un *unparser) visitConstVal(val ref.Val) error { // represent the float using the minimum required digits d := strconv.FormatFloat(float64(val), 'g', -1, 64) un.str.WriteString(d) - if !strings.Contains(d, ".") { + if !strings.ContainsAny(d, ".eE") { un.str.WriteString(".0") } case types.Int: diff --git a/tests/e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/handler.go b/tests/e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/handler.go index 2f0b9e9e0f..4c9083d790 100644 --- a/tests/e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/handler.go +++ b/tests/e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/handler.go @@ -28,7 +28,9 @@ func ForwardResponseStream(ctx context.Context, mux *ServeMux, marshaler Marshal } handleForwardResponseServerMetadata(w, mux, md) - w.Header().Set("Transfer-Encoding", "chunked") + if !mux.disableChunkedEncoding { + w.Header().Set("Transfer-Encoding", "chunked") + } if err := handleForwardResponseOptions(ctx, w, nil, opts); err != nil { HTTPError(ctx, mux, marshaler, w, req, err) return diff --git a/tests/e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/mux.go b/tests/e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/mux.go index 3eb1616717..69edf5eff8 100644 --- a/tests/e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/mux.go +++ b/tests/e2e/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/mux.go @@ -71,8 +71,10 @@ type ServeMux struct { streamErrorHandler StreamErrorHandlerFunc routingErrorHandler RoutingErrorHandlerFunc disablePathLengthFallback bool + disableHTTPMethodOverride bool unescapingMode UnescapingMode writeContentLength bool + disableChunkedEncoding bool } // ServeMuxOption is an option that can be given to a ServeMux on construction. @@ -125,6 +127,16 @@ func WithMiddlewares(middlewares ...Middleware) ServeMuxOption { } } +// WithDisableChunkedEncoding disables the Transfer-Encoding: chunked header +// for streaming responses. This is useful for streaming implementations that use +// Content-Length, which is mutually exclusive with Transfer-Encoding:chunked. +// Note that this option will not automatically add Content-Length headers, so it should be used with caution. +func WithDisableChunkedEncoding() ServeMuxOption { + return func(mux *ServeMux) { + mux.disableChunkedEncoding = true + } +} + // SetQueryParameterParser sets the query parameter parser, used to populate message from query parameters. // Configuring this will mean the generated OpenAPI output is no longer correct, and it should be // done with careful consideration. @@ -260,6 +272,19 @@ func WithDisablePathLengthFallback() ServeMuxOption { } } +// WithDisableHTTPMethodOverride returns a ServeMuxOption that disables the +// X-HTTP-Method-Override header handling. +// +// When this option is used, the mux will no longer allow POST requests with +// the X-HTTP-Method-Override header to override the HTTP method. The path +// length fallback (POST with application/x-www-form-urlencoded falling back +// to a matching GET handler) is not affected by this option. +func WithDisableHTTPMethodOverride() ServeMuxOption { + return func(serveMux *ServeMux) { + serveMux.disableHTTPMethodOverride = true + } +} + // WithWriteContentLength returns a ServeMuxOption to enable writing content length on non-streaming responses func WithWriteContentLength() ServeMuxOption { return func(serveMux *ServeMux) { @@ -394,7 +419,7 @@ func (s *ServeMux) ServeHTTP(w http.ResponseWriter, r *http.Request) { path = r.URL.RawPath } - if override := r.Header.Get("X-HTTP-Method-Override"); override != "" && s.isPathLengthFallback(r) { + if override := r.Header.Get("X-HTTP-Method-Override"); override != "" && !s.disableHTTPMethodOverride && s.isPathLengthFallback(r) { if err := r.ParseForm(); err != nil { _, outboundMarshaler := MarshalerForRequest(s, r) sterr := status.Error(codes.InvalidArgument, err.Error()) @@ -456,6 +481,7 @@ func (s *ServeMux) ServeHTTP(w http.ResponseWriter, r *http.Request) { HTTPStatus: http.StatusBadRequest, Err: mse, }) + return } continue } @@ -498,6 +524,7 @@ func (s *ServeMux) ServeHTTP(w http.ResponseWriter, r *http.Request) { HTTPStatus: http.StatusBadRequest, Err: mse, }) + return } continue } diff --git a/tests/e2e/vendor/github.com/josharian/intern/README.md b/tests/e2e/vendor/github.com/josharian/intern/README.md deleted file mode 100644 index ffc44b219b..0000000000 --- a/tests/e2e/vendor/github.com/josharian/intern/README.md +++ /dev/null @@ -1,5 +0,0 @@ -Docs: https://godoc.org/github.com/josharian/intern - -See also [Go issue 5160](https://golang.org/issue/5160). - -License: MIT diff --git a/tests/e2e/vendor/github.com/josharian/intern/intern.go b/tests/e2e/vendor/github.com/josharian/intern/intern.go deleted file mode 100644 index 7acb1fe90a..0000000000 --- a/tests/e2e/vendor/github.com/josharian/intern/intern.go +++ /dev/null @@ -1,44 +0,0 @@ -// Package intern interns strings. -// Interning is best effort only. -// Interned strings may be removed automatically -// at any time without notification. -// All functions may be called concurrently -// with themselves and each other. -package intern - -import "sync" - -var ( - pool sync.Pool = sync.Pool{ - New: func() interface{} { - return make(map[string]string) - }, - } -) - -// String returns s, interned. -func String(s string) string { - m := pool.Get().(map[string]string) - c, ok := m[s] - if ok { - pool.Put(m) - return c - } - m[s] = s - pool.Put(m) - return s -} - -// Bytes returns b converted to a string, interned. -func Bytes(b []byte) string { - m := pool.Get().(map[string]string) - c, ok := m[string(b)] - if ok { - pool.Put(m) - return c - } - s := string(b) - m[s] = s - pool.Put(m) - return s -} diff --git a/tests/e2e/vendor/github.com/josharian/intern/license.md b/tests/e2e/vendor/github.com/josharian/intern/license.md deleted file mode 100644 index 353d3055f0..0000000000 --- a/tests/e2e/vendor/github.com/josharian/intern/license.md +++ /dev/null @@ -1,21 +0,0 @@ -MIT License - -Copyright (c) 2019 Josh Bleecher Snyder - -Permission is hereby granted, free of charge, to any person obtaining a copy -of this software and associated documentation files (the "Software"), to deal -in the Software without restriction, including without limitation the rights -to use, copy, modify, merge, publish, distribute, sublicense, and/or sell -copies of the Software, and to permit persons to whom the Software is -furnished to do so, subject to the following conditions: - -The above copyright notice and this permission notice shall be included in all -copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR -IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, -FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE -AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER -LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, -OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE -SOFTWARE. diff --git a/tests/e2e/vendor/github.com/liggitt/tabwriter/.travis.yml b/tests/e2e/vendor/github.com/liggitt/tabwriter/.travis.yml new file mode 100644 index 0000000000..2768dc0727 --- /dev/null +++ b/tests/e2e/vendor/github.com/liggitt/tabwriter/.travis.yml @@ -0,0 +1,11 @@ +language: go + +go: + - "1.8" + - "1.9" + - "1.10" + - "1.11" + - "1.12" + - master + +script: go test -v ./... diff --git a/tests/e2e/vendor/github.com/liggitt/tabwriter/LICENSE b/tests/e2e/vendor/github.com/liggitt/tabwriter/LICENSE new file mode 100644 index 0000000000..6a66aea5ea --- /dev/null +++ b/tests/e2e/vendor/github.com/liggitt/tabwriter/LICENSE @@ -0,0 +1,27 @@ +Copyright (c) 2009 The Go Authors. All rights reserved. + +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are +met: + + * Redistributions of source code must retain the above copyright +notice, this list of conditions and the following disclaimer. + * Redistributions in binary form must reproduce the above +copyright notice, this list of conditions and the following disclaimer +in the documentation and/or other materials provided with the +distribution. + * Neither the name of Google Inc. nor the names of its +contributors may be used to endorse or promote products derived from +this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS +"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT +LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR +A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT +OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, +SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT +LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, +DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY +THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT +(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE +OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/tests/e2e/vendor/github.com/liggitt/tabwriter/README.md b/tests/e2e/vendor/github.com/liggitt/tabwriter/README.md new file mode 100644 index 0000000000..e75d35672e --- /dev/null +++ b/tests/e2e/vendor/github.com/liggitt/tabwriter/README.md @@ -0,0 +1,7 @@ +This repo is a drop-in replacement for the golang [text/tabwriter](https://golang.org/pkg/text/tabwriter/) package. + +It is based on that package at [cf2c2ea8](https://github.com/golang/go/tree/cf2c2ea89d09d486bb018b1817c5874388038c3a/src/text/tabwriter) and inherits its license. + +The following additional features are supported: +* `RememberWidths` flag allows remembering maximum widths seen per column even after Flush() is called. +* `RememberedWidths() []int` and `SetRememberedWidths([]int) *Writer` allows obtaining and transferring remembered column width between writers. diff --git a/tests/e2e/vendor/github.com/liggitt/tabwriter/tabwriter.go b/tests/e2e/vendor/github.com/liggitt/tabwriter/tabwriter.go new file mode 100644 index 0000000000..fd3431fb03 --- /dev/null +++ b/tests/e2e/vendor/github.com/liggitt/tabwriter/tabwriter.go @@ -0,0 +1,637 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Package tabwriter implements a write filter (tabwriter.Writer) that +// translates tabbed columns in input into properly aligned text. +// +// It is a drop-in replacement for the golang text/tabwriter package (https://golang.org/pkg/text/tabwriter), +// based on that package at https://github.com/golang/go/tree/cf2c2ea89d09d486bb018b1817c5874388038c3a +// with support for additional features. +// +// The package is using the Elastic Tabstops algorithm described at +// http://nickgravgaard.com/elastictabstops/index.html. +package tabwriter + +import ( + "io" + "unicode/utf8" +) + +// ---------------------------------------------------------------------------- +// Filter implementation + +// A cell represents a segment of text terminated by tabs or line breaks. +// The text itself is stored in a separate buffer; cell only describes the +// segment's size in bytes, its width in runes, and whether it's an htab +// ('\t') terminated cell. +// +type cell struct { + size int // cell size in bytes + width int // cell width in runes + htab bool // true if the cell is terminated by an htab ('\t') +} + +// A Writer is a filter that inserts padding around tab-delimited +// columns in its input to align them in the output. +// +// The Writer treats incoming bytes as UTF-8-encoded text consisting +// of cells terminated by horizontal ('\t') or vertical ('\v') tabs, +// and newline ('\n') or formfeed ('\f') characters; both newline and +// formfeed act as line breaks. +// +// Tab-terminated cells in contiguous lines constitute a column. The +// Writer inserts padding as needed to make all cells in a column have +// the same width, effectively aligning the columns. It assumes that +// all characters have the same width, except for tabs for which a +// tabwidth must be specified. Column cells must be tab-terminated, not +// tab-separated: non-tab terminated trailing text at the end of a line +// forms a cell but that cell is not part of an aligned column. +// For instance, in this example (where | stands for a horizontal tab): +// +// aaaa|bbb|d +// aa |b |dd +// a | +// aa |cccc|eee +// +// the b and c are in distinct columns (the b column is not contiguous +// all the way). The d and e are not in a column at all (there's no +// terminating tab, nor would the column be contiguous). +// +// The Writer assumes that all Unicode code points have the same width; +// this may not be true in some fonts or if the string contains combining +// characters. +// +// If DiscardEmptyColumns is set, empty columns that are terminated +// entirely by vertical (or "soft") tabs are discarded. Columns +// terminated by horizontal (or "hard") tabs are not affected by +// this flag. +// +// If a Writer is configured to filter HTML, HTML tags and entities +// are passed through. The widths of tags and entities are +// assumed to be zero (tags) and one (entities) for formatting purposes. +// +// A segment of text may be escaped by bracketing it with Escape +// characters. The tabwriter passes escaped text segments through +// unchanged. In particular, it does not interpret any tabs or line +// breaks within the segment. If the StripEscape flag is set, the +// Escape characters are stripped from the output; otherwise they +// are passed through as well. For the purpose of formatting, the +// width of the escaped text is always computed excluding the Escape +// characters. +// +// The formfeed character acts like a newline but it also terminates +// all columns in the current line (effectively calling Flush). Tab- +// terminated cells in the next line start new columns. Unless found +// inside an HTML tag or inside an escaped text segment, formfeed +// characters appear as newlines in the output. +// +// The Writer must buffer input internally, because proper spacing +// of one line may depend on the cells in future lines. Clients must +// call Flush when done calling Write. +// +type Writer struct { + // configuration + output io.Writer + minwidth int + tabwidth int + padding int + padbytes [8]byte + flags uint + + // current state + buf []byte // collected text excluding tabs or line breaks + pos int // buffer position up to which cell.width of incomplete cell has been computed + cell cell // current incomplete cell; cell.width is up to buf[pos] excluding ignored sections + endChar byte // terminating char of escaped sequence (Escape for escapes, '>', ';' for HTML tags/entities, or 0) + lines [][]cell // list of lines; each line is a list of cells + widths []int // list of column widths in runes - re-used during formatting + + maxwidths []int // list of max column widths in runes +} + +// addLine adds a new line. +// flushed is a hint indicating whether the underlying writer was just flushed. +// If so, the previous line is not likely to be a good indicator of the new line's cells. +func (b *Writer) addLine(flushed bool) { + // Grow slice instead of appending, + // as that gives us an opportunity + // to re-use an existing []cell. + if n := len(b.lines) + 1; n <= cap(b.lines) { + b.lines = b.lines[:n] + b.lines[n-1] = b.lines[n-1][:0] + } else { + b.lines = append(b.lines, nil) + } + + if !flushed { + // The previous line is probably a good indicator + // of how many cells the current line will have. + // If the current line's capacity is smaller than that, + // abandon it and make a new one. + if n := len(b.lines); n >= 2 { + if prev := len(b.lines[n-2]); prev > cap(b.lines[n-1]) { + b.lines[n-1] = make([]cell, 0, prev) + } + } + } +} + +// Reset the current state. +func (b *Writer) reset() { + b.buf = b.buf[:0] + b.pos = 0 + b.cell = cell{} + b.endChar = 0 + b.lines = b.lines[0:0] + b.widths = b.widths[0:0] + b.addLine(true) +} + +// Internal representation (current state): +// +// - all text written is appended to buf; tabs and line breaks are stripped away +// - at any given time there is a (possibly empty) incomplete cell at the end +// (the cell starts after a tab or line break) +// - cell.size is the number of bytes belonging to the cell so far +// - cell.width is text width in runes of that cell from the start of the cell to +// position pos; html tags and entities are excluded from this width if html +// filtering is enabled +// - the sizes and widths of processed text are kept in the lines list +// which contains a list of cells for each line +// - the widths list is a temporary list with current widths used during +// formatting; it is kept in Writer because it's re-used +// +// |<---------- size ---------->| +// | | +// |<- width ->|<- ignored ->| | +// | | | | +// [---processed---tab------------......] +// ^ ^ ^ +// | | | +// buf start of incomplete cell pos + +// Formatting can be controlled with these flags. +const ( + // Ignore html tags and treat entities (starting with '&' + // and ending in ';') as single characters (width = 1). + FilterHTML uint = 1 << iota + + // Strip Escape characters bracketing escaped text segments + // instead of passing them through unchanged with the text. + StripEscape + + // Force right-alignment of cell content. + // Default is left-alignment. + AlignRight + + // Handle empty columns as if they were not present in + // the input in the first place. + DiscardEmptyColumns + + // Always use tabs for indentation columns (i.e., padding of + // leading empty cells on the left) independent of padchar. + TabIndent + + // Print a vertical bar ('|') between columns (after formatting). + // Discarded columns appear as zero-width columns ("||"). + Debug + + // Remember maximum widths seen per column even after Flush() is called. + RememberWidths +) + +// A Writer must be initialized with a call to Init. The first parameter (output) +// specifies the filter output. The remaining parameters control the formatting: +// +// minwidth minimal cell width including any padding +// tabwidth width of tab characters (equivalent number of spaces) +// padding padding added to a cell before computing its width +// padchar ASCII char used for padding +// if padchar == '\t', the Writer will assume that the +// width of a '\t' in the formatted output is tabwidth, +// and cells are left-aligned independent of align_left +// (for correct-looking results, tabwidth must correspond +// to the tab width in the viewer displaying the result) +// flags formatting control +// +func (b *Writer) Init(output io.Writer, minwidth, tabwidth, padding int, padchar byte, flags uint) *Writer { + if minwidth < 0 || tabwidth < 0 || padding < 0 { + panic("negative minwidth, tabwidth, or padding") + } + b.output = output + b.minwidth = minwidth + b.tabwidth = tabwidth + b.padding = padding + for i := range b.padbytes { + b.padbytes[i] = padchar + } + if padchar == '\t' { + // tab padding enforces left-alignment + flags &^= AlignRight + } + b.flags = flags + + b.reset() + + return b +} + +// debugging support (keep code around) +func (b *Writer) dump() { + pos := 0 + for i, line := range b.lines { + print("(", i, ") ") + for _, c := range line { + print("[", string(b.buf[pos:pos+c.size]), "]") + pos += c.size + } + print("\n") + } + print("\n") +} + +// local error wrapper so we can distinguish errors we want to return +// as errors from genuine panics (which we don't want to return as errors) +type osError struct { + err error +} + +func (b *Writer) write0(buf []byte) { + n, err := b.output.Write(buf) + if n != len(buf) && err == nil { + err = io.ErrShortWrite + } + if err != nil { + panic(osError{err}) + } +} + +func (b *Writer) writeN(src []byte, n int) { + for n > len(src) { + b.write0(src) + n -= len(src) + } + b.write0(src[0:n]) +} + +var ( + newline = []byte{'\n'} + tabs = []byte("\t\t\t\t\t\t\t\t") +) + +func (b *Writer) writePadding(textw, cellw int, useTabs bool) { + if b.padbytes[0] == '\t' || useTabs { + // padding is done with tabs + if b.tabwidth == 0 { + return // tabs have no width - can't do any padding + } + // make cellw the smallest multiple of b.tabwidth + cellw = (cellw + b.tabwidth - 1) / b.tabwidth * b.tabwidth + n := cellw - textw // amount of padding + if n < 0 { + panic("internal error") + } + b.writeN(tabs, (n+b.tabwidth-1)/b.tabwidth) + return + } + + // padding is done with non-tab characters + b.writeN(b.padbytes[0:], cellw-textw) +} + +var vbar = []byte{'|'} + +func (b *Writer) writeLines(pos0 int, line0, line1 int) (pos int) { + pos = pos0 + for i := line0; i < line1; i++ { + line := b.lines[i] + + // if TabIndent is set, use tabs to pad leading empty cells + useTabs := b.flags&TabIndent != 0 + + for j, c := range line { + if j > 0 && b.flags&Debug != 0 { + // indicate column break + b.write0(vbar) + } + + if c.size == 0 { + // empty cell + if j < len(b.widths) { + b.writePadding(c.width, b.widths[j], useTabs) + } + } else { + // non-empty cell + useTabs = false + if b.flags&AlignRight == 0 { // align left + b.write0(b.buf[pos : pos+c.size]) + pos += c.size + if j < len(b.widths) { + b.writePadding(c.width, b.widths[j], false) + } + } else { // align right + if j < len(b.widths) { + b.writePadding(c.width, b.widths[j], false) + } + b.write0(b.buf[pos : pos+c.size]) + pos += c.size + } + } + } + + if i+1 == len(b.lines) { + // last buffered line - we don't have a newline, so just write + // any outstanding buffered data + b.write0(b.buf[pos : pos+b.cell.size]) + pos += b.cell.size + } else { + // not the last line - write newline + b.write0(newline) + } + } + return +} + +// Format the text between line0 and line1 (excluding line1); pos +// is the buffer position corresponding to the beginning of line0. +// Returns the buffer position corresponding to the beginning of +// line1 and an error, if any. +// +func (b *Writer) format(pos0 int, line0, line1 int) (pos int) { + pos = pos0 + column := len(b.widths) + for this := line0; this < line1; this++ { + line := b.lines[this] + + if column >= len(line)-1 { + continue + } + // cell exists in this column => this line + // has more cells than the previous line + // (the last cell per line is ignored because cells are + // tab-terminated; the last cell per line describes the + // text before the newline/formfeed and does not belong + // to a column) + + // print unprinted lines until beginning of block + pos = b.writeLines(pos, line0, this) + line0 = this + + // column block begin + width := b.minwidth // minimal column width + discardable := true // true if all cells in this column are empty and "soft" + for ; this < line1; this++ { + line = b.lines[this] + if column >= len(line)-1 { + break + } + // cell exists in this column + c := line[column] + // update width + if w := c.width + b.padding; w > width { + width = w + } + // update discardable + if c.width > 0 || c.htab { + discardable = false + } + } + // column block end + + // discard empty columns if necessary + if discardable && b.flags&DiscardEmptyColumns != 0 { + width = 0 + } + + if b.flags&RememberWidths != 0 { + if len(b.maxwidths) < len(b.widths) { + b.maxwidths = append(b.maxwidths, b.widths[len(b.maxwidths):]...) + } + + switch { + case len(b.maxwidths) == len(b.widths): + b.maxwidths = append(b.maxwidths, width) + case b.maxwidths[len(b.widths)] > width: + width = b.maxwidths[len(b.widths)] + case b.maxwidths[len(b.widths)] < width: + b.maxwidths[len(b.widths)] = width + } + } + + // format and print all columns to the right of this column + // (we know the widths of this column and all columns to the left) + b.widths = append(b.widths, width) // push width + pos = b.format(pos, line0, this) + b.widths = b.widths[0 : len(b.widths)-1] // pop width + line0 = this + } + + // print unprinted lines until end + return b.writeLines(pos, line0, line1) +} + +// Append text to current cell. +func (b *Writer) append(text []byte) { + b.buf = append(b.buf, text...) + b.cell.size += len(text) +} + +// Update the cell width. +func (b *Writer) updateWidth() { + b.cell.width += utf8.RuneCount(b.buf[b.pos:]) + b.pos = len(b.buf) +} + +// To escape a text segment, bracket it with Escape characters. +// For instance, the tab in this string "Ignore this tab: \xff\t\xff" +// does not terminate a cell and constitutes a single character of +// width one for formatting purposes. +// +// The value 0xff was chosen because it cannot appear in a valid UTF-8 sequence. +// +const Escape = '\xff' + +// Start escaped mode. +func (b *Writer) startEscape(ch byte) { + switch ch { + case Escape: + b.endChar = Escape + case '<': + b.endChar = '>' + case '&': + b.endChar = ';' + } +} + +// Terminate escaped mode. If the escaped text was an HTML tag, its width +// is assumed to be zero for formatting purposes; if it was an HTML entity, +// its width is assumed to be one. In all other cases, the width is the +// unicode width of the text. +// +func (b *Writer) endEscape() { + switch b.endChar { + case Escape: + b.updateWidth() + if b.flags&StripEscape == 0 { + b.cell.width -= 2 // don't count the Escape chars + } + case '>': // tag of zero width + case ';': + b.cell.width++ // entity, count as one rune + } + b.pos = len(b.buf) + b.endChar = 0 +} + +// Terminate the current cell by adding it to the list of cells of the +// current line. Returns the number of cells in that line. +// +func (b *Writer) terminateCell(htab bool) int { + b.cell.htab = htab + line := &b.lines[len(b.lines)-1] + *line = append(*line, b.cell) + b.cell = cell{} + return len(*line) +} + +func handlePanic(err *error, op string) { + if e := recover(); e != nil { + if nerr, ok := e.(osError); ok { + *err = nerr.err + return + } + panic("tabwriter: panic during " + op) + } +} + +// RememberedWidths returns a copy of the remembered per-column maximum widths. +// Requires use of the RememberWidths flag, and is not threadsafe. +func (b *Writer) RememberedWidths() []int { + retval := make([]int, len(b.maxwidths)) + copy(retval, b.maxwidths) + return retval +} + +// SetRememberedWidths sets the remembered per-column maximum widths. +// Requires use of the RememberWidths flag, and is not threadsafe. +func (b *Writer) SetRememberedWidths(widths []int) *Writer { + b.maxwidths = make([]int, len(widths)) + copy(b.maxwidths, widths) + return b +} + +// Flush should be called after the last call to Write to ensure +// that any data buffered in the Writer is written to output. Any +// incomplete escape sequence at the end is considered +// complete for formatting purposes. +func (b *Writer) Flush() error { + return b.flush() +} + +func (b *Writer) flush() (err error) { + defer b.reset() // even in the presence of errors + defer handlePanic(&err, "Flush") + + // add current cell if not empty + if b.cell.size > 0 { + if b.endChar != 0 { + // inside escape - terminate it even if incomplete + b.endEscape() + } + b.terminateCell(false) + } + + // format contents of buffer + b.format(0, 0, len(b.lines)) + return nil +} + +var hbar = []byte("---\n") + +// Write writes buf to the writer b. +// The only errors returned are ones encountered +// while writing to the underlying output stream. +// +func (b *Writer) Write(buf []byte) (n int, err error) { + defer handlePanic(&err, "Write") + + // split text into cells + n = 0 + for i, ch := range buf { + if b.endChar == 0 { + // outside escape + switch ch { + case '\t', '\v', '\n', '\f': + // end of cell + b.append(buf[n:i]) + b.updateWidth() + n = i + 1 // ch consumed + ncells := b.terminateCell(ch == '\t') + if ch == '\n' || ch == '\f' { + // terminate line + b.addLine(ch == '\f') + if ch == '\f' || ncells == 1 { + // A '\f' always forces a flush. Otherwise, if the previous + // line has only one cell which does not have an impact on + // the formatting of the following lines (the last cell per + // line is ignored by format()), thus we can flush the + // Writer contents. + if err = b.Flush(); err != nil { + return + } + if ch == '\f' && b.flags&Debug != 0 { + // indicate section break + b.write0(hbar) + } + } + } + + case Escape: + // start of escaped sequence + b.append(buf[n:i]) + b.updateWidth() + n = i + if b.flags&StripEscape != 0 { + n++ // strip Escape + } + b.startEscape(Escape) + + case '<', '&': + // possibly an html tag/entity + if b.flags&FilterHTML != 0 { + // begin of tag/entity + b.append(buf[n:i]) + b.updateWidth() + n = i + b.startEscape(ch) + } + } + + } else { + // inside escape + if ch == b.endChar { + // end of tag/entity + j := i + 1 + if ch == Escape && b.flags&StripEscape != 0 { + j = i // strip Escape + } + b.append(buf[n:j]) + n = i + 1 // ch consumed + b.endEscape() + } + } + } + + // append leftover text + b.append(buf[n:]) + n = len(buf) + return +} + +// NewWriter allocates and initializes a new tabwriter.Writer. +// The parameters are the same as for the Init function. +// +func NewWriter(output io.Writer, minwidth, tabwidth, padding int, padchar byte, flags uint) *Writer { + return new(Writer).Init(output, minwidth, tabwidth, padding, padchar, flags) +} diff --git a/tests/e2e/vendor/github.com/mailru/easyjson/LICENSE b/tests/e2e/vendor/github.com/mailru/easyjson/LICENSE deleted file mode 100644 index fbff658f70..0000000000 --- a/tests/e2e/vendor/github.com/mailru/easyjson/LICENSE +++ /dev/null @@ -1,7 +0,0 @@ -Copyright (c) 2016 Mail.Ru Group - -Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: - -The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. diff --git a/tests/e2e/vendor/github.com/mailru/easyjson/buffer/pool.go b/tests/e2e/vendor/github.com/mailru/easyjson/buffer/pool.go deleted file mode 100644 index 598a54af9d..0000000000 --- a/tests/e2e/vendor/github.com/mailru/easyjson/buffer/pool.go +++ /dev/null @@ -1,278 +0,0 @@ -// Package buffer implements a buffer for serialization, consisting of a chain of []byte-s to -// reduce copying and to allow reuse of individual chunks. -package buffer - -import ( - "io" - "net" - "sync" -) - -// PoolConfig contains configuration for the allocation and reuse strategy. -type PoolConfig struct { - StartSize int // Minimum chunk size that is allocated. - PooledSize int // Minimum chunk size that is reused, reusing chunks too small will result in overhead. - MaxSize int // Maximum chunk size that will be allocated. -} - -var config = PoolConfig{ - StartSize: 128, - PooledSize: 512, - MaxSize: 32768, -} - -// Reuse pool: chunk size -> pool. -var buffers = map[int]*sync.Pool{} - -func initBuffers() { - for l := config.PooledSize; l <= config.MaxSize; l *= 2 { - buffers[l] = new(sync.Pool) - } -} - -func init() { - initBuffers() -} - -// Init sets up a non-default pooling and allocation strategy. Should be run before serialization is done. -func Init(cfg PoolConfig) { - config = cfg - initBuffers() -} - -// putBuf puts a chunk to reuse pool if it can be reused. -func putBuf(buf []byte) { - size := cap(buf) - if size < config.PooledSize { - return - } - if c := buffers[size]; c != nil { - c.Put(buf[:0]) - } -} - -// getBuf gets a chunk from reuse pool or creates a new one if reuse failed. -func getBuf(size int) []byte { - if size >= config.PooledSize { - if c := buffers[size]; c != nil { - v := c.Get() - if v != nil { - return v.([]byte) - } - } - } - return make([]byte, 0, size) -} - -// Buffer is a buffer optimized for serialization without extra copying. -type Buffer struct { - - // Buf is the current chunk that can be used for serialization. - Buf []byte - - toPool []byte - bufs [][]byte -} - -// EnsureSpace makes sure that the current chunk contains at least s free bytes, -// possibly creating a new chunk. -func (b *Buffer) EnsureSpace(s int) { - if cap(b.Buf)-len(b.Buf) < s { - b.ensureSpaceSlow(s) - } -} - -func (b *Buffer) ensureSpaceSlow(s int) { - l := len(b.Buf) - if l > 0 { - if cap(b.toPool) != cap(b.Buf) { - // Chunk was reallocated, toPool can be pooled. - putBuf(b.toPool) - } - if cap(b.bufs) == 0 { - b.bufs = make([][]byte, 0, 8) - } - b.bufs = append(b.bufs, b.Buf) - l = cap(b.toPool) * 2 - } else { - l = config.StartSize - } - - if l > config.MaxSize { - l = config.MaxSize - } - b.Buf = getBuf(l) - b.toPool = b.Buf -} - -// AppendByte appends a single byte to buffer. -func (b *Buffer) AppendByte(data byte) { - b.EnsureSpace(1) - b.Buf = append(b.Buf, data) -} - -// AppendBytes appends a byte slice to buffer. -func (b *Buffer) AppendBytes(data []byte) { - if len(data) <= cap(b.Buf)-len(b.Buf) { - b.Buf = append(b.Buf, data...) // fast path - } else { - b.appendBytesSlow(data) - } -} - -func (b *Buffer) appendBytesSlow(data []byte) { - for len(data) > 0 { - b.EnsureSpace(1) - - sz := cap(b.Buf) - len(b.Buf) - if sz > len(data) { - sz = len(data) - } - - b.Buf = append(b.Buf, data[:sz]...) - data = data[sz:] - } -} - -// AppendString appends a string to buffer. -func (b *Buffer) AppendString(data string) { - if len(data) <= cap(b.Buf)-len(b.Buf) { - b.Buf = append(b.Buf, data...) // fast path - } else { - b.appendStringSlow(data) - } -} - -func (b *Buffer) appendStringSlow(data string) { - for len(data) > 0 { - b.EnsureSpace(1) - - sz := cap(b.Buf) - len(b.Buf) - if sz > len(data) { - sz = len(data) - } - - b.Buf = append(b.Buf, data[:sz]...) - data = data[sz:] - } -} - -// Size computes the size of a buffer by adding sizes of every chunk. -func (b *Buffer) Size() int { - size := len(b.Buf) - for _, buf := range b.bufs { - size += len(buf) - } - return size -} - -// DumpTo outputs the contents of a buffer to a writer and resets the buffer. -func (b *Buffer) DumpTo(w io.Writer) (written int, err error) { - bufs := net.Buffers(b.bufs) - if len(b.Buf) > 0 { - bufs = append(bufs, b.Buf) - } - n, err := bufs.WriteTo(w) - - for _, buf := range b.bufs { - putBuf(buf) - } - putBuf(b.toPool) - - b.bufs = nil - b.Buf = nil - b.toPool = nil - - return int(n), err -} - -// BuildBytes creates a single byte slice with all the contents of the buffer. Data is -// copied if it does not fit in a single chunk. You can optionally provide one byte -// slice as argument that it will try to reuse. -func (b *Buffer) BuildBytes(reuse ...[]byte) []byte { - if len(b.bufs) == 0 { - ret := b.Buf - b.toPool = nil - b.Buf = nil - return ret - } - - var ret []byte - size := b.Size() - - // If we got a buffer as argument and it is big enough, reuse it. - if len(reuse) == 1 && cap(reuse[0]) >= size { - ret = reuse[0][:0] - } else { - ret = make([]byte, 0, size) - } - for _, buf := range b.bufs { - ret = append(ret, buf...) - putBuf(buf) - } - - ret = append(ret, b.Buf...) - putBuf(b.toPool) - - b.bufs = nil - b.toPool = nil - b.Buf = nil - - return ret -} - -type readCloser struct { - offset int - bufs [][]byte -} - -func (r *readCloser) Read(p []byte) (n int, err error) { - for _, buf := range r.bufs { - // Copy as much as we can. - x := copy(p[n:], buf[r.offset:]) - n += x // Increment how much we filled. - - // Did we empty the whole buffer? - if r.offset+x == len(buf) { - // On to the next buffer. - r.offset = 0 - r.bufs = r.bufs[1:] - - // We can release this buffer. - putBuf(buf) - } else { - r.offset += x - } - - if n == len(p) { - break - } - } - // No buffers left or nothing read? - if len(r.bufs) == 0 { - err = io.EOF - } - return -} - -func (r *readCloser) Close() error { - // Release all remaining buffers. - for _, buf := range r.bufs { - putBuf(buf) - } - // In case Close gets called multiple times. - r.bufs = nil - - return nil -} - -// ReadCloser creates an io.ReadCloser with all the contents of the buffer. -func (b *Buffer) ReadCloser() io.ReadCloser { - ret := &readCloser{0, append(b.bufs, b.Buf)} - - b.bufs = nil - b.toPool = nil - b.Buf = nil - - return ret -} diff --git a/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/bytestostr.go b/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/bytestostr.go deleted file mode 100644 index ff7b27c5b2..0000000000 --- a/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/bytestostr.go +++ /dev/null @@ -1,24 +0,0 @@ -// This file will only be included to the build if neither -// easyjson_nounsafe nor appengine build tag is set. See README notes -// for more details. - -//+build !easyjson_nounsafe -//+build !appengine - -package jlexer - -import ( - "reflect" - "unsafe" -) - -// bytesToStr creates a string pointing at the slice to avoid copying. -// -// Warning: the string returned by the function should be used with care, as the whole input data -// chunk may be either blocked from being freed by GC because of a single string or the buffer.Data -// may be garbage-collected even when the string exists. -func bytesToStr(data []byte) string { - h := (*reflect.SliceHeader)(unsafe.Pointer(&data)) - shdr := reflect.StringHeader{Data: h.Data, Len: h.Len} - return *(*string)(unsafe.Pointer(&shdr)) -} diff --git a/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/bytestostr_nounsafe.go b/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/bytestostr_nounsafe.go deleted file mode 100644 index 864d1be676..0000000000 --- a/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/bytestostr_nounsafe.go +++ /dev/null @@ -1,13 +0,0 @@ -// This file is included to the build if any of the buildtags below -// are defined. Refer to README notes for more details. - -//+build easyjson_nounsafe appengine - -package jlexer - -// bytesToStr creates a string normally from []byte -// -// Note that this method is roughly 1.5x slower than using the 'unsafe' method. -func bytesToStr(data []byte) string { - return string(data) -} diff --git a/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/error.go b/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/error.go deleted file mode 100644 index e90ec40d05..0000000000 --- a/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/error.go +++ /dev/null @@ -1,15 +0,0 @@ -package jlexer - -import "fmt" - -// LexerError implements the error interface and represents all possible errors that can be -// generated during parsing the JSON data. -type LexerError struct { - Reason string - Offset int - Data string -} - -func (l *LexerError) Error() string { - return fmt.Sprintf("parse error: %s near offset %d of '%s'", l.Reason, l.Offset, l.Data) -} diff --git a/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/lexer.go b/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/lexer.go deleted file mode 100644 index b5f5e26132..0000000000 --- a/tests/e2e/vendor/github.com/mailru/easyjson/jlexer/lexer.go +++ /dev/null @@ -1,1244 +0,0 @@ -// Package jlexer contains a JSON lexer implementation. -// -// It is expected that it is mostly used with generated parser code, so the interface is tuned -// for a parser that knows what kind of data is expected. -package jlexer - -import ( - "bytes" - "encoding/base64" - "encoding/json" - "errors" - "fmt" - "io" - "strconv" - "unicode" - "unicode/utf16" - "unicode/utf8" - - "github.com/josharian/intern" -) - -// tokenKind determines type of a token. -type tokenKind byte - -const ( - tokenUndef tokenKind = iota // No token. - tokenDelim // Delimiter: one of '{', '}', '[' or ']'. - tokenString // A string literal, e.g. "abc\u1234" - tokenNumber // Number literal, e.g. 1.5e5 - tokenBool // Boolean literal: true or false. - tokenNull // null keyword. -) - -// token describes a single token: type, position in the input and value. -type token struct { - kind tokenKind // Type of a token. - - boolValue bool // Value if a boolean literal token. - byteValueCloned bool // true if byteValue was allocated and does not refer to original json body - byteValue []byte // Raw value of a token. - delimValue byte -} - -// Lexer is a JSON lexer: it iterates over JSON tokens in a byte slice. -type Lexer struct { - Data []byte // Input data given to the lexer. - - start int // Start of the current token. - pos int // Current unscanned position in the input stream. - token token // Last scanned token, if token.kind != tokenUndef. - - firstElement bool // Whether current element is the first in array or an object. - wantSep byte // A comma or a colon character, which need to occur before a token. - - UseMultipleErrors bool // If we want to use multiple errors. - fatalError error // Fatal error occurred during lexing. It is usually a syntax error. - multipleErrors []*LexerError // Semantic errors occurred during lexing. Marshalling will be continued after finding this errors. -} - -// FetchToken scans the input for the next token. -func (r *Lexer) FetchToken() { - r.token.kind = tokenUndef - r.start = r.pos - - // Check if r.Data has r.pos element - // If it doesn't, it mean corrupted input data - if len(r.Data) < r.pos { - r.errParse("Unexpected end of data") - return - } - // Determine the type of a token by skipping whitespace and reading the - // first character. - for _, c := range r.Data[r.pos:] { - switch c { - case ':', ',': - if r.wantSep == c { - r.pos++ - r.start++ - r.wantSep = 0 - } else { - r.errSyntax() - } - - case ' ', '\t', '\r', '\n': - r.pos++ - r.start++ - - case '"': - if r.wantSep != 0 { - r.errSyntax() - } - - r.token.kind = tokenString - r.fetchString() - return - - case '{', '[': - if r.wantSep != 0 { - r.errSyntax() - } - r.firstElement = true - r.token.kind = tokenDelim - r.token.delimValue = r.Data[r.pos] - r.pos++ - return - - case '}', ']': - if !r.firstElement && (r.wantSep != ',') { - r.errSyntax() - } - r.wantSep = 0 - r.token.kind = tokenDelim - r.token.delimValue = r.Data[r.pos] - r.pos++ - return - - case '0', '1', '2', '3', '4', '5', '6', '7', '8', '9', '-': - if r.wantSep != 0 { - r.errSyntax() - } - r.token.kind = tokenNumber - r.fetchNumber() - return - - case 'n': - if r.wantSep != 0 { - r.errSyntax() - } - - r.token.kind = tokenNull - r.fetchNull() - return - - case 't': - if r.wantSep != 0 { - r.errSyntax() - } - - r.token.kind = tokenBool - r.token.boolValue = true - r.fetchTrue() - return - - case 'f': - if r.wantSep != 0 { - r.errSyntax() - } - - r.token.kind = tokenBool - r.token.boolValue = false - r.fetchFalse() - return - - default: - r.errSyntax() - return - } - } - r.fatalError = io.EOF - return -} - -// isTokenEnd returns true if the char can follow a non-delimiter token -func isTokenEnd(c byte) bool { - return c == ' ' || c == '\t' || c == '\r' || c == '\n' || c == '[' || c == ']' || c == '{' || c == '}' || c == ',' || c == ':' -} - -// fetchNull fetches and checks remaining bytes of null keyword. -func (r *Lexer) fetchNull() { - r.pos += 4 - if r.pos > len(r.Data) || - r.Data[r.pos-3] != 'u' || - r.Data[r.pos-2] != 'l' || - r.Data[r.pos-1] != 'l' || - (r.pos != len(r.Data) && !isTokenEnd(r.Data[r.pos])) { - - r.pos -= 4 - r.errSyntax() - } -} - -// fetchTrue fetches and checks remaining bytes of true keyword. -func (r *Lexer) fetchTrue() { - r.pos += 4 - if r.pos > len(r.Data) || - r.Data[r.pos-3] != 'r' || - r.Data[r.pos-2] != 'u' || - r.Data[r.pos-1] != 'e' || - (r.pos != len(r.Data) && !isTokenEnd(r.Data[r.pos])) { - - r.pos -= 4 - r.errSyntax() - } -} - -// fetchFalse fetches and checks remaining bytes of false keyword. -func (r *Lexer) fetchFalse() { - r.pos += 5 - if r.pos > len(r.Data) || - r.Data[r.pos-4] != 'a' || - r.Data[r.pos-3] != 'l' || - r.Data[r.pos-2] != 's' || - r.Data[r.pos-1] != 'e' || - (r.pos != len(r.Data) && !isTokenEnd(r.Data[r.pos])) { - - r.pos -= 5 - r.errSyntax() - } -} - -// fetchNumber scans a number literal token. -func (r *Lexer) fetchNumber() { - hasE := false - afterE := false - hasDot := false - - r.pos++ - for i, c := range r.Data[r.pos:] { - switch { - case c >= '0' && c <= '9': - afterE = false - case c == '.' && !hasDot: - hasDot = true - case (c == 'e' || c == 'E') && !hasE: - hasE = true - hasDot = true - afterE = true - case (c == '+' || c == '-') && afterE: - afterE = false - default: - r.pos += i - if !isTokenEnd(c) { - r.errSyntax() - } else { - r.token.byteValue = r.Data[r.start:r.pos] - } - return - } - } - - r.pos = len(r.Data) - r.token.byteValue = r.Data[r.start:] -} - -// findStringLen tries to scan into the string literal for ending quote char to determine required size. -// The size will be exact if no escapes are present and may be inexact if there are escaped chars. -func findStringLen(data []byte) (isValid bool, length int) { - for { - idx := bytes.IndexByte(data, '"') - if idx == -1 { - return false, len(data) - } - if idx == 0 || (idx > 0 && data[idx-1] != '\\') { - return true, length + idx - } - - // count \\\\\\\ sequences. even number of slashes means quote is not really escaped - cnt := 1 - for idx-cnt-1 >= 0 && data[idx-cnt-1] == '\\' { - cnt++ - } - if cnt%2 == 0 { - return true, length + idx - } - - length += idx + 1 - data = data[idx+1:] - } -} - -// unescapeStringToken performs unescaping of string token. -// if no escaping is needed, original string is returned, otherwise - a new one allocated -func (r *Lexer) unescapeStringToken() (err error) { - data := r.token.byteValue - var unescapedData []byte - - for { - i := bytes.IndexByte(data, '\\') - if i == -1 { - break - } - - escapedRune, escapedBytes, err := decodeEscape(data[i:]) - if err != nil { - r.errParse(err.Error()) - return err - } - - if unescapedData == nil { - unescapedData = make([]byte, 0, len(r.token.byteValue)) - } - - var d [4]byte - s := utf8.EncodeRune(d[:], escapedRune) - unescapedData = append(unescapedData, data[:i]...) - unescapedData = append(unescapedData, d[:s]...) - - data = data[i+escapedBytes:] - } - - if unescapedData != nil { - r.token.byteValue = append(unescapedData, data...) - r.token.byteValueCloned = true - } - return -} - -// getu4 decodes \uXXXX from the beginning of s, returning the hex value, -// or it returns -1. -func getu4(s []byte) rune { - if len(s) < 6 || s[0] != '\\' || s[1] != 'u' { - return -1 - } - var val rune - for i := 2; i < len(s) && i < 6; i++ { - var v byte - c := s[i] - switch c { - case '0', '1', '2', '3', '4', '5', '6', '7', '8', '9': - v = c - '0' - case 'a', 'b', 'c', 'd', 'e', 'f': - v = c - 'a' + 10 - case 'A', 'B', 'C', 'D', 'E', 'F': - v = c - 'A' + 10 - default: - return -1 - } - - val <<= 4 - val |= rune(v) - } - return val -} - -// decodeEscape processes a single escape sequence and returns number of bytes processed. -func decodeEscape(data []byte) (decoded rune, bytesProcessed int, err error) { - if len(data) < 2 { - return 0, 0, errors.New("incorrect escape symbol \\ at the end of token") - } - - c := data[1] - switch c { - case '"', '/', '\\': - return rune(c), 2, nil - case 'b': - return '\b', 2, nil - case 'f': - return '\f', 2, nil - case 'n': - return '\n', 2, nil - case 'r': - return '\r', 2, nil - case 't': - return '\t', 2, nil - case 'u': - rr := getu4(data) - if rr < 0 { - return 0, 0, errors.New("incorrectly escaped \\uXXXX sequence") - } - - read := 6 - if utf16.IsSurrogate(rr) { - rr1 := getu4(data[read:]) - if dec := utf16.DecodeRune(rr, rr1); dec != unicode.ReplacementChar { - read += 6 - rr = dec - } else { - rr = unicode.ReplacementChar - } - } - return rr, read, nil - } - - return 0, 0, errors.New("incorrectly escaped bytes") -} - -// fetchString scans a string literal token. -func (r *Lexer) fetchString() { - r.pos++ - data := r.Data[r.pos:] - - isValid, length := findStringLen(data) - if !isValid { - r.pos += length - r.errParse("unterminated string literal") - return - } - r.token.byteValue = data[:length] - r.pos += length + 1 // skip closing '"' as well -} - -// scanToken scans the next token if no token is currently available in the lexer. -func (r *Lexer) scanToken() { - if r.token.kind != tokenUndef || r.fatalError != nil { - return - } - - r.FetchToken() -} - -// consume resets the current token to allow scanning the next one. -func (r *Lexer) consume() { - r.token.kind = tokenUndef - r.token.byteValueCloned = false - r.token.delimValue = 0 -} - -// Ok returns true if no error (including io.EOF) was encountered during scanning. -func (r *Lexer) Ok() bool { - return r.fatalError == nil -} - -const maxErrorContextLen = 13 - -func (r *Lexer) errParse(what string) { - if r.fatalError == nil { - var str string - if len(r.Data)-r.pos <= maxErrorContextLen { - str = string(r.Data) - } else { - str = string(r.Data[r.pos:r.pos+maxErrorContextLen-3]) + "..." - } - r.fatalError = &LexerError{ - Reason: what, - Offset: r.pos, - Data: str, - } - } -} - -func (r *Lexer) errSyntax() { - r.errParse("syntax error") -} - -func (r *Lexer) errInvalidToken(expected string) { - if r.fatalError != nil { - return - } - if r.UseMultipleErrors { - r.pos = r.start - r.consume() - r.SkipRecursive() - switch expected { - case "[": - r.token.delimValue = ']' - r.token.kind = tokenDelim - case "{": - r.token.delimValue = '}' - r.token.kind = tokenDelim - } - r.addNonfatalError(&LexerError{ - Reason: fmt.Sprintf("expected %s", expected), - Offset: r.start, - Data: string(r.Data[r.start:r.pos]), - }) - return - } - - var str string - if len(r.token.byteValue) <= maxErrorContextLen { - str = string(r.token.byteValue) - } else { - str = string(r.token.byteValue[:maxErrorContextLen-3]) + "..." - } - r.fatalError = &LexerError{ - Reason: fmt.Sprintf("expected %s", expected), - Offset: r.pos, - Data: str, - } -} - -func (r *Lexer) GetPos() int { - return r.pos -} - -// Delim consumes a token and verifies that it is the given delimiter. -func (r *Lexer) Delim(c byte) { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - - if !r.Ok() || r.token.delimValue != c { - r.consume() // errInvalidToken can change token if UseMultipleErrors is enabled. - r.errInvalidToken(string([]byte{c})) - } else { - r.consume() - } -} - -// IsDelim returns true if there was no scanning error and next token is the given delimiter. -func (r *Lexer) IsDelim(c byte) bool { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - return !r.Ok() || r.token.delimValue == c -} - -// Null verifies that the next token is null and consumes it. -func (r *Lexer) Null() { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - if !r.Ok() || r.token.kind != tokenNull { - r.errInvalidToken("null") - } - r.consume() -} - -// IsNull returns true if the next token is a null keyword. -func (r *Lexer) IsNull() bool { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - return r.Ok() && r.token.kind == tokenNull -} - -// Skip skips a single token. -func (r *Lexer) Skip() { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - r.consume() -} - -// SkipRecursive skips next array or object completely, or just skips a single token if not -// an array/object. -// -// Note: no syntax validation is performed on the skipped data. -func (r *Lexer) SkipRecursive() { - r.scanToken() - var start, end byte - startPos := r.start - - switch r.token.delimValue { - case '{': - start, end = '{', '}' - case '[': - start, end = '[', ']' - default: - r.consume() - return - } - - r.consume() - - level := 1 - inQuotes := false - wasEscape := false - - for i, c := range r.Data[r.pos:] { - switch { - case c == start && !inQuotes: - level++ - case c == end && !inQuotes: - level-- - if level == 0 { - r.pos += i + 1 - if !json.Valid(r.Data[startPos:r.pos]) { - r.pos = len(r.Data) - r.fatalError = &LexerError{ - Reason: "skipped array/object json value is invalid", - Offset: r.pos, - Data: string(r.Data[r.pos:]), - } - } - return - } - case c == '\\' && inQuotes: - wasEscape = !wasEscape - continue - case c == '"' && inQuotes: - inQuotes = wasEscape - case c == '"': - inQuotes = true - } - wasEscape = false - } - r.pos = len(r.Data) - r.fatalError = &LexerError{ - Reason: "EOF reached while skipping array/object or token", - Offset: r.pos, - Data: string(r.Data[r.pos:]), - } -} - -// Raw fetches the next item recursively as a data slice -func (r *Lexer) Raw() []byte { - r.SkipRecursive() - if !r.Ok() { - return nil - } - return r.Data[r.start:r.pos] -} - -// IsStart returns whether the lexer is positioned at the start -// of an input string. -func (r *Lexer) IsStart() bool { - return r.pos == 0 -} - -// Consumed reads all remaining bytes from the input, publishing an error if -// there is anything but whitespace remaining. -func (r *Lexer) Consumed() { - if r.pos > len(r.Data) || !r.Ok() { - return - } - - for _, c := range r.Data[r.pos:] { - if c != ' ' && c != '\t' && c != '\r' && c != '\n' { - r.AddError(&LexerError{ - Reason: "invalid character '" + string(c) + "' after top-level value", - Offset: r.pos, - Data: string(r.Data[r.pos:]), - }) - return - } - - r.pos++ - r.start++ - } -} - -func (r *Lexer) unsafeString(skipUnescape bool) (string, []byte) { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - if !r.Ok() || r.token.kind != tokenString { - r.errInvalidToken("string") - return "", nil - } - if !skipUnescape { - if err := r.unescapeStringToken(); err != nil { - r.errInvalidToken("string") - return "", nil - } - } - - bytes := r.token.byteValue - ret := bytesToStr(r.token.byteValue) - r.consume() - return ret, bytes -} - -// UnsafeString returns the string value if the token is a string literal. -// -// Warning: returned string may point to the input buffer, so the string should not outlive -// the input buffer. Intended pattern of usage is as an argument to a switch statement. -func (r *Lexer) UnsafeString() string { - ret, _ := r.unsafeString(false) - return ret -} - -// UnsafeBytes returns the byte slice if the token is a string literal. -func (r *Lexer) UnsafeBytes() []byte { - _, ret := r.unsafeString(false) - return ret -} - -// UnsafeFieldName returns current member name string token -func (r *Lexer) UnsafeFieldName(skipUnescape bool) string { - ret, _ := r.unsafeString(skipUnescape) - return ret -} - -// String reads a string literal. -func (r *Lexer) String() string { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - if !r.Ok() || r.token.kind != tokenString { - r.errInvalidToken("string") - return "" - } - if err := r.unescapeStringToken(); err != nil { - r.errInvalidToken("string") - return "" - } - var ret string - if r.token.byteValueCloned { - ret = bytesToStr(r.token.byteValue) - } else { - ret = string(r.token.byteValue) - } - r.consume() - return ret -} - -// StringIntern reads a string literal, and performs string interning on it. -func (r *Lexer) StringIntern() string { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - if !r.Ok() || r.token.kind != tokenString { - r.errInvalidToken("string") - return "" - } - if err := r.unescapeStringToken(); err != nil { - r.errInvalidToken("string") - return "" - } - ret := intern.Bytes(r.token.byteValue) - r.consume() - return ret -} - -// Bytes reads a string literal and base64 decodes it into a byte slice. -func (r *Lexer) Bytes() []byte { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - if !r.Ok() || r.token.kind != tokenString { - r.errInvalidToken("string") - return nil - } - if err := r.unescapeStringToken(); err != nil { - r.errInvalidToken("string") - return nil - } - ret := make([]byte, base64.StdEncoding.DecodedLen(len(r.token.byteValue))) - n, err := base64.StdEncoding.Decode(ret, r.token.byteValue) - if err != nil { - r.fatalError = &LexerError{ - Reason: err.Error(), - } - return nil - } - - r.consume() - return ret[:n] -} - -// Bool reads a true or false boolean keyword. -func (r *Lexer) Bool() bool { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - if !r.Ok() || r.token.kind != tokenBool { - r.errInvalidToken("bool") - return false - } - ret := r.token.boolValue - r.consume() - return ret -} - -func (r *Lexer) number() string { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - if !r.Ok() || r.token.kind != tokenNumber { - r.errInvalidToken("number") - return "" - } - ret := bytesToStr(r.token.byteValue) - r.consume() - return ret -} - -func (r *Lexer) Uint8() uint8 { - s := r.number() - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseUint(s, 10, 8) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: s, - }) - } - return uint8(n) -} - -func (r *Lexer) Uint16() uint16 { - s := r.number() - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseUint(s, 10, 16) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: s, - }) - } - return uint16(n) -} - -func (r *Lexer) Uint32() uint32 { - s := r.number() - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseUint(s, 10, 32) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: s, - }) - } - return uint32(n) -} - -func (r *Lexer) Uint64() uint64 { - s := r.number() - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseUint(s, 10, 64) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: s, - }) - } - return n -} - -func (r *Lexer) Uint() uint { - return uint(r.Uint64()) -} - -func (r *Lexer) Int8() int8 { - s := r.number() - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseInt(s, 10, 8) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: s, - }) - } - return int8(n) -} - -func (r *Lexer) Int16() int16 { - s := r.number() - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseInt(s, 10, 16) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: s, - }) - } - return int16(n) -} - -func (r *Lexer) Int32() int32 { - s := r.number() - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseInt(s, 10, 32) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: s, - }) - } - return int32(n) -} - -func (r *Lexer) Int64() int64 { - s := r.number() - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseInt(s, 10, 64) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: s, - }) - } - return n -} - -func (r *Lexer) Int() int { - return int(r.Int64()) -} - -func (r *Lexer) Uint8Str() uint8 { - s, b := r.unsafeString(false) - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseUint(s, 10, 8) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: string(b), - }) - } - return uint8(n) -} - -func (r *Lexer) Uint16Str() uint16 { - s, b := r.unsafeString(false) - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseUint(s, 10, 16) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: string(b), - }) - } - return uint16(n) -} - -func (r *Lexer) Uint32Str() uint32 { - s, b := r.unsafeString(false) - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseUint(s, 10, 32) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: string(b), - }) - } - return uint32(n) -} - -func (r *Lexer) Uint64Str() uint64 { - s, b := r.unsafeString(false) - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseUint(s, 10, 64) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: string(b), - }) - } - return n -} - -func (r *Lexer) UintStr() uint { - return uint(r.Uint64Str()) -} - -func (r *Lexer) UintptrStr() uintptr { - return uintptr(r.Uint64Str()) -} - -func (r *Lexer) Int8Str() int8 { - s, b := r.unsafeString(false) - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseInt(s, 10, 8) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: string(b), - }) - } - return int8(n) -} - -func (r *Lexer) Int16Str() int16 { - s, b := r.unsafeString(false) - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseInt(s, 10, 16) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: string(b), - }) - } - return int16(n) -} - -func (r *Lexer) Int32Str() int32 { - s, b := r.unsafeString(false) - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseInt(s, 10, 32) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: string(b), - }) - } - return int32(n) -} - -func (r *Lexer) Int64Str() int64 { - s, b := r.unsafeString(false) - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseInt(s, 10, 64) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: string(b), - }) - } - return n -} - -func (r *Lexer) IntStr() int { - return int(r.Int64Str()) -} - -func (r *Lexer) Float32() float32 { - s := r.number() - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseFloat(s, 32) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: s, - }) - } - return float32(n) -} - -func (r *Lexer) Float32Str() float32 { - s, b := r.unsafeString(false) - if !r.Ok() { - return 0 - } - n, err := strconv.ParseFloat(s, 32) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: string(b), - }) - } - return float32(n) -} - -func (r *Lexer) Float64() float64 { - s := r.number() - if !r.Ok() { - return 0 - } - - n, err := strconv.ParseFloat(s, 64) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: s, - }) - } - return n -} - -func (r *Lexer) Float64Str() float64 { - s, b := r.unsafeString(false) - if !r.Ok() { - return 0 - } - n, err := strconv.ParseFloat(s, 64) - if err != nil { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Reason: err.Error(), - Data: string(b), - }) - } - return n -} - -func (r *Lexer) Error() error { - return r.fatalError -} - -func (r *Lexer) AddError(e error) { - if r.fatalError == nil { - r.fatalError = e - } -} - -func (r *Lexer) AddNonFatalError(e error) { - r.addNonfatalError(&LexerError{ - Offset: r.start, - Data: string(r.Data[r.start:r.pos]), - Reason: e.Error(), - }) -} - -func (r *Lexer) addNonfatalError(err *LexerError) { - if r.UseMultipleErrors { - // We don't want to add errors with the same offset. - if len(r.multipleErrors) != 0 && r.multipleErrors[len(r.multipleErrors)-1].Offset == err.Offset { - return - } - r.multipleErrors = append(r.multipleErrors, err) - return - } - r.fatalError = err -} - -func (r *Lexer) GetNonFatalErrors() []*LexerError { - return r.multipleErrors -} - -// JsonNumber fetches and json.Number from 'encoding/json' package. -// Both int, float or string, contains them are valid values -func (r *Lexer) JsonNumber() json.Number { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - if !r.Ok() { - r.errInvalidToken("json.Number") - return json.Number("") - } - - switch r.token.kind { - case tokenString: - return json.Number(r.String()) - case tokenNumber: - return json.Number(r.Raw()) - case tokenNull: - r.Null() - return json.Number("") - default: - r.errSyntax() - return json.Number("") - } -} - -// Interface fetches an interface{} analogous to the 'encoding/json' package. -func (r *Lexer) Interface() interface{} { - if r.token.kind == tokenUndef && r.Ok() { - r.FetchToken() - } - - if !r.Ok() { - return nil - } - switch r.token.kind { - case tokenString: - return r.String() - case tokenNumber: - return r.Float64() - case tokenBool: - return r.Bool() - case tokenNull: - r.Null() - return nil - } - - if r.token.delimValue == '{' { - r.consume() - - ret := map[string]interface{}{} - for !r.IsDelim('}') { - key := r.String() - r.WantColon() - ret[key] = r.Interface() - r.WantComma() - } - r.Delim('}') - - if r.Ok() { - return ret - } else { - return nil - } - } else if r.token.delimValue == '[' { - r.consume() - - ret := []interface{}{} - for !r.IsDelim(']') { - ret = append(ret, r.Interface()) - r.WantComma() - } - r.Delim(']') - - if r.Ok() { - return ret - } else { - return nil - } - } - r.errSyntax() - return nil -} - -// WantComma requires a comma to be present before fetching next token. -func (r *Lexer) WantComma() { - r.wantSep = ',' - r.firstElement = false -} - -// WantColon requires a colon to be present before fetching next token. -func (r *Lexer) WantColon() { - r.wantSep = ':' - r.firstElement = false -} diff --git a/tests/e2e/vendor/github.com/mailru/easyjson/jwriter/writer.go b/tests/e2e/vendor/github.com/mailru/easyjson/jwriter/writer.go deleted file mode 100644 index 2c5b20105b..0000000000 --- a/tests/e2e/vendor/github.com/mailru/easyjson/jwriter/writer.go +++ /dev/null @@ -1,405 +0,0 @@ -// Package jwriter contains a JSON writer. -package jwriter - -import ( - "io" - "strconv" - "unicode/utf8" - - "github.com/mailru/easyjson/buffer" -) - -// Flags describe various encoding options. The behavior may be actually implemented in the encoder, but -// Flags field in Writer is used to set and pass them around. -type Flags int - -const ( - NilMapAsEmpty Flags = 1 << iota // Encode nil map as '{}' rather than 'null'. - NilSliceAsEmpty // Encode nil slice as '[]' rather than 'null'. -) - -// Writer is a JSON writer. -type Writer struct { - Flags Flags - - Error error - Buffer buffer.Buffer - NoEscapeHTML bool -} - -// Size returns the size of the data that was written out. -func (w *Writer) Size() int { - return w.Buffer.Size() -} - -// DumpTo outputs the data to given io.Writer, resetting the buffer. -func (w *Writer) DumpTo(out io.Writer) (written int, err error) { - return w.Buffer.DumpTo(out) -} - -// BuildBytes returns writer data as a single byte slice. You can optionally provide one byte slice -// as argument that it will try to reuse. -func (w *Writer) BuildBytes(reuse ...[]byte) ([]byte, error) { - if w.Error != nil { - return nil, w.Error - } - - return w.Buffer.BuildBytes(reuse...), nil -} - -// ReadCloser returns an io.ReadCloser that can be used to read the data. -// ReadCloser also resets the buffer. -func (w *Writer) ReadCloser() (io.ReadCloser, error) { - if w.Error != nil { - return nil, w.Error - } - - return w.Buffer.ReadCloser(), nil -} - -// RawByte appends raw binary data to the buffer. -func (w *Writer) RawByte(c byte) { - w.Buffer.AppendByte(c) -} - -// RawByte appends raw binary data to the buffer. -func (w *Writer) RawString(s string) { - w.Buffer.AppendString(s) -} - -// Raw appends raw binary data to the buffer or sets the error if it is given. Useful for -// calling with results of MarshalJSON-like functions. -func (w *Writer) Raw(data []byte, err error) { - switch { - case w.Error != nil: - return - case err != nil: - w.Error = err - case len(data) > 0: - w.Buffer.AppendBytes(data) - default: - w.RawString("null") - } -} - -// RawText encloses raw binary data in quotes and appends in to the buffer. -// Useful for calling with results of MarshalText-like functions. -func (w *Writer) RawText(data []byte, err error) { - switch { - case w.Error != nil: - return - case err != nil: - w.Error = err - case len(data) > 0: - w.String(string(data)) - default: - w.RawString("null") - } -} - -// Base64Bytes appends data to the buffer after base64 encoding it -func (w *Writer) Base64Bytes(data []byte) { - if data == nil { - w.Buffer.AppendString("null") - return - } - w.Buffer.AppendByte('"') - w.base64(data) - w.Buffer.AppendByte('"') -} - -func (w *Writer) Uint8(n uint8) { - w.Buffer.EnsureSpace(3) - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, uint64(n), 10) -} - -func (w *Writer) Uint16(n uint16) { - w.Buffer.EnsureSpace(5) - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, uint64(n), 10) -} - -func (w *Writer) Uint32(n uint32) { - w.Buffer.EnsureSpace(10) - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, uint64(n), 10) -} - -func (w *Writer) Uint(n uint) { - w.Buffer.EnsureSpace(20) - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, uint64(n), 10) -} - -func (w *Writer) Uint64(n uint64) { - w.Buffer.EnsureSpace(20) - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, n, 10) -} - -func (w *Writer) Int8(n int8) { - w.Buffer.EnsureSpace(4) - w.Buffer.Buf = strconv.AppendInt(w.Buffer.Buf, int64(n), 10) -} - -func (w *Writer) Int16(n int16) { - w.Buffer.EnsureSpace(6) - w.Buffer.Buf = strconv.AppendInt(w.Buffer.Buf, int64(n), 10) -} - -func (w *Writer) Int32(n int32) { - w.Buffer.EnsureSpace(11) - w.Buffer.Buf = strconv.AppendInt(w.Buffer.Buf, int64(n), 10) -} - -func (w *Writer) Int(n int) { - w.Buffer.EnsureSpace(21) - w.Buffer.Buf = strconv.AppendInt(w.Buffer.Buf, int64(n), 10) -} - -func (w *Writer) Int64(n int64) { - w.Buffer.EnsureSpace(21) - w.Buffer.Buf = strconv.AppendInt(w.Buffer.Buf, n, 10) -} - -func (w *Writer) Uint8Str(n uint8) { - w.Buffer.EnsureSpace(3) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, uint64(n), 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) Uint16Str(n uint16) { - w.Buffer.EnsureSpace(5) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, uint64(n), 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) Uint32Str(n uint32) { - w.Buffer.EnsureSpace(10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, uint64(n), 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) UintStr(n uint) { - w.Buffer.EnsureSpace(20) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, uint64(n), 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) Uint64Str(n uint64) { - w.Buffer.EnsureSpace(20) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, n, 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) UintptrStr(n uintptr) { - w.Buffer.EnsureSpace(20) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendUint(w.Buffer.Buf, uint64(n), 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) Int8Str(n int8) { - w.Buffer.EnsureSpace(4) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendInt(w.Buffer.Buf, int64(n), 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) Int16Str(n int16) { - w.Buffer.EnsureSpace(6) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendInt(w.Buffer.Buf, int64(n), 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) Int32Str(n int32) { - w.Buffer.EnsureSpace(11) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendInt(w.Buffer.Buf, int64(n), 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) IntStr(n int) { - w.Buffer.EnsureSpace(21) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendInt(w.Buffer.Buf, int64(n), 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) Int64Str(n int64) { - w.Buffer.EnsureSpace(21) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendInt(w.Buffer.Buf, n, 10) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) Float32(n float32) { - w.Buffer.EnsureSpace(20) - w.Buffer.Buf = strconv.AppendFloat(w.Buffer.Buf, float64(n), 'g', -1, 32) -} - -func (w *Writer) Float32Str(n float32) { - w.Buffer.EnsureSpace(20) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendFloat(w.Buffer.Buf, float64(n), 'g', -1, 32) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) Float64(n float64) { - w.Buffer.EnsureSpace(20) - w.Buffer.Buf = strconv.AppendFloat(w.Buffer.Buf, n, 'g', -1, 64) -} - -func (w *Writer) Float64Str(n float64) { - w.Buffer.EnsureSpace(20) - w.Buffer.Buf = append(w.Buffer.Buf, '"') - w.Buffer.Buf = strconv.AppendFloat(w.Buffer.Buf, float64(n), 'g', -1, 64) - w.Buffer.Buf = append(w.Buffer.Buf, '"') -} - -func (w *Writer) Bool(v bool) { - w.Buffer.EnsureSpace(5) - if v { - w.Buffer.Buf = append(w.Buffer.Buf, "true"...) - } else { - w.Buffer.Buf = append(w.Buffer.Buf, "false"...) - } -} - -const chars = "0123456789abcdef" - -func getTable(falseValues ...int) [128]bool { - table := [128]bool{} - - for i := 0; i < 128; i++ { - table[i] = true - } - - for _, v := range falseValues { - table[v] = false - } - - return table -} - -var ( - htmlEscapeTable = getTable(0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, '"', '&', '<', '>', '\\') - htmlNoEscapeTable = getTable(0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, '"', '\\') -) - -func (w *Writer) String(s string) { - w.Buffer.AppendByte('"') - - // Portions of the string that contain no escapes are appended as - // byte slices. - - p := 0 // last non-escape symbol - - escapeTable := &htmlEscapeTable - if w.NoEscapeHTML { - escapeTable = &htmlNoEscapeTable - } - - for i := 0; i < len(s); { - c := s[i] - - if c < utf8.RuneSelf { - if escapeTable[c] { - // single-width character, no escaping is required - i++ - continue - } - - w.Buffer.AppendString(s[p:i]) - switch c { - case '\t': - w.Buffer.AppendString(`\t`) - case '\r': - w.Buffer.AppendString(`\r`) - case '\n': - w.Buffer.AppendString(`\n`) - case '\\': - w.Buffer.AppendString(`\\`) - case '"': - w.Buffer.AppendString(`\"`) - default: - w.Buffer.AppendString(`\u00`) - w.Buffer.AppendByte(chars[c>>4]) - w.Buffer.AppendByte(chars[c&0xf]) - } - - i++ - p = i - continue - } - - // broken utf - runeValue, runeWidth := utf8.DecodeRuneInString(s[i:]) - if runeValue == utf8.RuneError && runeWidth == 1 { - w.Buffer.AppendString(s[p:i]) - w.Buffer.AppendString(`\ufffd`) - i++ - p = i - continue - } - - // jsonp stuff - tab separator and line separator - if runeValue == '\u2028' || runeValue == '\u2029' { - w.Buffer.AppendString(s[p:i]) - w.Buffer.AppendString(`\u202`) - w.Buffer.AppendByte(chars[runeValue&0xf]) - i += runeWidth - p = i - continue - } - i += runeWidth - } - w.Buffer.AppendString(s[p:]) - w.Buffer.AppendByte('"') -} - -const encode = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/" -const padChar = '=' - -func (w *Writer) base64(in []byte) { - - if len(in) == 0 { - return - } - - w.Buffer.EnsureSpace(((len(in)-1)/3 + 1) * 4) - - si := 0 - n := (len(in) / 3) * 3 - - for si < n { - // Convert 3x 8bit source bytes into 4 bytes - val := uint(in[si+0])<<16 | uint(in[si+1])<<8 | uint(in[si+2]) - - w.Buffer.Buf = append(w.Buffer.Buf, encode[val>>18&0x3F], encode[val>>12&0x3F], encode[val>>6&0x3F], encode[val&0x3F]) - - si += 3 - } - - remain := len(in) - si - if remain == 0 { - return - } - - // Add the remaining small block - val := uint(in[si+0]) << 16 - if remain == 2 { - val |= uint(in[si+1]) << 8 - } - - w.Buffer.Buf = append(w.Buffer.Buf, encode[val>>18&0x3F], encode[val>>12&0x3F]) - - switch remain { - case 2: - w.Buffer.Buf = append(w.Buffer.Buf, encode[val>>6&0x3F], byte(padChar)) - case 1: - w.Buffer.Buf = append(w.Buffer.Buf, byte(padChar), byte(padChar)) - } -} diff --git a/tests/e2e/vendor/github.com/mitchellh/go-wordwrap/LICENSE.md b/tests/e2e/vendor/github.com/mitchellh/go-wordwrap/LICENSE.md new file mode 100644 index 0000000000..2298515904 --- /dev/null +++ b/tests/e2e/vendor/github.com/mitchellh/go-wordwrap/LICENSE.md @@ -0,0 +1,21 @@ +The MIT License (MIT) + +Copyright (c) 2014 Mitchell Hashimoto + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in +all copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN +THE SOFTWARE. diff --git a/tests/e2e/vendor/github.com/mitchellh/go-wordwrap/README.md b/tests/e2e/vendor/github.com/mitchellh/go-wordwrap/README.md new file mode 100644 index 0000000000..60ae311700 --- /dev/null +++ b/tests/e2e/vendor/github.com/mitchellh/go-wordwrap/README.md @@ -0,0 +1,39 @@ +# go-wordwrap + +`go-wordwrap` (Golang package: `wordwrap`) is a package for Go that +automatically wraps words into multiple lines. The primary use case for this +is in formatting CLI output, but of course word wrapping is a generally useful +thing to do. + +## Installation and Usage + +Install using `go get github.com/mitchellh/go-wordwrap`. + +Full documentation is available at +http://godoc.org/github.com/mitchellh/go-wordwrap + +Below is an example of its usage ignoring errors: + +```go +wrapped := wordwrap.WrapString("foo bar baz", 3) +fmt.Println(wrapped) +``` + +Would output: + +``` +foo +bar +baz +``` + +## Word Wrap Algorithm + +This library doesn't use any clever algorithm for word wrapping. The wrapping +is actually very naive: whenever there is whitespace or an explicit linebreak. +The goal of this library is for word wrapping CLI output, so the input is +typically pretty well controlled human language. Because of this, the naive +approach typically works just fine. + +In the future, we'd like to make the algorithm more advanced. We would do +so without breaking the API. diff --git a/tests/e2e/vendor/github.com/mitchellh/go-wordwrap/wordwrap.go b/tests/e2e/vendor/github.com/mitchellh/go-wordwrap/wordwrap.go new file mode 100644 index 0000000000..f7bedda388 --- /dev/null +++ b/tests/e2e/vendor/github.com/mitchellh/go-wordwrap/wordwrap.go @@ -0,0 +1,83 @@ +package wordwrap + +import ( + "bytes" + "unicode" +) + +const nbsp = 0xA0 + +// WrapString wraps the given string within lim width in characters. +// +// Wrapping is currently naive and only happens at white-space. A future +// version of the library will implement smarter wrapping. This means that +// pathological cases can dramatically reach past the limit, such as a very +// long word. +func WrapString(s string, lim uint) string { + // Initialize a buffer with a slightly larger size to account for breaks + init := make([]byte, 0, len(s)) + buf := bytes.NewBuffer(init) + + var current uint + var wordBuf, spaceBuf bytes.Buffer + var wordBufLen, spaceBufLen uint + + for _, char := range s { + if char == '\n' { + if wordBuf.Len() == 0 { + if current+spaceBufLen > lim { + current = 0 + } else { + current += spaceBufLen + spaceBuf.WriteTo(buf) + } + spaceBuf.Reset() + spaceBufLen = 0 + } else { + current += spaceBufLen + wordBufLen + spaceBuf.WriteTo(buf) + spaceBuf.Reset() + spaceBufLen = 0 + wordBuf.WriteTo(buf) + wordBuf.Reset() + wordBufLen = 0 + } + buf.WriteRune(char) + current = 0 + } else if unicode.IsSpace(char) && char != nbsp { + if spaceBuf.Len() == 0 || wordBuf.Len() > 0 { + current += spaceBufLen + wordBufLen + spaceBuf.WriteTo(buf) + spaceBuf.Reset() + spaceBufLen = 0 + wordBuf.WriteTo(buf) + wordBuf.Reset() + wordBufLen = 0 + } + + spaceBuf.WriteRune(char) + spaceBufLen++ + } else { + wordBuf.WriteRune(char) + wordBufLen++ + + if current+wordBufLen+spaceBufLen > lim && wordBufLen < lim { + buf.WriteRune('\n') + current = 0 + spaceBuf.Reset() + spaceBufLen = 0 + } + } + } + + if wordBuf.Len() == 0 { + if current+spaceBufLen <= lim { + spaceBuf.WriteTo(buf) + } + } else { + spaceBuf.WriteTo(buf) + wordBuf.WriteTo(buf) + } + + return buf.String() +} diff --git a/tests/e2e/vendor/github.com/moby/term/.gitignore b/tests/e2e/vendor/github.com/moby/term/.gitignore new file mode 100644 index 0000000000..b0747ff010 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/.gitignore @@ -0,0 +1,8 @@ +# if you want to ignore files created by your editor/tools, consider using a +# global .gitignore or .git/info/exclude see https://help.github.com/articles/ignoring-files +.* +!.github +!.gitignore +profile.out +# support running go modules in vendor mode for local development +vendor/ diff --git a/tests/e2e/vendor/github.com/moby/term/LICENSE b/tests/e2e/vendor/github.com/moby/term/LICENSE new file mode 100644 index 0000000000..6d8d58fb67 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/LICENSE @@ -0,0 +1,191 @@ + + Apache License + Version 2.0, January 2004 + https://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. For the purposes + of this License, Derivative Works shall not include works that remain + separable from, or merely link (or bind by name) to the interfaces of, + the Work and Derivative Works thereof. + + "Contribution" shall mean any work of authorship, including + the original version of the Work and any modifications or additions + to that Work or Derivative Works thereof, that is intentionally + submitted to Licensor for inclusion in the Work by the copyright owner + or by an individual or Legal Entity authorized to submit on behalf of + the copyright owner. For the purposes of this definition, "submitted" + means any form of electronic, verbal, or written communication sent + to the Licensor or its representatives, including but not limited to + communication on electronic mailing lists, source code control systems, + and issue tracking systems that are managed by, or on behalf of, the + Licensor for the purpose of discussing and improving the Work, but + excluding communication that is conspicuously marked or otherwise + designated in writing by the copyright owner as "Not a Contribution." + + "Contributor" shall mean Licensor and any individual or Legal Entity + on behalf of whom a Contribution has been received by Licensor and + subsequently incorporated within the Work. + + 2. Grant of Copyright License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + copyright license to reproduce, prepare Derivative Works of, + publicly display, publicly perform, sublicense, and distribute the + Work and such Derivative Works in Source or Object form. + + 3. Grant of Patent License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + (except as stated in this section) patent license to make, have made, + use, offer to sell, sell, import, and otherwise transfer the Work, + where such license applies only to those patent claims licensable + by such Contributor that are necessarily infringed by their + Contribution(s) alone or by combination of their Contribution(s) + with the Work to which such Contribution(s) was submitted. If You + institute patent litigation against any entity (including a + cross-claim or counterclaim in a lawsuit) alleging that the Work + or a Contribution incorporated within the Work constitutes direct + or contributory patent infringement, then any patent licenses + granted to You under this License for that Work shall terminate + as of the date such litigation is filed. + + 4. Redistribution. You may reproduce and distribute copies of the + Work or Derivative Works thereof in any medium, with or without + modifications, and in Source or Object form, provided that You + meet the following conditions: + + (a) You must give any other recipients of the Work or + Derivative Works a copy of this License; and + + (b) You must cause any modified files to carry prominent notices + stating that You changed the files; and + + (c) You must retain, in the Source form of any Derivative Works + that You distribute, all copyright, patent, trademark, and + attribution notices from the Source form of the Work, + excluding those notices that do not pertain to any part of + the Derivative Works; and + + (d) If the Work includes a "NOTICE" text file as part of its + distribution, then any Derivative Works that You distribute must + include a readable copy of the attribution notices contained + within such NOTICE file, excluding those notices that do not + pertain to any part of the Derivative Works, in at least one + of the following places: within a NOTICE text file distributed + as part of the Derivative Works; within the Source form or + documentation, if provided along with the Derivative Works; or, + within a display generated by the Derivative Works, if and + wherever such third-party notices normally appear. The contents + of the NOTICE file are for informational purposes only and + do not modify the License. You may add Your own attribution + notices within Derivative Works that You distribute, alongside + or as an addendum to the NOTICE text from the Work, provided + that such additional attribution notices cannot be construed + as modifying the License. + + You may add Your own copyright statement to Your modifications and + may provide additional or different license terms and conditions + for use, reproduction, or distribution of Your modifications, or + for any such Derivative Works as a whole, provided Your use, + reproduction, and distribution of the Work otherwise complies with + the conditions stated in this License. + + 5. Submission of Contributions. Unless You explicitly state otherwise, + any Contribution intentionally submitted for inclusion in the Work + by You to the Licensor shall be under the terms and conditions of + this License, without any additional terms or conditions. + Notwithstanding the above, nothing herein shall supersede or modify + the terms of any separate license agreement you may have executed + with Licensor regarding such Contributions. + + 6. Trademarks. This License does not grant permission to use the trade + names, trademarks, service marks, or product names of the Licensor, + except as required for reasonable and customary use in describing the + origin of the Work and reproducing the content of the NOTICE file. + + 7. Disclaimer of Warranty. Unless required by applicable law or + agreed to in writing, Licensor provides the Work (and each + Contributor provides its Contributions) on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or + implied, including, without limitation, any warranties or conditions + of TITLE, NON-INFRINGEMENT, MERCHANTABILITY, or FITNESS FOR A + PARTICULAR PURPOSE. You are solely responsible for determining the + appropriateness of using or redistributing the Work and assume any + risks associated with Your exercise of permissions under this License. + + 8. Limitation of Liability. In no event and under no legal theory, + whether in tort (including negligence), contract, or otherwise, + unless required by applicable law (such as deliberate and grossly + negligent acts) or agreed to in writing, shall any Contributor be + liable to You for damages, including any direct, indirect, special, + incidental, or consequential damages of any character arising as a + result of this License or out of the use or inability to use the + Work (including but not limited to damages for loss of goodwill, + work stoppage, computer failure or malfunction, or any and all + other commercial damages or losses), even if such Contributor + has been advised of the possibility of such damages. + + 9. Accepting Warranty or Additional Liability. While redistributing + the Work or Derivative Works thereof, You may choose to offer, + and charge a fee for, acceptance of support, warranty, indemnity, + or other liability obligations and/or rights consistent with this + License. However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + Copyright 2013-2018 Docker, Inc. + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + https://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/tests/e2e/vendor/github.com/moby/term/README.md b/tests/e2e/vendor/github.com/moby/term/README.md new file mode 100644 index 0000000000..0ce92cc339 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/README.md @@ -0,0 +1,36 @@ +# term - utilities for dealing with terminals + +![Test](https://github.com/moby/term/workflows/Test/badge.svg) [![GoDoc](https://godoc.org/github.com/moby/term?status.svg)](https://godoc.org/github.com/moby/term) [![Go Report Card](https://goreportcard.com/badge/github.com/moby/term)](https://goreportcard.com/report/github.com/moby/term) + +term provides structures and helper functions to work with terminal (state, sizes). + +#### Using term + +```go +package main + +import ( + "log" + "os" + + "github.com/moby/term" +) + +func main() { + fd := os.Stdin.Fd() + if term.IsTerminal(fd) { + ws, err := term.GetWinsize(fd) + if err != nil { + log.Fatalf("term.GetWinsize: %s", err) + } + log.Printf("%d:%d\n", ws.Height, ws.Width) + } +} +``` + +## Contributing + +Want to hack on term? [Docker's contributions guidelines](https://github.com/docker/docker/blob/master/CONTRIBUTING.md) apply. + +## Copyright and license +Code and documentation copyright 2015 Docker, inc. Code released under the Apache 2.0 license. Docs released under Creative commons. diff --git a/tests/e2e/vendor/github.com/moby/term/ascii.go b/tests/e2e/vendor/github.com/moby/term/ascii.go new file mode 100644 index 0000000000..55873c0556 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/ascii.go @@ -0,0 +1,66 @@ +package term + +import ( + "fmt" + "strings" +) + +// ASCII list the possible supported ASCII key sequence +var ASCII = []string{ + "ctrl-@", + "ctrl-a", + "ctrl-b", + "ctrl-c", + "ctrl-d", + "ctrl-e", + "ctrl-f", + "ctrl-g", + "ctrl-h", + "ctrl-i", + "ctrl-j", + "ctrl-k", + "ctrl-l", + "ctrl-m", + "ctrl-n", + "ctrl-o", + "ctrl-p", + "ctrl-q", + "ctrl-r", + "ctrl-s", + "ctrl-t", + "ctrl-u", + "ctrl-v", + "ctrl-w", + "ctrl-x", + "ctrl-y", + "ctrl-z", + "ctrl-[", + "ctrl-\\", + "ctrl-]", + "ctrl-^", + "ctrl-_", +} + +// ToBytes converts a string representing a suite of key-sequence to the corresponding ASCII code. +func ToBytes(keys string) ([]byte, error) { + codes := []byte{} +next: + for _, key := range strings.Split(keys, ",") { + if len(key) != 1 { + for code, ctrl := range ASCII { + if ctrl == key { + codes = append(codes, byte(code)) + continue next + } + } + if key == "DEL" { + codes = append(codes, 127) + } else { + return nil, fmt.Errorf("Unknown character: '%s'", key) + } + } else { + codes = append(codes, key[0]) + } + } + return codes, nil +} diff --git a/tests/e2e/vendor/github.com/moby/term/doc.go b/tests/e2e/vendor/github.com/moby/term/doc.go new file mode 100644 index 0000000000..c9bc032443 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/doc.go @@ -0,0 +1,3 @@ +// Package term provides structures and helper functions to work with +// terminal (state, sizes). +package term diff --git a/tests/e2e/vendor/github.com/moby/term/proxy.go b/tests/e2e/vendor/github.com/moby/term/proxy.go new file mode 100644 index 0000000000..c47756b89a --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/proxy.go @@ -0,0 +1,88 @@ +package term + +import ( + "io" +) + +// EscapeError is special error which returned by a TTY proxy reader's Read() +// method in case its detach escape sequence is read. +type EscapeError struct{} + +func (EscapeError) Error() string { + return "read escape sequence" +} + +// escapeProxy is used only for attaches with a TTY. It is used to proxy +// stdin keypresses from the underlying reader and look for the passed in +// escape key sequence to signal a detach. +type escapeProxy struct { + escapeKeys []byte + escapeKeyPos int + r io.Reader + buf []byte +} + +// NewEscapeProxy returns a new TTY proxy reader which wraps the given reader +// and detects when the specified escape keys are read, in which case the Read +// method will return an error of type EscapeError. +func NewEscapeProxy(r io.Reader, escapeKeys []byte) io.Reader { + return &escapeProxy{ + escapeKeys: escapeKeys, + r: r, + } +} + +func (r *escapeProxy) Read(buf []byte) (n int, err error) { + if len(r.escapeKeys) > 0 && r.escapeKeyPos == len(r.escapeKeys) { + return 0, EscapeError{} + } + + if len(r.buf) > 0 { + n = copy(buf, r.buf) + r.buf = r.buf[n:] + } + + nr, err := r.r.Read(buf[n:]) + n += nr + if len(r.escapeKeys) == 0 { + return n, err + } + + for i := 0; i < n; i++ { + if buf[i] == r.escapeKeys[r.escapeKeyPos] { + r.escapeKeyPos++ + + // Check if the full escape sequence is matched. + if r.escapeKeyPos == len(r.escapeKeys) { + n = i + 1 - r.escapeKeyPos + if n < 0 { + n = 0 + } + return n, EscapeError{} + } + continue + } + + // If we need to prepend a partial escape sequence from the previous + // read, make sure the new buffer size doesn't exceed len(buf). + // Otherwise, preserve any extra data in a buffer for the next read. + if i < r.escapeKeyPos { + preserve := make([]byte, 0, r.escapeKeyPos+n) + preserve = append(preserve, r.escapeKeys[:r.escapeKeyPos]...) + preserve = append(preserve, buf[:n]...) + n = copy(buf, preserve) + i += r.escapeKeyPos + r.buf = append(r.buf, preserve[n:]...) + } + r.escapeKeyPos = 0 + } + + // If we're in the middle of reading an escape sequence, make sure we don't + // let the caller read it. If later on we find that this is not the escape + // sequence, we'll prepend it back to buf. + n -= r.escapeKeyPos + if n < 0 { + n = 0 + } + return n, err +} diff --git a/tests/e2e/vendor/github.com/moby/term/term.go b/tests/e2e/vendor/github.com/moby/term/term.go new file mode 100644 index 0000000000..f9d8988ef8 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/term.go @@ -0,0 +1,85 @@ +package term + +import "io" + +// State holds the platform-specific state / console mode for the terminal. +type State terminalState + +// Winsize represents the size of the terminal window. +type Winsize struct { + Height uint16 + Width uint16 + + // Only used on Unix + x uint16 + y uint16 +} + +// StdStreams returns the standard streams (stdin, stdout, stderr). +// +// On Windows, it attempts to turn on VT handling on all std handles if +// supported, or falls back to terminal emulation. On Unix, this returns +// the standard [os.Stdin], [os.Stdout] and [os.Stderr]. +func StdStreams() (stdIn io.ReadCloser, stdOut, stdErr io.Writer) { + return stdStreams() +} + +// GetFdInfo returns the file descriptor for an os.File and indicates whether the file represents a terminal. +func GetFdInfo(in interface{}) (fd uintptr, isTerminal bool) { + return getFdInfo(in) +} + +// GetWinsize returns the window size based on the specified file descriptor. +func GetWinsize(fd uintptr) (*Winsize, error) { + return getWinsize(fd) +} + +// SetWinsize tries to set the specified window size for the specified file +// descriptor. It is only implemented on Unix, and returns an error on Windows. +func SetWinsize(fd uintptr, ws *Winsize) error { + return setWinsize(fd, ws) +} + +// IsTerminal returns true if the given file descriptor is a terminal. +func IsTerminal(fd uintptr) bool { + return isTerminal(fd) +} + +// RestoreTerminal restores the terminal connected to the given file descriptor +// to a previous state. +func RestoreTerminal(fd uintptr, state *State) error { + return restoreTerminal(fd, state) +} + +// SaveState saves the state of the terminal connected to the given file descriptor. +func SaveState(fd uintptr) (*State, error) { + return saveState(fd) +} + +// DisableEcho applies the specified state to the terminal connected to the file +// descriptor, with echo disabled. +func DisableEcho(fd uintptr, state *State) error { + return disableEcho(fd, state) +} + +// SetRawTerminal puts the terminal connected to the given file descriptor into +// raw mode and returns the previous state. On UNIX, this is the equivalent of +// [MakeRaw], and puts both the input and output into raw mode. On Windows, it +// only puts the input into raw mode. +func SetRawTerminal(fd uintptr) (previousState *State, err error) { + return setRawTerminal(fd) +} + +// SetRawTerminalOutput puts the output of terminal connected to the given file +// descriptor into raw mode. On UNIX, this does nothing and returns nil for the +// state. On Windows, it disables LF -> CRLF translation. +func SetRawTerminalOutput(fd uintptr) (previousState *State, err error) { + return setRawTerminalOutput(fd) +} + +// MakeRaw puts the terminal (Windows Console) connected to the +// given file descriptor into raw mode and returns the previous state of +// the terminal so that it can be restored. +func MakeRaw(fd uintptr) (previousState *State, err error) { + return makeRaw(fd) +} diff --git a/tests/e2e/vendor/github.com/moby/term/term_unix.go b/tests/e2e/vendor/github.com/moby/term/term_unix.go new file mode 100644 index 0000000000..579ce5530a --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/term_unix.go @@ -0,0 +1,98 @@ +//go:build !windows +// +build !windows + +package term + +import ( + "errors" + "io" + "os" + + "golang.org/x/sys/unix" +) + +// ErrInvalidState is returned if the state of the terminal is invalid. +// +// Deprecated: ErrInvalidState is no longer used. +var ErrInvalidState = errors.New("Invalid terminal state") + +// terminalState holds the platform-specific state / console mode for the terminal. +type terminalState struct { + termios unix.Termios +} + +func stdStreams() (stdIn io.ReadCloser, stdOut, stdErr io.Writer) { + return os.Stdin, os.Stdout, os.Stderr +} + +func getFdInfo(in interface{}) (uintptr, bool) { + var inFd uintptr + var isTerminalIn bool + if file, ok := in.(*os.File); ok { + inFd = file.Fd() + isTerminalIn = isTerminal(inFd) + } + return inFd, isTerminalIn +} + +func getWinsize(fd uintptr) (*Winsize, error) { + uws, err := unix.IoctlGetWinsize(int(fd), unix.TIOCGWINSZ) + ws := &Winsize{Height: uws.Row, Width: uws.Col, x: uws.Xpixel, y: uws.Ypixel} + return ws, err +} + +func setWinsize(fd uintptr, ws *Winsize) error { + return unix.IoctlSetWinsize(int(fd), unix.TIOCSWINSZ, &unix.Winsize{ + Row: ws.Height, + Col: ws.Width, + Xpixel: ws.x, + Ypixel: ws.y, + }) +} + +func isTerminal(fd uintptr) bool { + _, err := tcget(fd) + return err == nil +} + +func restoreTerminal(fd uintptr, state *State) error { + if state == nil { + return errors.New("invalid terminal state") + } + return tcset(fd, &state.termios) +} + +func saveState(fd uintptr) (*State, error) { + termios, err := tcget(fd) + if err != nil { + return nil, err + } + return &State{termios: *termios}, nil +} + +func disableEcho(fd uintptr, state *State) error { + newState := state.termios + newState.Lflag &^= unix.ECHO + + return tcset(fd, &newState) +} + +func setRawTerminal(fd uintptr) (*State, error) { + return makeRaw(fd) +} + +func setRawTerminalOutput(uintptr) (*State, error) { + return nil, nil +} + +func tcget(fd uintptr) (*unix.Termios, error) { + p, err := unix.IoctlGetTermios(int(fd), getTermios) + if err != nil { + return nil, err + } + return p, nil +} + +func tcset(fd uintptr, p *unix.Termios) error { + return unix.IoctlSetTermios(int(fd), setTermios, p) +} diff --git a/tests/e2e/vendor/github.com/moby/term/term_windows.go b/tests/e2e/vendor/github.com/moby/term/term_windows.go new file mode 100644 index 0000000000..81ccff0428 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/term_windows.go @@ -0,0 +1,176 @@ +package term + +import ( + "fmt" + "io" + "os" + "os/signal" + + windowsconsole "github.com/moby/term/windows" + "golang.org/x/sys/windows" +) + +// terminalState holds the platform-specific state / console mode for the terminal. +type terminalState struct { + mode uint32 +} + +// vtInputSupported is true if winterm.ENABLE_VIRTUAL_TERMINAL_INPUT is supported by the console +var vtInputSupported bool + +func stdStreams() (stdIn io.ReadCloser, stdOut, stdErr io.Writer) { + // Turn on VT handling on all std handles, if possible. This might + // fail, in which case we will fall back to terminal emulation. + var ( + emulateStdin, emulateStdout, emulateStderr bool + + mode uint32 + ) + + fd := windows.Handle(os.Stdin.Fd()) + if err := windows.GetConsoleMode(fd, &mode); err == nil { + // Validate that winterm.ENABLE_VIRTUAL_TERMINAL_INPUT is supported, but do not set it. + if err = windows.SetConsoleMode(fd, mode|windows.ENABLE_VIRTUAL_TERMINAL_INPUT); err != nil { + emulateStdin = true + } else { + vtInputSupported = true + } + // Unconditionally set the console mode back even on failure because SetConsoleMode + // remembers invalid bits on input handles. + _ = windows.SetConsoleMode(fd, mode) + } + + fd = windows.Handle(os.Stdout.Fd()) + if err := windows.GetConsoleMode(fd, &mode); err == nil { + // Validate winterm.DISABLE_NEWLINE_AUTO_RETURN is supported, but do not set it. + if err = windows.SetConsoleMode(fd, mode|windows.ENABLE_VIRTUAL_TERMINAL_PROCESSING|windows.DISABLE_NEWLINE_AUTO_RETURN); err != nil { + emulateStdout = true + } else { + _ = windows.SetConsoleMode(fd, mode|windows.ENABLE_VIRTUAL_TERMINAL_PROCESSING) + } + } + + fd = windows.Handle(os.Stderr.Fd()) + if err := windows.GetConsoleMode(fd, &mode); err == nil { + // Validate winterm.DISABLE_NEWLINE_AUTO_RETURN is supported, but do not set it. + if err = windows.SetConsoleMode(fd, mode|windows.ENABLE_VIRTUAL_TERMINAL_PROCESSING|windows.DISABLE_NEWLINE_AUTO_RETURN); err != nil { + emulateStderr = true + } else { + _ = windows.SetConsoleMode(fd, mode|windows.ENABLE_VIRTUAL_TERMINAL_PROCESSING) + } + } + + if emulateStdin { + h := uint32(windows.STD_INPUT_HANDLE) + stdIn = windowsconsole.NewAnsiReader(int(h)) + } else { + stdIn = os.Stdin + } + + if emulateStdout { + h := uint32(windows.STD_OUTPUT_HANDLE) + stdOut = windowsconsole.NewAnsiWriter(int(h)) + } else { + stdOut = os.Stdout + } + + if emulateStderr { + h := uint32(windows.STD_ERROR_HANDLE) + stdErr = windowsconsole.NewAnsiWriter(int(h)) + } else { + stdErr = os.Stderr + } + + return stdIn, stdOut, stdErr +} + +func getFdInfo(in interface{}) (uintptr, bool) { + return windowsconsole.GetHandleInfo(in) +} + +func getWinsize(fd uintptr) (*Winsize, error) { + var info windows.ConsoleScreenBufferInfo + if err := windows.GetConsoleScreenBufferInfo(windows.Handle(fd), &info); err != nil { + return nil, err + } + + winsize := &Winsize{ + Width: uint16(info.Window.Right - info.Window.Left + 1), + Height: uint16(info.Window.Bottom - info.Window.Top + 1), + } + + return winsize, nil +} + +func setWinsize(fd uintptr, ws *Winsize) error { + return fmt.Errorf("not implemented on Windows") +} + +func isTerminal(fd uintptr) bool { + var mode uint32 + err := windows.GetConsoleMode(windows.Handle(fd), &mode) + return err == nil +} + +func restoreTerminal(fd uintptr, state *State) error { + return windows.SetConsoleMode(windows.Handle(fd), state.mode) +} + +func saveState(fd uintptr) (*State, error) { + var mode uint32 + + if err := windows.GetConsoleMode(windows.Handle(fd), &mode); err != nil { + return nil, err + } + + return &State{mode: mode}, nil +} + +func disableEcho(fd uintptr, state *State) error { + // See https://msdn.microsoft.com/en-us/library/windows/desktop/ms683462(v=vs.85).aspx + mode := state.mode + mode &^= windows.ENABLE_ECHO_INPUT + mode |= windows.ENABLE_PROCESSED_INPUT | windows.ENABLE_LINE_INPUT + err := windows.SetConsoleMode(windows.Handle(fd), mode) + if err != nil { + return err + } + + // Register an interrupt handler to catch and restore prior state + restoreAtInterrupt(fd, state) + return nil +} + +func setRawTerminal(fd uintptr) (*State, error) { + oldState, err := MakeRaw(fd) + if err != nil { + return nil, err + } + + // Register an interrupt handler to catch and restore prior state + restoreAtInterrupt(fd, oldState) + return oldState, err +} + +func setRawTerminalOutput(fd uintptr) (*State, error) { + oldState, err := saveState(fd) + if err != nil { + return nil, err + } + + // Ignore failures, since winterm.DISABLE_NEWLINE_AUTO_RETURN might not be supported on this + // version of Windows. + _ = windows.SetConsoleMode(windows.Handle(fd), oldState.mode|windows.DISABLE_NEWLINE_AUTO_RETURN) + return oldState, err +} + +func restoreAtInterrupt(fd uintptr, state *State) { + sigchan := make(chan os.Signal, 1) + signal.Notify(sigchan, os.Interrupt) + + go func() { + _ = <-sigchan + _ = RestoreTerminal(fd, state) + os.Exit(0) + }() +} diff --git a/tests/e2e/vendor/github.com/moby/term/termios_bsd.go b/tests/e2e/vendor/github.com/moby/term/termios_bsd.go new file mode 100644 index 0000000000..45f77e03c7 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/termios_bsd.go @@ -0,0 +1,13 @@ +//go:build darwin || freebsd || openbsd || netbsd +// +build darwin freebsd openbsd netbsd + +package term + +import ( + "golang.org/x/sys/unix" +) + +const ( + getTermios = unix.TIOCGETA + setTermios = unix.TIOCSETA +) diff --git a/tests/e2e/vendor/github.com/moby/term/termios_nonbsd.go b/tests/e2e/vendor/github.com/moby/term/termios_nonbsd.go new file mode 100644 index 0000000000..88b7b21563 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/termios_nonbsd.go @@ -0,0 +1,13 @@ +//go:build !darwin && !freebsd && !netbsd && !openbsd && !windows +// +build !darwin,!freebsd,!netbsd,!openbsd,!windows + +package term + +import ( + "golang.org/x/sys/unix" +) + +const ( + getTermios = unix.TCGETS + setTermios = unix.TCSETS +) diff --git a/tests/e2e/vendor/github.com/moby/term/termios_unix.go b/tests/e2e/vendor/github.com/moby/term/termios_unix.go new file mode 100644 index 0000000000..60c823783c --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/termios_unix.go @@ -0,0 +1,35 @@ +//go:build !windows +// +build !windows + +package term + +import ( + "golang.org/x/sys/unix" +) + +// Termios is the Unix API for terminal I/O. +// +// Deprecated: use [unix.Termios]. +type Termios = unix.Termios + +func makeRaw(fd uintptr) (*State, error) { + termios, err := tcget(fd) + if err != nil { + return nil, err + } + + oldState := State{termios: *termios} + + termios.Iflag &^= unix.IGNBRK | unix.BRKINT | unix.PARMRK | unix.ISTRIP | unix.INLCR | unix.IGNCR | unix.ICRNL | unix.IXON + termios.Oflag &^= unix.OPOST + termios.Lflag &^= unix.ECHO | unix.ECHONL | unix.ICANON | unix.ISIG | unix.IEXTEN + termios.Cflag &^= unix.CSIZE | unix.PARENB + termios.Cflag |= unix.CS8 + termios.Cc[unix.VMIN] = 1 + termios.Cc[unix.VTIME] = 0 + + if err := tcset(fd, termios); err != nil { + return nil, err + } + return &oldState, nil +} diff --git a/tests/e2e/vendor/github.com/moby/term/termios_windows.go b/tests/e2e/vendor/github.com/moby/term/termios_windows.go new file mode 100644 index 0000000000..5be4e76011 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/termios_windows.go @@ -0,0 +1,37 @@ +package term + +import "golang.org/x/sys/windows" + +func makeRaw(fd uintptr) (*State, error) { + state, err := SaveState(fd) + if err != nil { + return nil, err + } + + mode := state.mode + + // See + // -- https://msdn.microsoft.com/en-us/library/windows/desktop/ms686033(v=vs.85).aspx + // -- https://msdn.microsoft.com/en-us/library/windows/desktop/ms683462(v=vs.85).aspx + + // Disable these modes + mode &^= windows.ENABLE_ECHO_INPUT + mode &^= windows.ENABLE_LINE_INPUT + mode &^= windows.ENABLE_MOUSE_INPUT + mode &^= windows.ENABLE_WINDOW_INPUT + mode &^= windows.ENABLE_PROCESSED_INPUT + + // Enable these modes + mode |= windows.ENABLE_EXTENDED_FLAGS + mode |= windows.ENABLE_INSERT_MODE + mode |= windows.ENABLE_QUICK_EDIT_MODE + if vtInputSupported { + mode |= windows.ENABLE_VIRTUAL_TERMINAL_INPUT + } + + err = windows.SetConsoleMode(windows.Handle(fd), mode) + if err != nil { + return nil, err + } + return state, nil +} diff --git a/tests/e2e/vendor/github.com/moby/term/windows/ansi_reader.go b/tests/e2e/vendor/github.com/moby/term/windows/ansi_reader.go new file mode 100644 index 0000000000..fb34c547aa --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/windows/ansi_reader.go @@ -0,0 +1,252 @@ +//go:build windows +// +build windows + +package windowsconsole + +import ( + "bytes" + "errors" + "fmt" + "io" + "os" + "strings" + "unsafe" + + ansiterm "github.com/Azure/go-ansiterm" + "github.com/Azure/go-ansiterm/winterm" +) + +const ( + escapeSequence = ansiterm.KEY_ESC_CSI +) + +// ansiReader wraps a standard input file (e.g., os.Stdin) providing ANSI sequence translation. +type ansiReader struct { + file *os.File + fd uintptr + buffer []byte + cbBuffer int + command []byte +} + +// NewAnsiReader returns an io.ReadCloser that provides VT100 terminal emulation on top of a +// Windows console input handle. +func NewAnsiReader(nFile int) io.ReadCloser { + file, fd := winterm.GetStdFile(nFile) + return &ansiReader{ + file: file, + fd: fd, + command: make([]byte, 0, ansiterm.ANSI_MAX_CMD_LENGTH), + buffer: make([]byte, 0), + } +} + +// Close closes the wrapped file. +func (ar *ansiReader) Close() (err error) { + return ar.file.Close() +} + +// Fd returns the file descriptor of the wrapped file. +func (ar *ansiReader) Fd() uintptr { + return ar.fd +} + +// Read reads up to len(p) bytes of translated input events into p. +func (ar *ansiReader) Read(p []byte) (int, error) { + if len(p) == 0 { + return 0, nil + } + + // Previously read bytes exist, read as much as we can and return + if len(ar.buffer) > 0 { + originalLength := len(ar.buffer) + copiedLength := copy(p, ar.buffer) + + if copiedLength == originalLength { + ar.buffer = make([]byte, 0, len(p)) + } else { + ar.buffer = ar.buffer[copiedLength:] + } + + return copiedLength, nil + } + + // Read and translate key events + events, err := readInputEvents(ar, len(p)) + if err != nil { + return 0, err + } else if len(events) == 0 { + return 0, nil + } + + keyBytes := translateKeyEvents(events, []byte(escapeSequence)) + + // Save excess bytes and right-size keyBytes + if len(keyBytes) > len(p) { + ar.buffer = keyBytes[len(p):] + keyBytes = keyBytes[:len(p)] + } else if len(keyBytes) == 0 { + return 0, nil + } + + copiedLength := copy(p, keyBytes) + if copiedLength != len(keyBytes) { + return 0, errors.New("unexpected copy length encountered") + } + + return copiedLength, nil +} + +// readInputEvents polls until at least one event is available. +func readInputEvents(ar *ansiReader, maxBytes int) ([]winterm.INPUT_RECORD, error) { + // Determine the maximum number of records to retrieve + // -- Cast around the type system to obtain the size of a single INPUT_RECORD. + // unsafe.Sizeof requires an expression vs. a type-reference; the casting + // tricks the type system into believing it has such an expression. + recordSize := int(unsafe.Sizeof(*((*winterm.INPUT_RECORD)(unsafe.Pointer(&maxBytes))))) + countRecords := maxBytes / recordSize + if countRecords > ansiterm.MAX_INPUT_EVENTS { + countRecords = ansiterm.MAX_INPUT_EVENTS + } else if countRecords == 0 { + countRecords = 1 + } + + // Wait for and read input events + events := make([]winterm.INPUT_RECORD, countRecords) + nEvents := uint32(0) + eventsExist, err := winterm.WaitForSingleObject(ar.fd, winterm.WAIT_INFINITE) + if err != nil { + return nil, err + } + + if eventsExist { + err = winterm.ReadConsoleInput(ar.fd, events, &nEvents) + if err != nil { + return nil, err + } + } + + // Return a slice restricted to the number of returned records + return events[:nEvents], nil +} + +// KeyEvent Translation Helpers + +var arrowKeyMapPrefix = map[uint16]string{ + winterm.VK_UP: "%s%sA", + winterm.VK_DOWN: "%s%sB", + winterm.VK_RIGHT: "%s%sC", + winterm.VK_LEFT: "%s%sD", +} + +var keyMapPrefix = map[uint16]string{ + winterm.VK_UP: "\x1B[%sA", + winterm.VK_DOWN: "\x1B[%sB", + winterm.VK_RIGHT: "\x1B[%sC", + winterm.VK_LEFT: "\x1B[%sD", + winterm.VK_HOME: "\x1B[1%s~", // showkey shows ^[[1 + winterm.VK_END: "\x1B[4%s~", // showkey shows ^[[4 + winterm.VK_INSERT: "\x1B[2%s~", + winterm.VK_DELETE: "\x1B[3%s~", + winterm.VK_PRIOR: "\x1B[5%s~", + winterm.VK_NEXT: "\x1B[6%s~", + winterm.VK_F1: "", + winterm.VK_F2: "", + winterm.VK_F3: "\x1B[13%s~", + winterm.VK_F4: "\x1B[14%s~", + winterm.VK_F5: "\x1B[15%s~", + winterm.VK_F6: "\x1B[17%s~", + winterm.VK_F7: "\x1B[18%s~", + winterm.VK_F8: "\x1B[19%s~", + winterm.VK_F9: "\x1B[20%s~", + winterm.VK_F10: "\x1B[21%s~", + winterm.VK_F11: "\x1B[23%s~", + winterm.VK_F12: "\x1B[24%s~", +} + +// translateKeyEvents converts the input events into the appropriate ANSI string. +func translateKeyEvents(events []winterm.INPUT_RECORD, escapeSequence []byte) []byte { + var buffer bytes.Buffer + for _, event := range events { + if event.EventType == winterm.KEY_EVENT && event.KeyEvent.KeyDown != 0 { + buffer.WriteString(keyToString(&event.KeyEvent, escapeSequence)) + } + } + + return buffer.Bytes() +} + +// keyToString maps the given input event record to the corresponding string. +func keyToString(keyEvent *winterm.KEY_EVENT_RECORD, escapeSequence []byte) string { + if keyEvent.UnicodeChar == 0 { + return formatVirtualKey(keyEvent.VirtualKeyCode, keyEvent.ControlKeyState, escapeSequence) + } + + _, alt, control := getControlKeys(keyEvent.ControlKeyState) + if control { + // TODO(azlinux): Implement following control sequences + // -D Signals the end of input from the keyboard; also exits current shell. + // -H Deletes the first character to the left of the cursor. Also called the ERASE key. + // -Q Restarts printing after it has been stopped with -s. + // -S Suspends printing on the screen (does not stop the program). + // -U Deletes all characters on the current line. Also called the KILL key. + // -E Quits current command and creates a core + } + + // +Key generates ESC N Key + if !control && alt { + return ansiterm.KEY_ESC_N + strings.ToLower(string(rune(keyEvent.UnicodeChar))) + } + + return string(rune(keyEvent.UnicodeChar)) +} + +// formatVirtualKey converts a virtual key (e.g., up arrow) into the appropriate ANSI string. +func formatVirtualKey(key uint16, controlState uint32, escapeSequence []byte) string { + shift, alt, control := getControlKeys(controlState) + modifier := getControlKeysModifier(shift, alt, control) + + if format, ok := arrowKeyMapPrefix[key]; ok { + return fmt.Sprintf(format, escapeSequence, modifier) + } + + if format, ok := keyMapPrefix[key]; ok { + return fmt.Sprintf(format, modifier) + } + + return "" +} + +// getControlKeys extracts the shift, alt, and ctrl key states. +func getControlKeys(controlState uint32) (shift, alt, control bool) { + shift = 0 != (controlState & winterm.SHIFT_PRESSED) + alt = 0 != (controlState & (winterm.LEFT_ALT_PRESSED | winterm.RIGHT_ALT_PRESSED)) + control = 0 != (controlState & (winterm.LEFT_CTRL_PRESSED | winterm.RIGHT_CTRL_PRESSED)) + return shift, alt, control +} + +// getControlKeysModifier returns the ANSI modifier for the given combination of control keys. +func getControlKeysModifier(shift, alt, control bool) string { + if shift && alt && control { + return ansiterm.KEY_CONTROL_PARAM_8 + } + if alt && control { + return ansiterm.KEY_CONTROL_PARAM_7 + } + if shift && control { + return ansiterm.KEY_CONTROL_PARAM_6 + } + if control { + return ansiterm.KEY_CONTROL_PARAM_5 + } + if shift && alt { + return ansiterm.KEY_CONTROL_PARAM_4 + } + if alt { + return ansiterm.KEY_CONTROL_PARAM_3 + } + if shift { + return ansiterm.KEY_CONTROL_PARAM_2 + } + return "" +} diff --git a/tests/e2e/vendor/github.com/moby/term/windows/ansi_writer.go b/tests/e2e/vendor/github.com/moby/term/windows/ansi_writer.go new file mode 100644 index 0000000000..4243307fd3 --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/windows/ansi_writer.go @@ -0,0 +1,57 @@ +//go:build windows +// +build windows + +package windowsconsole + +import ( + "io" + "os" + + ansiterm "github.com/Azure/go-ansiterm" + "github.com/Azure/go-ansiterm/winterm" +) + +// ansiWriter wraps a standard output file (e.g., os.Stdout) providing ANSI sequence translation. +type ansiWriter struct { + file *os.File + fd uintptr + infoReset *winterm.CONSOLE_SCREEN_BUFFER_INFO + command []byte + escapeSequence []byte + inAnsiSequence bool + parser *ansiterm.AnsiParser +} + +// NewAnsiWriter returns an io.Writer that provides VT100 terminal emulation on top of a +// Windows console output handle. +func NewAnsiWriter(nFile int) io.Writer { + file, fd := winterm.GetStdFile(nFile) + info, err := winterm.GetConsoleScreenBufferInfo(fd) + if err != nil { + return nil + } + + parser := ansiterm.CreateParser("Ground", winterm.CreateWinEventHandler(fd, file)) + + return &ansiWriter{ + file: file, + fd: fd, + infoReset: info, + command: make([]byte, 0, ansiterm.ANSI_MAX_CMD_LENGTH), + escapeSequence: []byte(ansiterm.KEY_ESC_CSI), + parser: parser, + } +} + +func (aw *ansiWriter) Fd() uintptr { + return aw.fd +} + +// Write writes len(p) bytes from p to the underlying data stream. +func (aw *ansiWriter) Write(p []byte) (total int, err error) { + if len(p) == 0 { + return 0, nil + } + + return aw.parser.Parse(p) +} diff --git a/tests/e2e/vendor/github.com/moby/term/windows/console.go b/tests/e2e/vendor/github.com/moby/term/windows/console.go new file mode 100644 index 0000000000..21e57bd52f --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/windows/console.go @@ -0,0 +1,43 @@ +//go:build windows +// +build windows + +package windowsconsole + +import ( + "os" + + "golang.org/x/sys/windows" +) + +// GetHandleInfo returns file descriptor and bool indicating whether the file is a console. +func GetHandleInfo(in interface{}) (uintptr, bool) { + switch t := in.(type) { + case *ansiReader: + return t.Fd(), true + case *ansiWriter: + return t.Fd(), true + } + + var inFd uintptr + var isTerminal bool + + if file, ok := in.(*os.File); ok { + inFd = file.Fd() + isTerminal = isConsole(inFd) + } + return inFd, isTerminal +} + +// IsConsole returns true if the given file descriptor is a Windows Console. +// The code assumes that GetConsoleMode will return an error for file descriptors that are not a console. +// +// Deprecated: use [windows.GetConsoleMode] or [golang.org/x/term.IsTerminal]. +func IsConsole(fd uintptr) bool { + return isConsole(fd) +} + +func isConsole(fd uintptr) bool { + var mode uint32 + err := windows.GetConsoleMode(windows.Handle(fd), &mode) + return err == nil +} diff --git a/tests/e2e/vendor/github.com/moby/term/windows/doc.go b/tests/e2e/vendor/github.com/moby/term/windows/doc.go new file mode 100644 index 0000000000..54265fffaf --- /dev/null +++ b/tests/e2e/vendor/github.com/moby/term/windows/doc.go @@ -0,0 +1,5 @@ +// These files implement ANSI-aware input and output streams for use by the Docker Windows client. +// When asked for the set of standard streams (e.g., stdin, stdout, stderr), the code will create +// and return pseudo-streams that convert ANSI sequences to / from Windows Console API calls. + +package windowsconsole diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/.travis.yml b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/.travis.yml new file mode 100644 index 0000000000..b06a36a466 --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/.travis.yml @@ -0,0 +1,6 @@ +language: go +go: + - 1.14.x + - master +script: + - go test -v ./... diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/LICENSE b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/LICENSE new file mode 100644 index 0000000000..91b84e9277 --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/LICENSE @@ -0,0 +1,21 @@ +The MIT License (MIT) + +Copyright (c) [2015] [go-gitignore] + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in all +copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE +SOFTWARE. diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/README.md b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/README.md new file mode 100644 index 0000000000..51a480747b --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/README.md @@ -0,0 +1,95 @@ +# go-gitignore [![Build Status](https://travis-ci.org/monochromegane/go-gitignore.svg)](https://travis-ci.org/monochromegane/go-gitignore) + +A fast gitignore matching library for Go. + +This library use simple tree index for matching, so keep fast if gitignore file has many pattern. + +## Usage + +```go +gitignore, _ := gitignore.NewGitIgnore("/path/to/gitignore") + +path := "/path/to/file" +isDir := false +gitignore.Match(path, isDir) +``` + +### Specify base directory + +go-gitignore treat `path` as a base directory. +If you want to specify other base (e.g. current directory and Global gitignore), you can like the following. + +```go +gitignore, _ := gitignore.NewGitIgnore("/home/you/.gitignore", ".") +``` + +### From io.Reader + +go-gitignore can initialize from io.Reader. + +```go +gitignore, _ := gitignore.NewGitIgnoreFromReader(base, reader) +``` + +## Simple tree index + +go-gitignore parse gitignore file, and generate a simple tree index for matching like the following. + +``` +. +├── accept +│   ├── absolute +│   │   └── depth +│   │   ├── initial +│   │   └── other +│   └── relative +│   └── depth +│   ├── initial +│   └── other +└── ignore + ├── absolute + │   └── depth + │   ├── initial + │   └── other + └── relative + └── depth + ├── initial + └── other +``` + +## Features + +- Support absolute path (/path/to/ignore) +- Support relative path (path/to/ignore) +- Support accept pattern (!path/to/accept) +- Support directory pattern (path/to/directory/) +- Support glob pattern (path/to/\*.txt) + +*note: glob pattern* + +go-gitignore use [filepath.Match](https://golang.org/pkg/path/filepath/#Match) for matching meta char pattern, so not support recursive pattern (path/`**`/file). + +## Installation + +```sh +$ go get github.com/monochromegane/go-gitignore +``` + +## Contribution + +1. Fork it +2. Create a feature branch +3. Commit your changes +4. Rebase your local changes against the master branch +5. Run test suite with the `go test ./...` command and confirm that it passes +6. Run `gofmt -s` +7. Create new Pull Request + +## License + +[MIT](https://github.com/monochromegane/go-gitignore/blob/master/LICENSE) + +## Author + +[monochromegane](https://github.com/monochromegane) + diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/depth_holder.go b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/depth_holder.go new file mode 100644 index 0000000000..9805b325d4 --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/depth_holder.go @@ -0,0 +1,79 @@ +package gitignore + +import "strings" + +const ( + asc = iota + desc +) + +type depthPatternHolder struct { + patterns depthPatterns + order int +} + +func newDepthPatternHolder(order int) depthPatternHolder { + return depthPatternHolder{ + patterns: depthPatterns{m: map[int]initialPatternHolder{}}, + order: order, + } +} + +func (h *depthPatternHolder) add(pattern string) { + count := strings.Count(strings.Trim(pattern, "/"), "/") + h.patterns.set(count+1, pattern) +} + +func (h depthPatternHolder) match(path string, isDir bool) bool { + if h.patterns.size() == 0 { + return false + } + + for depth := 1; ; depth++ { + var part string + var isLast, isDirCurrent bool + if h.order == asc { + part, isLast = cutN(path, depth) + if isLast { + isDirCurrent = isDir + } else { + isDirCurrent = false + } + } else { + part, isLast = cutLastN(path, depth) + isDirCurrent = isDir + } + if patterns, ok := h.patterns.get(depth); ok { + if patterns.match(part, isDirCurrent) { + return true + } + } + if isLast { + break + } + } + return false +} + +type depthPatterns struct { + m map[int]initialPatternHolder +} + +func (p *depthPatterns) set(depth int, pattern string) { + if ps, ok := p.m[depth]; ok { + ps.add(pattern) + } else { + holder := newInitialPatternHolder() + holder.add(pattern) + p.m[depth] = holder + } +} + +func (p depthPatterns) get(depth int) (initialPatternHolder, bool) { + patterns, ok := p.m[depth] + return patterns, ok +} + +func (p depthPatterns) size() int { + return len(p.m) +} diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/full_scan_patterns.go b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/full_scan_patterns.go new file mode 100644 index 0000000000..8c04ef3a77 --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/full_scan_patterns.go @@ -0,0 +1,31 @@ +package gitignore + +import "strings" + +// Only benchmark use +type fullScanPatterns struct { + absolute patterns + relative patterns +} + +func newFullScanPatterns() *fullScanPatterns { + return &fullScanPatterns{ + absolute: patterns{}, + relative: patterns{}, + } +} + +func (ps *fullScanPatterns) add(pattern string) { + if strings.HasPrefix(pattern, "/") { + ps.absolute.add(newPattern(pattern)) + } else { + ps.relative.add(newPattern(pattern)) + } +} + +func (ps fullScanPatterns) match(path string, isDir bool) bool { + if ps.absolute.match(path, isDir) { + return true + } + return ps.relative.match(path, isDir) +} diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/gitignore.go b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/gitignore.go new file mode 100644 index 0000000000..9c719a6cab --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/gitignore.go @@ -0,0 +1,80 @@ +package gitignore + +import ( + "bufio" + "io" + "os" + "path/filepath" + "strings" +) + +type IgnoreMatcher interface { + Match(path string, isDir bool) bool +} + +type DummyIgnoreMatcher bool + +func (d DummyIgnoreMatcher) Match(path string, isDir bool) bool { + return bool(d) +} + +type gitIgnore struct { + ignorePatterns scanStrategy + acceptPatterns scanStrategy + path string +} + +func NewGitIgnore(gitignore string, base ...string) (IgnoreMatcher, error) { + var path string + if len(base) > 0 { + path = base[0] + } else { + path = filepath.Dir(gitignore) + } + + file, err := os.Open(gitignore) + if err != nil { + return nil, err + } + defer file.Close() + + return NewGitIgnoreFromReader(path, file), nil +} + +func NewGitIgnoreFromReader(path string, r io.Reader) IgnoreMatcher { + g := gitIgnore{ + ignorePatterns: newIndexScanPatterns(), + acceptPatterns: newIndexScanPatterns(), + path: path, + } + scanner := bufio.NewScanner(r) + for scanner.Scan() { + line := strings.Trim(scanner.Text(), " ") + if len(line) == 0 || strings.HasPrefix(line, "#") { + continue + } + if strings.HasPrefix(line, `\#`) { + line = strings.TrimPrefix(line, `\`) + } + + if strings.HasPrefix(line, "!") { + g.acceptPatterns.add(strings.TrimPrefix(line, "!")) + } else { + g.ignorePatterns.add(line) + } + } + return g +} + +func (g gitIgnore) Match(path string, isDir bool) bool { + relativePath, err := filepath.Rel(g.path, path) + if err != nil { + return false + } + relativePath = filepath.ToSlash(relativePath) + + if g.acceptPatterns.match(relativePath, isDir) { + return false + } + return g.ignorePatterns.match(relativePath, isDir) +} diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/index_scan_patterns.go b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/index_scan_patterns.go new file mode 100644 index 0000000000..882280e953 --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/index_scan_patterns.go @@ -0,0 +1,35 @@ +package gitignore + +import "strings" + +type indexScanPatterns struct { + absolute depthPatternHolder + relative depthPatternHolder +} + +func newIndexScanPatterns() *indexScanPatterns { + return &indexScanPatterns{ + absolute: newDepthPatternHolder(asc), + relative: newDepthPatternHolder(desc), + } +} + +func (ps *indexScanPatterns) add(pattern string) { + if strings.HasPrefix(pattern, "/") { + ps.absolute.add(pattern) + } else { + ps.relative.add(pattern) + } +} + +func (ps indexScanPatterns) match(path string, isDir bool) bool { + if ps.absolute.match(path, isDir) { + return true + } + return ps.relative.match(path, isDir) +} + +type scanStrategy interface { + add(pattern string) + match(path string, isDir bool) bool +} diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/initial_holder.go b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/initial_holder.go new file mode 100644 index 0000000000..86f0bfee2b --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/initial_holder.go @@ -0,0 +1,62 @@ +package gitignore + +import "strings" + +const initials = "0123456789abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ." + +type initialPatternHolder struct { + patterns initialPatterns + otherPatterns *patterns +} + +func newInitialPatternHolder() initialPatternHolder { + return initialPatternHolder{ + patterns: initialPatterns{m: map[byte]*patterns{}}, + otherPatterns: &patterns{}, + } +} + +func (h *initialPatternHolder) add(pattern string) { + trimedPattern := strings.TrimPrefix(pattern, "/") + if strings.IndexAny(trimedPattern[0:1], initials) != -1 { + h.patterns.set(trimedPattern[0], newPatternForEqualizedPath(pattern)) + } else { + h.otherPatterns.add(newPatternForEqualizedPath(pattern)) + } +} + +func (h initialPatternHolder) match(path string, isDir bool) bool { + if h.patterns.size() == 0 && h.otherPatterns.size() == 0 { + return false + } + if patterns, ok := h.patterns.get(path[0]); ok { + if patterns.match(path, isDir) { + return true + } + } + return h.otherPatterns.match(path, isDir) +} + +type initialPatterns struct { + m map[byte]*patterns +} + +func (p *initialPatterns) set(initial byte, pattern pattern) { + if ps, ok := p.m[initial]; ok { + ps.add(pattern) + } else { + patterns := &patterns{} + patterns.add(pattern) + p.m[initial] = patterns + + } +} + +func (p initialPatterns) get(initial byte) (*patterns, bool) { + patterns, ok := p.m[initial] + return patterns, ok +} + +func (p initialPatterns) size() int { + return len(p.m) +} diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/match.go b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/match.go new file mode 100644 index 0000000000..4140a9bdc5 --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/match.go @@ -0,0 +1,24 @@ +package gitignore + +import "path/filepath" + +type pathMatcher interface { + match(path string) bool +} + +type simpleMatcher struct { + path string +} + +func (m simpleMatcher) match(path string) bool { + return m.path == path +} + +type filepathMatcher struct { + path string +} + +func (m filepathMatcher) match(path string) bool { + match, _ := filepath.Match(m.path, path) + return match +} diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/pattern.go b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/pattern.go new file mode 100644 index 0000000000..93adbf7636 --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/pattern.go @@ -0,0 +1,69 @@ +package gitignore + +import ( + "path/filepath" + "strings" +) + +var Separator = string(filepath.Separator) + +type pattern struct { + hasRootPrefix bool + hasDirSuffix bool + pathDepth int + matcher pathMatcher + onlyEqualizedPath bool +} + +func newPattern(path string) pattern { + hasRootPrefix := path[0] == '/' + hasDirSuffix := path[len(path)-1] == '/' + + var pathDepth int + if !hasRootPrefix { + pathDepth = strings.Count(path, "/") + } + + var matcher pathMatcher + matchingPath := strings.Trim(path, "/") + if hasMeta(path) { + matcher = filepathMatcher{path: matchingPath} + } else { + matcher = simpleMatcher{path: matchingPath} + } + + return pattern{ + hasRootPrefix: hasRootPrefix, + hasDirSuffix: hasDirSuffix, + pathDepth: pathDepth, + matcher: matcher, + } +} + +func newPatternForEqualizedPath(path string) pattern { + pattern := newPattern(path) + pattern.onlyEqualizedPath = true + return pattern +} + +func (p pattern) match(path string, isDir bool) bool { + + if p.hasDirSuffix && !isDir { + return false + } + + var targetPath string + if p.hasRootPrefix || p.onlyEqualizedPath { + // absolute pattern or only equalized path mode + targetPath = path + } else { + // relative pattern + targetPath = p.equalizeDepth(path) + } + return p.matcher.match(targetPath) +} + +func (p pattern) equalizeDepth(path string) string { + equalizedPath, _ := cutLastN(path, p.pathDepth+1) + return equalizedPath +} diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/patterns.go b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/patterns.go new file mode 100644 index 0000000000..6770fb4655 --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/patterns.go @@ -0,0 +1,22 @@ +package gitignore + +type patterns struct { + patterns []pattern +} + +func (ps *patterns) add(pattern pattern) { + ps.patterns = append(ps.patterns, pattern) +} + +func (ps *patterns) size() int { + return len(ps.patterns) +} + +func (ps patterns) match(path string, isDir bool) bool { + for _, p := range ps.patterns { + if match := p.match(path, isDir); match { + return true + } + } + return false +} diff --git a/tests/e2e/vendor/github.com/monochromegane/go-gitignore/util.go b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/util.go new file mode 100644 index 0000000000..b5ab9bbfd2 --- /dev/null +++ b/tests/e2e/vendor/github.com/monochromegane/go-gitignore/util.go @@ -0,0 +1,45 @@ +package gitignore + +import ( + "os" + "strings" +) + +func cutN(path string, n int) (string, bool) { + isLast := true + + var i, count int + for i < len(path)-1 { + if os.IsPathSeparator(path[i]) { + count++ + if count >= n { + isLast = false + break + } + } + i++ + } + return path[:i+1], isLast +} + +func cutLastN(path string, n int) (string, bool) { + isLast := true + i := len(path) - 1 + + var count int + for i >= 0 { + if os.IsPathSeparator(path[i]) { + count++ + if count >= n { + isLast = false + break + } + } + i-- + } + return path[i+1:], isLast +} + +func hasMeta(path string) bool { + return strings.IndexAny(path, "*?[") >= 0 +} diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/.gitignore b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/.gitignore index 6faaaf3155..c9f0546204 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/.gitignore +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/.gitignore @@ -1,6 +1,7 @@ .DS_Store TODO tmp/**/* +integration/tmp_*/ *.coverprofile .vscode .idea/ diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/CHANGELOG.md b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/CHANGELOG.md index 70050f35d1..10e608564c 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/CHANGELOG.md +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/CHANGELOG.md @@ -1,3 +1,48 @@ +## 2.32.0 + +`-fd` generate RSpec-style documentation output. Thank @woodie ! +--sleep-on-failure pauses a failed spec before teardown. Thanks @qinqon ! + +## 2.31.0 + +Add a bunch of Claude Skills via the marketplace: + +``` +/plugin marketplace add onsi/ginkgo +/plugin install ginkgo@ginkgo +``` + +## 2.30.0 + +### Features +Ginkgo now allows `extentions/global.Reset` to support running multiple suites from within a single process. This may take some massaging on your part (see [1672](https://github.com/onsi/ginkgo/issues/1672)) but can dramatically speed up codebases with O(hundreds) of test suites. + +Thanks @lawrencejones ! + +### Fixes + +- Fix nested --github-output group for progress report nested inside timeline [4f62d7a] + +## 2.29.0 + +`GinkgoHelperGo` makes it easier to write test helpers that need to run in goroutines. Specifically, it makes managing the failure state and capturing failure panics correctly straightforward. + +`ginkgo outline` now includes entries defined in `DescribeTableSubtree` + +## 2.28.3 + +### Maintenance +Bump all dependencies + +## 2.28.2 + +- Add ArtifactDir() to support Go 1.26 testing.TB interface [f3a36b6] +- Implement shell completion [94151c8] +- Add asan CLI option mirroring msan implementation [4d21dbb] +- Bump uri from 1.0.3 to 1.0.4 in /docs (#1630) [c102161] +- fix aspect ratio [9619647] +- update logos [5779304] + ## 2.28.1 Update all dependencies. This auto-updated the required version of Go to 1.24, consistent with the fact that Go 1.23 has been out of support for almost six months. diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/README.md b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/README.md index b4c3ce0ad2..ad5e45f673 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/README.md +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/README.md @@ -106,6 +106,19 @@ And that's just Ginkgo! [Gomega](https://onsi.github.io/gomega/) brings a rich, Happy Testing! +## Using Ginkgo with Claude Code + +Ginkgo ships a set of [Claude Code](https://claude.com/claude-code) skills as a plugin, with this repo doubling as the marketplace, so an agent writing specs in *your* project has Ginkgo's idioms, decorators, and gotchas on hand. From inside Claude Code: + +``` +/plugin marketplace add onsi/ginkgo +/plugin install ginkgo@ginkgo +``` + +(or non-interactively: `claude plugin marketplace add onsi/ginkgo` then `claude plugin install ginkgo@ginkgo`) + +This installs a family of `ginkgo:*` skills that activate automatically while you write and run specs. Start with `ginkgo:overview`; see the [plugin README](plugins/ginkgo/README.md) for the full list. + ## License Ginkgo is MIT-Licensed @@ -120,6 +133,6 @@ Sponsors commit to a [sponsorship](https://github.com/sponsors/onsi) for a year.

Browser testing via - +

diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/core_dsl.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/core_dsl.go index 1c5a39a1f5..fb5761c1f1 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/core_dsl.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/core_dsl.go @@ -39,7 +39,6 @@ var flagSet types.GinkgoFlagSet var deprecationTracker = types.NewDeprecationTracker() var suiteConfig = types.NewDefaultSuiteConfig() var reporterConfig = types.NewDefaultReporterConfig() -var suiteDidRun = false var outputInterceptor internal.OutputInterceptor var client parallel_support.Client @@ -259,10 +258,10 @@ for more on how specs are parallelized in Ginkgo. You can also pass suite-level Label() decorators to RunSpecs. The passed-in labels will apply to all specs in the suite. */ func RunSpecs(t GinkgoTestingT, description string, args ...any) bool { - if suiteDidRun { + if global.SuiteDidRun { exitIfErr(types.GinkgoErrors.RerunningSuite()) } - suiteDidRun = true + global.SuiteDidRun = true err := global.PushClone() if err != nil { exitIfErr(err) diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/command/program.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/command/program.go index c3f6d3a11e..53114904ca 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/command/program.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/command/program.go @@ -1,9 +1,13 @@ package command import ( + "bufio" "fmt" "io" + "maps" "os" + "path/filepath" + "slices" "strings" "github.com/onsi/ginkgo/v2/formatter" @@ -158,6 +162,166 @@ func (p Program) handleHelpRequestsAndExit(writer io.Writer, args []string) { } } +type completionOptions = struct { + Complete bool + Install bool +} + +func (p *Program) BuildCompletionCommand() Command { + opts := completionOptions{} + flags, err := types.NewGinkgoFlagSet( + types.GinkgoFlags{ + {Name: "complete", KeyPath: "Complete", Usage: "Generate completion for arguments after --"}, + {Name: "install", KeyPath: "Install", Usage: "Install shell completion script into $XDG_DATA_HOME, ~/.local/share"}, + }, + &opts, + types.GinkgoFlagSections{}, + ) + if err != nil { + panic(err) + } + return Command{ + Name: "completion", + Usage: "ginkgo completion [-- ]", + Flags: flags, + ShortDoc: "Generate shell completion", + Documentation: `To use install completion script for your shell (bash, fish, zsh). +Or load completion code by: {{bold}}source <(ginkgo completion ){{/}}.`, + Command: func(args []string, completeArgs []string) { + p.handleCompletionAndExit(args, completeArgs, opts) + }, + } +} + +func (p Program) generateShellCompletionScript(shell string) (scriptPath string, script string) { + switch shell { + case "bash": + scriptPath = fmt.Sprintf("bash-completion/completions/%s", p.Name) + script = fmt.Sprintf(`__%s_complete_bash() { + mapfile -t COMPREPLY < <("${COMP_WORDS[0]}" completion --complete bash -- "${COMP_WORDS[@]:1:COMP_CWORD}") +} +complete -o bashdefault -o default -F __%[1]s_complete_bash %[1]s +`, p.Name) + + case "fish": + scriptPath = fmt.Sprintf("fish/vendor_completions.d/%s.fish", p.Name) + script = fmt.Sprintf(`function __fish_%[1]s_complete + set -l args (commandline -opc) (commandline -ct) + set -e args[1] + %[1]s completion --complete fish -- $args +end +complete -c %[1]s -a "(__fish_%[1]s_complete)" +`, p.Name) + + case "zsh": + scriptPath = fmt.Sprintf("zsh/site-functions/_%s", p.Name) + script = fmt.Sprintf(`#compdef %[1]s +_%[1]s() { + local -a completions + completions=(${(f)"$("${words[1]}" completion --complete zsh -- "${words[@]:1:$((CURRENT-1))}")"}) + if (( ${#completions[@]} )); then + _describe 'completions' completions + else + _default + fi +} +compdef _%[1]s %[1]s +if [ "$funcstack[1]" = "_%[1]s" ]; then + _%[1]s +fi +`, p.Name) + + case "": + AbortWithUsage("Shell is not specified") + default: + AbortWith("Shell %q is not supported yet. Choose: bash, fish, zsh", shell) + } + + return scriptPath, script +} + +func (p Program) handleCompletionAndExit(args, completeArgs []string, opts completionOptions) { + writer := p.OutWriter + if writer == nil { + writer = os.Stdout + } + buffer := bufio.NewWriter(writer) + defer buffer.Flush() + + var shell string + if len(args) > 0 { + shell = args[0] + } + + if !opts.Complete { + scriptPath, script := p.generateShellCompletionScript(shell) + if opts.Install { + dataHomeDir := os.Getenv("XDG_DATA_HOME") + if dataHomeDir == "" { + userHomeDir, err := os.UserHomeDir() + AbortIfError("Failed to find home", err) + dataHomeDir = filepath.Join(userHomeDir, ".local/share") + } + scriptPath = filepath.Join(dataHomeDir, scriptPath) + fmt.Fprintf(buffer, "Installing completion script: %v\n", scriptPath) + err := os.WriteFile(scriptPath, []byte(script), 0644) + AbortIfError("Failed to install completion script", err) + } else { + buffer.Write([]byte(script)) + } + Abort(AbortDetails{}) + } + + var lastArg string + var result map[string]string + if len(completeArgs) > 0 { + lastArg = completeArgs[len(completeArgs)-1] + } + + if delim := slices.Index(completeArgs, "--"); delim >= 0 && delim != len(completeArgs)-1 { + // No completion for pass-through arguments after "--" + } else if len(lastArg) > 0 && lastArg[0] == '-' { + // Complete flags + cmd := &p.DefaultCommand + for i := range p.Commands { + if p.Commands[i].Name == completeArgs[0] { + cmd = &p.Commands[i] + break + } + } + result = cmd.Flags.Completion(lastArg) + } else if len(completeArgs) <= 1 { + // Complete commands + result = make(map[string]string, len(p.Commands)+1) + for _, cmd := range append(p.Commands, p.DefaultCommand) { + if strings.HasPrefix(cmd.Name, lastArg) { + result[cmd.Name] = cmd.Usage + } + } + } + + width := 0 + for suggest := range result { + width = max(width, len(suggest)) + } + + for _, suggest := range slices.Sorted(maps.Keys(result)) { + usage := result[suggest] + switch { + case shell == "bash" && usage != "" && len(result) > 1: + fmt.Fprintf(buffer, "%*s (%s)\n", -width-2, suggest, usage) + case shell == "fish": + fmt.Fprintf(buffer, "%s\t%s\n", suggest, usage) + case shell == "zsh": + fmt.Fprintf(buffer, "%s:%s\n", suggest, usage) + default: + fmt.Fprintln(buffer, suggest) + } + } + + Abort(AbortDetails{}) +} + func (p Program) EmitUsage(writer io.Writer) { fmt.Fprintln(writer, formatter.F(p.Heading)) fmt.Fprintln(writer, formatter.F("{{gray}}%s{{/}}", strings.Repeat("-", len(p.Heading)))) diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/main.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/main.go index 419589b48c..596c210cf1 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/main.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/main.go @@ -41,6 +41,7 @@ func main() { {Name: "nodot", Deprecation: types.Deprecations.Nodot()}, }, } + program.Commands = append(program.Commands, program.BuildCompletionCommand()) program.RunAndExit(os.Args) } diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/outline/ginkgo.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/outline/ginkgo.go index 5d8d00bb17..c380bbf216 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/outline/ginkgo.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/outline/ginkgo.go @@ -163,17 +163,17 @@ func ginkgoNodeFromCallExpr(fset *token.FileSet, ce *ast.CallExpr, ginkgoPackage n.Text = textOrAltFromCallExpr(ce, undefinedTextAlt) n.Labels = labelFromCallExpr(ce) return &n, ginkgoPackageName != nil && *ginkgoPackageName == packageName - case "Context", "Describe", "When", "DescribeTable": + case "Context", "Describe", "When", "DescribeTable", "DescribeTableSubtree": n.Text = textOrAltFromCallExpr(ce, undefinedTextAlt) n.Labels = labelFromCallExpr(ce) n.Pending = pendingFromCallExpr(ce) return &n, ginkgoPackageName != nil && *ginkgoPackageName == packageName - case "FContext", "FDescribe", "FWhen", "FDescribeTable": + case "FContext", "FDescribe", "FWhen", "FDescribeTable", "FDescribeTableSubtree": n.Focused = true n.Text = textOrAltFromCallExpr(ce, undefinedTextAlt) n.Labels = labelFromCallExpr(ce) return &n, ginkgoPackageName != nil && *ginkgoPackageName == packageName - case "PContext", "PDescribe", "PWhen", "XContext", "XDescribe", "XWhen", "PDescribeTable", "XDescribeTable": + case "PContext", "PDescribe", "PWhen", "XContext", "XDescribe", "XWhen", "PDescribeTable", "XDescribeTable", "PDescribeTableSubtree", "XDescribeTableSubtree": n.Pending = true n.Text = textOrAltFromCallExpr(ce, undefinedTextAlt) n.Labels = labelFromCallExpr(ce) diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/outline/outline.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/outline/outline.go index e99d557d1f..206043f1d5 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/outline/outline.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/outline/outline.go @@ -54,6 +54,7 @@ func FromASTFile(fset *token.FileSet, src *ast.File) (*outline, error) { // Node is not a Ginkgo spec or container, so it was not pushed onto the stack, continue return true } + expandSubtree(lastVisitedGinkgoNode) stack = stack[0 : len(stack)-1] return true }) @@ -128,3 +129,29 @@ func (o *outline) StringIndent(width int) string { return b.String() } + +// expandSubtree restructures a DescribeTableSubtree node so that each Entry +// child gets a copy of the subtree's spec nodes as its children. This mirrors +// the runtime behavior where each Entry generates a container with the specs +// defined in the DescribeTableSubtree body. +func expandSubtree(gn *ginkgoNode) { + if !strings.Contains(gn.Name, "DescribeTableSubtree") { + return + } + subNodes, entries := splitSubtreeSubnodes(gn.Nodes) + gn.Nodes = entries + for _, entry := range entries { + entry.Nodes = subNodes + } +} + +// splitSubtreeSubnodes splits the child nodes of a DescribeTableSubtree into +// spec/container nodes (defined in the body) and Entry nodes. +func splitSubtreeSubnodes(nodes []*ginkgoNode) ([]*ginkgoNode, []*ginkgoNode) { + for i, node := range nodes { + if strings.Contains(node.Name, "Entry") { + return nodes[:i], nodes[i:] + } + } + return nodes, nil +} diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/run/run_command.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/run/run_command.go index c5091e6de8..7b6c2cc226 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/run/run_command.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/run/run_command.go @@ -39,6 +39,10 @@ func BuildRunCommand() command.Command { cliConfig, goFlagsConfig, errors = types.VetAndInitializeCLIAndGoConfig(cliConfig, goFlagsConfig) command.AbortIfErrors("Ginkgo detected configuration issues:", errors) + if types.ReconcileFdOutputConfiguration(reporterConfig, &suiteConfig, &cliConfig) { + fmt.Println("--fd is incompatible with parallel runs (-p/-procs) and -randomize-all; ignoring those flags and running specs in series, in declaration order.") + } + runner := &SpecRunner{ cliConfig: cliConfig, goFlagsConfig: goFlagsConfig, diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/watch/watch_command.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/watch/watch_command.go index fe1ca30519..c60d7115fa 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/watch/watch_command.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo/watch/watch_command.go @@ -37,6 +37,10 @@ func BuildWatchCommand() command.Command { cliConfig, goFlagsConfig, errors = types.VetAndInitializeCLIAndGoConfig(cliConfig, goFlagsConfig) command.AbortIfErrors("Ginkgo detected configuration issues:", errors) + if types.ReconcileFdOutputConfiguration(reporterConfig, &suiteConfig, &cliConfig) { + fmt.Println("--fd is incompatible with parallel runs (-p/-procs) and -randomize-all; ignoring those flags and running specs in series, in declaration order.") + } + watcher := &SpecWatcher{ cliConfig: cliConfig, goFlagsConfig: goFlagsConfig, diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo_t_dsl.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo_t_dsl.go index 40d1e1ab5c..db3e248470 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo_t_dsl.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/ginkgo_t_dsl.go @@ -72,6 +72,7 @@ type GinkgoTInterface interface { TempDir() string Attr(key, value string) Output() io.Writer + ArtifactDir() string } /* @@ -196,3 +197,6 @@ func (g *GinkgoTBWrapper) Attr(key, value string) { func (g *GinkgoTBWrapper) Output() io.Writer { return g.GinkgoT.Output() } +func (g *GinkgoTBWrapper) ArtifactDir() string { + return g.GinkgoT.ArtifactDir() +} diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/helpergo_dsl.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/helpergo_dsl.go new file mode 100644 index 0000000000..9d04cc845f --- /dev/null +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/helpergo_dsl.go @@ -0,0 +1,143 @@ +package ginkgo + +import ( + "github.com/onsi/ginkgo/v2/internal/global" + ginkgotypes "github.com/onsi/ginkgo/v2/types" +) + +// GinkgoHelperGo synchronously calls the specified “helper†function in a new +// go routine and with a “defer GinkgoRecover()†already in place, passing the +// function a “helper Failâ€. GinkgoHelperGo is typically called from custom test +// helpers that in turn need to synchronously execute caller-supplied custom +// test code in a new Go routine while waiting for this new Go routine to +// terminate (either successfully or failing). +// +// GinkgoHelperGo hides the non-trivial details of correctly unblocking the +// caller's waiting go routine as well as reporting the correct call sites, +// depending on whether the test helper failed, or the caller-supplied function +// had its assertions failing or panicked. +// +// Let's take the following example of a test helper named “EnsureSprockets†+// that runs a set of caller-supplied assertions synchronously on a new Go +// routine and waits for the outcome before returning to the caller of the test +// helper. This is just using Ginkgo: +// +// func EnsureSprockets(sprockets int, assertions func()) { +// GinkgoHelper() +// GinkgoHelperGo(func(helperFail func(string, ...int)) { +// if sprockets == 0 { +// helperFail("sprockets must not be zero") +// } +// assertions() +// }) +// } +// +// And now for an example that additionally uses Gomega assertions. +// +// func EnsureSprockets(sprockets int, assertions func()) { +// GinkgoHelper() +// GinkgoHelperGo(func(helperFail func(string, ...int)) { +// g := gomega.NewGomega(helperFail) +// g.Expect(sprockets).Not(BeZero()) +// assertions() +// }) +// } +// +// The called helper function should make any custom helper-related assertions +// using the passed “helper Failâ€. Gomega users will want to create a new Gomega +// wired into this helper Fail. It is expected for the helper function at some +// point to call into a user-supplied function that might contain its own +// assertions. In the example above, that would be the function passed as +// assertions. +// +// Any failing assertion using the helper Gomega in the helper function will be +// reported as a fail at the call site of GinkgoHelperGo. Preferably, only +// custom test helpers call GinkgoHelperGo and thus mark themselves as +// [GinkgoHelper] also: in this case, the fail will be shown at the call site of +// the custom test helper. +// +// Any other failing assertions inside the caller-supplied custom test code and +// thus inside the helper function will instead be reported at the location of +// the failed assertion. +// +// If the caller-supplied custom test code panics, GinkgoHelperGo will fail at +// its call site, or at the call site of the custom test helper if it uses +// GinkgoHelper, reporting the usual stack trace for the panic, as a plain +// GinkgoRecover would also do. +// +// Important: the Gomega passed to the called function must only be used in +// assertions belonging to the test helper, but not any user test code called +// from the test helper. Thus, do not pass the Gomega passed to the helper +// function further on to any user test code functions. +func GinkgoHelperGo(fn func(fail func(message string, callerSkip ...int))) { + // userPanicked signals that the called user code panicked, such as due to a + // failed Gomega assertion. + type userPanicked struct{} + + // helperPanicked signals that some helper code assertion panicked in the + // separate Go routine and we are expected to Fail the current test with that + // reason, but on the caller's Go routine. + type helperPanicked string + + GinkgoHelper() + + // possible types of values sent over the result channel: + // - nil (untyped): no problem at all, proceed. + // - helperPanicked: the message with which to (re)fail in the caller's + // go routine. + // - userPanicked: indication to (also) fail on the caller's go routine; + // the message doesn't matter as the user code fail takes precedence. + ch := make(chan any) + + go func() { + isHelperPanic := false + helperFail := func(message string, callerSkip ...int) { + isHelperPanic = true + Fail(message, callerSkip...) + } + // Please note that we cannot simply recover a helper panic before + // GinkgoRecover kicks in as then GinkgoRecover would always report the + // stack trace only from the place of rethrown panic ... and that's + // pretty useless, because it would just consist of the panic rethrow. + defer func() { + // We need to unblock and immediately fail the waiting caller's + // go routine either for a reason, or just "because" when + // GinkgoRecover has already failed the current test on the + // separate go routine. + if global.Failer.GetState() != ginkgotypes.SpecStatePassed { + if isHelperPanic { + _, failure := global.Failer.Drain() + ch <- helperPanicked(failure.Message) + } else { + // keep the panic failure already recorded by GinkgoRecover. + ch <- userPanicked{} + } + } + close(ch) // causes a nil in case there were no panics anywhere. + }() + // Nota bene: GinkgoRecover always eats any user panic and channel the + // panic value into Ginkgo's Failer.Panic(). We can peek at the last + // failure recorded, which should be nil if GinkgoRecover didn't swallow + // a user code panic. The "problem" with GinkgoRecover is that it turns + // any panic value into a string message, so we loose any specific + // typing. + defer GinkgoRecover() + + fn(helperFail) + }() + + // Did we run into trouble? + switch v := (<-ch).(type) { + case userPanicked: + // The message actually is irrelevant, as it comes only second to + // the already registered user panic message. We just need Fail to + // panic on the caller's go routine in order to unblock the test. + Fail("fn panicked", 1) + case helperPanicked: + // Report the failure on the new go routine instead on the caller's go + // routine. + Fail(string(v), 1) + default: + // It's all fine! + } +} diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/global/init.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/global/init.go index 464e3c97ff..14d2552b72 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/global/init.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/global/init.go @@ -8,6 +8,12 @@ var Suite *internal.Suite var Failer *internal.Failer var backupSuite *internal.Suite +// SuiteDidRun tracks whether RunSpecs has already been invoked for the current global +// suite. It lives here (rather than in package ginkgo) so that InitializeGlobals can +// clear it, allowing extensions/globals.Reset to support running multiple suites +// sequentially in a single process. +var SuiteDidRun bool + func init() { InitializeGlobals() } @@ -15,6 +21,7 @@ func init() { func InitializeGlobals() { Failer = internal.NewFailer() Suite = internal.NewSuite() + SuiteDidRun = false } func PushClone() error { diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/suite.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/suite.go index 57c1cffe71..6c879855e8 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/suite.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/suite.go @@ -996,6 +996,7 @@ func (suite *Suite) runNode(node Node, specDeadline time.Time, text string) (typ } else { failure.Message, failure.Location, failure.ForwardedPanic, failure.TimelineLocation = failureFromRun.Message, failureFromRun.Location, failureFromRun.ForwardedPanic, failureFromRun.TimelineLocation suite.reporter.EmitFailure(outcomeFromRun, failure) + suite.pauseOnFailureIfRequested(node) return outcomeFromRun, failure } case <-gracePeriodChannel: @@ -1079,6 +1080,42 @@ func (suite *Suite) runNode(node Node, specDeadline time.Time, text string) (typ } } +// pauseOnFailureIfRequested pauses the suite at the moment a failure is identified, +// when the user has set --sleep-on-failure. This hooks directly into runNode's failure +// path so the pause happens immediately at the point of failure - before any teardown +// or cleanup runs - leaving the system live for inspection. +// +// We only pause for failures in setup and subject nodes (It, Before*, BeforeSuite...), +// i.e. nodes that run before teardown. Pausing on a failure in a teardown/cleanup or +// reporting node would be pointless (the system is already being torn down) and could +// interfere with interrupt handling, so those are skipped. +// +// The pause is interruptible: pressing ^C (or any interrupt) ends the pause early and +// the suite proceeds to run cleanup as usual. It is a no-op if the feature is disabled. +func (suite *Suite) pauseOnFailureIfRequested(node Node) { + if suite.config.SleepOnFailure <= 0 { + return + } + // only pause before teardown - skip teardown/cleanup/reporting nodes + if node.NodeType.Is(types.NodeTypesAllowedDuringCleanupInterrupt | types.NodeTypesAllowedDuringReportInterrupt) { + return + } + + duration := suite.config.SleepOnFailure + report := suite.generateProgressReport(false) + report.Message = fmt.Sprintf("{{bold}}{{orange}}Paused on failure for up to %s.{{/}}\nThe spec failed and Ginkgo has paused before running any teardown so you can inspect the live system.\nPress {{bold}}^C{{/}} to end the pause and proceed to cleanup.", duration) + suite.emitProgressReport(report) + + timer := time.NewTimer(duration) + defer timer.Stop() + // wait for the pause to elapse, or for the user to interrupt - in which case we end + // the pause early and let runNode return so cleanup can proceed + select { + case <-timer.C: + case <-suite.interruptHandler.Status().Channel: + } +} + // TODO: search for usages and consider if reporter.EmitFailure() is necessary func (suite *Suite) failureForLeafNodeWithMessage(node Node, message string) types.Failure { return types.Failure{ diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/testingtproxy/testing_t_proxy.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/testingtproxy/testing_t_proxy.go index 5704f0fdf9..e6fbaee416 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/testingtproxy/testing_t_proxy.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/internal/testingtproxy/testing_t_proxy.go @@ -181,6 +181,15 @@ func (t *ginkgoTestingTProxy) TempDir() string { return tmpDir } +func (t *ginkgoTestingTProxy) ArtifactDir() string { + artifactDir, err := os.MkdirTemp("", "ginkgo") + if err != nil { + t.fail(fmt.Sprintf("Failed to create artifact directory: %v", err), 1) + return "" + } + return artifactDir +} + // FullGinkgoTInterface func (t *ginkgoTestingTProxy) AddReportEntryVisibilityAlways(name string, args ...any) { finalArgs := []any{internal.Offset(1), types.ReportEntryVisibilityAlways} diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/reporters/default_reporter.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/reporters/default_reporter.go index ef66b22898..f3e15a913e 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/reporters/default_reporter.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/reporters/default_reporter.go @@ -31,6 +31,7 @@ type DefaultReporter struct { specDenoter string retryDenoter string formatter formatter.Formatter + fdHierarchy []string runningInParallel bool lock *sync.Mutex @@ -82,6 +83,8 @@ func (r *DefaultReporter) SuiteWillBegin(report types.Report) { if report.SuiteConfig.ParallelTotal > 1 { r.emit(r.f("- %d procs ", report.SuiteConfig.ParallelTotal)) } + } else if r.conf.FdOutput { + return } else { banner := r.f("Running Suite: %s - %s", report.SuiteDescription, report.SuitePath) r.emitBlock(banner) @@ -124,7 +127,7 @@ func (r *DefaultReporter) SuiteWillBegin(report types.Report) { func (r *DefaultReporter) SuiteDidEnd(report types.Report) { failures := report.SpecReports.WithState(types.SpecStateFailureStates) - if len(failures) > 0 { + if !r.conf.FdOutput && len(failures) > 0 { r.emitBlock("\n") if len(failures) > 1 { r.emitBlock(r.f("{{red}}{{bold}}Summarizing %d Failures:{{/}}", len(failures))) @@ -227,6 +230,10 @@ func (r *DefaultReporter) DidRun(report types.SpecReport) { return } + if r.conf.FdOutput { + r.didRunFd(report) + return + } header := r.specDenoter if report.LeafNodeType.Is(types.NodeTypesForSuiteLevelNodes) { header = fmt.Sprintf("[%s]", report.LeafNodeType) @@ -358,6 +365,51 @@ func (r *DefaultReporter) DidRun(report types.SpecReport) { r.emitDelimiter(0) } +func (r *DefaultReporter) didRunFd(report types.SpecReport) { + r.lock.Lock() + defer r.lock.Unlock() + + if !report.LeafNodeType.Is(types.NodeTypeIt) { + return + } + + hierarchy := report.ContainerHierarchyTexts + + // blank line when top-level container changes + if len(r.fdHierarchy) > 0 && + (len(hierarchy) == 0 || hierarchy[0] != r.fdHierarchy[0]) { + fmt.Fprintln(r.writer) + } + + // emit newly-diverged container lines + divergeAt := 0 + for divergeAt < len(r.fdHierarchy) && divergeAt < len(hierarchy) && + r.fdHierarchy[divergeAt] == hierarchy[divergeAt] { + divergeAt++ + } + for i := divergeAt; i < len(hierarchy); i++ { + fmt.Fprintf(r.writer, "%s%s\n", strings.Repeat(" ", i), hierarchy[i]) + } + + // leaf label + depth := len(hierarchy) + indent := strings.Repeat(" ", depth) + label := report.LeafNodeText + + switch report.State { + case types.SpecStateFailed, types.SpecStatePanicked: + label = fmt.Sprintf("%s (FAILED)", label) + case types.SpecStatePending: + label = fmt.Sprintf("%s (PENDING)", label) + case types.SpecStateSkipped: + label = fmt.Sprintf("%s (SKIPPED)", label) + } + + color := r.highlightColorForState(report.State) + fmt.Fprintf(r.writer, "%s%s\n", indent, r.f(color+"%s{{/}}", label)) + r.fdHierarchy = hierarchy +} + func (r *DefaultReporter) highlightColorForState(state types.SpecState) string { switch state { case types.SpecStatePassed: @@ -423,7 +475,7 @@ func (r *DefaultReporter) emitTimeline(indent uint, report types.SpecReport, tim case types.ReportEntry: r.emitReportEntry(indent, x) case types.ProgressReport: - r.emitProgressReport(indent, false, isVeryVerbose, x) + r.emitProgressReport(indent, isVeryVerbose, false, x) case types.SpecEvent: if isVeryVerbose || !x.IsOnlyVisibleAtVeryVerbose() || r.conf.ShowNodeEvents { r.emitSpecEvent(indent, x, isVeryVerbose) @@ -533,6 +585,7 @@ func (r *DefaultReporter) emitProgressReport(indent uint, emitGinkgoWriterOutput indent -= 1 } + // Emit only top-level groups because github logging cannot handle nested groups correctly. if r.conf.GithubOutput && emitGroup { r.emitBlock(r.fi(indent, "::group::Progress Report")) } diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/config.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/config.go index f847036046..854fec6a39 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/config.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/config.go @@ -38,6 +38,7 @@ type SuiteConfig struct { OutputInterceptorMode string SourceRoots []string GracePeriod time.Duration + SleepOnFailure time.Duration ParallelProcess int ParallelTotal int @@ -94,6 +95,7 @@ type ReporterConfig struct { GithubOutput bool SilenceSkips bool ForceNewlines bool + FdOutput bool JSONReport string GoJSONReport string @@ -215,6 +217,7 @@ type GoFlagsConfig struct { N bool ModFile string ModCacheRW bool + ASan bool MSan bool PkgDir string Tags string @@ -292,6 +295,8 @@ var SuiteConfigFlags = GinkgoFlags{ Usage: "Make up to this many attempts to run each spec. If any of the attempts succeed, the suite will not be failed."}, {KeyPath: "S.FailOnEmpty", Name: "fail-on-empty", SectionKey: "failure", Usage: "If set, ginkgo will mark the test suite as failed if no specs are run."}, + {KeyPath: "S.SleepOnFailure", Name: "sleep-on-failure", SectionKey: "failure", UsageDefaultValue: "0 - disabled", + Usage: "If set, ginkgo will pause for this duration after a spec fails - before its teardown (AfterEach/JustAfterEach/DeferCleanup) runs - so you can inspect the live system. Press ^C to end the pause early and proceed to cleanup. Serial only: cannot be combined with -p/--procs."}, {KeyPath: "S.DryRun", Name: "dry-run", SectionKey: "debug", DeprecatedName: "dryRun", DeprecatedDocLink: "changed-command-line-flags", Usage: "If set, ginkgo will walk the test hierarchy without actually running anything. Best paired with -v."}, @@ -357,7 +362,8 @@ var ReporterConfigFlags = GinkgoFlags{ Usage: "If set, default reporter will not print out skipped tests."}, {KeyPath: "R.ForceNewlines", Name: "force-newlines", SectionKey: "output", Usage: "If set, default reporter will ensure a newline appears after each test."}, - + {KeyPath: "R.FdOutput", Name: "fd", SectionKey: "output", + Usage: "If set, emits RSpec-style 'format documentation' output instead of Ginkgo's default output. --fd is exclusive: it overrides -p/-procs and -randomize-all, forcing specs to run serially in declaration order, since fd's hierarchical output can't be rendered sensibly when specs are parallelized or randomized."}, {KeyPath: "R.JSONReport", Name: "json-report", UsageArgument: "filename.json", SectionKey: "output", Usage: "If set, Ginkgo will generate a JSON-formatted test report at the specified location."}, {KeyPath: "R.GoJSONReport", Name: "gojson-report", UsageArgument: "filename.json", SectionKey: "output", @@ -428,6 +434,14 @@ func VetConfig(flagSet GinkgoFlagSet, suiteConfig SuiteConfig, reporterConfig Re errors = append(errors, GinkgoErrors.GracePeriodCannotBeZero()) } + if suiteConfig.SleepOnFailure < 0 { + errors = append(errors, GinkgoErrors.InvalidSleepOnFailureConfiguration()) + } + + if suiteConfig.SleepOnFailure > 0 && suiteConfig.ParallelTotal > 1 { + errors = append(errors, GinkgoErrors.SleepOnFailureInParallelConfiguration()) + } + if len(suiteConfig.FocusFiles) > 0 { _, err := ParseFileFilters(suiteConfig.FocusFiles) if err != nil { @@ -475,6 +489,30 @@ func VetConfig(flagSet GinkgoFlagSet, suiteConfig SuiteConfig, reporterConfig Re return errors } +// ReconcileFdOutputConfiguration forces serial, in-order execution when --fd is combined with +// -p, -procs (>1), or -randomize-all. fd's RSpec-style hierarchical output assumes specs run +// one at a time, in declaration order -- parallelism and randomization both break that assumption +// and produce fragmented, hard-to-read output. Rather than refusing to run, Ginkgo ignores those +// flags and runs in series instead. suiteConfig and cliConfig are mutated in place; the return +// value is true if anything was overridden, so callers can let the user know what was ignored. +func ReconcileFdOutputConfiguration(reporterConfig ReporterConfig, suiteConfig *SuiteConfig, cliConfig *CLIConfig) bool { + if !reporterConfig.FdOutput { + return false + } + + changed := false + if cliConfig.ComputedProcs() > 1 { + cliConfig.Procs = 1 + cliConfig.Parallel = false + changed = true + } + if suiteConfig.RandomizeAllSpecs { + suiteConfig.RandomizeAllSpecs = false + changed = true + } + return changed +} + // GinkgoCLISharedFlags provides flags shared by the Ginkgo CLI's build, watch, and run commands var GinkgoCLISharedFlags = GinkgoFlags{ {KeyPath: "C.Recurse", Name: "r", SectionKey: "multiple-suites", @@ -570,6 +608,8 @@ var GoBuildFlags = GinkgoFlags{ Usage: "leave newly-created directories in the module cache read-write instead of making them read-only."}, {KeyPath: "Go.ModFile", Name: "modfile", UsageArgument: "file", SectionKey: "go-build", Usage: `in module aware mode, read (and possibly write) an alternate go.mod file instead of the one in the module root directory. A file named go.mod must still be present in order to determine the module root directory, but it is not accessed. When -modfile is specified, an alternate go.sum file is also used: its path is derived from the -modfile flag by trimming the ".mod" extension and appending ".sum".`}, + {KeyPath: "Go.ASan", Name: "asan", SectionKey: "go-build", + Usage: "enable interoperation with address sanitizer."}, {KeyPath: "Go.MSan", Name: "msan", SectionKey: "go-build", Usage: "enable interoperation with memory sanitizer. Supported only on linux/amd64, linux/arm64 and only with Clang/LLVM as the host C compiler. On linux/arm64, pie build mode will be used."}, {KeyPath: "Go.N", Name: "n", SectionKey: "go-build", diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/errors.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/errors.go index 623e54b66e..636070c124 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/errors.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/errors.go @@ -455,7 +455,7 @@ func (g ginkgoErrors) InvalidEmptyComponentForSemVerConstraint(cl CodeLocation) Heading: "Invalid Empty Component for ComponentSemVerConstraint", Message: "ComponentSemVerConstraint requires a non-empty component name", CodeLocation: cl, - DocLink: "spec-semantic-version-filtering", + DocLink: "spec-semantic-version-filtering", } } @@ -621,6 +621,21 @@ func (g ginkgoErrors) GracePeriodCannotBeZero() error { } } +func (g ginkgoErrors) InvalidSleepOnFailureConfiguration() error { + return GinkgoError{ + Heading: "Ginkgo requires a non-negative --sleep-on-failure.", + Message: "Please set --sleep-on-failure to a positive duration (e.g. 5m), or 0 to disable it.", + } +} + +func (g ginkgoErrors) SleepOnFailureInParallelConfiguration() error { + return GinkgoError{ + Heading: "Ginkgo only supports --sleep-on-failure in serial mode.", + Message: "--sleep-on-failure pauses a failed spec on a live system for inspection, which only makes sense when the suite runs serially. Please run again without -p or --procs, or unset --sleep-on-failure.", + DocLink: "spec-timeouts-and-interruptible-nodes", + } +} + func (g ginkgoErrors) ConflictingVerbosityConfiguration() error { return GinkgoError{ Heading: "Conflicting reporter verbosity settings.", diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/flags.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/flags.go index 8409653f97..eb04c3e78a 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/flags.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/flags.go @@ -212,6 +212,24 @@ func (f GinkgoFlagSet) IsZero() bool { return f.flagSet == nil } +func (f GinkgoFlagSet) Completion(arg string) map[string]string { + if f.IsZero() { + return nil + } + prefix := strings.TrimLeft(arg, "-") + dash := arg[:len(arg)-len(prefix)] + if len(dash) < 1 || len(dash) > 3 { + return nil + } + result := make(map[string]string, len(f.flags)) + for _, flag := range f.flags { + if flag.Name != "" && strings.HasPrefix(flag.Name, prefix) { + result[dash+flag.Name] = flag.Usage + } + } + return result +} + func (f GinkgoFlagSet) WasSet(name string) bool { found := false f.flagSet.Visit(func(f *flag.Flag) { diff --git a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/version.go b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/version.go index 1df09be005..dc28324c1d 100644 --- a/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/version.go +++ b/tests/e2e/vendor/github.com/onsi/ginkgo/v2/types/version.go @@ -1,3 +1,3 @@ package types -const VERSION = "2.28.1" +const VERSION = "2.32.0" diff --git a/tests/e2e/vendor/github.com/onsi/gomega/CHANGELOG.md b/tests/e2e/vendor/github.com/onsi/gomega/CHANGELOG.md index 91e65521b4..9c94d0e6cf 100644 --- a/tests/e2e/vendor/github.com/onsi/gomega/CHANGELOG.md +++ b/tests/e2e/vendor/github.com/onsi/gomega/CHANGELOG.md @@ -1,3 +1,11 @@ +## 1.40.0 + +We're adopting a new release strategy to minimize dependency bloat in projects that consume Gomega. It is a limitation of the go mod toolchain that _test_ subdependencies of your project's direct dependencies get pulled in as *indirect* dependencies. In the case of Gomega, this ends up pulling in all of Ginkgo into your `go.mod` even if you are only using Gomega (Gomega uses Ginkgo for its own tests). + +Going forward, releases will strip out all tests, tidy up the `go.mod` and then push this stripped down version to a new `master-lite` branch. These stripped-down versions will receive the `vx.y.z` git tag and will be picked up by the go toolchain. + +Please open an issue if this new release process causes unexpected changes for your projects. + ## 1.39.1 Update all dependencies. This auto-updated the required version of Go to 1.24, consistent with the fact that Go 1.23 has been out of support for almost six months. diff --git a/tests/e2e/vendor/github.com/onsi/gomega/gomega_dsl.go b/tests/e2e/vendor/github.com/onsi/gomega/gomega_dsl.go index 87c70692bf..af1341bdbd 100644 --- a/tests/e2e/vendor/github.com/onsi/gomega/gomega_dsl.go +++ b/tests/e2e/vendor/github.com/onsi/gomega/gomega_dsl.go @@ -22,7 +22,7 @@ import ( "github.com/onsi/gomega/types" ) -const GOMEGA_VERSION = "1.39.1" +const GOMEGA_VERSION = "1.40.0" const nilGomegaPanic = `You are trying to make an assertion, but haven't registered Gomega's fail handler. If you're using Ginkgo then you probably forgot to put your assertion in an It(). diff --git a/tests/e2e/vendor/github.com/peterbourgon/diskv/LICENSE b/tests/e2e/vendor/github.com/peterbourgon/diskv/LICENSE new file mode 100644 index 0000000000..41ce7f16e1 --- /dev/null +++ b/tests/e2e/vendor/github.com/peterbourgon/diskv/LICENSE @@ -0,0 +1,19 @@ +Copyright (c) 2011-2012 Peter Bourgon + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in +all copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN +THE SOFTWARE. diff --git a/tests/e2e/vendor/github.com/peterbourgon/diskv/README.md b/tests/e2e/vendor/github.com/peterbourgon/diskv/README.md new file mode 100644 index 0000000000..3474739edc --- /dev/null +++ b/tests/e2e/vendor/github.com/peterbourgon/diskv/README.md @@ -0,0 +1,141 @@ +# What is diskv? + +Diskv (disk-vee) is a simple, persistent key-value store written in the Go +language. It starts with an incredibly simple API for storing arbitrary data on +a filesystem by key, and builds several layers of performance-enhancing +abstraction on top. The end result is a conceptually simple, but highly +performant, disk-backed storage system. + +[![Build Status][1]][2] + +[1]: https://drone.io/github.com/peterbourgon/diskv/status.png +[2]: https://drone.io/github.com/peterbourgon/diskv/latest + + +# Installing + +Install [Go 1][3], either [from source][4] or [with a prepackaged binary][5]. +Then, + +```bash +$ go get github.com/peterbourgon/diskv +``` + +[3]: http://golang.org +[4]: http://golang.org/doc/install/source +[5]: http://golang.org/doc/install + + +# Usage + +```go +package main + +import ( + "fmt" + "github.com/peterbourgon/diskv" +) + +func main() { + // Simplest transform function: put all the data files into the base dir. + flatTransform := func(s string) []string { return []string{} } + + // Initialize a new diskv store, rooted at "my-data-dir", with a 1MB cache. + d := diskv.New(diskv.Options{ + BasePath: "my-data-dir", + Transform: flatTransform, + CacheSizeMax: 1024 * 1024, + }) + + // Write three bytes to the key "alpha". + key := "alpha" + d.Write(key, []byte{'1', '2', '3'}) + + // Read the value back out of the store. + value, _ := d.Read(key) + fmt.Printf("%v\n", value) + + // Erase the key+value from the store (and the disk). + d.Erase(key) +} +``` + +More complex examples can be found in the "examples" subdirectory. + + +# Theory + +## Basic idea + +At its core, diskv is a map of a key (`string`) to arbitrary data (`[]byte`). +The data is written to a single file on disk, with the same name as the key. +The key determines where that file will be stored, via a user-provided +`TransformFunc`, which takes a key and returns a slice (`[]string`) +corresponding to a path list where the key file will be stored. The simplest +TransformFunc, + +```go +func SimpleTransform (key string) []string { + return []string{} +} +``` + +will place all keys in the same, base directory. The design is inspired by +[Redis diskstore][6]; a TransformFunc which emulates the default diskstore +behavior is available in the content-addressable-storage example. + +[6]: http://groups.google.com/group/redis-db/browse_thread/thread/d444bc786689bde9?pli=1 + +**Note** that your TransformFunc should ensure that one valid key doesn't +transform to a subset of another valid key. That is, it shouldn't be possible +to construct valid keys that resolve to directory names. As a concrete example, +if your TransformFunc splits on every 3 characters, then + +```go +d.Write("abcabc", val) // OK: written to /abc/abc/abcabc +d.Write("abc", val) // Error: attempted write to /abc/abc, but it's a directory +``` + +This will be addressed in an upcoming version of diskv. + +Probably the most important design principle behind diskv is that your data is +always flatly available on the disk. diskv will never do anything that would +prevent you from accessing, copying, backing up, or otherwise interacting with +your data via common UNIX commandline tools. + +## Adding a cache + +An in-memory caching layer is provided by combining the BasicStore +functionality with a simple map structure, and keeping it up-to-date as +appropriate. Since the map structure in Go is not threadsafe, it's combined +with a RWMutex to provide safe concurrent access. + +## Adding order + +diskv is a key-value store and therefore inherently unordered. An ordering +system can be injected into the store by passing something which satisfies the +diskv.Index interface. (A default implementation, using Google's +[btree][7] package, is provided.) Basically, diskv keeps an ordered (by a +user-provided Less function) index of the keys, which can be queried. + +[7]: https://github.com/google/btree + +## Adding compression + +Something which implements the diskv.Compression interface may be passed +during store creation, so that all Writes and Reads are filtered through +a compression/decompression pipeline. Several default implementations, +using stdlib compression algorithms, are provided. Note that data is cached +compressed; the cost of decompression is borne with each Read. + +## Streaming + +diskv also now provides ReadStream and WriteStream methods, to allow very large +data to be handled efficiently. + + +# Future plans + + * Needs plenty of robust testing: huge datasets, etc... + * More thorough benchmarking + * Your suggestions for use-cases I haven't thought of diff --git a/tests/e2e/vendor/github.com/peterbourgon/diskv/compression.go b/tests/e2e/vendor/github.com/peterbourgon/diskv/compression.go new file mode 100644 index 0000000000..5192b02733 --- /dev/null +++ b/tests/e2e/vendor/github.com/peterbourgon/diskv/compression.go @@ -0,0 +1,64 @@ +package diskv + +import ( + "compress/flate" + "compress/gzip" + "compress/zlib" + "io" +) + +// Compression is an interface that Diskv uses to implement compression of +// data. Writer takes a destination io.Writer and returns a WriteCloser that +// compresses all data written through it. Reader takes a source io.Reader and +// returns a ReadCloser that decompresses all data read through it. You may +// define these methods on your own type, or use one of the NewCompression +// helpers. +type Compression interface { + Writer(dst io.Writer) (io.WriteCloser, error) + Reader(src io.Reader) (io.ReadCloser, error) +} + +// NewGzipCompression returns a Gzip-based Compression. +func NewGzipCompression() Compression { + return NewGzipCompressionLevel(flate.DefaultCompression) +} + +// NewGzipCompressionLevel returns a Gzip-based Compression with the given level. +func NewGzipCompressionLevel(level int) Compression { + return &genericCompression{ + wf: func(w io.Writer) (io.WriteCloser, error) { return gzip.NewWriterLevel(w, level) }, + rf: func(r io.Reader) (io.ReadCloser, error) { return gzip.NewReader(r) }, + } +} + +// NewZlibCompression returns a Zlib-based Compression. +func NewZlibCompression() Compression { + return NewZlibCompressionLevel(flate.DefaultCompression) +} + +// NewZlibCompressionLevel returns a Zlib-based Compression with the given level. +func NewZlibCompressionLevel(level int) Compression { + return NewZlibCompressionLevelDict(level, nil) +} + +// NewZlibCompressionLevelDict returns a Zlib-based Compression with the given +// level, based on the given dictionary. +func NewZlibCompressionLevelDict(level int, dict []byte) Compression { + return &genericCompression{ + func(w io.Writer) (io.WriteCloser, error) { return zlib.NewWriterLevelDict(w, level, dict) }, + func(r io.Reader) (io.ReadCloser, error) { return zlib.NewReaderDict(r, dict) }, + } +} + +type genericCompression struct { + wf func(w io.Writer) (io.WriteCloser, error) + rf func(r io.Reader) (io.ReadCloser, error) +} + +func (g *genericCompression) Writer(dst io.Writer) (io.WriteCloser, error) { + return g.wf(dst) +} + +func (g *genericCompression) Reader(src io.Reader) (io.ReadCloser, error) { + return g.rf(src) +} diff --git a/tests/e2e/vendor/github.com/peterbourgon/diskv/diskv.go b/tests/e2e/vendor/github.com/peterbourgon/diskv/diskv.go new file mode 100644 index 0000000000..524dc0a6e3 --- /dev/null +++ b/tests/e2e/vendor/github.com/peterbourgon/diskv/diskv.go @@ -0,0 +1,624 @@ +// Diskv (disk-vee) is a simple, persistent, key-value store. +// It stores all data flatly on the filesystem. + +package diskv + +import ( + "bytes" + "errors" + "fmt" + "io" + "io/ioutil" + "os" + "path/filepath" + "strings" + "sync" + "syscall" +) + +const ( + defaultBasePath = "diskv" + defaultFilePerm os.FileMode = 0666 + defaultPathPerm os.FileMode = 0777 +) + +var ( + defaultTransform = func(s string) []string { return []string{} } + errCanceled = errors.New("canceled") + errEmptyKey = errors.New("empty key") + errBadKey = errors.New("bad key") + errImportDirectory = errors.New("can't import a directory") +) + +// TransformFunction transforms a key into a slice of strings, with each +// element in the slice representing a directory in the file path where the +// key's entry will eventually be stored. +// +// For example, if TransformFunc transforms "abcdef" to ["ab", "cde", "f"], +// the final location of the data file will be /ab/cde/f/abcdef +type TransformFunction func(s string) []string + +// Options define a set of properties that dictate Diskv behavior. +// All values are optional. +type Options struct { + BasePath string + Transform TransformFunction + CacheSizeMax uint64 // bytes + PathPerm os.FileMode + FilePerm os.FileMode + // If TempDir is set, it will enable filesystem atomic writes by + // writing temporary files to that location before being moved + // to BasePath. + // Note that TempDir MUST be on the same device/partition as + // BasePath. + TempDir string + + Index Index + IndexLess LessFunction + + Compression Compression +} + +// Diskv implements the Diskv interface. You shouldn't construct Diskv +// structures directly; instead, use the New constructor. +type Diskv struct { + Options + mu sync.RWMutex + cache map[string][]byte + cacheSize uint64 +} + +// New returns an initialized Diskv structure, ready to use. +// If the path identified by baseDir already contains data, +// it will be accessible, but not yet cached. +func New(o Options) *Diskv { + if o.BasePath == "" { + o.BasePath = defaultBasePath + } + if o.Transform == nil { + o.Transform = defaultTransform + } + if o.PathPerm == 0 { + o.PathPerm = defaultPathPerm + } + if o.FilePerm == 0 { + o.FilePerm = defaultFilePerm + } + + d := &Diskv{ + Options: o, + cache: map[string][]byte{}, + cacheSize: 0, + } + + if d.Index != nil && d.IndexLess != nil { + d.Index.Initialize(d.IndexLess, d.Keys(nil)) + } + + return d +} + +// Write synchronously writes the key-value pair to disk, making it immediately +// available for reads. Write relies on the filesystem to perform an eventual +// sync to physical media. If you need stronger guarantees, see WriteStream. +func (d *Diskv) Write(key string, val []byte) error { + return d.WriteStream(key, bytes.NewBuffer(val), false) +} + +// WriteStream writes the data represented by the io.Reader to the disk, under +// the provided key. If sync is true, WriteStream performs an explicit sync on +// the file as soon as it's written. +// +// bytes.Buffer provides io.Reader semantics for basic data types. +func (d *Diskv) WriteStream(key string, r io.Reader, sync bool) error { + if len(key) <= 0 { + return errEmptyKey + } + + d.mu.Lock() + defer d.mu.Unlock() + + return d.writeStreamWithLock(key, r, sync) +} + +// createKeyFileWithLock either creates the key file directly, or +// creates a temporary file in TempDir if it is set. +func (d *Diskv) createKeyFileWithLock(key string) (*os.File, error) { + if d.TempDir != "" { + if err := os.MkdirAll(d.TempDir, d.PathPerm); err != nil { + return nil, fmt.Errorf("temp mkdir: %s", err) + } + f, err := ioutil.TempFile(d.TempDir, "") + if err != nil { + return nil, fmt.Errorf("temp file: %s", err) + } + + if err := f.Chmod(d.FilePerm); err != nil { + f.Close() // error deliberately ignored + os.Remove(f.Name()) // error deliberately ignored + return nil, fmt.Errorf("chmod: %s", err) + } + return f, nil + } + + mode := os.O_WRONLY | os.O_CREATE | os.O_TRUNC // overwrite if exists + f, err := os.OpenFile(d.completeFilename(key), mode, d.FilePerm) + if err != nil { + return nil, fmt.Errorf("open file: %s", err) + } + return f, nil +} + +// writeStream does no input validation checking. +func (d *Diskv) writeStreamWithLock(key string, r io.Reader, sync bool) error { + if err := d.ensurePathWithLock(key); err != nil { + return fmt.Errorf("ensure path: %s", err) + } + + f, err := d.createKeyFileWithLock(key) + if err != nil { + return fmt.Errorf("create key file: %s", err) + } + + wc := io.WriteCloser(&nopWriteCloser{f}) + if d.Compression != nil { + wc, err = d.Compression.Writer(f) + if err != nil { + f.Close() // error deliberately ignored + os.Remove(f.Name()) // error deliberately ignored + return fmt.Errorf("compression writer: %s", err) + } + } + + if _, err := io.Copy(wc, r); err != nil { + f.Close() // error deliberately ignored + os.Remove(f.Name()) // error deliberately ignored + return fmt.Errorf("i/o copy: %s", err) + } + + if err := wc.Close(); err != nil { + f.Close() // error deliberately ignored + os.Remove(f.Name()) // error deliberately ignored + return fmt.Errorf("compression close: %s", err) + } + + if sync { + if err := f.Sync(); err != nil { + f.Close() // error deliberately ignored + os.Remove(f.Name()) // error deliberately ignored + return fmt.Errorf("file sync: %s", err) + } + } + + if err := f.Close(); err != nil { + return fmt.Errorf("file close: %s", err) + } + + if f.Name() != d.completeFilename(key) { + if err := os.Rename(f.Name(), d.completeFilename(key)); err != nil { + os.Remove(f.Name()) // error deliberately ignored + return fmt.Errorf("rename: %s", err) + } + } + + if d.Index != nil { + d.Index.Insert(key) + } + + d.bustCacheWithLock(key) // cache only on read + + return nil +} + +// Import imports the source file into diskv under the destination key. If the +// destination key already exists, it's overwritten. If move is true, the +// source file is removed after a successful import. +func (d *Diskv) Import(srcFilename, dstKey string, move bool) (err error) { + if dstKey == "" { + return errEmptyKey + } + + if fi, err := os.Stat(srcFilename); err != nil { + return err + } else if fi.IsDir() { + return errImportDirectory + } + + d.mu.Lock() + defer d.mu.Unlock() + + if err := d.ensurePathWithLock(dstKey); err != nil { + return fmt.Errorf("ensure path: %s", err) + } + + if move { + if err := syscall.Rename(srcFilename, d.completeFilename(dstKey)); err == nil { + d.bustCacheWithLock(dstKey) + return nil + } else if err != syscall.EXDEV { + // If it failed due to being on a different device, fall back to copying + return err + } + } + + f, err := os.Open(srcFilename) + if err != nil { + return err + } + defer f.Close() + err = d.writeStreamWithLock(dstKey, f, false) + if err == nil && move { + err = os.Remove(srcFilename) + } + return err +} + +// Read reads the key and returns the value. +// If the key is available in the cache, Read won't touch the disk. +// If the key is not in the cache, Read will have the side-effect of +// lazily caching the value. +func (d *Diskv) Read(key string) ([]byte, error) { + rc, err := d.ReadStream(key, false) + if err != nil { + return []byte{}, err + } + defer rc.Close() + return ioutil.ReadAll(rc) +} + +// ReadStream reads the key and returns the value (data) as an io.ReadCloser. +// If the value is cached from a previous read, and direct is false, +// ReadStream will use the cached value. Otherwise, it will return a handle to +// the file on disk, and cache the data on read. +// +// If direct is true, ReadStream will lazily delete any cached value for the +// key, and return a direct handle to the file on disk. +// +// If compression is enabled, ReadStream taps into the io.Reader stream prior +// to decompression, and caches the compressed data. +func (d *Diskv) ReadStream(key string, direct bool) (io.ReadCloser, error) { + d.mu.RLock() + defer d.mu.RUnlock() + + if val, ok := d.cache[key]; ok { + if !direct { + buf := bytes.NewBuffer(val) + if d.Compression != nil { + return d.Compression.Reader(buf) + } + return ioutil.NopCloser(buf), nil + } + + go func() { + d.mu.Lock() + defer d.mu.Unlock() + d.uncacheWithLock(key, uint64(len(val))) + }() + } + + return d.readWithRLock(key) +} + +// read ignores the cache, and returns an io.ReadCloser representing the +// decompressed data for the given key, streamed from the disk. Clients should +// acquire a read lock on the Diskv and check the cache themselves before +// calling read. +func (d *Diskv) readWithRLock(key string) (io.ReadCloser, error) { + filename := d.completeFilename(key) + + fi, err := os.Stat(filename) + if err != nil { + return nil, err + } + if fi.IsDir() { + return nil, os.ErrNotExist + } + + f, err := os.Open(filename) + if err != nil { + return nil, err + } + + var r io.Reader + if d.CacheSizeMax > 0 { + r = newSiphon(f, d, key) + } else { + r = &closingReader{f} + } + + var rc = io.ReadCloser(ioutil.NopCloser(r)) + if d.Compression != nil { + rc, err = d.Compression.Reader(r) + if err != nil { + return nil, err + } + } + + return rc, nil +} + +// closingReader provides a Reader that automatically closes the +// embedded ReadCloser when it reaches EOF +type closingReader struct { + rc io.ReadCloser +} + +func (cr closingReader) Read(p []byte) (int, error) { + n, err := cr.rc.Read(p) + if err == io.EOF { + if closeErr := cr.rc.Close(); closeErr != nil { + return n, closeErr // close must succeed for Read to succeed + } + } + return n, err +} + +// siphon is like a TeeReader: it copies all data read through it to an +// internal buffer, and moves that buffer to the cache at EOF. +type siphon struct { + f *os.File + d *Diskv + key string + buf *bytes.Buffer +} + +// newSiphon constructs a siphoning reader that represents the passed file. +// When a successful series of reads ends in an EOF, the siphon will write +// the buffered data to Diskv's cache under the given key. +func newSiphon(f *os.File, d *Diskv, key string) io.Reader { + return &siphon{ + f: f, + d: d, + key: key, + buf: &bytes.Buffer{}, + } +} + +// Read implements the io.Reader interface for siphon. +func (s *siphon) Read(p []byte) (int, error) { + n, err := s.f.Read(p) + + if err == nil { + return s.buf.Write(p[0:n]) // Write must succeed for Read to succeed + } + + if err == io.EOF { + s.d.cacheWithoutLock(s.key, s.buf.Bytes()) // cache may fail + if closeErr := s.f.Close(); closeErr != nil { + return n, closeErr // close must succeed for Read to succeed + } + return n, err + } + + return n, err +} + +// Erase synchronously erases the given key from the disk and the cache. +func (d *Diskv) Erase(key string) error { + d.mu.Lock() + defer d.mu.Unlock() + + d.bustCacheWithLock(key) + + // erase from index + if d.Index != nil { + d.Index.Delete(key) + } + + // erase from disk + filename := d.completeFilename(key) + if s, err := os.Stat(filename); err == nil { + if s.IsDir() { + return errBadKey + } + if err = os.Remove(filename); err != nil { + return err + } + } else { + // Return err as-is so caller can do os.IsNotExist(err). + return err + } + + // clean up and return + d.pruneDirsWithLock(key) + return nil +} + +// EraseAll will delete all of the data from the store, both in the cache and on +// the disk. Note that EraseAll doesn't distinguish diskv-related data from non- +// diskv-related data. Care should be taken to always specify a diskv base +// directory that is exclusively for diskv data. +func (d *Diskv) EraseAll() error { + d.mu.Lock() + defer d.mu.Unlock() + d.cache = make(map[string][]byte) + d.cacheSize = 0 + if d.TempDir != "" { + os.RemoveAll(d.TempDir) // errors ignored + } + return os.RemoveAll(d.BasePath) +} + +// Has returns true if the given key exists. +func (d *Diskv) Has(key string) bool { + d.mu.Lock() + defer d.mu.Unlock() + + if _, ok := d.cache[key]; ok { + return true + } + + filename := d.completeFilename(key) + s, err := os.Stat(filename) + if err != nil { + return false + } + if s.IsDir() { + return false + } + + return true +} + +// Keys returns a channel that will yield every key accessible by the store, +// in undefined order. If a cancel channel is provided, closing it will +// terminate and close the keys channel. +func (d *Diskv) Keys(cancel <-chan struct{}) <-chan string { + return d.KeysPrefix("", cancel) +} + +// KeysPrefix returns a channel that will yield every key accessible by the +// store with the given prefix, in undefined order. If a cancel channel is +// provided, closing it will terminate and close the keys channel. If the +// provided prefix is the empty string, all keys will be yielded. +func (d *Diskv) KeysPrefix(prefix string, cancel <-chan struct{}) <-chan string { + var prepath string + if prefix == "" { + prepath = d.BasePath + } else { + prepath = d.pathFor(prefix) + } + c := make(chan string) + go func() { + filepath.Walk(prepath, walker(c, prefix, cancel)) + close(c) + }() + return c +} + +// walker returns a function which satisfies the filepath.WalkFunc interface. +// It sends every non-directory file entry down the channel c. +func walker(c chan<- string, prefix string, cancel <-chan struct{}) filepath.WalkFunc { + return func(path string, info os.FileInfo, err error) error { + if err != nil { + return err + } + + if info.IsDir() || !strings.HasPrefix(info.Name(), prefix) { + return nil // "pass" + } + + select { + case c <- info.Name(): + case <-cancel: + return errCanceled + } + + return nil + } +} + +// pathFor returns the absolute path for location on the filesystem where the +// data for the given key will be stored. +func (d *Diskv) pathFor(key string) string { + return filepath.Join(d.BasePath, filepath.Join(d.Transform(key)...)) +} + +// ensurePathWithLock is a helper function that generates all necessary +// directories on the filesystem for the given key. +func (d *Diskv) ensurePathWithLock(key string) error { + return os.MkdirAll(d.pathFor(key), d.PathPerm) +} + +// completeFilename returns the absolute path to the file for the given key. +func (d *Diskv) completeFilename(key string) string { + return filepath.Join(d.pathFor(key), key) +} + +// cacheWithLock attempts to cache the given key-value pair in the store's +// cache. It can fail if the value is larger than the cache's maximum size. +func (d *Diskv) cacheWithLock(key string, val []byte) error { + valueSize := uint64(len(val)) + if err := d.ensureCacheSpaceWithLock(valueSize); err != nil { + return fmt.Errorf("%s; not caching", err) + } + + // be very strict about memory guarantees + if (d.cacheSize + valueSize) > d.CacheSizeMax { + panic(fmt.Sprintf("failed to make room for value (%d/%d)", valueSize, d.CacheSizeMax)) + } + + d.cache[key] = val + d.cacheSize += valueSize + return nil +} + +// cacheWithoutLock acquires the store's (write) mutex and calls cacheWithLock. +func (d *Diskv) cacheWithoutLock(key string, val []byte) error { + d.mu.Lock() + defer d.mu.Unlock() + return d.cacheWithLock(key, val) +} + +func (d *Diskv) bustCacheWithLock(key string) { + if val, ok := d.cache[key]; ok { + d.uncacheWithLock(key, uint64(len(val))) + } +} + +func (d *Diskv) uncacheWithLock(key string, sz uint64) { + d.cacheSize -= sz + delete(d.cache, key) +} + +// pruneDirsWithLock deletes empty directories in the path walk leading to the +// key k. Typically this function is called after an Erase is made. +func (d *Diskv) pruneDirsWithLock(key string) error { + pathlist := d.Transform(key) + for i := range pathlist { + dir := filepath.Join(d.BasePath, filepath.Join(pathlist[:len(pathlist)-i]...)) + + // thanks to Steven Blenkinsop for this snippet + switch fi, err := os.Stat(dir); true { + case err != nil: + return err + case !fi.IsDir(): + panic(fmt.Sprintf("corrupt dirstate at %s", dir)) + } + + nlinks, err := filepath.Glob(filepath.Join(dir, "*")) + if err != nil { + return err + } else if len(nlinks) > 0 { + return nil // has subdirs -- do not prune + } + if err = os.Remove(dir); err != nil { + return err + } + } + + return nil +} + +// ensureCacheSpaceWithLock deletes entries from the cache in arbitrary order +// until the cache has at least valueSize bytes available. +func (d *Diskv) ensureCacheSpaceWithLock(valueSize uint64) error { + if valueSize > d.CacheSizeMax { + return fmt.Errorf("value size (%d bytes) too large for cache (%d bytes)", valueSize, d.CacheSizeMax) + } + + safe := func() bool { return (d.cacheSize + valueSize) <= d.CacheSizeMax } + + for key, val := range d.cache { + if safe() { + break + } + + d.uncacheWithLock(key, uint64(len(val))) + } + + if !safe() { + panic(fmt.Sprintf("%d bytes still won't fit in the cache! (max %d bytes)", valueSize, d.CacheSizeMax)) + } + + return nil +} + +// nopWriteCloser wraps an io.Writer and provides a no-op Close method to +// satisfy the io.WriteCloser interface. +type nopWriteCloser struct { + io.Writer +} + +func (wc *nopWriteCloser) Write(p []byte) (int, error) { return wc.Writer.Write(p) } +func (wc *nopWriteCloser) Close() error { return nil } diff --git a/tests/e2e/vendor/github.com/peterbourgon/diskv/index.go b/tests/e2e/vendor/github.com/peterbourgon/diskv/index.go new file mode 100644 index 0000000000..96fee5152b --- /dev/null +++ b/tests/e2e/vendor/github.com/peterbourgon/diskv/index.go @@ -0,0 +1,115 @@ +package diskv + +import ( + "sync" + + "github.com/google/btree" +) + +// Index is a generic interface for things that can +// provide an ordered list of keys. +type Index interface { + Initialize(less LessFunction, keys <-chan string) + Insert(key string) + Delete(key string) + Keys(from string, n int) []string +} + +// LessFunction is used to initialize an Index of keys in a specific order. +type LessFunction func(string, string) bool + +// btreeString is a custom data type that satisfies the BTree Less interface, +// making the strings it wraps sortable by the BTree package. +type btreeString struct { + s string + l LessFunction +} + +// Less satisfies the BTree.Less interface using the btreeString's LessFunction. +func (s btreeString) Less(i btree.Item) bool { + return s.l(s.s, i.(btreeString).s) +} + +// BTreeIndex is an implementation of the Index interface using google/btree. +type BTreeIndex struct { + sync.RWMutex + LessFunction + *btree.BTree +} + +// Initialize populates the BTree tree with data from the keys channel, +// according to the passed less function. It's destructive to the BTreeIndex. +func (i *BTreeIndex) Initialize(less LessFunction, keys <-chan string) { + i.Lock() + defer i.Unlock() + i.LessFunction = less + i.BTree = rebuild(less, keys) +} + +// Insert inserts the given key (only) into the BTree tree. +func (i *BTreeIndex) Insert(key string) { + i.Lock() + defer i.Unlock() + if i.BTree == nil || i.LessFunction == nil { + panic("uninitialized index") + } + i.BTree.ReplaceOrInsert(btreeString{s: key, l: i.LessFunction}) +} + +// Delete removes the given key (only) from the BTree tree. +func (i *BTreeIndex) Delete(key string) { + i.Lock() + defer i.Unlock() + if i.BTree == nil || i.LessFunction == nil { + panic("uninitialized index") + } + i.BTree.Delete(btreeString{s: key, l: i.LessFunction}) +} + +// Keys yields a maximum of n keys in order. If the passed 'from' key is empty, +// Keys will return the first n keys. If the passed 'from' key is non-empty, the +// first key in the returned slice will be the key that immediately follows the +// passed key, in key order. +func (i *BTreeIndex) Keys(from string, n int) []string { + i.RLock() + defer i.RUnlock() + + if i.BTree == nil || i.LessFunction == nil { + panic("uninitialized index") + } + + if i.BTree.Len() <= 0 { + return []string{} + } + + btreeFrom := btreeString{s: from, l: i.LessFunction} + skipFirst := true + if len(from) <= 0 || !i.BTree.Has(btreeFrom) { + // no such key, so fabricate an always-smallest item + btreeFrom = btreeString{s: "", l: func(string, string) bool { return true }} + skipFirst = false + } + + keys := []string{} + iterator := func(i btree.Item) bool { + keys = append(keys, i.(btreeString).s) + return len(keys) < n + } + i.BTree.AscendGreaterOrEqual(btreeFrom, iterator) + + if skipFirst && len(keys) > 0 { + keys = keys[1:] + } + + return keys +} + +// rebuildIndex does the work of regenerating the index +// with the given keys. +func rebuild(less LessFunction, keys <-chan string) *btree.BTree { + tree := btree.New(2) + for key := range keys { + tree.ReplaceOrInsert(btreeString{s: key, l: less}) + } + return tree +} diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/internal/github.com/golang/gddo/httputil/header/header.go b/tests/e2e/vendor/github.com/prometheus/client_golang/internal/github.com/golang/gddo/httputil/header/header.go index 8547c8dfd1..820bf436ab 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/internal/github.com/golang/gddo/httputil/header/header.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/internal/github.com/golang/gddo/httputil/header/header.go @@ -90,7 +90,7 @@ loop: s = skipSpace(s[1:]) } } - return + return specs } func skipSpace(s string) (rest string) { diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/collectors/go_collector_go116.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/collectors/go_collector_go116.go deleted file mode 100644 index effc57840a..0000000000 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/collectors/go_collector_go116.go +++ /dev/null @@ -1,49 +0,0 @@ -// Copyright 2021 The Prometheus Authors -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -//go:build !go1.17 -// +build !go1.17 - -package collectors - -import "github.com/prometheus/client_golang/prometheus" - -// NewGoCollector returns a collector that exports metrics about the current Go -// process. This includes memory stats. To collect those, runtime.ReadMemStats -// is called. This requires to “stop the worldâ€, which usually only happens for -// garbage collection (GC). Take the following implications into account when -// deciding whether to use the Go collector: -// -// 1. The performance impact of stopping the world is the more relevant the more -// frequently metrics are collected. However, with Go1.9 or later the -// stop-the-world time per metrics collection is very short (~25µs) so that the -// performance impact will only matter in rare cases. However, with older Go -// versions, the stop-the-world duration depends on the heap size and can be -// quite significant (~1.7 ms/GiB as per -// https://go-review.googlesource.com/c/go/+/34937). -// -// 2. During an ongoing GC, nothing else can stop the world. Therefore, if the -// metrics collection happens to coincide with GC, it will only complete after -// GC has finished. Usually, GC is fast enough to not cause problems. However, -// with a very large heap, GC might take multiple seconds, which is enough to -// cause scrape timeouts in common setups. To avoid this problem, the Go -// collector will use the memstats from a previous collection if -// runtime.ReadMemStats takes more than 1s. However, if there are no previously -// collected memstats, or their collection is more than 5m ago, the collection -// will block until runtime.ReadMemStats succeeds. -// -// NOTE: The problem is solved in Go 1.15, see -// https://github.com/golang/go/issues/19812 for the related Go issue. -func NewGoCollector() prometheus.Collector { - return prometheus.NewGoCollector() -} diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/collectors/go_collector_latest.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/collectors/go_collector_latest.go index cc4ef1077e..d29ade654f 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/collectors/go_collector_latest.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/collectors/go_collector_latest.go @@ -90,13 +90,13 @@ func WithGoCollectorMemStatsMetricsDisabled() func(options *internal.GoCollector // GoRuntimeMetricsRule allow enabling and configuring particular group of runtime/metrics. // TODO(bwplotka): Consider adding ability to adjust buckets. type GoRuntimeMetricsRule struct { - // Matcher represents RE2 expression will match the runtime/metrics from https://golang.bg/src/runtime/metrics/description.go + // Matcher represents RE2 expression will match the runtime/metrics from https://pkg.go.dev/runtime/metrics // Use `regexp.MustCompile` or `regexp.Compile` to create this field. Matcher *regexp.Regexp } // WithGoCollectorRuntimeMetrics allows enabling and configuring particular group of runtime/metrics. -// See the list of metrics https://golang.bg/src/runtime/metrics/description.go (pick the Go version you use there!). +// See the list of metrics https://pkg.go.dev/runtime/metrics (pick the Go version you use there!). // You can use this option in repeated manner, which will add new rules. The order of rules is important, the last rule // that matches particular metrics is applied. func WithGoCollectorRuntimeMetrics(rules ...GoRuntimeMetricsRule) func(options *internal.GoCollectorOptions) { diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/counter.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/counter.go index 4ce84e7a80..7d963d3afb 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/counter.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/counter.go @@ -85,11 +85,12 @@ type CounterVecOpts struct { // Both internal tracking values are added up in the Write method. This has to // be taken into account when it comes to precision and overflow behavior. func NewCounter(opts CounterOpts) Counter { - desc := NewDesc( + desc := V2.NewDesc( BuildFQName(opts.Namespace, opts.Subsystem, opts.Name), opts.Help, - nil, + UnconstrainedLabels(nil), opts.ConstLabels, + WithUnit(opts.Unit), ) if opts.now == nil { opts.now = time.Now @@ -205,6 +206,7 @@ func (v2) NewCounterVec(opts CounterVecOpts) *CounterVec { opts.Help, opts.VariableLabels, opts.ConstLabels, + WithUnit(opts.Unit), ) if opts.now == nil { opts.now = time.Now @@ -349,10 +351,11 @@ type CounterFunc interface { // // Check out the ExampleGaugeFunc examples for the similar GaugeFunc. func NewCounterFunc(opts CounterOpts, function func() float64) CounterFunc { - return newValueFunc(NewDesc( + return newValueFunc(V2.NewDesc( BuildFQName(opts.Namespace, opts.Subsystem, opts.Name), opts.Help, - nil, + UnconstrainedLabels(nil), opts.ConstLabels, + WithUnit(opts.Unit), ), CounterValue, function) } diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/desc.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/desc.go index 2331b8b4f3..a3c92e7a4c 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/desc.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/desc.go @@ -47,6 +47,8 @@ type Desc struct { fqName string // help provides some helpful information about this metric. help string + // unit provides the unit of this metric. + unit string // constLabelPairs contains precalculated DTO label pairs based on // the constant labels. constLabelPairs []*dto.LabelPair @@ -66,6 +68,16 @@ type Desc struct { err error } +// DescOpt allows setting optional fields for NewDesc. +type DescOpt func(*Desc) + +// WithUnit sets the unit for a Desc. +func WithUnit(unit string) DescOpt { + return func(d *Desc) { + d.unit = unit + } +} + // NewDesc allocates and initializes a new Desc. Errors are recorded in the Desc // and will be reported on registration time. variableLabels and constLabels can // be nil if no such labels should be set. fqName must not be empty. @@ -89,14 +101,17 @@ func NewDesc(fqName, help string, variableLabels []string, constLabels Labels) * // // For constLabels, the label values are constant. Therefore, they are fully // specified in the Desc. See the Collector example for a usage pattern. -func (v2) NewDesc(fqName, help string, variableLabels ConstrainableLabels, constLabels Labels) *Desc { +func (v2) NewDesc(fqName, help string, variableLabels ConstrainableLabels, constLabels Labels, opts ...DescOpt) *Desc { d := &Desc{ fqName: fqName, help: help, variableLabels: variableLabels.compile(), } - //nolint:staticcheck // TODO: Don't use deprecated model.NameValidationScheme. - if !model.NameValidationScheme.IsValidMetricName(fqName) { + + for _, opt := range opts { + opt(d) + } + if !model.UTF8Validation.IsValidMetricName(fqName) { d.err = fmt.Errorf("%q is not a valid metric name", fqName) return d } @@ -150,11 +165,13 @@ func (v2) NewDesc(fqName, help string, variableLabels ConstrainableLabels, const d.id = xxh.Sum64() // Sort labelNames so that order doesn't matter for the hash. sort.Strings(labelNames) - // Now hash together (in this order) the help string and the sorted + // Now hash together (in this order) the help string, the unit string and the sorted // label names. xxh.Reset() xxh.WriteString(help) xxh.Write(separatorByteSlice) + xxh.WriteString(d.unit) + xxh.Write(separatorByteSlice) for _, labelName := range labelNames { xxh.WriteString(labelName) xxh.Write(separatorByteSlice) @@ -182,6 +199,15 @@ func NewInvalidDesc(err error) *Desc { } } +// Err returns an error that occurred during construction, if any. +// +// Calling this method is optional. It can be used to detect construction +// errors early, before invoking other methods on the Desc. If an error is +// present, later operations may not behave as expected. +func (d *Desc) Err() error { + return d.err +} + func (d *Desc) String() string { lpStrings := make([]string, 0, len(d.constLabelPairs)) for _, lp := range d.constLabelPairs { @@ -202,9 +228,10 @@ func (d *Desc) String() string { } } return fmt.Sprintf( - "Desc{fqName: %q, help: %q, constLabels: {%s}, variableLabels: {%s}}", + "Desc{fqName: %q, help: %q, unit: %q, constLabels: {%s}, variableLabels: {%s}}", d.fqName, d.help, + d.unit, strings.Join(lpStrings, ","), strings.Join(vlStrings, ","), ) diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/expvar_collector.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/expvar_collector.go index de5a856293..327746f433 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/expvar_collector.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/expvar_collector.go @@ -47,14 +47,14 @@ func (e *expvarCollector) Collect(ch chan<- Metric) { if expVar == nil { continue } - var v interface{} + var v any labels := make([]string, len(desc.variableLabels.names)) if err := json.Unmarshal([]byte(expVar.String()), &v); err != nil { ch <- NewInvalidMetric(desc, err) continue } - var processValue func(v interface{}, i int) - processValue = func(v interface{}, i int) { + var processValue func(v any, i int) + processValue = func(v any, i int) { if i >= len(labels) { copiedLabels := append(make([]string, 0, len(labels)), labels...) switch v := v.(type) { @@ -72,7 +72,7 @@ func (e *expvarCollector) Collect(ch chan<- Metric) { ch <- m return } - vm, ok := v.(map[string]interface{}) + vm, ok := v.(map[string]any) if !ok { return } diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/gauge.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/gauge.go index dd2eac9406..41e54bf270 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/gauge.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/gauge.go @@ -76,11 +76,12 @@ type GaugeVecOpts struct { // scenarios for Gauges and Counters, where the former tends to be Set-heavy and // the latter Inc-heavy. func NewGauge(opts GaugeOpts) Gauge { - desc := NewDesc( + desc := V2.NewDesc( BuildFQName(opts.Namespace, opts.Subsystem, opts.Name), opts.Help, - nil, + UnconstrainedLabels(nil), opts.ConstLabels, + WithUnit(opts.Unit), ) result := &gauge{desc: desc, labelPairs: desc.constLabelPairs} result.init(result) // Init self-collection. @@ -163,6 +164,7 @@ func (v2) NewGaugeVec(opts GaugeVecOpts) *GaugeVec { opts.Help, opts.VariableLabels, opts.ConstLabels, + WithUnit(opts.Unit), ) return &GaugeVec{ MetricVec: NewMetricVec(desc, func(lvs ...string) Metric { @@ -302,10 +304,11 @@ type GaugeFunc interface { // value of 1. Example: // https://github.com/prometheus/common/blob/8558a5b7db3c84fa38b4766966059a7bd5bfa2ee/version/info.go#L36-L56 func NewGaugeFunc(opts GaugeOpts, function func() float64) GaugeFunc { - return newValueFunc(NewDesc( + return newValueFunc(V2.NewDesc( BuildFQName(opts.Namespace, opts.Subsystem, opts.Name), opts.Help, - nil, + UnconstrainedLabels(nil), opts.ConstLabels, + WithUnit(opts.Unit), ), GaugeValue, function) } diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/go_collector_go116.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/go_collector_go116.go deleted file mode 100644 index 897a6e906b..0000000000 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/go_collector_go116.go +++ /dev/null @@ -1,122 +0,0 @@ -// Copyright 2021 The Prometheus Authors -// Licensed under the Apache License, Version 2.0 (the "License"); -// you may not use this file except in compliance with the License. -// You may obtain a copy of the License at -// -// http://www.apache.org/licenses/LICENSE-2.0 -// -// Unless required by applicable law or agreed to in writing, software -// distributed under the License is distributed on an "AS IS" BASIS, -// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -// See the License for the specific language governing permissions and -// limitations under the License. - -//go:build !go1.17 -// +build !go1.17 - -package prometheus - -import ( - "runtime" - "sync" - "time" -) - -type goCollector struct { - base baseGoCollector - - // ms... are memstats related. - msLast *runtime.MemStats // Previously collected memstats. - msLastTimestamp time.Time - msMtx sync.Mutex // Protects msLast and msLastTimestamp. - msMetrics memStatsMetrics - msRead func(*runtime.MemStats) // For mocking in tests. - msMaxWait time.Duration // Wait time for fresh memstats. - msMaxAge time.Duration // Maximum allowed age of old memstats. -} - -// NewGoCollector is the obsolete version of collectors.NewGoCollector. -// See there for documentation. -// -// Deprecated: Use collectors.NewGoCollector instead. -func NewGoCollector() Collector { - msMetrics := goRuntimeMemStats() - msMetrics = append(msMetrics, struct { - desc *Desc - eval func(*runtime.MemStats) float64 - valType ValueType - }{ - // This metric is omitted in Go1.17+, see https://github.com/prometheus/client_golang/issues/842#issuecomment-861812034 - desc: NewDesc( - memstatNamespace("gc_cpu_fraction"), - "The fraction of this program's available CPU time used by the GC since the program started.", - nil, nil, - ), - eval: func(ms *runtime.MemStats) float64 { return ms.GCCPUFraction }, - valType: GaugeValue, - }) - return &goCollector{ - base: newBaseGoCollector(), - msLast: &runtime.MemStats{}, - msRead: runtime.ReadMemStats, - msMaxWait: time.Second, - msMaxAge: 5 * time.Minute, - msMetrics: msMetrics, - } -} - -// Describe returns all descriptions of the collector. -func (c *goCollector) Describe(ch chan<- *Desc) { - c.base.Describe(ch) - for _, i := range c.msMetrics { - ch <- i.desc - } -} - -// Collect returns the current state of all metrics of the collector. -func (c *goCollector) Collect(ch chan<- Metric) { - var ( - ms = &runtime.MemStats{} - done = make(chan struct{}) - ) - // Start reading memstats first as it might take a while. - go func() { - c.msRead(ms) - c.msMtx.Lock() - c.msLast = ms - c.msLastTimestamp = time.Now() - c.msMtx.Unlock() - close(done) - }() - - // Collect base non-memory metrics. - c.base.Collect(ch) - - timer := time.NewTimer(c.msMaxWait) - select { - case <-done: // Our own ReadMemStats succeeded in time. Use it. - timer.Stop() // Important for high collection frequencies to not pile up timers. - c.msCollect(ch, ms) - return - case <-timer.C: // Time out, use last memstats if possible. Continue below. - } - c.msMtx.Lock() - if time.Since(c.msLastTimestamp) < c.msMaxAge { - // Last memstats are recent enough. Collect from them under the lock. - c.msCollect(ch, c.msLast) - c.msMtx.Unlock() - return - } - // If we are here, the last memstats are too old or don't exist. We have - // to wait until our own ReadMemStats finally completes. For that to - // happen, we have to release the lock. - c.msMtx.Unlock() - <-done - c.msCollect(ch, ms) -} - -func (c *goCollector) msCollect(ch chan<- Metric, ms *runtime.MemStats) { - for _, i := range c.msMetrics { - ch <- MustNewConstMetric(i.desc, i.valType, i.eval(ms)) - } -} diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/go_collector_latest.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/go_collector_latest.go index 6b8684731c..1db1c4be09 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/go_collector_latest.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/go_collector_latest.go @@ -98,7 +98,7 @@ type goCollector struct { // snapshot is always produced by Collect. mu sync.Mutex - // Contains all samples that has to retrieved from runtime/metrics (not all of them will be exposed). + // Contains all samples that have to be retrieved from runtime/metrics (not all of them will be exposed). sampleBuf []metrics.Sample // sampleMap allows lookup for MemStats metrics and runtime/metrics histograms for exact sums. sampleMap map[string]*metrics.Sample @@ -210,16 +210,26 @@ func NewGoCollector(opts ...func(o *internal.GoCollectorOptions)) Collector { sampleBuf = append(sampleBuf, metrics.Sample{Name: d.Name}) sampleMap[d.Name] = &sampleBuf[len(sampleBuf)-1] + // Extract unit from the runtime/metrics name (e.g., "/gc/heap/allocs:bytes" -> "bytes") + // and sanitize to match Prometheus naming conventions (e.g., "cpu-seconds" -> "cpu_seconds") + var unit string + if idx := strings.IndexRune(d.Name, ':'); idx >= 0 { + unit = d.Name[idx+1:] + unit = strings.ReplaceAll(unit, "-", "_") + unit = strings.ReplaceAll(unit, "*", "_") + unit = strings.ReplaceAll(unit, "/", "_per_") + } + var m collectorMetric if d.Kind == metrics.KindFloat64Histogram { _, hasSum := opt.RuntimeMetricSumForHist[d.Name] - unit := d.Name[strings.IndexRune(d.Name, ':')+1:] m = newBatchHistogram( - NewDesc( + V2.NewDesc( BuildFQName(namespace, subsystem, name), help, + UnconstrainedLabels(nil), nil, - nil, + WithUnit(unit), ), internal.RuntimeMetricsBucketsForUnit(bucketsMap[d.Name], unit), hasSum, @@ -230,6 +240,7 @@ func NewGoCollector(opts ...func(o *internal.GoCollectorOptions)) Collector { Subsystem: subsystem, Name: name, Help: help, + Unit: unit, }, ) } else { @@ -238,6 +249,7 @@ func NewGoCollector(opts ...func(o *internal.GoCollectorOptions)) Collector { Subsystem: subsystem, Name: name, Help: help, + Unit: unit, }) } metricSet = append(metricSet, m) diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/histogram.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/histogram.go index c453b754a7..88bae3b32c 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/histogram.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/histogram.go @@ -378,6 +378,9 @@ type HistogramOpts struct { // string. Help string + // Unit provides the unit of this Histogram. + Unit string + // ConstLabels are used to attach fixed labels to this metric. Metrics // with the same fully-qualified name must have the same label names in // their ConstLabels. @@ -522,11 +525,12 @@ type HistogramVecOpts struct { // for each bucket. func NewHistogram(opts HistogramOpts) Histogram { return newHistogram( - NewDesc( + V2.NewDesc( BuildFQName(opts.Namespace, opts.Subsystem, opts.Name), opts.Help, - nil, + UnconstrainedLabels(nil), opts.ConstLabels, + WithUnit(opts.Unit), ), opts, ) @@ -966,7 +970,7 @@ func (h *histogram) maybeReset( // We are using the possibly mocked h.now() rather than // time.Since(h.lastResetTime) to enable testing. if h.nativeHistogramMinResetDuration == 0 || // No reset configured. - h.resetScheduled || // Do not interefere if a reset is already scheduled. + h.resetScheduled || // Do not interfere if a reset is already scheduled. h.now().Sub(h.lastResetTime) < h.nativeHistogramMinResetDuration { return false } @@ -1053,8 +1057,8 @@ func (h *histogram) maybeWidenZeroBucket(hot, cold *histogramCounts) bool { atomic.StoreUint64(&cold.nativeHistogramZeroThresholdBits, math.Float64bits(newZeroThreshold)) // ...and then merge the newly deleted buckets into the wider zero // bucket. - mergeAndDeleteOrAddAndReset := func(hotBuckets, coldBuckets *sync.Map) func(k, v interface{}) bool { - return func(k, v interface{}) bool { + mergeAndDeleteOrAddAndReset := func(hotBuckets, coldBuckets *sync.Map) func(k, v any) bool { + return func(k, v any) bool { key := k.(int) bucket := v.(*int64) if key == smallestKey { @@ -1107,8 +1111,8 @@ func (h *histogram) doubleBucketWidth(hot, cold *histogramCounts) { // ...adjust the schema in the cold counts, too... atomic.StoreInt32(&cold.nativeHistogramSchema, coldSchema) // ...and then merge the cold buckets into the wider hot buckets. - merge := func(hotBuckets *sync.Map) func(k, v interface{}) bool { - return func(k, v interface{}) bool { + merge := func(hotBuckets *sync.Map) func(k, v any) bool { + return func(k, v any) bool { key := k.(int) bucket := v.(*int64) // Adjust key to match the bucket to merge into. @@ -1190,6 +1194,7 @@ func (v2) NewHistogramVec(opts HistogramVecOpts) *HistogramVec { opts.Help, opts.VariableLabels, opts.ConstLabels, + WithUnit(opts.Unit), ) return &HistogramVec{ MetricVec: NewMetricVec(desc, func(lvs ...string) Metric { @@ -1476,7 +1481,7 @@ func pickSchema(bucketFactor float64) int32 { func makeBuckets(buckets *sync.Map) ([]*dto.BucketSpan, []int64) { var ii []int - buckets.Range(func(k, v interface{}) bool { + buckets.Range(func(k, v any) bool { ii = append(ii, k.(int)) return true }) @@ -1553,8 +1558,8 @@ func addToBucket(buckets *sync.Map, key int, increment int64) bool { // according to the buckets ranged through. It then resets all buckets ranged // through to 0 (but leaves them in place so that they don't need to get // recreated on the next scrape). -func addAndReset(hotBuckets *sync.Map, bucketNumber *uint32) func(k, v interface{}) bool { - return func(k, v interface{}) bool { +func addAndReset(hotBuckets *sync.Map, bucketNumber *uint32) func(k, v any) bool { + return func(k, v any) bool { bucket := v.(*int64) if addToBucket(hotBuckets, k.(int), atomic.LoadInt64(bucket)) { atomic.AddUint32(bucketNumber, 1) @@ -1565,7 +1570,7 @@ func addAndReset(hotBuckets *sync.Map, bucketNumber *uint32) func(k, v interface } func deleteSyncMap(m *sync.Map) { - m.Range(func(k, v interface{}) bool { + m.Range(func(k, v any) bool { m.Delete(k) return true }) @@ -1573,7 +1578,7 @@ func deleteSyncMap(m *sync.Map) { func findSmallestKey(m *sync.Map) int { result := math.MaxInt32 - m.Range(func(k, v interface{}) bool { + m.Range(func(k, v any) bool { key := k.(int) if key < result { result = key diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/internal/difflib.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/internal/difflib.go index 7bac0da33d..2db270f216 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/internal/difflib.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/internal/difflib.go @@ -78,7 +78,7 @@ type OpCode struct { // notion, pairing up elements that appear uniquely in each sequence. // That, and the method here, appear to yield more intuitive difference // reports than does diff. This method appears to be the least vulnerable -// to synching up on blocks of "junk lines", though (like blank lines in +// to syncing up on blocks of "junk lines", though (like blank lines in // ordinary text files, or maybe "

" lines in HTML files). That may be // because this is the only method of the 3 that has a *concept* of // "junk" . @@ -567,7 +567,7 @@ type UnifiedDiff struct { func WriteUnifiedDiff(writer io.Writer, diff UnifiedDiff) error { buf := bufio.NewWriter(writer) defer buf.Flush() - wf := func(format string, args ...interface{}) error { + wf := func(format string, args ...any) error { _, err := fmt.Fprintf(buf, format, args...) return err } diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/labels.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/labels.go index 5fe8d3b4d2..a0285489a0 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/labels.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/labels.go @@ -184,6 +184,5 @@ func validateLabelValues(vals []string, expectedNumberOfValues int) error { } func checkLabelName(l string) bool { - //nolint:staticcheck // TODO: Don't use deprecated model.NameValidationScheme. - return model.NameValidationScheme.IsValidLabelName(l) && !strings.HasPrefix(l, reservedLabelPrefix) + return model.UTF8Validation.IsValidLabelName(l) && !strings.HasPrefix(l, reservedLabelPrefix) } diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/metric.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/metric.go index 76e59f1288..c5cb90adf8 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/metric.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/metric.go @@ -81,6 +81,9 @@ type Opts struct { // string. Help string + // Unit provides the unit of this metric as per https://prometheus.io/docs/specs/om + Unit string + // ConstLabels are used to attach fixed labels to this metric. Metrics // with the same fully-qualified name must have the same label names in // their ConstLabels. diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/process_collector_darwin.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/process_collector_darwin.go index b32c95fa3f..2b16298f40 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/process_collector_darwin.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/process_collector_darwin.go @@ -72,7 +72,13 @@ func getOpenFileCount() (float64, error) { } func (c *processCollector) processCollect(ch chan<- Metric) { - if procs, err := unix.SysctlKinfoProcSlice("kern.proc.pid", os.Getpid()); err == nil { + pid, err := c.pidFn() + if err != nil { + c.reportError(ch, nil, err) + return + } + + if procs, err := unix.SysctlKinfoProcSlice("kern.proc.pid", pid); err == nil { if len(procs) == 1 { startTime := float64(procs[0].Proc.P_starttime.Nano() / 1e9) ch <- MustNewConstMetric(c.startTime, GaugeValue, startTime) @@ -84,6 +90,11 @@ func (c *processCollector) processCollect(ch chan<- Metric) { c.reportError(ch, c.startTime, err) } + if pid != os.Getpid() { + c.reportError(ch, nil, fmt.Errorf("collecting metrics for pid %d is not supported on darwin: process metrics collection is limited to the current process (pid %d)", pid, os.Getpid())) + return + } + // The proc structure returned by kern.proc.pid above has an Rusage member, // but it is not filled in, so it needs to be fetched by getrusage(2). For // that call, the UTime, STime, and Maxrss members are filled out, but not diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/process_collector_windows.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/process_collector_windows.go index fa474289ef..c08dd05f03 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/process_collector_windows.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/process_collector_windows.go @@ -30,6 +30,10 @@ var ( procGetProcessMemoryInfo = modpsapi.NewProc("GetProcessMemoryInfo") procGetProcessHandleCount = modkernel32.NewProc("GetProcessHandleCount") + + openProcess = windows.OpenProcess + closeHandle = windows.CloseHandle + getProcessTimes = windows.GetProcessTimes ) type processMemoryCounters struct { @@ -79,10 +83,21 @@ func getProcessHandleCount(handle windows.Handle) (uint32, error) { } func (c *processCollector) processCollect(ch chan<- Metric) { - h := windows.CurrentProcess() + pid, err := c.pidFn() + if err != nil { + c.reportError(ch, nil, err) + return + } + + h, err := openProcess(windows.PROCESS_QUERY_INFORMATION|windows.PROCESS_VM_READ, false, uint32(pid)) + if err != nil { + c.reportError(ch, nil, err) + return + } + defer closeHandle(h) var startTime, exitTime, kernelTime, userTime windows.Filetime - err := windows.GetProcessTimes(h, &startTime, &exitTime, &kernelTime, &userTime) + err = getProcessTimes(h, &startTime, &exitTime, &kernelTime, &userTime) if err != nil { c.reportError(ch, nil, err) return diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/http.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/http.go index 763d99e362..368625c6a8 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/http.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/http.go @@ -37,10 +37,12 @@ import ( "fmt" "io" "net/http" + "slices" "strconv" "sync" "time" + dto "github.com/prometheus/client_model/go" "github.com/prometheus/common/expfmt" "github.com/prometheus/client_golang/internal/github.com/golang/gddo/httputil" @@ -74,11 +76,118 @@ func defaultCompressionFormats() []Compression { } var gzipPool = sync.Pool{ - New: func() interface{} { + New: func() any { return gzip.NewWriter(nil) }, } +// coalescingGatherer wraps a TransactionalGatherer to deduplicate concurrent +// Gather calls. When a Gather is already in flight, new callers join the +// existing cycle and receive the same result once it completes. The underlying +// done function is called exactly once, when the last joined caller releases. +// +// This prevents goroutine pile-up when the scrape rate is faster than the +// time collectors need to produce metrics. +type coalescingGatherer struct { + g prometheus.TransactionalGatherer + mu sync.Mutex + cycle *gatherCycle +} + +// gatherCycle tracks a single in-flight Gather and all HTTP handlers sharing it. +type gatherCycle struct { + ready chan struct{} // closed when Gather completes; happens-before reads of mfs/err/done + mfs []*dto.MetricFamily // canonical result, set before ready is closed; callers get a slices.Clone, the element values stay shared and must not be mutated + err error // set before ready is closed + done func() // underlying done callback; set before ready is closed + refs int // number of handlers using this cycle; protected by coalescingGatherer.mu +} + +var _ prometheus.TransactionalGatherer = (*coalescingGatherer)(nil) // compile-time interface check + +// errGatherPanicked is returned to callers that joined an in-flight coalesced +// Gather whose underlying gatherer panicked. See the panic guard in Gather for +// why joiners receive this error instead of the panic itself. +var errGatherPanicked = errors.New("coalesced gather panicked") + +func (c *coalescingGatherer) Gather() ([]*dto.MetricFamily, func(), error) { + c.mu.Lock() + if cy := c.cycle; cy != nil { + // c.cycle is non-nil while Gather runs or handlers are still consuming its results. + cy.refs++ + c.mu.Unlock() + <-cy.ready + // Each caller gets its own slice header so it can filter or reorder + // without racing other callers sharing this cycle. The *dto.MetricFamily + // values remain shared and must not be mutated in place. + return slices.Clone(cy.mfs), c.releaseFunc(cy), cy.err + } + cy := &gatherCycle{ + ready: make(chan struct{}), + done: func() {}, + refs: 1, + } + c.cycle = cy + c.mu.Unlock() + + // Guard against a panic in c.g.Gather. The common case, a panicking + // Collector, never reaches here: Registry.Gather recovers Collector panics + // and returns them as an error. This guard only covers the rare case where + // the wrapped gatherer itself panics. + // + // We deliberately do not recover: the leader's panic propagates and is + // handled by net/http exactly as it would be without coalescing. We only + // set cy.err before closing cy.ready so joiners waiting on <-cy.ready fail + // with that error instead of silently returning an empty, successful + // response, and we clear c.cycle so the next Gather starts a fresh cycle. + // + // The leader never runs its own releaseFunc on this path, so its ref is + // not decremented; that is harmless because the cycle is detached (c.cycle + // = nil) and cy.done is still the no-op set at construction (c.g.Gather + // panicked before assigning a real done). If cy.done is ever made non-nil + // before c.g.Gather runs, this path would need to release it. + panicked := true + defer func() { + if panicked { + c.mu.Lock() + if c.cycle == cy { + c.cycle = nil + } + c.mu.Unlock() + cy.err = errGatherPanicked // set before close: happens-before joiners' reads + close(cy.ready) + } + }() + cy.mfs, cy.done, cy.err = c.g.Gather() + panicked = false + close(cy.ready) // happens-before joiners' reads of cy.mfs/err/done + + // Clone here too so cy.mfs stays the write-once canonical slice: joiners + // read it concurrently via slices.Clone, so the leader must not hand out + // (and potentially reorder) the same backing array. + return slices.Clone(cy.mfs), c.releaseFunc(cy), cy.err +} + +// releaseFunc returns the done callback for one caller sharing cy. +// When the last caller releases, the underlying done is invoked and the +// cycle is cleared so the next Gather starts fresh. +func (c *coalescingGatherer) releaseFunc(cy *gatherCycle) func() { + return func() { + c.mu.Lock() + cy.refs-- + if cy.refs > 0 { + c.mu.Unlock() + return + } + // Last caller. + if c.cycle == cy { + c.cycle = nil + } + c.mu.Unlock() + cy.done() // called outside the lock to avoid holding it during done + } +} + // Handler returns an http.Handler for the prometheus.DefaultGatherer, using // default HandlerOpts, i.e. it reports the first error as an HTTP error, it has // no error logging, and it applies compression if requested by the client. @@ -89,6 +198,10 @@ var gzipPool = sync.Pool{ // metrics used for instrumentation will be shared between them, providing // global scrape counts. // +// The handler supports filtering metrics by name using the `name[]` query parameter. +// Multiple metric names can be specified by providing the parameter multiple times. +// When no name[] parameters are provided, all metrics are returned. +// // This function is meant to cover the bulk of basic use cases. If you are doing // anything that requires more customization (including using a non-default // Gatherer, different instrumentation, and non-default HandlerOpts), use the @@ -105,6 +218,10 @@ func Handler() http.Handler { // Gatherers, with non-default HandlerOpts, and/or with custom (or no) // instrumentation. Use the InstrumentMetricHandler function to apply the same // kind of instrumentation as it is used by the Handler function. +// +// The handler supports filtering metrics by name using the `name[]` query parameter. +// Multiple metric names can be specified by providing the parameter multiple times. +// When no name[] parameters are provided, all metrics are returned. func HandlerFor(reg prometheus.Gatherer, opts HandlerOpts) http.Handler { return HandlerForTransactional(prometheus.ToTransactionalGatherer(reg), opts) } @@ -112,7 +229,15 @@ func HandlerFor(reg prometheus.Gatherer, opts HandlerOpts) http.Handler { // HandlerForTransactional is like HandlerFor, but it uses transactional gather, which // can safely change in-place returned *dto.MetricFamily before call to `Gather` and after // call to `done` of that `Gather`. +// +// The handler supports filtering metrics by name using the `name[]` query parameter. +// Multiple metric names can be specified by providing the parameter multiple times. +// When no name[] parameters are provided, all metrics are returned. func HandlerForTransactional(reg prometheus.TransactionalGatherer, opts HandlerOpts) http.Handler { + if opts.CoalesceGather { + reg = &coalescingGatherer{g: reg} + } + var ( inFlightSem chan struct{} errCnt = prometheus.NewCounterVec( @@ -214,12 +339,14 @@ func HandlerForTransactional(reg prometheus.TransactionalGatherer, opts HandlerO rsp.Header().Set(contentEncodingHeader, encodingHeader) } - var enc expfmt.Encoder + var ( + enc expfmt.Encoder + encOpts []expfmt.EncoderOption + ) if opts.EnableOpenMetricsTextCreatedSamples { - enc = expfmt.NewEncoder(w, contentType, expfmt.WithCreatedLines()) - } else { - enc = expfmt.NewEncoder(w, contentType) + encOpts = append(encOpts, expfmt.WithCreatedLines()) } + enc = expfmt.NewEncoder(w, contentType, encOpts...) // handleError handles the error according to opts.ErrorHandling // and returns true if we have to abort after the handling. @@ -245,7 +372,21 @@ func HandlerForTransactional(reg prometheus.TransactionalGatherer, opts HandlerO return false } + // Build metric name filter set from query params (if any) + var metricFilter map[string]struct{} + if metricNames := req.URL.Query()["name[]"]; len(metricNames) > 0 { + metricFilter = make(map[string]struct{}, len(metricNames)) + for _, name := range metricNames { + metricFilter[name] = struct{}{} + } + } + for _, mf := range mfs { + if metricFilter != nil { + if _, ok := metricFilter[mf.GetName()]; !ok { + continue + } + } if handleError(enc.Encode(mf)) { return } @@ -353,7 +494,7 @@ const ( // log.Logger from the standard library implements this interface, and it is // easy to implement by custom loggers, if they don't do so already anyway. type Logger interface { - Println(v ...interface{}) + Println(v ...any) } // HandlerOpts specifies options how to serve metrics via an http.Handler. The @@ -400,6 +541,40 @@ type HandlerOpts struct { // Service Unavailable and a suitable message in the body. If // MaxRequestsInFlight is 0 or negative, no limit is applied. MaxRequestsInFlight int + // CoalesceGather, if true, deduplicates concurrent Gather calls so that + // only one collection runs at a time. Additional requests that arrive + // while a Gather is in flight will receive the same result once it + // completes. This prevents goroutine pile-up when the scrape rate is + // faster than the time collectors need to produce metrics. + // + // When enabled, concurrent scrapers share a single metric snapshot per + // collection cycle. Each request receives its own copy of the returned + // slice, so filtering or reordering it (for example via name[] query + // parameters) is safe. The pointed-to MetricFamily values are still + // shared: the built-in handler only reads them, so this is safe in + // practice, but a custom TransactionalGatherer that mutates the returned + // families in place after Gather returns must not use this option. + // + // Because the snapshot is shared, a request that arrives while a cycle is + // in flight receives that cycle's result even though collection began + // before the request; two scrapers joined to one cycle observe the same + // timestamps rather than independently gathered data. + // + // Consider using CoalesceGather together with Timeout. Timeout bounds the + // client-facing response time and keeps at most one collection running at + // a time, but it does not cancel the underlying Gather: a joined request + // that times out still holds a MaxRequestsInFlight slot until the shared + // collection completes. + // + // Panic handling: a panicking Collector is already turned into an error by + // the registry, so joiners receive that error like any other. In the rare + // case where the wrapped gatherer itself panics, the panicking request's + // panic propagates as usual (handled by net/http), while requests that + // joined the same cycle receive an error rather than an empty response. + // + // NOTE: This option is experimental and may change or be removed in a + // future release. + CoalesceGather bool // If handling a request takes longer than Timeout, it is responded to // with 503 ServiceUnavailable and a suitable Message. No timeout is // applied if Timeout is 0 or negative. Note that with the current @@ -407,8 +582,9 @@ type HandlerOpts struct { // described above (and even that only if sending of the body hasn't // started yet), while the bulk work of gathering all the metrics keeps // running in the background (with the eventual result to be thrown - // away). Until the implementation is improved, it is recommended to - // implement a separate timeout in potentially slow Collectors. + // away). When CoalesceGather is enabled, only one such background Gather + // can be in flight at a time. It is also recommended to implement a + // separate timeout in potentially slow Collectors. Timeout time.Duration // If true, the experimental OpenMetrics encoding is added to the // possible options during content negotiation. Note that Prometheus @@ -460,7 +636,7 @@ func httpError(rsp http.ResponseWriter, err error) { // negotiateEncodingWriter reads the Accept-Encoding header from a request and // selects the right compression based on an allow-list of supported -// compressions. It returns a writer implementing the compression and an the +// compressions. It returns a writer implementing the compression and the // correct value that the caller can set in the response header. func negotiateEncodingWriter(r *http.Request, rw io.Writer, compressions []string) (_ io.Writer, encodingHeaderValue string, closeWriter func(), _ error) { if len(compressions) == 0 { diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/instrument_client.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/instrument_client.go index d3482c40ca..0248579742 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/instrument_client.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/instrument_client.go @@ -75,10 +75,10 @@ func InstrumentRoundTripperCounter(counter *prometheus.CounterVec, next http.Rou resp, err := next.RoundTrip(r) if err == nil { l := labels(code, method, r.Method, resp.StatusCode, rtOpts.extraMethods...) - for label, resolve := range rtOpts.extraLabelsFromCtx { - l[label] = resolve(resp.Request.Context()) + for label, resolve := range rtOpts.extraLabelsFromRequest { + l[label] = resolve(resp.Request) } - addWithExemplar(counter.With(l), 1, rtOpts.getExemplarFn(r.Context())) + addWithExemplar(counter.With(l), 1, rtOpts.getExemplarFn(r)) } return resp, err } @@ -119,10 +119,10 @@ func InstrumentRoundTripperDuration(obs prometheus.ObserverVec, next http.RoundT resp, err := next.RoundTrip(r) if err == nil { l := labels(code, method, r.Method, resp.StatusCode, rtOpts.extraMethods...) - for label, resolve := range rtOpts.extraLabelsFromCtx { - l[label] = resolve(resp.Request.Context()) + for label, resolve := range rtOpts.extraLabelsFromRequest { + l[label] = resolve(resp.Request) } - observeWithExemplar(obs.With(l), time.Since(start).Seconds(), rtOpts.getExemplarFn(r.Context())) + observeWithExemplar(obs.With(l), time.Since(start).Seconds(), rtOpts.getExemplarFn(r)) } return resp, err } diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/instrument_server.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/instrument_server.go index 9332b0249a..9dec091ac7 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/instrument_server.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/instrument_server.go @@ -28,24 +28,36 @@ import ( // magicString is used for the hacky label test in checkLabels. Remove once fixed. const magicString = "zZgWfBxLqvG8kc8IMv3POi2Bb0tZI3vAnBx+gBaFi9FyPzB/CzKUer1yufDa" -// observeWithExemplar is a wrapper for [prometheus.ExemplarAdder.ExemplarObserver], -// which falls back to [prometheus.Observer.Observe] if no labels are provided. +// observeWithExemplar records val on obs. If labels is non-nil and obs +// implements [prometheus.ExemplarObserver], the exemplar is attached via +// ObserveWithExemplar; otherwise the exemplar is dropped and the value is +// recorded with a plain [prometheus.Observer.Observe]. This mirrors the +// safe-cast pattern in [prometheus.Timer.ObserveDurationWithExemplar] and +// ensures we never panic when callers pass an ObserverVec backed by a +// summary, which cannot carry exemplars in the Prometheus exposition format. func observeWithExemplar(obs prometheus.Observer, val float64, labels map[string]string) { - if labels == nil { - obs.Observe(val) - return + if labels != nil { + if eo, ok := obs.(prometheus.ExemplarObserver); ok { + eo.ObserveWithExemplar(val, labels) + return + } } - obs.(prometheus.ExemplarObserver).ObserveWithExemplar(val, labels) + obs.Observe(val) } -// addWithExemplar is a wrapper for [prometheus.ExemplarAdder.AddWithExemplar], -// which falls back to [prometheus.Counter.Add] if no labels are provided. -func addWithExemplar(obs prometheus.Counter, val float64, labels map[string]string) { - if labels == nil { - obs.Add(val) - return +// addWithExemplar records val on c. If labels is non-nil and c implements +// [prometheus.ExemplarAdder], the exemplar is attached via AddWithExemplar; +// otherwise the exemplar is dropped and the value is recorded with a plain +// [prometheus.Counter.Add]. The safe-cast keeps the helper robust against +// custom Counter implementations that do not advertise exemplar support. +func addWithExemplar(c prometheus.Counter, val float64, labels map[string]string) { + if labels != nil { + if ea, ok := c.(prometheus.ExemplarAdder); ok { + ea.AddWithExemplar(val, labels) + return + } } - obs.(prometheus.ExemplarAdder).AddWithExemplar(val, labels) + c.Add(val) } // InstrumentHandlerInFlight is a middleware that wraps the provided @@ -97,10 +109,10 @@ func InstrumentHandlerDuration(obs prometheus.ObserverVec, next http.Handler, op next.ServeHTTP(d, r) l := labels(code, method, r.Method, d.Status(), hOpts.extraMethods...) - for label, resolve := range hOpts.extraLabelsFromCtx { - l[label] = resolve(r.Context()) + for label, resolve := range hOpts.extraLabelsFromRequest { + l[label] = resolve(r) } - observeWithExemplar(obs.With(l), time.Since(now).Seconds(), hOpts.getExemplarFn(r.Context())) + observeWithExemplar(obs.With(l), time.Since(now).Seconds(), hOpts.getExemplarFn(r)) } } @@ -108,10 +120,10 @@ func InstrumentHandlerDuration(obs prometheus.ObserverVec, next http.Handler, op now := time.Now() next.ServeHTTP(w, r) l := labels(code, method, r.Method, 0, hOpts.extraMethods...) - for label, resolve := range hOpts.extraLabelsFromCtx { - l[label] = resolve(r.Context()) + for label, resolve := range hOpts.extraLabelsFromRequest { + l[label] = resolve(r) } - observeWithExemplar(obs.With(l), time.Since(now).Seconds(), hOpts.getExemplarFn(r.Context())) + observeWithExemplar(obs.With(l), time.Since(now).Seconds(), hOpts.getExemplarFn(r)) } } @@ -147,10 +159,10 @@ func InstrumentHandlerCounter(counter *prometheus.CounterVec, next http.Handler, next.ServeHTTP(d, r) l := labels(code, method, r.Method, d.Status(), hOpts.extraMethods...) - for label, resolve := range hOpts.extraLabelsFromCtx { - l[label] = resolve(r.Context()) + for label, resolve := range hOpts.extraLabelsFromRequest { + l[label] = resolve(r) } - addWithExemplar(counter.With(l), 1, hOpts.getExemplarFn(r.Context())) + addWithExemplar(counter.With(l), 1, hOpts.getExemplarFn(r)) } } @@ -158,10 +170,10 @@ func InstrumentHandlerCounter(counter *prometheus.CounterVec, next http.Handler, next.ServeHTTP(w, r) l := labels(code, method, r.Method, 0, hOpts.extraMethods...) - for label, resolve := range hOpts.extraLabelsFromCtx { - l[label] = resolve(r.Context()) + for label, resolve := range hOpts.extraLabelsFromRequest { + l[label] = resolve(r) } - addWithExemplar(counter.With(l), 1, hOpts.getExemplarFn(r.Context())) + addWithExemplar(counter.With(l), 1, hOpts.getExemplarFn(r)) } } @@ -200,10 +212,10 @@ func InstrumentHandlerTimeToWriteHeader(obs prometheus.ObserverVec, next http.Ha now := time.Now() d := newDelegator(w, func(status int) { l := labels(code, method, r.Method, status, hOpts.extraMethods...) - for label, resolve := range hOpts.extraLabelsFromCtx { - l[label] = resolve(r.Context()) + for label, resolve := range hOpts.extraLabelsFromRequest { + l[label] = resolve(r) } - observeWithExemplar(obs.With(l), time.Since(now).Seconds(), hOpts.getExemplarFn(r.Context())) + observeWithExemplar(obs.With(l), time.Since(now).Seconds(), hOpts.getExemplarFn(r)) }) next.ServeHTTP(d, r) } @@ -244,10 +256,10 @@ func InstrumentHandlerRequestSize(obs prometheus.ObserverVec, next http.Handler, size := computeApproximateRequestSize(r) l := labels(code, method, r.Method, d.Status(), hOpts.extraMethods...) - for label, resolve := range hOpts.extraLabelsFromCtx { - l[label] = resolve(r.Context()) + for label, resolve := range hOpts.extraLabelsFromRequest { + l[label] = resolve(r) } - observeWithExemplar(obs.With(l), float64(size), hOpts.getExemplarFn(r.Context())) + observeWithExemplar(obs.With(l), float64(size), hOpts.getExemplarFn(r)) } } @@ -256,10 +268,10 @@ func InstrumentHandlerRequestSize(obs prometheus.ObserverVec, next http.Handler, size := computeApproximateRequestSize(r) l := labels(code, method, r.Method, 0, hOpts.extraMethods...) - for label, resolve := range hOpts.extraLabelsFromCtx { - l[label] = resolve(r.Context()) + for label, resolve := range hOpts.extraLabelsFromRequest { + l[label] = resolve(r) } - observeWithExemplar(obs.With(l), float64(size), hOpts.getExemplarFn(r.Context())) + observeWithExemplar(obs.With(l), float64(size), hOpts.getExemplarFn(r)) } } @@ -296,10 +308,10 @@ func InstrumentHandlerResponseSize(obs prometheus.ObserverVec, next http.Handler next.ServeHTTP(d, r) l := labels(code, method, r.Method, d.Status(), hOpts.extraMethods...) - for label, resolve := range hOpts.extraLabelsFromCtx { - l[label] = resolve(r.Context()) + for label, resolve := range hOpts.extraLabelsFromRequest { + l[label] = resolve(r) } - observeWithExemplar(obs.With(l), float64(d.Written()), hOpts.getExemplarFn(r.Context())) + observeWithExemplar(obs.With(l), float64(d.Written()), hOpts.getExemplarFn(r)) }) } @@ -366,7 +378,7 @@ func checkLabels(c prometheus.Collector) (code, method bool) { panic("metric partitioned with non-supported labels") } } - return + return code, method } func isLabelCurried(c prometheus.Collector, label string) bool { diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/option.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/option.go index 5d4383aa14..d4c0954f36 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/option.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/promhttp/option.go @@ -15,6 +15,7 @@ package promhttp import ( "context" + "net/http" "github.com/prometheus/client_golang/prometheus" ) @@ -24,28 +25,31 @@ type Option interface { apply(*options) } +// LabelValueFromRequest is used to compute the label value from request. +type LabelValueFromRequest func(request *http.Request) string + // LabelValueFromCtx are used to compute the label value from request context. // Context can be filled with values from request through middleware. type LabelValueFromCtx func(ctx context.Context) string // options store options for both a handler or round tripper. type options struct { - extraMethods []string - getExemplarFn func(requestCtx context.Context) prometheus.Labels - extraLabelsFromCtx map[string]LabelValueFromCtx + extraMethods []string + getExemplarFn func(req *http.Request) prometheus.Labels + extraLabelsFromRequest map[string]LabelValueFromRequest } func defaultOptions() *options { return &options{ - getExemplarFn: func(ctx context.Context) prometheus.Labels { return nil }, - extraLabelsFromCtx: map[string]LabelValueFromCtx{}, + getExemplarFn: func(req *http.Request) prometheus.Labels { return nil }, + extraLabelsFromRequest: map[string]LabelValueFromRequest{}, } } func (o *options) emptyDynamicLabels() prometheus.Labels { labels := prometheus.Labels{} - for label := range o.extraLabelsFromCtx { + for label := range o.extraLabelsFromRequest { labels[label] = "" } @@ -66,19 +70,39 @@ func WithExtraMethods(methods ...string) Option { }) } -// WithExemplarFromContext allows to inject function that will get exemplar from context that will be put to counter and histogram metrics. +// WithExemplarFromRequest allows you to inject a function that will get exemplar from request that will be put to counter and histogram metrics. // If the function returns nil labels or the metric does not support exemplars, no exemplar will be added (noop), but // metric will continue to observe/increment. -func WithExemplarFromContext(getExemplarFn func(requestCtx context.Context) prometheus.Labels) Option { +func WithExemplarFromRequest(getExemplarFn func(req *http.Request) prometheus.Labels) Option { return optionApplyFunc(func(o *options) { o.getExemplarFn = getExemplarFn }) } +// WithExemplarFromContext allows you to inject a function that will get exemplar from context that will be put to counter and histogram metrics. +// If the function returns nil labels or the metric does not support exemplars, no exemplar will be added (noop), but +// metric will continue to observe/increment. +func WithExemplarFromContext(getExemplarFn func(requestCtx context.Context) prometheus.Labels) Option { + return optionApplyFunc(func(o *options) { + o.getExemplarFn = func(req *http.Request) prometheus.Labels { + return getExemplarFn(req.Context()) + } + }) +} + +// WithLabelFromRequest registers a label for dynamic resolution with access to the request. +func WithLabelFromRequest(name string, valueFn LabelValueFromRequest) Option { + return optionApplyFunc(func(o *options) { + o.extraLabelsFromRequest[name] = valueFn + }) +} + // WithLabelFromCtx registers a label for dynamic resolution with access to context. // See the example for ExampleInstrumentHandlerWithLabelResolver for example usage func WithLabelFromCtx(name string, valueFn LabelValueFromCtx) Option { return optionApplyFunc(func(o *options) { - o.extraLabelsFromCtx[name] = valueFn + o.extraLabelsFromRequest[name] = func(req *http.Request) string { + return valueFn(req.Context()) + } }) } diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/registry.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/registry.go index c6fd2f58b7..ed0681c8b4 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/registry.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/registry.go @@ -214,6 +214,19 @@ func (err AlreadyRegisteredError) Error() string { // by a Gatherer to report multiple errors during MetricFamily gathering. type MultiError []error +// SafeMultiError is a thread-safe wrapper around MultiError using a mutex. +type SafeMultiError struct { + mu sync.Mutex + errs MultiError +} + +// Appends the provided error to the contained MultiError in a thread-safe way. +func (s *SafeMultiError) Append(err error) { + s.mu.Lock() + s.errs.Append(err) + s.mu.Unlock() +} + // Error formats the contained errors as a bullet point list, preceded by the // total number of errors. Note that this results in a multi-line string. func (errs MultiError) Error() string { @@ -408,6 +421,16 @@ func (r *Registry) MustRegister(cs ...Collector) { } } +// MustGather implements Gatherer. +// Wraps around Gather and panics if Gather fails for any reason. +func (r *Registry) MustGather() []*dto.MetricFamily { + mfs, err := r.Gather() + if err != nil { + panic(err) + } + return mfs +} + // Gather implements Gatherer. func (r *Registry) Gather() ([]*dto.MetricFamily, error) { r.mtx.RLock() @@ -423,7 +446,7 @@ func (r *Registry) Gather() ([]*dto.MetricFamily, error) { uncheckedMetricChan = make(chan Metric, capMetricChan) metricHashes = map[uint64]struct{}{} wg sync.WaitGroup - errs MultiError // The collected errors to return in the end. + safeErrs = &SafeMultiError{} // To collect errors in a threadsafe way registeredDescIDs map[uint64]struct{} // Only used for pedantic checks ) @@ -453,9 +476,9 @@ func (r *Registry) Gather() ([]*dto.MetricFamily, error) { for { select { case collector := <-checkedCollectors: - collector.Collect(checkedMetricChan) + safeErrs.Append((safeCollect(collector, checkedMetricChan))) case collector := <-uncheckedCollectors: - collector.Collect(uncheckedMetricChan) + safeErrs.Append(safeCollect(collector, uncheckedMetricChan)) default: return } @@ -499,7 +522,7 @@ func (r *Registry) Gather() ([]*dto.MetricFamily, error) { cmc = nil break } - errs.Append(processMetric( + safeErrs.Append(processMetric( metric, metricFamiliesByName, metricHashes, registeredDescIDs, @@ -509,7 +532,7 @@ func (r *Registry) Gather() ([]*dto.MetricFamily, error) { umc = nil break } - errs.Append(processMetric( + safeErrs.Append(processMetric( metric, metricFamiliesByName, metricHashes, nil, @@ -526,7 +549,7 @@ func (r *Registry) Gather() ([]*dto.MetricFamily, error) { cmc = nil break } - errs.Append(processMetric( + safeErrs.Append(processMetric( metric, metricFamiliesByName, metricHashes, registeredDescIDs, @@ -536,7 +559,7 @@ func (r *Registry) Gather() ([]*dto.MetricFamily, error) { umc = nil break } - errs.Append(processMetric( + safeErrs.Append(processMetric( metric, metricFamiliesByName, metricHashes, nil, @@ -556,7 +579,8 @@ func (r *Registry) Gather() ([]*dto.MetricFamily, error) { break } } - return internal.NormalizeMetricFamilies(metricFamiliesByName), errs.MaybeUnwrap() + + return internal.NormalizeMetricFamilies(metricFamiliesByName), safeErrs.errs.MaybeUnwrap() } // Describe implements Collector. @@ -571,6 +595,24 @@ func (r *Registry) Describe(ch chan<- *Desc) { } } +// Helper wrapper around Collector.Collect. +// It tries to collect from the channel, recovers on panic and +// if it has recovered from a panic, then it sends an InvalidMetric into +// the channel with an InvalidDesc, and an error that includes a stack trace. +func safeCollect(c Collector, ch chan<- Metric) (err error) { + defer func() { + if r := recover(); r != nil { + buf := make([]byte, 64<<10) // 64 KB + n := runtime.Stack(buf, false) + err = fmt.Errorf("prometheus collector panic recovered: type=%T: error=%v\nstack trace=%s", c, r, buf[:n]) + ch <- NewInvalidMetric(NewInvalidDesc(err), err) + } + }() + c.Collect(ch) + + return err +} + // Collect implements Collector. func (r *Registry) Collect(ch chan<- Metric) { r.mtx.RLock() @@ -599,10 +641,12 @@ func WriteToTextfile(filename string, g Gatherer) error { mfs, err := g.Gather() if err != nil { + tmp.Close() return err } for _, mf := range mfs { if _, err := expfmt.MetricFamilyToText(tmp, mf); err != nil { + tmp.Close() return err } } @@ -685,6 +729,9 @@ func processMetric( metricFamily = &dto.MetricFamily{} metricFamily.Name = proto.String(desc.fqName) metricFamily.Help = proto.String(desc.help) + if desc.unit != "" { + metricFamily.Unit = proto.String(desc.unit) + } // TODO(beorn7): Simplify switch once Desc has type. switch { case dtoMetric.Gauge != nil: diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/summary.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/summary.go index ac5203c6fa..c12b8d13d4 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/summary.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/summary.go @@ -101,6 +101,9 @@ type SummaryOpts struct { // string. Help string + // Unit provides the unit of this Summary. + Unit string + // ConstLabels are used to attach fixed labels to this metric. Metrics // with the same fully-qualified name must have the same label names in // their ConstLabels. @@ -181,11 +184,12 @@ type SummaryVecOpts struct { // NewSummary creates a new Summary based on the provided SummaryOpts. func NewSummary(opts SummaryOpts) Summary { return newSummary( - NewDesc( + V2.NewDesc( BuildFQName(opts.Namespace, opts.Subsystem, opts.Name), opts.Help, - nil, + UnconstrainedLabels(nil), opts.ConstLabels, + WithUnit(opts.Unit), ), opts, ) @@ -578,6 +582,7 @@ func (v2) NewSummaryVec(opts SummaryVecOpts) *SummaryVec { opts.Help, opts.VariableLabels, opts.ConstLabels, + WithUnit(opts.Unit), ) return &SummaryVec{ MetricVec: NewMetricVec(desc, func(lvs ...string) Metric { diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/timer.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/timer.go index 52344fef53..c1318ffb51 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/timer.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/timer.go @@ -37,10 +37,10 @@ type Timer struct { // or // // func TimeMeWithExemplar() { -// timer := NewTimer(myHistogram) -// defer timer.ObserveDurationWithExemplar(exemplar) -// // Do actual work. -// } +// timer := NewTimer(myHistogram) +// defer timer.ObserveDurationWithExemplar(exemplar) +// // Do actual work. +// } func NewTimer(o Observer) *Timer { return &Timer{ begin: time.Now(), @@ -66,7 +66,7 @@ func (t *Timer) ObserveDuration() time.Duration { // ObserveDurationWithExemplar is like ObserveDuration, but it will also // observe exemplar with the duration unless exemplar is nil or provided Observer can't -// be casted to ExemplarObserver. +// be cast to ExemplarObserver. func (t *Timer) ObserveDurationWithExemplar(exemplar Labels) time.Duration { d := time.Since(t.begin) eo, ok := t.observer.(ExemplarObserver) diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/vec.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/vec.go index 487b466563..121d2a9639 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/vec.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/vec.go @@ -193,9 +193,11 @@ func (m *MetricVec) CurryWith(labels Labels) (*MetricVec, error) { // // Keeping the Metric for later use is possible (and should be considered if // performance is critical), but keep in mind that Reset, DeleteLabelValues and -// Delete can be used to delete the Metric from the MetricVec. In that case, the -// Metric will still exist, but it will not be exported anymore, even if a -// Metric with the same label values is created later. +// Delete can be used to delete the Metric from the MetricVec. In that case, if +// you have previously kept a reference to that Metric, the Metric object still +// exists and can be used, but it will not be exported anymore. If a Metric with +// the same label values is created later, updates to the old Metric reference +// will not be exported. // // An error is returned if the number of label values is not the same as the // number of variable labels in Desc (minus any curried labels). @@ -657,7 +659,7 @@ func inlineLabelValues(lvs []string, curry []curriedLabelValue) []string { } var labelsPool = &sync.Pool{ - New: func() interface{} { + New: func() any { return make(Labels) }, } diff --git a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/wrap.go b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/wrap.go index 2ed1285068..697f55558b 100644 --- a/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/wrap.go +++ b/tests/e2e/vendor/github.com/prometheus/client_golang/prometheus/wrap.go @@ -230,6 +230,7 @@ func wrapDesc(desc *Desc, prefix string, labels Labels) *Desc { return &Desc{ fqName: desc.fqName, help: desc.help, + unit: desc.unit, variableLabels: desc.variableLabels, constLabelPairs: desc.constLabelPairs, err: fmt.Errorf("attempted wrapping with already existing label name %q", ln), @@ -238,8 +239,8 @@ func wrapDesc(desc *Desc, prefix string, labels Labels) *Desc { constLabels[ln] = lv } // NewDesc will do remaining validations. - newDesc := V2.NewDesc(prefix+desc.fqName, desc.help, desc.variableLabels, constLabels) - // Propagate errors if there was any. This will override any errer + newDesc := V2.NewDesc(prefix+desc.fqName, desc.help, desc.variableLabels, constLabels, WithUnit(desc.unit)) + // Propagate errors if there was any. This will override any error // created by NewDesc above, i.e. earlier errors get precedence. if desc.err != nil { newDesc.err = desc.err diff --git a/tests/e2e/vendor/github.com/prometheus/common/expfmt/expfmt.go b/tests/e2e/vendor/github.com/prometheus/common/expfmt/expfmt.go index 4e4c13e724..10bf35708c 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/expfmt/expfmt.go +++ b/tests/e2e/vendor/github.com/prometheus/common/expfmt/expfmt.go @@ -122,7 +122,7 @@ func NewOpenMetricsFormat(version string) (Format, error) { // removed. func (f Format) WithEscapingScheme(s model.EscapingScheme) Format { var terms []string - for _, p := range strings.Split(string(f), ";") { + for p := range strings.SplitSeq(string(f), ";") { toks := strings.Split(p, "=") if len(toks) != 2 { trimmed := strings.TrimSpace(p) @@ -194,7 +194,7 @@ func (f Format) FormatType() FormatType { // "escaping" term exists, that will be used. Otherwise, the global default will // be returned. func (f Format) ToEscapingScheme() model.EscapingScheme { - for _, p := range strings.Split(string(f), ";") { + for p := range strings.SplitSeq(string(f), ";") { toks := strings.Split(p, "=") if len(toks) != 2 { continue diff --git a/tests/e2e/vendor/github.com/prometheus/common/expfmt/openmetrics_create.go b/tests/e2e/vendor/github.com/prometheus/common/expfmt/openmetrics_create.go index 21b93bca36..0480e7af5b 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/expfmt/openmetrics_create.go +++ b/tests/e2e/vendor/github.com/prometheus/common/expfmt/openmetrics_create.go @@ -30,7 +30,6 @@ import ( type encoderOption struct { withCreatedLines bool - withUnit bool } type EncoderOption func(*encoderOption) @@ -51,17 +50,6 @@ func WithCreatedLines() EncoderOption { } } -// WithUnit is an EncoderOption enabling a set unit to be written to the output -// and to be added to the metric name, if it's not there already, as a suffix. -// Without opting in this way, the unit will not be added to the metric name and, -// on top of that, the unit will not be passed onto the output, even if it -// were declared in the *dto.MetricFamily struct, i.e. even if in.Unit !=nil. -func WithUnit() EncoderOption { - return func(t *encoderOption) { - t.withUnit = true - } -} - // MetricFamilyToOpenMetrics converts a MetricFamily proto message into the // OpenMetrics text format and writes the resulting lines to 'out'. It returns // the number of bytes written and any error encountered. The output will have @@ -99,15 +87,6 @@ func WithUnit() EncoderOption { // its type will be set to `unknown` in that case to avoid invalid OpenMetrics // output. // -// - According to the OM specs, the `# UNIT` line is optional, but if populated, -// the unit has to be present in the metric name as its suffix: -// (see https://github.com/prometheus/OpenMetrics/blob/v1.0.0/specification/OpenMetrics.md#unit). -// However, in order to accommodate any potential scenario where such a change in the -// metric name is not desirable, the users are here given the choice of either explicitly -// opt in, in case they wish for the unit to be included in the output AND in the metric name -// as a suffix (see the description of the WithUnit function above), -// or not to opt in, in case they don't want for any of that to happen. -// // - No support for the following (optional) features: info type, // stateset type, gaugehistogram type. // @@ -151,9 +130,6 @@ func MetricFamilyToOpenMetrics(out io.Writer, in *dto.MetricFamily, options ...E if metricType == dto.MetricType_COUNTER && strings.HasSuffix(compliantName, "_total") { compliantName = name[:len(name)-6] } - if toOM.withUnit && in.Unit != nil && !strings.HasSuffix(compliantName, "_"+*in.Unit) { - compliantName = compliantName + "_" + *in.Unit - } // Comments, first HELP, then TYPE. if in.Help != nil { @@ -217,7 +193,7 @@ func MetricFamilyToOpenMetrics(out io.Writer, in *dto.MetricFamily, options ...E if err != nil { return written, err } - if toOM.withUnit && in.Unit != nil { + if in.Unit != nil { n, err = w.WriteString("# UNIT ") written += n if err != nil { diff --git a/tests/e2e/vendor/github.com/prometheus/common/expfmt/text_create.go b/tests/e2e/vendor/github.com/prometheus/common/expfmt/text_create.go index 6b89781456..f4074ae9a3 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/expfmt/text_create.go +++ b/tests/e2e/vendor/github.com/prometheus/common/expfmt/text_create.go @@ -42,12 +42,12 @@ const ( var ( bufPool = sync.Pool{ - New: func() interface{} { + New: func() any { return bufio.NewWriter(io.Discard) }, } numBufPool = sync.Pool{ - New: func() interface{} { + New: func() any { b := make([]byte, 0, initialNumBufSize) return &b }, diff --git a/tests/e2e/vendor/github.com/prometheus/common/expfmt/text_parse.go b/tests/e2e/vendor/github.com/prometheus/common/expfmt/text_parse.go index 00c8841a10..4ce1f40b81 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/expfmt/text_parse.go +++ b/tests/e2e/vendor/github.com/prometheus/common/expfmt/text_parse.go @@ -339,6 +339,16 @@ func (p *TextParser) startLabelName() stateFn { return nil // Unexpected end of input. } if p.currentByte == '}' { + if p.currentMF == nil { + // The closing brace was reached before any metric name was read, + // e.g. for the input "{}". There is no metric to attach labels to, + // so this is a malformed exposition. This mirrors the guard in + // startLabelValue. currentMF (not currentMetric) is checked because + // reset only clears currentMF between parses. + p.parseError("invalid metric name") + p.currentLabelPairs = nil + return nil + } p.currentMetric.Label = append(p.currentMetric.Label, p.currentLabelPairs...) p.currentLabelPairs = nil if p.skipBlankTab(); p.err != nil { diff --git a/tests/e2e/vendor/github.com/prometheus/common/model/labels.go b/tests/e2e/vendor/github.com/prometheus/common/model/labels.go index dfeb34be5f..29688a13c8 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/model/labels.go +++ b/tests/e2e/vendor/github.com/prometheus/common/model/labels.go @@ -124,7 +124,7 @@ func (ln LabelName) IsValidLegacy() bool { } // UnmarshalYAML implements the yaml.Unmarshaler interface. -func (ln *LabelName) UnmarshalYAML(unmarshal func(interface{}) error) error { +func (ln *LabelName) UnmarshalYAML(unmarshal func(any) error) error { var s string if err := unmarshal(&s); err != nil { return err diff --git a/tests/e2e/vendor/github.com/prometheus/common/model/labelset.go b/tests/e2e/vendor/github.com/prometheus/common/model/labelset.go index 9de47b2568..6010b26a88 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/model/labelset.go +++ b/tests/e2e/vendor/github.com/prometheus/common/model/labelset.go @@ -16,6 +16,7 @@ package model import ( "encoding/json" "fmt" + "maps" "sort" ) @@ -107,9 +108,7 @@ func (ls LabelSet) Before(o LabelSet) bool { // Clone returns a copy of the label set. func (ls LabelSet) Clone() LabelSet { lsn := make(LabelSet, len(ls)) - for ln, lv := range ls { - lsn[ln] = lv - } + maps.Copy(lsn, ls) return lsn } @@ -117,13 +116,9 @@ func (ls LabelSet) Clone() LabelSet { func (ls LabelSet) Merge(other LabelSet) LabelSet { result := make(LabelSet, len(ls)) - for k, v := range ls { - result[k] = v - } + maps.Copy(result, ls) - for k, v := range other { - result[k] = v - } + maps.Copy(result, other) return result } diff --git a/tests/e2e/vendor/github.com/prometheus/common/model/metric.go b/tests/e2e/vendor/github.com/prometheus/common/model/metric.go index 3feebf328a..2fe461511d 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/model/metric.go +++ b/tests/e2e/vendor/github.com/prometheus/common/model/metric.go @@ -17,6 +17,7 @@ import ( "encoding/json" "errors" "fmt" + "maps" "regexp" "sort" "strconv" @@ -24,7 +25,6 @@ import ( "unicode/utf8" dto "github.com/prometheus/client_model/go" - "go.yaml.in/yaml/v2" "google.golang.org/protobuf/proto" ) @@ -78,14 +78,6 @@ const ( UTF8Validation ) -var _ interface { - yaml.Marshaler - yaml.Unmarshaler - json.Marshaler - json.Unmarshaler - fmt.Stringer -} = new(ValidationScheme) - // String returns the string representation of s. func (s ValidationScheme) String() string { switch s { @@ -267,9 +259,7 @@ func (m Metric) Before(o Metric) bool { // Clone returns a copy of the Metric. func (m Metric) Clone() Metric { clone := make(Metric, len(m)) - for k, v := range m { - clone[k] = v - } + maps.Copy(clone, m) return clone } diff --git a/tests/e2e/vendor/github.com/prometheus/common/model/time.go b/tests/e2e/vendor/github.com/prometheus/common/model/time.go index 1730b0fdc1..0854753f4a 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/model/time.go +++ b/tests/e2e/vendor/github.com/prometheus/common/model/time.go @@ -123,44 +123,38 @@ func (t Time) MarshalJSON() ([]byte, error) { // UnmarshalJSON implements the json.Unmarshaler interface. func (t *Time) UnmarshalJSON(b []byte) error { - p := strings.Split(string(b), ".") - switch len(p) { - case 1: - v, err := strconv.ParseInt(p[0], 10, 64) + base, frac, found := strings.Cut(string(b), ".") + if !found { + v, err := strconv.ParseInt(base, 10, 64) if err != nil { return err } *t = Time(v * second) - - case 2: - v, err := strconv.ParseInt(p[0], 10, 64) + } else { + v, err := strconv.ParseInt(base, 10, 64) if err != nil { return err } - v *= second - prec := dotPrecision - len(p[1]) + prec := dotPrecision - len(frac) if prec < 0 { - p[1] = p[1][:dotPrecision] - } else if prec > 0 { - p[1] += strings.Repeat("0", prec) + frac = frac[:dotPrecision] } - - va, err := strconv.ParseInt(p[1], 10, 32) + va, err := strconv.ParseInt(frac, 10, 32) if err != nil { return err } - - // If the value was something like -0.1 the negative is lost in the - // parsing because of the leading zero, this ensures that we capture it. - if len(p[0]) > 0 && p[0][0] == '-' && v+va > 0 { - *t = Time(v+va) * -1 - } else { - *t = Time(v + va) + switch prec { + case 1: + va *= 10 + case 2: + va *= 100 } - default: - return fmt.Errorf("invalid time %q", string(b)) + if len(base) > 0 && base[0] == '-' { + va = -va + } + *t = Time(v*second + va) } return nil } @@ -340,12 +334,12 @@ func (d *Duration) UnmarshalText(text []byte) error { } // MarshalYAML implements the yaml.Marshaler interface. -func (d Duration) MarshalYAML() (interface{}, error) { +func (d Duration) MarshalYAML() (any, error) { return d.String(), nil } // UnmarshalYAML implements the yaml.Unmarshaler interface. -func (d *Duration) UnmarshalYAML(unmarshal func(interface{}) error) error { +func (d *Duration) UnmarshalYAML(unmarshal func(any) error) error { var s string if err := unmarshal(&s); err != nil { return err diff --git a/tests/e2e/vendor/github.com/prometheus/common/model/value.go b/tests/e2e/vendor/github.com/prometheus/common/model/value.go index a9995a37ee..8dffd9c4a5 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/model/value.go +++ b/tests/e2e/vendor/github.com/prometheus/common/model/value.go @@ -259,13 +259,13 @@ func (s Scalar) String() string { // MarshalJSON implements json.Marshaler. func (s Scalar) MarshalJSON() ([]byte, error) { v := strconv.FormatFloat(float64(s.Value), 'f', -1, 64) - return json.Marshal([...]interface{}{s.Timestamp, v}) + return json.Marshal([...]any{s.Timestamp, v}) } // UnmarshalJSON implements json.Unmarshaler. func (s *Scalar) UnmarshalJSON(b []byte) error { var f string - v := [...]interface{}{&s.Timestamp, &f} + v := [...]any{&s.Timestamp, &f} if err := json.Unmarshal(b, &v); err != nil { return err @@ -291,12 +291,12 @@ func (s *String) String() string { // MarshalJSON implements json.Marshaler. func (s String) MarshalJSON() ([]byte, error) { - return json.Marshal([]interface{}{s.Timestamp, s.Value}) + return json.Marshal([]any{s.Timestamp, s.Value}) } // UnmarshalJSON implements json.Unmarshaler. func (s *String) UnmarshalJSON(b []byte) error { - v := [...]interface{}{&s.Timestamp, &s.Value} + v := [...]any{&s.Timestamp, &s.Value} return json.Unmarshal(b, &v) } diff --git a/tests/e2e/vendor/github.com/prometheus/common/model/value_float.go b/tests/e2e/vendor/github.com/prometheus/common/model/value_float.go index 6bfc757d18..b7d93615e2 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/model/value_float.go +++ b/tests/e2e/vendor/github.com/prometheus/common/model/value_float.go @@ -79,7 +79,7 @@ func (s SamplePair) MarshalJSON() ([]byte, error) { if err != nil { return nil, err } - return []byte(fmt.Sprintf("[%s,%s]", t, v)), nil + return fmt.Appendf(nil, "[%s,%s]", t, v), nil } // UnmarshalJSON implements json.Unmarshaler. diff --git a/tests/e2e/vendor/github.com/prometheus/common/model/value_histogram.go b/tests/e2e/vendor/github.com/prometheus/common/model/value_histogram.go index 91ce5b7a45..f27856ccc4 100644 --- a/tests/e2e/vendor/github.com/prometheus/common/model/value_histogram.go +++ b/tests/e2e/vendor/github.com/prometheus/common/model/value_histogram.go @@ -67,11 +67,11 @@ func (s HistogramBucket) MarshalJSON() ([]byte, error) { if err != nil { return nil, err } - return []byte(fmt.Sprintf("[%s,%s,%s,%s]", b, l, u, c)), nil + return fmt.Appendf(nil, "[%s,%s,%s,%s]", b, l, u, c), nil } func (s *HistogramBucket) UnmarshalJSON(buf []byte) error { - tmp := []interface{}{&s.Boundaries, &s.Lower, &s.Upper, &s.Count} + tmp := []any{&s.Boundaries, &s.Lower, &s.Upper, &s.Count} wantLen := len(tmp) if err := json.Unmarshal(buf, &tmp); err != nil { return err @@ -152,11 +152,11 @@ func (s SampleHistogramPair) MarshalJSON() ([]byte, error) { if err != nil { return nil, err } - return []byte(fmt.Sprintf("[%s,%s]", t, v)), nil + return fmt.Appendf(nil, "[%s,%s]", t, v), nil } func (s *SampleHistogramPair) UnmarshalJSON(buf []byte) error { - tmp := []interface{}{&s.Timestamp, &s.Histogram} + tmp := []any{&s.Timestamp, &s.Histogram} wantLen := len(tmp) if err := json.Unmarshal(buf, &tmp); err != nil { return err diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/.golangci.yml b/tests/e2e/vendor/github.com/prometheus/procfs/.golangci.yml index 23ecd4505b..eac920ba80 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/.golangci.yml +++ b/tests/e2e/vendor/github.com/prometheus/procfs/.golangci.yml @@ -34,6 +34,14 @@ linters: capital: true misspell: locale: US + revive: + rules: + - name: var-naming + # TODO(SuperQ): See: https://github.com/prometheus/prometheus/issues/17766 + arguments: + - [] + - [] + - - skip-package-name-checks: true exclusions: presets: - comments diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/Makefile.common b/tests/e2e/vendor/github.com/prometheus/procfs/Makefile.common index 6f61bec48f..a7c5f553e1 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/Makefile.common +++ b/tests/e2e/vendor/github.com/prometheus/procfs/Makefile.common @@ -1,4 +1,4 @@ -# Copyright 2018 The Prometheus Authors +# Copyright The Prometheus Authors # Licensed under the Apache License, Version 2.0 (the "License"); # you may not use this file except in compliance with the License. # You may obtain a copy of the License at @@ -55,13 +55,13 @@ ifneq ($(shell command -v gotestsum 2> /dev/null),) endif endif -PROMU_VERSION ?= 0.17.0 +PROMU_VERSION ?= 0.20.0 PROMU_URL := https://github.com/prometheus/promu/releases/download/v$(PROMU_VERSION)/promu-$(PROMU_VERSION).$(GO_BUILD_PLATFORM).tar.gz SKIP_GOLANGCI_LINT := GOLANGCI_LINT := GOLANGCI_LINT_OPTS ?= -GOLANGCI_LINT_VERSION ?= v2.1.5 +GOLANGCI_LINT_VERSION ?= v2.11.4 GOLANGCI_FMT_OPTS ?= # golangci-lint only supports linux, darwin and windows platforms on i386/amd64/arm64. # windows isn't included here because of the path separator being different. @@ -82,11 +82,32 @@ endif PREFIX ?= $(shell pwd) BIN_DIR ?= $(shell pwd) DOCKER_IMAGE_TAG ?= $(subst /,-,$(shell git rev-parse --abbrev-ref HEAD)) -DOCKERFILE_PATH ?= ./Dockerfile DOCKERBUILD_CONTEXT ?= ./ DOCKER_REPO ?= prom -DOCKER_ARCHS ?= amd64 +# Check if deprecated DOCKERFILE_PATH is set +ifdef DOCKERFILE_PATH +$(error DOCKERFILE_PATH is deprecated. Use DOCKERFILE_VARIANTS ?= $(DOCKERFILE_PATH) in the Makefile) +endif + +DOCKER_ARCHS ?= amd64 arm64 armv7 ppc64le riscv64 s390x +DOCKERFILE_VARIANTS ?= $(wildcard Dockerfile Dockerfile.*) + +# Function to extract variant from Dockerfile label. +# Returns the variant name from io.prometheus.image.variant label, or "default" if not found. +define dockerfile_variant +$(strip $(or $(shell sed -n 's/.*io\.prometheus\.image\.variant="\([^"]*\)".*/\1/p' $(1)),default)) +endef + +# Check for duplicate variant names (including default for Dockerfiles without labels). +DOCKERFILE_VARIANT_NAMES := $(foreach df,$(DOCKERFILE_VARIANTS),$(call dockerfile_variant,$(df))) +DOCKERFILE_VARIANT_NAMES_SORTED := $(sort $(DOCKERFILE_VARIANT_NAMES)) +ifneq ($(words $(DOCKERFILE_VARIANT_NAMES)),$(words $(DOCKERFILE_VARIANT_NAMES_SORTED))) +$(error Duplicate variant names found. Each Dockerfile must have a unique io.prometheus.image.variant label, and only one can be without a label (default)) +endif + +# Build variant:dockerfile pairs for shell iteration. +DOCKERFILE_VARIANTS_WITH_NAMES := $(foreach df,$(DOCKERFILE_VARIANTS),$(call dockerfile_variant,$(df)):$(df)) BUILD_DOCKER_ARCHS = $(addprefix common-docker-,$(DOCKER_ARCHS)) PUBLISH_DOCKER_ARCHS = $(addprefix common-docker-publish-,$(DOCKER_ARCHS)) @@ -112,7 +133,7 @@ common-all: precheck style check_license lint yamllint unused build test .PHONY: common-style common-style: @echo ">> checking code style" - @fmtRes=$$($(GOFMT) -d $$(find . -path ./vendor -prune -o -name '*.go' -print)); \ + @fmtRes=$$($(GOFMT) -d $$(git ls-files '*.go' ':!:vendor/*' || find . -path ./vendor -prune -o -name '*.go' -print)); \ if [ -n "$${fmtRes}" ]; then \ echo "gofmt checking failed!"; echo "$${fmtRes}"; echo; \ echo "Please ensure you are using $$($(GO) version) for formatting code."; \ @@ -122,13 +143,19 @@ common-style: .PHONY: common-check_license common-check_license: @echo ">> checking license header" - @licRes=$$(for file in $$(find . -type f -iname '*.go' ! -path './vendor/*') ; do \ + @licRes=$$(for file in $$(git ls-files '*.go' ':!:vendor/*' || find . -path ./vendor -prune -o -type f -iname '*.go' -print) ; do \ awk 'NR<=3' $$file | grep -Eq "(Copyright|generated|GENERATED)" || echo $$file; \ done); \ if [ -n "$${licRes}" ]; then \ echo "license header checking failed:"; echo "$${licRes}"; \ exit 1; \ fi + @echo ">> checking for copyright years 2026 or later" + @futureYearRes=$$(git grep -E 'Copyright (202[6-9]|20[3-9][0-9])' -- '*.go' ':!:vendor/*' || true); \ + if [ -n "$${futureYearRes}" ]; then \ + echo "Files with copyright year 2026 or later found (should use 'Copyright The Prometheus Authors'):"; echo "$${futureYearRes}"; \ + exit 1; \ + fi .PHONY: common-deps common-deps: @@ -220,28 +247,142 @@ common-docker-repo-name: .PHONY: common-docker $(BUILD_DOCKER_ARCHS) common-docker: $(BUILD_DOCKER_ARCHS) $(BUILD_DOCKER_ARCHS): common-docker-%: - docker build -t "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)" \ - -f $(DOCKERFILE_PATH) \ - --build-arg ARCH="$*" \ - --build-arg OS="linux" \ - $(DOCKERBUILD_CONTEXT) + @for variant in $(DOCKERFILE_VARIANTS_WITH_NAMES); do \ + dockerfile=$${variant#*:}; \ + variant_name=$${variant%%:*}; \ + distroless_arch="$*"; \ + if [ "$*" = "armv7" ]; then \ + distroless_arch="arm"; \ + fi; \ + if [ "$$dockerfile" = "Dockerfile" ]; then \ + echo "Building default variant ($$variant_name) for linux-$* using $$dockerfile"; \ + docker build -t "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)" \ + -f $$dockerfile \ + --build-arg ARCH="$*" \ + --build-arg OS="linux" \ + --build-arg DISTROLESS_ARCH="$$distroless_arch" \ + $(DOCKERBUILD_CONTEXT); \ + if [ "$$variant_name" != "default" ]; then \ + echo "Tagging default variant with $$variant_name suffix"; \ + docker tag "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)" \ + "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)-$$variant_name"; \ + fi; \ + else \ + echo "Building $$variant_name variant for linux-$* using $$dockerfile"; \ + docker build -t "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)-$$variant_name" \ + -f $$dockerfile \ + --build-arg ARCH="$*" \ + --build-arg OS="linux" \ + --build-arg DISTROLESS_ARCH="$$distroless_arch" \ + $(DOCKERBUILD_CONTEXT); \ + fi; \ + done .PHONY: common-docker-publish $(PUBLISH_DOCKER_ARCHS) common-docker-publish: $(PUBLISH_DOCKER_ARCHS) $(PUBLISH_DOCKER_ARCHS): common-docker-publish-%: - docker push "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)" + @for variant in $(DOCKERFILE_VARIANTS_WITH_NAMES); do \ + dockerfile=$${variant#*:}; \ + variant_name=$${variant%%:*}; \ + if [ "$$dockerfile" != "Dockerfile" ] || [ "$$variant_name" != "default" ]; then \ + echo "Pushing $$variant_name variant for linux-$*"; \ + docker push "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)-$$variant_name"; \ + fi; \ + if [ "$$dockerfile" = "Dockerfile" ]; then \ + echo "Pushing default variant ($$variant_name) for linux-$*"; \ + docker push "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)"; \ + fi; \ + if [ "$(DOCKER_IMAGE_TAG)" = "latest" ]; then \ + if [ "$$dockerfile" != "Dockerfile" ] || [ "$$variant_name" != "default" ]; then \ + echo "Pushing $$variant_name variant version tags for linux-$*"; \ + docker push "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:v$(DOCKER_MAJOR_VERSION_TAG)-$$variant_name"; \ + fi; \ + if [ "$$dockerfile" = "Dockerfile" ]; then \ + echo "Pushing default variant version tag for linux-$*"; \ + docker push "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:v$(DOCKER_MAJOR_VERSION_TAG)"; \ + fi; \ + fi; \ + done DOCKER_MAJOR_VERSION_TAG = $(firstword $(subst ., ,$(shell cat VERSION))) .PHONY: common-docker-tag-latest $(TAG_DOCKER_ARCHS) common-docker-tag-latest: $(TAG_DOCKER_ARCHS) $(TAG_DOCKER_ARCHS): common-docker-tag-latest-%: - docker tag "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)" "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:latest" - docker tag "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)" "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:v$(DOCKER_MAJOR_VERSION_TAG)" + @for variant in $(DOCKERFILE_VARIANTS_WITH_NAMES); do \ + dockerfile=$${variant#*:}; \ + variant_name=$${variant%%:*}; \ + if [ "$$dockerfile" != "Dockerfile" ] || [ "$$variant_name" != "default" ]; then \ + echo "Tagging $$variant_name variant for linux-$* as latest"; \ + docker tag "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)-$$variant_name" "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:latest-$$variant_name"; \ + docker tag "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)-$$variant_name" "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:v$(DOCKER_MAJOR_VERSION_TAG)-$$variant_name"; \ + fi; \ + if [ "$$dockerfile" = "Dockerfile" ]; then \ + echo "Tagging default variant ($$variant_name) for linux-$* as latest"; \ + docker tag "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)" "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:latest"; \ + docker tag "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:$(SANITIZED_DOCKER_IMAGE_TAG)" "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$*:v$(DOCKER_MAJOR_VERSION_TAG)"; \ + fi; \ + done .PHONY: common-docker-manifest common-docker-manifest: - DOCKER_CLI_EXPERIMENTAL=enabled docker manifest create -a "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME):$(SANITIZED_DOCKER_IMAGE_TAG)" $(foreach ARCH,$(DOCKER_ARCHS),$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$(ARCH):$(SANITIZED_DOCKER_IMAGE_TAG)) - DOCKER_CLI_EXPERIMENTAL=enabled docker manifest push "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME):$(SANITIZED_DOCKER_IMAGE_TAG)" + @for variant in $(DOCKERFILE_VARIANTS_WITH_NAMES); do \ + dockerfile=$${variant#*:}; \ + variant_name=$${variant%%:*}; \ + if [ "$$dockerfile" != "Dockerfile" ] || [ "$$variant_name" != "default" ]; then \ + echo "Creating manifest for $$variant_name variant"; \ + refs=""; \ + for arch in $(DOCKER_ARCHS); do \ + refs="$$refs $(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$$arch:$(SANITIZED_DOCKER_IMAGE_TAG)-$$variant_name"; \ + done; \ + if [ -z "$$refs" ]; then \ + echo "Skipping manifest for $$variant_name variant (no supported architectures)"; \ + continue; \ + fi; \ + DOCKER_CLI_EXPERIMENTAL=enabled docker manifest create -a "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME):$(SANITIZED_DOCKER_IMAGE_TAG)-$$variant_name" $$refs; \ + DOCKER_CLI_EXPERIMENTAL=enabled docker manifest push "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME):$(SANITIZED_DOCKER_IMAGE_TAG)-$$variant_name"; \ + fi; \ + if [ "$$dockerfile" = "Dockerfile" ]; then \ + echo "Creating default variant ($$variant_name) manifest"; \ + refs=""; \ + for arch in $(DOCKER_ARCHS); do \ + refs="$$refs $(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$$arch:$(SANITIZED_DOCKER_IMAGE_TAG)"; \ + done; \ + if [ -z "$$refs" ]; then \ + echo "Skipping default variant manifest (no supported architectures)"; \ + continue; \ + fi; \ + DOCKER_CLI_EXPERIMENTAL=enabled docker manifest create -a "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME):$(SANITIZED_DOCKER_IMAGE_TAG)" $$refs; \ + DOCKER_CLI_EXPERIMENTAL=enabled docker manifest push "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME):$(SANITIZED_DOCKER_IMAGE_TAG)"; \ + fi; \ + if [ "$(DOCKER_IMAGE_TAG)" = "latest" ]; then \ + if [ "$$dockerfile" != "Dockerfile" ] || [ "$$variant_name" != "default" ]; then \ + echo "Creating manifest for $$variant_name variant version tag"; \ + refs=""; \ + for arch in $(DOCKER_ARCHS); do \ + refs="$$refs $(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$$arch:v$(DOCKER_MAJOR_VERSION_TAG)-$$variant_name"; \ + done; \ + if [ -z "$$refs" ]; then \ + echo "Skipping version-tag manifest for $$variant_name variant (no supported architectures)"; \ + continue; \ + fi; \ + DOCKER_CLI_EXPERIMENTAL=enabled docker manifest create -a "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME):v$(DOCKER_MAJOR_VERSION_TAG)-$$variant_name" $$refs; \ + DOCKER_CLI_EXPERIMENTAL=enabled docker manifest push "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME):v$(DOCKER_MAJOR_VERSION_TAG)-$$variant_name"; \ + fi; \ + if [ "$$dockerfile" = "Dockerfile" ]; then \ + echo "Creating default variant version tag manifest"; \ + refs=""; \ + for arch in $(DOCKER_ARCHS); do \ + refs="$$refs $(DOCKER_REPO)/$(DOCKER_IMAGE_NAME)-linux-$$arch:v$(DOCKER_MAJOR_VERSION_TAG)"; \ + done; \ + if [ -z "$$refs" ]; then \ + echo "Skipping default variant version-tag manifest (no supported architectures)"; \ + continue; \ + fi; \ + DOCKER_CLI_EXPERIMENTAL=enabled docker manifest create -a "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME):v$(DOCKER_MAJOR_VERSION_TAG)" $$refs; \ + DOCKER_CLI_EXPERIMENTAL=enabled docker manifest push "$(DOCKER_REPO)/$(DOCKER_IMAGE_NAME):v$(DOCKER_MAJOR_VERSION_TAG)"; \ + fi; \ + fi; \ + done .PHONY: promu promu: $(PROMU) @@ -266,6 +407,10 @@ $(GOLANGCI_LINT): | sh -s -- -b $(FIRST_GOPATH)/bin $(GOLANGCI_LINT_VERSION) endif +.PHONY: common-print-golangci-lint-version +common-print-golangci-lint-version: + @echo $(GOLANGCI_LINT_VERSION) + .PHONY: precheck precheck:: @@ -280,9 +425,3 @@ $(1)_precheck: exit 1; \ fi endef - -govulncheck: install-govulncheck - govulncheck ./... - -install-govulncheck: - command -v govulncheck > /dev/null || go install golang.org/x/vuln/cmd/govulncheck@latest diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/README.md b/tests/e2e/vendor/github.com/prometheus/procfs/README.md index 0718239cf1..363524094b 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/README.md +++ b/tests/e2e/vendor/github.com/prometheus/procfs/README.md @@ -7,7 +7,7 @@ metrics from the pseudo-filesystems /proc and /sys. backwards-incompatible ways without warnings. Use it at your own risk. [![Go Reference](https://pkg.go.dev/badge/github.com/prometheus/procfs.svg)](https://pkg.go.dev/github.com/prometheus/procfs) -[![CircleCI](https://circleci.com/gh/prometheus/procfs/tree/master.svg?style=svg)](https://circleci.com/gh/prometheus/procfs/tree/master) +[![Build Status](https://github.com/prometheus/procfs/actions/workflows/ci.yml/badge.svg)](https://github.com/prometheus/procfs/actions/workflows/ci.yml) [![Go Report Card](https://goreportcard.com/badge/github.com/prometheus/procfs)](https://goreportcard.com/report/github.com/prometheus/procfs) ## Usage diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/SECURITY.md b/tests/e2e/vendor/github.com/prometheus/procfs/SECURITY.md index fed02d85c7..5e6f976dbf 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/SECURITY.md +++ b/tests/e2e/vendor/github.com/prometheus/procfs/SECURITY.md @@ -3,4 +3,4 @@ The Prometheus security policy, including how to report vulnerabilities, can be found here: - +[https://prometheus.io/docs/operating/security/](https://prometheus.io/docs/operating/security/) diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo.go b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo.go index 5fe6cecd3d..4b23d8d6b5 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build linux -// +build linux package procfs @@ -502,7 +501,7 @@ func parseCPUInfoRISCV(info []byte) ([]CPUInfo, error) { return cpuinfo, nil } -func parseCPUInfoDummy(_ []byte) ([]CPUInfo, error) { // nolint:unused,deadcode +func parseCPUInfoDummy(_ []byte) ([]CPUInfo, error) { //nolint:unused return nil, errors.New("not implemented") } diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_armx.go b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_armx.go index 8f155551e5..b09035ff38 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_armx.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_armx.go @@ -12,8 +12,6 @@ // limitations under the License. //go:build linux && (arm || arm64) -// +build linux -// +build arm arm64 package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_loong64.go b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_loong64.go index e81a5db949..7bb20211f9 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_loong64.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_loong64.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build linux -// +build linux package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_mipsx.go b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_mipsx.go index 4be2b1cc54..fd75d0f79d 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_mipsx.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_mipsx.go @@ -12,8 +12,6 @@ // limitations under the License. //go:build linux && (mips || mipsle || mips64 || mips64le) -// +build linux -// +build mips mipsle mips64 mips64le package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_others.go b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_others.go index e713bae8df..3d36ba0e6b 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_others.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_others.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build linux && !386 && !amd64 && !arm && !arm64 && !loong64 && !mips && !mips64 && !mips64le && !mipsle && !ppc64 && !ppc64le && !riscv64 && !s390x -// +build linux,!386,!amd64,!arm,!arm64,!loong64,!mips,!mips64,!mips64le,!mipsle,!ppc64,!ppc64le,!riscv64,!s390x package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_ppcx.go b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_ppcx.go index 0825aa1a83..b3425051ef 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_ppcx.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_ppcx.go @@ -12,8 +12,6 @@ // limitations under the License. //go:build linux && (ppc64 || ppc64le) -// +build linux -// +build ppc64 ppc64le package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_riscvx.go b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_riscvx.go index 496770b05f..72598230c3 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_riscvx.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_riscvx.go @@ -12,8 +12,6 @@ // limitations under the License. //go:build linux && (riscv || riscv64) -// +build linux -// +build riscv riscv64 package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_s390x.go b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_s390x.go index b3228ce3d8..50a8239cbc 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_s390x.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_s390x.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build linux -// +build linux package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_x86.go b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_x86.go index 575eb022eb..00edb30a5c 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_x86.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/cpuinfo_x86.go @@ -12,8 +12,6 @@ // limitations under the License. //go:build linux && (386 || amd64) -// +build linux -// +build 386 amd64 package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/crypto.go b/tests/e2e/vendor/github.com/prometheus/procfs/crypto.go index e4a5876eaf..d93b712e05 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/crypto.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/crypto.go @@ -48,11 +48,13 @@ type Crypto struct { Walksize *uint64 } +var cryptoFile = "crypto" + // Crypto parses an crypto-file (/proc/crypto) and returns a slice of // structs containing the relevant info. More information available here: // https://kernel.readthedocs.io/en/sphinx-samples/crypto-API.html func (fs FS) Crypto() ([]Crypto, error) { - path := fs.proc.Path("crypto") + path := fs.proc.Path(cryptoFile) b, err := util.ReadFileNoStat(path) if err != nil { return nil, fmt.Errorf("%w: Cannot read file %v: %w", ErrFileRead, b, err) @@ -82,6 +84,10 @@ func parseCrypto(r io.Reader) ([]Crypto, error) { continue } + if len(out) == 0 { + return nil, fmt.Errorf("%w: parsed invalid line before name parsed: %q", ErrFileParse, text) + } + kv := strings.Split(text, ":") if len(kv) != 2 { return nil, fmt.Errorf("%w: Cannot parse line: %q", ErrFileParse, text) diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/fs_statfs_notype.go b/tests/e2e/vendor/github.com/prometheus/procfs/fs_statfs_notype.go index 3c53023c54..0bef25bdd9 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/fs_statfs_notype.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/fs_statfs_notype.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build !freebsd && !linux -// +build !freebsd,!linux package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/fs_statfs_type.go b/tests/e2e/vendor/github.com/prometheus/procfs/fs_statfs_type.go index 80fce48478..d183330390 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/fs_statfs_type.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/fs_statfs_type.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build freebsd || linux -// +build freebsd linux package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/internal/util/sysreadfile.go b/tests/e2e/vendor/github.com/prometheus/procfs/internal/util/sysreadfile.go index 8318d8dfd5..f6a4a4de62 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/internal/util/sysreadfile.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/internal/util/sysreadfile.go @@ -12,8 +12,6 @@ // limitations under the License. //go:build (linux || darwin) && !appengine -// +build linux darwin -// +build !appengine package util diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/internal/util/sysreadfile_compat.go b/tests/e2e/vendor/github.com/prometheus/procfs/internal/util/sysreadfile_compat.go index 15bb096ee2..c80e082cb9 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/internal/util/sysreadfile_compat.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/internal/util/sysreadfile_compat.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build (linux && appengine) || (!linux && !darwin) -// +build linux,appengine !linux,!darwin package util diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/kernel_hung.go b/tests/e2e/vendor/github.com/prometheus/procfs/kernel_hung.go index 539c111514..0c7a69f99f 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/kernel_hung.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/kernel_hung.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build !windows -// +build !windows package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/kernel_random.go b/tests/e2e/vendor/github.com/prometheus/procfs/kernel_random.go index b66565a104..e7c5b8cf2b 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/kernel_random.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/kernel_random.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build !windows -// +build !windows package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/mountinfo.go b/tests/e2e/vendor/github.com/prometheus/procfs/mountinfo.go index 9414a12f42..8594ae7f1e 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/mountinfo.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/mountinfo.go @@ -17,10 +17,10 @@ import ( "bufio" "bytes" "fmt" + "io" + "os" "strconv" "strings" - - "github.com/prometheus/procfs/internal/util" ) // A MountInfo is a type that describes the details, options @@ -160,9 +160,19 @@ func mountOptionsParser(mountOptions string) map[string]string { return opts } +// readMountInfo reads a full mountinfo file (no 1 MiB cap, unlike util.ReadFileNoStat). +func readMountInfo(path string) ([]byte, error) { + f, err := os.Open(path) + if err != nil { + return nil, err + } + defer f.Close() + return io.ReadAll(f) +} + // GetMounts retrieves mountinfo information from `/proc/self/mountinfo`. func GetMounts() ([]*MountInfo, error) { - data, err := util.ReadFileNoStat("/proc/self/mountinfo") + data, err := readMountInfo("/proc/self/mountinfo") if err != nil { return nil, err } @@ -171,7 +181,7 @@ func GetMounts() ([]*MountInfo, error) { // GetProcMounts retrieves mountinfo information from a processes' `/proc//mountinfo`. func GetProcMounts(pid int) ([]*MountInfo, error) { - data, err := util.ReadFileNoStat(fmt.Sprintf("/proc/%d/mountinfo", pid)) + data, err := readMountInfo(fmt.Sprintf("/proc/%d/mountinfo", pid)) if err != nil { return nil, err } @@ -180,7 +190,7 @@ func GetProcMounts(pid int) ([]*MountInfo, error) { // GetMounts retrieves mountinfo information from `/proc/self/mountinfo`. func (fs FS) GetMounts() ([]*MountInfo, error) { - data, err := util.ReadFileNoStat(fs.proc.Path("self/mountinfo")) + data, err := readMountInfo(fs.proc.Path("self/mountinfo")) if err != nil { return nil, err } @@ -189,7 +199,7 @@ func (fs FS) GetMounts() ([]*MountInfo, error) { // GetProcMounts retrieves mountinfo information from a processes' `/proc//mountinfo`. func (fs FS) GetProcMounts(pid int) ([]*MountInfo, error) { - data, err := util.ReadFileNoStat(fs.proc.Path(fmt.Sprintf("%d/mountinfo", pid))) + data, err := readMountInfo(fs.proc.Path(fmt.Sprintf("%d/mountinfo", pid))) if err != nil { return nil, err } diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/net_tcp.go b/tests/e2e/vendor/github.com/prometheus/procfs/net_tcp.go index 610ea78e56..2c7f9bc7c3 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/net_tcp.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/net_tcp.go @@ -25,6 +25,7 @@ type ( // NetTCP returns the IPv4 kernel/networking statistics for TCP datagrams // read from /proc/net/tcp. +// // Deprecated: Use github.com/mdlayher/netlink#Conn (with syscall.AF_INET) instead. func (fs FS) NetTCP() (NetTCP, error) { return newNetTCP(fs.proc.Path("net/tcp")) @@ -32,6 +33,7 @@ func (fs FS) NetTCP() (NetTCP, error) { // NetTCP6 returns the IPv6 kernel/networking statistics for TCP datagrams // read from /proc/net/tcp6. +// // Deprecated: Use github.com/mdlayher/netlink#Conn (with syscall.AF_INET6) instead. func (fs FS) NetTCP6() (NetTCP, error) { return newNetTCP(fs.proc.Path("net/tcp6")) @@ -39,6 +41,7 @@ func (fs FS) NetTCP6() (NetTCP, error) { // NetTCPSummary returns already computed statistics like the total queue lengths // for TCP datagrams read from /proc/net/tcp. +// // Deprecated: Use github.com/mdlayher/netlink#Conn (with syscall.AF_INET) instead. func (fs FS) NetTCPSummary() (*NetTCPSummary, error) { return newNetTCPSummary(fs.proc.Path("net/tcp")) @@ -46,6 +49,7 @@ func (fs FS) NetTCPSummary() (*NetTCPSummary, error) { // NetTCP6Summary returns already computed statistics like the total queue lengths // for TCP datagrams read from /proc/net/tcp6. +// // Deprecated: Use github.com/mdlayher/netlink#Conn (with syscall.AF_INET6) instead. func (fs FS) NetTCP6Summary() (*NetTCPSummary, error) { return newNetTCPSummary(fs.proc.Path("net/tcp6")) diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/net_wireless.go b/tests/e2e/vendor/github.com/prometheus/procfs/net_wireless.go index 69d0794451..f74dd3bed0 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/net_wireless.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/net_wireless.go @@ -114,47 +114,47 @@ func parseWireless(r io.Reader) ([]*Wireless, error) { qlink, err := strconv.Atoi(strings.TrimSuffix(stats[1], ".")) if err != nil { - return nil, fmt.Errorf("%w: parse Quality:link as integer %q: %w", ErrFileParse, qlink, err) + return nil, fmt.Errorf("%w: parse Quality:link as integer %q: %w", ErrFileParse, stats[1], err) } qlevel, err := strconv.Atoi(strings.TrimSuffix(stats[2], ".")) if err != nil { - return nil, fmt.Errorf("%w: Quality:level as integer %q: %w", ErrFileParse, qlevel, err) + return nil, fmt.Errorf("%w: Quality:level as integer %q: %w", ErrFileParse, stats[2], err) } qnoise, err := strconv.Atoi(strings.TrimSuffix(stats[3], ".")) if err != nil { - return nil, fmt.Errorf("%w: Quality:noise as integer %q: %w", ErrFileParse, qnoise, err) + return nil, fmt.Errorf("%w: Quality:noise as integer %q: %w", ErrFileParse, stats[3], err) } dnwid, err := strconv.Atoi(stats[4]) if err != nil { - return nil, fmt.Errorf("%w: Discarded:nwid as integer %q: %w", ErrFileParse, dnwid, err) + return nil, fmt.Errorf("%w: Discarded:nwid as integer %q: %w", ErrFileParse, stats[4], err) } dcrypt, err := strconv.Atoi(stats[5]) if err != nil { - return nil, fmt.Errorf("%w: Discarded:crypt as integer %q: %w", ErrFileParse, dcrypt, err) + return nil, fmt.Errorf("%w: Discarded:crypt as integer %q: %w", ErrFileParse, stats[5], err) } dfrag, err := strconv.Atoi(stats[6]) if err != nil { - return nil, fmt.Errorf("%w: Discarded:frag as integer %q: %w", ErrFileParse, dfrag, err) + return nil, fmt.Errorf("%w: Discarded:frag as integer %q: %w", ErrFileParse, stats[6], err) } dretry, err := strconv.Atoi(stats[7]) if err != nil { - return nil, fmt.Errorf("%w: Discarded:retry as integer %q: %w", ErrFileParse, dretry, err) + return nil, fmt.Errorf("%w: Discarded:retry as integer %q: %w", ErrFileParse, stats[7], err) } dmisc, err := strconv.Atoi(stats[8]) if err != nil { - return nil, fmt.Errorf("%w: Discarded:misc as integer %q: %w", ErrFileParse, dmisc, err) + return nil, fmt.Errorf("%w: Discarded:misc as integer %q: %w", ErrFileParse, stats[8], err) } mbeacon, err := strconv.Atoi(stats[9]) if err != nil { - return nil, fmt.Errorf("%w: Missed:beacon as integer %q: %w", ErrFileParse, mbeacon, err) + return nil, fmt.Errorf("%w: Missed:beacon as integer %q: %w", ErrFileParse, stats[9], err) } w := &Wireless{ diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/proc_cgroup.go b/tests/e2e/vendor/github.com/prometheus/procfs/proc_cgroup.go index 535c08d6fc..7e8a122978 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/proc_cgroup.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/proc_cgroup.go @@ -60,7 +60,7 @@ func parseCgroupString(cgroupStr string) (*Cgroup, error) { } cgroup.HierarchyID, err = strconv.Atoi(fields[0]) if err != nil { - return nil, fmt.Errorf("%w: hierarchy ID: %q", ErrFileParse, cgroup.HierarchyID) + return nil, fmt.Errorf("%w: hierarchy ID: %q", ErrFileParse, fields[0]) } if fields[1] != "" { ssNames := strings.Split(fields[1], ",") diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/proc_interrupts.go b/tests/e2e/vendor/github.com/prometheus/procfs/proc_interrupts.go index b942c50723..643b500d5d 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/proc_interrupts.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/proc_interrupts.go @@ -42,7 +42,7 @@ type Interrupts map[string]Interrupt // Interrupts creates a new instance from a given Proc instance. func (p Proc) Interrupts() (Interrupts, error) { - data, err := util.ReadFileNoStat(p.path("interrupts")) + data, err := util.ReadFileNoStat(p.fs.proc.Path("interrupts")) if err != nil { return nil, err } diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/proc_maps.go b/tests/e2e/vendor/github.com/prometheus/procfs/proc_maps.go index cc519f92f9..08b89a6eb9 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/proc_maps.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/proc_maps.go @@ -12,8 +12,6 @@ // limitations under the License. //go:build (aix || darwin || dragonfly || freebsd || linux || netbsd || openbsd || solaris) && !js -// +build aix darwin dragonfly freebsd linux netbsd openbsd solaris -// +build !js package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/proc_smaps.go b/tests/e2e/vendor/github.com/prometheus/procfs/proc_smaps.go index 3e48afd1d3..f637309b3d 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/proc_smaps.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/proc_smaps.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build !windows -// +build !windows package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/proc_statm.go b/tests/e2e/vendor/github.com/prometheus/procfs/proc_statm.go index b0a9360167..6bcc97ec9c 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/proc_statm.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/proc_statm.go @@ -45,6 +45,7 @@ type ProcStatm struct { } // NewStatm returns the current status information of the process. +// // Deprecated: Use p.Statm() instead. func (p Proc) NewStatm() (ProcStatm, error) { return p.Statm() diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/proc_status.go b/tests/e2e/vendor/github.com/prometheus/procfs/proc_status.go index 1ed2bced41..12d65581c8 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/proc_status.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/proc_status.go @@ -83,6 +83,19 @@ type ProcStatus struct { // CpusAllowedList: List of cpu cores processes are allowed to run on. CpusAllowedList []uint64 + + // CapInh is the bitmap of inheritable capabilities + // + // See: https://www.kernel.org/doc/man-pages/online/pages/man7/capabilities.7.html + CapInh uint64 + // CapPrm is the bitmap of permitted capabilities + CapPrm uint64 + // CapEff is the bitmap of effective capabilities + CapEff uint64 + // CapBnd is the bitmap of bounding capabilities + CapBnd uint64 + // CapAmb is the bitmap of ambient capabilities + CapAmb uint64 } // NewStatus returns the current status information of the process. @@ -190,6 +203,36 @@ func (s *ProcStatus) fillStatus(k string, vString string, vUint uint64, vUintByt s.NonVoluntaryCtxtSwitches = vUint case "Cpus_allowed_list": s.CpusAllowedList = calcCpusAllowedList(vString) + case "CapInh": + var err error + s.CapInh, err = strconv.ParseUint(vString, 16, 64) + if err != nil { + return err + } + case "CapPrm": + var err error + s.CapPrm, err = strconv.ParseUint(vString, 16, 64) + if err != nil { + return err + } + case "CapEff": + var err error + s.CapEff, err = strconv.ParseUint(vString, 16, 64) + if err != nil { + return err + } + case "CapBnd": + var err error + s.CapBnd, err = strconv.ParseUint(vString, 16, 64) + if err != nil { + return err + } + case "CapAmb": + var err error + s.CapAmb, err = strconv.ParseUint(vString, 16, 64) + if err != nil { + return err + } } return nil diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/vm.go b/tests/e2e/vendor/github.com/prometheus/procfs/vm.go index 2a8d763909..52180c03e2 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/vm.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/vm.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build !windows -// +build !windows package procfs diff --git a/tests/e2e/vendor/github.com/prometheus/procfs/zoneinfo.go b/tests/e2e/vendor/github.com/prometheus/procfs/zoneinfo.go index 806e171147..63d1898bc8 100644 --- a/tests/e2e/vendor/github.com/prometheus/procfs/zoneinfo.go +++ b/tests/e2e/vendor/github.com/prometheus/procfs/zoneinfo.go @@ -12,7 +12,6 @@ // limitations under the License. //go:build !windows -// +build !windows package procfs diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/.gitignore b/tests/e2e/vendor/github.com/russross/blackfriday/v2/.gitignore new file mode 100644 index 0000000000..75623dcccb --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/.gitignore @@ -0,0 +1,8 @@ +*.out +*.swp +*.8 +*.6 +_obj +_test* +markdown +tags diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/.travis.yml b/tests/e2e/vendor/github.com/russross/blackfriday/v2/.travis.yml new file mode 100644 index 0000000000..b0b525a5a8 --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/.travis.yml @@ -0,0 +1,17 @@ +sudo: false +language: go +go: + - "1.10.x" + - "1.11.x" + - tip +matrix: + fast_finish: true + allow_failures: + - go: tip +install: + - # Do nothing. This is needed to prevent default install action "go get -t -v ./..." from happening here (we want it to happen inside script step). +script: + - go get -t -v ./... + - diff -u <(echo -n) <(gofmt -d -s .) + - go tool vet . + - go test -v ./... diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/LICENSE.txt b/tests/e2e/vendor/github.com/russross/blackfriday/v2/LICENSE.txt new file mode 100644 index 0000000000..2885af3602 --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/LICENSE.txt @@ -0,0 +1,29 @@ +Blackfriday is distributed under the Simplified BSD License: + +> Copyright © 2011 Russ Ross +> All rights reserved. +> +> Redistribution and use in source and binary forms, with or without +> modification, are permitted provided that the following conditions +> are met: +> +> 1. Redistributions of source code must retain the above copyright +> notice, this list of conditions and the following disclaimer. +> +> 2. Redistributions in binary form must reproduce the above +> copyright notice, this list of conditions and the following +> disclaimer in the documentation and/or other materials provided with +> the distribution. +> +> THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS +> "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT +> LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS +> FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE +> COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, +> INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, +> BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; +> LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER +> CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT +> LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN +> ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +> POSSIBILITY OF SUCH DAMAGE. diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/README.md b/tests/e2e/vendor/github.com/russross/blackfriday/v2/README.md new file mode 100644 index 0000000000..d9c08a22fc --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/README.md @@ -0,0 +1,335 @@ +Blackfriday +[![Build Status][BuildV2SVG]][BuildV2URL] +[![PkgGoDev][PkgGoDevV2SVG]][PkgGoDevV2URL] +=========== + +Blackfriday is a [Markdown][1] processor implemented in [Go][2]. It +is paranoid about its input (so you can safely feed it user-supplied +data), it is fast, it supports common extensions (tables, smart +punctuation substitutions, etc.), and it is safe for all utf-8 +(unicode) input. + +HTML output is currently supported, along with Smartypants +extensions. + +It started as a translation from C of [Sundown][3]. + + +Installation +------------ + +Blackfriday is compatible with modern Go releases in module mode. +With Go installed: + + go get github.com/russross/blackfriday/v2 + +will resolve and add the package to the current development module, +then build and install it. Alternatively, you can achieve the same +if you import it in a package: + + import "github.com/russross/blackfriday/v2" + +and `go get` without parameters. + +Legacy GOPATH mode is unsupported. + + +Versions +-------- + +Currently maintained and recommended version of Blackfriday is `v2`. It's being +developed on its own branch: https://github.com/russross/blackfriday/tree/v2 and the +documentation is available at +https://pkg.go.dev/github.com/russross/blackfriday/v2. + +It is `go get`-able in module mode at `github.com/russross/blackfriday/v2`. + +Version 2 offers a number of improvements over v1: + +* Cleaned up API +* A separate call to [`Parse`][4], which produces an abstract syntax tree for + the document +* Latest bug fixes +* Flexibility to easily add your own rendering extensions + +Potential drawbacks: + +* Our benchmarks show v2 to be slightly slower than v1. Currently in the + ballpark of around 15%. +* API breakage. If you can't afford modifying your code to adhere to the new API + and don't care too much about the new features, v2 is probably not for you. +* Several bug fixes are trailing behind and still need to be forward-ported to + v2. See issue [#348](https://github.com/russross/blackfriday/issues/348) for + tracking. + +If you are still interested in the legacy `v1`, you can import it from +`github.com/russross/blackfriday`. Documentation for the legacy v1 can be found +here: https://pkg.go.dev/github.com/russross/blackfriday. + + +Usage +----- + +For the most sensible markdown processing, it is as simple as getting your input +into a byte slice and calling: + +```go +output := blackfriday.Run(input) +``` + +Your input will be parsed and the output rendered with a set of most popular +extensions enabled. If you want the most basic feature set, corresponding with +the bare Markdown specification, use: + +```go +output := blackfriday.Run(input, blackfriday.WithNoExtensions()) +``` + +### Sanitize untrusted content + +Blackfriday itself does nothing to protect against malicious content. If you are +dealing with user-supplied markdown, we recommend running Blackfriday's output +through HTML sanitizer such as [Bluemonday][5]. + +Here's an example of simple usage of Blackfriday together with Bluemonday: + +```go +import ( + "github.com/microcosm-cc/bluemonday" + "github.com/russross/blackfriday/v2" +) + +// ... +unsafe := blackfriday.Run(input) +html := bluemonday.UGCPolicy().SanitizeBytes(unsafe) +``` + +### Custom options + +If you want to customize the set of options, use `blackfriday.WithExtensions`, +`blackfriday.WithRenderer` and `blackfriday.WithRefOverride`. + +### `blackfriday-tool` + +You can also check out `blackfriday-tool` for a more complete example +of how to use it. Download and install it using: + + go get github.com/russross/blackfriday-tool + +This is a simple command-line tool that allows you to process a +markdown file using a standalone program. You can also browse the +source directly on github if you are just looking for some example +code: + +* + +Note that if you have not already done so, installing +`blackfriday-tool` will be sufficient to download and install +blackfriday in addition to the tool itself. The tool binary will be +installed in `$GOPATH/bin`. This is a statically-linked binary that +can be copied to wherever you need it without worrying about +dependencies and library versions. + +### Sanitized anchor names + +Blackfriday includes an algorithm for creating sanitized anchor names +corresponding to a given input text. This algorithm is used to create +anchors for headings when `AutoHeadingIDs` extension is enabled. The +algorithm has a specification, so that other packages can create +compatible anchor names and links to those anchors. + +The specification is located at https://pkg.go.dev/github.com/russross/blackfriday/v2#hdr-Sanitized_Anchor_Names. + +[`SanitizedAnchorName`](https://pkg.go.dev/github.com/russross/blackfriday/v2#SanitizedAnchorName) exposes this functionality, and can be used to +create compatible links to the anchor names generated by blackfriday. +This algorithm is also implemented in a small standalone package at +[`github.com/shurcooL/sanitized_anchor_name`](https://pkg.go.dev/github.com/shurcooL/sanitized_anchor_name). It can be useful for clients +that want a small package and don't need full functionality of blackfriday. + + +Features +-------- + +All features of Sundown are supported, including: + +* **Compatibility**. The Markdown v1.0.3 test suite passes with + the `--tidy` option. Without `--tidy`, the differences are + mostly in whitespace and entity escaping, where blackfriday is + more consistent and cleaner. + +* **Common extensions**, including table support, fenced code + blocks, autolinks, strikethroughs, non-strict emphasis, etc. + +* **Safety**. Blackfriday is paranoid when parsing, making it safe + to feed untrusted user input without fear of bad things + happening. The test suite stress tests this and there are no + known inputs that make it crash. If you find one, please let me + know and send me the input that does it. + + NOTE: "safety" in this context means *runtime safety only*. In order to + protect yourself against JavaScript injection in untrusted content, see + [this example](https://github.com/russross/blackfriday#sanitize-untrusted-content). + +* **Fast processing**. It is fast enough to render on-demand in + most web applications without having to cache the output. + +* **Thread safety**. You can run multiple parsers in different + goroutines without ill effect. There is no dependence on global + shared state. + +* **Minimal dependencies**. Blackfriday only depends on standard + library packages in Go. The source code is pretty + self-contained, so it is easy to add to any project, including + Google App Engine projects. + +* **Standards compliant**. Output successfully validates using the + W3C validation tool for HTML 4.01 and XHTML 1.0 Transitional. + + +Extensions +---------- + +In addition to the standard markdown syntax, this package +implements the following extensions: + +* **Intra-word emphasis supression**. The `_` character is + commonly used inside words when discussing code, so having + markdown interpret it as an emphasis command is usually the + wrong thing. Blackfriday lets you treat all emphasis markers as + normal characters when they occur inside a word. + +* **Tables**. Tables can be created by drawing them in the input + using a simple syntax: + + ``` + Name | Age + --------|------ + Bob | 27 + Alice | 23 + ``` + +* **Fenced code blocks**. In addition to the normal 4-space + indentation to mark code blocks, you can explicitly mark them + and supply a language (to make syntax highlighting simple). Just + mark it like this: + + ```go + func getTrue() bool { + return true + } + ``` + + You can use 3 or more backticks to mark the beginning of the + block, and the same number to mark the end of the block. + + To preserve classes of fenced code blocks while using the bluemonday + HTML sanitizer, use the following policy: + + ```go + p := bluemonday.UGCPolicy() + p.AllowAttrs("class").Matching(regexp.MustCompile("^language-[a-zA-Z0-9]+$")).OnElements("code") + html := p.SanitizeBytes(unsafe) + ``` + +* **Definition lists**. A simple definition list is made of a single-line + term followed by a colon and the definition for that term. + + Cat + : Fluffy animal everyone likes + + Internet + : Vector of transmission for pictures of cats + + Terms must be separated from the previous definition by a blank line. + +* **Footnotes**. A marker in the text that will become a superscript number; + a footnote definition that will be placed in a list of footnotes at the + end of the document. A footnote looks like this: + + This is a footnote.[^1] + + [^1]: the footnote text. + +* **Autolinking**. Blackfriday can find URLs that have not been + explicitly marked as links and turn them into links. + +* **Strikethrough**. Use two tildes (`~~`) to mark text that + should be crossed out. + +* **Hard line breaks**. With this extension enabled newlines in the input + translate into line breaks in the output. This extension is off by default. + +* **Smart quotes**. Smartypants-style punctuation substitution is + supported, turning normal double- and single-quote marks into + curly quotes, etc. + +* **LaTeX-style dash parsing** is an additional option, where `--` + is translated into `–`, and `---` is translated into + `—`. This differs from most smartypants processors, which + turn a single hyphen into an ndash and a double hyphen into an + mdash. + +* **Smart fractions**, where anything that looks like a fraction + is translated into suitable HTML (instead of just a few special + cases like most smartypant processors). For example, `4/5` + becomes `45`, which renders as + 45. + + +Other renderers +--------------- + +Blackfriday is structured to allow alternative rendering engines. Here +are a few of note: + +* [github_flavored_markdown](https://pkg.go.dev/github.com/shurcooL/github_flavored_markdown): + provides a GitHub Flavored Markdown renderer with fenced code block + highlighting, clickable heading anchor links. + + It's not customizable, and its goal is to produce HTML output + equivalent to the [GitHub Markdown API endpoint](https://developer.github.com/v3/markdown/#render-a-markdown-document-in-raw-mode), + except the rendering is performed locally. + +* [markdownfmt](https://github.com/shurcooL/markdownfmt): like gofmt, + but for markdown. + +* [LaTeX output](https://gitlab.com/ambrevar/blackfriday-latex): + renders output as LaTeX. + +* [bfchroma](https://github.com/Depado/bfchroma/): provides convenience + integration with the [Chroma](https://github.com/alecthomas/chroma) code + highlighting library. bfchroma is only compatible with v2 of Blackfriday and + provides a drop-in renderer ready to use with Blackfriday, as well as + options and means for further customization. + +* [Blackfriday-Confluence](https://github.com/kentaro-m/blackfriday-confluence): provides a [Confluence Wiki Markup](https://confluence.atlassian.com/doc/confluence-wiki-markup-251003035.html) renderer. + +* [Blackfriday-Slack](https://github.com/karriereat/blackfriday-slack): converts markdown to slack message style + + +TODO +---- + +* More unit testing +* Improve Unicode support. It does not understand all Unicode + rules (about what constitutes a letter, a punctuation symbol, + etc.), so it may fail to detect word boundaries correctly in + some instances. It is safe on all UTF-8 input. + + +License +------- + +[Blackfriday is distributed under the Simplified BSD License](LICENSE.txt) + + + [1]: https://daringfireball.net/projects/markdown/ "Markdown" + [2]: https://golang.org/ "Go Language" + [3]: https://github.com/vmg/sundown "Sundown" + [4]: https://pkg.go.dev/github.com/russross/blackfriday/v2#Parse "Parse func" + [5]: https://github.com/microcosm-cc/bluemonday "Bluemonday" + + [BuildV2SVG]: https://travis-ci.org/russross/blackfriday.svg?branch=v2 + [BuildV2URL]: https://travis-ci.org/russross/blackfriday + [PkgGoDevV2SVG]: https://pkg.go.dev/badge/github.com/russross/blackfriday/v2 + [PkgGoDevV2URL]: https://pkg.go.dev/github.com/russross/blackfriday/v2 diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/block.go b/tests/e2e/vendor/github.com/russross/blackfriday/v2/block.go new file mode 100644 index 0000000000..dcd61e6e35 --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/block.go @@ -0,0 +1,1612 @@ +// +// Blackfriday Markdown Processor +// Available at http://github.com/russross/blackfriday +// +// Copyright © 2011 Russ Ross . +// Distributed under the Simplified BSD License. +// See README.md for details. +// + +// +// Functions to parse block-level elements. +// + +package blackfriday + +import ( + "bytes" + "html" + "regexp" + "strings" + "unicode" +) + +const ( + charEntity = "&(?:#x[a-f0-9]{1,8}|#[0-9]{1,8}|[a-z][a-z0-9]{1,31});" + escapable = "[!\"#$%&'()*+,./:;<=>?@[\\\\\\]^_`{|}~-]" +) + +var ( + reBackslashOrAmp = regexp.MustCompile("[\\&]") + reEntityOrEscapedChar = regexp.MustCompile("(?i)\\\\" + escapable + "|" + charEntity) +) + +// Parse block-level data. +// Note: this function and many that it calls assume that +// the input buffer ends with a newline. +func (p *Markdown) block(data []byte) { + // this is called recursively: enforce a maximum depth + if p.nesting >= p.maxNesting { + return + } + p.nesting++ + + // parse out one block-level construct at a time + for len(data) > 0 { + // prefixed heading: + // + // # Heading 1 + // ## Heading 2 + // ... + // ###### Heading 6 + if p.isPrefixHeading(data) { + data = data[p.prefixHeading(data):] + continue + } + + // block of preformatted HTML: + // + //

+ // ... + //
+ if data[0] == '<' { + if i := p.html(data, true); i > 0 { + data = data[i:] + continue + } + } + + // title block + // + // % stuff + // % more stuff + // % even more stuff + if p.extensions&Titleblock != 0 { + if data[0] == '%' { + if i := p.titleBlock(data, true); i > 0 { + data = data[i:] + continue + } + } + } + + // blank lines. note: returns the # of bytes to skip + if i := p.isEmpty(data); i > 0 { + data = data[i:] + continue + } + + // indented code block: + // + // func max(a, b int) int { + // if a > b { + // return a + // } + // return b + // } + if p.codePrefix(data) > 0 { + data = data[p.code(data):] + continue + } + + // fenced code block: + // + // ``` go + // func fact(n int) int { + // if n <= 1 { + // return n + // } + // return n * fact(n-1) + // } + // ``` + if p.extensions&FencedCode != 0 { + if i := p.fencedCodeBlock(data, true); i > 0 { + data = data[i:] + continue + } + } + + // horizontal rule: + // + // ------ + // or + // ****** + // or + // ______ + if p.isHRule(data) { + p.addBlock(HorizontalRule, nil) + var i int + for i = 0; i < len(data) && data[i] != '\n'; i++ { + } + data = data[i:] + continue + } + + // block quote: + // + // > A big quote I found somewhere + // > on the web + if p.quotePrefix(data) > 0 { + data = data[p.quote(data):] + continue + } + + // table: + // + // Name | Age | Phone + // ------|-----|--------- + // Bob | 31 | 555-1234 + // Alice | 27 | 555-4321 + if p.extensions&Tables != 0 { + if i := p.table(data); i > 0 { + data = data[i:] + continue + } + } + + // an itemized/unordered list: + // + // * Item 1 + // * Item 2 + // + // also works with + or - + if p.uliPrefix(data) > 0 { + data = data[p.list(data, 0):] + continue + } + + // a numbered/ordered list: + // + // 1. Item 1 + // 2. Item 2 + if p.oliPrefix(data) > 0 { + data = data[p.list(data, ListTypeOrdered):] + continue + } + + // definition lists: + // + // Term 1 + // : Definition a + // : Definition b + // + // Term 2 + // : Definition c + if p.extensions&DefinitionLists != 0 { + if p.dliPrefix(data) > 0 { + data = data[p.list(data, ListTypeDefinition):] + continue + } + } + + // anything else must look like a normal paragraph + // note: this finds underlined headings, too + data = data[p.paragraph(data):] + } + + p.nesting-- +} + +func (p *Markdown) addBlock(typ NodeType, content []byte) *Node { + p.closeUnmatchedBlocks() + container := p.addChild(typ, 0) + container.content = content + return container +} + +func (p *Markdown) isPrefixHeading(data []byte) bool { + if data[0] != '#' { + return false + } + + if p.extensions&SpaceHeadings != 0 { + level := 0 + for level < 6 && level < len(data) && data[level] == '#' { + level++ + } + if level == len(data) || data[level] != ' ' { + return false + } + } + return true +} + +func (p *Markdown) prefixHeading(data []byte) int { + level := 0 + for level < 6 && level < len(data) && data[level] == '#' { + level++ + } + i := skipChar(data, level, ' ') + end := skipUntilChar(data, i, '\n') + skip := end + id := "" + if p.extensions&HeadingIDs != 0 { + j, k := 0, 0 + // find start/end of heading id + for j = i; j < end-1 && (data[j] != '{' || data[j+1] != '#'); j++ { + } + for k = j + 1; k < end && data[k] != '}'; k++ { + } + // extract heading id iff found + if j < end && k < end { + id = string(data[j+2 : k]) + end = j + skip = k + 1 + for end > 0 && data[end-1] == ' ' { + end-- + } + } + } + for end > 0 && data[end-1] == '#' { + if isBackslashEscaped(data, end-1) { + break + } + end-- + } + for end > 0 && data[end-1] == ' ' { + end-- + } + if end > i { + if id == "" && p.extensions&AutoHeadingIDs != 0 { + id = SanitizedAnchorName(string(data[i:end])) + } + block := p.addBlock(Heading, data[i:end]) + block.HeadingID = id + block.Level = level + } + return skip +} + +func (p *Markdown) isUnderlinedHeading(data []byte) int { + // test of level 1 heading + if data[0] == '=' { + i := skipChar(data, 1, '=') + i = skipChar(data, i, ' ') + if i < len(data) && data[i] == '\n' { + return 1 + } + return 0 + } + + // test of level 2 heading + if data[0] == '-' { + i := skipChar(data, 1, '-') + i = skipChar(data, i, ' ') + if i < len(data) && data[i] == '\n' { + return 2 + } + return 0 + } + + return 0 +} + +func (p *Markdown) titleBlock(data []byte, doRender bool) int { + if data[0] != '%' { + return 0 + } + splitData := bytes.Split(data, []byte("\n")) + var i int + for idx, b := range splitData { + if !bytes.HasPrefix(b, []byte("%")) { + i = idx // - 1 + break + } + } + + data = bytes.Join(splitData[0:i], []byte("\n")) + consumed := len(data) + data = bytes.TrimPrefix(data, []byte("% ")) + data = bytes.Replace(data, []byte("\n% "), []byte("\n"), -1) + block := p.addBlock(Heading, data) + block.Level = 1 + block.IsTitleblock = true + + return consumed +} + +func (p *Markdown) html(data []byte, doRender bool) int { + var i, j int + + // identify the opening tag + if data[0] != '<' { + return 0 + } + curtag, tagfound := p.htmlFindTag(data[1:]) + + // handle special cases + if !tagfound { + // check for an HTML comment + if size := p.htmlComment(data, doRender); size > 0 { + return size + } + + // check for an
tag + if size := p.htmlHr(data, doRender); size > 0 { + return size + } + + // no special case recognized + return 0 + } + + // look for an unindented matching closing tag + // followed by a blank line + found := false + /* + closetag := []byte("\n") + j = len(curtag) + 1 + for !found { + // scan for a closing tag at the beginning of a line + if skip := bytes.Index(data[j:], closetag); skip >= 0 { + j += skip + len(closetag) + } else { + break + } + + // see if it is the only thing on the line + if skip := p.isEmpty(data[j:]); skip > 0 { + // see if it is followed by a blank line/eof + j += skip + if j >= len(data) { + found = true + i = j + } else { + if skip := p.isEmpty(data[j:]); skip > 0 { + j += skip + found = true + i = j + } + } + } + } + */ + + // if not found, try a second pass looking for indented match + // but not if tag is "ins" or "del" (following original Markdown.pl) + if !found && curtag != "ins" && curtag != "del" { + i = 1 + for i < len(data) { + i++ + for i < len(data) && !(data[i-1] == '<' && data[i] == '/') { + i++ + } + + if i+2+len(curtag) >= len(data) { + break + } + + j = p.htmlFindEnd(curtag, data[i-1:]) + + if j > 0 { + i += j - 1 + found = true + break + } + } + } + + if !found { + return 0 + } + + // the end of the block has been found + if doRender { + // trim newlines + end := i + for end > 0 && data[end-1] == '\n' { + end-- + } + finalizeHTMLBlock(p.addBlock(HTMLBlock, data[:end])) + } + + return i +} + +func finalizeHTMLBlock(block *Node) { + block.Literal = block.content + block.content = nil +} + +// HTML comment, lax form +func (p *Markdown) htmlComment(data []byte, doRender bool) int { + i := p.inlineHTMLComment(data) + // needs to end with a blank line + if j := p.isEmpty(data[i:]); j > 0 { + size := i + j + if doRender { + // trim trailing newlines + end := size + for end > 0 && data[end-1] == '\n' { + end-- + } + block := p.addBlock(HTMLBlock, data[:end]) + finalizeHTMLBlock(block) + } + return size + } + return 0 +} + +// HR, which is the only self-closing block tag considered +func (p *Markdown) htmlHr(data []byte, doRender bool) int { + if len(data) < 4 { + return 0 + } + if data[0] != '<' || (data[1] != 'h' && data[1] != 'H') || (data[2] != 'r' && data[2] != 'R') { + return 0 + } + if data[3] != ' ' && data[3] != '/' && data[3] != '>' { + // not an
tag after all; at least not a valid one + return 0 + } + i := 3 + for i < len(data) && data[i] != '>' && data[i] != '\n' { + i++ + } + if i < len(data) && data[i] == '>' { + i++ + if j := p.isEmpty(data[i:]); j > 0 { + size := i + j + if doRender { + // trim newlines + end := size + for end > 0 && data[end-1] == '\n' { + end-- + } + finalizeHTMLBlock(p.addBlock(HTMLBlock, data[:end])) + } + return size + } + } + return 0 +} + +func (p *Markdown) htmlFindTag(data []byte) (string, bool) { + i := 0 + for i < len(data) && isalnum(data[i]) { + i++ + } + key := string(data[:i]) + if _, ok := blockTags[key]; ok { + return key, true + } + return "", false +} + +func (p *Markdown) htmlFindEnd(tag string, data []byte) int { + // assume data[0] == '<' && data[1] == '/' already tested + if tag == "hr" { + return 2 + } + // check if tag is a match + closetag := []byte("") + if !bytes.HasPrefix(data, closetag) { + return 0 + } + i := len(closetag) + + // check that the rest of the line is blank + skip := 0 + if skip = p.isEmpty(data[i:]); skip == 0 { + return 0 + } + i += skip + skip = 0 + + if i >= len(data) { + return i + } + + if p.extensions&LaxHTMLBlocks != 0 { + return i + } + if skip = p.isEmpty(data[i:]); skip == 0 { + // following line must be blank + return 0 + } + + return i + skip +} + +func (*Markdown) isEmpty(data []byte) int { + // it is okay to call isEmpty on an empty buffer + if len(data) == 0 { + return 0 + } + + var i int + for i = 0; i < len(data) && data[i] != '\n'; i++ { + if data[i] != ' ' && data[i] != '\t' { + return 0 + } + } + if i < len(data) && data[i] == '\n' { + i++ + } + return i +} + +func (*Markdown) isHRule(data []byte) bool { + i := 0 + + // skip up to three spaces + for i < 3 && data[i] == ' ' { + i++ + } + + // look at the hrule char + if data[i] != '*' && data[i] != '-' && data[i] != '_' { + return false + } + c := data[i] + + // the whole line must be the char or whitespace + n := 0 + for i < len(data) && data[i] != '\n' { + switch { + case data[i] == c: + n++ + case data[i] != ' ': + return false + } + i++ + } + + return n >= 3 +} + +// isFenceLine checks if there's a fence line (e.g., ``` or ``` go) at the beginning of data, +// and returns the end index if so, or 0 otherwise. It also returns the marker found. +// If info is not nil, it gets set to the syntax specified in the fence line. +func isFenceLine(data []byte, info *string, oldmarker string) (end int, marker string) { + i, size := 0, 0 + + // skip up to three spaces + for i < len(data) && i < 3 && data[i] == ' ' { + i++ + } + + // check for the marker characters: ~ or ` + if i >= len(data) { + return 0, "" + } + if data[i] != '~' && data[i] != '`' { + return 0, "" + } + + c := data[i] + + // the whole line must be the same char or whitespace + for i < len(data) && data[i] == c { + size++ + i++ + } + + // the marker char must occur at least 3 times + if size < 3 { + return 0, "" + } + marker = string(data[i-size : i]) + + // if this is the end marker, it must match the beginning marker + if oldmarker != "" && marker != oldmarker { + return 0, "" + } + + // TODO(shurcooL): It's probably a good idea to simplify the 2 code paths here + // into one, always get the info string, and discard it if the caller doesn't care. + if info != nil { + infoLength := 0 + i = skipChar(data, i, ' ') + + if i >= len(data) { + if i == len(data) { + return i, marker + } + return 0, "" + } + + infoStart := i + + if data[i] == '{' { + i++ + infoStart++ + + for i < len(data) && data[i] != '}' && data[i] != '\n' { + infoLength++ + i++ + } + + if i >= len(data) || data[i] != '}' { + return 0, "" + } + + // strip all whitespace at the beginning and the end + // of the {} block + for infoLength > 0 && isspace(data[infoStart]) { + infoStart++ + infoLength-- + } + + for infoLength > 0 && isspace(data[infoStart+infoLength-1]) { + infoLength-- + } + i++ + i = skipChar(data, i, ' ') + } else { + for i < len(data) && !isverticalspace(data[i]) { + infoLength++ + i++ + } + } + + *info = strings.TrimSpace(string(data[infoStart : infoStart+infoLength])) + } + + if i == len(data) { + return i, marker + } + if i > len(data) || data[i] != '\n' { + return 0, "" + } + return i + 1, marker // Take newline into account. +} + +// fencedCodeBlock returns the end index if data contains a fenced code block at the beginning, +// or 0 otherwise. It writes to out if doRender is true, otherwise it has no side effects. +// If doRender is true, a final newline is mandatory to recognize the fenced code block. +func (p *Markdown) fencedCodeBlock(data []byte, doRender bool) int { + var info string + beg, marker := isFenceLine(data, &info, "") + if beg == 0 || beg >= len(data) { + return 0 + } + fenceLength := beg - 1 + + var work bytes.Buffer + work.Write([]byte(info)) + work.WriteByte('\n') + + for { + // safe to assume beg < len(data) + + // check for the end of the code block + fenceEnd, _ := isFenceLine(data[beg:], nil, marker) + if fenceEnd != 0 { + beg += fenceEnd + break + } + + // copy the current line + end := skipUntilChar(data, beg, '\n') + 1 + + // did we reach the end of the buffer without a closing marker? + if end >= len(data) { + return 0 + } + + // verbatim copy to the working buffer + if doRender { + work.Write(data[beg:end]) + } + beg = end + } + + if doRender { + block := p.addBlock(CodeBlock, work.Bytes()) // TODO: get rid of temp buffer + block.IsFenced = true + block.FenceLength = fenceLength + finalizeCodeBlock(block) + } + + return beg +} + +func unescapeChar(str []byte) []byte { + if str[0] == '\\' { + return []byte{str[1]} + } + return []byte(html.UnescapeString(string(str))) +} + +func unescapeString(str []byte) []byte { + if reBackslashOrAmp.Match(str) { + return reEntityOrEscapedChar.ReplaceAllFunc(str, unescapeChar) + } + return str +} + +func finalizeCodeBlock(block *Node) { + if block.IsFenced { + newlinePos := bytes.IndexByte(block.content, '\n') + firstLine := block.content[:newlinePos] + rest := block.content[newlinePos+1:] + block.Info = unescapeString(bytes.Trim(firstLine, "\n")) + block.Literal = rest + } else { + block.Literal = block.content + } + block.content = nil +} + +func (p *Markdown) table(data []byte) int { + table := p.addBlock(Table, nil) + i, columns := p.tableHeader(data) + if i == 0 { + p.tip = table.Parent + table.Unlink() + return 0 + } + + p.addBlock(TableBody, nil) + + for i < len(data) { + pipes, rowStart := 0, i + for ; i < len(data) && data[i] != '\n'; i++ { + if data[i] == '|' { + pipes++ + } + } + + if pipes == 0 { + i = rowStart + break + } + + // include the newline in data sent to tableRow + if i < len(data) && data[i] == '\n' { + i++ + } + p.tableRow(data[rowStart:i], columns, false) + } + + return i +} + +// check if the specified position is preceded by an odd number of backslashes +func isBackslashEscaped(data []byte, i int) bool { + backslashes := 0 + for i-backslashes-1 >= 0 && data[i-backslashes-1] == '\\' { + backslashes++ + } + return backslashes&1 == 1 +} + +func (p *Markdown) tableHeader(data []byte) (size int, columns []CellAlignFlags) { + i := 0 + colCount := 1 + for i = 0; i < len(data) && data[i] != '\n'; i++ { + if data[i] == '|' && !isBackslashEscaped(data, i) { + colCount++ + } + } + + // doesn't look like a table header + if colCount == 1 { + return + } + + // include the newline in the data sent to tableRow + j := i + if j < len(data) && data[j] == '\n' { + j++ + } + header := data[:j] + + // column count ignores pipes at beginning or end of line + if data[0] == '|' { + colCount-- + } + if i > 2 && data[i-1] == '|' && !isBackslashEscaped(data, i-1) { + colCount-- + } + + columns = make([]CellAlignFlags, colCount) + + // move on to the header underline + i++ + if i >= len(data) { + return + } + + if data[i] == '|' && !isBackslashEscaped(data, i) { + i++ + } + i = skipChar(data, i, ' ') + + // each column header is of form: / *:?-+:? *|/ with # dashes + # colons >= 3 + // and trailing | optional on last column + col := 0 + for i < len(data) && data[i] != '\n' { + dashes := 0 + + if data[i] == ':' { + i++ + columns[col] |= TableAlignmentLeft + dashes++ + } + for i < len(data) && data[i] == '-' { + i++ + dashes++ + } + if i < len(data) && data[i] == ':' { + i++ + columns[col] |= TableAlignmentRight + dashes++ + } + for i < len(data) && data[i] == ' ' { + i++ + } + if i == len(data) { + return + } + // end of column test is messy + switch { + case dashes < 3: + // not a valid column + return + + case data[i] == '|' && !isBackslashEscaped(data, i): + // marker found, now skip past trailing whitespace + col++ + i++ + for i < len(data) && data[i] == ' ' { + i++ + } + + // trailing junk found after last column + if col >= colCount && i < len(data) && data[i] != '\n' { + return + } + + case (data[i] != '|' || isBackslashEscaped(data, i)) && col+1 < colCount: + // something else found where marker was required + return + + case data[i] == '\n': + // marker is optional for the last column + col++ + + default: + // trailing junk found after last column + return + } + } + if col != colCount { + return + } + + p.addBlock(TableHead, nil) + p.tableRow(header, columns, true) + size = i + if size < len(data) && data[size] == '\n' { + size++ + } + return +} + +func (p *Markdown) tableRow(data []byte, columns []CellAlignFlags, header bool) { + p.addBlock(TableRow, nil) + i, col := 0, 0 + + if data[i] == '|' && !isBackslashEscaped(data, i) { + i++ + } + + for col = 0; col < len(columns) && i < len(data); col++ { + for i < len(data) && data[i] == ' ' { + i++ + } + + cellStart := i + + for i < len(data) && (data[i] != '|' || isBackslashEscaped(data, i)) && data[i] != '\n' { + i++ + } + + cellEnd := i + + // skip the end-of-cell marker, possibly taking us past end of buffer + i++ + + for cellEnd > cellStart && cellEnd-1 < len(data) && data[cellEnd-1] == ' ' { + cellEnd-- + } + + cell := p.addBlock(TableCell, data[cellStart:cellEnd]) + cell.IsHeader = header + cell.Align = columns[col] + } + + // pad it out with empty columns to get the right number + for ; col < len(columns); col++ { + cell := p.addBlock(TableCell, nil) + cell.IsHeader = header + cell.Align = columns[col] + } + + // silently ignore rows with too many cells +} + +// returns blockquote prefix length +func (p *Markdown) quotePrefix(data []byte) int { + i := 0 + for i < 3 && i < len(data) && data[i] == ' ' { + i++ + } + if i < len(data) && data[i] == '>' { + if i+1 < len(data) && data[i+1] == ' ' { + return i + 2 + } + return i + 1 + } + return 0 +} + +// blockquote ends with at least one blank line +// followed by something without a blockquote prefix +func (p *Markdown) terminateBlockquote(data []byte, beg, end int) bool { + if p.isEmpty(data[beg:]) <= 0 { + return false + } + if end >= len(data) { + return true + } + return p.quotePrefix(data[end:]) == 0 && p.isEmpty(data[end:]) == 0 +} + +// parse a blockquote fragment +func (p *Markdown) quote(data []byte) int { + block := p.addBlock(BlockQuote, nil) + var raw bytes.Buffer + beg, end := 0, 0 + for beg < len(data) { + end = beg + // Step over whole lines, collecting them. While doing that, check for + // fenced code and if one's found, incorporate it altogether, + // irregardless of any contents inside it + for end < len(data) && data[end] != '\n' { + if p.extensions&FencedCode != 0 { + if i := p.fencedCodeBlock(data[end:], false); i > 0 { + // -1 to compensate for the extra end++ after the loop: + end += i - 1 + break + } + } + end++ + } + if end < len(data) && data[end] == '\n' { + end++ + } + if pre := p.quotePrefix(data[beg:]); pre > 0 { + // skip the prefix + beg += pre + } else if p.terminateBlockquote(data, beg, end) { + break + } + // this line is part of the blockquote + raw.Write(data[beg:end]) + beg = end + } + p.block(raw.Bytes()) + p.finalize(block) + return end +} + +// returns prefix length for block code +func (p *Markdown) codePrefix(data []byte) int { + if len(data) >= 1 && data[0] == '\t' { + return 1 + } + if len(data) >= 4 && data[0] == ' ' && data[1] == ' ' && data[2] == ' ' && data[3] == ' ' { + return 4 + } + return 0 +} + +func (p *Markdown) code(data []byte) int { + var work bytes.Buffer + + i := 0 + for i < len(data) { + beg := i + for i < len(data) && data[i] != '\n' { + i++ + } + if i < len(data) && data[i] == '\n' { + i++ + } + + blankline := p.isEmpty(data[beg:i]) > 0 + if pre := p.codePrefix(data[beg:i]); pre > 0 { + beg += pre + } else if !blankline { + // non-empty, non-prefixed line breaks the pre + i = beg + break + } + + // verbatim copy to the working buffer + if blankline { + work.WriteByte('\n') + } else { + work.Write(data[beg:i]) + } + } + + // trim all the \n off the end of work + workbytes := work.Bytes() + eol := len(workbytes) + for eol > 0 && workbytes[eol-1] == '\n' { + eol-- + } + if eol != len(workbytes) { + work.Truncate(eol) + } + + work.WriteByte('\n') + + block := p.addBlock(CodeBlock, work.Bytes()) // TODO: get rid of temp buffer + block.IsFenced = false + finalizeCodeBlock(block) + + return i +} + +// returns unordered list item prefix +func (p *Markdown) uliPrefix(data []byte) int { + i := 0 + // start with up to 3 spaces + for i < len(data) && i < 3 && data[i] == ' ' { + i++ + } + if i >= len(data)-1 { + return 0 + } + // need one of {'*', '+', '-'} followed by a space or a tab + if (data[i] != '*' && data[i] != '+' && data[i] != '-') || + (data[i+1] != ' ' && data[i+1] != '\t') { + return 0 + } + return i + 2 +} + +// returns ordered list item prefix +func (p *Markdown) oliPrefix(data []byte) int { + i := 0 + + // start with up to 3 spaces + for i < 3 && i < len(data) && data[i] == ' ' { + i++ + } + + // count the digits + start := i + for i < len(data) && data[i] >= '0' && data[i] <= '9' { + i++ + } + if start == i || i >= len(data)-1 { + return 0 + } + + // we need >= 1 digits followed by a dot and a space or a tab + if data[i] != '.' || !(data[i+1] == ' ' || data[i+1] == '\t') { + return 0 + } + return i + 2 +} + +// returns definition list item prefix +func (p *Markdown) dliPrefix(data []byte) int { + if len(data) < 2 { + return 0 + } + i := 0 + // need a ':' followed by a space or a tab + if data[i] != ':' || !(data[i+1] == ' ' || data[i+1] == '\t') { + return 0 + } + for i < len(data) && data[i] == ' ' { + i++ + } + return i + 2 +} + +// parse ordered or unordered list block +func (p *Markdown) list(data []byte, flags ListType) int { + i := 0 + flags |= ListItemBeginningOfList + block := p.addBlock(List, nil) + block.ListFlags = flags + block.Tight = true + + for i < len(data) { + skip := p.listItem(data[i:], &flags) + if flags&ListItemContainsBlock != 0 { + block.ListData.Tight = false + } + i += skip + if skip == 0 || flags&ListItemEndOfList != 0 { + break + } + flags &= ^ListItemBeginningOfList + } + + above := block.Parent + finalizeList(block) + p.tip = above + return i +} + +// Returns true if the list item is not the same type as its parent list +func (p *Markdown) listTypeChanged(data []byte, flags *ListType) bool { + if p.dliPrefix(data) > 0 && *flags&ListTypeDefinition == 0 { + return true + } else if p.oliPrefix(data) > 0 && *flags&ListTypeOrdered == 0 { + return true + } else if p.uliPrefix(data) > 0 && (*flags&ListTypeOrdered != 0 || *flags&ListTypeDefinition != 0) { + return true + } + return false +} + +// Returns true if block ends with a blank line, descending if needed +// into lists and sublists. +func endsWithBlankLine(block *Node) bool { + // TODO: figure this out. Always false now. + for block != nil { + //if block.lastLineBlank { + //return true + //} + t := block.Type + if t == List || t == Item { + block = block.LastChild + } else { + break + } + } + return false +} + +func finalizeList(block *Node) { + block.open = false + item := block.FirstChild + for item != nil { + // check for non-final list item ending with blank line: + if endsWithBlankLine(item) && item.Next != nil { + block.ListData.Tight = false + break + } + // recurse into children of list item, to see if there are spaces + // between any of them: + subItem := item.FirstChild + for subItem != nil { + if endsWithBlankLine(subItem) && (item.Next != nil || subItem.Next != nil) { + block.ListData.Tight = false + break + } + subItem = subItem.Next + } + item = item.Next + } +} + +// Parse a single list item. +// Assumes initial prefix is already removed if this is a sublist. +func (p *Markdown) listItem(data []byte, flags *ListType) int { + // keep track of the indentation of the first line + itemIndent := 0 + if data[0] == '\t' { + itemIndent += 4 + } else { + for itemIndent < 3 && data[itemIndent] == ' ' { + itemIndent++ + } + } + + var bulletChar byte = '*' + i := p.uliPrefix(data) + if i == 0 { + i = p.oliPrefix(data) + } else { + bulletChar = data[i-2] + } + if i == 0 { + i = p.dliPrefix(data) + // reset definition term flag + if i > 0 { + *flags &= ^ListTypeTerm + } + } + if i == 0 { + // if in definition list, set term flag and continue + if *flags&ListTypeDefinition != 0 { + *flags |= ListTypeTerm + } else { + return 0 + } + } + + // skip leading whitespace on first line + for i < len(data) && data[i] == ' ' { + i++ + } + + // find the end of the line + line := i + for i > 0 && i < len(data) && data[i-1] != '\n' { + i++ + } + + // get working buffer + var raw bytes.Buffer + + // put the first line into the working buffer + raw.Write(data[line:i]) + line = i + + // process the following lines + containsBlankLine := false + sublist := 0 + codeBlockMarker := "" + +gatherlines: + for line < len(data) { + i++ + + // find the end of this line + for i < len(data) && data[i-1] != '\n' { + i++ + } + + // if it is an empty line, guess that it is part of this item + // and move on to the next line + if p.isEmpty(data[line:i]) > 0 { + containsBlankLine = true + line = i + continue + } + + // calculate the indentation + indent := 0 + indentIndex := 0 + if data[line] == '\t' { + indentIndex++ + indent += 4 + } else { + for indent < 4 && line+indent < i && data[line+indent] == ' ' { + indent++ + indentIndex++ + } + } + + chunk := data[line+indentIndex : i] + + if p.extensions&FencedCode != 0 { + // determine if in or out of codeblock + // if in codeblock, ignore normal list processing + _, marker := isFenceLine(chunk, nil, codeBlockMarker) + if marker != "" { + if codeBlockMarker == "" { + // start of codeblock + codeBlockMarker = marker + } else { + // end of codeblock. + codeBlockMarker = "" + } + } + // we are in a codeblock, write line, and continue + if codeBlockMarker != "" || marker != "" { + raw.Write(data[line+indentIndex : i]) + line = i + continue gatherlines + } + } + + // evaluate how this line fits in + switch { + // is this a nested list item? + case (p.uliPrefix(chunk) > 0 && !p.isHRule(chunk)) || + p.oliPrefix(chunk) > 0 || + p.dliPrefix(chunk) > 0: + + // to be a nested list, it must be indented more + // if not, it is either a different kind of list + // or the next item in the same list + if indent <= itemIndent { + if p.listTypeChanged(chunk, flags) { + *flags |= ListItemEndOfList + } else if containsBlankLine { + *flags |= ListItemContainsBlock + } + + break gatherlines + } + + if containsBlankLine { + *flags |= ListItemContainsBlock + } + + // is this the first item in the nested list? + if sublist == 0 { + sublist = raw.Len() + } + + // is this a nested prefix heading? + case p.isPrefixHeading(chunk): + // if the heading is not indented, it is not nested in the list + // and thus ends the list + if containsBlankLine && indent < 4 { + *flags |= ListItemEndOfList + break gatherlines + } + *flags |= ListItemContainsBlock + + // anything following an empty line is only part + // of this item if it is indented 4 spaces + // (regardless of the indentation of the beginning of the item) + case containsBlankLine && indent < 4: + if *flags&ListTypeDefinition != 0 && i < len(data)-1 { + // is the next item still a part of this list? + next := i + for next < len(data) && data[next] != '\n' { + next++ + } + for next < len(data)-1 && data[next] == '\n' { + next++ + } + if i < len(data)-1 && data[i] != ':' && data[next] != ':' { + *flags |= ListItemEndOfList + } + } else { + *flags |= ListItemEndOfList + } + break gatherlines + + // a blank line means this should be parsed as a block + case containsBlankLine: + raw.WriteByte('\n') + *flags |= ListItemContainsBlock + } + + // if this line was preceded by one or more blanks, + // re-introduce the blank into the buffer + if containsBlankLine { + containsBlankLine = false + raw.WriteByte('\n') + } + + // add the line into the working buffer without prefix + raw.Write(data[line+indentIndex : i]) + + line = i + } + + rawBytes := raw.Bytes() + + block := p.addBlock(Item, nil) + block.ListFlags = *flags + block.Tight = false + block.BulletChar = bulletChar + block.Delimiter = '.' // Only '.' is possible in Markdown, but ')' will also be possible in CommonMark + + // render the contents of the list item + if *flags&ListItemContainsBlock != 0 && *flags&ListTypeTerm == 0 { + // intermediate render of block item, except for definition term + if sublist > 0 { + p.block(rawBytes[:sublist]) + p.block(rawBytes[sublist:]) + } else { + p.block(rawBytes) + } + } else { + // intermediate render of inline item + if sublist > 0 { + child := p.addChild(Paragraph, 0) + child.content = rawBytes[:sublist] + p.block(rawBytes[sublist:]) + } else { + child := p.addChild(Paragraph, 0) + child.content = rawBytes + } + } + return line +} + +// render a single paragraph that has already been parsed out +func (p *Markdown) renderParagraph(data []byte) { + if len(data) == 0 { + return + } + + // trim leading spaces + beg := 0 + for data[beg] == ' ' { + beg++ + } + + end := len(data) + // trim trailing newline + if data[len(data)-1] == '\n' { + end-- + } + + // trim trailing spaces + for end > beg && data[end-1] == ' ' { + end-- + } + + p.addBlock(Paragraph, data[beg:end]) +} + +func (p *Markdown) paragraph(data []byte) int { + // prev: index of 1st char of previous line + // line: index of 1st char of current line + // i: index of cursor/end of current line + var prev, line, i int + tabSize := TabSizeDefault + if p.extensions&TabSizeEight != 0 { + tabSize = TabSizeDouble + } + // keep going until we find something to mark the end of the paragraph + for i < len(data) { + // mark the beginning of the current line + prev = line + current := data[i:] + line = i + + // did we find a reference or a footnote? If so, end a paragraph + // preceding it and report that we have consumed up to the end of that + // reference: + if refEnd := isReference(p, current, tabSize); refEnd > 0 { + p.renderParagraph(data[:i]) + return i + refEnd + } + + // did we find a blank line marking the end of the paragraph? + if n := p.isEmpty(current); n > 0 { + // did this blank line followed by a definition list item? + if p.extensions&DefinitionLists != 0 { + if i < len(data)-1 && data[i+1] == ':' { + return p.list(data[prev:], ListTypeDefinition) + } + } + + p.renderParagraph(data[:i]) + return i + n + } + + // an underline under some text marks a heading, so our paragraph ended on prev line + if i > 0 { + if level := p.isUnderlinedHeading(current); level > 0 { + // render the paragraph + p.renderParagraph(data[:prev]) + + // ignore leading and trailing whitespace + eol := i - 1 + for prev < eol && data[prev] == ' ' { + prev++ + } + for eol > prev && data[eol-1] == ' ' { + eol-- + } + + id := "" + if p.extensions&AutoHeadingIDs != 0 { + id = SanitizedAnchorName(string(data[prev:eol])) + } + + block := p.addBlock(Heading, data[prev:eol]) + block.Level = level + block.HeadingID = id + + // find the end of the underline + for i < len(data) && data[i] != '\n' { + i++ + } + return i + } + } + + // if the next line starts a block of HTML, then the paragraph ends here + if p.extensions&LaxHTMLBlocks != 0 { + if data[i] == '<' && p.html(current, false) > 0 { + // rewind to before the HTML block + p.renderParagraph(data[:i]) + return i + } + } + + // if there's a prefixed heading or a horizontal rule after this, paragraph is over + if p.isPrefixHeading(current) || p.isHRule(current) { + p.renderParagraph(data[:i]) + return i + } + + // if there's a fenced code block, paragraph is over + if p.extensions&FencedCode != 0 { + if p.fencedCodeBlock(current, false) > 0 { + p.renderParagraph(data[:i]) + return i + } + } + + // if there's a definition list item, prev line is a definition term + if p.extensions&DefinitionLists != 0 { + if p.dliPrefix(current) != 0 { + ret := p.list(data[prev:], ListTypeDefinition) + return ret + } + } + + // if there's a list after this, paragraph is over + if p.extensions&NoEmptyLineBeforeBlock != 0 { + if p.uliPrefix(current) != 0 || + p.oliPrefix(current) != 0 || + p.quotePrefix(current) != 0 || + p.codePrefix(current) != 0 { + p.renderParagraph(data[:i]) + return i + } + } + + // otherwise, scan to the beginning of the next line + nl := bytes.IndexByte(data[i:], '\n') + if nl >= 0 { + i += nl + 1 + } else { + i += len(data[i:]) + } + } + + p.renderParagraph(data[:i]) + return i +} + +func skipChar(data []byte, start int, char byte) int { + i := start + for i < len(data) && data[i] == char { + i++ + } + return i +} + +func skipUntilChar(text []byte, start int, char byte) int { + i := start + for i < len(text) && text[i] != char { + i++ + } + return i +} + +// SanitizedAnchorName returns a sanitized anchor name for the given text. +// +// It implements the algorithm specified in the package comment. +func SanitizedAnchorName(text string) string { + var anchorName []rune + futureDash := false + for _, r := range text { + switch { + case unicode.IsLetter(r) || unicode.IsNumber(r): + if futureDash && len(anchorName) > 0 { + anchorName = append(anchorName, '-') + } + futureDash = false + anchorName = append(anchorName, unicode.ToLower(r)) + default: + futureDash = true + } + } + return string(anchorName) +} diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/doc.go b/tests/e2e/vendor/github.com/russross/blackfriday/v2/doc.go new file mode 100644 index 0000000000..57ff152a05 --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/doc.go @@ -0,0 +1,46 @@ +// Package blackfriday is a markdown processor. +// +// It translates plain text with simple formatting rules into an AST, which can +// then be further processed to HTML (provided by Blackfriday itself) or other +// formats (provided by the community). +// +// The simplest way to invoke Blackfriday is to call the Run function. It will +// take a text input and produce a text output in HTML (or other format). +// +// A slightly more sophisticated way to use Blackfriday is to create a Markdown +// processor and to call Parse, which returns a syntax tree for the input +// document. You can leverage Blackfriday's parsing for content extraction from +// markdown documents. You can assign a custom renderer and set various options +// to the Markdown processor. +// +// If you're interested in calling Blackfriday from command line, see +// https://github.com/russross/blackfriday-tool. +// +// Sanitized Anchor Names +// +// Blackfriday includes an algorithm for creating sanitized anchor names +// corresponding to a given input text. This algorithm is used to create +// anchors for headings when AutoHeadingIDs extension is enabled. The +// algorithm is specified below, so that other packages can create +// compatible anchor names and links to those anchors. +// +// The algorithm iterates over the input text, interpreted as UTF-8, +// one Unicode code point (rune) at a time. All runes that are letters (category L) +// or numbers (category N) are considered valid characters. They are mapped to +// lower case, and included in the output. All other runes are considered +// invalid characters. Invalid characters that precede the first valid character, +// as well as invalid character that follow the last valid character +// are dropped completely. All other sequences of invalid characters +// between two valid characters are replaced with a single dash character '-'. +// +// SanitizedAnchorName exposes this functionality, and can be used to +// create compatible links to the anchor names generated by blackfriday. +// This algorithm is also implemented in a small standalone package at +// github.com/shurcooL/sanitized_anchor_name. It can be useful for clients +// that want a small package and don't need full functionality of blackfriday. +package blackfriday + +// NOTE: Keep Sanitized Anchor Name algorithm in sync with package +// github.com/shurcooL/sanitized_anchor_name. +// Otherwise, users of sanitized_anchor_name will get anchor names +// that are incompatible with those generated by blackfriday. diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/entities.go b/tests/e2e/vendor/github.com/russross/blackfriday/v2/entities.go new file mode 100644 index 0000000000..a2c3edb691 --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/entities.go @@ -0,0 +1,2236 @@ +package blackfriday + +// Extracted from https://html.spec.whatwg.org/multipage/entities.json +var entities = map[string]bool{ + "Æ": true, + "Æ": true, + "&": true, + "&": true, + "Á": true, + "Á": true, + "Ă": true, + "Â": true, + "Â": true, + "А": true, + "𝔄": true, + "À": true, + "À": true, + "Α": true, + "Ā": true, + 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+ "⫌": true, + "⫈": true, + "⫔": true, + "⫖": true, + "⇙": true, + "⤦": true, + "↙": true, + "↙": true, + "⤪": true, + "ß": true, + "ß": true, + "⌖": true, + "τ": true, + "⎴": true, + "ť": true, + "ţ": true, + "т": true, + "⃛": true, + "⌕": true, + "𝔱": true, + "∴": true, + "∴": true, + "θ": true, + "ϑ": true, + "ϑ": true, + "≈": true, + "∼": true, + " ": true, + "≈": true, + "∼": true, + "þ": true, + "þ": true, + "˜": true, + "×": true, + "×": true, + "⊠": true, + "⨱": true, + "⨰": true, + "∭": true, + "⤨": true, + "⊤": true, + "⌶": true, + "⫱": true, + "𝕥": true, + "⫚": true, + "⤩": true, + "‴": true, + "™": true, + "▵": true, + "▿": true, + "◃": true, + "⊴": true, + "≜": true, + "▹": true, + "⊵": true, + "◬": true, + "≜": true, + "⨺": true, + "⨹": true, + "⧍": true, + "⨻": true, + "⏢": true, + "𝓉": true, + "ц": true, + "ћ": true, + "ŧ": true, + "≬": true, + "↞": true, + "↠": true, + "⇑": true, + "⥣": true, + "ú": true, + "ú": true, + "↑": true, + "ў": true, + "ŭ": true, + "û": true, + "û": true, + "у": true, + "⇅": true, + "ű": true, + "⥮": true, + "⥾": true, + "𝔲": true, + "ù": true, + "ù": true, + "↿": true, + "↾": true, + "▀": true, + "⌜": true, + "⌜": true, + "⌏": true, + "◸": true, + "ū": true, + "¨": true, + "¨": true, + "ų": true, + "𝕦": true, + "↑": true, + "↕": true, + "↿": true, + "↾": true, + "⊎": true, + "υ": true, + "ϒ": true, + "υ": true, + "⇈": true, + "⌝": true, + "⌝": true, + "⌎": true, + "ů": true, + "◹": true, + "𝓊": true, + "⋰": true, + "ũ": true, + "▵": true, + "▴": true, + "⇈": true, + "ü": true, + "ü": true, + "⦧": true, + "⇕": true, + "⫨": true, + "⫩": true, + "⊨": true, + "⦜": true, + "ϵ": true, + "ϰ": true, + "∅": true, + "ϕ": true, + "ϖ": true, + "∝": true, + "↕": true, + "ϱ": true, + "ς": true, + "⊊︀": true, + "⫋︀": true, + "⊋︀": true, + "⫌︀": true, + "ϑ": true, + "⊲": true, + "⊳": true, + "в": true, + "⊢": true, + "∨": true, + "⊻": true, + "≚": true, + "⋮": true, + "|": true, + "|": true, + "𝔳": true, + "⊲": true, + "⊂⃒": true, + "⊃⃒": true, + "𝕧": true, + "∝": true, + "⊳": true, + "𝓋": true, + "⫋︀": true, + "⊊︀": true, + "⫌︀": true, + "⊋︀": true, + "⦚": true, + "ŵ": true, + "⩟": true, + "∧": true, + "≙": true, + "℘": true, + "𝔴": true, + "𝕨": true, + "℘": true, + "≀": true, + "≀": true, + "𝓌": true, + "⋂": true, + "◯": true, + "⋃": true, + "▽": true, + "𝔵": true, + "⟺": true, + "⟷": true, + "ξ": true, + "⟸": true, + "⟵": true, + "⟼": true, + "⋻": true, + "⨀": true, + "𝕩": true, + "⨁": true, + "⨂": true, + "⟹": true, + "⟶": true, + "𝓍": true, + "⨆": true, + "⨄": true, + "△": true, + "⋁": true, + "⋀": true, + "ý": true, + "ý": true, + "я": true, + "ŷ": true, + "ы": true, + "¥": true, + "¥": true, + "𝔶": true, + "ї": true, + "𝕪": true, + "𝓎": true, + "ю": true, + "ÿ": true, + "ÿ": true, + "ź": true, + "ž": true, + "з": true, + "ż": true, + "ℨ": true, + "ζ": true, + "𝔷": true, + "ж": true, + "⇝": true, + "𝕫": true, + "𝓏": true, + "‍": true, + "‌": true, +} diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/esc.go b/tests/e2e/vendor/github.com/russross/blackfriday/v2/esc.go new file mode 100644 index 0000000000..6ab60102c9 --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/esc.go @@ -0,0 +1,70 @@ +package blackfriday + +import ( + "html" + "io" +) + +var htmlEscaper = [256][]byte{ + '&': []byte("&"), + '<': []byte("<"), + '>': []byte(">"), + '"': []byte("""), +} + +func escapeHTML(w io.Writer, s []byte) { + escapeEntities(w, s, false) +} + +func escapeAllHTML(w io.Writer, s []byte) { + escapeEntities(w, s, true) +} + +func escapeEntities(w io.Writer, s []byte, escapeValidEntities bool) { + var start, end int + for end < len(s) { + escSeq := htmlEscaper[s[end]] + if escSeq != nil { + isEntity, entityEnd := nodeIsEntity(s, end) + if isEntity && !escapeValidEntities { + w.Write(s[start : entityEnd+1]) + start = entityEnd + 1 + } else { + w.Write(s[start:end]) + w.Write(escSeq) + start = end + 1 + } + } + end++ + } + if start < len(s) && end <= len(s) { + w.Write(s[start:end]) + } +} + +func nodeIsEntity(s []byte, end int) (isEntity bool, endEntityPos int) { + isEntity = false + endEntityPos = end + 1 + + if s[end] == '&' { + for endEntityPos < len(s) { + if s[endEntityPos] == ';' { + if entities[string(s[end:endEntityPos+1])] { + isEntity = true + break + } + } + if !isalnum(s[endEntityPos]) && s[endEntityPos] != '&' && s[endEntityPos] != '#' { + break + } + endEntityPos++ + } + } + + return isEntity, endEntityPos +} + +func escLink(w io.Writer, text []byte) { + unesc := html.UnescapeString(string(text)) + escapeHTML(w, []byte(unesc)) +} diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/html.go b/tests/e2e/vendor/github.com/russross/blackfriday/v2/html.go new file mode 100644 index 0000000000..cb4f26e30f --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/html.go @@ -0,0 +1,952 @@ +// +// Blackfriday Markdown Processor +// Available at http://github.com/russross/blackfriday +// +// Copyright © 2011 Russ Ross . +// Distributed under the Simplified BSD License. +// See README.md for details. +// + +// +// +// HTML rendering backend +// +// + +package blackfriday + +import ( + "bytes" + "fmt" + "io" + "regexp" + "strings" +) + +// HTMLFlags control optional behavior of HTML renderer. +type HTMLFlags int + +// HTML renderer configuration options. +const ( + HTMLFlagsNone HTMLFlags = 0 + SkipHTML HTMLFlags = 1 << iota // Skip preformatted HTML blocks + SkipImages // Skip embedded images + SkipLinks // Skip all links + Safelink // Only link to trusted protocols + NofollowLinks // Only link with rel="nofollow" + NoreferrerLinks // Only link with rel="noreferrer" + NoopenerLinks // Only link with rel="noopener" + HrefTargetBlank // Add a blank target + CompletePage // Generate a complete HTML page + UseXHTML // Generate XHTML output instead of HTML + FootnoteReturnLinks // Generate a link at the end of a footnote to return to the source + Smartypants // Enable smart punctuation substitutions + SmartypantsFractions // Enable smart fractions (with Smartypants) + SmartypantsDashes // Enable smart dashes (with Smartypants) + SmartypantsLatexDashes // Enable LaTeX-style dashes (with Smartypants) + SmartypantsAngledQuotes // Enable angled double quotes (with Smartypants) for double quotes rendering + SmartypantsQuotesNBSP // Enable « French guillemets » (with Smartypants) + TOC // Generate a table of contents +) + +var ( + htmlTagRe = regexp.MustCompile("(?i)^" + htmlTag) +) + +const ( + htmlTag = "(?:" + openTag + "|" + closeTag + "|" + htmlComment + "|" + + processingInstruction + "|" + declaration + "|" + cdata + ")" + closeTag = "]" + openTag = "<" + tagName + attribute + "*" + "\\s*/?>" + attribute = "(?:" + "\\s+" + attributeName + attributeValueSpec + "?)" + attributeValue = "(?:" + unquotedValue + "|" + singleQuotedValue + "|" + doubleQuotedValue + ")" + attributeValueSpec = "(?:" + "\\s*=" + "\\s*" + attributeValue + ")" + attributeName = "[a-zA-Z_:][a-zA-Z0-9:._-]*" + cdata = "" + declaration = "]*>" + doubleQuotedValue = "\"[^\"]*\"" + htmlComment = "|" + processingInstruction = "[<][?].*?[?][>]" + singleQuotedValue = "'[^']*'" + tagName = "[A-Za-z][A-Za-z0-9-]*" + unquotedValue = "[^\"'=<>`\\x00-\\x20]+" +) + +// HTMLRendererParameters is a collection of supplementary parameters tweaking +// the behavior of various parts of HTML renderer. +type HTMLRendererParameters struct { + // Prepend this text to each relative URL. + AbsolutePrefix string + // Add this text to each footnote anchor, to ensure uniqueness. + FootnoteAnchorPrefix string + // Show this text inside the tag for a footnote return link, if the + // HTML_FOOTNOTE_RETURN_LINKS flag is enabled. If blank, the string + // [return] is used. + FootnoteReturnLinkContents string + // If set, add this text to the front of each Heading ID, to ensure + // uniqueness. + HeadingIDPrefix string + // If set, add this text to the back of each Heading ID, to ensure uniqueness. + HeadingIDSuffix string + // Increase heading levels: if the offset is 1,

becomes

etc. + // Negative offset is also valid. + // Resulting levels are clipped between 1 and 6. + HeadingLevelOffset int + + Title string // Document title (used if CompletePage is set) + CSS string // Optional CSS file URL (used if CompletePage is set) + Icon string // Optional icon file URL (used if CompletePage is set) + + Flags HTMLFlags // Flags allow customizing this renderer's behavior +} + +// HTMLRenderer is a type that implements the Renderer interface for HTML output. +// +// Do not create this directly, instead use the NewHTMLRenderer function. +type HTMLRenderer struct { + HTMLRendererParameters + + closeTag string // how to end singleton tags: either " />" or ">" + + // Track heading IDs to prevent ID collision in a single generation. + headingIDs map[string]int + + lastOutputLen int + disableTags int + + sr *SPRenderer +} + +const ( + xhtmlClose = " />" + htmlClose = ">" +) + +// NewHTMLRenderer creates and configures an HTMLRenderer object, which +// satisfies the Renderer interface. +func NewHTMLRenderer(params HTMLRendererParameters) *HTMLRenderer { + // configure the rendering engine + closeTag := htmlClose + if params.Flags&UseXHTML != 0 { + closeTag = xhtmlClose + } + + if params.FootnoteReturnLinkContents == "" { + // U+FE0E is VARIATION SELECTOR-15. + // It suppresses automatic emoji presentation of the preceding + // U+21A9 LEFTWARDS ARROW WITH HOOK on iOS and iPadOS. + params.FootnoteReturnLinkContents = "↩\ufe0e" + } + + return &HTMLRenderer{ + HTMLRendererParameters: params, + + closeTag: closeTag, + headingIDs: make(map[string]int), + + sr: NewSmartypantsRenderer(params.Flags), + } +} + +func isHTMLTag(tag []byte, tagname string) bool { + found, _ := findHTMLTagPos(tag, tagname) + return found +} + +// Look for a character, but ignore it when it's in any kind of quotes, it +// might be JavaScript +func skipUntilCharIgnoreQuotes(html []byte, start int, char byte) int { + inSingleQuote := false + inDoubleQuote := false + inGraveQuote := false + i := start + for i < len(html) { + switch { + case html[i] == char && !inSingleQuote && !inDoubleQuote && !inGraveQuote: + return i + case html[i] == '\'': + inSingleQuote = !inSingleQuote + case html[i] == '"': + inDoubleQuote = !inDoubleQuote + case html[i] == '`': + inGraveQuote = !inGraveQuote + } + i++ + } + return start +} + +func findHTMLTagPos(tag []byte, tagname string) (bool, int) { + i := 0 + if i < len(tag) && tag[0] != '<' { + return false, -1 + } + i++ + i = skipSpace(tag, i) + + if i < len(tag) && tag[i] == '/' { + i++ + } + + i = skipSpace(tag, i) + j := 0 + for ; i < len(tag); i, j = i+1, j+1 { + if j >= len(tagname) { + break + } + + if strings.ToLower(string(tag[i]))[0] != tagname[j] { + return false, -1 + } + } + + if i == len(tag) { + return false, -1 + } + + rightAngle := skipUntilCharIgnoreQuotes(tag, i, '>') + if rightAngle >= i { + return true, rightAngle + } + + return false, -1 +} + +func skipSpace(tag []byte, i int) int { + for i < len(tag) && isspace(tag[i]) { + i++ + } + return i +} + +func isRelativeLink(link []byte) (yes bool) { + // a tag begin with '#' + if link[0] == '#' { + return true + } + + // link begin with '/' but not '//', the second maybe a protocol relative link + if len(link) >= 2 && link[0] == '/' && link[1] != '/' { + return true + } + + // only the root '/' + if len(link) == 1 && link[0] == '/' { + return true + } + + // current directory : begin with "./" + if bytes.HasPrefix(link, []byte("./")) { + return true + } + + // parent directory : begin with "../" + if bytes.HasPrefix(link, []byte("../")) { + return true + } + + return false +} + +func (r *HTMLRenderer) ensureUniqueHeadingID(id string) string { + for count, found := r.headingIDs[id]; found; count, found = r.headingIDs[id] { + tmp := fmt.Sprintf("%s-%d", id, count+1) + + if _, tmpFound := r.headingIDs[tmp]; !tmpFound { + r.headingIDs[id] = count + 1 + id = tmp + } else { + id = id + "-1" + } + } + + if _, found := r.headingIDs[id]; !found { + r.headingIDs[id] = 0 + } + + return id +} + +func (r *HTMLRenderer) addAbsPrefix(link []byte) []byte { + if r.AbsolutePrefix != "" && isRelativeLink(link) && link[0] != '.' { + newDest := r.AbsolutePrefix + if link[0] != '/' { + newDest += "/" + } + newDest += string(link) + return []byte(newDest) + } + return link +} + +func appendLinkAttrs(attrs []string, flags HTMLFlags, link []byte) []string { + if isRelativeLink(link) { + return attrs + } + val := []string{} + if flags&NofollowLinks != 0 { + val = append(val, "nofollow") + } + if flags&NoreferrerLinks != 0 { + val = append(val, "noreferrer") + } + if flags&NoopenerLinks != 0 { + val = append(val, "noopener") + } + if flags&HrefTargetBlank != 0 { + attrs = append(attrs, "target=\"_blank\"") + } + if len(val) == 0 { + return attrs + } + attr := fmt.Sprintf("rel=%q", strings.Join(val, " ")) + return append(attrs, attr) +} + +func isMailto(link []byte) bool { + return bytes.HasPrefix(link, []byte("mailto:")) +} + +func needSkipLink(flags HTMLFlags, dest []byte) bool { + if flags&SkipLinks != 0 { + return true + } + return flags&Safelink != 0 && !isSafeLink(dest) && !isMailto(dest) +} + +func isSmartypantable(node *Node) bool { + pt := node.Parent.Type + return pt != Link && pt != CodeBlock && pt != Code +} + +func appendLanguageAttr(attrs []string, info []byte) []string { + if len(info) == 0 { + return attrs + } + endOfLang := bytes.IndexAny(info, "\t ") + if endOfLang < 0 { + endOfLang = len(info) + } + return append(attrs, fmt.Sprintf("class=\"language-%s\"", info[:endOfLang])) +} + +func (r *HTMLRenderer) tag(w io.Writer, name []byte, attrs []string) { + w.Write(name) + if len(attrs) > 0 { + w.Write(spaceBytes) + w.Write([]byte(strings.Join(attrs, " "))) + } + w.Write(gtBytes) + r.lastOutputLen = 1 +} + +func footnoteRef(prefix string, node *Node) []byte { + urlFrag := prefix + string(slugify(node.Destination)) + anchor := fmt.Sprintf(`%d`, urlFrag, node.NoteID) + return []byte(fmt.Sprintf(`%s`, urlFrag, anchor)) +} + +func footnoteItem(prefix string, slug []byte) []byte { + return []byte(fmt.Sprintf(`
  • `, prefix, slug)) +} + +func footnoteReturnLink(prefix, returnLink string, slug []byte) []byte { + const format = ` %s` + return []byte(fmt.Sprintf(format, prefix, slug, returnLink)) +} + +func itemOpenCR(node *Node) bool { + if node.Prev == nil { + return false + } + ld := node.Parent.ListData + return !ld.Tight && ld.ListFlags&ListTypeDefinition == 0 +} + +func skipParagraphTags(node *Node) bool { + grandparent := node.Parent.Parent + if grandparent == nil || grandparent.Type != List { + return false + } + tightOrTerm := grandparent.Tight || node.Parent.ListFlags&ListTypeTerm != 0 + return grandparent.Type == List && tightOrTerm +} + +func cellAlignment(align CellAlignFlags) string { + switch align { + case TableAlignmentLeft: + return "left" + case TableAlignmentRight: + return "right" + case TableAlignmentCenter: + return "center" + default: + return "" + } +} + +func (r *HTMLRenderer) out(w io.Writer, text []byte) { + if r.disableTags > 0 { + w.Write(htmlTagRe.ReplaceAll(text, []byte{})) + } else { + w.Write(text) + } + r.lastOutputLen = len(text) +} + +func (r *HTMLRenderer) cr(w io.Writer) { + if r.lastOutputLen > 0 { + r.out(w, nlBytes) + } +} + +var ( + nlBytes = []byte{'\n'} + gtBytes = []byte{'>'} + spaceBytes = []byte{' '} +) + +var ( + brTag = []byte("
    ") + brXHTMLTag = []byte("
    ") + emTag = []byte("") + emCloseTag = []byte("") + strongTag = []byte("") + strongCloseTag = []byte("") + delTag = []byte("") + delCloseTag = []byte("") + ttTag = []byte("") + ttCloseTag = []byte("") + aTag = []byte("") + preTag = []byte("
    ")
    +	preCloseTag        = []byte("
    ") + codeTag = []byte("") + codeCloseTag = []byte("") + pTag = []byte("

    ") + pCloseTag = []byte("

    ") + blockquoteTag = []byte("
    ") + blockquoteCloseTag = []byte("
    ") + hrTag = []byte("
    ") + hrXHTMLTag = []byte("
    ") + ulTag = []byte("
      ") + ulCloseTag = []byte("
    ") + olTag = []byte("
      ") + olCloseTag = []byte("
    ") + dlTag = []byte("
    ") + dlCloseTag = []byte("
    ") + liTag = []byte("
  • ") + liCloseTag = []byte("
  • ") + ddTag = []byte("
    ") + ddCloseTag = []byte("
    ") + dtTag = []byte("
    ") + dtCloseTag = []byte("
    ") + tableTag = []byte("") + tableCloseTag = []byte("
    ") + tdTag = []byte("") + thTag = []byte("") + theadTag = []byte("") + theadCloseTag = []byte("") + tbodyTag = []byte("") + tbodyCloseTag = []byte("") + trTag = []byte("") + trCloseTag = []byte("") + h1Tag = []byte("") + h2Tag = []byte("") + h3Tag = []byte("") + h4Tag = []byte("") + h5Tag = []byte("") + h6Tag = []byte("") + + footnotesDivBytes = []byte("\n
    \n\n") + footnotesCloseDivBytes = []byte("\n
    \n") +) + +func headingTagsFromLevel(level int) ([]byte, []byte) { + if level <= 1 { + return h1Tag, h1CloseTag + } + switch level { + case 2: + return h2Tag, h2CloseTag + case 3: + return h3Tag, h3CloseTag + case 4: + return h4Tag, h4CloseTag + case 5: + return h5Tag, h5CloseTag + } + return h6Tag, h6CloseTag +} + +func (r *HTMLRenderer) outHRTag(w io.Writer) { + if r.Flags&UseXHTML == 0 { + r.out(w, hrTag) + } else { + r.out(w, hrXHTMLTag) + } +} + +// RenderNode is a default renderer of a single node of a syntax tree. For +// block nodes it will be called twice: first time with entering=true, second +// time with entering=false, so that it could know when it's working on an open +// tag and when on close. It writes the result to w. +// +// The return value is a way to tell the calling walker to adjust its walk +// pattern: e.g. it can terminate the traversal by returning Terminate. Or it +// can ask the walker to skip a subtree of this node by returning SkipChildren. +// The typical behavior is to return GoToNext, which asks for the usual +// traversal to the next node. +func (r *HTMLRenderer) RenderNode(w io.Writer, node *Node, entering bool) WalkStatus { + attrs := []string{} + switch node.Type { + case Text: + if r.Flags&Smartypants != 0 { + var tmp bytes.Buffer + escapeHTML(&tmp, node.Literal) + r.sr.Process(w, tmp.Bytes()) + } else { + if node.Parent.Type == Link { + escLink(w, node.Literal) + } else { + escapeHTML(w, node.Literal) + } + } + case Softbreak: + r.cr(w) + // TODO: make it configurable via out(renderer.softbreak) + case Hardbreak: + if r.Flags&UseXHTML == 0 { + r.out(w, brTag) + } else { + r.out(w, brXHTMLTag) + } + r.cr(w) + case Emph: + if entering { + r.out(w, emTag) + } else { + r.out(w, emCloseTag) + } + case Strong: + if entering { + r.out(w, strongTag) + } else { + r.out(w, strongCloseTag) + } + case Del: + if entering { + r.out(w, delTag) + } else { + r.out(w, delCloseTag) + } + case HTMLSpan: + if r.Flags&SkipHTML != 0 { + break + } + r.out(w, node.Literal) + case Link: + // mark it but don't link it if it is not a safe link: no smartypants + dest := node.LinkData.Destination + if needSkipLink(r.Flags, dest) { + if entering { + r.out(w, ttTag) + } else { + r.out(w, ttCloseTag) + } + } else { + if entering { + dest = r.addAbsPrefix(dest) + var hrefBuf bytes.Buffer + hrefBuf.WriteString("href=\"") + escLink(&hrefBuf, dest) + hrefBuf.WriteByte('"') + attrs = append(attrs, hrefBuf.String()) + if node.NoteID != 0 { + r.out(w, footnoteRef(r.FootnoteAnchorPrefix, node)) + break + } + attrs = appendLinkAttrs(attrs, r.Flags, dest) + if len(node.LinkData.Title) > 0 { + var titleBuff bytes.Buffer + titleBuff.WriteString("title=\"") + escapeHTML(&titleBuff, node.LinkData.Title) + titleBuff.WriteByte('"') + attrs = append(attrs, titleBuff.String()) + } + r.tag(w, aTag, attrs) + } else { + if node.NoteID != 0 { + break + } + r.out(w, aCloseTag) + } + } + case Image: + if r.Flags&SkipImages != 0 { + return SkipChildren + } + if entering { + dest := node.LinkData.Destination + dest = r.addAbsPrefix(dest) + if r.disableTags == 0 { + //if options.safe && potentiallyUnsafe(dest) { + //out(w, ``)
+				//} else {
+				r.out(w, []byte(`<img src=`)) + } + } + case Code: + r.out(w, codeTag) + escapeAllHTML(w, node.Literal) + r.out(w, codeCloseTag) + case Document: + break + case Paragraph: + if skipParagraphTags(node) { + break + } + if entering { + // TODO: untangle this clusterfuck about when the newlines need + // to be added and when not. + if node.Prev != nil { + switch node.Prev.Type { + case HTMLBlock, List, Paragraph, Heading, CodeBlock, BlockQuote, HorizontalRule: + r.cr(w) + } + } + if node.Parent.Type == BlockQuote && node.Prev == nil { + r.cr(w) + } + r.out(w, pTag) + } else { + r.out(w, pCloseTag) + if !(node.Parent.Type == Item && node.Next == nil) { + r.cr(w) + } + } + case BlockQuote: + if entering { + r.cr(w) + r.out(w, blockquoteTag) + } else { + r.out(w, blockquoteCloseTag) + r.cr(w) + } + case HTMLBlock: + if r.Flags&SkipHTML != 0 { + break + } + r.cr(w) + r.out(w, node.Literal) + r.cr(w) + case Heading: + headingLevel := r.HTMLRendererParameters.HeadingLevelOffset + node.Level + openTag, closeTag := headingTagsFromLevel(headingLevel) + if entering { + if node.IsTitleblock { + attrs = append(attrs, `class="title"`) + } + if node.HeadingID != "" { + id := r.ensureUniqueHeadingID(node.HeadingID) + if r.HeadingIDPrefix != "" { + id = r.HeadingIDPrefix + id + } + if r.HeadingIDSuffix != "" { + id = id + r.HeadingIDSuffix + } + attrs = append(attrs, fmt.Sprintf(`id="%s"`, id)) + } + r.cr(w) + r.tag(w, openTag, attrs) + } else { + r.out(w, closeTag) + if !(node.Parent.Type == Item && node.Next == nil) { + r.cr(w) + } + } + case HorizontalRule: + r.cr(w) + r.outHRTag(w) + r.cr(w) + case List: + openTag := ulTag + closeTag := ulCloseTag + if node.ListFlags&ListTypeOrdered != 0 { + openTag = olTag + closeTag = olCloseTag + } + if node.ListFlags&ListTypeDefinition != 0 { + openTag = dlTag + closeTag = dlCloseTag + } + if entering { + if node.IsFootnotesList { + r.out(w, footnotesDivBytes) + r.outHRTag(w) + r.cr(w) + } + r.cr(w) + if node.Parent.Type == Item && node.Parent.Parent.Tight { + r.cr(w) + } + r.tag(w, openTag[:len(openTag)-1], attrs) + r.cr(w) + } else { + r.out(w, closeTag) + //cr(w) + //if node.parent.Type != Item { + // cr(w) + //} + if node.Parent.Type == Item && node.Next != nil { + r.cr(w) + } + if node.Parent.Type == Document || node.Parent.Type == BlockQuote { + r.cr(w) + } + if node.IsFootnotesList { + r.out(w, footnotesCloseDivBytes) + } + } + case Item: + openTag := liTag + closeTag := liCloseTag + if node.ListFlags&ListTypeDefinition != 0 { + openTag = ddTag + closeTag = ddCloseTag + } + if node.ListFlags&ListTypeTerm != 0 { + openTag = dtTag + closeTag = dtCloseTag + } + if entering { + if itemOpenCR(node) { + r.cr(w) + } + if node.ListData.RefLink != nil { + slug := slugify(node.ListData.RefLink) + r.out(w, footnoteItem(r.FootnoteAnchorPrefix, slug)) + break + } + r.out(w, openTag) + } else { + if node.ListData.RefLink != nil { + slug := slugify(node.ListData.RefLink) + if r.Flags&FootnoteReturnLinks != 0 { + r.out(w, footnoteReturnLink(r.FootnoteAnchorPrefix, r.FootnoteReturnLinkContents, slug)) + } + } + r.out(w, closeTag) + r.cr(w) + } + case CodeBlock: + attrs = appendLanguageAttr(attrs, node.Info) + r.cr(w) + r.out(w, preTag) + r.tag(w, codeTag[:len(codeTag)-1], attrs) + escapeAllHTML(w, node.Literal) + r.out(w, codeCloseTag) + r.out(w, preCloseTag) + if node.Parent.Type != Item { + r.cr(w) + } + case Table: + if entering { + r.cr(w) + r.out(w, tableTag) + } else { + r.out(w, tableCloseTag) + r.cr(w) + } + case TableCell: + openTag := tdTag + closeTag := tdCloseTag + if node.IsHeader { + openTag = thTag + closeTag = thCloseTag + } + if entering { + align := cellAlignment(node.Align) + if align != "" { + attrs = append(attrs, fmt.Sprintf(`align="%s"`, align)) + } + if node.Prev == nil { + r.cr(w) + } + r.tag(w, openTag, attrs) + } else { + r.out(w, closeTag) + r.cr(w) + } + case TableHead: + if entering { + r.cr(w) + r.out(w, theadTag) + } else { + r.out(w, theadCloseTag) + r.cr(w) + } + case TableBody: + if entering { + r.cr(w) + r.out(w, tbodyTag) + // XXX: this is to adhere to a rather silly test. Should fix test. + if node.FirstChild == nil { + r.cr(w) + } + } else { + r.out(w, tbodyCloseTag) + r.cr(w) + } + case TableRow: + if entering { + r.cr(w) + r.out(w, trTag) + } else { + r.out(w, trCloseTag) + r.cr(w) + } + default: + panic("Unknown node type " + node.Type.String()) + } + return GoToNext +} + +// RenderHeader writes HTML document preamble and TOC if requested. +func (r *HTMLRenderer) RenderHeader(w io.Writer, ast *Node) { + r.writeDocumentHeader(w) + if r.Flags&TOC != 0 { + r.writeTOC(w, ast) + } +} + +// RenderFooter writes HTML document footer. +func (r *HTMLRenderer) RenderFooter(w io.Writer, ast *Node) { + if r.Flags&CompletePage == 0 { + return + } + io.WriteString(w, "\n\n\n") +} + +func (r *HTMLRenderer) writeDocumentHeader(w io.Writer) { + if r.Flags&CompletePage == 0 { + return + } + ending := "" + if r.Flags&UseXHTML != 0 { + io.WriteString(w, "\n") + io.WriteString(w, "\n") + ending = " /" + } else { + io.WriteString(w, "\n") + io.WriteString(w, "\n") + } + io.WriteString(w, "\n") + io.WriteString(w, " ") + if r.Flags&Smartypants != 0 { + r.sr.Process(w, []byte(r.Title)) + } else { + escapeHTML(w, []byte(r.Title)) + } + io.WriteString(w, "\n") + io.WriteString(w, " \n") + io.WriteString(w, " \n") + if r.CSS != "" { + io.WriteString(w, " \n") + } + if r.Icon != "" { + io.WriteString(w, " \n") + } + io.WriteString(w, "\n") + io.WriteString(w, "\n\n") +} + +func (r *HTMLRenderer) writeTOC(w io.Writer, ast *Node) { + buf := bytes.Buffer{} + + inHeading := false + tocLevel := 0 + headingCount := 0 + + ast.Walk(func(node *Node, entering bool) WalkStatus { + if node.Type == Heading && !node.HeadingData.IsTitleblock { + inHeading = entering + if entering { + node.HeadingID = fmt.Sprintf("toc_%d", headingCount) + if node.Level == tocLevel { + buf.WriteString("\n\n
  • ") + } else if node.Level < tocLevel { + for node.Level < tocLevel { + tocLevel-- + buf.WriteString("
  • \n") + } + buf.WriteString("\n\n
  • ") + } else { + for node.Level > tocLevel { + tocLevel++ + buf.WriteString("\n") + } + + if buf.Len() > 0 { + io.WriteString(w, "\n") + } + r.lastOutputLen = buf.Len() +} diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/inline.go b/tests/e2e/vendor/github.com/russross/blackfriday/v2/inline.go new file mode 100644 index 0000000000..d45bd94172 --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/inline.go @@ -0,0 +1,1228 @@ +// +// Blackfriday Markdown Processor +// Available at http://github.com/russross/blackfriday +// +// Copyright © 2011 Russ Ross . +// Distributed under the Simplified BSD License. +// See README.md for details. +// + +// +// Functions to parse inline elements. +// + +package blackfriday + +import ( + "bytes" + "regexp" + "strconv" +) + +var ( + urlRe = `((https?|ftp):\/\/|\/)[-A-Za-z0-9+&@#\/%?=~_|!:,.;\(\)]+` + anchorRe = regexp.MustCompile(`^(]+")?\s?>` + urlRe + `<\/a>)`) + + // https://www.w3.org/TR/html5/syntax.html#character-references + // highest unicode code point in 17 planes (2^20): 1,114,112d = + // 7 dec digits or 6 hex digits + // named entity references can be 2-31 characters with stuff like < + // at one end and ∳ at the other. There + // are also sometimes numbers at the end, although this isn't inherent + // in the specification; there are never numbers anywhere else in + // current character references, though; see ¾ and ▒, etc. + // https://www.w3.org/TR/html5/syntax.html#named-character-references + // + // entity := "&" (named group | number ref) ";" + // named group := [a-zA-Z]{2,31}[0-9]{0,2} + // number ref := "#" (dec ref | hex ref) + // dec ref := [0-9]{1,7} + // hex ref := ("x" | "X") [0-9a-fA-F]{1,6} + htmlEntityRe = regexp.MustCompile(`&([a-zA-Z]{2,31}[0-9]{0,2}|#([0-9]{1,7}|[xX][0-9a-fA-F]{1,6}));`) +) + +// Functions to parse text within a block +// Each function returns the number of chars taken care of +// data is the complete block being rendered +// offset is the number of valid chars before the current cursor + +func (p *Markdown) inline(currBlock *Node, data []byte) { + // handlers might call us recursively: enforce a maximum depth + if p.nesting >= p.maxNesting || len(data) == 0 { + return + } + p.nesting++ + beg, end := 0, 0 + for end < len(data) { + handler := p.inlineCallback[data[end]] + if handler != nil { + if consumed, node := handler(p, data, end); consumed == 0 { + // No action from the callback. + end++ + } else { + // Copy inactive chars into the output. + currBlock.AppendChild(text(data[beg:end])) + if node != nil { + currBlock.AppendChild(node) + } + // Skip past whatever the callback used. + beg = end + consumed + end = beg + } + } else { + end++ + } + } + if beg < len(data) { + if data[end-1] == '\n' { + end-- + } + currBlock.AppendChild(text(data[beg:end])) + } + p.nesting-- +} + +// single and double emphasis parsing +func emphasis(p *Markdown, data []byte, offset int) (int, *Node) { + data = data[offset:] + c := data[0] + + if len(data) > 2 && data[1] != c { + // whitespace cannot follow an opening emphasis; + // strikethrough only takes two characters '~~' + if c == '~' || isspace(data[1]) { + return 0, nil + } + ret, node := helperEmphasis(p, data[1:], c) + if ret == 0 { + return 0, nil + } + + return ret + 1, node + } + + if len(data) > 3 && data[1] == c && data[2] != c { + if isspace(data[2]) { + return 0, nil + } + ret, node := helperDoubleEmphasis(p, data[2:], c) + if ret == 0 { + return 0, nil + } + + return ret + 2, node + } + + if len(data) > 4 && data[1] == c && data[2] == c && data[3] != c { + if c == '~' || isspace(data[3]) { + return 0, nil + } + ret, node := helperTripleEmphasis(p, data, 3, c) + if ret == 0 { + return 0, nil + } + + return ret + 3, node + } + + return 0, nil +} + +func codeSpan(p *Markdown, data []byte, offset int) (int, *Node) { + data = data[offset:] + + nb := 0 + + // count the number of backticks in the delimiter + for nb < len(data) && data[nb] == '`' { + nb++ + } + + // find the next delimiter + i, end := 0, 0 + for end = nb; end < len(data) && i < nb; end++ { + if data[end] == '`' { + i++ + } else { + i = 0 + } + } + + // no matching delimiter? + if i < nb && end >= len(data) { + return 0, nil + } + + // trim outside whitespace + fBegin := nb + for fBegin < end && data[fBegin] == ' ' { + fBegin++ + } + + fEnd := end - nb + for fEnd > fBegin && data[fEnd-1] == ' ' { + fEnd-- + } + + // render the code span + if fBegin != fEnd { + code := NewNode(Code) + code.Literal = data[fBegin:fEnd] + return end, code + } + + return end, nil +} + +// newline preceded by two spaces becomes
    +func maybeLineBreak(p *Markdown, data []byte, offset int) (int, *Node) { + origOffset := offset + for offset < len(data) && data[offset] == ' ' { + offset++ + } + + if offset < len(data) && data[offset] == '\n' { + if offset-origOffset >= 2 { + return offset - origOffset + 1, NewNode(Hardbreak) + } + return offset - origOffset, nil + } + return 0, nil +} + +// newline without two spaces works when HardLineBreak is enabled +func lineBreak(p *Markdown, data []byte, offset int) (int, *Node) { + if p.extensions&HardLineBreak != 0 { + return 1, NewNode(Hardbreak) + } + return 0, nil +} + +type linkType int + +const ( + linkNormal linkType = iota + linkImg + linkDeferredFootnote + linkInlineFootnote +) + +func isReferenceStyleLink(data []byte, pos int, t linkType) bool { + if t == linkDeferredFootnote { + return false + } + return pos < len(data)-1 && data[pos] == '[' && data[pos+1] != '^' +} + +func maybeImage(p *Markdown, data []byte, offset int) (int, *Node) { + if offset < len(data)-1 && data[offset+1] == '[' { + return link(p, data, offset) + } + return 0, nil +} + +func maybeInlineFootnote(p *Markdown, data []byte, offset int) (int, *Node) { + if offset < len(data)-1 && data[offset+1] == '[' { + return link(p, data, offset) + } + return 0, nil +} + +// '[': parse a link or an image or a footnote +func link(p *Markdown, data []byte, offset int) (int, *Node) { + // no links allowed inside regular links, footnote, and deferred footnotes + if p.insideLink && (offset > 0 && data[offset-1] == '[' || len(data)-1 > offset && data[offset+1] == '^') { + return 0, nil + } + + var t linkType + switch { + // special case: ![^text] == deferred footnote (that follows something with + // an exclamation point) + case p.extensions&Footnotes != 0 && len(data)-1 > offset && data[offset+1] == '^': + t = linkDeferredFootnote + // ![alt] == image + case offset >= 0 && data[offset] == '!': + t = linkImg + offset++ + // ^[text] == inline footnote + // [^refId] == deferred footnote + case p.extensions&Footnotes != 0: + if offset >= 0 && data[offset] == '^' { + t = linkInlineFootnote + offset++ + } else if len(data)-1 > offset && data[offset+1] == '^' { + t = linkDeferredFootnote + } + // [text] == regular link + default: + t = linkNormal + } + + data = data[offset:] + + var ( + i = 1 + noteID int + title, link, altContent []byte + textHasNl = false + ) + + if t == linkDeferredFootnote { + i++ + } + + // look for the matching closing bracket + for level := 1; level > 0 && i < len(data); i++ { + switch { + case data[i] == '\n': + textHasNl = true + + case isBackslashEscaped(data, i): + continue + + case data[i] == '[': + level++ + + case data[i] == ']': + level-- + if level <= 0 { + i-- // compensate for extra i++ in for loop + } + } + } + + if i >= len(data) { + return 0, nil + } + + txtE := i + i++ + var footnoteNode *Node + + // skip any amount of whitespace or newline + // (this is much more lax than original markdown syntax) + for i < len(data) && isspace(data[i]) { + i++ + } + + // inline style link + switch { + case i < len(data) && data[i] == '(': + // skip initial whitespace + i++ + + for i < len(data) && isspace(data[i]) { + i++ + } + + linkB := i + + // look for link end: ' " ) + findlinkend: + for i < len(data) { + switch { + case data[i] == '\\': + i += 2 + + case data[i] == ')' || data[i] == '\'' || data[i] == '"': + break findlinkend + + default: + i++ + } + } + + if i >= len(data) { + return 0, nil + } + linkE := i + + // look for title end if present + titleB, titleE := 0, 0 + if data[i] == '\'' || data[i] == '"' { + i++ + titleB = i + + findtitleend: + for i < len(data) { + switch { + case data[i] == '\\': + i += 2 + + case data[i] == ')': + break findtitleend + + default: + i++ + } + } + + if i >= len(data) { + return 0, nil + } + + // skip whitespace after title + titleE = i - 1 + for titleE > titleB && isspace(data[titleE]) { + titleE-- + } + + // check for closing quote presence + if data[titleE] != '\'' && data[titleE] != '"' { + titleB, titleE = 0, 0 + linkE = i + } + } + + // remove whitespace at the end of the link + for linkE > linkB && isspace(data[linkE-1]) { + linkE-- + } + + // remove optional angle brackets around the link + if data[linkB] == '<' { + linkB++ + } + if data[linkE-1] == '>' { + linkE-- + } + + // build escaped link and title + if linkE > linkB { + link = data[linkB:linkE] + } + + if titleE > titleB { + title = data[titleB:titleE] + } + + i++ + + // reference style link + case isReferenceStyleLink(data, i, t): + var id []byte + altContentConsidered := false + + // look for the id + i++ + linkB := i + for i < len(data) && data[i] != ']' { + i++ + } + if i >= len(data) { + return 0, nil + } + linkE := i + + // find the reference + if linkB == linkE { + if textHasNl { + var b bytes.Buffer + + for j := 1; j < txtE; j++ { + switch { + case data[j] != '\n': + b.WriteByte(data[j]) + case data[j-1] != ' ': + b.WriteByte(' ') + } + } + + id = b.Bytes() + } else { + id = data[1:txtE] + altContentConsidered = true + } + } else { + id = data[linkB:linkE] + } + + // find the reference with matching id + lr, ok := p.getRef(string(id)) + if !ok { + return 0, nil + } + + // keep link and title from reference + link = lr.link + title = lr.title + if altContentConsidered { + altContent = lr.text + } + i++ + + // shortcut reference style link or reference or inline footnote + default: + var id []byte + + // craft the id + if textHasNl { + var b bytes.Buffer + + for j := 1; j < txtE; j++ { + switch { + case data[j] != '\n': + b.WriteByte(data[j]) + case data[j-1] != ' ': + b.WriteByte(' ') + } + } + + id = b.Bytes() + } else { + if t == linkDeferredFootnote { + id = data[2:txtE] // get rid of the ^ + } else { + id = data[1:txtE] + } + } + + footnoteNode = NewNode(Item) + if t == linkInlineFootnote { + // create a new reference + noteID = len(p.notes) + 1 + + var fragment []byte + if len(id) > 0 { + if len(id) < 16 { + fragment = make([]byte, len(id)) + } else { + fragment = make([]byte, 16) + } + copy(fragment, slugify(id)) + } else { + fragment = append([]byte("footnote-"), []byte(strconv.Itoa(noteID))...) + } + + ref := &reference{ + noteID: noteID, + hasBlock: false, + link: fragment, + title: id, + footnote: footnoteNode, + } + + p.notes = append(p.notes, ref) + + link = ref.link + title = ref.title + } else { + // find the reference with matching id + lr, ok := p.getRef(string(id)) + if !ok { + return 0, nil + } + + if t == linkDeferredFootnote { + lr.noteID = len(p.notes) + 1 + lr.footnote = footnoteNode + p.notes = append(p.notes, lr) + } + + // keep link and title from reference + link = lr.link + // if inline footnote, title == footnote contents + title = lr.title + noteID = lr.noteID + } + + // rewind the whitespace + i = txtE + 1 + } + + var uLink []byte + if t == linkNormal || t == linkImg { + if len(link) > 0 { + var uLinkBuf bytes.Buffer + unescapeText(&uLinkBuf, link) + uLink = uLinkBuf.Bytes() + } + + // links need something to click on and somewhere to go + if len(uLink) == 0 || (t == linkNormal && txtE <= 1) { + return 0, nil + } + } + + // call the relevant rendering function + var linkNode *Node + switch t { + case linkNormal: + linkNode = NewNode(Link) + linkNode.Destination = normalizeURI(uLink) + linkNode.Title = title + if len(altContent) > 0 { + linkNode.AppendChild(text(altContent)) + } else { + // links cannot contain other links, so turn off link parsing + // temporarily and recurse + insideLink := p.insideLink + p.insideLink = true + p.inline(linkNode, data[1:txtE]) + p.insideLink = insideLink + } + + case linkImg: + linkNode = NewNode(Image) + linkNode.Destination = uLink + linkNode.Title = title + linkNode.AppendChild(text(data[1:txtE])) + i++ + + case linkInlineFootnote, linkDeferredFootnote: + linkNode = NewNode(Link) + linkNode.Destination = link + linkNode.Title = title + linkNode.NoteID = noteID + linkNode.Footnote = footnoteNode + if t == linkInlineFootnote { + i++ + } + + default: + return 0, nil + } + + return i, linkNode +} + +func (p *Markdown) inlineHTMLComment(data []byte) int { + if len(data) < 5 { + return 0 + } + if data[0] != '<' || data[1] != '!' || data[2] != '-' || data[3] != '-' { + return 0 + } + i := 5 + // scan for an end-of-comment marker, across lines if necessary + for i < len(data) && !(data[i-2] == '-' && data[i-1] == '-' && data[i] == '>') { + i++ + } + // no end-of-comment marker + if i >= len(data) { + return 0 + } + return i + 1 +} + +func stripMailto(link []byte) []byte { + if bytes.HasPrefix(link, []byte("mailto://")) { + return link[9:] + } else if bytes.HasPrefix(link, []byte("mailto:")) { + return link[7:] + } else { + return link + } +} + +// autolinkType specifies a kind of autolink that gets detected. +type autolinkType int + +// These are the possible flag values for the autolink renderer. +const ( + notAutolink autolinkType = iota + normalAutolink + emailAutolink +) + +// '<' when tags or autolinks are allowed +func leftAngle(p *Markdown, data []byte, offset int) (int, *Node) { + data = data[offset:] + altype, end := tagLength(data) + if size := p.inlineHTMLComment(data); size > 0 { + end = size + } + if end > 2 { + if altype != notAutolink { + var uLink bytes.Buffer + unescapeText(&uLink, data[1:end+1-2]) + if uLink.Len() > 0 { + link := uLink.Bytes() + node := NewNode(Link) + node.Destination = link + if altype == emailAutolink { + node.Destination = append([]byte("mailto:"), link...) + } + node.AppendChild(text(stripMailto(link))) + return end, node + } + } else { + htmlTag := NewNode(HTMLSpan) + htmlTag.Literal = data[:end] + return end, htmlTag + } + } + + return end, nil +} + +// '\\' backslash escape +var escapeChars = []byte("\\`*_{}[]()#+-.!:|&<>~") + +func escape(p *Markdown, data []byte, offset int) (int, *Node) { + data = data[offset:] + + if len(data) > 1 { + if p.extensions&BackslashLineBreak != 0 && data[1] == '\n' { + return 2, NewNode(Hardbreak) + } + if bytes.IndexByte(escapeChars, data[1]) < 0 { + return 0, nil + } + + return 2, text(data[1:2]) + } + + return 2, nil +} + +func unescapeText(ob *bytes.Buffer, src []byte) { + i := 0 + for i < len(src) { + org := i + for i < len(src) && src[i] != '\\' { + i++ + } + + if i > org { + ob.Write(src[org:i]) + } + + if i+1 >= len(src) { + break + } + + ob.WriteByte(src[i+1]) + i += 2 + } +} + +// '&' escaped when it doesn't belong to an entity +// valid entities are assumed to be anything matching &#?[A-Za-z0-9]+; +func entity(p *Markdown, data []byte, offset int) (int, *Node) { + data = data[offset:] + + end := 1 + + if end < len(data) && data[end] == '#' { + end++ + } + + for end < len(data) && isalnum(data[end]) { + end++ + } + + if end < len(data) && data[end] == ';' { + end++ // real entity + } else { + return 0, nil // lone '&' + } + + ent := data[:end] + // undo & escaping or it will be converted to &amp; by another + // escaper in the renderer + if bytes.Equal(ent, []byte("&")) { + ent = []byte{'&'} + } + + return end, text(ent) +} + +func linkEndsWithEntity(data []byte, linkEnd int) bool { + entityRanges := htmlEntityRe.FindAllIndex(data[:linkEnd], -1) + return entityRanges != nil && entityRanges[len(entityRanges)-1][1] == linkEnd +} + +// hasPrefixCaseInsensitive is a custom implementation of +// strings.HasPrefix(strings.ToLower(s), prefix) +// we rolled our own because ToLower pulls in a huge machinery of lowercasing +// anything from Unicode and that's very slow. Since this func will only be +// used on ASCII protocol prefixes, we can take shortcuts. +func hasPrefixCaseInsensitive(s, prefix []byte) bool { + if len(s) < len(prefix) { + return false + } + delta := byte('a' - 'A') + for i, b := range prefix { + if b != s[i] && b != s[i]+delta { + return false + } + } + return true +} + +var protocolPrefixes = [][]byte{ + []byte("http://"), + []byte("https://"), + []byte("ftp://"), + []byte("file://"), + []byte("mailto:"), +} + +const shortestPrefix = 6 // len("ftp://"), the shortest of the above + +func maybeAutoLink(p *Markdown, data []byte, offset int) (int, *Node) { + // quick check to rule out most false hits + if p.insideLink || len(data) < offset+shortestPrefix { + return 0, nil + } + for _, prefix := range protocolPrefixes { + endOfHead := offset + 8 // 8 is the len() of the longest prefix + if endOfHead > len(data) { + endOfHead = len(data) + } + if hasPrefixCaseInsensitive(data[offset:endOfHead], prefix) { + return autoLink(p, data, offset) + } + } + return 0, nil +} + +func autoLink(p *Markdown, data []byte, offset int) (int, *Node) { + // Now a more expensive check to see if we're not inside an anchor element + anchorStart := offset + offsetFromAnchor := 0 + for anchorStart > 0 && data[anchorStart] != '<' { + anchorStart-- + offsetFromAnchor++ + } + + anchorStr := anchorRe.Find(data[anchorStart:]) + if anchorStr != nil { + anchorClose := NewNode(HTMLSpan) + anchorClose.Literal = anchorStr[offsetFromAnchor:] + return len(anchorStr) - offsetFromAnchor, anchorClose + } + + // scan backward for a word boundary + rewind := 0 + for offset-rewind > 0 && rewind <= 7 && isletter(data[offset-rewind-1]) { + rewind++ + } + if rewind > 6 { // longest supported protocol is "mailto" which has 6 letters + return 0, nil + } + + origData := data + data = data[offset-rewind:] + + if !isSafeLink(data) { + return 0, nil + } + + linkEnd := 0 + for linkEnd < len(data) && !isEndOfLink(data[linkEnd]) { + linkEnd++ + } + + // Skip punctuation at the end of the link + if (data[linkEnd-1] == '.' || data[linkEnd-1] == ',') && data[linkEnd-2] != '\\' { + linkEnd-- + } + + // But don't skip semicolon if it's a part of escaped entity: + if data[linkEnd-1] == ';' && data[linkEnd-2] != '\\' && !linkEndsWithEntity(data, linkEnd) { + linkEnd-- + } + + // See if the link finishes with a punctuation sign that can be closed. + var copen byte + switch data[linkEnd-1] { + case '"': + copen = '"' + case '\'': + copen = '\'' + case ')': + copen = '(' + case ']': + copen = '[' + case '}': + copen = '{' + default: + copen = 0 + } + + if copen != 0 { + bufEnd := offset - rewind + linkEnd - 2 + + openDelim := 1 + + /* Try to close the final punctuation sign in this same line; + * if we managed to close it outside of the URL, that means that it's + * not part of the URL. If it closes inside the URL, that means it + * is part of the URL. + * + * Examples: + * + * foo http://www.pokemon.com/Pikachu_(Electric) bar + * => http://www.pokemon.com/Pikachu_(Electric) + * + * foo (http://www.pokemon.com/Pikachu_(Electric)) bar + * => http://www.pokemon.com/Pikachu_(Electric) + * + * foo http://www.pokemon.com/Pikachu_(Electric)) bar + * => http://www.pokemon.com/Pikachu_(Electric)) + * + * (foo http://www.pokemon.com/Pikachu_(Electric)) bar + * => foo http://www.pokemon.com/Pikachu_(Electric) + */ + + for bufEnd >= 0 && origData[bufEnd] != '\n' && openDelim != 0 { + if origData[bufEnd] == data[linkEnd-1] { + openDelim++ + } + + if origData[bufEnd] == copen { + openDelim-- + } + + bufEnd-- + } + + if openDelim == 0 { + linkEnd-- + } + } + + var uLink bytes.Buffer + unescapeText(&uLink, data[:linkEnd]) + + if uLink.Len() > 0 { + node := NewNode(Link) + node.Destination = uLink.Bytes() + node.AppendChild(text(uLink.Bytes())) + return linkEnd, node + } + + return linkEnd, nil +} + +func isEndOfLink(char byte) bool { + return isspace(char) || char == '<' +} + +var validUris = [][]byte{[]byte("http://"), []byte("https://"), []byte("ftp://"), []byte("mailto://")} +var validPaths = [][]byte{[]byte("/"), []byte("./"), []byte("../")} + +func isSafeLink(link []byte) bool { + for _, path := range validPaths { + if len(link) >= len(path) && bytes.Equal(link[:len(path)], path) { + if len(link) == len(path) { + return true + } else if isalnum(link[len(path)]) { + return true + } + } + } + + for _, prefix := range validUris { + // TODO: handle unicode here + // case-insensitive prefix test + if len(link) > len(prefix) && bytes.Equal(bytes.ToLower(link[:len(prefix)]), prefix) && isalnum(link[len(prefix)]) { + return true + } + } + + return false +} + +// return the length of the given tag, or 0 is it's not valid +func tagLength(data []byte) (autolink autolinkType, end int) { + var i, j int + + // a valid tag can't be shorter than 3 chars + if len(data) < 3 { + return notAutolink, 0 + } + + // begins with a '<' optionally followed by '/', followed by letter or number + if data[0] != '<' { + return notAutolink, 0 + } + if data[1] == '/' { + i = 2 + } else { + i = 1 + } + + if !isalnum(data[i]) { + return notAutolink, 0 + } + + // scheme test + autolink = notAutolink + + // try to find the beginning of an URI + for i < len(data) && (isalnum(data[i]) || data[i] == '.' || data[i] == '+' || data[i] == '-') { + i++ + } + + if i > 1 && i < len(data) && data[i] == '@' { + if j = isMailtoAutoLink(data[i:]); j != 0 { + return emailAutolink, i + j + } + } + + if i > 2 && i < len(data) && data[i] == ':' { + autolink = normalAutolink + i++ + } + + // complete autolink test: no whitespace or ' or " + switch { + case i >= len(data): + autolink = notAutolink + case autolink != notAutolink: + j = i + + for i < len(data) { + if data[i] == '\\' { + i += 2 + } else if data[i] == '>' || data[i] == '\'' || data[i] == '"' || isspace(data[i]) { + break + } else { + i++ + } + + } + + if i >= len(data) { + return autolink, 0 + } + if i > j && data[i] == '>' { + return autolink, i + 1 + } + + // one of the forbidden chars has been found + autolink = notAutolink + } + i += bytes.IndexByte(data[i:], '>') + if i < 0 { + return autolink, 0 + } + return autolink, i + 1 +} + +// look for the address part of a mail autolink and '>' +// this is less strict than the original markdown e-mail address matching +func isMailtoAutoLink(data []byte) int { + nb := 0 + + // address is assumed to be: [-@._a-zA-Z0-9]+ with exactly one '@' + for i := 0; i < len(data); i++ { + if isalnum(data[i]) { + continue + } + + switch data[i] { + case '@': + nb++ + + case '-', '.', '_': + break + + case '>': + if nb == 1 { + return i + 1 + } + return 0 + default: + return 0 + } + } + + return 0 +} + +// look for the next emph char, skipping other constructs +func helperFindEmphChar(data []byte, c byte) int { + i := 0 + + for i < len(data) { + for i < len(data) && data[i] != c && data[i] != '`' && data[i] != '[' { + i++ + } + if i >= len(data) { + return 0 + } + // do not count escaped chars + if i != 0 && data[i-1] == '\\' { + i++ + continue + } + if data[i] == c { + return i + } + + if data[i] == '`' { + // skip a code span + tmpI := 0 + i++ + for i < len(data) && data[i] != '`' { + if tmpI == 0 && data[i] == c { + tmpI = i + } + i++ + } + if i >= len(data) { + return tmpI + } + i++ + } else if data[i] == '[' { + // skip a link + tmpI := 0 + i++ + for i < len(data) && data[i] != ']' { + if tmpI == 0 && data[i] == c { + tmpI = i + } + i++ + } + i++ + for i < len(data) && (data[i] == ' ' || data[i] == '\n') { + i++ + } + if i >= len(data) { + return tmpI + } + if data[i] != '[' && data[i] != '(' { // not a link + if tmpI > 0 { + return tmpI + } + continue + } + cc := data[i] + i++ + for i < len(data) && data[i] != cc { + if tmpI == 0 && data[i] == c { + return i + } + i++ + } + if i >= len(data) { + return tmpI + } + i++ + } + } + return 0 +} + +func helperEmphasis(p *Markdown, data []byte, c byte) (int, *Node) { + i := 0 + + // skip one symbol if coming from emph3 + if len(data) > 1 && data[0] == c && data[1] == c { + i = 1 + } + + for i < len(data) { + length := helperFindEmphChar(data[i:], c) + if length == 0 { + return 0, nil + } + i += length + if i >= len(data) { + return 0, nil + } + + if i+1 < len(data) && data[i+1] == c { + i++ + continue + } + + if data[i] == c && !isspace(data[i-1]) { + + if p.extensions&NoIntraEmphasis != 0 { + if !(i+1 == len(data) || isspace(data[i+1]) || ispunct(data[i+1])) { + continue + } + } + + emph := NewNode(Emph) + p.inline(emph, data[:i]) + return i + 1, emph + } + } + + return 0, nil +} + +func helperDoubleEmphasis(p *Markdown, data []byte, c byte) (int, *Node) { + i := 0 + + for i < len(data) { + length := helperFindEmphChar(data[i:], c) + if length == 0 { + return 0, nil + } + i += length + + if i+1 < len(data) && data[i] == c && data[i+1] == c && i > 0 && !isspace(data[i-1]) { + nodeType := Strong + if c == '~' { + nodeType = Del + } + node := NewNode(nodeType) + p.inline(node, data[:i]) + return i + 2, node + } + i++ + } + return 0, nil +} + +func helperTripleEmphasis(p *Markdown, data []byte, offset int, c byte) (int, *Node) { + i := 0 + origData := data + data = data[offset:] + + for i < len(data) { + length := helperFindEmphChar(data[i:], c) + if length == 0 { + return 0, nil + } + i += length + + // skip whitespace preceded symbols + if data[i] != c || isspace(data[i-1]) { + continue + } + + switch { + case i+2 < len(data) && data[i+1] == c && data[i+2] == c: + // triple symbol found + strong := NewNode(Strong) + em := NewNode(Emph) + strong.AppendChild(em) + p.inline(em, data[:i]) + return i + 3, strong + case (i+1 < len(data) && data[i+1] == c): + // double symbol found, hand over to emph1 + length, node := helperEmphasis(p, origData[offset-2:], c) + if length == 0 { + return 0, nil + } + return length - 2, node + default: + // single symbol found, hand over to emph2 + length, node := helperDoubleEmphasis(p, origData[offset-1:], c) + if length == 0 { + return 0, nil + } + return length - 1, node + } + } + return 0, nil +} + +func text(s []byte) *Node { + node := NewNode(Text) + node.Literal = s + return node +} + +func normalizeURI(s []byte) []byte { + return s // TODO: implement +} diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/markdown.go b/tests/e2e/vendor/github.com/russross/blackfriday/v2/markdown.go new file mode 100644 index 0000000000..58d2e4538c --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/markdown.go @@ -0,0 +1,950 @@ +// Blackfriday Markdown Processor +// Available at http://github.com/russross/blackfriday +// +// Copyright © 2011 Russ Ross . +// Distributed under the Simplified BSD License. +// See README.md for details. + +package blackfriday + +import ( + "bytes" + "fmt" + "io" + "strings" + "unicode/utf8" +) + +// +// Markdown parsing and processing +// + +// Version string of the package. Appears in the rendered document when +// CompletePage flag is on. +const Version = "2.0" + +// Extensions is a bitwise or'ed collection of enabled Blackfriday's +// extensions. +type Extensions int + +// These are the supported markdown parsing extensions. +// OR these values together to select multiple extensions. +const ( + NoExtensions Extensions = 0 + NoIntraEmphasis Extensions = 1 << iota // Ignore emphasis markers inside words + Tables // Render tables + FencedCode // Render fenced code blocks + Autolink // Detect embedded URLs that are not explicitly marked + Strikethrough // Strikethrough text using ~~test~~ + LaxHTMLBlocks // Loosen up HTML block parsing rules + SpaceHeadings // Be strict about prefix heading rules + HardLineBreak // Translate newlines into line breaks + TabSizeEight // Expand tabs to eight spaces instead of four + Footnotes // Pandoc-style footnotes + NoEmptyLineBeforeBlock // No need to insert an empty line to start a (code, quote, ordered list, unordered list) block + HeadingIDs // specify heading IDs with {#id} + Titleblock // Titleblock ala pandoc + AutoHeadingIDs // Create the heading ID from the text + BackslashLineBreak // Translate trailing backslashes into line breaks + DefinitionLists // Render definition lists + + CommonHTMLFlags HTMLFlags = UseXHTML | Smartypants | + SmartypantsFractions | SmartypantsDashes | SmartypantsLatexDashes + + CommonExtensions Extensions = NoIntraEmphasis | Tables | FencedCode | + Autolink | Strikethrough | SpaceHeadings | HeadingIDs | + BackslashLineBreak | DefinitionLists +) + +// ListType contains bitwise or'ed flags for list and list item objects. +type ListType int + +// These are the possible flag values for the ListItem renderer. +// Multiple flag values may be ORed together. +// These are mostly of interest if you are writing a new output format. +const ( + ListTypeOrdered ListType = 1 << iota + ListTypeDefinition + ListTypeTerm + + ListItemContainsBlock + ListItemBeginningOfList // TODO: figure out if this is of any use now + ListItemEndOfList +) + +// CellAlignFlags holds a type of alignment in a table cell. +type CellAlignFlags int + +// These are the possible flag values for the table cell renderer. +// Only a single one of these values will be used; they are not ORed together. +// These are mostly of interest if you are writing a new output format. +const ( + TableAlignmentLeft CellAlignFlags = 1 << iota + TableAlignmentRight + TableAlignmentCenter = (TableAlignmentLeft | TableAlignmentRight) +) + +// The size of a tab stop. +const ( + TabSizeDefault = 4 + TabSizeDouble = 8 +) + +// blockTags is a set of tags that are recognized as HTML block tags. +// Any of these can be included in markdown text without special escaping. +var blockTags = map[string]struct{}{ + "blockquote": {}, + "del": {}, + "div": {}, + "dl": {}, + "fieldset": {}, + "form": {}, + "h1": {}, + "h2": {}, + "h3": {}, + "h4": {}, + "h5": {}, + "h6": {}, + "iframe": {}, + "ins": {}, + "math": {}, + "noscript": {}, + "ol": {}, + "pre": {}, + "p": {}, + "script": {}, + "style": {}, + "table": {}, + "ul": {}, + + // HTML5 + "address": {}, + "article": {}, + "aside": {}, + "canvas": {}, + "figcaption": {}, + "figure": {}, + "footer": {}, + "header": {}, + "hgroup": {}, + "main": {}, + "nav": {}, + "output": {}, + "progress": {}, + "section": {}, + "video": {}, +} + +// Renderer is the rendering interface. This is mostly of interest if you are +// implementing a new rendering format. +// +// Only an HTML implementation is provided in this repository, see the README +// for external implementations. +type Renderer interface { + // RenderNode is the main rendering method. It will be called once for + // every leaf node and twice for every non-leaf node (first with + // entering=true, then with entering=false). The method should write its + // rendition of the node to the supplied writer w. + RenderNode(w io.Writer, node *Node, entering bool) WalkStatus + + // RenderHeader is a method that allows the renderer to produce some + // content preceding the main body of the output document. The header is + // understood in the broad sense here. For example, the default HTML + // renderer will write not only the HTML document preamble, but also the + // table of contents if it was requested. + // + // The method will be passed an entire document tree, in case a particular + // implementation needs to inspect it to produce output. + // + // The output should be written to the supplied writer w. If your + // implementation has no header to write, supply an empty implementation. + RenderHeader(w io.Writer, ast *Node) + + // RenderFooter is a symmetric counterpart of RenderHeader. + RenderFooter(w io.Writer, ast *Node) +} + +// Callback functions for inline parsing. One such function is defined +// for each character that triggers a response when parsing inline data. +type inlineParser func(p *Markdown, data []byte, offset int) (int, *Node) + +// Markdown is a type that holds extensions and the runtime state used by +// Parse, and the renderer. You can not use it directly, construct it with New. +type Markdown struct { + renderer Renderer + referenceOverride ReferenceOverrideFunc + refs map[string]*reference + inlineCallback [256]inlineParser + extensions Extensions + nesting int + maxNesting int + insideLink bool + + // Footnotes need to be ordered as well as available to quickly check for + // presence. If a ref is also a footnote, it's stored both in refs and here + // in notes. Slice is nil if footnotes not enabled. + notes []*reference + + doc *Node + tip *Node // = doc + oldTip *Node + lastMatchedContainer *Node // = doc + allClosed bool +} + +func (p *Markdown) getRef(refid string) (ref *reference, found bool) { + if p.referenceOverride != nil { + r, overridden := p.referenceOverride(refid) + if overridden { + if r == nil { + return nil, false + } + return &reference{ + link: []byte(r.Link), + title: []byte(r.Title), + noteID: 0, + hasBlock: false, + text: []byte(r.Text)}, true + } + } + // refs are case insensitive + ref, found = p.refs[strings.ToLower(refid)] + return ref, found +} + +func (p *Markdown) finalize(block *Node) { + above := block.Parent + block.open = false + p.tip = above +} + +func (p *Markdown) addChild(node NodeType, offset uint32) *Node { + return p.addExistingChild(NewNode(node), offset) +} + +func (p *Markdown) addExistingChild(node *Node, offset uint32) *Node { + for !p.tip.canContain(node.Type) { + p.finalize(p.tip) + } + p.tip.AppendChild(node) + p.tip = node + return node +} + +func (p *Markdown) closeUnmatchedBlocks() { + if !p.allClosed { + for p.oldTip != p.lastMatchedContainer { + parent := p.oldTip.Parent + p.finalize(p.oldTip) + p.oldTip = parent + } + p.allClosed = true + } +} + +// +// +// Public interface +// +// + +// Reference represents the details of a link. +// See the documentation in Options for more details on use-case. +type Reference struct { + // Link is usually the URL the reference points to. + Link string + // Title is the alternate text describing the link in more detail. + Title string + // Text is the optional text to override the ref with if the syntax used was + // [refid][] + Text string +} + +// ReferenceOverrideFunc is expected to be called with a reference string and +// return either a valid Reference type that the reference string maps to or +// nil. If overridden is false, the default reference logic will be executed. +// See the documentation in Options for more details on use-case. +type ReferenceOverrideFunc func(reference string) (ref *Reference, overridden bool) + +// New constructs a Markdown processor. You can use the same With* functions as +// for Run() to customize parser's behavior and the renderer. +func New(opts ...Option) *Markdown { + var p Markdown + for _, opt := range opts { + opt(&p) + } + p.refs = make(map[string]*reference) + p.maxNesting = 16 + p.insideLink = false + docNode := NewNode(Document) + p.doc = docNode + p.tip = docNode + p.oldTip = docNode + p.lastMatchedContainer = docNode + p.allClosed = true + // register inline parsers + p.inlineCallback[' '] = maybeLineBreak + p.inlineCallback['*'] = emphasis + p.inlineCallback['_'] = emphasis + if p.extensions&Strikethrough != 0 { + p.inlineCallback['~'] = emphasis + } + p.inlineCallback['`'] = codeSpan + p.inlineCallback['\n'] = lineBreak + p.inlineCallback['['] = link + p.inlineCallback['<'] = leftAngle + p.inlineCallback['\\'] = escape + p.inlineCallback['&'] = entity + p.inlineCallback['!'] = maybeImage + p.inlineCallback['^'] = maybeInlineFootnote + if p.extensions&Autolink != 0 { + p.inlineCallback['h'] = maybeAutoLink + p.inlineCallback['m'] = maybeAutoLink + p.inlineCallback['f'] = maybeAutoLink + p.inlineCallback['H'] = maybeAutoLink + p.inlineCallback['M'] = maybeAutoLink + p.inlineCallback['F'] = maybeAutoLink + } + if p.extensions&Footnotes != 0 { + p.notes = make([]*reference, 0) + } + return &p +} + +// Option customizes the Markdown processor's default behavior. +type Option func(*Markdown) + +// WithRenderer allows you to override the default renderer. +func WithRenderer(r Renderer) Option { + return func(p *Markdown) { + p.renderer = r + } +} + +// WithExtensions allows you to pick some of the many extensions provided by +// Blackfriday. You can bitwise OR them. +func WithExtensions(e Extensions) Option { + return func(p *Markdown) { + p.extensions = e + } +} + +// WithNoExtensions turns off all extensions and custom behavior. +func WithNoExtensions() Option { + return func(p *Markdown) { + p.extensions = NoExtensions + p.renderer = NewHTMLRenderer(HTMLRendererParameters{ + Flags: HTMLFlagsNone, + }) + } +} + +// WithRefOverride sets an optional function callback that is called every +// time a reference is resolved. +// +// In Markdown, the link reference syntax can be made to resolve a link to +// a reference instead of an inline URL, in one of the following ways: +// +// * [link text][refid] +// * [refid][] +// +// Usually, the refid is defined at the bottom of the Markdown document. If +// this override function is provided, the refid is passed to the override +// function first, before consulting the defined refids at the bottom. If +// the override function indicates an override did not occur, the refids at +// the bottom will be used to fill in the link details. +func WithRefOverride(o ReferenceOverrideFunc) Option { + return func(p *Markdown) { + p.referenceOverride = o + } +} + +// Run is the main entry point to Blackfriday. It parses and renders a +// block of markdown-encoded text. +// +// The simplest invocation of Run takes one argument, input: +// output := Run(input) +// This will parse the input with CommonExtensions enabled and render it with +// the default HTMLRenderer (with CommonHTMLFlags). +// +// Variadic arguments opts can customize the default behavior. Since Markdown +// type does not contain exported fields, you can not use it directly. Instead, +// use the With* functions. For example, this will call the most basic +// functionality, with no extensions: +// output := Run(input, WithNoExtensions()) +// +// You can use any number of With* arguments, even contradicting ones. They +// will be applied in order of appearance and the latter will override the +// former: +// output := Run(input, WithNoExtensions(), WithExtensions(exts), +// WithRenderer(yourRenderer)) +func Run(input []byte, opts ...Option) []byte { + r := NewHTMLRenderer(HTMLRendererParameters{ + Flags: CommonHTMLFlags, + }) + optList := []Option{WithRenderer(r), WithExtensions(CommonExtensions)} + optList = append(optList, opts...) + parser := New(optList...) + ast := parser.Parse(input) + var buf bytes.Buffer + parser.renderer.RenderHeader(&buf, ast) + ast.Walk(func(node *Node, entering bool) WalkStatus { + return parser.renderer.RenderNode(&buf, node, entering) + }) + parser.renderer.RenderFooter(&buf, ast) + return buf.Bytes() +} + +// Parse is an entry point to the parsing part of Blackfriday. It takes an +// input markdown document and produces a syntax tree for its contents. This +// tree can then be rendered with a default or custom renderer, or +// analyzed/transformed by the caller to whatever non-standard needs they have. +// The return value is the root node of the syntax tree. +func (p *Markdown) Parse(input []byte) *Node { + p.block(input) + // Walk the tree and finish up some of unfinished blocks + for p.tip != nil { + p.finalize(p.tip) + } + // Walk the tree again and process inline markdown in each block + p.doc.Walk(func(node *Node, entering bool) WalkStatus { + if node.Type == Paragraph || node.Type == Heading || node.Type == TableCell { + p.inline(node, node.content) + node.content = nil + } + return GoToNext + }) + p.parseRefsToAST() + return p.doc +} + +func (p *Markdown) parseRefsToAST() { + if p.extensions&Footnotes == 0 || len(p.notes) == 0 { + return + } + p.tip = p.doc + block := p.addBlock(List, nil) + block.IsFootnotesList = true + block.ListFlags = ListTypeOrdered + flags := ListItemBeginningOfList + // Note: this loop is intentionally explicit, not range-form. This is + // because the body of the loop will append nested footnotes to p.notes and + // we need to process those late additions. Range form would only walk over + // the fixed initial set. + for i := 0; i < len(p.notes); i++ { + ref := p.notes[i] + p.addExistingChild(ref.footnote, 0) + block := ref.footnote + block.ListFlags = flags | ListTypeOrdered + block.RefLink = ref.link + if ref.hasBlock { + flags |= ListItemContainsBlock + p.block(ref.title) + } else { + p.inline(block, ref.title) + } + flags &^= ListItemBeginningOfList | ListItemContainsBlock + } + above := block.Parent + finalizeList(block) + p.tip = above + block.Walk(func(node *Node, entering bool) WalkStatus { + if node.Type == Paragraph || node.Type == Heading { + p.inline(node, node.content) + node.content = nil + } + return GoToNext + }) +} + +// +// Link references +// +// This section implements support for references that (usually) appear +// as footnotes in a document, and can be referenced anywhere in the document. +// The basic format is: +// +// [1]: http://www.google.com/ "Google" +// [2]: http://www.github.com/ "Github" +// +// Anywhere in the document, the reference can be linked by referring to its +// label, i.e., 1 and 2 in this example, as in: +// +// This library is hosted on [Github][2], a git hosting site. +// +// Actual footnotes as specified in Pandoc and supported by some other Markdown +// libraries such as php-markdown are also taken care of. They look like this: +// +// This sentence needs a bit of further explanation.[^note] +// +// [^note]: This is the explanation. +// +// Footnotes should be placed at the end of the document in an ordered list. +// Finally, there are inline footnotes such as: +// +// Inline footnotes^[Also supported.] provide a quick inline explanation, +// but are rendered at the bottom of the document. +// + +// reference holds all information necessary for a reference-style links or +// footnotes. +// +// Consider this markdown with reference-style links: +// +// [link][ref] +// +// [ref]: /url/ "tooltip title" +// +// It will be ultimately converted to this HTML: +// +//

    link

    +// +// And a reference structure will be populated as follows: +// +// p.refs["ref"] = &reference{ +// link: "/url/", +// title: "tooltip title", +// } +// +// Alternatively, reference can contain information about a footnote. Consider +// this markdown: +// +// Text needing a footnote.[^a] +// +// [^a]: This is the note +// +// A reference structure will be populated as follows: +// +// p.refs["a"] = &reference{ +// link: "a", +// title: "This is the note", +// noteID: , +// } +// +// TODO: As you can see, it begs for splitting into two dedicated structures +// for refs and for footnotes. +type reference struct { + link []byte + title []byte + noteID int // 0 if not a footnote ref + hasBlock bool + footnote *Node // a link to the Item node within a list of footnotes + + text []byte // only gets populated by refOverride feature with Reference.Text +} + +func (r *reference) String() string { + return fmt.Sprintf("{link: %q, title: %q, text: %q, noteID: %d, hasBlock: %v}", + r.link, r.title, r.text, r.noteID, r.hasBlock) +} + +// Check whether or not data starts with a reference link. +// If so, it is parsed and stored in the list of references +// (in the render struct). +// Returns the number of bytes to skip to move past it, +// or zero if the first line is not a reference. +func isReference(p *Markdown, data []byte, tabSize int) int { + // up to 3 optional leading spaces + if len(data) < 4 { + return 0 + } + i := 0 + for i < 3 && data[i] == ' ' { + i++ + } + + noteID := 0 + + // id part: anything but a newline between brackets + if data[i] != '[' { + return 0 + } + i++ + if p.extensions&Footnotes != 0 { + if i < len(data) && data[i] == '^' { + // we can set it to anything here because the proper noteIds will + // be assigned later during the second pass. It just has to be != 0 + noteID = 1 + i++ + } + } + idOffset := i + for i < len(data) && data[i] != '\n' && data[i] != '\r' && data[i] != ']' { + i++ + } + if i >= len(data) || data[i] != ']' { + return 0 + } + idEnd := i + // footnotes can have empty ID, like this: [^], but a reference can not be + // empty like this: []. Break early if it's not a footnote and there's no ID + if noteID == 0 && idOffset == idEnd { + return 0 + } + // spacer: colon (space | tab)* newline? (space | tab)* + i++ + if i >= len(data) || data[i] != ':' { + return 0 + } + i++ + for i < len(data) && (data[i] == ' ' || data[i] == '\t') { + i++ + } + if i < len(data) && (data[i] == '\n' || data[i] == '\r') { + i++ + if i < len(data) && data[i] == '\n' && data[i-1] == '\r' { + i++ + } + } + for i < len(data) && (data[i] == ' ' || data[i] == '\t') { + i++ + } + if i >= len(data) { + return 0 + } + + var ( + linkOffset, linkEnd int + titleOffset, titleEnd int + lineEnd int + raw []byte + hasBlock bool + ) + + if p.extensions&Footnotes != 0 && noteID != 0 { + linkOffset, linkEnd, raw, hasBlock = scanFootnote(p, data, i, tabSize) + lineEnd = linkEnd + } else { + linkOffset, linkEnd, titleOffset, titleEnd, lineEnd = scanLinkRef(p, data, i) + } + if lineEnd == 0 { + return 0 + } + + // a valid ref has been found + + ref := &reference{ + noteID: noteID, + hasBlock: hasBlock, + } + + if noteID > 0 { + // reusing the link field for the id since footnotes don't have links + ref.link = data[idOffset:idEnd] + // if footnote, it's not really a title, it's the contained text + ref.title = raw + } else { + ref.link = data[linkOffset:linkEnd] + ref.title = data[titleOffset:titleEnd] + } + + // id matches are case-insensitive + id := string(bytes.ToLower(data[idOffset:idEnd])) + + p.refs[id] = ref + + return lineEnd +} + +func scanLinkRef(p *Markdown, data []byte, i int) (linkOffset, linkEnd, titleOffset, titleEnd, lineEnd int) { + // link: whitespace-free sequence, optionally between angle brackets + if data[i] == '<' { + i++ + } + linkOffset = i + for i < len(data) && data[i] != ' ' && data[i] != '\t' && data[i] != '\n' && data[i] != '\r' { + i++ + } + linkEnd = i + if data[linkOffset] == '<' && data[linkEnd-1] == '>' { + linkOffset++ + linkEnd-- + } + + // optional spacer: (space | tab)* (newline | '\'' | '"' | '(' ) + for i < len(data) && (data[i] == ' ' || data[i] == '\t') { + i++ + } + if i < len(data) && data[i] != '\n' && data[i] != '\r' && data[i] != '\'' && data[i] != '"' && data[i] != '(' { + return + } + + // compute end-of-line + if i >= len(data) || data[i] == '\r' || data[i] == '\n' { + lineEnd = i + } + if i+1 < len(data) && data[i] == '\r' && data[i+1] == '\n' { + lineEnd++ + } + + // optional (space|tab)* spacer after a newline + if lineEnd > 0 { + i = lineEnd + 1 + for i < len(data) && (data[i] == ' ' || data[i] == '\t') { + i++ + } + } + + // optional title: any non-newline sequence enclosed in '"() alone on its line + if i+1 < len(data) && (data[i] == '\'' || data[i] == '"' || data[i] == '(') { + i++ + titleOffset = i + + // look for EOL + for i < len(data) && data[i] != '\n' && data[i] != '\r' { + i++ + } + if i+1 < len(data) && data[i] == '\n' && data[i+1] == '\r' { + titleEnd = i + 1 + } else { + titleEnd = i + } + + // step back + i-- + for i > titleOffset && (data[i] == ' ' || data[i] == '\t') { + i-- + } + if i > titleOffset && (data[i] == '\'' || data[i] == '"' || data[i] == ')') { + lineEnd = titleEnd + titleEnd = i + } + } + + return +} + +// The first bit of this logic is the same as Parser.listItem, but the rest +// is much simpler. This function simply finds the entire block and shifts it +// over by one tab if it is indeed a block (just returns the line if it's not). +// blockEnd is the end of the section in the input buffer, and contents is the +// extracted text that was shifted over one tab. It will need to be rendered at +// the end of the document. +func scanFootnote(p *Markdown, data []byte, i, indentSize int) (blockStart, blockEnd int, contents []byte, hasBlock bool) { + if i == 0 || len(data) == 0 { + return + } + + // skip leading whitespace on first line + for i < len(data) && data[i] == ' ' { + i++ + } + + blockStart = i + + // find the end of the line + blockEnd = i + for i < len(data) && data[i-1] != '\n' { + i++ + } + + // get working buffer + var raw bytes.Buffer + + // put the first line into the working buffer + raw.Write(data[blockEnd:i]) + blockEnd = i + + // process the following lines + containsBlankLine := false + +gatherLines: + for blockEnd < len(data) { + i++ + + // find the end of this line + for i < len(data) && data[i-1] != '\n' { + i++ + } + + // if it is an empty line, guess that it is part of this item + // and move on to the next line + if p.isEmpty(data[blockEnd:i]) > 0 { + containsBlankLine = true + blockEnd = i + continue + } + + n := 0 + if n = isIndented(data[blockEnd:i], indentSize); n == 0 { + // this is the end of the block. + // we don't want to include this last line in the index. + break gatherLines + } + + // if there were blank lines before this one, insert a new one now + if containsBlankLine { + raw.WriteByte('\n') + containsBlankLine = false + } + + // get rid of that first tab, write to buffer + raw.Write(data[blockEnd+n : i]) + hasBlock = true + + blockEnd = i + } + + if data[blockEnd-1] != '\n' { + raw.WriteByte('\n') + } + + contents = raw.Bytes() + + return +} + +// +// +// Miscellaneous helper functions +// +// + +// Test if a character is a punctuation symbol. +// Taken from a private function in regexp in the stdlib. +func ispunct(c byte) bool { + for _, r := range []byte("!\"#$%&'()*+,-./:;<=>?@[\\]^_`{|}~") { + if c == r { + return true + } + } + return false +} + +// Test if a character is a whitespace character. +func isspace(c byte) bool { + return ishorizontalspace(c) || isverticalspace(c) +} + +// Test if a character is a horizontal whitespace character. +func ishorizontalspace(c byte) bool { + return c == ' ' || c == '\t' +} + +// Test if a character is a vertical character. +func isverticalspace(c byte) bool { + return c == '\n' || c == '\r' || c == '\f' || c == '\v' +} + +// Test if a character is letter. +func isletter(c byte) bool { + return (c >= 'a' && c <= 'z') || (c >= 'A' && c <= 'Z') +} + +// Test if a character is a letter or a digit. +// TODO: check when this is looking for ASCII alnum and when it should use unicode +func isalnum(c byte) bool { + return (c >= '0' && c <= '9') || isletter(c) +} + +// Replace tab characters with spaces, aligning to the next TAB_SIZE column. +// always ends output with a newline +func expandTabs(out *bytes.Buffer, line []byte, tabSize int) { + // first, check for common cases: no tabs, or only tabs at beginning of line + i, prefix := 0, 0 + slowcase := false + for i = 0; i < len(line); i++ { + if line[i] == '\t' { + if prefix == i { + prefix++ + } else { + slowcase = true + break + } + } + } + + // no need to decode runes if all tabs are at the beginning of the line + if !slowcase { + for i = 0; i < prefix*tabSize; i++ { + out.WriteByte(' ') + } + out.Write(line[prefix:]) + return + } + + // the slow case: we need to count runes to figure out how + // many spaces to insert for each tab + column := 0 + i = 0 + for i < len(line) { + start := i + for i < len(line) && line[i] != '\t' { + _, size := utf8.DecodeRune(line[i:]) + i += size + column++ + } + + if i > start { + out.Write(line[start:i]) + } + + if i >= len(line) { + break + } + + for { + out.WriteByte(' ') + column++ + if column%tabSize == 0 { + break + } + } + + i++ + } +} + +// Find if a line counts as indented or not. +// Returns number of characters the indent is (0 = not indented). +func isIndented(data []byte, indentSize int) int { + if len(data) == 0 { + return 0 + } + if data[0] == '\t' { + return 1 + } + if len(data) < indentSize { + return 0 + } + for i := 0; i < indentSize; i++ { + if data[i] != ' ' { + return 0 + } + } + return indentSize +} + +// Create a url-safe slug for fragments +func slugify(in []byte) []byte { + if len(in) == 0 { + return in + } + out := make([]byte, 0, len(in)) + sym := false + + for _, ch := range in { + if isalnum(ch) { + sym = false + out = append(out, ch) + } else if sym { + continue + } else { + out = append(out, '-') + sym = true + } + } + var a, b int + var ch byte + for a, ch = range out { + if ch != '-' { + break + } + } + for b = len(out) - 1; b > 0; b-- { + if out[b] != '-' { + break + } + } + return out[a : b+1] +} diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/node.go b/tests/e2e/vendor/github.com/russross/blackfriday/v2/node.go new file mode 100644 index 0000000000..04e6050cee --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/node.go @@ -0,0 +1,360 @@ +package blackfriday + +import ( + "bytes" + "fmt" +) + +// NodeType specifies a type of a single node of a syntax tree. Usually one +// node (and its type) corresponds to a single markdown feature, e.g. emphasis +// or code block. +type NodeType int + +// Constants for identifying different types of nodes. See NodeType. +const ( + Document NodeType = iota + BlockQuote + List + Item + Paragraph + Heading + HorizontalRule + Emph + Strong + Del + Link + Image + Text + HTMLBlock + CodeBlock + Softbreak + Hardbreak + Code + HTMLSpan + Table + TableCell + TableHead + TableBody + TableRow +) + +var nodeTypeNames = []string{ + Document: "Document", + BlockQuote: "BlockQuote", + List: "List", + Item: "Item", + Paragraph: "Paragraph", + Heading: "Heading", + HorizontalRule: "HorizontalRule", + Emph: "Emph", + Strong: "Strong", + Del: "Del", + Link: "Link", + Image: "Image", + Text: "Text", + HTMLBlock: "HTMLBlock", + CodeBlock: "CodeBlock", + Softbreak: "Softbreak", + Hardbreak: "Hardbreak", + Code: "Code", + HTMLSpan: "HTMLSpan", + Table: "Table", + TableCell: "TableCell", + TableHead: "TableHead", + TableBody: "TableBody", + TableRow: "TableRow", +} + +func (t NodeType) String() string { + return nodeTypeNames[t] +} + +// ListData contains fields relevant to a List and Item node type. +type ListData struct { + ListFlags ListType + Tight bool // Skip

    s around list item data if true + BulletChar byte // '*', '+' or '-' in bullet lists + Delimiter byte // '.' or ')' after the number in ordered lists + RefLink []byte // If not nil, turns this list item into a footnote item and triggers different rendering + IsFootnotesList bool // This is a list of footnotes +} + +// LinkData contains fields relevant to a Link node type. +type LinkData struct { + Destination []byte // Destination is what goes into a href + Title []byte // Title is the tooltip thing that goes in a title attribute + NoteID int // NoteID contains a serial number of a footnote, zero if it's not a footnote + Footnote *Node // If it's a footnote, this is a direct link to the footnote Node. Otherwise nil. +} + +// CodeBlockData contains fields relevant to a CodeBlock node type. +type CodeBlockData struct { + IsFenced bool // Specifies whether it's a fenced code block or an indented one + Info []byte // This holds the info string + FenceChar byte + FenceLength int + FenceOffset int +} + +// TableCellData contains fields relevant to a TableCell node type. +type TableCellData struct { + IsHeader bool // This tells if it's under the header row + Align CellAlignFlags // This holds the value for align attribute +} + +// HeadingData contains fields relevant to a Heading node type. +type HeadingData struct { + Level int // This holds the heading level number + HeadingID string // This might hold heading ID, if present + IsTitleblock bool // Specifies whether it's a title block +} + +// Node is a single element in the abstract syntax tree of the parsed document. +// It holds connections to the structurally neighboring nodes and, for certain +// types of nodes, additional information that might be needed when rendering. +type Node struct { + Type NodeType // Determines the type of the node + Parent *Node // Points to the parent + FirstChild *Node // Points to the first child, if any + LastChild *Node // Points to the last child, if any + Prev *Node // Previous sibling; nil if it's the first child + Next *Node // Next sibling; nil if it's the last child + + Literal []byte // Text contents of the leaf nodes + + HeadingData // Populated if Type is Heading + ListData // Populated if Type is List + CodeBlockData // Populated if Type is CodeBlock + LinkData // Populated if Type is Link + TableCellData // Populated if Type is TableCell + + content []byte // Markdown content of the block nodes + open bool // Specifies an open block node that has not been finished to process yet +} + +// NewNode allocates a node of a specified type. +func NewNode(typ NodeType) *Node { + return &Node{ + Type: typ, + open: true, + } +} + +func (n *Node) String() string { + ellipsis := "" + snippet := n.Literal + if len(snippet) > 16 { + snippet = snippet[:16] + ellipsis = "..." + } + return fmt.Sprintf("%s: '%s%s'", n.Type, snippet, ellipsis) +} + +// Unlink removes node 'n' from the tree. +// It panics if the node is nil. +func (n *Node) Unlink() { + if n.Prev != nil { + n.Prev.Next = n.Next + } else if n.Parent != nil { + n.Parent.FirstChild = n.Next + } + if n.Next != nil { + n.Next.Prev = n.Prev + } else if n.Parent != nil { + n.Parent.LastChild = n.Prev + } + n.Parent = nil + n.Next = nil + n.Prev = nil +} + +// AppendChild adds a node 'child' as a child of 'n'. +// It panics if either node is nil. +func (n *Node) AppendChild(child *Node) { + child.Unlink() + child.Parent = n + if n.LastChild != nil { + n.LastChild.Next = child + child.Prev = n.LastChild + n.LastChild = child + } else { + n.FirstChild = child + n.LastChild = child + } +} + +// InsertBefore inserts 'sibling' immediately before 'n'. +// It panics if either node is nil. +func (n *Node) InsertBefore(sibling *Node) { + sibling.Unlink() + sibling.Prev = n.Prev + if sibling.Prev != nil { + sibling.Prev.Next = sibling + } + sibling.Next = n + n.Prev = sibling + sibling.Parent = n.Parent + if sibling.Prev == nil { + sibling.Parent.FirstChild = sibling + } +} + +// IsContainer returns true if 'n' can contain children. +func (n *Node) IsContainer() bool { + switch n.Type { + case Document: + fallthrough + case BlockQuote: + fallthrough + case List: + fallthrough + case Item: + fallthrough + case Paragraph: + fallthrough + case Heading: + fallthrough + case Emph: + fallthrough + case Strong: + fallthrough + case Del: + fallthrough + case Link: + fallthrough + case Image: + fallthrough + case Table: + fallthrough + case TableHead: + fallthrough + case TableBody: + fallthrough + case TableRow: + fallthrough + case TableCell: + return true + default: + return false + } +} + +// IsLeaf returns true if 'n' is a leaf node. +func (n *Node) IsLeaf() bool { + return !n.IsContainer() +} + +func (n *Node) canContain(t NodeType) bool { + if n.Type == List { + return t == Item + } + if n.Type == Document || n.Type == BlockQuote || n.Type == Item { + return t != Item + } + if n.Type == Table { + return t == TableHead || t == TableBody + } + if n.Type == TableHead || n.Type == TableBody { + return t == TableRow + } + if n.Type == TableRow { + return t == TableCell + } + return false +} + +// WalkStatus allows NodeVisitor to have some control over the tree traversal. +// It is returned from NodeVisitor and different values allow Node.Walk to +// decide which node to go to next. +type WalkStatus int + +const ( + // GoToNext is the default traversal of every node. + GoToNext WalkStatus = iota + // SkipChildren tells walker to skip all children of current node. + SkipChildren + // Terminate tells walker to terminate the traversal. + Terminate +) + +// NodeVisitor is a callback to be called when traversing the syntax tree. +// Called twice for every node: once with entering=true when the branch is +// first visited, then with entering=false after all the children are done. +type NodeVisitor func(node *Node, entering bool) WalkStatus + +// Walk is a convenience method that instantiates a walker and starts a +// traversal of subtree rooted at n. +func (n *Node) Walk(visitor NodeVisitor) { + w := newNodeWalker(n) + for w.current != nil { + status := visitor(w.current, w.entering) + switch status { + case GoToNext: + w.next() + case SkipChildren: + w.entering = false + w.next() + case Terminate: + return + } + } +} + +type nodeWalker struct { + current *Node + root *Node + entering bool +} + +func newNodeWalker(root *Node) *nodeWalker { + return &nodeWalker{ + current: root, + root: root, + entering: true, + } +} + +func (nw *nodeWalker) next() { + if (!nw.current.IsContainer() || !nw.entering) && nw.current == nw.root { + nw.current = nil + return + } + if nw.entering && nw.current.IsContainer() { + if nw.current.FirstChild != nil { + nw.current = nw.current.FirstChild + nw.entering = true + } else { + nw.entering = false + } + } else if nw.current.Next == nil { + nw.current = nw.current.Parent + nw.entering = false + } else { + nw.current = nw.current.Next + nw.entering = true + } +} + +func dump(ast *Node) { + fmt.Println(dumpString(ast)) +} + +func dumpR(ast *Node, depth int) string { + if ast == nil { + return "" + } + indent := bytes.Repeat([]byte("\t"), depth) + content := ast.Literal + if content == nil { + content = ast.content + } + result := fmt.Sprintf("%s%s(%q)\n", indent, ast.Type, content) + for n := ast.FirstChild; n != nil; n = n.Next { + result += dumpR(n, depth+1) + } + return result +} + +func dumpString(ast *Node) string { + return dumpR(ast, 0) +} diff --git a/tests/e2e/vendor/github.com/russross/blackfriday/v2/smartypants.go b/tests/e2e/vendor/github.com/russross/blackfriday/v2/smartypants.go new file mode 100644 index 0000000000..3a220e9424 --- /dev/null +++ b/tests/e2e/vendor/github.com/russross/blackfriday/v2/smartypants.go @@ -0,0 +1,457 @@ +// +// Blackfriday Markdown Processor +// Available at http://github.com/russross/blackfriday +// +// Copyright © 2011 Russ Ross . +// Distributed under the Simplified BSD License. +// See README.md for details. +// + +// +// +// SmartyPants rendering +// +// + +package blackfriday + +import ( + "bytes" + "io" +) + +// SPRenderer is a struct containing state of a Smartypants renderer. +type SPRenderer struct { + inSingleQuote bool + inDoubleQuote bool + callbacks [256]smartCallback +} + +func wordBoundary(c byte) bool { + return c == 0 || isspace(c) || ispunct(c) +} + +func tolower(c byte) byte { + if c >= 'A' && c <= 'Z' { + return c - 'A' + 'a' + } + return c +} + +func isdigit(c byte) bool { + return c >= '0' && c <= '9' +} + +func smartQuoteHelper(out *bytes.Buffer, previousChar byte, nextChar byte, quote byte, isOpen *bool, addNBSP bool) bool { + // edge of the buffer is likely to be a tag that we don't get to see, + // so we treat it like text sometimes + + // enumerate all sixteen possibilities for (previousChar, nextChar) + // each can be one of {0, space, punct, other} + switch { + case previousChar == 0 && nextChar == 0: + // context is not any help here, so toggle + *isOpen = !*isOpen + case isspace(previousChar) && nextChar == 0: + // [ "] might be [ "foo...] + *isOpen = true + case ispunct(previousChar) && nextChar == 0: + // [!"] hmm... could be [Run!"] or [("...] + *isOpen = false + case /* isnormal(previousChar) && */ nextChar == 0: + // [a"] is probably a close + *isOpen = false + case previousChar == 0 && isspace(nextChar): + // [" ] might be [...foo" ] + *isOpen = false + case isspace(previousChar) && isspace(nextChar): + // [ " ] context is not any help here, so toggle + *isOpen = !*isOpen + case ispunct(previousChar) && isspace(nextChar): + // [!" ] is probably a close + *isOpen = false + case /* isnormal(previousChar) && */ isspace(nextChar): + // [a" ] this is one of the easy cases + *isOpen = false + case previousChar == 0 && ispunct(nextChar): + // ["!] hmm... could be ["$1.95] or ["!...] + *isOpen = false + case isspace(previousChar) && ispunct(nextChar): + // [ "!] looks more like [ "$1.95] + *isOpen = true + case ispunct(previousChar) && ispunct(nextChar): + // [!"!] context is not any help here, so toggle + *isOpen = !*isOpen + case /* isnormal(previousChar) && */ ispunct(nextChar): + // [a"!] is probably a close + *isOpen = false + case previousChar == 0 /* && isnormal(nextChar) */ : + // ["a] is probably an open + *isOpen = true + case isspace(previousChar) /* && isnormal(nextChar) */ : + // [ "a] this is one of the easy cases + *isOpen = true + case ispunct(previousChar) /* && isnormal(nextChar) */ : + // [!"a] is probably an open + *isOpen = true + default: + // [a'b] maybe a contraction? + *isOpen = false + } + + // Note that with the limited lookahead, this non-breaking + // space will also be appended to single double quotes. + if addNBSP && !*isOpen { + out.WriteString(" ") + } + + out.WriteByte('&') + if *isOpen { + out.WriteByte('l') + } else { + out.WriteByte('r') + } + out.WriteByte(quote) + out.WriteString("quo;") + + if addNBSP && *isOpen { + out.WriteString(" ") + } + + return true +} + +func (r *SPRenderer) smartSingleQuote(out *bytes.Buffer, previousChar byte, text []byte) int { + if len(text) >= 2 { + t1 := tolower(text[1]) + + if t1 == '\'' { + nextChar := byte(0) + if len(text) >= 3 { + nextChar = text[2] + } + if smartQuoteHelper(out, previousChar, nextChar, 'd', &r.inDoubleQuote, false) { + return 1 + } + } + + if (t1 == 's' || t1 == 't' || t1 == 'm' || t1 == 'd') && (len(text) < 3 || wordBoundary(text[2])) { + out.WriteString("’") + return 0 + } + + if len(text) >= 3 { + t2 := tolower(text[2]) + + if ((t1 == 'r' && t2 == 'e') || (t1 == 'l' && t2 == 'l') || (t1 == 'v' && t2 == 'e')) && + (len(text) < 4 || wordBoundary(text[3])) { + out.WriteString("’") + return 0 + } + } + } + + nextChar := byte(0) + if len(text) > 1 { + nextChar = text[1] + } + if smartQuoteHelper(out, previousChar, nextChar, 's', &r.inSingleQuote, false) { + return 0 + } + + out.WriteByte(text[0]) + return 0 +} + +func (r *SPRenderer) smartParens(out *bytes.Buffer, previousChar byte, text []byte) int { + if len(text) >= 3 { + t1 := tolower(text[1]) + t2 := tolower(text[2]) + + if t1 == 'c' && t2 == ')' { + out.WriteString("©") + return 2 + } + + if t1 == 'r' && t2 == ')' { + out.WriteString("®") + return 2 + } + + if len(text) >= 4 && t1 == 't' && t2 == 'm' && text[3] == ')' { + out.WriteString("™") + return 3 + } + } + + out.WriteByte(text[0]) + return 0 +} + +func (r *SPRenderer) smartDash(out *bytes.Buffer, previousChar byte, text []byte) int { + if len(text) >= 2 { + if text[1] == '-' { + out.WriteString("—") + return 1 + } + + if wordBoundary(previousChar) && wordBoundary(text[1]) { + out.WriteString("–") + return 0 + } + } + + out.WriteByte(text[0]) + return 0 +} + +func (r *SPRenderer) smartDashLatex(out *bytes.Buffer, previousChar byte, text []byte) int { + if len(text) >= 3 && text[1] == '-' && text[2] == '-' { + out.WriteString("—") + return 2 + } + if len(text) >= 2 && text[1] == '-' { + out.WriteString("–") + return 1 + } + + out.WriteByte(text[0]) + return 0 +} + +func (r *SPRenderer) smartAmpVariant(out *bytes.Buffer, previousChar byte, text []byte, quote byte, addNBSP bool) int { + if bytes.HasPrefix(text, []byte(""")) { + nextChar := byte(0) + if len(text) >= 7 { + nextChar = text[6] + } + if smartQuoteHelper(out, previousChar, nextChar, quote, &r.inDoubleQuote, addNBSP) { + return 5 + } + } + + if bytes.HasPrefix(text, []byte("�")) { + return 3 + } + + out.WriteByte('&') + return 0 +} + +func (r *SPRenderer) smartAmp(angledQuotes, addNBSP bool) func(*bytes.Buffer, byte, []byte) int { + var quote byte = 'd' + if angledQuotes { + quote = 'a' + } + + return func(out *bytes.Buffer, previousChar byte, text []byte) int { + return r.smartAmpVariant(out, previousChar, text, quote, addNBSP) + } +} + +func (r *SPRenderer) smartPeriod(out *bytes.Buffer, previousChar byte, text []byte) int { + if len(text) >= 3 && text[1] == '.' && text[2] == '.' { + out.WriteString("…") + return 2 + } + + if len(text) >= 5 && text[1] == ' ' && text[2] == '.' && text[3] == ' ' && text[4] == '.' { + out.WriteString("…") + return 4 + } + + out.WriteByte(text[0]) + return 0 +} + +func (r *SPRenderer) smartBacktick(out *bytes.Buffer, previousChar byte, text []byte) int { + if len(text) >= 2 && text[1] == '`' { + nextChar := byte(0) + if len(text) >= 3 { + nextChar = text[2] + } + if smartQuoteHelper(out, previousChar, nextChar, 'd', &r.inDoubleQuote, false) { + return 1 + } + } + + out.WriteByte(text[0]) + return 0 +} + +func (r *SPRenderer) smartNumberGeneric(out *bytes.Buffer, previousChar byte, text []byte) int { + if wordBoundary(previousChar) && previousChar != '/' && len(text) >= 3 { + // is it of the form digits/digits(word boundary)?, i.e., \d+/\d+\b + // note: check for regular slash (/) or fraction slash (â„, 0x2044, or 0xe2 81 84 in utf-8) + // and avoid changing dates like 1/23/2005 into fractions. + numEnd := 0 + for len(text) > numEnd && isdigit(text[numEnd]) { + numEnd++ + } + if numEnd == 0 { + out.WriteByte(text[0]) + return 0 + } + denStart := numEnd + 1 + if len(text) > numEnd+3 && text[numEnd] == 0xe2 && text[numEnd+1] == 0x81 && text[numEnd+2] == 0x84 { + denStart = numEnd + 3 + } else if len(text) < numEnd+2 || text[numEnd] != '/' { + out.WriteByte(text[0]) + return 0 + } + denEnd := denStart + for len(text) > denEnd && isdigit(text[denEnd]) { + denEnd++ + } + if denEnd == denStart { + out.WriteByte(text[0]) + return 0 + } + if len(text) == denEnd || wordBoundary(text[denEnd]) && text[denEnd] != '/' { + out.WriteString("") + out.Write(text[:numEnd]) + out.WriteString("") + out.Write(text[denStart:denEnd]) + out.WriteString("") + return denEnd - 1 + } + } + + out.WriteByte(text[0]) + return 0 +} + +func (r *SPRenderer) smartNumber(out *bytes.Buffer, previousChar byte, text []byte) int { + if wordBoundary(previousChar) && previousChar != '/' && len(text) >= 3 { + if text[0] == '1' && text[1] == '/' && text[2] == '2' { + if len(text) < 4 || wordBoundary(text[3]) && text[3] != '/' { + out.WriteString("½") + return 2 + } + } + + if text[0] == '1' && text[1] == '/' && text[2] == '4' { + if len(text) < 4 || wordBoundary(text[3]) && text[3] != '/' || (len(text) >= 5 && tolower(text[3]) == 't' && tolower(text[4]) == 'h') { + out.WriteString("¼") + return 2 + } + } + + if text[0] == '3' && text[1] == '/' && text[2] == '4' { + if len(text) < 4 || wordBoundary(text[3]) && text[3] != '/' || (len(text) >= 6 && tolower(text[3]) == 't' && tolower(text[4]) == 'h' && tolower(text[5]) == 's') { + out.WriteString("¾") + return 2 + } + } + } + + out.WriteByte(text[0]) + return 0 +} + +func (r *SPRenderer) smartDoubleQuoteVariant(out *bytes.Buffer, previousChar byte, text []byte, quote byte) int { + nextChar := byte(0) + if len(text) > 1 { + nextChar = text[1] + } + if !smartQuoteHelper(out, previousChar, nextChar, quote, &r.inDoubleQuote, false) { + out.WriteString(""") + } + + return 0 +} + +func (r *SPRenderer) smartDoubleQuote(out *bytes.Buffer, previousChar byte, text []byte) int { + return r.smartDoubleQuoteVariant(out, previousChar, text, 'd') +} + +func (r *SPRenderer) smartAngledDoubleQuote(out *bytes.Buffer, previousChar byte, text []byte) int { + return r.smartDoubleQuoteVariant(out, previousChar, text, 'a') +} + +func (r *SPRenderer) smartLeftAngle(out *bytes.Buffer, previousChar byte, text []byte) int { + i := 0 + + for i < len(text) && text[i] != '>' { + i++ + } + + out.Write(text[:i+1]) + return i +} + +type smartCallback func(out *bytes.Buffer, previousChar byte, text []byte) int + +// NewSmartypantsRenderer constructs a Smartypants renderer object. +func NewSmartypantsRenderer(flags HTMLFlags) *SPRenderer { + var ( + r SPRenderer + + smartAmpAngled = r.smartAmp(true, false) + smartAmpAngledNBSP = r.smartAmp(true, true) + smartAmpRegular = r.smartAmp(false, false) + smartAmpRegularNBSP = r.smartAmp(false, true) + + addNBSP = flags&SmartypantsQuotesNBSP != 0 + ) + + if flags&SmartypantsAngledQuotes == 0 { + r.callbacks['"'] = r.smartDoubleQuote + if !addNBSP { + r.callbacks['&'] = smartAmpRegular + } else { + r.callbacks['&'] = smartAmpRegularNBSP + } + } else { + r.callbacks['"'] = r.smartAngledDoubleQuote + if !addNBSP { + r.callbacks['&'] = smartAmpAngled + } else { + r.callbacks['&'] = smartAmpAngledNBSP + } + } + r.callbacks['\''] = r.smartSingleQuote + r.callbacks['('] = r.smartParens + if flags&SmartypantsDashes != 0 { + if flags&SmartypantsLatexDashes == 0 { + r.callbacks['-'] = r.smartDash + } else { + r.callbacks['-'] = r.smartDashLatex + } + } + r.callbacks['.'] = r.smartPeriod + if flags&SmartypantsFractions == 0 { + r.callbacks['1'] = r.smartNumber + r.callbacks['3'] = r.smartNumber + } else { + for ch := '1'; ch <= '9'; ch++ { + r.callbacks[ch] = r.smartNumberGeneric + } + } + r.callbacks['<'] = r.smartLeftAngle + r.callbacks['`'] = r.smartBacktick + return &r +} + +// Process is the entry point of the Smartypants renderer. +func (r *SPRenderer) Process(w io.Writer, text []byte) { + mark := 0 + for i := 0; i < len(text); i++ { + if action := r.callbacks[text[i]]; action != nil { + if i > mark { + w.Write(text[mark:i]) + } + previousChar := byte(0) + if i > 0 { + previousChar = text[i-1] + } + var tmp bytes.Buffer + i += action(&tmp, previousChar, text[i:]) + w.Write(tmp.Bytes()) + mark = i + 1 + } + } + if mark < len(text) { + w.Write(text[mark:]) + } +} diff --git a/tests/e2e/vendor/github.com/spf13/pflag/flag.go b/tests/e2e/vendor/github.com/spf13/pflag/flag.go index eeed1e92b0..2fd3c57597 100644 --- a/tests/e2e/vendor/github.com/spf13/pflag/flag.go +++ b/tests/e2e/vendor/github.com/spf13/pflag/flag.go @@ -143,8 +143,9 @@ type ParseErrorsAllowlist struct { UnknownFlags bool } -// DEPRECATED: please use ParseErrorsAllowlist instead -// This type will be removed in a future release +// ParseErrorsWhitelist defines the parsing errors that can be ignored. +// +// Deprecated: use [ParseErrorsAllowlist] instead. This type will be removed in a future release. type ParseErrorsWhitelist = ParseErrorsAllowlist // NormalizedName is a flag name that has been normalized according to rules @@ -165,8 +166,9 @@ type FlagSet struct { // ParseErrorsAllowlist is used to configure an allowlist of errors ParseErrorsAllowlist ParseErrorsAllowlist - // DEPRECATED: please use ParseErrorsAllowlist instead - // This field will be removed in a future release + // ParseErrorsAllowlist is used to configure an allowlist of errors. + // + // Deprecated: use [FlagSet.ParseErrorsAllowlist] instead. This field will be removed in a future release. ParseErrorsWhitelist ParseErrorsAllowlist name string @@ -1185,7 +1187,7 @@ func (f *FlagSet) Parse(arguments []string) error { case ContinueOnError: return err case ExitOnError: - if errors.Is(err, ErrHelp) { + if err == ErrHelp { os.Exit(0) } fmt.Fprintln(f.Output(), err) @@ -1214,7 +1216,7 @@ func (f *FlagSet) ParseAll(arguments []string, fn func(flag *Flag, value string) case ContinueOnError: return err case ExitOnError: - if errors.Is(err, ErrHelp) { + if err == ErrHelp { os.Exit(0) } fmt.Fprintln(f.Output(), err) diff --git a/tests/e2e/vendor/github.com/stoewer/go-strcase/.gitignore b/tests/e2e/vendor/github.com/stoewer/go-strcase/.gitignore deleted file mode 100644 index db5247b944..0000000000 --- a/tests/e2e/vendor/github.com/stoewer/go-strcase/.gitignore +++ /dev/null @@ -1,17 +0,0 @@ -# Compiled Object files, Static and Dynamic libs (Shared Objects) -*.o -*.a -*.so - -# Folders -vendor -doc - -# Temporary files -*~ -*.swp - -# Editor and IDE config -.idea -*.iml -.vscode diff --git a/tests/e2e/vendor/github.com/stoewer/go-strcase/.golangci.yml b/tests/e2e/vendor/github.com/stoewer/go-strcase/.golangci.yml deleted file mode 100644 index 7f98d55c42..0000000000 --- a/tests/e2e/vendor/github.com/stoewer/go-strcase/.golangci.yml +++ /dev/null @@ -1,26 +0,0 @@ -run: - deadline: 10m - -linters: - enable: - - dupl - - goconst - - gocyclo - - godox - - gosec - - interfacer - - lll - - maligned - - misspell - - prealloc - - stylecheck - - unconvert - - unparam - - errcheck - - golint - - gofmt - disable: [] - fast: false - -issues: - exclude-use-default: false diff --git a/tests/e2e/vendor/github.com/stoewer/go-strcase/LICENSE b/tests/e2e/vendor/github.com/stoewer/go-strcase/LICENSE deleted file mode 100644 index a105a3819a..0000000000 --- a/tests/e2e/vendor/github.com/stoewer/go-strcase/LICENSE +++ /dev/null @@ -1,21 +0,0 @@ -The MIT License (MIT) - -Copyright (c) 2017, Adrian Stoewer - -Permission is hereby granted, free of charge, to any person obtaining a copy -of this software and associated documentation files (the "Software"), to deal -in the Software without restriction, including without limitation the rights -to use, copy, modify, merge, publish, distribute, sublicense, and/or sell -copies of the Software, and to permit persons to whom the Software is -furnished to do so, subject to the following conditions: - -The above copyright notice and this permission notice shall be included in all -copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR -IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, -FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE -AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER -LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, -OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE -SOFTWARE. diff --git a/tests/e2e/vendor/github.com/stoewer/go-strcase/README.md b/tests/e2e/vendor/github.com/stoewer/go-strcase/README.md deleted file mode 100644 index 84a640e714..0000000000 --- a/tests/e2e/vendor/github.com/stoewer/go-strcase/README.md +++ /dev/null @@ -1,50 +0,0 @@ -[![GH Actions](https://github.com/stoewer/go-strcase/actions/workflows/lint-test.yml/badge.svg?branch=master)](https://github.com/stoewer/go-strcase/actions) -[![codecov](https://codecov.io/github/stoewer/go-strcase/branch/master/graph/badge.svg?token=c0UokYnop5)](https://codecov.io/github/stoewer/go-strcase) -[![GoDoc](https://godoc.org/github.com/stoewer/go-strcase?status.svg)](https://pkg.go.dev/github.com/stoewer/go-strcase) ---- - -Go strcase -========== - -The package `strcase` converts between different kinds of naming formats such as camel case -(`CamelCase`), snake case (`snake_case`) or kebab case (`kebab-case`). -The package is designed to work only with strings consisting of standard ASCII letters. -Unicode is currently not supported. - -Versioning and stability ------------------------- - -Although the master branch is supposed to remain always backward compatible, the repository -contains version tags in order to support vendoring tools. -The tag names follow semantic versioning conventions and have the following format `v1.0.0`. -This package supports Go modules introduced with version 1.11. - -Example -------- - -```go -import "github.com/stoewer/go-strcase" - -var snake = strcase.SnakeCase("CamelCase") -``` - -Dependencies ------------- - -### Build dependencies - -* none - -### Test dependencies - -* `github.com/stretchr/testify` - -Run linters and unit tests --------------------------- - -To run the static code analysis, linters and tests use the following commands: - -``` -golangci-lint run --config .golangci.yml ./... -go test ./... -``` diff --git a/tests/e2e/vendor/github.com/stoewer/go-strcase/camel.go b/tests/e2e/vendor/github.com/stoewer/go-strcase/camel.go deleted file mode 100644 index ff9e66e0ce..0000000000 --- a/tests/e2e/vendor/github.com/stoewer/go-strcase/camel.go +++ /dev/null @@ -1,40 +0,0 @@ -// Copyright (c) 2017, A. Stoewer -// All rights reserved. - -package strcase - -import ( - "strings" -) - -// UpperCamelCase converts a string into camel case starting with a upper case letter. -func UpperCamelCase(s string) string { - return camelCase(s, true) -} - -// LowerCamelCase converts a string into camel case starting with a lower case letter. -func LowerCamelCase(s string) string { - return camelCase(s, false) -} - -func camelCase(s string, upper bool) string { - s = strings.TrimSpace(s) - buffer := make([]rune, 0, len(s)) - - stringIter(s, func(prev, curr, next rune) { - if !isDelimiter(curr) { - if isDelimiter(prev) || (upper && prev == 0) { - buffer = append(buffer, toUpper(curr)) - } else if isLower(prev) { - buffer = append(buffer, curr) - } else if isUpper(prev) && isUpper(curr) && isLower(next) { - // Assume a case like "R" for "XRequestId" - buffer = append(buffer, curr) - } else { - buffer = append(buffer, toLower(curr)) - } - } - }) - - return string(buffer) -} diff --git a/tests/e2e/vendor/github.com/stoewer/go-strcase/doc.go b/tests/e2e/vendor/github.com/stoewer/go-strcase/doc.go deleted file mode 100644 index 3e441ca3ef..0000000000 --- a/tests/e2e/vendor/github.com/stoewer/go-strcase/doc.go +++ /dev/null @@ -1,8 +0,0 @@ -// Copyright (c) 2017, A. Stoewer -// All rights reserved. - -// Package strcase converts between different kinds of naming formats such as camel case -// (CamelCase), snake case (snake_case) or kebab case (kebab-case). The package is designed -// to work only with strings consisting of standard ASCII letters. Unicode is currently not -// supported. -package strcase diff --git a/tests/e2e/vendor/github.com/stoewer/go-strcase/helper.go b/tests/e2e/vendor/github.com/stoewer/go-strcase/helper.go deleted file mode 100644 index ecad589143..0000000000 --- a/tests/e2e/vendor/github.com/stoewer/go-strcase/helper.go +++ /dev/null @@ -1,71 +0,0 @@ -// Copyright (c) 2017, A. Stoewer -// All rights reserved. - -package strcase - -// isLower checks if a character is lower case. More precisely it evaluates if it is -// in the range of ASCII character 'a' to 'z'. -func isLower(ch rune) bool { - return ch >= 'a' && ch <= 'z' -} - -// toLower converts a character in the range of ASCII characters 'A' to 'Z' to its lower -// case counterpart. Other characters remain the same. -func toLower(ch rune) rune { - if ch >= 'A' && ch <= 'Z' { - return ch + 32 - } - return ch -} - -// isLower checks if a character is upper case. More precisely it evaluates if it is -// in the range of ASCII characters 'A' to 'Z'. -func isUpper(ch rune) bool { - return ch >= 'A' && ch <= 'Z' -} - -// toLower converts a character in the range of ASCII characters 'a' to 'z' to its lower -// case counterpart. Other characters remain the same. -func toUpper(ch rune) rune { - if ch >= 'a' && ch <= 'z' { - return ch - 32 - } - return ch -} - -// isSpace checks if a character is some kind of whitespace. -func isSpace(ch rune) bool { - return ch == ' ' || ch == '\t' || ch == '\n' || ch == '\r' -} - -// isDelimiter checks if a character is some kind of whitespace or '_' or '-'. -func isDelimiter(ch rune) bool { - return ch == '-' || ch == '_' || isSpace(ch) -} - -// iterFunc is a callback that is called fro a specific position in a string. Its arguments are the -// rune at the respective string position as well as the previous and the next rune. If curr is at the -// first position of the string prev is zero. If curr is at the end of the string next is zero. -type iterFunc func(prev, curr, next rune) - -// stringIter iterates over a string, invoking the callback for every single rune in the string. -func stringIter(s string, callback iterFunc) { - var prev rune - var curr rune - for _, next := range s { - if curr == 0 { - prev = curr - curr = next - continue - } - - callback(prev, curr, next) - - prev = curr - curr = next - } - - if len(s) > 0 { - callback(prev, curr, 0) - } -} diff --git a/tests/e2e/vendor/github.com/stoewer/go-strcase/kebab.go b/tests/e2e/vendor/github.com/stoewer/go-strcase/kebab.go deleted file mode 100644 index e9a6487579..0000000000 --- a/tests/e2e/vendor/github.com/stoewer/go-strcase/kebab.go +++ /dev/null @@ -1,14 +0,0 @@ -// Copyright (c) 2017, A. Stoewer -// All rights reserved. - -package strcase - -// KebabCase converts a string into kebab case. -func KebabCase(s string) string { - return delimiterCase(s, '-', false) -} - -// UpperKebabCase converts a string into kebab case with capital letters. -func UpperKebabCase(s string) string { - return delimiterCase(s, '-', true) -} diff --git a/tests/e2e/vendor/github.com/stoewer/go-strcase/snake.go b/tests/e2e/vendor/github.com/stoewer/go-strcase/snake.go deleted file mode 100644 index 1b216e20cf..0000000000 --- a/tests/e2e/vendor/github.com/stoewer/go-strcase/snake.go +++ /dev/null @@ -1,58 +0,0 @@ -// Copyright (c) 2017, A. Stoewer -// All rights reserved. - -package strcase - -import ( - "strings" -) - -// SnakeCase converts a string into snake case. -func SnakeCase(s string) string { - return delimiterCase(s, '_', false) -} - -// UpperSnakeCase converts a string into snake case with capital letters. -func UpperSnakeCase(s string) string { - return delimiterCase(s, '_', true) -} - -// delimiterCase converts a string into snake_case or kebab-case depending on the delimiter passed -// as second argument. When upperCase is true the result will be UPPER_SNAKE_CASE or UPPER-KEBAB-CASE. -func delimiterCase(s string, delimiter rune, upperCase bool) string { - s = strings.TrimSpace(s) - buffer := make([]rune, 0, len(s)+3) - - adjustCase := toLower - if upperCase { - adjustCase = toUpper - } - - var prev rune - var curr rune - for _, next := range s { - if isDelimiter(curr) { - if !isDelimiter(prev) { - buffer = append(buffer, delimiter) - } - } else if isUpper(curr) { - if isLower(prev) || (isUpper(prev) && isLower(next)) { - buffer = append(buffer, delimiter) - } - buffer = append(buffer, adjustCase(curr)) - } else if curr != 0 { - buffer = append(buffer, adjustCase(curr)) - } - prev = curr - curr = next - } - - if len(s) > 0 { - if isUpper(curr) && isLower(prev) && prev != 0 { - buffer = append(buffer, delimiter) - } - buffer = append(buffer, adjustCase(curr)) - } - - return string(buffer) -} diff --git a/tests/e2e/vendor/github.com/xlab/treeprint/.gitignore b/tests/e2e/vendor/github.com/xlab/treeprint/.gitignore new file mode 100644 index 0000000000..7c9305d664 --- /dev/null +++ b/tests/e2e/vendor/github.com/xlab/treeprint/.gitignore @@ -0,0 +1,3 @@ +vendor/** +.idea +**/**.iml diff --git a/tests/e2e/vendor/github.com/xlab/treeprint/LICENSE b/tests/e2e/vendor/github.com/xlab/treeprint/LICENSE new file mode 100644 index 0000000000..5ab533ad2f --- /dev/null +++ b/tests/e2e/vendor/github.com/xlab/treeprint/LICENSE @@ -0,0 +1,20 @@ +The MIT License (MIT) +Copyright © 2016 Maxim Kupriianov + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the “Softwareâ€), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in +all copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED “AS ISâ€, WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN +THE SOFTWARE. diff --git a/tests/e2e/vendor/github.com/xlab/treeprint/README.md b/tests/e2e/vendor/github.com/xlab/treeprint/README.md new file mode 100644 index 0000000000..59fb121fcf --- /dev/null +++ b/tests/e2e/vendor/github.com/xlab/treeprint/README.md @@ -0,0 +1,154 @@ +treeprint [![GoDoc](https://godoc.org/github.com/xlab/treeprint?status.svg)](https://godoc.org/github.com/xlab/treeprint) ![test coverage](https://img.shields.io/badge/coverage-68.6%25-green.svg) +========= + +Package `treeprint` provides a simple ASCII tree composing tool. + +SYSTEME FIGURE + +If you are familiar with the [tree](http://mama.indstate.edu/users/ice/tree/) utility that is a recursive directory listing command that produces a depth indented listing of files, then you have the idea of what it would look like. + +On my system the command yields the following + +``` + $ tree +. +├── LICENSE +├── README.md +├── treeprint.go +└── treeprint_test.go + +0 directories, 4 files +``` + +and I'd like to have the same format for my Go data structures when I print them. + +## Installation + +``` +$ go get github.com/xlab/treeprint +``` + +## Concept of work + +The general idea is that you initialise a new tree with `treeprint.New()` and then add nodes and +branches into it. Use `AddNode()` when you want add a node on the same level as the target or +use `AddBranch()` when you want to go a level deeper. So `tree.AddBranch().AddNode().AddNode()` would +create a new level with two distinct nodes on it. So `tree.AddNode().AddNode()` is a flat thing and +`tree.AddBranch().AddBranch().AddBranch()` is a high thing. Use `String()` or `Bytes()` on a branch +to render a subtree, or use it on the root to print the whole tree. + +The utility will yield Unicode-friendly trees. The output is predictable and there is no platform-dependent exceptions, so if you have issues with displaying the tree in the console, all platform-related transformations can be done after the tree has been rendered: [an example](https://github.com/xlab/treeprint/issues/2#issuecomment-324944141) for Asian locales. + +## Use cases + +### When you want to render a complex data structure: + +```go +func main() { + // to add a custom root name use `treeprint.NewWithRoot()` instead + tree := treeprint.New() + + // create a new branch in the root + one := tree.AddBranch("one") + + // add some nodes + one.AddNode("subnode1").AddNode("subnode2") + + // create a new sub-branch + one.AddBranch("two"). + AddNode("subnode1").AddNode("subnode2"). // add some nodes + AddBranch("three"). // add a new sub-branch + AddNode("subnode1").AddNode("subnode2") // add some nodes too + + // add one more node that should surround the inner branch + one.AddNode("subnode3") + + // add a new node to the root + tree.AddNode("outernode") + + fmt.Println(tree.String()) +} +``` + +Will give you: + +``` +. +├── one +│   ├── subnode1 +│   ├── subnode2 +│   ├── two +│   │   ├── subnode1 +│   │   ├── subnode2 +│   │   └── three +│   │   ├── subnode1 +│   │   └── subnode2 +│   └── subnode3 +└── outernode +``` + +### Another case, when you have to make a tree where any leaf may have some meta-data (as `tree` is capable of it): + +```go +func main { + // to add a custom root name use `treeprint.NewWithRoot()` instead + tree := treeprint.New() + + tree.AddNode("Dockerfile") + tree.AddNode("Makefile") + tree.AddNode("aws.sh") + tree.AddMetaBranch(" 204", "bin"). + AddNode("dbmaker").AddNode("someserver").AddNode("testtool") + tree.AddMetaBranch(" 374", "deploy"). + AddNode("Makefile").AddNode("bootstrap.sh") + tree.AddMetaNode("122K", "testtool.a") + + fmt.Println(tree.String()) +} +``` + +Output: + +``` +. +├── Dockerfile +├── Makefile +├── aws.sh +├── [ 204] bin +│   ├── dbmaker +│   ├── someserver +│   └── testtool +├── [ 374] deploy +│   ├── Makefile +│   └── bootstrap.sh +└── [122K] testtool.a +``` + +### Iterating over the tree nodes + +```go +tree := New() + +one := tree.AddBranch("one") +one.AddNode("one-subnode1").AddNode("one-subnode2") +one.AddBranch("two").AddNode("two-subnode1").AddNode("two-subnode2"). + AddBranch("three").AddNode("three-subnode1").AddNode("three-subnode2") +tree.AddNode("outernode") + +// if you need to iterate over the whole tree +// call `VisitAll` from your top root node. +tree.VisitAll(func(item *node) { + if len(item.Nodes) > 0 { + // branch nodes + fmt.Println(item.Value) // will output one, two, three + } else { + // leaf nodes + fmt.Println(item.Value) // will output one-*, two-*, three-* and outernode + } +}) + +``` +Yay! So it works. + +## License +MIT diff --git a/tests/e2e/vendor/github.com/xlab/treeprint/helpers.go b/tests/e2e/vendor/github.com/xlab/treeprint/helpers.go new file mode 100644 index 0000000000..a091a5a0f0 --- /dev/null +++ b/tests/e2e/vendor/github.com/xlab/treeprint/helpers.go @@ -0,0 +1,47 @@ +package treeprint + +import ( + "reflect" + "strings" +) + +func isEmpty(v *reflect.Value) bool { + switch v.Kind() { + case reflect.Array, reflect.Map, reflect.Slice, reflect.String: + return v.Len() == 0 + case reflect.Bool: + return !v.Bool() + case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: + return v.Int() == 0 + case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uintptr: + return v.Uint() == 0 + case reflect.Float32, reflect.Float64: + return v.Float() == 0 + case reflect.Interface, reflect.Ptr: + return v.IsNil() + } + return false +} + +func tagSpec(tag string) (name string, omit bool) { + parts := strings.Split(tag, ",") + if len(parts) < 2 { + return tag, false + } + if parts[1] == "omitempty" { + return parts[0], true + } + return parts[0], false +} + +func filterTags(tag reflect.StructTag) string { + tags := strings.Split(string(tag), " ") + filtered := make([]string, 0, len(tags)) + for i := range tags { + if strings.HasPrefix(tags[i], "tree:") { + continue + } + filtered = append(filtered, tags[i]) + } + return strings.Join(filtered, " ") +} diff --git a/tests/e2e/vendor/github.com/xlab/treeprint/struct.go b/tests/e2e/vendor/github.com/xlab/treeprint/struct.go new file mode 100644 index 0000000000..4d5cc82540 --- /dev/null +++ b/tests/e2e/vendor/github.com/xlab/treeprint/struct.go @@ -0,0 +1,322 @@ +package treeprint + +import ( + "fmt" + "reflect" + "strings" +) + +type StructTreeOption int + +const ( + StructNameTree StructTreeOption = iota + StructValueTree + StructTagTree + StructTypeTree + StructTypeSizeTree +) + +func FromStruct(v interface{}, opt ...StructTreeOption) (Tree, error) { + var treeOpt StructTreeOption + if len(opt) > 0 { + treeOpt = opt[0] + } + switch treeOpt { + case StructNameTree: + tree := New() + err := nameTree(tree, v) + return tree, err + case StructValueTree: + tree := New() + err := valueTree(tree, v) + return tree, err + case StructTagTree: + tree := New() + err := tagTree(tree, v) + return tree, err + case StructTypeTree: + tree := New() + err := typeTree(tree, v) + return tree, err + case StructTypeSizeTree: + tree := New() + err := typeSizeTree(tree, v) + return tree, err + default: + err := fmt.Errorf("treeprint: invalid StructTreeOption %v", treeOpt) + return nil, err + } +} + +type FmtFunc func(name string, v interface{}) (string, bool) + +func FromStructWithMeta(v interface{}, fmtFunc FmtFunc) (Tree, error) { + if fmtFunc == nil { + tree := New() + err := nameTree(tree, v) + return tree, err + } + tree := New() + err := metaTree(tree, v, fmtFunc) + return tree, err +} + +func Repr(v interface{}) string { + tree := New() + vType := reflect.TypeOf(v) + vValue := reflect.ValueOf(v) + _, val, isStruct := getValue(vType, &vValue) + if !isStruct { + return fmt.Sprintf("%+v", val.Interface()) + } + err := valueTree(tree, val.Interface()) + if err != nil { + return err.Error() + } + return tree.String() +} + +func nameTree(tree Tree, v interface{}) error { + typ, val, err := checkType(v) + if err != nil { + return err + } + fields := typ.NumField() + for i := 0; i < fields; i++ { + field := typ.Field(i) + fieldValue := val.Field(i) + name, skip, omit := getMeta(field.Name, field.Tag) + if skip || omit && isEmpty(&fieldValue) { + continue + } + typ, val, isStruct := getValue(field.Type, &fieldValue) + if !isStruct { + tree.AddNode(name) + continue + } else if subNum := typ.NumField(); subNum == 0 { + tree.AddNode(name) + continue + } + branch := tree.AddBranch(name) + if err := nameTree(branch, val.Interface()); err != nil { + err := fmt.Errorf("%v on struct branch %s", err, name) + return err + } + } + return nil +} + +func getMeta(fieldName string, tag reflect.StructTag) (name string, skip, omit bool) { + if tagStr := tag.Get("tree"); len(tagStr) > 0 { + name, omit = tagSpec(tagStr) + } + if name == "-" { + return fieldName, true, omit + } + if len(name) == 0 { + name = fieldName + } else if trimmed := strings.TrimSpace(name); len(trimmed) == 0 { + name = fieldName + } + return +} + +func valueTree(tree Tree, v interface{}) error { + typ, val, err := checkType(v) + if err != nil { + return err + } + fields := typ.NumField() + for i := 0; i < fields; i++ { + field := typ.Field(i) + fieldValue := val.Field(i) + name, skip, omit := getMeta(field.Name, field.Tag) + if skip || omit && isEmpty(&fieldValue) { + continue + } + typ, val, isStruct := getValue(field.Type, &fieldValue) + if !isStruct { + tree.AddMetaNode(val.Interface(), name) + continue + } else if subNum := typ.NumField(); subNum == 0 { + tree.AddMetaNode(val.Interface(), name) + continue + } + branch := tree.AddBranch(name) + if err := valueTree(branch, val.Interface()); err != nil { + err := fmt.Errorf("%v on struct branch %s", err, name) + return err + } + } + return nil +} + +func tagTree(tree Tree, v interface{}) error { + typ, val, err := checkType(v) + if err != nil { + return err + } + fields := typ.NumField() + for i := 0; i < fields; i++ { + field := typ.Field(i) + fieldValue := val.Field(i) + name, skip, omit := getMeta(field.Name, field.Tag) + if skip || omit && isEmpty(&fieldValue) { + continue + } + filteredTag := filterTags(field.Tag) + typ, val, isStruct := getValue(field.Type, &fieldValue) + if !isStruct { + tree.AddMetaNode(filteredTag, name) + continue + } else if subNum := typ.NumField(); subNum == 0 { + tree.AddMetaNode(filteredTag, name) + continue + } + branch := tree.AddMetaBranch(filteredTag, name) + if err := tagTree(branch, val.Interface()); err != nil { + err := fmt.Errorf("%v on struct branch %s", err, name) + return err + } + } + return nil +} + +func typeTree(tree Tree, v interface{}) error { + typ, val, err := checkType(v) + if err != nil { + return err + } + fields := typ.NumField() + for i := 0; i < fields; i++ { + field := typ.Field(i) + fieldValue := val.Field(i) + name, skip, omit := getMeta(field.Name, field.Tag) + if skip || omit && isEmpty(&fieldValue) { + continue + } + typ, val, isStruct := getValue(field.Type, &fieldValue) + typename := fmt.Sprintf("%T", val.Interface()) + if !isStruct { + tree.AddMetaNode(typename, name) + continue + } else if subNum := typ.NumField(); subNum == 0 { + tree.AddMetaNode(typename, name) + continue + } + branch := tree.AddMetaBranch(typename, name) + if err := typeTree(branch, val.Interface()); err != nil { + err := fmt.Errorf("%v on struct branch %s", err, name) + return err + } + } + return nil +} + +func typeSizeTree(tree Tree, v interface{}) error { + typ, val, err := checkType(v) + if err != nil { + return err + } + fields := typ.NumField() + for i := 0; i < fields; i++ { + field := typ.Field(i) + fieldValue := val.Field(i) + name, skip, omit := getMeta(field.Name, field.Tag) + if skip || omit && isEmpty(&fieldValue) { + continue + } + typ, val, isStruct := getValue(field.Type, &fieldValue) + typesize := typ.Size() + if !isStruct { + tree.AddMetaNode(typesize, name) + continue + } else if subNum := typ.NumField(); subNum == 0 { + tree.AddMetaNode(typesize, name) + continue + } + branch := tree.AddMetaBranch(typesize, name) + if err := typeSizeTree(branch, val.Interface()); err != nil { + err := fmt.Errorf("%v on struct branch %s", err, name) + return err + } + } + return nil +} + +func metaTree(tree Tree, v interface{}, fmtFunc FmtFunc) error { + typ, val, err := checkType(v) + if err != nil { + return err + } + fields := typ.NumField() + for i := 0; i < fields; i++ { + field := typ.Field(i) + fieldValue := val.Field(i) + name, skip, omit := getMeta(field.Name, field.Tag) + if skip || omit && isEmpty(&fieldValue) { + continue + } + typ, val, isStruct := getValue(field.Type, &fieldValue) + formatted, show := fmtFunc(name, val.Interface()) + if !isStruct { + if show { + tree.AddMetaNode(formatted, name) + continue + } + tree.AddNode(name) + continue + } else if subNum := typ.NumField(); subNum == 0 { + if show { + tree.AddMetaNode(formatted, name) + continue + } + tree.AddNode(name) + continue + } + var branch Tree + if show { + branch = tree.AddMetaBranch(formatted, name) + } else { + branch = tree.AddBranch(name) + } + if err := metaTree(branch, val.Interface(), fmtFunc); err != nil { + err := fmt.Errorf("%v on struct branch %s", err, name) + return err + } + } + return nil +} + +func getValue(typ reflect.Type, val *reflect.Value) (reflect.Type, *reflect.Value, bool) { + switch typ.Kind() { + case reflect.Ptr: + typ = typ.Elem() + if typ.Kind() == reflect.Struct { + elem := val.Elem() + return typ, &elem, true + } + case reflect.Struct: + return typ, val, true + } + return typ, val, false +} + +func checkType(v interface{}) (reflect.Type, *reflect.Value, error) { + typ := reflect.TypeOf(v) + val := reflect.ValueOf(v) + switch typ.Kind() { + case reflect.Ptr: + typ = typ.Elem() + if typ.Kind() != reflect.Struct { + err := fmt.Errorf("treeprint: %T is not a struct we could work with", v) + return nil, nil, err + } + val = val.Elem() + case reflect.Struct: + default: + err := fmt.Errorf("treeprint: %T is not a struct we could work with", v) + return nil, nil, err + } + return typ, &val, nil +} diff --git a/tests/e2e/vendor/github.com/xlab/treeprint/treeprint.go b/tests/e2e/vendor/github.com/xlab/treeprint/treeprint.go new file mode 100644 index 0000000000..fc8204b710 --- /dev/null +++ b/tests/e2e/vendor/github.com/xlab/treeprint/treeprint.go @@ -0,0 +1,294 @@ +// Package treeprint provides a simple ASCII tree composing tool. +package treeprint + +import ( + "bytes" + "fmt" + "io" + "reflect" + "strings" +) + +// Value defines any value +type Value interface{} + +// MetaValue defines any meta value +type MetaValue interface{} + +// NodeVisitor function type for iterating over nodes +type NodeVisitor func(item *Node) + +// Tree represents a tree structure with leaf-nodes and branch-nodes. +type Tree interface { + // AddNode adds a new Node to a branch. + AddNode(v Value) Tree + // AddMetaNode adds a new Node with meta value provided to a branch. + AddMetaNode(meta MetaValue, v Value) Tree + // AddBranch adds a new branch Node (a level deeper). + AddBranch(v Value) Tree + // AddMetaBranch adds a new branch Node (a level deeper) with meta value provided. + AddMetaBranch(meta MetaValue, v Value) Tree + // Branch converts a leaf-Node to a branch-Node, + // applying this on a branch-Node does no effect. + Branch() Tree + // FindByMeta finds a Node whose meta value matches the provided one by reflect.DeepEqual, + // returns nil if not found. + FindByMeta(meta MetaValue) Tree + // FindByValue finds a Node whose value matches the provided one by reflect.DeepEqual, + // returns nil if not found. + FindByValue(value Value) Tree + // returns the last Node of a tree + FindLastNode() Tree + // String renders the tree or subtree as a string. + String() string + // Bytes renders the tree or subtree as byteslice. + Bytes() []byte + + SetValue(value Value) + SetMetaValue(meta MetaValue) + + // VisitAll iterates over the tree, branches and nodes. + // If need to iterate over the whole tree, use the root Node. + // Note this method uses a breadth-first approach. + VisitAll(fn NodeVisitor) +} + +type Node struct { + Root *Node + Meta MetaValue + Value Value + Nodes []*Node +} + +func (n *Node) FindLastNode() Tree { + ns := n.Nodes + if len(ns) == 0 { + return nil + } + return ns[len(ns)-1] +} + +func (n *Node) AddNode(v Value) Tree { + n.Nodes = append(n.Nodes, &Node{ + Root: n, + Value: v, + }) + return n +} + +func (n *Node) AddMetaNode(meta MetaValue, v Value) Tree { + n.Nodes = append(n.Nodes, &Node{ + Root: n, + Meta: meta, + Value: v, + }) + return n +} + +func (n *Node) AddBranch(v Value) Tree { + branch := &Node{ + Root: n, + Value: v, + } + n.Nodes = append(n.Nodes, branch) + return branch +} + +func (n *Node) AddMetaBranch(meta MetaValue, v Value) Tree { + branch := &Node{ + Root: n, + Meta: meta, + Value: v, + } + n.Nodes = append(n.Nodes, branch) + return branch +} + +func (n *Node) Branch() Tree { + n.Root = nil + return n +} + +func (n *Node) FindByMeta(meta MetaValue) Tree { + for _, node := range n.Nodes { + if reflect.DeepEqual(node.Meta, meta) { + return node + } + if v := node.FindByMeta(meta); v != nil { + return v + } + } + return nil +} + +func (n *Node) FindByValue(value Value) Tree { + for _, node := range n.Nodes { + if reflect.DeepEqual(node.Value, value) { + return node + } + if v := node.FindByMeta(value); v != nil { + return v + } + } + return nil +} + +func (n *Node) Bytes() []byte { + buf := new(bytes.Buffer) + level := 0 + var levelsEnded []int + if n.Root == nil { + if n.Meta != nil { + buf.WriteString(fmt.Sprintf("[%v] %v", n.Meta, n.Value)) + } else { + buf.WriteString(fmt.Sprintf("%v", n.Value)) + } + buf.WriteByte('\n') + } else { + edge := EdgeTypeMid + if len(n.Nodes) == 0 { + edge = EdgeTypeEnd + levelsEnded = append(levelsEnded, level) + } + printValues(buf, 0, levelsEnded, edge, n) + } + if len(n.Nodes) > 0 { + printNodes(buf, level, levelsEnded, n.Nodes) + } + return buf.Bytes() +} + +func (n *Node) String() string { + return string(n.Bytes()) +} + +func (n *Node) SetValue(value Value) { + n.Value = value +} + +func (n *Node) SetMetaValue(meta MetaValue) { + n.Meta = meta +} + +func (n *Node) VisitAll(fn NodeVisitor) { + for _, node := range n.Nodes { + fn(node) + + if len(node.Nodes) > 0 { + node.VisitAll(fn) + continue + } + } +} + +func printNodes(wr io.Writer, + level int, levelsEnded []int, nodes []*Node) { + + for i, node := range nodes { + edge := EdgeTypeMid + if i == len(nodes)-1 { + levelsEnded = append(levelsEnded, level) + edge = EdgeTypeEnd + } + printValues(wr, level, levelsEnded, edge, node) + if len(node.Nodes) > 0 { + printNodes(wr, level+1, levelsEnded, node.Nodes) + } + } +} + +func printValues(wr io.Writer, + level int, levelsEnded []int, edge EdgeType, node *Node) { + + for i := 0; i < level; i++ { + if isEnded(levelsEnded, i) { + fmt.Fprint(wr, strings.Repeat(" ", IndentSize+1)) + continue + } + fmt.Fprintf(wr, "%s%s", EdgeTypeLink, strings.Repeat(" ", IndentSize)) + } + + val := renderValue(level, node) + meta := node.Meta + + if meta != nil { + fmt.Fprintf(wr, "%s [%v] %v\n", edge, meta, val) + return + } + fmt.Fprintf(wr, "%s %v\n", edge, val) +} + +func isEnded(levelsEnded []int, level int) bool { + for _, l := range levelsEnded { + if l == level { + return true + } + } + return false +} + +func renderValue(level int, node *Node) Value { + lines := strings.Split(fmt.Sprintf("%v", node.Value), "\n") + + // If value does not contain multiple lines, return itself. + if len(lines) < 2 { + return node.Value + } + + // If value contains multiple lines, + // generate a padding and prefix each line with it. + pad := padding(level, node) + + for i := 1; i < len(lines); i++ { + lines[i] = fmt.Sprintf("%s%s", pad, lines[i]) + } + + return strings.Join(lines, "\n") +} + +// padding returns a padding for the multiline values with correctly placed link edges. +// It is generated by traversing the tree upwards (from leaf to the root of the tree) +// and, on each level, checking if the Node the last one of its siblings. +// If a Node is the last one, the padding on that level should be empty (there's nothing to link to below it). +// If a Node is not the last one, the padding on that level should be the link edge so the sibling below is correctly connected. +func padding(level int, node *Node) string { + links := make([]string, level+1) + + for node.Root != nil { + if isLast(node) { + links[level] = strings.Repeat(" ", IndentSize+1) + } else { + links[level] = fmt.Sprintf("%s%s", EdgeTypeLink, strings.Repeat(" ", IndentSize)) + } + level-- + node = node.Root + } + + return strings.Join(links, "") +} + +// isLast checks if the Node is the last one in the slice of its parent children +func isLast(n *Node) bool { + return n == n.Root.FindLastNode() +} + +type EdgeType string + +var ( + EdgeTypeLink EdgeType = "│" + EdgeTypeMid EdgeType = "├──" + EdgeTypeEnd EdgeType = "└──" +) + +// IndentSize is the number of spaces per tree level. +var IndentSize = 3 + +// New Generates new tree +func New() Tree { + return &Node{Value: "."} +} + +// NewWithRoot Generates new tree with the given root value +func NewWithRoot(root Value) Tree { + return &Node{Value: root} +} diff --git a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go index f7338b7e52..a7d4b2a815 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go +++ b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go @@ -194,6 +194,9 @@ func WithServerName(server string) Option { // WithMetricAttributesFn returns an Option to set a function that maps an HTTP request to a slice of attribute.KeyValue. // These attributes will be included in metrics for every request. +// +// Deprecated: WithMetricAttributesFn is deprecated and will be removed in a +// future release. Use [Labeler] instead. func WithMetricAttributesFn(metricAttributesFn func(r *http.Request) []attribute.KeyValue) Option { return optionFunc(func(c *config) { c.MetricAttributesFn = metricAttributesFn diff --git a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go index 1ecd4be2dd..204588b849 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go +++ b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go @@ -35,10 +35,6 @@ type middleware struct { semconv semconv.HTTPServer } -func defaultHandlerFormatter(operation string, _ *http.Request) string { - return operation -} - // NewHandler wraps the passed handler in a span named after the operation and // enriches it with metrics. func NewHandler(handler http.Handler, operation string, opts ...Option) http.Handler { @@ -55,12 +51,17 @@ func NewMiddleware(operation string, opts ...Option) func(http.Handler) http.Han defaultOpts := []Option{ WithSpanOptions(trace.WithSpanKind(trace.SpanKindServer)), - WithSpanNameFormatter(defaultHandlerFormatter), } c := newConfig(append(defaultOpts, opts...)...) h.configure(c) + if h.spanNameFormatter == nil { + h.spanNameFormatter = func(_ string, r *http.Request) string { + return h.semconv.SpanName(r) + } + } + return func(next http.Handler) http.Handler { return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) { h.serveHTTP(w, r, next) @@ -138,7 +139,13 @@ func (h *middleware) serveHTTP(w http.ResponseWriter, r *http.Request, next http // ReadCloser fulfills a certain interface and it is indeed nil or NoBody. bw := request.NewBodyWrapper(r.Body, readRecordFunc) if r.Body != nil && r.Body != http.NoBody { + origReq := r + prevBody := r.Body r.Body = bw + + // Restore the original body after the request is processed to avoid issues + // with extra wrapper since `http/server.go` later checks type of `r.Body`. + defer func() { origReq.Body = prevBody }() } writeRecordFunc := func(int64) {} @@ -184,30 +191,26 @@ func (h *middleware) serveHTTP(w http.ResponseWriter, r *http.Request, next http statusCode := rww.StatusCode() bytesWritten := rww.BytesWritten() span.SetStatus(h.semconv.Status(statusCode)) + bytesRead := bw.BytesRead() span.SetAttributes(h.semconv.ResponseTraceAttrs(semconv.ResponseTelemetry{ StatusCode: statusCode, - ReadBytes: bw.BytesRead(), + ReadBytes: bytesRead, ReadError: bw.Error(), WriteBytes: bytesWritten, WriteError: rww.Error(), })...) - // Use floating point division here for higher precision (instead of Millisecond method). - elapsedTime := float64(time.Since(requestStartTime)) / float64(time.Millisecond) - - metricAttributes := semconv.MetricAttributes{ - Req: r, - StatusCode: statusCode, - AdditionalAttributes: append(labeler.Get(), h.metricAttributesFromRequest(r)...), - } - h.semconv.RecordMetrics(ctx, semconv.ServerMetricData{ - ServerName: h.server, - ResponseSize: bytesWritten, - MetricAttributes: metricAttributes, + ServerName: h.server, + ResponseSize: bytesWritten, + MetricAttributes: semconv.MetricAttributes{ + Req: r, + StatusCode: statusCode, + AdditionalAttributes: append(labeler.Get(), h.metricAttributesFromRequest(r)...), + }, MetricData: semconv.MetricData{ - RequestSize: bw.BytesRead(), - ElapsedTime: elapsedTime, + RequestSize: bytesRead, + RequestDuration: time.Since(requestStartTime), }, }) } diff --git a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go index ca2e4c14c7..f29f9b7c96 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go +++ b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go @@ -61,7 +61,7 @@ func (w *RespWriterWrapper) Write(p []byte) (int, error) { // WriteHeader persists initial statusCode for span attribution. // All calls to WriteHeader will be propagated to the underlying ResponseWriter -// and will persist the statusCode from the first call. +// and will persist the statusCode from the first call (except for informational response status codes). // Blocking consecutive calls to WriteHeader alters expected behavior and will // remove warning logs from net/http where developers will notice incorrect handler implementations. func (w *RespWriterWrapper) WriteHeader(statusCode int) { @@ -77,6 +77,13 @@ func (w *RespWriterWrapper) WriteHeader(statusCode int) { // parent method. func (w *RespWriterWrapper) writeHeader(statusCode int) { if !w.wroteHeader { + // Ignore informational response status codes. + // Based on https://github.com/golang/go/blob/go1.24.1/src/net/http/server.go#L1216 + if statusCode >= 100 && statusCode <= 199 && statusCode != http.StatusSwitchingProtocols { + w.ResponseWriter.WriteHeader(statusCode) + return + } + w.wroteHeader = true w.statusCode = statusCode } diff --git a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/client.go b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/client.go index 29d6f508c1..0241b08e85 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/client.go +++ b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/client.go @@ -12,6 +12,7 @@ import ( "context" "fmt" "net/http" + "reflect" "slices" "strconv" "strings" @@ -19,11 +20,11 @@ import ( "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/codes" "go.opentelemetry.io/otel/metric" - "go.opentelemetry.io/otel/semconv/v1.39.0" - "go.opentelemetry.io/otel/semconv/v1.39.0/httpconv" + "go.opentelemetry.io/otel/semconv/v1.41.0" + "go.opentelemetry.io/otel/semconv/v1.41.0/httpconv" ) -type HTTPClient struct{ +type HTTPClient struct { requestBodySize httpconv.ClientRequestBodySize requestDuration httpconv.ClientRequestDuration } @@ -57,14 +58,14 @@ func (n HTTPClient) Status(code int) (codes.Code, string) { // RequestTraceAttrs returns trace attributes for an HTTP request made by a client. func (n HTTPClient) RequestTraceAttrs(req *http.Request) []attribute.KeyValue { /* - below attributes are returned: - - http.request.method - - http.request.method.original - - url.full - - server.address - - server.port - - network.protocol.name - - network.protocol.version + below attributes are returned: + - http.request.method + - http.request.method.original + - url.full + - server.address + - server.port + - network.protocol.name + - network.protocol.version */ numOfAttributes := 3 // URL, server address, proto, and method. @@ -139,9 +140,9 @@ func (n HTTPClient) RequestTraceAttrs(req *http.Request) []attribute.KeyValue { // ResponseTraceAttrs returns trace attributes for an HTTP response made by a client. func (n HTTPClient) ResponseTraceAttrs(resp *http.Response) []attribute.KeyValue { /* - below attributes are returned: - - http.response.status_code - - error.type + below attributes are returned: + - http.response.status_code + - error.type */ var count int if resp.StatusCode > 0 { @@ -166,7 +167,7 @@ func (n HTTPClient) ResponseTraceAttrs(resp *http.Response) []attribute.KeyValue func (n HTTPClient) method(method string) (attribute.KeyValue, attribute.KeyValue) { if method == "" { - return semconv.HTTPRequestMethodGet, attribute.KeyValue{} + return semconv.HTTPRequestMethodOther, attribute.KeyValue{} } if attr, ok := methodLookup[method]; ok { return attr, attribute.KeyValue{} @@ -176,7 +177,7 @@ func (n HTTPClient) method(method string) (attribute.KeyValue, attribute.KeyValu if attr, ok := methodLookup[strings.ToUpper(method)]; ok { return attr, orig } - return semconv.HTTPRequestMethodGet, orig + return semconv.HTTPRequestMethodOther, orig } func (n HTTPClient) MetricAttributes(req *http.Request, statusCode int, additionalAttributes []attribute.KeyValue) []attribute.KeyValue { @@ -247,22 +248,62 @@ func (o MetricOpts) AddOptions() metric.AddOption { return o.addOptions } -func (n HTTPClient) MetricOptions(ma MetricAttributes) map[string]MetricOpts { - opts := map[string]MetricOpts{} - +func (n HTTPClient) MetricOptions(ma MetricAttributes) MetricOpts { attributes := n.MetricAttributes(ma.Req, ma.StatusCode, ma.AdditionalAttributes) + if ma.StatusCode == 0 && ma.Err != nil { + attributes = append(attributes, n.ErrorType(ma.Err)) + } set := metric.WithAttributeSet(attribute.NewSet(attributes...)) - opts["new"] = MetricOpts{ + + return MetricOpts{ measurement: set, addOptions: set, } +} - return opts +// ErrorType returns an error.type attribute for the given error. The otelhttp +// Transport calls the underlying RoundTripper directly, so transport failures +// arrive as *net.OpError (connection refused, timeout, etc.) rather than +// *url.Error (which http.Client.Do adds above the Transport layer). This +// function intentionally does not unwrap further: reporting a single concrete +// type per failure keeps attribute cardinality bounded, as required by the +// OTel spec (error.type SHOULD have low cardinality). Callers that need +// finer-grained error distinctions should inspect the error themselves. +func (n HTTPClient) ErrorType(err error) attribute.KeyValue { + t := reflect.TypeOf(err) + if t == nil { + return semconv.ErrorTypeOther + } + if t.Kind() == reflect.Ptr { + t = t.Elem() + } + var value string + if t.PkgPath() == "" || t.Name() == "" { + // t.PkgPath() == "" covers builtin and unnamed types. + // t.Name() == "" covers anonymous struct types that implement error, + // which are uncommon but possible. Fall back to t.String() for both. + value = t.String() + } else { + value = fmt.Sprintf("%s.%s", t.PkgPath(), t.Name()) + } + + if value == "" { + return semconv.ErrorTypeOther + } + + return semconv.ErrorTypeKey.String(value) } -func (n HTTPClient) RecordMetrics(ctx context.Context, md MetricData, opts map[string]MetricOpts) { - n.requestBodySize.Inst().Record(ctx, md.RequestSize, opts["new"].MeasurementOption()) - n.requestDuration.Inst().Record(ctx, md.ElapsedTime/1000, opts["new"].MeasurementOption()) +func (n HTTPClient) RecordMetrics(ctx context.Context, md MetricData, opts MetricOpts) { + recordOpts := metricRecordOptionPool.Get().(*[]metric.RecordOption) + defer func() { + *recordOpts = (*recordOpts)[:0] + metricRecordOptionPool.Put(recordOpts) + }() + *recordOpts = append(*recordOpts, opts.MeasurementOption()) + + n.requestBodySize.Inst().Record(ctx, md.RequestSize, *recordOpts...) + n.requestDuration.Inst().Record(ctx, durationToSeconds(md.RequestDuration), *recordOpts...) } // TraceAttributes returns attributes for httptrace. diff --git a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/server.go b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/server.go index e0e9ebc05d..8e0430863d 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/server.go +++ b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/server.go @@ -15,12 +15,13 @@ import ( "slices" "strings" "sync" + "time" "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/codes" "go.opentelemetry.io/otel/metric" - "go.opentelemetry.io/otel/semconv/v1.39.0" - "go.opentelemetry.io/otel/semconv/v1.39.0/httpconv" + "go.opentelemetry.io/otel/semconv/v1.41.0" + "go.opentelemetry.io/otel/semconv/v1.41.0/httpconv" ) type RequestTraceAttrsOpts struct { @@ -36,7 +37,7 @@ type ResponseTelemetry struct { WriteError error } -type HTTPServer struct{ +type HTTPServer struct { requestBodySizeHistogram httpconv.ServerRequestBodySize responseBodySizeHistogram httpconv.ServerResponseBodySize requestDurationHistogram httpconv.ServerRequestDuration @@ -242,28 +243,19 @@ type MetricAttributes struct { StatusCode int Route string AdditionalAttributes []attribute.KeyValue + Err error } type MetricData struct { - RequestSize int64 - - // The request duration, in milliseconds - ElapsedTime float64 + RequestSize int64 + RequestDuration time.Duration } -var ( - metricAddOptionPool = &sync.Pool{ - New: func() any { - return &[]metric.AddOption{} - }, - } - - metricRecordOptionPool = &sync.Pool{ - New: func() any { - return &[]metric.RecordOption{} - }, - } -) +var metricRecordOptionPool = &sync.Pool{ + New: func() any { + return &[]metric.RecordOption{} + }, +} func (n HTTPServer) RecordMetrics(ctx context.Context, md ServerMetricData) { attributes := n.MetricAttributes(md.ServerName, md.Req, md.StatusCode, md.Route, md.AdditionalAttributes) @@ -272,14 +264,32 @@ func (n HTTPServer) RecordMetrics(ctx context.Context, md ServerMetricData) { *recordOpts = append(*recordOpts, o) n.requestBodySizeHistogram.Inst().Record(ctx, md.RequestSize, *recordOpts...) n.responseBodySizeHistogram.Inst().Record(ctx, md.ResponseSize, *recordOpts...) - n.requestDurationHistogram.Inst().Record(ctx, md.ElapsedTime/1000.0, o) + n.requestDurationHistogram.Inst().Record(ctx, durationToSeconds(md.RequestDuration), o) *recordOpts = (*recordOpts)[:0] metricRecordOptionPool.Put(recordOpts) } +// SpanName returns the span name for an HTTP request following the +// OpenTelemetry HTTP semantic conventions. +// It returns "{method} {route}" when the request has a pattern, +// or just "{method}" when no route is available. +// Non-standard HTTP methods are replaced by "HTTP". +func (n HTTPServer) SpanName(r *http.Request) string { + method := strings.ToUpper(r.Method) + if _, ok := methodLookup[method]; !ok { + method = "HTTP" + } + + route := httpRoute(r.Pattern) + if route != "" { + return method + " " + route + } + return method +} + func (n HTTPServer) method(method string) (attribute.KeyValue, attribute.KeyValue) { if method == "" { - return semconv.HTTPRequestMethodGet, attribute.KeyValue{} + return semconv.HTTPRequestMethodOther, attribute.KeyValue{} } if attr, ok := methodLookup[method]; ok { return attr, attribute.KeyValue{} @@ -289,7 +299,7 @@ func (n HTTPServer) method(method string) (attribute.KeyValue, attribute.KeyValu if attr, ok := methodLookup[strings.ToUpper(method)]; ok { return attr, orig } - return semconv.HTTPRequestMethodGet, orig + return semconv.HTTPRequestMethodOther, orig } func (n HTTPServer) scheme(https bool) attribute.KeyValue { //nolint:revive // ignore linter @@ -371,10 +381,12 @@ func (n HTTPServer) MetricAttributes(server string, req *http.Request, statusCod if statusCode > 0 { num++ } - + if route == "" && req.Pattern != "" { + route = httpRoute(req.Pattern) + } if route != "" { - num++ - } + num++ + } attributes := slices.Grow(additionalAttributes, num) attributes = append(attributes, @@ -397,7 +409,7 @@ func (n HTTPServer) MetricAttributes(server string, req *http.Request, statusCod } if route != "" { - attributes = append(attributes, semconv.HTTPRoute(route)) - } + attributes = append(attributes, semconv.HTTPRoute(route)) + } return attributes } diff --git a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go index 131fda489b..d6842ed2ab 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go +++ b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go @@ -11,10 +11,11 @@ import ( "net/http" "strconv" "strings" + "time" "go.opentelemetry.io/otel" "go.opentelemetry.io/otel/attribute" - semconvNew "go.opentelemetry.io/otel/semconv/v1.39.0" + semconvNew "go.opentelemetry.io/otel/semconv/v1.41.0" ) // SplitHostPort splits a network address hostport of the form "host", @@ -125,3 +126,8 @@ func standardizeHTTPMethod(method string) string { } return method } + +func durationToSeconds(d time.Duration) float64 { + // Use floating point division here for higher precision (instead of Seconds method). + return float64(d) / float64(time.Second) +} diff --git a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go index 59b6c5498d..b15895cee2 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go +++ b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go @@ -5,7 +5,6 @@ package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http import ( "context" - "fmt" "io" "net/http" "net/http/httptrace" @@ -16,7 +15,7 @@ import ( "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/codes" "go.opentelemetry.io/otel/propagation" - otelsemconv "go.opentelemetry.io/otel/semconv/v1.39.0" + otelsemconv "go.opentelemetry.io/otel/semconv/v1.41.0" "go.opentelemetry.io/otel/trace" "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request" @@ -85,8 +84,6 @@ func defaultTransportFormatter(_ string, r *http.Request) string { // RoundTrip creates a Span and propagates its context via the provided request's headers // before handing the request to the configured base RoundTripper. The created span will // end when the response body is closed or when a read from the body returns io.EOF. -// If GetBody returns an error, the error is reported via otel.Handle and the request -// continues with the original Body. func (t *Transport) RoundTrip(r *http.Request) (*http.Response, error) { requestStartTime := time.Now() for _, f := range t.filters { @@ -106,9 +103,7 @@ func (t *Transport) RoundTrip(r *http.Request) (*http.Response, error) { } } - opts := append([]trace.SpanStartOption{}, t.spanStartOptions...) // start with the configured options - - ctx, span := tracer.Start(r.Context(), t.spanNameFormatter("", r), opts...) + ctx, span := tracer.Start(r.Context(), t.spanNameFormatter("", r), t.spanStartOptions...) if t.clientTrace != nil { ctx = httptrace.WithClientTrace(ctx, t.clientTrace(ctx)) @@ -121,23 +116,26 @@ func (t *Transport) RoundTrip(r *http.Request) (*http.Response, error) { r = r.Clone(ctx) // According to RoundTripper spec, we shouldn't modify the origin request. - // GetBody is preferred over direct access to Body if the function is set. - // If the resulting body is nil or is NoBody, we don't want to mutate the body as it - // will affect the identity of it in an unforeseeable way because we assert - // ReadCloser fulfills a certain interface and it is indeed nil or NoBody. - body := r.Body - if r.GetBody != nil { - b, err := r.GetBody() - if err != nil { - otel.Handle(fmt.Errorf("http.Request GetBody returned an error: %w", err)) - } else { - body = b + var lastBW *request.BodyWrapper // Records the last body wrapper. Can be nil. + maybeWrapBody := func(body io.ReadCloser) io.ReadCloser { + if body == nil || body == http.NoBody { + return body } + bw := request.NewBodyWrapper(body, func(int64) {}) + lastBW = bw + return bw } - - bw := request.NewBodyWrapper(body, func(int64) {}) - if body != nil && body != http.NoBody { - r.Body = bw + r.Body = maybeWrapBody(r.Body) + if r.GetBody != nil { + originalGetBody := r.GetBody + r.GetBody = func() (io.ReadCloser, error) { + b, err := originalGetBody() + if err != nil { + lastBW = nil // The underlying transport will fail to make a retry request, hence, record no data. + return nil, err + } + return maybeWrapBody(b), nil + } } span.SetAttributes(t.semconv.RequestTraceAttrs(r)...) @@ -145,35 +143,28 @@ func (t *Transport) RoundTrip(r *http.Request) (*http.Response, error) { res, err := t.rt.RoundTrip(r) - // Defer metrics recording function to record the metrics on error or no error. - defer func() { - metricAttributes := semconv.MetricAttributes{ + // Record the metrics on error or no error. + statusCode := 0 + if err == nil { + statusCode = res.StatusCode + } + var requestSize int64 + if lastBW != nil { + requestSize = lastBW.BytesRead() + } + t.semconv.RecordMetrics( + ctx, + semconv.MetricData{ + RequestSize: requestSize, + RequestDuration: time.Since(requestStartTime), + }, + t.semconv.MetricOptions(semconv.MetricAttributes{ Req: r, + StatusCode: statusCode, + Err: err, AdditionalAttributes: append(labeler.Get(), t.metricAttributesFromRequest(r)...), - } - - if err == nil { - metricAttributes.StatusCode = res.StatusCode - } - - metricOpts := t.semconv.MetricOptions(metricAttributes) - - metricData := semconv.MetricData{ - RequestSize: bw.BytesRead(), - } - - if err == nil { - readRecordFunc := func(int64) {} - res.Body = newWrappedBody(span, readRecordFunc, res.Body) - } - - // Use floating point division here for higher precision (instead of Millisecond method). - elapsedTime := float64(time.Since(requestStartTime)) / float64(time.Millisecond) - - metricData.ElapsedTime = elapsedTime - - t.semconv.RecordMetrics(ctx, metricData, metricOpts) - }() + }), + ) if err != nil { span.SetAttributes(otelsemconv.ErrorType(err)) @@ -183,6 +174,8 @@ func (t *Transport) RoundTrip(r *http.Request) (*http.Response, error) { return res, err } + readRecordFunc := func(int64) {} + res.Body = newWrappedBody(span, readRecordFunc, res.Body) // traces span.SetAttributes(t.semconv.ResponseTraceAttrs(res)...) span.SetStatus(t.semconv.Status(res.StatusCode)) diff --git a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go index d0107952e1..2feb885000 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go +++ b/tests/e2e/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go @@ -4,4 +4,4 @@ package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" // Version is the current release version of the otelhttp instrumentation. -const Version = "0.65.0" +const Version = "0.69.0" diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/.golangci.yml b/tests/e2e/vendor/go.opentelemetry.io/otel/.golangci.yml index d12c8920af..645c7e6af1 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/.golangci.yml +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/.golangci.yml @@ -17,6 +17,7 @@ linters: - ineffassign - misspell - modernize + - noctx - perfsprint - revive - staticcheck @@ -88,6 +89,16 @@ linters: deny: - pkg: go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal desc: Do not use cross-module internal packages. + semconv: + list-mode: lax + files: + - "!**/semconv/**" + - "!**/exporters/zipkin/**" + deny: + - pkg: go.opentelemetry.io/otel/semconv + desc: "Use go.opentelemetry.io/otel/semconv/v1.41.0 instead. If a newer semconv version has been released, update the depguard rule." + allow: + - go.opentelemetry.io/otel/semconv/v1.41.0 gocritic: disabled-checks: - appendAssign @@ -123,13 +134,16 @@ linters: strconcat: true revive: confidence: 0.01 + enable-all-rules: false + enable-default-rules: true + max-open-files: 2048 rules: - name: blank-imports - name: bool-literal-in-expr - name: constant-logical-expr - name: context-as-argument arguments: - - allowTypesBefore: '*testing.T' + - allow-types-before: '*testing.T' disabled: true - name: context-keys-type - name: deep-exit @@ -141,7 +155,7 @@ linters: - name: duplicated-imports - name: early-return arguments: - - preserveScope + - preserve-scope - name: empty-block - name: empty-lines - name: error-naming @@ -150,7 +164,7 @@ linters: - name: errorf - name: exported arguments: - - sayRepetitiveInsteadOfStutters + - say-repetitive-instead-of-stutters - name: flag-parameter - name: identical-branches - name: if-return @@ -158,11 +172,12 @@ linters: - name: increment-decrement - name: indent-error-flow arguments: - - preserveScope + - preserve-scope - name: package-comments - name: range - name: range-val-in-closure - name: range-val-address + - name: receiver-naming - name: redefines-builtin-id - name: string-format arguments: @@ -172,7 +187,7 @@ linters: - name: struct-tag - name: superfluous-else arguments: - - preserveScope + - preserve-scope - name: time-equal - name: unconditional-recursion - name: unexported-return diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/AGENTS.md b/tests/e2e/vendor/go.opentelemetry.io/otel/AGENTS.md new file mode 100644 index 0000000000..26c0fc4ddb --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/AGENTS.md @@ -0,0 +1,109 @@ +# Agent Guide for opentelemetry-go + +This file contains active, task-oriented instructions for autonomous and semi-autonomous coding agents working in this repository. + +Before starting any task, read `.github/copilot-instructions.md`, `CONTRIBUTING.md`, and this file. +Treat `.github/copilot-instructions.md` as global passive guidance for every task, including docs-only and review-only work. + +## Core expectations + +- Preserve OpenTelemetry specification compliance, API stability, and idiomatic Go. +- Prefer minimal, surgical changes over broad refactors or speculative cleanup. +- Read the package you are editing and match its existing naming, option types, error handling, comments, tests, and concurrency patterns. +- Keep public APIs backward compatible unless the task explicitly requires a breaking change. +- Keep telemetry resilient and loosely coupled. Do not introduce behavior that can unexpectedly interfere with host applications. +- Inspect boundaries carefully: input validation, resource limits, cancellation, shutdown, error propagation, concurrency, and memory growth. +- Prefer fail-safe behavior and explicit invariants over implicit assumptions. +- Keep dependencies minimal and justified. +- Preserve host-application safety: telemetry should not panic, block indefinitely, or amplify attacker-controlled input. +- Be conservative on hot paths. Avoid unnecessary allocations, reflection, interface churn, blocking, global state, and high-cardinality telemetry. +- Write comments only for intent, invariants, and non-obvious constraints. Do not add comments that restate the code. + +## Default workflow + +For new features and behavior changes, use this order unless the task explicitly says otherwise: + +1. Read the relevant package, its tests, and any package docs or `README.md`. +2. Add or update a failing unit test that captures the required behavior or regression. +3. Implement the smallest change that makes the test pass. +4. Refactor only after the behavior is locked in, and only if the refactor keeps the diff focused. +5. If the changed code is on a hot path or performance-sensitive, inspect existing benchmarks and run them. Add a benchmark if coverage is missing. +6. Update documentation artifacts as needed while the context is fresh. Follow the documentation and changelog conventions below for the specific updates required. +7. Run `make precommit` each time before considering the work complete. + +For docs-only, test-only, or review-only tasks, still start with the required repository guidance above, then skip the workflow steps that do not apply while keeping the same discipline around scope, verification, and repository conventions. + +## Verification + +- Use `make` as the canonical repository verification command. The default target is `precommit`. +- `make precommit` is the expected final verification step for linting, generation, README checks, module checks, and tests. +- During iteration, targeted commands are fine for fast feedback, but do not stop there if the task changes code. +- If you touch performance-sensitive code, run focused benchmarks and compare the results using `benchstat` in addition to `make`. + +## Documentation and changelog + +- Non-internal, non-test packages should have Go doc comments, usually in `doc.go`. +- Non-internal, non-test, non-documentation packages should also have a `README.md` with at least a title and a `pkg.go.dev` badge. +- Prefer examples over long code snippets in GoDoc when practical. +- Keep docs aligned with actual behavior. Do not leave stale comments, stale examples, or stale package documentation behind. +- For user-visible changes, update `CHANGELOG.md` under the appropriate `Added`, `Changed`, `Deprecated`, `Fixed`, or `Removed` section within `## [Unreleased]`. + +## Repository habits + +- Prefer focused diffs. Avoid drive-by cleanup. +- Follow existing option patterns and exported API conventions instead of inventing new abstractions. +- Generated files are checked in. If your change affects generation, keep generated output up to date. +- Prefer fast local search tools such as `rg` when exploring the repository. +- When changing behavior, make the invariants explicit in tests. + +## Personas + +### Feature Agent + +Use this persona for new behavior, new API surface, or spec-driven feature work. + +- Start with a failing unit test. +- Confirm the expected behavior against the spec, existing package behavior, and public API compatibility. +- Implement the smallest viable change. +- Update GoDoc, examples, `README.md`, and `CHANGELOG.md` when the change is user-visible. +- If the feature touches a hot path, check benchmarks and add one if the coverage is missing. + +### Refactoring Agent + +Use this persona when improving structure without intentionally changing behavior. + +- Treat behavior preservation as the default contract. +- Add or tighten tests before moving code if current behavior is not already pinned down. +- Avoid broad rewrites, clever abstractions, or package-wide cleanup unless explicitly requested. +- If a refactor touches a hot path, benchmark before and after. +- Keep API shape, semantics, concurrency guarantees, and failure modes unchanged unless the task says otherwise. + +### Test Agent + +Use this persona when adding missing coverage, reproducing bugs, or hardening regressions. + +- Reproduce the bug or missing behavior with the smallest failing test you can. +- Prefer testing public behavior and externally visible invariants. +- Add targeted regression tests before changing production code. +- Only change production code when it is required to make the tested behavior correct or testable. +- Keep tests deterministic, readable, and aligned with package patterns. + +### Performance Agent + +Use this persona for hot-path work, allocation reduction, or throughput and latency improvements. + +- Benchmark first to establish a baseline. +- Prefer changes that reduce allocations, copying, interface churn, and unnecessary synchronization. +- Do not trade away correctness, spec compliance, or API stability for micro-optimizations. +- Add or update benchmarks when performance-sensitive coverage is missing. +- If you materially change a hot path, capture before-and-after results, preferably with `benchstat`. + +### Review Agent + +Use this persona when asked to review code, patches, or pull requests. + +- Lead with findings, not summaries. +- Order findings by severity and include precise file and line references when available. +- Focus on correctness, spec compliance, API compatibility, concurrency safety, resilience, performance regressions, missing tests, missing benchmarks, documentation gaps, and changelog gaps. +- Call out when a diff is broader than necessary. +- If you find no issues, say that explicitly and note any residual risks or verification gaps. diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/CHANGELOG.md b/tests/e2e/vendor/go.opentelemetry.io/otel/CHANGELOG.md index f0595b5e5e..6a90451f52 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/CHANGELOG.md +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/CHANGELOG.md @@ -8,6 +8,169 @@ This project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0.htm ## [Unreleased] + + + +## [1.44.0/0.66.0/0.20.0/0.0.17] 2026-05-27 + +### Added + +- Add `ByteSlice` and `ByteSliceValue` functions for new `BYTESLICE` attribute type in `go.opentelemetry.io/otel/attribute`. (#7948) +- Apply attribute value limit to the `KindBytes` attribute type in `go.opentelemetry.io/otel/sdk/log`. (#7990) +- Apply attribute value limit to the `BYTESLICE` attribute type in `go.opentelemetry.io/otel/sdk/trace`. (#7990) +- Support `BYTESLICE` attributes in `go.opentelemetry.io/otel/trace`. (#8153) +- Support `BYTESLICE` attributes in `go.opentelemetry.io/otel/exporters/otlp/otlptrace`. (#8153) +- Support `BYTESLICE` attributes in `go.opentelemetry.io/otel/exporters/otlp/otlplog`. (#8153) +- Support `BYTESLICE` attributes in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric`. (#8153) +- Support `BYTESLICE` attributes in `go.opentelemetry.io/otel/exporters/zipkin`. (#8153) +- Add `String` method for `Value` type in `go.opentelemetry.io/otel/attribute`. (#8142) +- Add `Slice` and `SliceValue` functions for new `SLICE` attribute type in `go.opentelemetry.io/otel/attribute`. (#8166) +- Support `SLICE` attributes in `go.opentelemetry.io/otel/exporters/otlp/otlptrace`. (#8216) +- Support `SLICE` attributes in `go.opentelemetry.io/otel/exporters/otlp/otlplog`. (#8216) +- Support `SLICE` attributes in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric`. (#8216) +- Support `SLICE` attributes in `go.opentelemetry.io/otel/exporters/zipkin`. (#8216) +- Apply `AttributeValueLengthLimit` to `attribute.SLICE` type attribute values in `go.opentelemetry.io/otel/sdk/trace`, recursively truncating contained string values. (#8217) +- Add `Error` field on `Record` type in `go.opentelemetry.io/otel/log/logtest`. (#8148) +- Add `WithMaxRequestSize` option in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`. (#8157) +- Add `WithMaxRequestSize` option in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#8157) +- Add `WithMaxRequestSize` option in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. (#8157) +- Add `WithMaxRequestSize` option in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#8157) +- Add `WithMaxRequestSize` option in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc`. (#8157) +- Add `WithMaxRequestSize` option in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#8157) +- Add `Settable` to `go.opentelemetry.io/otel/metric/x` to allow reusing attribute options. (#8178) +- Add experimental support for splitting metric data across multiple batches in `go.opentelemetry.io/otel/sdk/metric`. + Set `OTEL_GO_X_METRIC_EXPORT_BATCH_SIZE=` to enable for all periodic readers. + See `go.opentelemetry.io/otel/sdk/metric/internal/x` for feature documentation. (#8071) +- Add experimental self-observability metrics in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. + Enable with `OTEL_GO_X_SELF_OBSERVABILITY=true` environment variable. + See `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/x` for feature documentation. (#8192) +- Add experimental self-observability metrics in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. + Enable with `OTEL_GO_X_SELF_OBSERVABILITY=true` environment variable. + See `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/x` for feature documentation. (#8194) +- Add experimental self-observability metrics in `go.opentelemetry.io/otel/exporters/stdout/stdoutlog`. + Enable with `OTEL_GO_X_SELF_OBSERVABILITY=true` environment variable. + See `go.opentelemetry.io/otel/stdout/stdoutlog/internal/x` for feature documentation. (#8263) +- Add `WithDefaultAttributes` to `go.opentelemetry.io/otel/metric/x` to support setting default attributes on instruments. (#8135) +- Add `go.opentelemetry.io/otel/semconv/v1.41.0` package. + The package contains semantic conventions from the `v1.41.0` version of the OpenTelemetry Semantic Conventions. + See the [migration documentation](./semconv/v1.41.0/MIGRATION.md) for information on how to upgrade from `go.opentelemetry.io/otel/semconv/v1.40.0`. (#8324) +- Add Observable variants of instruments to `go.opentelemetry.io/otel/semconv/v1.41.0` package. (#8350) +- Generate explicit histogram bucket boundaries from weaver configuration for HTTP and RPC duration instruments in `go.opentelemetry.io/otel/semconv/v1.41.0`. (#8002) + +### Changed + +- âš ï¸ **Breaking Change:** `go.opentelemetry.io/otel/sdk/metric` now applies a default cardinality limit of 2000 to comply with the Metrics SDK specification recommendation. + New attribute sets are dropped when the cardinality limit is reached. The measurement of these sets are aggregated into a special attribute set containing `attribute.Bool("otel.metric.overflow", true)`. + This can break users who relied on the previous unlimited default. + Set `WithCardinalityLimit(0)` or the deprecated `OTEL_GO_X_CARDINALITY_LIMIT=0` environment variable to preserve unlimited cardinality. + Note that support for `OTEL_GO_X_CARDINALITY_LIMIT` may be removed in a future release. (#8247) +- `ErrorType` in `go.opentelemetry.io/otel/semconv` now unwraps errors created with `fmt.Errorf` when deriving the `error.type` attribute. (#8133) +- `go.opentelemetry.io/otel/sdk/log` now unwraps error chains created with `fmt.Errorf` when deriving the `error.type` attribute from errors on log records. (#8133) +- `Set.MarshalLog` method in `go.opentelemetry.io/otel/attribute` now uses `Value.String` formatting following the [OpenTelemetry AnyValue representation for non-OTLP protocols](https://opentelemetry.io/docs/specs/otel/common/#anyvalue). (#8169) +- Optimize `go.opentelemetry.io/otel/sdk/metric` to return a drop reservoir and short-circuit `Offer` calls to the exemplar reservoir when `exemplar.AlwaysOffFilter` is configured. (#8211) (#8267) +- Optimize `go.opentelemetry.io/otel/sdk/metric` to return a drop reservoir for asynchronous instruments when `exemplar.TraceBasedFilter` is configured. (#8286) + +### Deprecated + +- Deprecate `Value.Emit` method in `go.opentelemetry.io/otel/attribute`. + Use `Value.String` instead. (#8176) + +### Fixed + +- Limit OTLP request size to 64 MiB by default in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`. + The limit applies before compression, oversized requests are treated as non-retryable errors, and the limit can be configured with the new `WithMaxRequestSize` option. (#8157, #8365) +- Limit OTLP request size to 64 MiB by default in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. + The limit applies before compression, oversized requests are treated as non-retryable errors, and the limit can be configured with the new `WithMaxRequestSize` option. (#8157, #8365) +- Limit OTLP request size to 64 MiB by default in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. + The limit applies before compression, oversized requests are treated as non-retryable errors, and the limit can be configured with the new `WithMaxRequestSize` option. (#8157, #8365) +- Limit OTLP request size to 64 MiB by default in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. + The limit applies before compression, oversized requests are treated as non-retryable errors, and the limit can be configured with the new `WithMaxRequestSize` option. (#8157, #8365) +- Limit OTLP request size to 64 MiB by default in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc`. + The limit applies before compression, oversized requests are treated as non-retryable errors, and the limit can be configured with the new `WithMaxRequestSize` option. (#8157, #8365) +- Limit OTLP request size to 64 MiB by default in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. + The limit applies before compression, oversized requests are treated as non-retryable errors, and the limit can be configured with the new `WithMaxRequestSize` option. (#8157, #8365) +- Fix gzipped request body replay on redirect in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#8135) +- Fix gzipped request body replay on redirect in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#8152) +- `go.opentelemetry.io/otel/exporters/prometheus` now uses `Value.String` formatting for label values following the [OpenTelemetry AnyValue representation for non-OTLP protocols](https://opentelemetry.io/docs/specs/otel/common/#anyvalue). (#8170) +- Propagate errors from the exporter when calling `Shutdown` on `BatchSpanProcessor` in `go.opentelemetry.io/otel/sdk/trace`. (#8197) +- Fix stale status code reporting on self-observability metrics in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp` and `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#8226) +- Fix a concurrent `Collect` data race and potential panic in `go.opentelemetry.io/otel/exporters/prometheus` when `WithResourceAsConstantLabels` option is used. (#8227) +- Fix race condition in `FixedSizeReservoir` in `go.opentelemetry.io/otel/sdk/metric/exemplar` by reverting #7447. (#8249) +- Fix `FixedSizeReservoir` in `go.opentelemetry.io/otel/sdk/metric/exemplar` to safely handle zero size. + A capacity check in the constructor initializes the reservoir safely and skips initialization for zero-cap; early returns in `Offer()` and `Collect()` ensure no-op behavior. (#8295) +- Fix counting of spans and logs in self-observability metrics in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`, `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`, `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc`, and `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#8254) +- Drop conflicting scope attributes named `name`, `version`, or `schema_url` from metric labels in `go.opentelemetry.io/otel/exporters/prometheus`, preserving the dedicated `otel_scope_name`, `otel_scope_version`, and `otel_scope_schema_url` labels. (#8264) +- Close schema files opened by `ParseFile` in `go.opentelemetry.io/otel/schema/v1.0` and `go.opentelemetry.io/otel/schema/v1.1`. ([GHSA-995v-fvrw-c78m](https://github.com/open-telemetry/opentelemetry-go/security/advisories/GHSA-995v-fvrw-c78m)) +- Enforce the 8192-byte baggage size limit during extraction/parsing, changing behavior when the limit is exceeded in `go.opentelemetry.io/otel/baggage` and `go.opentelemetry.io/otel/propagation`. (#8222) +- Fix `go.opentelemetry.io/otel/semconv/v1.41.0` to include `Attr*` helper methods for required attributes on observable instruments. (#8361) +- Limit baggage extraction error reporting in `go.opentelemetry.io/otel/propagation` to prevent malformed or oversized baggage headers from flooding logs. ([GHSA-5wrp-cwcj-q835](https://github.com/open-telemetry/opentelemetry-go/security/advisories/GHSA-5wrp-cwcj-q835)) + +## [1.43.0/0.65.0/0.19.0] 2026-04-02 + +### Added + +- Add `IsRandom` and `WithRandom` on `TraceFlags`, and `IsRandom` on `SpanContext` in `go.opentelemetry.io/otel/trace` for [W3C Trace Context Level 2 Random Trace ID Flag](https://www.w3.org/TR/trace-context-2/#random-trace-id-flag) support. (#8012) +- Add service detection with `WithService` in `go.opentelemetry.io/otel/sdk/resource`. (#7642) +- Add `DefaultWithContext` and `EnvironmentWithContext` in `go.opentelemetry.io/otel/sdk/resource` to support plumbing `context.Context` through default and environment detectors. (#8051) +- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`. (#8038) +- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. (#8038) +- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc`. (#8038) +- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#8038) +- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#8038) +- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#8038) +- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/sdk/metric/metricdata/metricdatatest`. (#8038) +- Add support for per-series start time tracking for cumulative metrics in `go.opentelemetry.io/otel/sdk/metric`. + Set `OTEL_GO_X_PER_SERIES_START_TIMESTAMPS=true` to enable. (#8060) +- Add `WithCardinalityLimitSelector` for metric reader for configuring cardinality limits specific to the instrument kind. (#7855) + +### Changed + +- Introduce the `EMPTY` Type in `go.opentelemetry.io/otel/attribute` to reflect that an empty value is now a valid value, with `INVALID` remaining as a deprecated alias of `EMPTY`. (#8038) +- Improve slice handling in `go.opentelemetry.io/otel/attribute` to optimize short slice values with fixed-size fast paths. (#8039) +- Improve performance of span metric recording in `go.opentelemetry.io/otel/sdk/trace` by returning early if self-observability is not enabled. (#8067) +- Improve formatting of metric data diffs in `go.opentelemetry.io/otel/sdk/metric/metricdata/metricdatatest`. (#8073) + +### Deprecated + +- Deprecate `INVALID` in `go.opentelemetry.io/otel/attribute`. Use `EMPTY` instead. (#8038) + +### Fixed + +- Return spec-compliant `TraceIdRatioBased` description. This is a breaking behavioral change, but it is necessary to + make the implementation [spec-compliant](https://opentelemetry.io/docs/specs/otel/trace/sdk/#traceidratiobased). (#8027) +- Fix a race condition in `go.opentelemetry.io/otel/sdk/metric` where the lastvalue aggregation could collect the value 0 even when no zero-value measurements were recorded. (#8056) +- Limit HTTP response body to 4 MiB in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp` to mitigate excessive memory usage caused by a misconfigured or malicious server. + Responses exceeding the limit are treated as non-retryable errors. (#8108) +- Limit HTTP response body to 4 MiB in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` to mitigate excessive memory usage caused by a misconfigured or malicious server. + Responses exceeding the limit are treated as non-retryable errors. (#8108) +- Limit HTTP response body to 4 MiB in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp` to mitigate excessive memory usage caused by a misconfigured or malicious server. + Responses exceeding the limit are treated as non-retryable errors. (#8108) +- `WithHostID` detector in `go.opentelemetry.io/otel/sdk/resource` to use full path for `kenv` command on BSD. (#8113) +- Fix missing `request.GetBody` in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp` to correctly handle HTTP2 GOAWAY frame. (#8096) + +## [1.42.0/0.64.0/0.18.0/0.0.16] 2026-03-06 + +### Added + +- Add `go.opentelemetry.io/otel/semconv/v1.40.0` package. + The package contains semantic conventions from the `v1.40.0` version of the OpenTelemetry Semantic Conventions. + See the [migration documentation](./semconv/v1.40.0/MIGRATION.md) for information on how to upgrade from `go.opentelemetry.io/otel/semconv/v1.39.0`. (#7985) +- Add `Err` and `SetErr` on `Record` in `go.opentelemetry.io/otel/log` to attach an error and set record exception attributes in `go.opentelemetry.io/otel/log/sdk`. (#7924) + +### Changed + +- `TracerProvider.ForceFlush` in `go.opentelemetry.io/otel/sdk/trace` joins errors together and continues iteration through SpanProcessors as opposed to returning the first encountered error without attempting exports on subsequent SpanProcessors. (#7856) + +### Fixed + +- Fix missing `request.GetBody` in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` to correctly handle HTTP2 GOAWAY frame. (#7931) +- Fix semconv v1.39.0 generated metric helpers skipping required attributes when extra attributes were empty. (#7964) +- Preserve W3C TraceFlags bitmask (including the random Trace ID flag) during trace context extraction and injection in `go.opentelemetry.io/otel/propagation`. (#7834) + +### Removed + +- Drop support for [Go 1.24]. (#7984) + ## [1.41.0/0.63.0/0.17.0/0.0.15] 2026-03-02 This release is the last to support [Go 1.24]. @@ -26,9 +189,6 @@ The next release will require at least [Go 1.25]. - Return an error when the endpoint is configured as insecure and with TLS configuration in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#7914) - Return an error when the endpoint is configured as insecure and with TLS configuration in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#7914) - - - ## [1.40.0/0.62.0/0.16.0] 2026-02-02 ### Added @@ -3553,7 +3713,10 @@ It contains api and sdk for trace and meter. - CircleCI build CI manifest files. - CODEOWNERS file to track owners of this project. -[Unreleased]: https://github.com/open-telemetry/opentelemetry-go/compare/v1.41.0...HEAD +[Unreleased]: https://github.com/open-telemetry/opentelemetry-go/compare/v1.44.0...HEAD +[1.44.0/0.66.0/0.20.0/0.0.17]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.44.0 +[1.43.0/0.65.0/0.19.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.43.0 +[1.42.0/0.64.0/0.18.0/0.0.16]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.42.0 [1.41.0/0.63.0/0.17.0/0.0.15]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.41.0 [1.40.0/0.62.0/0.16.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.40.0 [1.39.0/0.61.0/0.15.0/0.0.14]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.39.0 diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/CLAUDE.md b/tests/e2e/vendor/go.opentelemetry.io/otel/CLAUDE.md new file mode 100644 index 0000000000..dd3c4594fc --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/CLAUDE.md @@ -0,0 +1,3 @@ +# Instructions for Claude Code + +@AGENTS.md diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md b/tests/e2e/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md index 38dede9329..3ec17d6832 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md @@ -11,6 +11,12 @@ for a summary description of past meetings. To request edit access, join the meeting or get in touch on [Slack](https://cloud-native.slack.com/archives/C01NPAXACKT). +The meeting is open for all to join. We invite everyone to join our +meeting, regardless of your experience level. Whether you're a +seasoned OpenTelemetry developer, just starting your journey, or +simply curious about the work we do, you're more than welcome to +participate! + ## Development You can view and edit the source code by cloning this repository: @@ -746,8 +752,8 @@ Encapsulate setup in constructor functions, ensuring clear ownership and scope: import ( "errors" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" - "go.opentelemetry.io/otel/semconv/v1.39.0/otelconv" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + "go.opentelemetry.io/otel/semconv/v1.41.0/otelconv" ) type SDKComponent struct { @@ -808,11 +814,11 @@ func (c *Component) initObservability() { #### Performance -When observability is disabled there should be little to no overhead. +When observability is disabled or the instrument is not `Enabled`, there should be little to no overhead. ```go func (e *Exporter) ExportSpans(ctx context.Context, spans []trace.ReadOnlySpan) error { - if e.inst != nil { + if e.inst != nil && e.inst.Enabled(ctx) { attrs := expensiveOperation() e.inst.recordSpanInflight(ctx, int64(len(spans)), attrs...) } @@ -829,7 +835,7 @@ func (e *Exporter) ExportSpans(ctx context.Context, spans []trace.ReadOnlySpan) } func (i *instrumentation) recordSpanInflight(ctx context.Context, count int64, attrs ...attribute.KeyValue) { - if i == nil || i.inflight == nil { + if i == nil || i.inflight == nil || !i.inflight.Enabled(ctx) { return } i.inflight.Add(ctx, count, metric.WithAttributes(attrs...)) @@ -865,8 +871,12 @@ var ( ) func (i *instrumentation) record(ctx context.Context, value int64, baseAttrs ...attribute.KeyValue) { + if !i.counter.Enabled(ctx) { + return + } attrs := attrPool.Get().(*[]attribute.KeyValue) defer func() { + clear(*attrs) // Clear references to strings/etc to let GC collect them. *attrs = (*attrs)[:0] // Reset. attrPool.Put(attrs) }() @@ -877,6 +887,7 @@ func (i *instrumentation) record(ctx context.Context, value int64, baseAttrs ... addOpt := addOptPool.Get().(*[]metric.AddOption) defer func() { + clear(*addOpt) *addOpt = (*addOpt)[:0] addOptPool.Put(addOpt) }() @@ -1007,16 +1018,20 @@ Ensure observability measurements receive the correct context, especially for tr ```go func (e *Exporter) ExportSpans(ctx context.Context, spans []trace.ReadOnlySpan) error { // Use the provided context for observability measurements - e.inst.recordSpanExportStarted(ctx, len(spans)) + if e.inst.Enabled(ctx) { + e.inst.recordSpanExportStarted(ctx, len(spans)) + } err := e.doExport(ctx, spans) - if err != nil { - e.inst.recordSpanExportFailed(ctx, len(spans), err) - } else { - e.inst.recordSpanExportSucceeded(ctx, len(spans)) + if e.inst.Enabled(ctx) { + if err != nil { + e.inst.recordSpanExportFailed(ctx, len(spans), err) + } else { + e.inst.recordSpanExportSucceeded(ctx, len(spans)) + } } - + return err } ``` @@ -1039,7 +1054,7 @@ func (e *Exporter) ExportSpans(ctx context.Context, spans []trace.ReadOnlySpan) All observability metrics should follow the [OpenTelemetry Semantic Conventions for SDK metrics](https://github.com/open-telemetry/semantic-conventions/blob/1cf2476ae5e518225a766990a28a6d5602bd5a30/docs/otel/sdk-metrics.md). -Use the metric semantic conventions convenience package [otelconv](./semconv/v1.39.0/otelconv/metric.go). +Use the metric semantic conventions convenience package [otelconv](./semconv/v1.41.0/otelconv/metric.go). ##### Component Identification @@ -1109,6 +1124,68 @@ func TestObservability(t *testing.T) { Test order should not affect results. Ensure that any global state (e.g. component ID counters) is reset between tests. +### Experimental Features + +To support the development of new features in the specification, we use the following patterns to implement in-development features without adding new public artifacts in stable modules. + +#### Experimental behavior with no API artifacts + +Features that change behavior without changing the API (e.g., exemplar collection, auto-generation of identifiers) are implemented behind a feature gate. +The implementation resides in an `/internal/x` package and is activated through environment variables with the `OTEL_GO_X_` prefix (e.g., `OTEL_GO_X_OBSERVABILITY`). +The feature must be documented in a `README.md` file in the `/internal/x` package. + +#### Experimental methods on SDK-only interfaces + +Features that require new methods on SDK interfaces are defined as a new interface in an experimental module (e.g., `go.opentelemetry.io/otel/sdk/x`). +The SDK uses type assertions (without importing the unstable package) to check if passing types implement these experimental interfaces. +The SDK must not depend on the experimental module. + +#### Experimental structs, functions, or interfaces + +Features that don't need any changes to the existing stable package are implemented in an experimental module (e.g., `go.opentelemetry.io/otel/sdk/x`). + +#### Experimental signals and components + +New telemetry signals (e.g., Logs before stabilization) and components (e.g. bridges) are hosted in new, unstable modules (e.g., `go.opentelemetry.io/otel/log` before 1.0.0). +The package should have the final name it will use once stabilized (i.e. not `/x`), and is released at a v0.x.y version to indicate it is not stable. +Most new components are hosted in [opentelemetry-go-contrib](https://github.com/open-telemetry/opentelemetry-go-contrib). + +#### Experimental options for API or SDK functions + +Experimental Options functions are implemented in an experimental module (e.g., `go.opentelemetry.io/otel/sdk/x`). +The return type of the Option function must embed the option's type (e.g. `metric.InstrumentOption`), and have an `Experimental()` method to prevent the API from panicking when the option is used. +The SDK uses type assertions (without importing the unstable package) to check if passing types implement these experimental interfaces. +The SDK must not depend on the experimental module. + +For example: + +```go +type myOption struct { + // Embed the stable option type. + metric.InstrumentOption + value string +} + +// Experimental prevents the API from panicking when the option is used. +func (o myOption) Experimental() {} + +// The SDK can use type assertions to use this function. +func (o myOption) Value() string { return o.value } + +func WithMyOption(value string) metric.InstrumentOption { + return myOption{value: value} +} +``` + +#### Not Supported + +The following kinds of experimental features are **not currently supported** on stable interfaces: + +- Experimental methods on API interfaces +- Experimental fields for API or SDK exported structs + +In some cases forks or long-lived branches may be used for prototyping these features. + ## Approvers and Maintainers ### Maintainers diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/Makefile b/tests/e2e/vendor/go.opentelemetry.io/otel/Makefile index fc4befb227..de63a5e9bc 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/Makefile +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/Makefile @@ -38,10 +38,14 @@ CROSSLINK = $(TOOLS)/crosslink $(TOOLS)/crosslink: PACKAGE=go.opentelemetry.io/build-tools/crosslink SEMCONVKIT = $(TOOLS)/semconvkit +SEMCONVKIT_FILES := $(sort $(shell find $(TOOLS_MOD_DIR)/semconvkit -type f)) $(TOOLS)/semconvkit: PACKAGE=go.opentelemetry.io/otel/$(TOOLS_MOD_DIR)/semconvkit +$(TOOLS)/semconvkit: $(SEMCONVKIT_FILES) VERIFYREADMES = $(TOOLS)/verifyreadmes +VERIFYREADMES_FILES := $(sort $(shell find $(TOOLS_MOD_DIR)/verifyreadmes -type f)) $(TOOLS)/verifyreadmes: PACKAGE=go.opentelemetry.io/otel/$(TOOLS_MOD_DIR)/verifyreadmes +$(TOOLS)/verifyreadmes: $(VERIFYREADMES_FILES) GOLANGCI_LINT = $(TOOLS)/golangci-lint $(TOOLS)/golangci-lint: PACKAGE=github.com/golangci/golangci-lint/v2/cmd/golangci-lint @@ -185,11 +189,18 @@ test-coverage: $(GOCOVMERGE) .PHONY: benchmark benchmark: $(OTEL_GO_MOD_DIRS:%=benchmark/%) benchmark/%: - @echo "$(GO) test -run=xxxxxMatchNothingxxxxx -bench=. $*..." \ - && cd $* \ - && $(GO) list ./... \ - | grep -v third_party \ - | xargs $(GO) test -run=xxxxxMatchNothingxxxxx -bench=. + cd $* && $(GO) test -run='^$$' -bench=. $(ARGS) ./... + +# sdk/metric is split into two shards to work around CodSpeed limitations. +# See https://github.com/CodSpeedHQ/codspeed-go/issues/56 +BENCHMARK_SHARDS := $(filter-out ./sdk/metric,$(OTEL_GO_MOD_DIRS)) ./sdk/metric/root ./sdk/metric/internal +benchmark/./sdk/metric/root: + cd ./sdk/metric && $(GO) test -run='^$$' -bench=. $(ARGS) . ./exemplar/... +benchmark/./sdk/metric/internal: + cd ./sdk/metric && $(GO) test -run='^$$' -bench=. $(ARGS) ./internal/... + +print-sharded-benchmarks: + @echo $(BENCHMARK_SHARDS) | jq -cR 'split(" ")' .PHONY: golangci-lint golangci-lint-fix golangci-lint-fix: ARGS=--fix diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/README.md b/tests/e2e/vendor/go.opentelemetry.io/otel/README.md index 6b1e170c4b..16a72004c0 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/README.md +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/README.md @@ -55,25 +55,18 @@ Currently, this project supports the following environments. |----------|------------|--------------| | Ubuntu | 1.26 | amd64 | | Ubuntu | 1.25 | amd64 | -| Ubuntu | 1.24 | amd64 | | Ubuntu | 1.26 | 386 | | Ubuntu | 1.25 | 386 | -| Ubuntu | 1.24 | 386 | | Ubuntu | 1.26 | arm64 | | Ubuntu | 1.25 | arm64 | -| Ubuntu | 1.24 | arm64 | | macOS | 1.26 | amd64 | | macOS | 1.25 | amd64 | -| macOS | 1.24 | amd64 | | macOS | 1.26 | arm64 | | macOS | 1.25 | arm64 | -| macOS | 1.24 | arm64 | | Windows | 1.26 | amd64 | | Windows | 1.25 | amd64 | -| Windows | 1.24 | amd64 | | Windows | 1.26 | 386 | | Windows | 1.25 | 386 | -| Windows | 1.24 | 386 | While this project should work for other systems, no compatibility guarantees are made for those systems currently. diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/RELEASING.md b/tests/e2e/vendor/go.opentelemetry.io/otel/RELEASING.md index 861756fd74..6aff7548c9 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/RELEASING.md +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/RELEASING.md @@ -4,7 +4,9 @@ Create a `Version Release` issue to track the release process. -## Semantic Convention Generation +## Semantic Convention Upgrade + +### Semantic Convention Generation New versions of the [OpenTelemetry Semantic Conventions] mean new versions of the `semconv` package need to be generated. The `semconv-generate` make target is used for this. @@ -22,6 +24,43 @@ make semconv-generate # Uses the exported TAG. This should create a new sub-package of [`semconv`](./semconv). Ensure things look correct before submitting a pull request to include the addition. +The `CHANGELOG.md` should also be updated to reflect the new changes: + +```md +- The `go.opentelemetry.io/otel/semconv/` package. The package contains semantic conventions from the `` version of the OpenTelemetry Semantic Conventions. See the [migration documentation](./semconv//MIGRATION.md) for information on how to upgrade from `go.opentelemetry.io/otel/semconv/`. (#PR_NUMBER) +``` + +> **Tip:** Change to the release and prior version to match the changes + +### Update semconv imports + +Once the new semconv module has been generated, update all semconv imports throughout the codebase to reference the new version: + +```go +// Before +semconv "go.opentelemetry.io/otel/semconv/v1.37.0" +"go.opentelemetry.io/otel/semconv/v1.37.0/otelconv" + + +// After +semconv "go.opentelemetry.io/otel/semconv/v1.39.0" +"go.opentelemetry.io/otel/semconv/v1.39.0/otelconv" +``` + +Once complete, run `make` to check for any compilation or test failures. + +#### Handling attribute changes + +Some semconv releases might add new attributes or impact attributes that are currently being used. Changes could stem from a simple renaming, to more complex changes like merging attributes and property values being changed. + +One should update the code to the new attributes that supersede the impacted ones, hence sticking to the semantic conventions. However, legacy attributes might still be emitted in accordance to the `OTEL_SEMCONV_STABILITY_OPT_IN` environment variable. + +For an example on how such migration might have to be tracked and performed, see issue [#7806](https://github.com/open-telemetry/opentelemetry-go/issues/7806). + +### Go contrib linter update + +Update [.golangci.yml](https://github.com/open-telemetry/opentelemetry-go-contrib/blob/main/.golangci.yml) in [opentelemetry-go-contrib](https://github.com/open-telemetry/opentelemetry-go-contrib/) to mandate the new semconv version. + ## Breaking changes validation You can run `make gorelease` which runs [gorelease](https://pkg.go.dev/golang.org/x/exp/cmd/gorelease) to ensure that there are no unwanted changes made in the public API. diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/encoder.go b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/encoder.go index 6cc1a1655c..ca186d8ac2 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/encoder.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/encoder.go @@ -53,7 +53,7 @@ var ( _ Encoder = &defaultAttrEncoder{} // encoderIDCounter is for generating IDs for other attribute encoders. - encoderIDCounter uint64 + encoderIDCounter atomic.Uint64 defaultEncoderOnce sync.Once defaultEncoderID = NewEncoderID() @@ -64,7 +64,7 @@ var ( // once per each type of attribute encoder. Preferably in init() or in var // definition. func NewEncoderID() EncoderID { - return EncoderID{value: atomic.AddUint64(&encoderIDCounter, 1)} + return EncoderID{value: encoderIDCounter.Add(1)} } // DefaultEncoder returns an attribute encoder that encodes attributes in such @@ -105,7 +105,9 @@ func (d *defaultAttrEncoder) Encode(iter Iterator) string { if keyValue.Value.Type() == STRING { copyAndEscape(buf, keyValue.Value.AsString()) } else { - _, _ = buf.WriteString(keyValue.Value.Emit()) + _, _ = buf.WriteString( + keyValue.Value.Emit(), + ) //nolint:staticcheck // Preserve the existing default encoder output. } } return buf.String() diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/hash.go b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/hash.go index 6aa69aeaec..92f39ffe7b 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/hash.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/hash.go @@ -27,6 +27,9 @@ const ( int64SliceID uint64 = 3762322556277578591 // "_[]int64" (little endian) float64SliceID uint64 = 7308324551835016539 // "[]double" (little endian) stringSliceID uint64 = 7453010373645655387 // "[]string" (little endian) + byteSliceID uint64 = 6874028470941080415 // "_[]byte_" (little endian) + sliceID uint64 = 7883494272577650031 // "__slice_" (little endian) + emptyID uint64 = 7305809155345288421 // "__empty_" (little endian) ) // hashKVs returns a new xxHash64 hash of kvs. @@ -41,52 +44,87 @@ func hashKVs(kvs []KeyValue) uint64 { // hashKV returns the xxHash64 hash of kv with h as the base. func hashKV(h xxhash.Hash, kv KeyValue) xxhash.Hash { h = h.String(string(kv.Key)) + return hashValue(h, kv.Value) +} - switch kv.Value.Type() { +func hashValue(h xxhash.Hash, v Value) xxhash.Hash { + switch v.Type() { case BOOL: h = h.Uint64(boolID) - h = h.Uint64(kv.Value.numeric) + h = h.Uint64(v.numeric) case INT64: h = h.Uint64(int64ID) - h = h.Uint64(kv.Value.numeric) + h = h.Uint64(v.numeric) case FLOAT64: h = h.Uint64(float64ID) // Assumes numeric stored with math.Float64bits. - h = h.Uint64(kv.Value.numeric) + h = h.Uint64(v.numeric) case STRING: h = h.Uint64(stringID) - h = h.String(kv.Value.stringly) + h = h.String(v.stringly) case BOOLSLICE: h = h.Uint64(boolSliceID) - rv := reflect.ValueOf(kv.Value.slice) + rv := reflect.ValueOf(v.slice) for i := 0; i < rv.Len(); i++ { h = h.Bool(rv.Index(i).Bool()) } case INT64SLICE: h = h.Uint64(int64SliceID) - rv := reflect.ValueOf(kv.Value.slice) + rv := reflect.ValueOf(v.slice) for i := 0; i < rv.Len(); i++ { h = h.Int64(rv.Index(i).Int()) } case FLOAT64SLICE: h = h.Uint64(float64SliceID) - rv := reflect.ValueOf(kv.Value.slice) + rv := reflect.ValueOf(v.slice) for i := 0; i < rv.Len(); i++ { h = h.Float64(rv.Index(i).Float()) } case STRINGSLICE: h = h.Uint64(stringSliceID) - rv := reflect.ValueOf(kv.Value.slice) + rv := reflect.ValueOf(v.slice) for i := 0; i < rv.Len(); i++ { h = h.String(rv.Index(i).String()) } - case INVALID: + case BYTESLICE: + h = h.Uint64(byteSliceID) + h = h.String(v.stringly) + case SLICE: + h = h.Uint64(sliceID) + switch vals := v.slice.(type) { + case [0]Value: + // No values to hash, but the type identifier is still hashed above. + case [1]Value: + h = hashValueSlice(h, vals[:]) + case [2]Value: + h = hashValueSlice(h, vals[:]) + case [3]Value: + h = hashValueSlice(h, vals[:]) + case [4]Value: + h = hashValueSlice(h, vals[:]) + case [5]Value: + h = hashValueSlice(h, vals[:]) + default: + rv := reflect.ValueOf(v.slice) + for i := 0; i < rv.Len(); i++ { + h = hashValue(h, rv.Index(i).Interface().(Value)) + } + } + case EMPTY: + h = h.Uint64(emptyID) default: // Logging is an alternative, but using the internal logger here // causes an import cycle so it is not done. - v := kv.Value.AsInterface() - msg := fmt.Sprintf("unknown value type: %[1]v (%[1]T)", v) + val := v.AsInterface() + msg := fmt.Sprintf("unknown value type: %[1]v (%[1]T)", val) panic(msg) } return h } + +func hashValueSlice(h xxhash.Hash, vals []Value) xxhash.Hash { + for _, v := range vals { + h = hashValue(h, v) + } + return h +} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go index 7f5eae877d..d9f51fa2d7 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go @@ -11,80 +11,63 @@ import ( "reflect" ) -// BoolSliceValue converts a bool slice into an array with same elements as slice. -func BoolSliceValue(v []bool) any { - cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[bool]())).Elem() - reflect.Copy(cp, reflect.ValueOf(v)) - return cp.Interface() +// sliceElem is the exact set of element types stored in attribute slice values. +// Using a closed set prevents accidental instantiations for unsupported types. +type sliceElem interface { + bool | int64 | float64 | string } -// Int64SliceValue converts an int64 slice into an array with same elements as slice. -func Int64SliceValue(v []int64) any { - cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[int64]())).Elem() - reflect.Copy(cp, reflect.ValueOf(v)) - return cp.Interface() -} - -// Float64SliceValue converts a float64 slice into an array with same elements as slice. -func Float64SliceValue(v []float64) any { - cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[float64]())).Elem() - reflect.Copy(cp, reflect.ValueOf(v)) - return cp.Interface() -} +// SliceValue converts a slice into an array with the same elements. +func SliceValue[T sliceElem](v []T) any { + // Keep only the common tiny-slice cases out of reflection. Extending this + // much further increases code size for diminishing benefit while larger + // slices still need the generic reflective path to preserve comparability. + // This matches the short lengths that show up most often in local + // benchmarks and semantic convention examples while leaving larger, less + // predictable slices on the generic reflective path. + switch len(v) { + case 0: + return [0]T{} + case 1: + return [1]T{v[0]} + case 2: + return [2]T{v[0], v[1]} + case 3: + return [3]T{v[0], v[1], v[2]} + } -// StringSliceValue converts a string slice into an array with same elements as slice. -func StringSliceValue(v []string) any { - cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[string]())).Elem() - reflect.Copy(cp, reflect.ValueOf(v)) - return cp.Interface() + return sliceValueReflect(v) } -// AsBoolSlice converts a bool array into a slice into with same elements as array. -func AsBoolSlice(v any) []bool { - rv := reflect.ValueOf(v) - if rv.Type().Kind() != reflect.Array { - return nil +// AsSlice converts an array into a slice with the same elements. +func AsSlice[T sliceElem](v any) []T { + // Mirror the small fixed-array fast path used by SliceValue. + switch a := v.(type) { + case [0]T: + return []T{} + case [1]T: + return []T{a[0]} + case [2]T: + return []T{a[0], a[1]} + case [3]T: + return []T{a[0], a[1], a[2]} } - cpy := make([]bool, rv.Len()) - if len(cpy) > 0 { - _ = reflect.Copy(reflect.ValueOf(cpy), rv) - } - return cpy -} -// AsInt64Slice converts an int64 array into a slice into with same elements as array. -func AsInt64Slice(v any) []int64 { - rv := reflect.ValueOf(v) - if rv.Type().Kind() != reflect.Array { - return nil - } - cpy := make([]int64, rv.Len()) - if len(cpy) > 0 { - _ = reflect.Copy(reflect.ValueOf(cpy), rv) - } - return cpy + return asSliceReflect[T](v) } -// AsFloat64Slice converts a float64 array into a slice into with same elements as array. -func AsFloat64Slice(v any) []float64 { - rv := reflect.ValueOf(v) - if rv.Type().Kind() != reflect.Array { - return nil - } - cpy := make([]float64, rv.Len()) - if len(cpy) > 0 { - _ = reflect.Copy(reflect.ValueOf(cpy), rv) - } - return cpy +func sliceValueReflect[T sliceElem](v []T) any { + cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[T]())).Elem() + reflect.Copy(cp, reflect.ValueOf(v)) + return cp.Interface() } -// AsStringSlice converts a string array into a slice into with same elements as array. -func AsStringSlice(v any) []string { +func asSliceReflect[T sliceElem](v any) []T { rv := reflect.ValueOf(v) - if rv.Type().Kind() != reflect.Array { + if !rv.IsValid() || rv.Kind() != reflect.Array || rv.Type().Elem() != reflect.TypeFor[T]() { return nil } - cpy := make([]string, rv.Len()) + cpy := make([]T, rv.Len()) if len(cpy) > 0 { _ = reflect.Copy(reflect.ValueOf(cpy), rv) } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/key.go b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/key.go index 80a9e5643f..cdc7089e82 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/key.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/key.go @@ -117,6 +117,28 @@ func (k Key) StringSlice(v []string) KeyValue { } } +// ByteSlice creates a KeyValue instance with a BYTESLICE Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- ByteSlice(name, value). +func (k Key) ByteSlice(v []byte) KeyValue { + return KeyValue{ + Key: k, + Value: ByteSliceValue(v), + } +} + +// Slice creates a KeyValue instance with a SLICE Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- Slice(name, values...). +func (k Key) Slice(v ...Value) KeyValue { + return KeyValue{ + Key: k, + Value: SliceValue(v...), + } +} + // Defined reports whether the key is not empty. func (k Key) Defined() bool { return len(k) != 0 diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/kv.go b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/kv.go index 8c6928ca79..eeb76a1348 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/kv.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/kv.go @@ -15,7 +15,7 @@ type KeyValue struct { // Valid reports whether kv is a valid OpenTelemetry attribute. func (kv KeyValue) Valid() bool { - return kv.Key.Defined() && kv.Value.Type() != INVALID + return kv.Key.Defined() } // Bool creates a KeyValue with a BOOL Value type. @@ -68,6 +68,16 @@ func StringSlice(k string, v []string) KeyValue { return Key(k).StringSlice(v) } +// ByteSlice creates a KeyValue with a BYTESLICE Value type. +func ByteSlice(k string, v []byte) KeyValue { + return Key(k).ByteSlice(v) +} + +// Slice creates a KeyValue with a SLICE Value type. +func Slice(k string, v ...Value) KeyValue { + return Key(k).Slice(v...) +} + // Stringer creates a new key-value pair with a passed name and a string // value generated by the passed Stringer interface. func Stringer(k string, v fmt.Stringer) KeyValue { diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/set.go b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/set.go index 6572c98b12..a4b6ce81de 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/set.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/set.go @@ -401,7 +401,7 @@ func computeDataFixed(kvs []KeyValue) any { func computeDataReflect(kvs []KeyValue) any { at := reflect.New(reflect.ArrayOf(len(kvs), keyValueType)).Elem() for i, keyValue := range kvs { - *(at.Index(i).Addr().Interface().(*KeyValue)) = keyValue + *at.Index(i).Addr().Interface().(*KeyValue) = keyValue } return at.Interface() } @@ -415,7 +415,7 @@ func (l *Set) MarshalJSON() ([]byte, error) { func (l Set) MarshalLog() any { kvs := make(map[string]string) for _, kv := range l.ToSlice() { - kvs[string(kv.Key)] = kv.Value.Emit() + kvs[string(kv.Key)] = kv.Value.String() } return kvs } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/type_string.go b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/type_string.go index 24f1fa37db..dbc01d3247 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/type_string.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/type_string.go @@ -8,7 +8,7 @@ func _() { // An "invalid array index" compiler error signifies that the constant values have changed. // Re-run the stringer command to generate them again. var x [1]struct{} - _ = x[INVALID-0] + _ = x[EMPTY-0] _ = x[BOOL-1] _ = x[INT64-2] _ = x[FLOAT64-3] @@ -17,11 +17,13 @@ func _() { _ = x[INT64SLICE-6] _ = x[FLOAT64SLICE-7] _ = x[STRINGSLICE-8] + _ = x[BYTESLICE-9] + _ = x[SLICE-10] } -const _Type_name = "INVALIDBOOLINT64FLOAT64STRINGBOOLSLICEINT64SLICEFLOAT64SLICESTRINGSLICE" +const _Type_name = "EMPTYBOOLINT64FLOAT64STRINGBOOLSLICEINT64SLICEFLOAT64SLICESTRINGSLICEBYTESLICESLICE" -var _Type_index = [...]uint8{0, 7, 11, 16, 23, 29, 38, 48, 60, 71} +var _Type_index = [...]uint8{0, 5, 9, 14, 21, 27, 36, 46, 58, 69, 78, 83} func (i Type) String() string { idx := int(i) - 0 diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/value.go b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/value.go index 5931e71291..0529fefae2 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/value.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/attribute/value.go @@ -4,10 +4,14 @@ package attribute // import "go.opentelemetry.io/otel/attribute" import ( + "encoding/base64" "encoding/json" "fmt" + "math" "reflect" "strconv" + "strings" + "unicode/utf8" attribute "go.opentelemetry.io/otel/attribute/internal" ) @@ -18,6 +22,8 @@ import ( type Type int // nolint: revive // redefines builtin Type. // Value represents the value part in key-value pairs. +// +// Note that the zero value is a valid empty value. type Value struct { vtype Type numeric uint64 @@ -26,8 +32,8 @@ type Value struct { } const ( - // INVALID is used for a Value with no value set. - INVALID Type = iota + // EMPTY is used for a Value with no value set. + EMPTY Type = iota // BOOL is a boolean Type Value. BOOL // INT64 is a 64-bit signed integral Type Value. @@ -44,6 +50,14 @@ const ( FLOAT64SLICE // STRINGSLICE is a slice of strings Type Value. STRINGSLICE + // BYTESLICE is a slice of bytes Type Value. + BYTESLICE + // SLICE is a slice of Value Type values. + SLICE + // INVALID is used for a Value with no value set. + // + // Deprecated: Use EMPTY instead as an empty value is a valid value. + INVALID = EMPTY ) // BoolValue creates a BOOL Value. @@ -56,7 +70,7 @@ func BoolValue(v bool) Value { // BoolSliceValue creates a BOOLSLICE Value. func BoolSliceValue(v []bool) Value { - return Value{vtype: BOOLSLICE, slice: attribute.BoolSliceValue(v)} + return Value{vtype: BOOLSLICE, slice: attribute.SliceValue(v)} } // IntValue creates an INT64 Value. @@ -64,16 +78,30 @@ func IntValue(v int) Value { return Int64Value(int64(v)) } -// IntSliceValue creates an INTSLICE Value. +// IntSliceValue creates an INT64SLICE Value. func IntSliceValue(v []int) Value { - cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[int64]())) - for i, val := range v { - cp.Elem().Index(i).SetInt(int64(val)) - } - return Value{ - vtype: INT64SLICE, - slice: cp.Elem().Interface(), + val := Value{vtype: INT64SLICE} + + // Avoid the common tiny-slice cases from allocating a new slice. + switch len(v) { + case 0: + val.slice = [0]int64{} + case 1: + val.slice = [1]int64{int64(v[0])} + case 2: + val.slice = [2]int64{int64(v[0]), int64(v[1])} + case 3: + val.slice = [3]int64{int64(v[0]), int64(v[1]), int64(v[2])} + default: + // Fallback to a new slice for larger slices. + cp := make([]int64, len(v)) + for i, val := range v { + cp[i] = int64(val) + } + val.slice = attribute.SliceValue(cp) } + + return val } // Int64Value creates an INT64 Value. @@ -86,7 +114,7 @@ func Int64Value(v int64) Value { // Int64SliceValue creates an INT64SLICE Value. func Int64SliceValue(v []int64) Value { - return Value{vtype: INT64SLICE, slice: attribute.Int64SliceValue(v)} + return Value{vtype: INT64SLICE, slice: attribute.SliceValue(v)} } // Float64Value creates a FLOAT64 Value. @@ -99,7 +127,7 @@ func Float64Value(v float64) Value { // Float64SliceValue creates a FLOAT64SLICE Value. func Float64SliceValue(v []float64) Value { - return Value{vtype: FLOAT64SLICE, slice: attribute.Float64SliceValue(v)} + return Value{vtype: FLOAT64SLICE, slice: attribute.SliceValue(v)} } // StringValue creates a STRING Value. @@ -112,7 +140,20 @@ func StringValue(v string) Value { // StringSliceValue creates a STRINGSLICE Value. func StringSliceValue(v []string) Value { - return Value{vtype: STRINGSLICE, slice: attribute.StringSliceValue(v)} + return Value{vtype: STRINGSLICE, slice: attribute.SliceValue(v)} +} + +// ByteSliceValue creates a BYTESLICE Value. +func ByteSliceValue(v []byte) Value { + return Value{ + vtype: BYTESLICE, + stringly: string(v), + } +} + +// SliceValue creates a SLICE Value. +func SliceValue(v ...Value) Value { + return Value{vtype: SLICE, slice: sliceValue(v)} } // Type returns a type of the Value. @@ -136,7 +177,7 @@ func (v Value) AsBoolSlice() []bool { } func (v Value) asBoolSlice() []bool { - return attribute.AsBoolSlice(v.slice) + return attribute.AsSlice[bool](v.slice) } // AsInt64 returns the int64 value. Make sure that the Value's type is @@ -155,7 +196,7 @@ func (v Value) AsInt64Slice() []int64 { } func (v Value) asInt64Slice() []int64 { - return attribute.AsInt64Slice(v.slice) + return attribute.AsSlice[int64](v.slice) } // AsFloat64 returns the float64 value. Make sure that the Value's @@ -174,7 +215,7 @@ func (v Value) AsFloat64Slice() []float64 { } func (v Value) asFloat64Slice() []float64 { - return attribute.AsFloat64Slice(v.slice) + return attribute.AsSlice[float64](v.slice) } // AsString returns the string value. Make sure that the Value's type @@ -193,7 +234,60 @@ func (v Value) AsStringSlice() []string { } func (v Value) asStringSlice() []string { - return attribute.AsStringSlice(v.slice) + return attribute.AsSlice[string](v.slice) +} + +// AsSlice returns the []Value value. Make sure that the Value's type is +// SLICE. +func (v Value) AsSlice() []Value { + if v.vtype != SLICE { + return nil + } + return v.asSlice() +} + +func (v Value) asSlice() []Value { + switch vals := v.slice.(type) { + case [0]Value: + return []Value{} + case [1]Value: + return []Value{vals[0]} + case [2]Value: + return []Value{vals[0], vals[1]} + case [3]Value: + return []Value{vals[0], vals[1], vals[2]} + case [4]Value: + return []Value{vals[0], vals[1], vals[2], vals[3]} + case [5]Value: + return []Value{vals[0], vals[1], vals[2], vals[3], vals[4]} + default: + return asValueSliceReflect(v.slice) + } +} + +func asValueSliceReflect(v any) []Value { + rv := reflect.ValueOf(v) + if !rv.IsValid() || rv.Kind() != reflect.Array || rv.Type().Elem() != reflect.TypeFor[Value]() { + return nil + } + cpy := make([]Value, rv.Len()) + if len(cpy) > 0 { + _ = reflect.Copy(reflect.ValueOf(cpy), rv) + } + return cpy +} + +// AsByteSlice returns the bytes value. Make sure that the Value's type +// is BYTESLICE. +func (v Value) AsByteSlice() []byte { + if v.vtype != BYTESLICE { + return nil + } + return v.asByteSlice() +} + +func (v Value) asByteSlice() []byte { + return []byte(v.stringly) } type unknownValueType struct{} @@ -217,11 +311,60 @@ func (v Value) AsInterface() any { return v.stringly case STRINGSLICE: return v.asStringSlice() + case BYTESLICE: + return v.asByteSlice() + case SLICE: + return v.asSlice() + case EMPTY: + return nil } return unknownValueType{} } +// String returns a string representation of Value using the +// [OpenTelemetry AnyValue representation for non-OTLP protocols] rules. +// +// Strings are returned as-is without JSON quoting, booleans and integers use +// JSON literals, floating-point values use JSON numbers except that NaN and +// ±Inf are rendered as NaN, Infinity, and -Infinity, byte slices are +// base64-encoded, empty values are the empty string, and slices are encoded as +// JSON arrays. String, byte, and special floating-point values inside arrays +// are encoded as JSON strings, and empty values inside arrays are encoded as +// null. +// +// [OpenTelemetry AnyValue representation for non-OTLP protocols]: https://opentelemetry.io/docs/specs/otel/common/#anyvalue-representation-for-non-otlp-protocols +func (v Value) String() string { + switch v.Type() { + case BOOL: + return strconv.FormatBool(v.AsBool()) + case BOOLSLICE: + return formatBoolSliceValue(v.slice) + case INT64: + return strconv.FormatInt(v.AsInt64(), 10) + case INT64SLICE: + return formatInt64SliceValue(v.slice) + case FLOAT64: + return formatFloat64(v.AsFloat64()) + case FLOAT64SLICE: + return formatFloat64SliceValue(v.slice) + case STRING: + return v.stringly + case STRINGSLICE: + return formatStringSliceValue(v.slice) + case BYTESLICE: + return formatByteSlice(v.stringly) + case SLICE: + return formatValueSliceValue(v.slice) + case EMPTY: + return "" + default: + return "unknown" + } +} + // Emit returns a string representation of Value's data. +// +// Deprecated: Use [Value.String] instead. func (v Value) Emit() string { switch v.Type() { case BOOLSLICE: @@ -252,11 +395,633 @@ func (v Value) Emit() string { return string(j) case STRING: return v.stringly + case BYTESLICE: + return formatByteSlice(v.stringly) + case SLICE: + return formatValueSliceValue(v.slice) + case EMPTY: + return "" default: return "unknown" } } +const ( + jsonArrayBracketsLen = len("[]") + boolArrayElemMaxLen = len("false") + int64ArrayElemMaxLen = len("-9223372036854775808") + float64ArrayElemMaxLen = len("-1.7976931348623157e+308") + commaLen = len(",") +) + +func sliceValue(v []Value) any { + switch len(v) { + case 0: + return [0]Value{} + case 1: + return [1]Value{v[0]} + case 2: + return [2]Value{v[0], v[1]} + case 3: + return [3]Value{v[0], v[1], v[2]} + case 4: + return [4]Value{v[0], v[1], v[2], v[3]} + case 5: + return [5]Value{v[0], v[1], v[2], v[3], v[4]} + default: + return sliceValueReflect(v) + } +} + +func sliceValueReflect(v []Value) any { + cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[Value]())).Elem() + reflect.Copy(cp, reflect.ValueOf(v)) + return cp.Interface() +} + +func formatBoolSliceValue(v any) string { + switch vals := v.(type) { + case [0]bool: + return "[]" + case [1]bool: + return formatBoolSlice(vals[:]) + case [2]bool: + return formatBoolSlice(vals[:]) + case [3]bool: + return formatBoolSlice(vals[:]) + default: + return formatBoolSliceReflect(v) + } +} + +func formatBoolSlice(vals []bool) string { + var b strings.Builder + appendBoolSlice(&b, vals) + return b.String() +} + +func formatBoolSliceReflect(v any) string { + var b strings.Builder + appendBoolSliceReflect(&b, reflect.ValueOf(v)) + return b.String() +} + +func appendBoolSliceValue(dst *strings.Builder, v any) { + switch vals := v.(type) { + case [0]bool: + _, _ = dst.WriteString("[]") + case [1]bool: + appendBoolSlice(dst, vals[:]) + case [2]bool: + appendBoolSlice(dst, vals[:]) + case [3]bool: + appendBoolSlice(dst, vals[:]) + default: + appendBoolSliceReflect(dst, reflect.ValueOf(v)) + } +} + +func appendBoolSlice(dst *strings.Builder, vals []bool) { + dst.Grow(jsonArrayBracketsLen + len(vals)*(boolArrayElemMaxLen+commaLen)) + _ = dst.WriteByte('[') + for i, val := range vals { + if i > 0 { + _ = dst.WriteByte(',') + } + if val { + _, _ = dst.WriteString("true") + } else { + _, _ = dst.WriteString("false") + } + } + _ = dst.WriteByte(']') +} + +func appendBoolSliceReflect(dst *strings.Builder, rv reflect.Value) { + dst.Grow(jsonArrayBracketsLen + rv.Len()*(boolArrayElemMaxLen+commaLen)) + _ = dst.WriteByte('[') + for i := 0; i < rv.Len(); i++ { + if i > 0 { + _ = dst.WriteByte(',') + } + if rv.Index(i).Bool() { + _, _ = dst.WriteString("true") + } else { + _, _ = dst.WriteString("false") + } + } + _ = dst.WriteByte(']') +} + +func formatInt64SliceValue(v any) string { + switch vals := v.(type) { + case [0]int64: + return "[]" + case [1]int64: + return formatInt64Slice(vals[:]) + case [2]int64: + return formatInt64Slice(vals[:]) + case [3]int64: + return formatInt64Slice(vals[:]) + default: + return formatInt64SliceReflect(v) + } +} + +func formatInt64Slice(vals []int64) string { + var b strings.Builder + appendInt64Slice(&b, vals) + return b.String() +} + +func formatInt64SliceReflect(v any) string { + var b strings.Builder + appendInt64SliceReflect(&b, reflect.ValueOf(v)) + return b.String() +} + +func appendInt64SliceValue(dst *strings.Builder, v any) { + switch vals := v.(type) { + case [0]int64: + _, _ = dst.WriteString("[]") + case [1]int64: + appendInt64Slice(dst, vals[:]) + case [2]int64: + appendInt64Slice(dst, vals[:]) + case [3]int64: + appendInt64Slice(dst, vals[:]) + default: + appendInt64SliceReflect(dst, reflect.ValueOf(v)) + } +} + +func appendInt64Slice(dst *strings.Builder, vals []int64) { + dst.Grow(jsonArrayBracketsLen + len(vals)*(int64ArrayElemMaxLen+commaLen)) + _ = dst.WriteByte('[') + + var buf [int64ArrayElemMaxLen]byte + for i, val := range vals { + if i > 0 { + _ = dst.WriteByte(',') + } + out := strconv.AppendInt(buf[:0], val, 10) + _, _ = dst.Write(out) + } + + _ = dst.WriteByte(']') +} + +func appendInt64SliceReflect(dst *strings.Builder, rv reflect.Value) { + dst.Grow(jsonArrayBracketsLen + rv.Len()*(int64ArrayElemMaxLen+commaLen)) + _ = dst.WriteByte('[') + + var scratch [int64ArrayElemMaxLen]byte + for i := 0; i < rv.Len(); i++ { + if i > 0 { + _ = dst.WriteByte(',') + } + out := strconv.AppendInt(scratch[:0], rv.Index(i).Int(), 10) + _, _ = dst.Write(out) + } + + _ = dst.WriteByte(']') +} + +func formatFloat64(v float64) string { + switch { + case math.IsNaN(v): + return "NaN" + case math.IsInf(v, 1): + return "Infinity" + case math.IsInf(v, -1): + return "-Infinity" + default: + return strconv.FormatFloat(v, 'g', -1, 64) + } +} + +func formatFloat64SliceValue(v any) string { + switch vals := v.(type) { + case [0]float64: + return "[]" + case [1]float64: + return formatFloat64Slice(vals[:]) + case [2]float64: + return formatFloat64Slice(vals[:]) + case [3]float64: + return formatFloat64Slice(vals[:]) + default: + return formatFloat64SliceReflect(v) + } +} + +func formatFloat64Slice(vals []float64) string { + var b strings.Builder + appendFloat64Slice(&b, vals) + return b.String() +} + +func formatFloat64SliceReflect(v any) string { + var b strings.Builder + appendFloat64SliceReflect(&b, reflect.ValueOf(v)) + return b.String() +} + +func appendFloat64SliceValue(dst *strings.Builder, v any) { + switch vals := v.(type) { + case [0]float64: + _, _ = dst.WriteString("[]") + case [1]float64: + appendFloat64Slice(dst, vals[:]) + case [2]float64: + appendFloat64Slice(dst, vals[:]) + case [3]float64: + appendFloat64Slice(dst, vals[:]) + default: + appendFloat64SliceReflect(dst, reflect.ValueOf(v)) + } +} + +func appendFloat64Slice(dst *strings.Builder, vals []float64) { + dst.Grow(jsonArrayBracketsLen + len(vals)*(float64ArrayElemMaxLen+commaLen)) + _ = dst.WriteByte('[') + + var buf [float64ArrayElemMaxLen]byte + for i, val := range vals { + if i > 0 { + _ = dst.WriteByte(',') + } + + switch { + case math.IsNaN(val): + _, _ = dst.WriteString(`"NaN"`) + case math.IsInf(val, 1): + _, _ = dst.WriteString(`"Infinity"`) + case math.IsInf(val, -1): + _, _ = dst.WriteString(`"-Infinity"`) + default: + out := strconv.AppendFloat(buf[:0], val, 'g', -1, 64) + _, _ = dst.Write(out) + } + } + + _ = dst.WriteByte(']') +} + +func appendFloat64SliceReflect(dst *strings.Builder, rv reflect.Value) { + dst.Grow(jsonArrayBracketsLen + rv.Len()*(float64ArrayElemMaxLen+commaLen)) + _ = dst.WriteByte('[') + + var scratch [float64ArrayElemMaxLen]byte + for i := 0; i < rv.Len(); i++ { + if i > 0 { + _ = dst.WriteByte(',') + } + val := rv.Index(i).Float() + switch { + case math.IsNaN(val): + _, _ = dst.WriteString(`"NaN"`) + case math.IsInf(val, 1): + _, _ = dst.WriteString(`"Infinity"`) + case math.IsInf(val, -1): + _, _ = dst.WriteString(`"-Infinity"`) + default: + out := strconv.AppendFloat(scratch[:0], val, 'g', -1, 64) + _, _ = dst.Write(out) + } + } + + _ = dst.WriteByte(']') +} + +func formatStringSliceValue(v any) string { + switch vals := v.(type) { + case [0]string: + return "[]" + case [1]string: + return formatStringSlice(vals[:]) + case [2]string: + return formatStringSlice(vals[:]) + case [3]string: + return formatStringSlice(vals[:]) + default: + return formatStringSliceReflect(v) + } +} + +func formatStringSlice(vals []string) string { + var b strings.Builder + appendStringSlice(&b, vals) + return b.String() +} + +func formatStringSliceReflect(v any) string { + var b strings.Builder + appendStringSliceReflect(&b, reflect.ValueOf(v)) + return b.String() +} + +func appendStringSliceValue(dst *strings.Builder, v any) { + switch vals := v.(type) { + case [0]string: + _, _ = dst.WriteString("[]") + case [1]string: + appendStringSlice(dst, vals[:]) + case [2]string: + appendStringSlice(dst, vals[:]) + case [3]string: + appendStringSlice(dst, vals[:]) + default: + appendStringSliceReflect(dst, reflect.ValueOf(v)) + } +} + +func appendStringSlice(dst *strings.Builder, vals []string) { + size := jsonArrayBracketsLen + for _, val := range vals { + size += len(val) + commaLen + 2 // Account for JSON string quotes and comma. + } + + dst.Grow(size) + _ = dst.WriteByte('[') + for i, val := range vals { + if i > 0 { + _ = dst.WriteByte(',') + } + appendJSONString(dst, val) + } + _ = dst.WriteByte(']') +} + +func appendStringSliceReflect(dst *strings.Builder, rv reflect.Value) { + size := jsonArrayBracketsLen + for i := 0; i < rv.Len(); i++ { + size += len(rv.Index(i).String()) + commaLen + 2 // Account for JSON string quotes and comma. + } + + dst.Grow(size) + _ = dst.WriteByte('[') + for i := 0; i < rv.Len(); i++ { + if i > 0 { + _ = dst.WriteByte(',') + } + appendJSONString(dst, rv.Index(i).String()) + } + _ = dst.WriteByte(']') +} + +func formatByteSlice(v string) string { + var b strings.Builder + appendBase64(&b, v) + return b.String() +} + +func formatValueSliceValue(v any) string { + switch vals := v.(type) { + case [0]Value: + return "[]" + case [1]Value: + return formatValueSlice(vals[:]) + case [2]Value: + return formatValueSlice(vals[:]) + case [3]Value: + return formatValueSlice(vals[:]) + case [4]Value: + return formatValueSlice(vals[:]) + case [5]Value: + return formatValueSlice(vals[:]) + default: + return formatValueSliceReflect(v) + } +} + +func formatValueSlice(vals []Value) string { + var b strings.Builder + appendValueSlice(&b, vals) + return b.String() +} + +func formatValueSliceReflect(v any) string { + var b strings.Builder + appendValueSliceReflect(&b, reflect.ValueOf(v)) + return b.String() +} + +func appendValueSliceValue(dst *strings.Builder, v any) { + switch vals := v.(type) { + case [0]Value: + _, _ = dst.WriteString("[]") + case [1]Value: + appendValueSlice(dst, vals[:]) + case [2]Value: + appendValueSlice(dst, vals[:]) + case [3]Value: + appendValueSlice(dst, vals[:]) + case [4]Value: + appendValueSlice(dst, vals[:]) + case [5]Value: + appendValueSlice(dst, vals[:]) + default: + appendValueSliceReflect(dst, reflect.ValueOf(v)) + } +} + +func appendValueSlice(dst *strings.Builder, vals []Value) { + // Estimate 10 bytes per value for small values and commas. + dst.Grow(jsonArrayBracketsLen + len(vals)*commaLen + len(vals)*10) + _ = dst.WriteByte('[') + for i, val := range vals { + if i > 0 { + _ = dst.WriteByte(',') + } + appendJSONValue(dst, val) + } + _ = dst.WriteByte(']') +} + +func appendValueSliceReflect(dst *strings.Builder, rv reflect.Value) { + // Estimate 10 bytes per value for small values and commas. + dst.Grow(jsonArrayBracketsLen + rv.Len()*commaLen + rv.Len()*10) + _ = dst.WriteByte('[') + for i := 0; i < rv.Len(); i++ { + if i > 0 { + _ = dst.WriteByte(',') + } + appendJSONValue(dst, rv.Index(i).Interface().(Value)) + } + _ = dst.WriteByte(']') +} + +func appendJSONValue(dst *strings.Builder, v Value) { + switch v.Type() { + case BOOL: + if v.AsBool() { + _, _ = dst.WriteString("true") + } else { + _, _ = dst.WriteString("false") + } + case BOOLSLICE: + appendBoolSliceValue(dst, v.slice) + case INT64: + var buf [int64ArrayElemMaxLen]byte + out := strconv.AppendInt(buf[:0], v.AsInt64(), 10) + _, _ = dst.Write(out) + case INT64SLICE: + appendInt64SliceValue(dst, v.slice) + case FLOAT64: + val := v.AsFloat64() + switch { + case math.IsNaN(val): + appendJSONString(dst, "NaN") + case math.IsInf(val, 1): + appendJSONString(dst, "Infinity") + case math.IsInf(val, -1): + appendJSONString(dst, "-Infinity") + default: + var buf [float64ArrayElemMaxLen]byte + out := strconv.AppendFloat(buf[:0], val, 'g', -1, 64) + _, _ = dst.Write(out) + } + case FLOAT64SLICE: + appendFloat64SliceValue(dst, v.slice) + case STRING: + appendJSONString(dst, v.stringly) + case STRINGSLICE: + appendStringSliceValue(dst, v.slice) + case BYTESLICE: + _ = dst.WriteByte('"') + appendBase64(dst, v.stringly) + _ = dst.WriteByte('"') + case SLICE: + appendValueSliceValue(dst, v.slice) + case EMPTY: + _, _ = dst.WriteString("null") + default: + appendJSONString(dst, "unknown") + } +} + +// appendJSONString appends s to dst as a JSON string literal. +// +// This is adapted from the Go standard library's encoding/json +// [appendString implementation]. It keeps the same escaping behavior we need +// here, but writes directly into a strings.Builder and intentionally does not +// apply HTML escaping because the OpenTelemetry non-OTLP AnyValue representation +// only requires JSON array string encoding. We inline this instead of using +// encoding/json so slice formatting avoids allocations and reflection. +// +// [appendString implementation]: https://github.com/golang/go/blob/3b5954c6349d31465dca409b45ab6597e0942d9f/src/encoding/json/encode.go#L998-L1064 +func appendJSONString(dst *strings.Builder, s string) { + const hex = "0123456789abcdef" // For escaping bytes to hex. + + _ = dst.WriteByte('"') + start := 0 + + for i := 0; i < len(s); { + if c := s[i]; c < utf8.RuneSelf { + if c >= 0x20 && c != '\\' && c != '"' { + i++ + continue + } + + if start < i { + _, _ = dst.WriteString(s[start:i]) + } + + switch c { + case '\\', '"': + _ = dst.WriteByte('\\') + _ = dst.WriteByte(c) + case '\b': + _, _ = dst.WriteString(`\b`) + case '\f': + _, _ = dst.WriteString(`\f`) + case '\n': + _, _ = dst.WriteString(`\n`) + case '\r': + _, _ = dst.WriteString(`\r`) + case '\t': + _, _ = dst.WriteString(`\t`) + default: + _, _ = dst.WriteString(`\u00`) + _ = dst.WriteByte(hex[c>>4]) + _ = dst.WriteByte(hex[c&0x0f]) + } + + i++ + start = i + continue + } + + r, size := utf8.DecodeRuneInString(s[i:]) + if r == utf8.RuneError && size == 1 { + if start < i { + _, _ = dst.WriteString(s[start:i]) + } + // Match encoding/json by replacing invalid UTF-8 with U+FFFD. + _, _ = dst.WriteString(`\ufffd`) + i++ + start = i + continue + } + + if r == '\u2028' || r == '\u2029' { + if start < i { + _, _ = dst.WriteString(s[start:i]) + } + // Escape JSONP-sensitive separators unconditionally, like encoding/json. + _, _ = dst.WriteString(`\u202`) + _ = dst.WriteByte(hex[r&0x0f]) + i += size + start = i + continue + } + + i += size + } + + if start < len(s) { + _, _ = dst.WriteString(s[start:]) + } + _ = dst.WriteByte('"') +} + +// This is adapted from the Go standard library's encoding/base64 +// [Encoding.Encode implementation]. It keeps the same encoding behavior we need +// here, but writes directly into a strings.Builder. We inline this instead of using +// encoding/base64 to avoid allocations. +// +// [Encoding.Encode implementation]: https://github.com/golang/go/blob/3b5954c6349d31465dca409b45ab6597e0942d9f/src/encoding/base64/base64.go#L139-L189 +func appendBase64(dst *strings.Builder, s string) { + const encode = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/" + + dst.Grow(base64.StdEncoding.EncodedLen(len(s))) + + i := 0 + for ; i+2 < len(s); i += 3 { + n := uint32(s[i])<<16 | uint32(s[i+1])<<8 | uint32(s[i+2]) + _ = dst.WriteByte(encode[n>>18&0x3f]) + _ = dst.WriteByte(encode[n>>12&0x3f]) + _ = dst.WriteByte(encode[n>>6&0x3f]) + _ = dst.WriteByte(encode[n&0x3f]) + } + + switch len(s) - i { + case 1: + n := uint32(s[i]) << 16 + _ = dst.WriteByte(encode[n>>18&0x3f]) + _ = dst.WriteByte(encode[n>>12&0x3f]) + _ = dst.WriteByte('=') + _ = dst.WriteByte('=') + case 2: + n := uint32(s[i])<<16 | uint32(s[i+1])<<8 + _ = dst.WriteByte(encode[n>>18&0x3f]) + _ = dst.WriteByte(encode[n>>12&0x3f]) + _ = dst.WriteByte(encode[n>>6&0x3f]) + _ = dst.WriteByte('=') + } +} + // MarshalJSON returns the JSON encoding of the Value. func (v Value) MarshalJSON() ([]byte, error) { var jsonVal struct { diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/baggage/baggage.go b/tests/e2e/vendor/go.opentelemetry.io/otel/baggage/baggage.go index 878ffbe43a..b290c6d6cc 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/baggage/baggage.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/baggage/baggage.go @@ -14,6 +14,10 @@ import ( ) const ( + maxParseErrors = 5 + + // W3C Baggage specification limits. + // https://www.w3.org/TR/baggage/#limits maxMembers = 64 maxBytesPerBaggageString = 8192 @@ -493,9 +497,15 @@ func New(members ...Member) (Baggage, error) { // from the W3C Baggage specification which allows duplicate list-members, but // conforms to the OpenTelemetry Baggage specification. // -// If the baggage-string exceeds the maximum allowed members (64) or bytes -// (8192), members are dropped until the limits are satisfied and an error is -// returned along with the partial result. +// If the raw baggage-string exceeds the maximum allowed bytes (8192), an +// empty Baggage and an error are returned. +// +// Otherwise, members are parsed left-to-right and accumulated until one of +// the following conditions is reached, at which point parsing stops and an +// error is returned alongside the partial result: +// - accepting the next member would cause the encoded baggage to exceed +// 8192 bytes, or +// - the baggage already contains 64 distinct keys. // // Invalid members are skipped and the error is returned along with the // partial result containing the valid members. @@ -504,9 +514,14 @@ func Parse(bStr string) (Baggage, error) { return Baggage{}, nil } + if n := len(bStr); n > maxBytesPerBaggageString { + return Baggage{}, fmt.Errorf("%w: %d", errBaggageBytes, n) + } + b := make(baggage.List) sizes := make(map[string]int) // Track per-key byte sizes var totalBytes int + var parseErrors int var truncateErr error for memberStr := range strings.SplitSeq(bStr, listDelimiter) { // Check member count limit. @@ -517,7 +532,10 @@ func Parse(bStr string) (Baggage, error) { m, err := parseMember(memberStr) if err != nil { - truncateErr = errors.Join(truncateErr, err) + parseErrors++ + if parseErrors <= maxParseErrors { + truncateErr = errors.Join(truncateErr, err) + } continue // skip invalid member, keep processing } @@ -553,6 +571,10 @@ func Parse(bStr string) (Baggage, error) { totalBytes = newTotalBytes } + if dropped := parseErrors - maxParseErrors; dropped > 0 { + truncateErr = errors.Join(truncateErr, fmt.Errorf("and %d more invalid member(s)", dropped)) + } + if len(b) == 0 { return Baggage{}, truncateErr } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile b/tests/e2e/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile index f0cc942bae..74fa510bc8 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile @@ -1,4 +1,4 @@ # This is a renovate-friendly source of Docker images. FROM python:3.13.6-slim-bullseye@sha256:e98b521460ee75bca92175c16247bdf7275637a8faaeb2bcfa19d879ae5c4b9a AS python -FROM otel/weaver:v0.21.2@sha256:2401de985c38bdb98b43918e2f43aa36b2afed4aa5669ac1c1de0a17301cd36d AS weaver +FROM otel/weaver:v0.23.0@sha256:7984ecb55b859eb3034ae9d836c4eeda137e2bdd0873b7ba2bb6c3d24d6ff457 AS weaver FROM avtodev/markdown-lint:v1@sha256:6aeedc2f49138ce7a1cd0adffc1b1c0321b841dc2102408967d9301c031949ee AS markdown diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/attribute.go b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/attribute.go index d9bfd6e176..0d43a5dc5b 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/attribute.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/attribute.go @@ -87,12 +87,23 @@ func Value(v attribute.Value) *commonpb.AnyValue { av.Value = &commonpb.AnyValue_StringValue{ StringValue: v.AsString(), } + case attribute.BYTESLICE: + av.Value = &commonpb.AnyValue_BytesValue{ + BytesValue: v.AsByteSlice(), + } + case attribute.SLICE: + av.Value = &commonpb.AnyValue_ArrayValue{ + ArrayValue: &commonpb.ArrayValue{ + Values: values(v.AsSlice()), + }, + } case attribute.STRINGSLICE: av.Value = &commonpb.AnyValue_ArrayValue{ ArrayValue: &commonpb.ArrayValue{ Values: stringSliceValues(v.AsStringSlice()), }, } + case attribute.EMPTY: default: av.Value = &commonpb.AnyValue_StringValue{ StringValue: "INVALID", @@ -148,3 +159,11 @@ func stringSliceValues(vals []string) []*commonpb.AnyValue { } return converted } + +func values(vals []attribute.Value) []*commonpb.AnyValue { + converted := make([]*commonpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = Value(v) + } + return converted +} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/client.go b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/client.go index 76b7cd461b..e8b33d3fa5 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/client.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/client.go @@ -6,6 +6,7 @@ package otlptracegrpc // import "go.opentelemetry.io/otel/exporters/otlp/otlptra import ( "context" "errors" + "fmt" "sync" "time" @@ -16,6 +17,7 @@ import ( "google.golang.org/grpc/codes" "google.golang.org/grpc/metadata" "google.golang.org/grpc/status" + "google.golang.org/protobuf/proto" "go.opentelemetry.io/otel/exporters/otlp/otlptrace" "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal" @@ -26,11 +28,12 @@ import ( ) type client struct { - endpoint string - dialOpts []grpc.DialOption - metadata metadata.MD - exportTimeout time.Duration - requestFunc retry.RequestFunc + endpoint string + dialOpts []grpc.DialOption + metadata metadata.MD + exportTimeout time.Duration + maxRequestSize int + requestFunc retry.RequestFunc // stopCtx is used as a parent context for all exports. Therefore, when it // is canceled with the stopFunc all exports are canceled. @@ -62,17 +65,18 @@ func NewClient(opts ...Option) otlptrace.Client { func newClient(opts ...Option) *client { cfg := otlpconfig.NewGRPCConfig(asGRPCOptions(opts)...) - ctx, cancel := context.WithCancel(context.Background()) + ctx, cancel := context.WithCancel(context.Background()) //nolint:gosec // cancel called in client shutdown. c := &client{ - endpoint: cfg.Traces.Endpoint, - exportTimeout: cfg.Traces.Timeout, - requestFunc: cfg.RetryConfig.RequestFunc(retryable), - dialOpts: cfg.DialOptions, - stopCtx: ctx, - stopFunc: cancel, - conn: cfg.GRPCConn, - instID: counter.NextExporterID(), + endpoint: cfg.Traces.Endpoint, + exportTimeout: cfg.Traces.Timeout, + maxRequestSize: cfg.Traces.MaxRequestSize, + requestFunc: cfg.RetryConfig.RequestFunc(retryable), + dialOpts: cfg.DialOptions, + stopCtx: ctx, + stopFunc: cancel, + conn: cfg.GRPCConn, + instID: counter.NextExporterID(), } if len(cfg.Traces.Headers) > 0 { @@ -205,16 +209,28 @@ func (c *client) UploadTraces(ctx context.Context, protoSpans []*tracepb.Resourc ctx, cancel := c.exportContext(ctx) defer cancel() - var code codes.Code + pbRequest := &coltracepb.ExportTraceServiceRequest{ + ResourceSpans: protoSpans, + } + + code := codes.Unknown if c.inst != nil { - op := c.inst.ExportSpans(ctx, len(protoSpans)) + var spanCount int + for _, rs := range protoSpans { + for _, ss := range rs.ScopeSpans { + spanCount += len(ss.Spans) + } + } + op := c.inst.ExportSpans(ctx, spanCount) defer func() { op.End(uploadErr, code) }() } + if maxSize := c.maxRequestSize; maxSize > 0 && proto.Size(pbRequest) > maxSize { + return fmt.Errorf("request message too large: exceeded %d bytes", maxSize) + } + return c.requestFunc(ctx, func(iCtx context.Context) error { - resp, err := c.tsc.Export(iCtx, &coltracepb.ExportTraceServiceRequest{ - ResourceSpans: protoSpans, - }) + resp, err := c.tsc.Export(iCtx, pbRequest) if resp != nil && resp.PartialSuccess != nil { msg := resp.PartialSuccess.GetErrorMessage() n := resp.PartialSuccess.GetRejectedSpans() @@ -248,7 +264,7 @@ func (c *client) exportContext(parent context.Context) (context.Context, context if c.exportTimeout > 0 { ctx, cancel = context.WithTimeoutCause(parent, c.exportTimeout, errors.New("exporter export timeout")) } else { - ctx, cancel = context.WithCancel(parent) + ctx, cancel = context.WithCancel(parent) //nolint:gosec // cancel called by caller when export is complete. } if c.metadata.Len() > 0 { diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/observ/instrumentation.go b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/observ/instrumentation.go index d4a69f4d7c..676a93514b 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/observ/instrumentation.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/observ/instrumentation.go @@ -18,8 +18,8 @@ import ( "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/x" "go.opentelemetry.io/otel/internal/global" "go.opentelemetry.io/otel/metric" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" - "go.opentelemetry.io/otel/semconv/v1.39.0/otelconv" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + "go.opentelemetry.io/otel/semconv/v1.41.0/otelconv" ) const ( @@ -72,6 +72,7 @@ var ( func get[T any](p *sync.Pool) *[]T { return p.Get().(*[]T) } func put[T any](p *sync.Pool, s *[]T) { + clear(*s) // erase elements to allow GC to collect what they refer to. *s = (*s)[:0] // Reset. p.Put(s) } @@ -208,10 +209,12 @@ func BaseAttrs(id int64, target string) []attribute.KeyValue { func (i *Instrumentation) ExportSpans(ctx context.Context, nSpans int) ExportOp { start := time.Now() - addOpt := get[metric.AddOption](addOptPool) - defer put(addOptPool, addOpt) - *addOpt = append(*addOpt, i.addOpt) - i.inflightSpans.Add(ctx, int64(nSpans), *addOpt...) + if i.inflightSpans.Enabled(ctx) { + addOpt := get[metric.AddOption](addOptPool) + defer put(addOptPool, addOpt) + *addOpt = append(*addOpt, i.addOpt) + i.inflightSpans.Add(ctx, int64(nSpans), *addOpt...) + } return ExportOp{ ctx: ctx, @@ -244,14 +247,18 @@ func (e ExportOp) End(err error, code codes.Code) { defer put(addOptPool, addOpt) *addOpt = append(*addOpt, e.inst.addOpt) - e.inst.inflightSpans.Add(e.ctx, -e.nSpans, *addOpt...) + if e.inst.inflightSpans.Enabled(e.ctx) { + e.inst.inflightSpans.Add(e.ctx, -e.nSpans, *addOpt...) + } success := successful(e.nSpans, err) // Record successfully exported spans, even if the value is 0 which are // meaningful to distribution aggregations. - e.inst.exportedSpans.Add(e.ctx, success, *addOpt...) + if e.inst.exportedSpans.Enabled(e.ctx) { + e.inst.exportedSpans.Add(e.ctx, success, *addOpt...) + } - if err != nil { + if err != nil && e.inst.exportedSpans.Enabled(e.ctx) { attrs := get[attribute.KeyValue](measureAttrsPool) defer put(measureAttrsPool, attrs) *attrs = append(*attrs, e.inst.attrs...) @@ -266,12 +273,14 @@ func (e ExportOp) End(err error, code codes.Code) { e.inst.exportedSpans.Add(e.ctx, e.nSpans-success, *addOpt...) } - recOpt := get[metric.RecordOption](recordOptPool) - defer put(recordOptPool, recOpt) - *recOpt = append(*recOpt, e.inst.recordOption(err, code)) + if e.inst.opDuration.Enabled(e.ctx) { + recOpt := get[metric.RecordOption](recordOptPool) + defer put(recordOptPool, recOpt) + *recOpt = append(*recOpt, e.inst.recordOption(err, code)) - d := time.Since(e.start).Seconds() - e.inst.opDuration.Record(e.ctx, d, *recOpt...) + d := time.Since(e.start).Seconds() + e.inst.opDuration.Record(e.ctx, d, *recOpt...) + } } // recordOption returns a RecordOption with attributes representing the @@ -331,7 +340,10 @@ var errPartialPool = &sync.Pool{ // the provided non-nil err. func rejected(n int64, err error) int64 { ps := errPartialPool.Get().(*internal.PartialSuccess) - defer errPartialPool.Put(ps) + defer func() { + *ps = internal.PartialSuccess{} // erase fields to allow GC to collect them. + errPartialPool.Put(ps) + }() // Check for partial success. if errors.As(err, ps) { // Bound RejectedItems to [0, n]. This should not be needed, diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/options.go b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/options.go index 4f47117a58..d940b67625 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/options.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/options.go @@ -31,6 +31,9 @@ const ( // DefaultTracesPath is a default URL path for endpoint that // receives spans. DefaultTracesPath string = "/v1/traces" + // DefaultMaxRequestSize is the default maximum size of a serialized export + // request, before compression. + DefaultMaxRequestSize int = 64 * 1024 * 1024 // DefaultTimeout is a default max waiting time for the backend to process // each span batch. DefaultTimeout time.Duration = 10 * time.Second @@ -42,13 +45,14 @@ type ( HTTPTransportProxyFunc func(*http.Request) (*url.URL, error) SignalConfig struct { - Endpoint string - Insecure bool - TLSCfg *tls.Config - Headers map[string]string - Compression Compression - Timeout time.Duration - URLPath string + Endpoint string + Insecure bool + TLSCfg *tls.Config + Headers map[string]string + Compression Compression + MaxRequestSize int + Timeout time.Duration + URLPath string // gRPC configurations GRPCCredentials credentials.TransportCredentials @@ -77,10 +81,11 @@ type ( func NewHTTPConfig(opts ...HTTPOption) Config { cfg := Config{ Traces: SignalConfig{ - Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorHTTPPort), - URLPath: DefaultTracesPath, - Compression: NoCompression, - Timeout: DefaultTimeout, + Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorHTTPPort), + URLPath: DefaultTracesPath, + Compression: NoCompression, + MaxRequestSize: DefaultMaxRequestSize, + Timeout: DefaultTimeout, }, RetryConfig: retry.DefaultConfig, } @@ -111,10 +116,11 @@ func NewGRPCConfig(opts ...GRPCOption) Config { userAgent := "OTel OTLP Exporter Go/" + otlptrace.Version() cfg := Config{ Traces: SignalConfig{ - Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorGRPCPort), - URLPath: DefaultTracesPath, - Compression: NoCompression, - Timeout: DefaultTimeout, + Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorGRPCPort), + URLPath: DefaultTracesPath, + Compression: NoCompression, + MaxRequestSize: DefaultMaxRequestSize, + Timeout: DefaultTimeout, }, RetryConfig: retry.DefaultConfig, DialOptions: []grpc.DialOption{grpc.WithUserAgent(userAgent)}, @@ -345,6 +351,13 @@ func WithTimeout(duration time.Duration) GenericOption { }) } +func WithMaxRequestSize(size int) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.MaxRequestSize = size + return cfg + }) +} + func WithProxy(pf HTTPTransportProxyFunc) GenericOption { return newGenericOption(func(cfg Config) Config { cfg.Traces.Proxy = pf diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/version.go b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/version.go index 19fac1b725..28e51e443f 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/version.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/version.go @@ -5,4 +5,4 @@ package internal // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/ot // Version is the current release version of the OpenTelemetry OTLP gRPC trace // exporter in use. -const Version = "1.40.0" +const Version = "1.44.0" diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/options.go b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/options.go index 2da2298701..b320060525 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/options.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/options.go @@ -192,6 +192,16 @@ func WithTimeout(duration time.Duration) Option { return wrappedOption{otlpconfig.WithTimeout(duration)} } +// WithMaxRequestSize sets the maximum size, in bytes, of a serialized export +// request, before compression, that the exporter will send. +// +// If size is less than or equal to zero, no request-size limit is applied. +// Disabling the limit is not recommended because it can lead to excessive +// resource consumption or abuse. +func WithMaxRequestSize(size int) Option { + return wrappedOption{otlpconfig.WithMaxRequestSize(size)} +} + // WithRetry sets the retry policy for transient retryable errors that may be // returned by the target endpoint when exporting a batch of spans. // diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/version.go b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/version.go index 370cd2a6f8..d847210dba 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/version.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/version.go @@ -5,5 +5,5 @@ package otlptrace // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace" // Version is the current release version of the OpenTelemetry OTLP trace exporter in use. func Version() string { - return "1.40.0" + return "1.44.0" } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/asyncfloat64.go b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/asyncfloat64.go index 466812d343..1d21e2eb75 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/asyncfloat64.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/asyncfloat64.go @@ -51,6 +51,9 @@ type Float64ObservableCounterConfig struct { func NewFloat64ObservableCounterConfig(opts ...Float64ObservableCounterOption) Float64ObservableCounterConfig { var config Float64ObservableCounterConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyFloat64ObservableCounter(config) } return config @@ -111,6 +114,9 @@ func NewFloat64ObservableUpDownCounterConfig( ) Float64ObservableUpDownCounterConfig { var config Float64ObservableUpDownCounterConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyFloat64ObservableUpDownCounter(config) } return config @@ -168,6 +174,9 @@ type Float64ObservableGaugeConfig struct { func NewFloat64ObservableGaugeConfig(opts ...Float64ObservableGaugeOption) Float64ObservableGaugeConfig { var config Float64ObservableGaugeConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyFloat64ObservableGauge(config) } return config diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/asyncint64.go b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/asyncint64.go index 66c971bd8a..9d45a4d416 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/asyncint64.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/asyncint64.go @@ -50,6 +50,9 @@ type Int64ObservableCounterConfig struct { func NewInt64ObservableCounterConfig(opts ...Int64ObservableCounterOption) Int64ObservableCounterConfig { var config Int64ObservableCounterConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyInt64ObservableCounter(config) } return config @@ -110,6 +113,9 @@ func NewInt64ObservableUpDownCounterConfig( ) Int64ObservableUpDownCounterConfig { var config Int64ObservableUpDownCounterConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyInt64ObservableUpDownCounter(config) } return config @@ -167,6 +173,9 @@ type Int64ObservableGaugeConfig struct { func NewInt64ObservableGaugeConfig(opts ...Int64ObservableGaugeOption) Int64ObservableGaugeConfig { var config Int64ObservableGaugeConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyInt64ObservableGauge(config) } return config diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/config.go b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/config.go index e42dd6e70a..889545e235 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/config.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/config.go @@ -42,11 +42,18 @@ type MeterOption interface { applyMeter(MeterConfig) MeterConfig } +type experimentalOption interface { + Experimental() +} + // NewMeterConfig creates a new MeterConfig and applies // all the given options. func NewMeterConfig(opts ...MeterOption) MeterConfig { var config MeterConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyMeter(config) } return config diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/doc.go b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/doc.go index f153745b00..794e1a8bae 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/doc.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/doc.go @@ -24,10 +24,10 @@ all instruments fall into two overlapping logical categories: asynchronous or synchronous, and int64 or float64. All synchronous instruments ([Int64Counter], [Int64UpDownCounter], -[Int64Histogram], [Float64Counter], [Float64UpDownCounter], and -[Float64Histogram]) are used to measure the operation and performance of source -code during the source code execution. These instruments only make measurements -when the source code they instrument is run. +[Int64Histogram], [Int64Gauge], [Float64Counter], [Float64UpDownCounter], +[Float64Histogram], and [Float64Gauge]) are used to measure the operation and +performance of source code during the source code execution. These instruments +only make measurements when the source code they instrument is run. All asynchronous instruments ([Int64ObservableCounter], [Int64ObservableUpDownCounter], [Int64ObservableGauge], @@ -50,9 +50,11 @@ incrementally increase in value. UpDownCounters ([Int64UpDownCounter], values that can increase and decrease. When more information needs to be conveyed about all the synchronous measurements made during a collection cycle, a Histogram ([Int64Histogram] and [Float64Histogram]) should be used. Finally, -when just the most recent measurement needs to be conveyed about an -asynchronous measurement, a Gauge ([Int64ObservableGauge] and -[Float64ObservableGauge]) should be used. +when just the most recent measurement needs to be conveyed, a Gauge +([Int64Gauge], [Float64Gauge], [Int64ObservableGauge], and +[Float64ObservableGauge]) should be used: the synchronous variants record an +instantaneous value at a specific point in code, while the observable variants +sample the value via a callback once per collection cycle. See the [OpenTelemetry documentation] for more information about instruments and their intended use. @@ -80,11 +82,11 @@ Measurements are made by recording values and information about the values with an instrument. How these measurements are recorded depends on the instrument. Measurements for synchronous instruments ([Int64Counter], [Int64UpDownCounter], -[Int64Histogram], [Float64Counter], [Float64UpDownCounter], and -[Float64Histogram]) are recorded using the instrument methods directly. All -counter instruments have an Add method that is used to measure an increment -value, and all histogram instruments have a Record method to measure a data -point. +[Int64Histogram], [Int64Gauge], [Float64Counter], [Float64UpDownCounter], +[Float64Histogram], and [Float64Gauge]) are recorded using the instrument +methods directly. All counter instruments have an Add method that is used to +measure an increment value, and all histogram and synchronous gauge +instruments have a Record method to measure a data point. Asynchronous instruments ([Int64ObservableCounter], [Int64ObservableUpDownCounter], [Int64ObservableGauge], @@ -107,6 +109,31 @@ respectively): If the criteria are not met, use the RegisterCallback method of the [Meter] that created the instrument to register a [Callback]. +# Avoiding Expensive Computations + +All synchronous instruments provide an Enabled method that reports whether the +instrument will process measurements for the given context. When no SDK is +registered or the instrument is otherwise disabled, Enabled returns false. This +can be used to avoid expensive measurement work when a measurement will not be +recorded: + + if counter.Enabled(ctx) { + counter.Add(ctx, 1, metric.WithAttributes(expensiveAttributes()...)) + } + +This is especially valuable when computing attributes is expensive. +[WithAttributes] performs non-trivial work on every call to build an +[attribute.Set] from the provided attributes, and that work is wasted if the +measurement is not recorded. + +For performance sensitive code where the same attribute set is used repeatedly, +prefer [WithAttributeSet]. It accepts a pre-built [attribute.Set], letting you +pay the construction cost once and reuse it across many measurements: + + attrs := attribute.NewSet(attribute.String("key", "val")) + // ... later, on each call: + counter.Add(ctx, 1, metric.WithAttributeSet(attrs)) + # API Implementations This package does not conform to the standard Go versioning policy, all of its diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/instrument.go b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/instrument.go index 9f48d5f117..2e79ab5683 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/instrument.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/instrument.go @@ -3,7 +3,9 @@ package metric // import "go.opentelemetry.io/otel/metric" -import "go.opentelemetry.io/otel/attribute" +import ( + "go.opentelemetry.io/otel/attribute" +) // Observable is used as a grouping mechanism for all instruments that are // updated within a Callback. @@ -228,6 +230,9 @@ type AddConfig struct { func NewAddConfig(opts []AddOption) AddConfig { config := AddConfig{attrs: *attribute.EmptySet()} for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyAdd(config) } return config @@ -253,6 +258,9 @@ type RecordConfig struct { func NewRecordConfig(opts []RecordOption) RecordConfig { config := RecordConfig{attrs: *attribute.EmptySet()} for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyRecord(config) } return config @@ -278,6 +286,9 @@ type ObserveConfig struct { func NewObserveConfig(opts []ObserveOption) ObserveConfig { config := ObserveConfig{attrs: *attribute.EmptySet()} for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyObserve(config) } return config @@ -299,6 +310,10 @@ type attrOpt struct { set attribute.Set } +func (o *attrOpt) Set(set attribute.Set) { + o.set = set +} + // mergeSets returns the union of keys between a and b. Any duplicate keys will // use the value associated with b. func mergeSets(a, b attribute.Set) attribute.Set { @@ -311,7 +326,7 @@ func mergeSets(a, b attribute.Set) attribute.Set { return attribute.NewSet(merged...) } -func (o attrOpt) applyAdd(c AddConfig) AddConfig { +func (o *attrOpt) applyAdd(c AddConfig) AddConfig { switch { case o.set.Len() == 0: case c.attrs.Len() == 0: @@ -322,7 +337,7 @@ func (o attrOpt) applyAdd(c AddConfig) AddConfig { return c } -func (o attrOpt) applyRecord(c RecordConfig) RecordConfig { +func (o *attrOpt) applyRecord(c RecordConfig) RecordConfig { switch { case o.set.Len() == 0: case c.attrs.Len() == 0: @@ -333,7 +348,7 @@ func (o attrOpt) applyRecord(c RecordConfig) RecordConfig { return c } -func (o attrOpt) applyObserve(c ObserveConfig) ObserveConfig { +func (o *attrOpt) applyObserve(c ObserveConfig) ObserveConfig { switch { case o.set.Len() == 0: case c.attrs.Len() == 0: @@ -350,8 +365,14 @@ func (o attrOpt) applyObserve(c ObserveConfig) ObserveConfig { // If multiple WithAttributeSet or WithAttributes options are passed the // attributes will be merged together in the order they are passed. Attributes // with duplicate keys will use the last value passed. +// +// Experimental: The returned option may implement +// [go.opentelemetry.io/otel/metric/x.Settable][attribute.Set], which can be +// used to replace the option's attribute set and reuse the option without +// additional allocations. This behavior is experimental and may be changed or +// removed in a future release without notice. func WithAttributeSet(attributes attribute.Set) MeasurementOption { - return attrOpt{set: attributes} + return &attrOpt{set: attributes} } // WithAttributes converts attributes into an attribute Set and sets the Set to @@ -369,8 +390,14 @@ func WithAttributeSet(attributes attribute.Set) MeasurementOption { // // See [WithAttributeSet] for information about how multiple WithAttributes are // merged. +// +// Experimental: The returned option may implement +// [go.opentelemetry.io/otel/metric/x.Settable][[]attribute.KeyValue], which can be +// used to replace the option's attributes and reuse the option without +// additional allocations. This behavior is experimental and may be changed or +// removed in a future release without notice. func WithAttributes(attributes ...attribute.KeyValue) MeasurementOption { cp := make([]attribute.KeyValue, len(attributes)) copy(cp, attributes) - return attrOpt{set: attribute.NewSet(cp...)} + return &attrOpt{set: attribute.NewSet(cp...)} } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/syncfloat64.go b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/syncfloat64.go index abb3051d7f..2101f686ae 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/syncfloat64.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/syncfloat64.go @@ -51,6 +51,9 @@ type Float64CounterConfig struct { func NewFloat64CounterConfig(opts ...Float64CounterOption) Float64CounterConfig { var config Float64CounterConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyFloat64Counter(config) } return config @@ -116,6 +119,9 @@ type Float64UpDownCounterConfig struct { func NewFloat64UpDownCounterConfig(opts ...Float64UpDownCounterOption) Float64UpDownCounterConfig { var config Float64UpDownCounterConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyFloat64UpDownCounter(config) } return config @@ -182,6 +188,9 @@ type Float64HistogramConfig struct { func NewFloat64HistogramConfig(opts ...Float64HistogramOption) Float64HistogramConfig { var config Float64HistogramConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyFloat64Histogram(config) } return config @@ -251,6 +260,9 @@ type Float64GaugeConfig struct { func NewFloat64GaugeConfig(opts ...Float64GaugeOption) Float64GaugeConfig { var config Float64GaugeConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyFloat64Gauge(config) } return config diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/syncint64.go b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/syncint64.go index 5bbfaf0397..425c1a0d51 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/metric/syncint64.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/metric/syncint64.go @@ -51,6 +51,9 @@ type Int64CounterConfig struct { func NewInt64CounterConfig(opts ...Int64CounterOption) Int64CounterConfig { var config Int64CounterConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyInt64Counter(config) } return config @@ -116,6 +119,9 @@ type Int64UpDownCounterConfig struct { func NewInt64UpDownCounterConfig(opts ...Int64UpDownCounterOption) Int64UpDownCounterConfig { var config Int64UpDownCounterConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyInt64UpDownCounter(config) } return config @@ -182,6 +188,9 @@ type Int64HistogramConfig struct { func NewInt64HistogramConfig(opts ...Int64HistogramOption) Int64HistogramConfig { var config Int64HistogramConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyInt64Histogram(config) } return config @@ -251,6 +260,9 @@ type Int64GaugeConfig struct { func NewInt64GaugeConfig(opts ...Int64GaugeOption) Int64GaugeConfig { var config Int64GaugeConfig for _, o := range opts { + if _, ok := o.(experimentalOption); ok { + continue + } config = o.applyInt64Gauge(config) } return config diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/propagation/baggage.go b/tests/e2e/vendor/go.opentelemetry.io/otel/propagation/baggage.go index 2ecca3fed1..d81b709a2c 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/propagation/baggage.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/propagation/baggage.go @@ -5,6 +5,9 @@ package propagation // import "go.opentelemetry.io/otel/propagation" import ( "context" + "errors" + "fmt" + "sync" "go.opentelemetry.io/otel/baggage" "go.opentelemetry.io/otel/internal/errorhandler" @@ -13,11 +16,18 @@ import ( const ( baggageHeader = "baggage" + maxParseErrors = 5 + // W3C Baggage specification limits. // https://www.w3.org/TR/baggage/#limits - maxMembers = 64 + maxMembers = 64 + maxBytesPerBaggageString = 8192 ) +// handleExtractErrOnce limits error reporting for attacker-controlled baggage headers +// to one process-wide emission, preventing repeated extraction from flooding logs. +var handleExtractErrOnce sync.Once + // Baggage is a propagator that supports the W3C Baggage format. // // This propagates user-defined baggage associated with a trace. The complete @@ -57,7 +67,9 @@ func extractSingleBaggage(parent context.Context, carrier TextMapCarrier) contex bag, err := baggage.Parse(bStr) if err != nil { - errorhandler.GetErrorHandler().Handle(err) + handleExtractErrOnce.Do(func() { + errorhandler.GetErrorHandler().Handle(err) + }) } if bag.Len() == 0 { return parent @@ -72,24 +84,60 @@ func extractMultiBaggage(parent context.Context, carrier ValuesGetter) context.C } var members []baggage.Member - for _, bStr := range bVals { - currBag, err := baggage.Parse(bStr) - if err != nil { - errorhandler.GetErrorHandler().Handle(err) + var totalBytes int + var parseErrors int + var truncateErr error + for i, bStr := range bVals { + if i > 0 { + totalBytes++ // comma separator between combined header values } - if currBag.Len() == 0 { - continue + totalBytes += len(bStr) + if totalBytes > maxBytesPerBaggageString { + // Per the W3C Baggage spec, the byte limit applies to the + // combination of all baggage headers, not each header + // individually. Mirror the single-header behavior of + // reporting the error and returning the parent context + // with no baggage attached. + handleExtractErrOnce.Do(func() { + errorhandler.GetErrorHandler().Handle(fmt.Errorf( + "baggage: aggregate header size %d exceeds %d byte limit", + totalBytes, + maxBytesPerBaggageString, + )) + }) + return parent } - members = append(members, currBag.Members()...) - if len(members) >= maxMembers { - break + + // If members exceed the limit, stop parsing baggage. + if len(members) <= maxMembers { + currBag, err := baggage.Parse(bStr) + if err != nil { + parseErrors++ + if parseErrors <= maxParseErrors { + truncateErr = errors.Join(truncateErr, err) + } + } + if currBag.Len() == 0 { + continue + } + members = append(members, currBag.Members()...) } } + if dropped := parseErrors - maxParseErrors; dropped > 0 { + truncateErr = errors.Join(truncateErr, fmt.Errorf("and %d more error(s)", dropped)) + } + b, err := baggage.New(members...) if err != nil { - errorhandler.GetErrorHandler().Handle(err) + truncateErr = errors.Join(truncateErr, err) } + if truncateErr != nil { + handleExtractErrOnce.Do(func() { + errorhandler.GetErrorHandler().Handle(truncateErr) + }) + } + if b.Len() == 0 { return parent } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/propagation/trace_context.go b/tests/e2e/vendor/go.opentelemetry.io/otel/propagation/trace_context.go index 271ab71f1a..11f404deb7 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/propagation/trace_context.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/propagation/trace_context.go @@ -46,8 +46,8 @@ func (TraceContext) Inject(ctx context.Context, carrier TextMapCarrier) { carrier.Set(tracestateHeader, ts) } - // Clear all flags other than the trace-context supported sampling bit. - flags := sc.TraceFlags() & trace.FlagsSampled + // Preserve only the spec-defined flags: sampled (0x01) and random (0x02). + flags := sc.TraceFlags() & (trace.FlagsSampled | trace.FlagsRandom) var sb strings.Builder sb.Grow(2 + 32 + 16 + 2 + 3) @@ -104,14 +104,13 @@ func (TraceContext) extract(carrier TextMapCarrier) trace.SpanContext { if !extractPart(opts[:], &h, 2) { return trace.SpanContext{} } - if version == 0 && (h != "" || opts[0] > 2) { - // version 0 not allow extra - // version 0 not allow other flag + if version == 0 && (h != "" || opts[0] > 3) { + // version 0 does not allow extra fields or reserved flag bits. return trace.SpanContext{} } - // Clear all flags other than the trace-context supported sampling bit. - scc.TraceFlags = trace.TraceFlags(opts[0]) & trace.FlagsSampled // nolint:gosec // slice size already checked. + scc.TraceFlags = trace.TraceFlags(opts[0]) & //nolint:gosec // slice size already checked. + (trace.FlagsSampled | trace.FlagsRandom) // Ignore the error returned here. Failure to parse tracestate MUST NOT // affect the parsing of traceparent according to the W3C tracecontext diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/requirements.txt b/tests/e2e/vendor/go.opentelemetry.io/otel/requirements.txt index 1bb55fb1cc..7c541dee79 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/requirements.txt +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/requirements.txt @@ -1 +1 @@ -codespell==2.4.1 +codespell==2.4.2 diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go index bfeb73e811..694b64a318 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go @@ -37,3 +37,18 @@ var Observability = newFeature( return "", false }, ) + +// PerSeriesStartTimestamps is an experimental feature flag that determines if the SDK +// uses the new Start Timestamps specification. +// +// To enable this feature set the OTEL_GO_X_PER_SERIES_START_TIMESTAMPS environment variable +// to the case-insensitive string value of "true". +var PerSeriesStartTimestamps = newFeature( + []string{"PER_SERIES_START_TIMESTAMPS"}, + func(v string) (bool, bool) { + if strings.EqualFold(v, "true") { + return true, true + } + return false, false + }, +) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go index 8a7bb330bf..28823edd53 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go @@ -13,7 +13,7 @@ import ( "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/sdk" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" ) type ( @@ -79,7 +79,7 @@ func (sd stringDetector) Detect(context.Context) (*Resource, error) { } a := sd.K.String(value) if !a.Valid() { - return nil, fmt.Errorf("invalid attribute: %q -> %q", a.Key, a.Value.Emit()) + return nil, fmt.Errorf("invalid attribute: %q -> %q", a.Key, a.Value.String()) } return NewWithAttributes(sd.schemaURL, sd.K.String(value)), nil } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/config.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/config.go index 0d6e213d92..a3d647d92c 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/config.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/config.go @@ -193,3 +193,11 @@ func WithContainer() Option { func WithContainerID() Option { return WithDetectors(cgroupContainerIDDetector{}) } + +// WithService adds all the Service attributes to the configured Resource. +func WithService() Option { + return WithDetectors( + defaultServiceInstanceIDDetector{}, + defaultServiceNameDetector{}, + ) +} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/container.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/container.go index a19b39def8..ce03e24c41 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/container.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/container.go @@ -11,7 +11,7 @@ import ( "os" "regexp" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" ) type containerIDProvider func() (string, error) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/env.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/env.go index c49157224e..ac5691c08d 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/env.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/env.go @@ -12,7 +12,7 @@ import ( "go.opentelemetry.io/otel" "go.opentelemetry.io/otel/attribute" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" ) const ( diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go index 023621ba76..cb38fa1a8b 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go @@ -8,7 +8,7 @@ import ( "errors" "strings" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" ) type hostIDProvider func() (string, error) @@ -31,19 +31,19 @@ type hostIDReaderBSD struct { readFile fileReader } -// read attempts to read the machine-id from /etc/hostid. If not found it will -// execute `kenv -q smbios.system.uuid`. If neither location yields an id an -// error will be returned. +// read attempts to read the machine-id from /etc/hostid. +// If not found it will execute: /bin/kenv -q smbios.system.uuid. +// If neither location yields an id an error will be returned. func (r *hostIDReaderBSD) read() (string, error) { if result, err := r.readFile("/etc/hostid"); err == nil { return strings.TrimSpace(result), nil } - if result, err := r.execCommand("kenv", "-q", "smbios.system.uuid"); err == nil { + if result, err := r.execCommand("/bin/kenv", "-q", "smbios.system.uuid"); err == nil { return strings.TrimSpace(result), nil } - return "", errors.New("host id not found in: /etc/hostid or kenv") + return "", errors.New("host id not found in: /etc/hostid or /bin/kenv") } // hostIDReaderDarwin implements hostIDReader. diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go index d9e5d1a8ff..e239ead028 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go @@ -5,10 +5,13 @@ package resource // import "go.opentelemetry.io/otel/sdk/resource" -import "os/exec" +import ( + "context" + "os/exec" +) func execCommand(name string, arg ...string) (string, error) { - cmd := exec.Command(name, arg...) + cmd := exec.CommandContext(context.Background(), name, arg...) b, err := cmd.Output() if err != nil { return "", err diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go index 6354b35602..c95d87685c 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go @@ -8,7 +8,7 @@ package resource // import "go.opentelemetry.io/otel/sdk/resource" import "os" func readFile(filename string) (string, error) { - b, err := os.ReadFile(filename) + b, err := os.ReadFile(filename) // nolint:gosec // false positive if err != nil { return "", err } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os.go index 534809e217..4c0def4148 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os.go @@ -8,7 +8,7 @@ import ( "strings" "go.opentelemetry.io/otel/attribute" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" ) type osDescriptionProvider func() (string, error) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go index 6c50ab6867..1cd87c3983 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go @@ -55,7 +55,8 @@ func uname() (string, error) { return "", err } - return fmt.Sprintf("%s %s %s %s %s", + return fmt.Sprintf( + "%s %s %s %s %s", unix.ByteSliceToString(utsName.Sysname[:]), unix.ByteSliceToString(utsName.Nodename[:]), unix.ByteSliceToString(utsName.Release[:]), diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go index a6a5a53c0e..ebd50826d6 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go @@ -16,7 +16,8 @@ import ( // resembles the one displayed by the Version Reporter Applet (winver.exe). func platformOSDescription() (string, error) { k, err := registry.OpenKey( - registry.LOCAL_MACHINE, `SOFTWARE\Microsoft\Windows NT\CurrentVersion`, registry.QUERY_VALUE) + registry.LOCAL_MACHINE, `SOFTWARE\Microsoft\Windows NT\CurrentVersion`, registry.QUERY_VALUE, + ) if err != nil { return "", err } @@ -37,7 +38,8 @@ func platformOSDescription() (string, error) { displayVersion += " " } - return fmt.Sprintf("%s %s(%s) [Version %s.%s.%s.%s]", + return fmt.Sprintf( + "%s %s(%s) [Version %s.%s.%s.%s]", productName, displayVersion, releaseID, diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/process.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/process.go index a1189553c7..b015f8233c 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/process.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/process.go @@ -11,7 +11,7 @@ import ( "path/filepath" "runtime" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" ) type ( @@ -164,7 +164,8 @@ func (processRuntimeVersionDetector) Detect(context.Context) (*Resource, error) // Detect returns a *Resource that describes the runtime of this process. func (processRuntimeDescriptionDetector) Detect(context.Context) (*Resource, error) { runtimeDescription := fmt.Sprintf( - "go version %s %s/%s", runtimeVersion(), runtimeOS(), runtimeArch()) + "go version %s %s/%s", runtimeVersion(), runtimeOS(), runtimeArch(), + ) return NewWithAttributes( semconv.SchemaURL, diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go index 28e1e4f7eb..f715be53ed 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go @@ -232,6 +232,15 @@ func Empty() *Resource { // Default returns an instance of Resource with a default // "service.name" and OpenTelemetrySDK attributes. func Default() *Resource { + return DefaultWithContext(context.Background()) +} + +// DefaultWithContext returns an instance of Resource with a default +// "service.name" and OpenTelemetrySDK attributes. +// +// If the default resource has already been initialized, the provided ctx +// is ignored and the cached resource is returned. +func DefaultWithContext(ctx context.Context) *Resource { defaultResourceOnce.Do(func() { var err error defaultDetectors := []Detector{ @@ -243,7 +252,7 @@ func Default() *Resource { defaultDetectors = append([]Detector{defaultServiceInstanceIDDetector{}}, defaultDetectors...) } defaultResource, err = Detect( - context.Background(), + ctx, defaultDetectors..., ) if err != nil { @@ -260,8 +269,14 @@ func Default() *Resource { // Environment returns an instance of Resource with attributes // extracted from the OTEL_RESOURCE_ATTRIBUTES environment variable. func Environment() *Resource { + return EnvironmentWithContext(context.Background()) +} + +// EnvironmentWithContext returns an instance of Resource with attributes +// extracted from the OTEL_RESOURCE_ATTRIBUTES environment variable. +func EnvironmentWithContext(ctx context.Context) *Resource { detector := &fromEnv{} - resource, err := detector.Detect(context.Background()) + resource, err := detector.Detect(ctx) if err != nil { otel.Handle(err) } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go index 7d15cbb9c0..f9f2a6c2c8 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go @@ -68,7 +68,7 @@ type batchSpanProcessor struct { o BatchSpanProcessorOptions queue chan ReadOnlySpan - dropped uint32 + dropped atomic.Uint32 inst *observ.BSP @@ -123,12 +123,10 @@ func NewBatchSpanProcessor(exporter SpanExporter, options ...BatchSpanProcessorO otel.Handle(err) } - bsp.stopWait.Add(1) - go func() { - defer bsp.stopWait.Done() + bsp.stopWait.Go(func() { bsp.processQueue() bsp.drainQueue() - }() + }) return bsp } @@ -165,19 +163,21 @@ func (bsp *batchSpanProcessor) Shutdown(ctx context.Context) error { bsp.stopOnce.Do(func() { bsp.stopped.Store(true) wait := make(chan struct{}) + // exportErr is written by the goroutine before closing wait. + // It is only read in the <-wait case, so there is no race. + var exportErr error go func() { close(bsp.stopCh) bsp.stopWait.Wait() if bsp.e != nil { - if err := bsp.e.Shutdown(ctx); err != nil { - otel.Handle(err) - } + exportErr = bsp.e.Shutdown(ctx) } close(wait) }() - // Wait until the wait group is done or the context is cancelled + // Wait until the channel is ready or the context is canceled. select { case <-wait: + err = exportErr case <-ctx.Done(): err = ctx.Err() } @@ -295,7 +295,7 @@ func (bsp *batchSpanProcessor) exportSpans(ctx context.Context) error { } if l := len(bsp.batch); l > 0 { - global.Debug("exporting spans", "count", len(bsp.batch), "total_dropped", atomic.LoadUint32(&bsp.dropped)) + global.Debug("exporting spans", "count", len(bsp.batch), "total_dropped", bsp.dropped.Load()) if bsp.inst != nil { bsp.inst.Processed(ctx, int64(l)) } @@ -423,7 +423,7 @@ func (bsp *batchSpanProcessor) enqueueDrop(ctx context.Context, sd ReadOnlySpan) case bsp.queue <- sd: return true default: - atomic.AddUint32(&bsp.dropped, 1) + bsp.dropped.Add(1) if bsp.inst != nil { bsp.inst.ProcessedQueueFull(ctx, 1) } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go index d9cfba0b45..c725ebf372 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go @@ -13,8 +13,8 @@ import ( "go.opentelemetry.io/otel/metric" "go.opentelemetry.io/otel/sdk" "go.opentelemetry.io/otel/sdk/internal/x" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" - "go.opentelemetry.io/otel/semconv/v1.39.0/otelconv" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + "go.opentelemetry.io/otel/semconv/v1.41.0/otelconv" ) const ( diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go index 8afd052679..cf4b5d481f 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go @@ -13,8 +13,8 @@ import ( "go.opentelemetry.io/otel/metric" "go.opentelemetry.io/otel/sdk" "go.opentelemetry.io/otel/sdk/internal/x" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" - "go.opentelemetry.io/otel/semconv/v1.39.0/otelconv" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + "go.opentelemetry.io/otel/semconv/v1.41.0/otelconv" ) var measureAttrsPool = sync.Pool{ @@ -86,6 +86,7 @@ func (ssp *SSP) addOption(err error) []metric.AddOption { } attrs := measureAttrsPool.Get().(*[]attribute.KeyValue) defer func() { + clear(*attrs) *attrs = (*attrs)[:0] // reset the slice for reuse measureAttrsPool.Put(attrs) }() diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go index 13a2db2969..5aae89e883 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go @@ -13,7 +13,7 @@ import ( "go.opentelemetry.io/otel/metric" "go.opentelemetry.io/otel/sdk" "go.opentelemetry.io/otel/sdk/internal/x" - "go.opentelemetry.io/otel/semconv/v1.39.0/otelconv" + "go.opentelemetry.io/otel/semconv/v1.41.0/otelconv" "go.opentelemetry.io/otel/trace" ) @@ -55,6 +55,10 @@ func NewTracer() (Tracer, error) { func (t Tracer) Enabled() bool { return t.enabled } func (t Tracer) SpanStarted(ctx context.Context, psc trace.SpanContext, span trace.Span) { + if !t.started.Enabled(ctx) { + return + } + key := spanStartedKey{ parent: parentStateNoParent, sampling: samplingStateDrop, @@ -89,6 +93,10 @@ func (t Tracer) SpanEnded(ctx context.Context, span trace.Span) { } func (t Tracer) spanLive(ctx context.Context, value int64, span trace.Span) { + if !t.live.Enabled(ctx) { + return + } + key := spanLiveKey{sampled: span.SpanContext().IsSampled()} opts := spanLiveOpts[key] t.live.Add(ctx, value, opts...) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go index d2cf4ebd3e..9d90c2eda5 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go @@ -5,6 +5,7 @@ package trace // import "go.opentelemetry.io/otel/sdk/trace" import ( "context" + "errors" "fmt" "sync" "sync/atomic" @@ -81,6 +82,10 @@ type TracerProvider struct { var _ trace.TracerProvider = &TracerProvider{} +type experimentalOption interface { + Experimental() +} + // NewTracerProvider returns a new and configured TracerProvider. // // By default the returned TracerProvider is configured with: @@ -98,6 +103,9 @@ func NewTracerProvider(opts ...TracerProviderOption) *TracerProvider { o = applyTracerProviderEnvConfigs(o) for _, opt := range opts { + if _, ok := opt.(experimentalOption); ok { + continue + } o = opt.apply(o) } @@ -262,6 +270,7 @@ func (p *TracerProvider) ForceFlush(ctx context.Context) error { return nil } + var err error for _, sps := range spss { select { case <-ctx.Done(): @@ -269,11 +278,9 @@ func (p *TracerProvider) ForceFlush(ctx context.Context) error { default: } - if err := sps.sp.ForceFlush(ctx); err != nil { - return err - } + err = errors.Join(err, sps.sp.ForceFlush(ctx)) } - return nil + return err } // Shutdown shuts down TracerProvider. All registered span processors are shut down @@ -303,21 +310,14 @@ func (p *TracerProvider) Shutdown(ctx context.Context) error { sps.state.Do(func() { err = sps.sp.Shutdown(ctx) }) - if err != nil { - if retErr == nil { - retErr = err - } else { - // Poor man's list of errors - retErr = fmt.Errorf("%w; %w", retErr, err) - } - } + retErr = errors.Join(retErr, err) } p.spanProcessors.Store(&spanProcessorStates{}) return retErr } func (p *TracerProvider) getSpanProcessors() spanProcessorStates { - return *(p.spanProcessors.Load()) + return *p.spanProcessors.Load() } // TracerProviderOption configures a TracerProvider. diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go index 81c5060ad6..5a4c74318b 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go @@ -69,17 +69,17 @@ type traceIDRatioSampler struct { } func (ts traceIDRatioSampler) ShouldSample(p SamplingParameters) SamplingResult { - psc := trace.SpanContextFromContext(p.ParentContext) + state := trace.SpanContextFromContext(p.ParentContext).TraceState() x := binary.BigEndian.Uint64(p.TraceID[8:16]) >> 1 if x < ts.traceIDUpperBound { return SamplingResult{ Decision: RecordAndSample, - Tracestate: psc.TraceState(), + Tracestate: state, } } return SamplingResult{ Decision: Drop, - Tracestate: psc.TraceState(), + Tracestate: state, } } @@ -94,12 +94,20 @@ func (ts traceIDRatioSampler) Description() string { // //nolint:revive // revive complains about stutter of `trace.TraceIDRatioBased` func TraceIDRatioBased(fraction float64) Sampler { + // Cannot use AlwaysSample() and NeverSample(), must return spec-compliant descriptions. + // See https://opentelemetry.io/docs/specs/otel/trace/sdk/#traceidratiobased. if fraction >= 1 { - return AlwaysSample() + return predeterminedSampler{ + description: "TraceIDRatioBased{1}", + decision: RecordAndSample, + } } if fraction <= 0 { - fraction = 0 + return predeterminedSampler{ + description: "TraceIDRatioBased{0}", + decision: Drop, + } } return &traceIDRatioSampler{ @@ -118,6 +126,7 @@ func (alwaysOnSampler) ShouldSample(p SamplingParameters) SamplingResult { } func (alwaysOnSampler) Description() string { + // https://opentelemetry.io/docs/specs/otel/trace/sdk/#alwayson return "AlwaysOnSampler" } @@ -139,6 +148,7 @@ func (alwaysOffSampler) ShouldSample(p SamplingParameters) SamplingResult { } func (alwaysOffSampler) Description() string { + // https://opentelemetry.io/docs/specs/otel/trace/sdk/#alwaysoff return "AlwaysOffSampler" } @@ -147,6 +157,22 @@ func NeverSample() Sampler { return alwaysOffSampler{} } +type predeterminedSampler struct { + description string + decision SamplingDecision +} + +func (s predeterminedSampler) ShouldSample(p SamplingParameters) SamplingResult { + return SamplingResult{ + Decision: s.decision, + Tracestate: trace.SpanContextFromContext(p.ParentContext).TraceState(), + } +} + +func (s predeterminedSampler) Description() string { + return s.description +} + // ParentBased returns a sampler decorator which behaves differently, // based on the parent of the span. If the span has no parent, // the decorated sampler is used to make sampling decision. If the span has @@ -271,8 +297,9 @@ func (pb parentBased) ShouldSample(p SamplingParameters) SamplingResult { } func (pb parentBased) Description() string { - return fmt.Sprintf("ParentBased{root:%s,remoteParentSampled:%s,"+ - "remoteParentNotSampled:%s,localParentSampled:%s,localParentNotSampled:%s}", + return fmt.Sprintf( + "ParentBased{root:%s,remoteParentSampled:%s,"+ + "remoteParentNotSampled:%s,localParentSampled:%s,localParentNotSampled:%s}", pb.root.Description(), pb.config.remoteParentSampled.Description(), pb.config.remoteParentNotSampled.Description(), diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/span.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/span.go index d466610591..d1d9af29d7 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/span.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/span.go @@ -20,7 +20,7 @@ import ( "go.opentelemetry.io/otel/internal/global" "go.opentelemetry.io/otel/sdk/instrumentation" "go.opentelemetry.io/otel/sdk/resource" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" "go.opentelemetry.io/otel/trace" "go.opentelemetry.io/otel/trace/embedded" ) @@ -346,10 +346,12 @@ func (s *recordingSpan) addOverCapAttrs(limit int, attrs []attribute.KeyValue) { } } -// truncateAttr returns a truncated version of attr. Only string and string -// slice attribute values are truncated. String values are truncated to at -// most a length of limit. Each string slice value is truncated in this fashion -// (the slice length itself is unaffected). +// truncateAttr returns a truncated version of attr. Only string, string +// slice, byte slice, and slice attribute values are truncated. String values are truncated +// to at most a length of limit. Each string slice value is truncated in this +// fashion (the slice length itself is unaffected), and byte slice values are truncated to at most +// limit bytes. For slice attribute values, the limit is applied to each +// element recursively. // // No truncation is performed for a negative limit. func truncateAttr(limit int, attr attribute.KeyValue) attribute.KeyValue { @@ -366,10 +368,95 @@ func truncateAttr(limit int, attr attribute.KeyValue) attribute.KeyValue { v[i] = truncate(limit, v[i]) } return attr.Key.StringSlice(v) + case attribute.BYTESLICE: + v := attr.Value.AsString() + if len(v) > limit { + return attr.Key.ByteSlice([]byte(v[:limit])) + } + return attr + case attribute.SLICE: + v := attr.Value.AsSlice() + if !slices.ContainsFunc(v, func(e attribute.Value) bool { return needsTruncation(limit, e) }) { + return attr + } + newV := make([]attribute.Value, len(v)) + for i, elem := range v { + newV[i] = truncateValue(limit, elem) + } + return attr.Key.Slice(newV...) } return attr } +// truncateValue returns a truncated version of v. Only string, string slice, +// byte slice, and (recursively) slice values are modified. +// +// No truncation is performed for a negative limit. +func truncateValue(limit int, v attribute.Value) attribute.Value { + switch v.Type() { + case attribute.STRING: + return attribute.StringValue(truncate(limit, v.AsString())) + case attribute.STRINGSLICE: + ss := v.AsStringSlice() + for i := range ss { + ss[i] = truncate(limit, ss[i]) + } + return attribute.StringSliceValue(ss) + + case attribute.BYTESLICE: + // len(v.AsString()) is identical to len(v.AsByteSlice()) but + // avoids allocating the full slice before truncation. + s := v.AsString() + if limit >= 0 && len(s) > limit { + return attribute.ByteSliceValue([]byte(s[:limit])) + } + case attribute.SLICE: + sl := v.AsSlice() + if !slices.ContainsFunc(sl, func(e attribute.Value) bool { return needsTruncation(limit, e) }) { + return v + } + newSl := make([]attribute.Value, len(sl)) + for i, elem := range sl { + newSl[i] = truncateValue(limit, elem) + } + return attribute.SliceValue(newSl...) + } + return v +} + +// stringNeedsTruncation reports whether s would be modified by truncate for the +// given limit. +func stringNeedsTruncation(limit int, s string) bool { + if limit < 0 || len(s) <= limit { + return false + } + return utf8.RuneCountInString(s) > limit || !utf8.ValidString(s) +} + +// needsTruncation reports whether v would be modified by truncateValue for the +// given limit. +func needsTruncation(limit int, v attribute.Value) bool { + switch v.Type() { + case attribute.STRING: + return stringNeedsTruncation(limit, v.AsString()) + case attribute.BYTESLICE: + // len(v.AsString()) is identical to len(v.AsByteSlice()) but + // avoids memory allocation. + if limit >= 0 && len(v.AsString()) > limit { + return true + } + case attribute.STRINGSLICE: + for _, s := range v.AsStringSlice() { + if stringNeedsTruncation(limit, s) { + return true + } + } + case attribute.SLICE: + return slices.ContainsFunc(v.AsSlice(), func(e attribute.Value) bool { return needsTruncation(limit, e) }) + } + return false +} + // truncate returns a truncated version of s such that it contains less than // the limit number of characters. Truncation is applied by returning the limit // number of valid characters contained in s. diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go index 321d974305..348ee0e808 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go @@ -35,8 +35,10 @@ const ( type SpanLimits struct { // AttributeValueLengthLimit is the maximum allowed attribute value length. // - // This limit only applies to string and string slice attribute values. - // Any string longer than this value will be truncated to this length. + // This limit only applies to string, string slice, byte slice, and slice attribute + // values. Any string and byte slice longer than this value will be truncated to this + // length. For slice attribute values, the limit is applied to each string and byte slice + // element recursively. // // Setting this to a negative value means no limit is applied. AttributeValueLengthLimit int diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/version.go b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/version.go index b5497c2816..218dce1f56 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/version.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/sdk/version.go @@ -6,5 +6,5 @@ package sdk // import "go.opentelemetry.io/otel/sdk" // Version is the current release version of the OpenTelemetry SDK in use. func Version() string { - return "1.40.0" + return "1.44.0" } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/README.md b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/README.md deleted file mode 100644 index 87b842c5d1..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/README.md +++ /dev/null @@ -1,3 +0,0 @@ -# Semconv v1.17.0 - -[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/semconv/v1.17.0)](https://pkg.go.dev/go.opentelemetry.io/otel/semconv/v1.17.0) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/doc.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/doc.go deleted file mode 100644 index e087c9c04d..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/doc.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -// Package semconv implements OpenTelemetry semantic conventions. -// -// OpenTelemetry semantic conventions are agreed standardized naming -// patterns for OpenTelemetry things. This package represents the conventions -// as of the v1.17.0 version of the OpenTelemetry specification. -package semconv // import "go.opentelemetry.io/otel/semconv/v1.17.0" diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/event.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/event.go deleted file mode 100644 index c7b804bbe2..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/event.go +++ /dev/null @@ -1,188 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -// Code generated from semantic convention specification. DO NOT EDIT. - -package semconv // import "go.opentelemetry.io/otel/semconv/v1.17.0" - -import "go.opentelemetry.io/otel/attribute" - -// This semantic convention defines the attributes used to represent a feature -// flag evaluation as an event. -const ( - // FeatureFlagKeyKey is the attribute Key conforming to the - // "feature_flag.key" semantic conventions. It represents the unique - // identifier of the feature flag. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'logo-color' - FeatureFlagKeyKey = attribute.Key("feature_flag.key") - - // FeatureFlagProviderNameKey is the attribute Key conforming to the - // "feature_flag.provider_name" semantic conventions. It represents the - // name of the service provider that performs the flag evaluation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: stable - // Examples: 'Flag Manager' - FeatureFlagProviderNameKey = attribute.Key("feature_flag.provider_name") - - // FeatureFlagVariantKey is the attribute Key conforming to the - // "feature_flag.variant" semantic conventions. It represents the sHOULD be - // a semantic identifier for a value. If one is unavailable, a stringified - // version of the value can be used. - // - // Type: string - // RequirementLevel: Recommended - // Stability: stable - // Examples: 'red', 'true', 'on' - // Note: A semantic identifier, commonly referred to as a variant, provides - // a means - // for referring to a value without including the value itself. This can - // provide additional context for understanding the meaning behind a value. - // For example, the variant `red` maybe be used for the value `#c05543`. - // - // A stringified version of the value can be used in situations where a - // semantic identifier is unavailable. String representation of the value - // should be determined by the implementer. - FeatureFlagVariantKey = attribute.Key("feature_flag.variant") -) - -// FeatureFlagKey returns an attribute KeyValue conforming to the -// "feature_flag.key" semantic conventions. It represents the unique identifier -// of the feature flag. -func FeatureFlagKey(val string) attribute.KeyValue { - return FeatureFlagKeyKey.String(val) -} - -// FeatureFlagProviderName returns an attribute KeyValue conforming to the -// "feature_flag.provider_name" semantic conventions. It represents the name of -// the service provider that performs the flag evaluation. -func FeatureFlagProviderName(val string) attribute.KeyValue { - return FeatureFlagProviderNameKey.String(val) -} - -// FeatureFlagVariant returns an attribute KeyValue conforming to the -// "feature_flag.variant" semantic conventions. It represents the sHOULD be a -// semantic identifier for a value. If one is unavailable, a stringified -// version of the value can be used. -func FeatureFlagVariant(val string) attribute.KeyValue { - return FeatureFlagVariantKey.String(val) -} - -// RPC received/sent message. -const ( - // MessageTypeKey is the attribute Key conforming to the "message.type" - // semantic conventions. It represents the whether this is a received or - // sent message. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - MessageTypeKey = attribute.Key("message.type") - - // MessageIDKey is the attribute Key conforming to the "message.id" - // semantic conventions. It represents the mUST be calculated as two - // different counters starting from `1` one for sent messages and one for - // received message. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Note: This way we guarantee that the values will be consistent between - // different implementations. - MessageIDKey = attribute.Key("message.id") - - // MessageCompressedSizeKey is the attribute Key conforming to the - // "message.compressed_size" semantic conventions. It represents the - // compressed size of the message in bytes. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - MessageCompressedSizeKey = attribute.Key("message.compressed_size") - - // MessageUncompressedSizeKey is the attribute Key conforming to the - // "message.uncompressed_size" semantic conventions. It represents the - // uncompressed size of the message in bytes. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - MessageUncompressedSizeKey = attribute.Key("message.uncompressed_size") -) - -var ( - // sent - MessageTypeSent = MessageTypeKey.String("SENT") - // received - MessageTypeReceived = MessageTypeKey.String("RECEIVED") -) - -// MessageID returns an attribute KeyValue conforming to the "message.id" -// semantic conventions. It represents the mUST be calculated as two different -// counters starting from `1` one for sent messages and one for received -// message. -func MessageID(val int) attribute.KeyValue { - return MessageIDKey.Int(val) -} - -// MessageCompressedSize returns an attribute KeyValue conforming to the -// "message.compressed_size" semantic conventions. It represents the compressed -// size of the message in bytes. -func MessageCompressedSize(val int) attribute.KeyValue { - return MessageCompressedSizeKey.Int(val) -} - -// MessageUncompressedSize returns an attribute KeyValue conforming to the -// "message.uncompressed_size" semantic conventions. It represents the -// uncompressed size of the message in bytes. -func MessageUncompressedSize(val int) attribute.KeyValue { - return MessageUncompressedSizeKey.Int(val) -} - -// The attributes used to report a single exception associated with a span. -const ( - // ExceptionEscapedKey is the attribute Key conforming to the - // "exception.escaped" semantic conventions. It represents the sHOULD be - // set to true if the exception event is recorded at a point where it is - // known that the exception is escaping the scope of the span. - // - // Type: boolean - // RequirementLevel: Optional - // Stability: stable - // Note: An exception is considered to have escaped (or left) the scope of - // a span, - // if that span is ended while the exception is still logically "in - // flight". - // This may be actually "in flight" in some languages (e.g. if the - // exception - // is passed to a Context manager's `__exit__` method in Python) but will - // usually be caught at the point of recording the exception in most - // languages. - // - // It is usually not possible to determine at the point where an exception - // is thrown - // whether it will escape the scope of a span. - // However, it is trivial to know that an exception - // will escape, if one checks for an active exception just before ending - // the span, - // as done in the [example above](#recording-an-exception). - // - // It follows that an exception may still escape the scope of the span - // even if the `exception.escaped` attribute was not set or set to false, - // since the event might have been recorded at a time where it was not - // clear whether the exception will escape. - ExceptionEscapedKey = attribute.Key("exception.escaped") -) - -// ExceptionEscaped returns an attribute KeyValue conforming to the -// "exception.escaped" semantic conventions. It represents the sHOULD be set to -// true if the exception event is recorded at a point where it is known that -// the exception is escaping the scope of the span. -func ExceptionEscaped(val bool) attribute.KeyValue { - return ExceptionEscapedKey.Bool(val) -} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/exception.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/exception.go deleted file mode 100644 index 137acc67de..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/exception.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -package semconv // import "go.opentelemetry.io/otel/semconv/v1.17.0" - -const ( - // ExceptionEventName is the name of the Span event representing an exception. - ExceptionEventName = "exception" -) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/http.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/http.go deleted file mode 100644 index d318221e59..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/http.go +++ /dev/null @@ -1,10 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -package semconv // import "go.opentelemetry.io/otel/semconv/v1.17.0" - -// HTTP scheme attributes. -var ( - HTTPSchemeHTTP = HTTPSchemeKey.String("http") - HTTPSchemeHTTPS = HTTPSchemeKey.String("https") -) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/resource.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/resource.go deleted file mode 100644 index 7e365e82ce..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/resource.go +++ /dev/null @@ -1,1999 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -// Code generated from semantic convention specification. DO NOT EDIT. - -package semconv // import "go.opentelemetry.io/otel/semconv/v1.17.0" - -import "go.opentelemetry.io/otel/attribute" - -// The web browser in which the application represented by the resource is -// running. The `browser.*` attributes MUST be used only for resources that -// represent applications running in a web browser (regardless of whether -// running on a mobile or desktop device). -const ( - // BrowserBrandsKey is the attribute Key conforming to the "browser.brands" - // semantic conventions. It represents the array of brand name and version - // separated by a space - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: ' Not A;Brand 99', 'Chromium 99', 'Chrome 99' - // Note: This value is intended to be taken from the [UA client hints - // API](https://wicg.github.io/ua-client-hints/#interface) - // (`navigator.userAgentData.brands`). - BrowserBrandsKey = attribute.Key("browser.brands") - - // BrowserPlatformKey is the attribute Key conforming to the - // "browser.platform" semantic conventions. It represents the platform on - // which the browser is running - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Windows', 'macOS', 'Android' - // Note: This value is intended to be taken from the [UA client hints - // API](https://wicg.github.io/ua-client-hints/#interface) - // (`navigator.userAgentData.platform`). If unavailable, the legacy - // `navigator.platform` API SHOULD NOT be used instead and this attribute - // SHOULD be left unset in order for the values to be consistent. - // The list of possible values is defined in the [W3C User-Agent Client - // Hints - // specification](https://wicg.github.io/ua-client-hints/#sec-ch-ua-platform). - // Note that some (but not all) of these values can overlap with values in - // the [`os.type` and `os.name` attributes](./os.md). However, for - // consistency, the values in the `browser.platform` attribute should - // capture the exact value that the user agent provides. - BrowserPlatformKey = attribute.Key("browser.platform") - - // BrowserMobileKey is the attribute Key conforming to the "browser.mobile" - // semantic conventions. It represents a boolean that is true if the - // browser is running on a mobile device - // - // Type: boolean - // RequirementLevel: Optional - // Stability: stable - // Note: This value is intended to be taken from the [UA client hints - // API](https://wicg.github.io/ua-client-hints/#interface) - // (`navigator.userAgentData.mobile`). If unavailable, this attribute - // SHOULD be left unset. - BrowserMobileKey = attribute.Key("browser.mobile") - - // BrowserUserAgentKey is the attribute Key conforming to the - // "browser.user_agent" semantic conventions. It represents the full - // user-agent string provided by the browser - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Mozilla/5.0 (Macintosh; Intel Mac OS X 10_15_7) - // AppleWebKit/537.36 (KHTML, ' - // 'like Gecko) Chrome/95.0.4638.54 Safari/537.36' - // Note: The user-agent value SHOULD be provided only from browsers that do - // not have a mechanism to retrieve brands and platform individually from - // the User-Agent Client Hints API. To retrieve the value, the legacy - // `navigator.userAgent` API can be used. - BrowserUserAgentKey = attribute.Key("browser.user_agent") - - // BrowserLanguageKey is the attribute Key conforming to the - // "browser.language" semantic conventions. It represents the preferred - // language of the user using the browser - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'en', 'en-US', 'fr', 'fr-FR' - // Note: This value is intended to be taken from the Navigator API - // `navigator.language`. - BrowserLanguageKey = attribute.Key("browser.language") -) - -// BrowserBrands returns an attribute KeyValue conforming to the -// "browser.brands" semantic conventions. It represents the array of brand name -// and version separated by a space -func BrowserBrands(val ...string) attribute.KeyValue { - return BrowserBrandsKey.StringSlice(val) -} - -// BrowserPlatform returns an attribute KeyValue conforming to the -// "browser.platform" semantic conventions. It represents the platform on which -// the browser is running -func BrowserPlatform(val string) attribute.KeyValue { - return BrowserPlatformKey.String(val) -} - -// BrowserMobile returns an attribute KeyValue conforming to the -// "browser.mobile" semantic conventions. It represents a boolean that is true -// if the browser is running on a mobile device -func BrowserMobile(val bool) attribute.KeyValue { - return BrowserMobileKey.Bool(val) -} - -// BrowserUserAgent returns an attribute KeyValue conforming to the -// "browser.user_agent" semantic conventions. It represents the full user-agent -// string provided by the browser -func BrowserUserAgent(val string) attribute.KeyValue { - return BrowserUserAgentKey.String(val) -} - -// BrowserLanguage returns an attribute KeyValue conforming to the -// "browser.language" semantic conventions. It represents the preferred -// language of the user using the browser -func BrowserLanguage(val string) attribute.KeyValue { - return BrowserLanguageKey.String(val) -} - -// A cloud environment (e.g. GCP, Azure, AWS) -const ( - // CloudProviderKey is the attribute Key conforming to the "cloud.provider" - // semantic conventions. It represents the name of the cloud provider. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - CloudProviderKey = attribute.Key("cloud.provider") - - // CloudAccountIDKey is the attribute Key conforming to the - // "cloud.account.id" semantic conventions. It represents the cloud account - // ID the resource is assigned to. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '111111111111', 'opentelemetry' - CloudAccountIDKey = attribute.Key("cloud.account.id") - - // CloudRegionKey is the attribute Key conforming to the "cloud.region" - // semantic conventions. It represents the geographical region the resource - // is running. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'us-central1', 'us-east-1' - // Note: Refer to your provider's docs to see the available regions, for - // example [Alibaba Cloud - // regions](https://www.alibabacloud.com/help/doc-detail/40654.htm), [AWS - // regions](https://aws.amazon.com/about-aws/global-infrastructure/regions_az/), - // [Azure - // regions](https://azure.microsoft.com/en-us/global-infrastructure/geographies/), - // [Google Cloud regions](https://cloud.google.com/about/locations), or - // [Tencent Cloud - // regions](https://intl.cloud.tencent.com/document/product/213/6091). - CloudRegionKey = attribute.Key("cloud.region") - - // CloudAvailabilityZoneKey is the attribute Key conforming to the - // "cloud.availability_zone" semantic conventions. It represents the cloud - // regions often have multiple, isolated locations known as zones to - // increase availability. Availability zone represents the zone where the - // resource is running. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'us-east-1c' - // Note: Availability zones are called "zones" on Alibaba Cloud and Google - // Cloud. - CloudAvailabilityZoneKey = attribute.Key("cloud.availability_zone") - - // CloudPlatformKey is the attribute Key conforming to the "cloud.platform" - // semantic conventions. It represents the cloud platform in use. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - // Note: The prefix of the service SHOULD match the one specified in - // `cloud.provider`. - CloudPlatformKey = attribute.Key("cloud.platform") -) - -var ( - // Alibaba Cloud - CloudProviderAlibabaCloud = CloudProviderKey.String("alibaba_cloud") - // Amazon Web Services - CloudProviderAWS = CloudProviderKey.String("aws") - // Microsoft Azure - CloudProviderAzure = CloudProviderKey.String("azure") - // Google Cloud Platform - CloudProviderGCP = CloudProviderKey.String("gcp") - // IBM Cloud - CloudProviderIbmCloud = CloudProviderKey.String("ibm_cloud") - // Tencent Cloud - CloudProviderTencentCloud = CloudProviderKey.String("tencent_cloud") -) - -var ( - // Alibaba Cloud Elastic Compute Service - CloudPlatformAlibabaCloudECS = CloudPlatformKey.String("alibaba_cloud_ecs") - // Alibaba Cloud Function Compute - CloudPlatformAlibabaCloudFc = CloudPlatformKey.String("alibaba_cloud_fc") - // Red Hat OpenShift on Alibaba Cloud - CloudPlatformAlibabaCloudOpenshift = CloudPlatformKey.String("alibaba_cloud_openshift") - // AWS Elastic Compute Cloud - CloudPlatformAWSEC2 = CloudPlatformKey.String("aws_ec2") - // AWS Elastic Container Service - CloudPlatformAWSECS = CloudPlatformKey.String("aws_ecs") - // AWS Elastic Kubernetes Service - CloudPlatformAWSEKS = CloudPlatformKey.String("aws_eks") - // AWS Lambda - CloudPlatformAWSLambda = CloudPlatformKey.String("aws_lambda") - // AWS Elastic Beanstalk - CloudPlatformAWSElasticBeanstalk = CloudPlatformKey.String("aws_elastic_beanstalk") - // AWS App Runner - CloudPlatformAWSAppRunner = CloudPlatformKey.String("aws_app_runner") - // Red Hat OpenShift on AWS (ROSA) - CloudPlatformAWSOpenshift = CloudPlatformKey.String("aws_openshift") - // Azure Virtual Machines - CloudPlatformAzureVM = CloudPlatformKey.String("azure_vm") - // Azure Container Instances - CloudPlatformAzureContainerInstances = CloudPlatformKey.String("azure_container_instances") - // Azure Kubernetes Service - CloudPlatformAzureAKS = CloudPlatformKey.String("azure_aks") - // Azure Functions - CloudPlatformAzureFunctions = CloudPlatformKey.String("azure_functions") - // Azure App Service - CloudPlatformAzureAppService = CloudPlatformKey.String("azure_app_service") - // Azure Red Hat OpenShift - CloudPlatformAzureOpenshift = CloudPlatformKey.String("azure_openshift") - // Google Cloud Compute Engine (GCE) - CloudPlatformGCPComputeEngine = CloudPlatformKey.String("gcp_compute_engine") - // Google Cloud Run - CloudPlatformGCPCloudRun = CloudPlatformKey.String("gcp_cloud_run") - // Google Cloud Kubernetes Engine (GKE) - CloudPlatformGCPKubernetesEngine = CloudPlatformKey.String("gcp_kubernetes_engine") - // Google Cloud Functions (GCF) - CloudPlatformGCPCloudFunctions = CloudPlatformKey.String("gcp_cloud_functions") - // Google Cloud App Engine (GAE) - CloudPlatformGCPAppEngine = CloudPlatformKey.String("gcp_app_engine") - // Red Hat OpenShift on Google Cloud - CloudPlatformGoogleCloudOpenshift = CloudPlatformKey.String("google_cloud_openshift") - // Red Hat OpenShift on IBM Cloud - CloudPlatformIbmCloudOpenshift = CloudPlatformKey.String("ibm_cloud_openshift") - // Tencent Cloud Cloud Virtual Machine (CVM) - CloudPlatformTencentCloudCvm = CloudPlatformKey.String("tencent_cloud_cvm") - // Tencent Cloud Elastic Kubernetes Service (EKS) - CloudPlatformTencentCloudEKS = CloudPlatformKey.String("tencent_cloud_eks") - // Tencent Cloud Serverless Cloud Function (SCF) - CloudPlatformTencentCloudScf = CloudPlatformKey.String("tencent_cloud_scf") -) - -// CloudAccountID returns an attribute KeyValue conforming to the -// "cloud.account.id" semantic conventions. It represents the cloud account ID -// the resource is assigned to. -func CloudAccountID(val string) attribute.KeyValue { - return CloudAccountIDKey.String(val) -} - -// CloudRegion returns an attribute KeyValue conforming to the -// "cloud.region" semantic conventions. It represents the geographical region -// the resource is running. -func CloudRegion(val string) attribute.KeyValue { - return CloudRegionKey.String(val) -} - -// CloudAvailabilityZone returns an attribute KeyValue conforming to the -// "cloud.availability_zone" semantic conventions. It represents the cloud -// regions often have multiple, isolated locations known as zones to increase -// availability. Availability zone represents the zone where the resource is -// running. -func CloudAvailabilityZone(val string) attribute.KeyValue { - return CloudAvailabilityZoneKey.String(val) -} - -// Resources used by AWS Elastic Container Service (ECS). -const ( - // AWSECSContainerARNKey is the attribute Key conforming to the - // "aws.ecs.container.arn" semantic conventions. It represents the Amazon - // Resource Name (ARN) of an [ECS container - // instance](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: - // 'arn:aws:ecs:us-west-1:123456789123:container/32624152-9086-4f0e-acae-1a75b14fe4d9' - AWSECSContainerARNKey = attribute.Key("aws.ecs.container.arn") - - // AWSECSClusterARNKey is the attribute Key conforming to the - // "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an - // [ECS - // cluster](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster' - AWSECSClusterARNKey = attribute.Key("aws.ecs.cluster.arn") - - // AWSECSLaunchtypeKey is the attribute Key conforming to the - // "aws.ecs.launchtype" semantic conventions. It represents the [launch - // type](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/launch_types.html) - // for an ECS task. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - AWSECSLaunchtypeKey = attribute.Key("aws.ecs.launchtype") - - // AWSECSTaskARNKey is the attribute Key conforming to the - // "aws.ecs.task.arn" semantic conventions. It represents the ARN of an - // [ECS task - // definition](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: - // 'arn:aws:ecs:us-west-1:123456789123:task/10838bed-421f-43ef-870a-f43feacbbb5b' - AWSECSTaskARNKey = attribute.Key("aws.ecs.task.arn") - - // AWSECSTaskFamilyKey is the attribute Key conforming to the - // "aws.ecs.task.family" semantic conventions. It represents the task - // definition family this task definition is a member of. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry-family' - AWSECSTaskFamilyKey = attribute.Key("aws.ecs.task.family") - - // AWSECSTaskRevisionKey is the attribute Key conforming to the - // "aws.ecs.task.revision" semantic conventions. It represents the revision - // for this task definition. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '8', '26' - AWSECSTaskRevisionKey = attribute.Key("aws.ecs.task.revision") -) - -var ( - // ec2 - AWSECSLaunchtypeEC2 = AWSECSLaunchtypeKey.String("ec2") - // fargate - AWSECSLaunchtypeFargate = AWSECSLaunchtypeKey.String("fargate") -) - -// AWSECSContainerARN returns an attribute KeyValue conforming to the -// "aws.ecs.container.arn" semantic conventions. It represents the Amazon -// Resource Name (ARN) of an [ECS container -// instance](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html). -func AWSECSContainerARN(val string) attribute.KeyValue { - return AWSECSContainerARNKey.String(val) -} - -// AWSECSClusterARN returns an attribute KeyValue conforming to the -// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an [ECS -// cluster](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html). -func AWSECSClusterARN(val string) attribute.KeyValue { - return AWSECSClusterARNKey.String(val) -} - -// AWSECSTaskARN returns an attribute KeyValue conforming to the -// "aws.ecs.task.arn" semantic conventions. It represents the ARN of an [ECS -// task -// definition](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html). -func AWSECSTaskARN(val string) attribute.KeyValue { - return AWSECSTaskARNKey.String(val) -} - -// AWSECSTaskFamily returns an attribute KeyValue conforming to the -// "aws.ecs.task.family" semantic conventions. It represents the task -// definition family this task definition is a member of. -func AWSECSTaskFamily(val string) attribute.KeyValue { - return AWSECSTaskFamilyKey.String(val) -} - -// AWSECSTaskRevision returns an attribute KeyValue conforming to the -// "aws.ecs.task.revision" semantic conventions. It represents the revision for -// this task definition. -func AWSECSTaskRevision(val string) attribute.KeyValue { - return AWSECSTaskRevisionKey.String(val) -} - -// Resources used by AWS Elastic Kubernetes Service (EKS). -const ( - // AWSEKSClusterARNKey is the attribute Key conforming to the - // "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an - // EKS cluster. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster' - AWSEKSClusterARNKey = attribute.Key("aws.eks.cluster.arn") -) - -// AWSEKSClusterARN returns an attribute KeyValue conforming to the -// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS -// cluster. -func AWSEKSClusterARN(val string) attribute.KeyValue { - return AWSEKSClusterARNKey.String(val) -} - -// Resources specific to Amazon Web Services. -const ( - // AWSLogGroupNamesKey is the attribute Key conforming to the - // "aws.log.group.names" semantic conventions. It represents the name(s) of - // the AWS log group(s) an application is writing to. - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: '/aws/lambda/my-function', 'opentelemetry-service' - // Note: Multiple log groups must be supported for cases like - // multi-container applications, where a single application has sidecar - // containers, and each write to their own log group. - AWSLogGroupNamesKey = attribute.Key("aws.log.group.names") - - // AWSLogGroupARNsKey is the attribute Key conforming to the - // "aws.log.group.arns" semantic conventions. It represents the Amazon - // Resource Name(s) (ARN) of the AWS log group(s). - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: - // 'arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:*' - // Note: See the [log group ARN format - // documentation](https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format). - AWSLogGroupARNsKey = attribute.Key("aws.log.group.arns") - - // AWSLogStreamNamesKey is the attribute Key conforming to the - // "aws.log.stream.names" semantic conventions. It represents the name(s) - // of the AWS log stream(s) an application is writing to. - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: 'logs/main/10838bed-421f-43ef-870a-f43feacbbb5b' - AWSLogStreamNamesKey = attribute.Key("aws.log.stream.names") - - // AWSLogStreamARNsKey is the attribute Key conforming to the - // "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of - // the AWS log stream(s). - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: - // 'arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:log-stream:logs/main/10838bed-421f-43ef-870a-f43feacbbb5b' - // Note: See the [log stream ARN format - // documentation](https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format). - // One log group can contain several log streams, so these ARNs necessarily - // identify both a log group and a log stream. - AWSLogStreamARNsKey = attribute.Key("aws.log.stream.arns") -) - -// AWSLogGroupNames returns an attribute KeyValue conforming to the -// "aws.log.group.names" semantic conventions. It represents the name(s) of the -// AWS log group(s) an application is writing to. -func AWSLogGroupNames(val ...string) attribute.KeyValue { - return AWSLogGroupNamesKey.StringSlice(val) -} - -// AWSLogGroupARNs returns an attribute KeyValue conforming to the -// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource -// Name(s) (ARN) of the AWS log group(s). -func AWSLogGroupARNs(val ...string) attribute.KeyValue { - return AWSLogGroupARNsKey.StringSlice(val) -} - -// AWSLogStreamNames returns an attribute KeyValue conforming to the -// "aws.log.stream.names" semantic conventions. It represents the name(s) of -// the AWS log stream(s) an application is writing to. -func AWSLogStreamNames(val ...string) attribute.KeyValue { - return AWSLogStreamNamesKey.StringSlice(val) -} - -// AWSLogStreamARNs returns an attribute KeyValue conforming to the -// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the -// AWS log stream(s). -func AWSLogStreamARNs(val ...string) attribute.KeyValue { - return AWSLogStreamARNsKey.StringSlice(val) -} - -// A container instance. -const ( - // ContainerNameKey is the attribute Key conforming to the "container.name" - // semantic conventions. It represents the container name used by container - // runtime. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry-autoconf' - ContainerNameKey = attribute.Key("container.name") - - // ContainerIDKey is the attribute Key conforming to the "container.id" - // semantic conventions. It represents the container ID. Usually a UUID, as - // for example used to [identify Docker - // containers](https://docs.docker.com/engine/reference/run/#container-identification). - // The UUID might be abbreviated. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'a3bf90e006b2' - ContainerIDKey = attribute.Key("container.id") - - // ContainerRuntimeKey is the attribute Key conforming to the - // "container.runtime" semantic conventions. It represents the container - // runtime managing this container. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'docker', 'containerd', 'rkt' - ContainerRuntimeKey = attribute.Key("container.runtime") - - // ContainerImageNameKey is the attribute Key conforming to the - // "container.image.name" semantic conventions. It represents the name of - // the image the container was built on. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'gcr.io/opentelemetry/operator' - ContainerImageNameKey = attribute.Key("container.image.name") - - // ContainerImageTagKey is the attribute Key conforming to the - // "container.image.tag" semantic conventions. It represents the container - // image tag. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '0.1' - ContainerImageTagKey = attribute.Key("container.image.tag") -) - -// ContainerName returns an attribute KeyValue conforming to the -// "container.name" semantic conventions. It represents the container name used -// by container runtime. -func ContainerName(val string) attribute.KeyValue { - return ContainerNameKey.String(val) -} - -// ContainerID returns an attribute KeyValue conforming to the -// "container.id" semantic conventions. It represents the container ID. Usually -// a UUID, as for example used to [identify Docker -// containers](https://docs.docker.com/engine/reference/run/#container-identification). -// The UUID might be abbreviated. -func ContainerID(val string) attribute.KeyValue { - return ContainerIDKey.String(val) -} - -// ContainerRuntime returns an attribute KeyValue conforming to the -// "container.runtime" semantic conventions. It represents the container -// runtime managing this container. -func ContainerRuntime(val string) attribute.KeyValue { - return ContainerRuntimeKey.String(val) -} - -// ContainerImageName returns an attribute KeyValue conforming to the -// "container.image.name" semantic conventions. It represents the name of the -// image the container was built on. -func ContainerImageName(val string) attribute.KeyValue { - return ContainerImageNameKey.String(val) -} - -// ContainerImageTag returns an attribute KeyValue conforming to the -// "container.image.tag" semantic conventions. It represents the container -// image tag. -func ContainerImageTag(val string) attribute.KeyValue { - return ContainerImageTagKey.String(val) -} - -// The software deployment. -const ( - // DeploymentEnvironmentKey is the attribute Key conforming to the - // "deployment.environment" semantic conventions. It represents the name of - // the [deployment - // environment](https://en.wikipedia.org/wiki/Deployment_environment) (aka - // deployment tier). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'staging', 'production' - DeploymentEnvironmentKey = attribute.Key("deployment.environment") -) - -// DeploymentEnvironment returns an attribute KeyValue conforming to the -// "deployment.environment" semantic conventions. It represents the name of the -// [deployment -// environment](https://en.wikipedia.org/wiki/Deployment_environment) (aka -// deployment tier). -func DeploymentEnvironment(val string) attribute.KeyValue { - return DeploymentEnvironmentKey.String(val) -} - -// The device on which the process represented by this resource is running. -const ( - // DeviceIDKey is the attribute Key conforming to the "device.id" semantic - // conventions. It represents a unique identifier representing the device - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '2ab2916d-a51f-4ac8-80ee-45ac31a28092' - // Note: The device identifier MUST only be defined using the values - // outlined below. This value is not an advertising identifier and MUST NOT - // be used as such. On iOS (Swift or Objective-C), this value MUST be equal - // to the [vendor - // identifier](https://developer.apple.com/documentation/uikit/uidevice/1620059-identifierforvendor). - // On Android (Java or Kotlin), this value MUST be equal to the Firebase - // Installation ID or a globally unique UUID which is persisted across - // sessions in your application. More information can be found - // [here](https://developer.android.com/training/articles/user-data-ids) on - // best practices and exact implementation details. Caution should be taken - // when storing personal data or anything which can identify a user. GDPR - // and data protection laws may apply, ensure you do your own due - // diligence. - DeviceIDKey = attribute.Key("device.id") - - // DeviceModelIdentifierKey is the attribute Key conforming to the - // "device.model.identifier" semantic conventions. It represents the model - // identifier for the device - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'iPhone3,4', 'SM-G920F' - // Note: It's recommended this value represents a machine readable version - // of the model identifier rather than the market or consumer-friendly name - // of the device. - DeviceModelIdentifierKey = attribute.Key("device.model.identifier") - - // DeviceModelNameKey is the attribute Key conforming to the - // "device.model.name" semantic conventions. It represents the marketing - // name for the device model - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'iPhone 6s Plus', 'Samsung Galaxy S6' - // Note: It's recommended this value represents a human readable version of - // the device model rather than a machine readable alternative. - DeviceModelNameKey = attribute.Key("device.model.name") - - // DeviceManufacturerKey is the attribute Key conforming to the - // "device.manufacturer" semantic conventions. It represents the name of - // the device manufacturer - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Apple', 'Samsung' - // Note: The Android OS provides this field via - // [Build](https://developer.android.com/reference/android/os/Build#MANUFACTURER). - // iOS apps SHOULD hardcode the value `Apple`. - DeviceManufacturerKey = attribute.Key("device.manufacturer") -) - -// DeviceID returns an attribute KeyValue conforming to the "device.id" -// semantic conventions. It represents a unique identifier representing the -// device -func DeviceID(val string) attribute.KeyValue { - return DeviceIDKey.String(val) -} - -// DeviceModelIdentifier returns an attribute KeyValue conforming to the -// "device.model.identifier" semantic conventions. It represents the model -// identifier for the device -func DeviceModelIdentifier(val string) attribute.KeyValue { - return DeviceModelIdentifierKey.String(val) -} - -// DeviceModelName returns an attribute KeyValue conforming to the -// "device.model.name" semantic conventions. It represents the marketing name -// for the device model -func DeviceModelName(val string) attribute.KeyValue { - return DeviceModelNameKey.String(val) -} - -// DeviceManufacturer returns an attribute KeyValue conforming to the -// "device.manufacturer" semantic conventions. It represents the name of the -// device manufacturer -func DeviceManufacturer(val string) attribute.KeyValue { - return DeviceManufacturerKey.String(val) -} - -// A serverless instance. -const ( - // FaaSNameKey is the attribute Key conforming to the "faas.name" semantic - // conventions. It represents the name of the single function that this - // runtime instance executes. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'my-function', 'myazurefunctionapp/some-function-name' - // Note: This is the name of the function as configured/deployed on the - // FaaS - // platform and is usually different from the name of the callback - // function (which may be stored in the - // [`code.namespace`/`code.function`](../../trace/semantic_conventions/span-general.md#source-code-attributes) - // span attributes). - // - // For some cloud providers, the above definition is ambiguous. The - // following - // definition of function name MUST be used for this attribute - // (and consequently the span name) for the listed cloud - // providers/products: - // - // * **Azure:** The full name `/`, i.e., function app name - // followed by a forward slash followed by the function name (this form - // can also be seen in the resource JSON for the function). - // This means that a span attribute MUST be used, as an Azure function - // app can host multiple functions that would usually share - // a TracerProvider (see also the `faas.id` attribute). - FaaSNameKey = attribute.Key("faas.name") - - // FaaSIDKey is the attribute Key conforming to the "faas.id" semantic - // conventions. It represents the unique ID of the single function that - // this runtime instance executes. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'arn:aws:lambda:us-west-2:123456789012:function:my-function' - // Note: On some cloud providers, it may not be possible to determine the - // full ID at startup, - // so consider setting `faas.id` as a span attribute instead. - // - // The exact value to use for `faas.id` depends on the cloud provider: - // - // * **AWS Lambda:** The function - // [ARN](https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html). - // Take care not to use the "invoked ARN" directly but replace any - // [alias - // suffix](https://docs.aws.amazon.com/lambda/latest/dg/configuration-aliases.html) - // with the resolved function version, as the same runtime instance may - // be invokable with - // multiple different aliases. - // * **GCP:** The [URI of the - // resource](https://cloud.google.com/iam/docs/full-resource-names) - // * **Azure:** The [Fully Qualified Resource - // ID](https://docs.microsoft.com/en-us/rest/api/resources/resources/get-by-id) - // of the invoked function, - // *not* the function app, having the form - // `/subscriptions//resourceGroups//providers/Microsoft.Web/sites//functions/`. - // This means that a span attribute MUST be used, as an Azure function - // app can host multiple functions that would usually share - // a TracerProvider. - FaaSIDKey = attribute.Key("faas.id") - - // FaaSVersionKey is the attribute Key conforming to the "faas.version" - // semantic conventions. It represents the immutable version of the - // function being executed. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '26', 'pinkfroid-00002' - // Note: Depending on the cloud provider and platform, use: - // - // * **AWS Lambda:** The [function - // version](https://docs.aws.amazon.com/lambda/latest/dg/configuration-versions.html) - // (an integer represented as a decimal string). - // * **Google Cloud Run:** The - // [revision](https://cloud.google.com/run/docs/managing/revisions) - // (i.e., the function name plus the revision suffix). - // * **Google Cloud Functions:** The value of the - // [`K_REVISION` environment - // variable](https://cloud.google.com/functions/docs/env-var#runtime_environment_variables_set_automatically). - // * **Azure Functions:** Not applicable. Do not set this attribute. - FaaSVersionKey = attribute.Key("faas.version") - - // FaaSInstanceKey is the attribute Key conforming to the "faas.instance" - // semantic conventions. It represents the execution environment ID as a - // string, that will be potentially reused for other invocations to the - // same function/function version. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '2021/06/28/[$LATEST]2f399eb14537447da05ab2a2e39309de' - // Note: * **AWS Lambda:** Use the (full) log stream name. - FaaSInstanceKey = attribute.Key("faas.instance") - - // FaaSMaxMemoryKey is the attribute Key conforming to the - // "faas.max_memory" semantic conventions. It represents the amount of - // memory available to the serverless function in MiB. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 128 - // Note: It's recommended to set this attribute since e.g. too little - // memory can easily stop a Java AWS Lambda function from working - // correctly. On AWS Lambda, the environment variable - // `AWS_LAMBDA_FUNCTION_MEMORY_SIZE` provides this information. - FaaSMaxMemoryKey = attribute.Key("faas.max_memory") -) - -// FaaSName returns an attribute KeyValue conforming to the "faas.name" -// semantic conventions. It represents the name of the single function that -// this runtime instance executes. -func FaaSName(val string) attribute.KeyValue { - return FaaSNameKey.String(val) -} - -// FaaSID returns an attribute KeyValue conforming to the "faas.id" semantic -// conventions. It represents the unique ID of the single function that this -// runtime instance executes. -func FaaSID(val string) attribute.KeyValue { - return FaaSIDKey.String(val) -} - -// FaaSVersion returns an attribute KeyValue conforming to the -// "faas.version" semantic conventions. It represents the immutable version of -// the function being executed. -func FaaSVersion(val string) attribute.KeyValue { - return FaaSVersionKey.String(val) -} - -// FaaSInstance returns an attribute KeyValue conforming to the -// "faas.instance" semantic conventions. It represents the execution -// environment ID as a string, that will be potentially reused for other -// invocations to the same function/function version. -func FaaSInstance(val string) attribute.KeyValue { - return FaaSInstanceKey.String(val) -} - -// FaaSMaxMemory returns an attribute KeyValue conforming to the -// "faas.max_memory" semantic conventions. It represents the amount of memory -// available to the serverless function in MiB. -func FaaSMaxMemory(val int) attribute.KeyValue { - return FaaSMaxMemoryKey.Int(val) -} - -// A host is defined as a general computing instance. -const ( - // HostIDKey is the attribute Key conforming to the "host.id" semantic - // conventions. It represents the unique host ID. For Cloud, this must be - // the instance_id assigned by the cloud provider. For non-containerized - // Linux systems, the `machine-id` located in `/etc/machine-id` or - // `/var/lib/dbus/machine-id` may be used. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'fdbf79e8af94cb7f9e8df36789187052' - HostIDKey = attribute.Key("host.id") - - // HostNameKey is the attribute Key conforming to the "host.name" semantic - // conventions. It represents the name of the host. On Unix systems, it may - // contain what the hostname command returns, or the fully qualified - // hostname, or another name specified by the user. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry-test' - HostNameKey = attribute.Key("host.name") - - // HostTypeKey is the attribute Key conforming to the "host.type" semantic - // conventions. It represents the type of host. For Cloud, this must be the - // machine type. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'n1-standard-1' - HostTypeKey = attribute.Key("host.type") - - // HostArchKey is the attribute Key conforming to the "host.arch" semantic - // conventions. It represents the CPU architecture the host system is - // running on. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - HostArchKey = attribute.Key("host.arch") - - // HostImageNameKey is the attribute Key conforming to the - // "host.image.name" semantic conventions. It represents the name of the VM - // image or OS install the host was instantiated from. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'infra-ami-eks-worker-node-7d4ec78312', 'CentOS-8-x86_64-1905' - HostImageNameKey = attribute.Key("host.image.name") - - // HostImageIDKey is the attribute Key conforming to the "host.image.id" - // semantic conventions. It represents the vM image ID. For Cloud, this - // value is from the provider. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'ami-07b06b442921831e5' - HostImageIDKey = attribute.Key("host.image.id") - - // HostImageVersionKey is the attribute Key conforming to the - // "host.image.version" semantic conventions. It represents the version - // string of the VM image as defined in [Version - // Attributes](README.md#version-attributes). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '0.1' - HostImageVersionKey = attribute.Key("host.image.version") -) - -var ( - // AMD64 - HostArchAMD64 = HostArchKey.String("amd64") - // ARM32 - HostArchARM32 = HostArchKey.String("arm32") - // ARM64 - HostArchARM64 = HostArchKey.String("arm64") - // Itanium - HostArchIA64 = HostArchKey.String("ia64") - // 32-bit PowerPC - HostArchPPC32 = HostArchKey.String("ppc32") - // 64-bit PowerPC - HostArchPPC64 = HostArchKey.String("ppc64") - // IBM z/Architecture - HostArchS390x = HostArchKey.String("s390x") - // 32-bit x86 - HostArchX86 = HostArchKey.String("x86") -) - -// HostID returns an attribute KeyValue conforming to the "host.id" semantic -// conventions. It represents the unique host ID. For Cloud, this must be the -// instance_id assigned by the cloud provider. For non-containerized Linux -// systems, the `machine-id` located in `/etc/machine-id` or -// `/var/lib/dbus/machine-id` may be used. -func HostID(val string) attribute.KeyValue { - return HostIDKey.String(val) -} - -// HostName returns an attribute KeyValue conforming to the "host.name" -// semantic conventions. It represents the name of the host. On Unix systems, -// it may contain what the hostname command returns, or the fully qualified -// hostname, or another name specified by the user. -func HostName(val string) attribute.KeyValue { - return HostNameKey.String(val) -} - -// HostType returns an attribute KeyValue conforming to the "host.type" -// semantic conventions. It represents the type of host. For Cloud, this must -// be the machine type. -func HostType(val string) attribute.KeyValue { - return HostTypeKey.String(val) -} - -// HostImageName returns an attribute KeyValue conforming to the -// "host.image.name" semantic conventions. It represents the name of the VM -// image or OS install the host was instantiated from. -func HostImageName(val string) attribute.KeyValue { - return HostImageNameKey.String(val) -} - -// HostImageID returns an attribute KeyValue conforming to the -// "host.image.id" semantic conventions. It represents the vM image ID. For -// Cloud, this value is from the provider. -func HostImageID(val string) attribute.KeyValue { - return HostImageIDKey.String(val) -} - -// HostImageVersion returns an attribute KeyValue conforming to the -// "host.image.version" semantic conventions. It represents the version string -// of the VM image as defined in [Version -// Attributes](README.md#version-attributes). -func HostImageVersion(val string) attribute.KeyValue { - return HostImageVersionKey.String(val) -} - -// A Kubernetes Cluster. -const ( - // K8SClusterNameKey is the attribute Key conforming to the - // "k8s.cluster.name" semantic conventions. It represents the name of the - // cluster. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry-cluster' - K8SClusterNameKey = attribute.Key("k8s.cluster.name") -) - -// K8SClusterName returns an attribute KeyValue conforming to the -// "k8s.cluster.name" semantic conventions. It represents the name of the -// cluster. -func K8SClusterName(val string) attribute.KeyValue { - return K8SClusterNameKey.String(val) -} - -// A Kubernetes Node object. -const ( - // K8SNodeNameKey is the attribute Key conforming to the "k8s.node.name" - // semantic conventions. It represents the name of the Node. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'node-1' - K8SNodeNameKey = attribute.Key("k8s.node.name") - - // K8SNodeUIDKey is the attribute Key conforming to the "k8s.node.uid" - // semantic conventions. It represents the UID of the Node. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '1eb3a0c6-0477-4080-a9cb-0cb7db65c6a2' - K8SNodeUIDKey = attribute.Key("k8s.node.uid") -) - -// K8SNodeName returns an attribute KeyValue conforming to the -// "k8s.node.name" semantic conventions. It represents the name of the Node. -func K8SNodeName(val string) attribute.KeyValue { - return K8SNodeNameKey.String(val) -} - -// K8SNodeUID returns an attribute KeyValue conforming to the "k8s.node.uid" -// semantic conventions. It represents the UID of the Node. -func K8SNodeUID(val string) attribute.KeyValue { - return K8SNodeUIDKey.String(val) -} - -// A Kubernetes Namespace. -const ( - // K8SNamespaceNameKey is the attribute Key conforming to the - // "k8s.namespace.name" semantic conventions. It represents the name of the - // namespace that the pod is running in. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'default' - K8SNamespaceNameKey = attribute.Key("k8s.namespace.name") -) - -// K8SNamespaceName returns an attribute KeyValue conforming to the -// "k8s.namespace.name" semantic conventions. It represents the name of the -// namespace that the pod is running in. -func K8SNamespaceName(val string) attribute.KeyValue { - return K8SNamespaceNameKey.String(val) -} - -// A Kubernetes Pod object. -const ( - // K8SPodUIDKey is the attribute Key conforming to the "k8s.pod.uid" - // semantic conventions. It represents the UID of the Pod. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' - K8SPodUIDKey = attribute.Key("k8s.pod.uid") - - // K8SPodNameKey is the attribute Key conforming to the "k8s.pod.name" - // semantic conventions. It represents the name of the Pod. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry-pod-autoconf' - K8SPodNameKey = attribute.Key("k8s.pod.name") -) - -// K8SPodUID returns an attribute KeyValue conforming to the "k8s.pod.uid" -// semantic conventions. It represents the UID of the Pod. -func K8SPodUID(val string) attribute.KeyValue { - return K8SPodUIDKey.String(val) -} - -// K8SPodName returns an attribute KeyValue conforming to the "k8s.pod.name" -// semantic conventions. It represents the name of the Pod. -func K8SPodName(val string) attribute.KeyValue { - return K8SPodNameKey.String(val) -} - -// A container in a -// [PodTemplate](https://kubernetes.io/docs/concepts/workloads/pods/#pod-templates). -const ( - // K8SContainerNameKey is the attribute Key conforming to the - // "k8s.container.name" semantic conventions. It represents the name of the - // Container from Pod specification, must be unique within a Pod. Container - // runtime usually uses different globally unique name (`container.name`). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'redis' - K8SContainerNameKey = attribute.Key("k8s.container.name") - - // K8SContainerRestartCountKey is the attribute Key conforming to the - // "k8s.container.restart_count" semantic conventions. It represents the - // number of times the container was restarted. This attribute can be used - // to identify a particular container (running or stopped) within a - // container spec. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 0, 2 - K8SContainerRestartCountKey = attribute.Key("k8s.container.restart_count") -) - -// K8SContainerName returns an attribute KeyValue conforming to the -// "k8s.container.name" semantic conventions. It represents the name of the -// Container from Pod specification, must be unique within a Pod. Container -// runtime usually uses different globally unique name (`container.name`). -func K8SContainerName(val string) attribute.KeyValue { - return K8SContainerNameKey.String(val) -} - -// K8SContainerRestartCount returns an attribute KeyValue conforming to the -// "k8s.container.restart_count" semantic conventions. It represents the number -// of times the container was restarted. This attribute can be used to identify -// a particular container (running or stopped) within a container spec. -func K8SContainerRestartCount(val int) attribute.KeyValue { - return K8SContainerRestartCountKey.Int(val) -} - -// A Kubernetes ReplicaSet object. -const ( - // K8SReplicaSetUIDKey is the attribute Key conforming to the - // "k8s.replicaset.uid" semantic conventions. It represents the UID of the - // ReplicaSet. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' - K8SReplicaSetUIDKey = attribute.Key("k8s.replicaset.uid") - - // K8SReplicaSetNameKey is the attribute Key conforming to the - // "k8s.replicaset.name" semantic conventions. It represents the name of - // the ReplicaSet. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry' - K8SReplicaSetNameKey = attribute.Key("k8s.replicaset.name") -) - -// K8SReplicaSetUID returns an attribute KeyValue conforming to the -// "k8s.replicaset.uid" semantic conventions. It represents the UID of the -// ReplicaSet. -func K8SReplicaSetUID(val string) attribute.KeyValue { - return K8SReplicaSetUIDKey.String(val) -} - -// K8SReplicaSetName returns an attribute KeyValue conforming to the -// "k8s.replicaset.name" semantic conventions. It represents the name of the -// ReplicaSet. -func K8SReplicaSetName(val string) attribute.KeyValue { - return K8SReplicaSetNameKey.String(val) -} - -// A Kubernetes Deployment object. -const ( - // K8SDeploymentUIDKey is the attribute Key conforming to the - // "k8s.deployment.uid" semantic conventions. It represents the UID of the - // Deployment. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' - K8SDeploymentUIDKey = attribute.Key("k8s.deployment.uid") - - // K8SDeploymentNameKey is the attribute Key conforming to the - // "k8s.deployment.name" semantic conventions. It represents the name of - // the Deployment. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry' - K8SDeploymentNameKey = attribute.Key("k8s.deployment.name") -) - -// K8SDeploymentUID returns an attribute KeyValue conforming to the -// "k8s.deployment.uid" semantic conventions. It represents the UID of the -// Deployment. -func K8SDeploymentUID(val string) attribute.KeyValue { - return K8SDeploymentUIDKey.String(val) -} - -// K8SDeploymentName returns an attribute KeyValue conforming to the -// "k8s.deployment.name" semantic conventions. It represents the name of the -// Deployment. -func K8SDeploymentName(val string) attribute.KeyValue { - return K8SDeploymentNameKey.String(val) -} - -// A Kubernetes StatefulSet object. -const ( - // K8SStatefulSetUIDKey is the attribute Key conforming to the - // "k8s.statefulset.uid" semantic conventions. It represents the UID of the - // StatefulSet. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' - K8SStatefulSetUIDKey = attribute.Key("k8s.statefulset.uid") - - // K8SStatefulSetNameKey is the attribute Key conforming to the - // "k8s.statefulset.name" semantic conventions. It represents the name of - // the StatefulSet. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry' - K8SStatefulSetNameKey = attribute.Key("k8s.statefulset.name") -) - -// K8SStatefulSetUID returns an attribute KeyValue conforming to the -// "k8s.statefulset.uid" semantic conventions. It represents the UID of the -// StatefulSet. -func K8SStatefulSetUID(val string) attribute.KeyValue { - return K8SStatefulSetUIDKey.String(val) -} - -// K8SStatefulSetName returns an attribute KeyValue conforming to the -// "k8s.statefulset.name" semantic conventions. It represents the name of the -// StatefulSet. -func K8SStatefulSetName(val string) attribute.KeyValue { - return K8SStatefulSetNameKey.String(val) -} - -// A Kubernetes DaemonSet object. -const ( - // K8SDaemonSetUIDKey is the attribute Key conforming to the - // "k8s.daemonset.uid" semantic conventions. It represents the UID of the - // DaemonSet. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' - K8SDaemonSetUIDKey = attribute.Key("k8s.daemonset.uid") - - // K8SDaemonSetNameKey is the attribute Key conforming to the - // "k8s.daemonset.name" semantic conventions. It represents the name of the - // DaemonSet. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry' - K8SDaemonSetNameKey = attribute.Key("k8s.daemonset.name") -) - -// K8SDaemonSetUID returns an attribute KeyValue conforming to the -// "k8s.daemonset.uid" semantic conventions. It represents the UID of the -// DaemonSet. -func K8SDaemonSetUID(val string) attribute.KeyValue { - return K8SDaemonSetUIDKey.String(val) -} - -// K8SDaemonSetName returns an attribute KeyValue conforming to the -// "k8s.daemonset.name" semantic conventions. It represents the name of the -// DaemonSet. -func K8SDaemonSetName(val string) attribute.KeyValue { - return K8SDaemonSetNameKey.String(val) -} - -// A Kubernetes Job object. -const ( - // K8SJobUIDKey is the attribute Key conforming to the "k8s.job.uid" - // semantic conventions. It represents the UID of the Job. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' - K8SJobUIDKey = attribute.Key("k8s.job.uid") - - // K8SJobNameKey is the attribute Key conforming to the "k8s.job.name" - // semantic conventions. It represents the name of the Job. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry' - K8SJobNameKey = attribute.Key("k8s.job.name") -) - -// K8SJobUID returns an attribute KeyValue conforming to the "k8s.job.uid" -// semantic conventions. It represents the UID of the Job. -func K8SJobUID(val string) attribute.KeyValue { - return K8SJobUIDKey.String(val) -} - -// K8SJobName returns an attribute KeyValue conforming to the "k8s.job.name" -// semantic conventions. It represents the name of the Job. -func K8SJobName(val string) attribute.KeyValue { - return K8SJobNameKey.String(val) -} - -// A Kubernetes CronJob object. -const ( - // K8SCronJobUIDKey is the attribute Key conforming to the - // "k8s.cronjob.uid" semantic conventions. It represents the UID of the - // CronJob. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' - K8SCronJobUIDKey = attribute.Key("k8s.cronjob.uid") - - // K8SCronJobNameKey is the attribute Key conforming to the - // "k8s.cronjob.name" semantic conventions. It represents the name of the - // CronJob. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry' - K8SCronJobNameKey = attribute.Key("k8s.cronjob.name") -) - -// K8SCronJobUID returns an attribute KeyValue conforming to the -// "k8s.cronjob.uid" semantic conventions. It represents the UID of the -// CronJob. -func K8SCronJobUID(val string) attribute.KeyValue { - return K8SCronJobUIDKey.String(val) -} - -// K8SCronJobName returns an attribute KeyValue conforming to the -// "k8s.cronjob.name" semantic conventions. It represents the name of the -// CronJob. -func K8SCronJobName(val string) attribute.KeyValue { - return K8SCronJobNameKey.String(val) -} - -// The operating system (OS) on which the process represented by this resource -// is running. -const ( - // OSTypeKey is the attribute Key conforming to the "os.type" semantic - // conventions. It represents the operating system type. - // - // Type: Enum - // RequirementLevel: Required - // Stability: stable - OSTypeKey = attribute.Key("os.type") - - // OSDescriptionKey is the attribute Key conforming to the "os.description" - // semantic conventions. It represents the human readable (not intended to - // be parsed) OS version information, like e.g. reported by `ver` or - // `lsb_release -a` commands. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Microsoft Windows [Version 10.0.18363.778]', 'Ubuntu 18.04.1 - // LTS' - OSDescriptionKey = attribute.Key("os.description") - - // OSNameKey is the attribute Key conforming to the "os.name" semantic - // conventions. It represents the human readable operating system name. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'iOS', 'Android', 'Ubuntu' - OSNameKey = attribute.Key("os.name") - - // OSVersionKey is the attribute Key conforming to the "os.version" - // semantic conventions. It represents the version string of the operating - // system as defined in [Version - // Attributes](../../resource/semantic_conventions/README.md#version-attributes). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '14.2.1', '18.04.1' - OSVersionKey = attribute.Key("os.version") -) - -var ( - // Microsoft Windows - OSTypeWindows = OSTypeKey.String("windows") - // Linux - OSTypeLinux = OSTypeKey.String("linux") - // Apple Darwin - OSTypeDarwin = OSTypeKey.String("darwin") - // FreeBSD - OSTypeFreeBSD = OSTypeKey.String("freebsd") - // NetBSD - OSTypeNetBSD = OSTypeKey.String("netbsd") - // OpenBSD - OSTypeOpenBSD = OSTypeKey.String("openbsd") - // DragonFly BSD - OSTypeDragonflyBSD = OSTypeKey.String("dragonflybsd") - // HP-UX (Hewlett Packard Unix) - OSTypeHPUX = OSTypeKey.String("hpux") - // AIX (Advanced Interactive eXecutive) - OSTypeAIX = OSTypeKey.String("aix") - // SunOS, Oracle Solaris - OSTypeSolaris = OSTypeKey.String("solaris") - // IBM z/OS - OSTypeZOS = OSTypeKey.String("z_os") -) - -// OSDescription returns an attribute KeyValue conforming to the -// "os.description" semantic conventions. It represents the human readable (not -// intended to be parsed) OS version information, like e.g. reported by `ver` -// or `lsb_release -a` commands. -func OSDescription(val string) attribute.KeyValue { - return OSDescriptionKey.String(val) -} - -// OSName returns an attribute KeyValue conforming to the "os.name" semantic -// conventions. It represents the human readable operating system name. -func OSName(val string) attribute.KeyValue { - return OSNameKey.String(val) -} - -// OSVersion returns an attribute KeyValue conforming to the "os.version" -// semantic conventions. It represents the version string of the operating -// system as defined in [Version -// Attributes](../../resource/semantic_conventions/README.md#version-attributes). -func OSVersion(val string) attribute.KeyValue { - return OSVersionKey.String(val) -} - -// An operating system process. -const ( - // ProcessPIDKey is the attribute Key conforming to the "process.pid" - // semantic conventions. It represents the process identifier (PID). - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 1234 - ProcessPIDKey = attribute.Key("process.pid") - - // ProcessParentPIDKey is the attribute Key conforming to the - // "process.parent_pid" semantic conventions. It represents the parent - // Process identifier (PID). - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 111 - ProcessParentPIDKey = attribute.Key("process.parent_pid") - - // ProcessExecutableNameKey is the attribute Key conforming to the - // "process.executable.name" semantic conventions. It represents the name - // of the process executable. On Linux based systems, can be set to the - // `Name` in `proc/[pid]/status`. On Windows, can be set to the base name - // of `GetProcessImageFileNameW`. - // - // Type: string - // RequirementLevel: ConditionallyRequired (See alternative attributes - // below.) - // Stability: stable - // Examples: 'otelcol' - ProcessExecutableNameKey = attribute.Key("process.executable.name") - - // ProcessExecutablePathKey is the attribute Key conforming to the - // "process.executable.path" semantic conventions. It represents the full - // path to the process executable. On Linux based systems, can be set to - // the target of `proc/[pid]/exe`. On Windows, can be set to the result of - // `GetProcessImageFileNameW`. - // - // Type: string - // RequirementLevel: ConditionallyRequired (See alternative attributes - // below.) - // Stability: stable - // Examples: '/usr/bin/cmd/otelcol' - ProcessExecutablePathKey = attribute.Key("process.executable.path") - - // ProcessCommandKey is the attribute Key conforming to the - // "process.command" semantic conventions. It represents the command used - // to launch the process (i.e. the command name). On Linux based systems, - // can be set to the zeroth string in `proc/[pid]/cmdline`. On Windows, can - // be set to the first parameter extracted from `GetCommandLineW`. - // - // Type: string - // RequirementLevel: ConditionallyRequired (See alternative attributes - // below.) - // Stability: stable - // Examples: 'cmd/otelcol' - ProcessCommandKey = attribute.Key("process.command") - - // ProcessCommandLineKey is the attribute Key conforming to the - // "process.command_line" semantic conventions. It represents the full - // command used to launch the process as a single string representing the - // full command. On Windows, can be set to the result of `GetCommandLineW`. - // Do not set this if you have to assemble it just for monitoring; use - // `process.command_args` instead. - // - // Type: string - // RequirementLevel: ConditionallyRequired (See alternative attributes - // below.) - // Stability: stable - // Examples: 'C:\\cmd\\otecol --config="my directory\\config.yaml"' - ProcessCommandLineKey = attribute.Key("process.command_line") - - // ProcessCommandArgsKey is the attribute Key conforming to the - // "process.command_args" semantic conventions. It represents the all the - // command arguments (including the command/executable itself) as received - // by the process. On Linux-based systems (and some other Unixoid systems - // supporting procfs), can be set according to the list of null-delimited - // strings extracted from `proc/[pid]/cmdline`. For libc-based executables, - // this would be the full argv vector passed to `main`. - // - // Type: string[] - // RequirementLevel: ConditionallyRequired (See alternative attributes - // below.) - // Stability: stable - // Examples: 'cmd/otecol', '--config=config.yaml' - ProcessCommandArgsKey = attribute.Key("process.command_args") - - // ProcessOwnerKey is the attribute Key conforming to the "process.owner" - // semantic conventions. It represents the username of the user that owns - // the process. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'root' - ProcessOwnerKey = attribute.Key("process.owner") -) - -// ProcessPID returns an attribute KeyValue conforming to the "process.pid" -// semantic conventions. It represents the process identifier (PID). -func ProcessPID(val int) attribute.KeyValue { - return ProcessPIDKey.Int(val) -} - -// ProcessParentPID returns an attribute KeyValue conforming to the -// "process.parent_pid" semantic conventions. It represents the parent Process -// identifier (PID). -func ProcessParentPID(val int) attribute.KeyValue { - return ProcessParentPIDKey.Int(val) -} - -// ProcessExecutableName returns an attribute KeyValue conforming to the -// "process.executable.name" semantic conventions. It represents the name of -// the process executable. On Linux based systems, can be set to the `Name` in -// `proc/[pid]/status`. On Windows, can be set to the base name of -// `GetProcessImageFileNameW`. -func ProcessExecutableName(val string) attribute.KeyValue { - return ProcessExecutableNameKey.String(val) -} - -// ProcessExecutablePath returns an attribute KeyValue conforming to the -// "process.executable.path" semantic conventions. It represents the full path -// to the process executable. On Linux based systems, can be set to the target -// of `proc/[pid]/exe`. On Windows, can be set to the result of -// `GetProcessImageFileNameW`. -func ProcessExecutablePath(val string) attribute.KeyValue { - return ProcessExecutablePathKey.String(val) -} - -// ProcessCommand returns an attribute KeyValue conforming to the -// "process.command" semantic conventions. It represents the command used to -// launch the process (i.e. the command name). On Linux based systems, can be -// set to the zeroth string in `proc/[pid]/cmdline`. On Windows, can be set to -// the first parameter extracted from `GetCommandLineW`. -func ProcessCommand(val string) attribute.KeyValue { - return ProcessCommandKey.String(val) -} - -// ProcessCommandLine returns an attribute KeyValue conforming to the -// "process.command_line" semantic conventions. It represents the full command -// used to launch the process as a single string representing the full command. -// On Windows, can be set to the result of `GetCommandLineW`. Do not set this -// if you have to assemble it just for monitoring; use `process.command_args` -// instead. -func ProcessCommandLine(val string) attribute.KeyValue { - return ProcessCommandLineKey.String(val) -} - -// ProcessCommandArgs returns an attribute KeyValue conforming to the -// "process.command_args" semantic conventions. It represents the all the -// command arguments (including the command/executable itself) as received by -// the process. On Linux-based systems (and some other Unixoid systems -// supporting procfs), can be set according to the list of null-delimited -// strings extracted from `proc/[pid]/cmdline`. For libc-based executables, -// this would be the full argv vector passed to `main`. -func ProcessCommandArgs(val ...string) attribute.KeyValue { - return ProcessCommandArgsKey.StringSlice(val) -} - -// ProcessOwner returns an attribute KeyValue conforming to the -// "process.owner" semantic conventions. It represents the username of the user -// that owns the process. -func ProcessOwner(val string) attribute.KeyValue { - return ProcessOwnerKey.String(val) -} - -// The single (language) runtime instance which is monitored. -const ( - // ProcessRuntimeNameKey is the attribute Key conforming to the - // "process.runtime.name" semantic conventions. It represents the name of - // the runtime of this process. For compiled native binaries, this SHOULD - // be the name of the compiler. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'OpenJDK Runtime Environment' - ProcessRuntimeNameKey = attribute.Key("process.runtime.name") - - // ProcessRuntimeVersionKey is the attribute Key conforming to the - // "process.runtime.version" semantic conventions. It represents the - // version of the runtime of this process, as returned by the runtime - // without modification. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '14.0.2' - ProcessRuntimeVersionKey = attribute.Key("process.runtime.version") - - // ProcessRuntimeDescriptionKey is the attribute Key conforming to the - // "process.runtime.description" semantic conventions. It represents an - // additional description about the runtime of the process, for example a - // specific vendor customization of the runtime environment. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Eclipse OpenJ9 Eclipse OpenJ9 VM openj9-0.21.0' - ProcessRuntimeDescriptionKey = attribute.Key("process.runtime.description") -) - -// ProcessRuntimeName returns an attribute KeyValue conforming to the -// "process.runtime.name" semantic conventions. It represents the name of the -// runtime of this process. For compiled native binaries, this SHOULD be the -// name of the compiler. -func ProcessRuntimeName(val string) attribute.KeyValue { - return ProcessRuntimeNameKey.String(val) -} - -// ProcessRuntimeVersion returns an attribute KeyValue conforming to the -// "process.runtime.version" semantic conventions. It represents the version of -// the runtime of this process, as returned by the runtime without -// modification. -func ProcessRuntimeVersion(val string) attribute.KeyValue { - return ProcessRuntimeVersionKey.String(val) -} - -// ProcessRuntimeDescription returns an attribute KeyValue conforming to the -// "process.runtime.description" semantic conventions. It represents an -// additional description about the runtime of the process, for example a -// specific vendor customization of the runtime environment. -func ProcessRuntimeDescription(val string) attribute.KeyValue { - return ProcessRuntimeDescriptionKey.String(val) -} - -// A service instance. -const ( - // ServiceNameKey is the attribute Key conforming to the "service.name" - // semantic conventions. It represents the logical name of the service. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'shoppingcart' - // Note: MUST be the same for all instances of horizontally scaled - // services. If the value was not specified, SDKs MUST fallback to - // `unknown_service:` concatenated with - // [`process.executable.name`](process.md#process), e.g. - // `unknown_service:bash`. If `process.executable.name` is not available, - // the value MUST be set to `unknown_service`. - ServiceNameKey = attribute.Key("service.name") - - // ServiceNamespaceKey is the attribute Key conforming to the - // "service.namespace" semantic conventions. It represents a namespace for - // `service.name`. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Shop' - // Note: A string value having a meaning that helps to distinguish a group - // of services, for example the team name that owns a group of services. - // `service.name` is expected to be unique within the same namespace. If - // `service.namespace` is not specified in the Resource then `service.name` - // is expected to be unique for all services that have no explicit - // namespace defined (so the empty/unspecified namespace is simply one more - // valid namespace). Zero-length namespace string is assumed equal to - // unspecified namespace. - ServiceNamespaceKey = attribute.Key("service.namespace") - - // ServiceInstanceIDKey is the attribute Key conforming to the - // "service.instance.id" semantic conventions. It represents the string ID - // of the service instance. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '627cc493-f310-47de-96bd-71410b7dec09' - // Note: MUST be unique for each instance of the same - // `service.namespace,service.name` pair (in other words - // `service.namespace,service.name,service.instance.id` triplet MUST be - // globally unique). The ID helps to distinguish instances of the same - // service that exist at the same time (e.g. instances of a horizontally - // scaled service). It is preferable for the ID to be persistent and stay - // the same for the lifetime of the service instance, however it is - // acceptable that the ID is ephemeral and changes during important - // lifetime events for the service (e.g. service restarts). If the service - // has no inherent unique ID that can be used as the value of this - // attribute it is recommended to generate a random Version 1 or Version 4 - // RFC 4122 UUID (services aiming for reproducible UUIDs may also use - // Version 5, see RFC 4122 for more recommendations). - ServiceInstanceIDKey = attribute.Key("service.instance.id") - - // ServiceVersionKey is the attribute Key conforming to the - // "service.version" semantic conventions. It represents the version string - // of the service API or implementation. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '2.0.0' - ServiceVersionKey = attribute.Key("service.version") -) - -// ServiceName returns an attribute KeyValue conforming to the -// "service.name" semantic conventions. It represents the logical name of the -// service. -func ServiceName(val string) attribute.KeyValue { - return ServiceNameKey.String(val) -} - -// ServiceNamespace returns an attribute KeyValue conforming to the -// "service.namespace" semantic conventions. It represents a namespace for -// `service.name`. -func ServiceNamespace(val string) attribute.KeyValue { - return ServiceNamespaceKey.String(val) -} - -// ServiceInstanceID returns an attribute KeyValue conforming to the -// "service.instance.id" semantic conventions. It represents the string ID of -// the service instance. -func ServiceInstanceID(val string) attribute.KeyValue { - return ServiceInstanceIDKey.String(val) -} - -// ServiceVersion returns an attribute KeyValue conforming to the -// "service.version" semantic conventions. It represents the version string of -// the service API or implementation. -func ServiceVersion(val string) attribute.KeyValue { - return ServiceVersionKey.String(val) -} - -// The telemetry SDK used to capture data recorded by the instrumentation -// libraries. -const ( - // TelemetrySDKNameKey is the attribute Key conforming to the - // "telemetry.sdk.name" semantic conventions. It represents the name of the - // telemetry SDK as defined above. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'opentelemetry' - TelemetrySDKNameKey = attribute.Key("telemetry.sdk.name") - - // TelemetrySDKLanguageKey is the attribute Key conforming to the - // "telemetry.sdk.language" semantic conventions. It represents the - // language of the telemetry SDK. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - TelemetrySDKLanguageKey = attribute.Key("telemetry.sdk.language") - - // TelemetrySDKVersionKey is the attribute Key conforming to the - // "telemetry.sdk.version" semantic conventions. It represents the version - // string of the telemetry SDK. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '1.2.3' - TelemetrySDKVersionKey = attribute.Key("telemetry.sdk.version") - - // TelemetryAutoVersionKey is the attribute Key conforming to the - // "telemetry.auto.version" semantic conventions. It represents the version - // string of the auto instrumentation agent, if used. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '1.2.3' - TelemetryAutoVersionKey = attribute.Key("telemetry.auto.version") -) - -var ( - // cpp - TelemetrySDKLanguageCPP = TelemetrySDKLanguageKey.String("cpp") - // dotnet - TelemetrySDKLanguageDotnet = TelemetrySDKLanguageKey.String("dotnet") - // erlang - TelemetrySDKLanguageErlang = TelemetrySDKLanguageKey.String("erlang") - // go - TelemetrySDKLanguageGo = TelemetrySDKLanguageKey.String("go") - // java - TelemetrySDKLanguageJava = TelemetrySDKLanguageKey.String("java") - // nodejs - TelemetrySDKLanguageNodejs = TelemetrySDKLanguageKey.String("nodejs") - // php - TelemetrySDKLanguagePHP = TelemetrySDKLanguageKey.String("php") - // python - TelemetrySDKLanguagePython = TelemetrySDKLanguageKey.String("python") - // ruby - TelemetrySDKLanguageRuby = TelemetrySDKLanguageKey.String("ruby") - // webjs - TelemetrySDKLanguageWebjs = TelemetrySDKLanguageKey.String("webjs") - // swift - TelemetrySDKLanguageSwift = TelemetrySDKLanguageKey.String("swift") -) - -// TelemetrySDKName returns an attribute KeyValue conforming to the -// "telemetry.sdk.name" semantic conventions. It represents the name of the -// telemetry SDK as defined above. -func TelemetrySDKName(val string) attribute.KeyValue { - return TelemetrySDKNameKey.String(val) -} - -// TelemetrySDKVersion returns an attribute KeyValue conforming to the -// "telemetry.sdk.version" semantic conventions. It represents the version -// string of the telemetry SDK. -func TelemetrySDKVersion(val string) attribute.KeyValue { - return TelemetrySDKVersionKey.String(val) -} - -// TelemetryAutoVersion returns an attribute KeyValue conforming to the -// "telemetry.auto.version" semantic conventions. It represents the version -// string of the auto instrumentation agent, if used. -func TelemetryAutoVersion(val string) attribute.KeyValue { - return TelemetryAutoVersionKey.String(val) -} - -// Resource describing the packaged software running the application code. Web -// engines are typically executed using process.runtime. -const ( - // WebEngineNameKey is the attribute Key conforming to the "webengine.name" - // semantic conventions. It represents the name of the web engine. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'WildFly' - WebEngineNameKey = attribute.Key("webengine.name") - - // WebEngineVersionKey is the attribute Key conforming to the - // "webengine.version" semantic conventions. It represents the version of - // the web engine. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '21.0.0' - WebEngineVersionKey = attribute.Key("webengine.version") - - // WebEngineDescriptionKey is the attribute Key conforming to the - // "webengine.description" semantic conventions. It represents the - // additional description of the web engine (e.g. detailed version and - // edition information). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'WildFly Full 21.0.0.Final (WildFly Core 13.0.1.Final) - - // 2.2.2.Final' - WebEngineDescriptionKey = attribute.Key("webengine.description") -) - -// WebEngineName returns an attribute KeyValue conforming to the -// "webengine.name" semantic conventions. It represents the name of the web -// engine. -func WebEngineName(val string) attribute.KeyValue { - return WebEngineNameKey.String(val) -} - -// WebEngineVersion returns an attribute KeyValue conforming to the -// "webengine.version" semantic conventions. It represents the version of the -// web engine. -func WebEngineVersion(val string) attribute.KeyValue { - return WebEngineVersionKey.String(val) -} - -// WebEngineDescription returns an attribute KeyValue conforming to the -// "webengine.description" semantic conventions. It represents the additional -// description of the web engine (e.g. detailed version and edition -// information). -func WebEngineDescription(val string) attribute.KeyValue { - return WebEngineDescriptionKey.String(val) -} - -// Attributes used by non-OTLP exporters to represent OpenTelemetry Scope's -// concepts. -const ( - // OtelScopeNameKey is the attribute Key conforming to the - // "otel.scope.name" semantic conventions. It represents the name of the - // instrumentation scope - (`InstrumentationScope.Name` in OTLP). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'io.opentelemetry.contrib.mongodb' - OtelScopeNameKey = attribute.Key("otel.scope.name") - - // OtelScopeVersionKey is the attribute Key conforming to the - // "otel.scope.version" semantic conventions. It represents the version of - // the instrumentation scope - (`InstrumentationScope.Version` in OTLP). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '1.0.0' - OtelScopeVersionKey = attribute.Key("otel.scope.version") -) - -// OtelScopeName returns an attribute KeyValue conforming to the -// "otel.scope.name" semantic conventions. It represents the name of the -// instrumentation scope - (`InstrumentationScope.Name` in OTLP). -func OtelScopeName(val string) attribute.KeyValue { - return OtelScopeNameKey.String(val) -} - -// OtelScopeVersion returns an attribute KeyValue conforming to the -// "otel.scope.version" semantic conventions. It represents the version of the -// instrumentation scope - (`InstrumentationScope.Version` in OTLP). -func OtelScopeVersion(val string) attribute.KeyValue { - return OtelScopeVersionKey.String(val) -} - -// Span attributes used by non-OTLP exporters to represent OpenTelemetry -// Scope's concepts. -const ( - // OtelLibraryNameKey is the attribute Key conforming to the - // "otel.library.name" semantic conventions. It represents the deprecated, - // use the `otel.scope.name` attribute. - // - // Type: string - // RequirementLevel: Optional - // Stability: deprecated - // Examples: 'io.opentelemetry.contrib.mongodb' - OtelLibraryNameKey = attribute.Key("otel.library.name") - - // OtelLibraryVersionKey is the attribute Key conforming to the - // "otel.library.version" semantic conventions. It represents the - // deprecated, use the `otel.scope.version` attribute. - // - // Type: string - // RequirementLevel: Optional - // Stability: deprecated - // Examples: '1.0.0' - OtelLibraryVersionKey = attribute.Key("otel.library.version") -) - -// OtelLibraryName returns an attribute KeyValue conforming to the -// "otel.library.name" semantic conventions. It represents the deprecated, use -// the `otel.scope.name` attribute. -func OtelLibraryName(val string) attribute.KeyValue { - return OtelLibraryNameKey.String(val) -} - -// OtelLibraryVersion returns an attribute KeyValue conforming to the -// "otel.library.version" semantic conventions. It represents the deprecated, -// use the `otel.scope.version` attribute. -func OtelLibraryVersion(val string) attribute.KeyValue { - return OtelLibraryVersionKey.String(val) -} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/schema.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/schema.go deleted file mode 100644 index 634a1dce07..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/schema.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -package semconv // import "go.opentelemetry.io/otel/semconv/v1.17.0" - -// SchemaURL is the schema URL that matches the version of the semantic conventions -// that this package defines. Semconv packages starting from v1.4.0 must declare -// non-empty schema URL in the form https://opentelemetry.io/schemas/ -const SchemaURL = "https://opentelemetry.io/schemas/1.17.0" diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/trace.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/trace.go deleted file mode 100644 index 21497bb6bc..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.17.0/trace.go +++ /dev/null @@ -1,3364 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -// Code generated from semantic convention specification. DO NOT EDIT. - -package semconv // import "go.opentelemetry.io/otel/semconv/v1.17.0" - -import "go.opentelemetry.io/otel/attribute" - -// The shared attributes used to report a single exception associated with a -// span or log. -const ( - // ExceptionTypeKey is the attribute Key conforming to the "exception.type" - // semantic conventions. It represents the type of the exception (its - // fully-qualified class name, if applicable). The dynamic type of the - // exception should be preferred over the static type in languages that - // support it. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'java.net.ConnectException', 'OSError' - ExceptionTypeKey = attribute.Key("exception.type") - - // ExceptionMessageKey is the attribute Key conforming to the - // "exception.message" semantic conventions. It represents the exception - // message. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Division by zero', "Can't convert 'int' object to str - // implicitly" - ExceptionMessageKey = attribute.Key("exception.message") - - // ExceptionStacktraceKey is the attribute Key conforming to the - // "exception.stacktrace" semantic conventions. It represents a stacktrace - // as a string in the natural representation for the language runtime. The - // representation is to be determined and documented by each language SIG. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Exception in thread "main" java.lang.RuntimeException: Test - // exception\\n at ' - // 'com.example.GenerateTrace.methodB(GenerateTrace.java:13)\\n at ' - // 'com.example.GenerateTrace.methodA(GenerateTrace.java:9)\\n at ' - // 'com.example.GenerateTrace.main(GenerateTrace.java:5)' - ExceptionStacktraceKey = attribute.Key("exception.stacktrace") -) - -// ExceptionType returns an attribute KeyValue conforming to the -// "exception.type" semantic conventions. It represents the type of the -// exception (its fully-qualified class name, if applicable). The dynamic type -// of the exception should be preferred over the static type in languages that -// support it. -func ExceptionType(val string) attribute.KeyValue { - return ExceptionTypeKey.String(val) -} - -// ExceptionMessage returns an attribute KeyValue conforming to the -// "exception.message" semantic conventions. It represents the exception -// message. -func ExceptionMessage(val string) attribute.KeyValue { - return ExceptionMessageKey.String(val) -} - -// ExceptionStacktrace returns an attribute KeyValue conforming to the -// "exception.stacktrace" semantic conventions. It represents a stacktrace as a -// string in the natural representation for the language runtime. The -// representation is to be determined and documented by each language SIG. -func ExceptionStacktrace(val string) attribute.KeyValue { - return ExceptionStacktraceKey.String(val) -} - -// Attributes for Events represented using Log Records. -const ( - // EventNameKey is the attribute Key conforming to the "event.name" - // semantic conventions. It represents the name identifies the event. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'click', 'exception' - EventNameKey = attribute.Key("event.name") - - // EventDomainKey is the attribute Key conforming to the "event.domain" - // semantic conventions. It represents the domain identifies the business - // context for the events. - // - // Type: Enum - // RequirementLevel: Required - // Stability: stable - // Note: Events across different domains may have same `event.name`, yet be - // unrelated events. - EventDomainKey = attribute.Key("event.domain") -) - -var ( - // Events from browser apps - EventDomainBrowser = EventDomainKey.String("browser") - // Events from mobile apps - EventDomainDevice = EventDomainKey.String("device") - // Events from Kubernetes - EventDomainK8S = EventDomainKey.String("k8s") -) - -// EventName returns an attribute KeyValue conforming to the "event.name" -// semantic conventions. It represents the name identifies the event. -func EventName(val string) attribute.KeyValue { - return EventNameKey.String(val) -} - -// Span attributes used by AWS Lambda (in addition to general `faas` -// attributes). -const ( - // AWSLambdaInvokedARNKey is the attribute Key conforming to the - // "aws.lambda.invoked_arn" semantic conventions. It represents the full - // invoked ARN as provided on the `Context` passed to the function - // (`Lambda-Runtime-Invoked-Function-ARN` header on the - // `/runtime/invocation/next` applicable). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'arn:aws:lambda:us-east-1:123456:function:myfunction:myalias' - // Note: This may be different from `faas.id` if an alias is involved. - AWSLambdaInvokedARNKey = attribute.Key("aws.lambda.invoked_arn") -) - -// AWSLambdaInvokedARN returns an attribute KeyValue conforming to the -// "aws.lambda.invoked_arn" semantic conventions. It represents the full -// invoked ARN as provided on the `Context` passed to the function -// (`Lambda-Runtime-Invoked-Function-ARN` header on the -// `/runtime/invocation/next` applicable). -func AWSLambdaInvokedARN(val string) attribute.KeyValue { - return AWSLambdaInvokedARNKey.String(val) -} - -// Attributes for CloudEvents. CloudEvents is a specification on how to define -// event data in a standard way. These attributes can be attached to spans when -// performing operations with CloudEvents, regardless of the protocol being -// used. -const ( - // CloudeventsEventIDKey is the attribute Key conforming to the - // "cloudevents.event_id" semantic conventions. It represents the - // [event_id](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id) - // uniquely identifies the event. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: '123e4567-e89b-12d3-a456-426614174000', '0001' - CloudeventsEventIDKey = attribute.Key("cloudevents.event_id") - - // CloudeventsEventSourceKey is the attribute Key conforming to the - // "cloudevents.event_source" semantic conventions. It represents the - // [source](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1) - // identifies the context in which an event happened. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'https://github.com/cloudevents', - // '/cloudevents/spec/pull/123', 'my-service' - CloudeventsEventSourceKey = attribute.Key("cloudevents.event_source") - - // CloudeventsEventSpecVersionKey is the attribute Key conforming to the - // "cloudevents.event_spec_version" semantic conventions. It represents the - // [version of the CloudEvents - // specification](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion) - // which the event uses. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '1.0' - CloudeventsEventSpecVersionKey = attribute.Key("cloudevents.event_spec_version") - - // CloudeventsEventTypeKey is the attribute Key conforming to the - // "cloudevents.event_type" semantic conventions. It represents the - // [event_type](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type) - // contains a value describing the type of event related to the originating - // occurrence. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'com.github.pull_request.opened', - // 'com.example.object.deleted.v2' - CloudeventsEventTypeKey = attribute.Key("cloudevents.event_type") - - // CloudeventsEventSubjectKey is the attribute Key conforming to the - // "cloudevents.event_subject" semantic conventions. It represents the - // [subject](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject) - // of the event in the context of the event producer (identified by - // source). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'mynewfile.jpg' - CloudeventsEventSubjectKey = attribute.Key("cloudevents.event_subject") -) - -// CloudeventsEventID returns an attribute KeyValue conforming to the -// "cloudevents.event_id" semantic conventions. It represents the -// [event_id](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id) -// uniquely identifies the event. -func CloudeventsEventID(val string) attribute.KeyValue { - return CloudeventsEventIDKey.String(val) -} - -// CloudeventsEventSource returns an attribute KeyValue conforming to the -// "cloudevents.event_source" semantic conventions. It represents the -// [source](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1) -// identifies the context in which an event happened. -func CloudeventsEventSource(val string) attribute.KeyValue { - return CloudeventsEventSourceKey.String(val) -} - -// CloudeventsEventSpecVersion returns an attribute KeyValue conforming to -// the "cloudevents.event_spec_version" semantic conventions. It represents the -// [version of the CloudEvents -// specification](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion) -// which the event uses. -func CloudeventsEventSpecVersion(val string) attribute.KeyValue { - return CloudeventsEventSpecVersionKey.String(val) -} - -// CloudeventsEventType returns an attribute KeyValue conforming to the -// "cloudevents.event_type" semantic conventions. It represents the -// [event_type](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type) -// contains a value describing the type of event related to the originating -// occurrence. -func CloudeventsEventType(val string) attribute.KeyValue { - return CloudeventsEventTypeKey.String(val) -} - -// CloudeventsEventSubject returns an attribute KeyValue conforming to the -// "cloudevents.event_subject" semantic conventions. It represents the -// [subject](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject) -// of the event in the context of the event producer (identified by source). -func CloudeventsEventSubject(val string) attribute.KeyValue { - return CloudeventsEventSubjectKey.String(val) -} - -// Semantic conventions for the OpenTracing Shim -const ( - // OpentracingRefTypeKey is the attribute Key conforming to the - // "opentracing.ref_type" semantic conventions. It represents the - // parent-child Reference type - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - // Note: The causal relationship between a child Span and a parent Span. - OpentracingRefTypeKey = attribute.Key("opentracing.ref_type") -) - -var ( - // The parent Span depends on the child Span in some capacity - OpentracingRefTypeChildOf = OpentracingRefTypeKey.String("child_of") - // The parent Span does not depend in any way on the result of the child Span - OpentracingRefTypeFollowsFrom = OpentracingRefTypeKey.String("follows_from") -) - -// The attributes used to perform database client calls. -const ( - // DBSystemKey is the attribute Key conforming to the "db.system" semantic - // conventions. It represents an identifier for the database management - // system (DBMS) product being used. See below for a list of well-known - // identifiers. - // - // Type: Enum - // RequirementLevel: Required - // Stability: stable - DBSystemKey = attribute.Key("db.system") - - // DBConnectionStringKey is the attribute Key conforming to the - // "db.connection_string" semantic conventions. It represents the - // connection string used to connect to the database. It is recommended to - // remove embedded credentials. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Server=(localdb)\\v11.0;Integrated Security=true;' - DBConnectionStringKey = attribute.Key("db.connection_string") - - // DBUserKey is the attribute Key conforming to the "db.user" semantic - // conventions. It represents the username for accessing the database. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'readonly_user', 'reporting_user' - DBUserKey = attribute.Key("db.user") - - // DBJDBCDriverClassnameKey is the attribute Key conforming to the - // "db.jdbc.driver_classname" semantic conventions. It represents the - // fully-qualified class name of the [Java Database Connectivity - // (JDBC)](https://docs.oracle.com/javase/8/docs/technotes/guides/jdbc/) - // driver used to connect. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'org.postgresql.Driver', - // 'com.microsoft.sqlserver.jdbc.SQLServerDriver' - DBJDBCDriverClassnameKey = attribute.Key("db.jdbc.driver_classname") - - // DBNameKey is the attribute Key conforming to the "db.name" semantic - // conventions. It represents the this attribute is used to report the name - // of the database being accessed. For commands that switch the database, - // this should be set to the target database (even if the command fails). - // - // Type: string - // RequirementLevel: ConditionallyRequired (If applicable.) - // Stability: stable - // Examples: 'customers', 'main' - // Note: In some SQL databases, the database name to be used is called - // "schema name". In case there are multiple layers that could be - // considered for database name (e.g. Oracle instance name and schema - // name), the database name to be used is the more specific layer (e.g. - // Oracle schema name). - DBNameKey = attribute.Key("db.name") - - // DBStatementKey is the attribute Key conforming to the "db.statement" - // semantic conventions. It represents the database statement being - // executed. - // - // Type: string - // RequirementLevel: ConditionallyRequired (If applicable and not - // explicitly disabled via instrumentation configuration.) - // Stability: stable - // Examples: 'SELECT * FROM wuser_table', 'SET mykey "WuValue"' - // Note: The value may be sanitized to exclude sensitive information. - DBStatementKey = attribute.Key("db.statement") - - // DBOperationKey is the attribute Key conforming to the "db.operation" - // semantic conventions. It represents the name of the operation being - // executed, e.g. the [MongoDB command - // name](https://docs.mongodb.com/manual/reference/command/#database-operations) - // such as `findAndModify`, or the SQL keyword. - // - // Type: string - // RequirementLevel: ConditionallyRequired (If `db.statement` is not - // applicable.) - // Stability: stable - // Examples: 'findAndModify', 'HMSET', 'SELECT' - // Note: When setting this to an SQL keyword, it is not recommended to - // attempt any client-side parsing of `db.statement` just to get this - // property, but it should be set if the operation name is provided by the - // library being instrumented. If the SQL statement has an ambiguous - // operation, or performs more than one operation, this value may be - // omitted. - DBOperationKey = attribute.Key("db.operation") -) - -var ( - // Some other SQL database. Fallback only. See notes - DBSystemOtherSQL = DBSystemKey.String("other_sql") - // Microsoft SQL Server - DBSystemMSSQL = DBSystemKey.String("mssql") - // MySQL - DBSystemMySQL = DBSystemKey.String("mysql") - // Oracle Database - DBSystemOracle = DBSystemKey.String("oracle") - // IBM DB2 - DBSystemDB2 = DBSystemKey.String("db2") - // PostgreSQL - DBSystemPostgreSQL = DBSystemKey.String("postgresql") - // Amazon Redshift - DBSystemRedshift = DBSystemKey.String("redshift") - // Apache Hive - DBSystemHive = DBSystemKey.String("hive") - // Cloudscape - DBSystemCloudscape = DBSystemKey.String("cloudscape") - // HyperSQL DataBase - DBSystemHSQLDB = DBSystemKey.String("hsqldb") - // Progress Database - DBSystemProgress = DBSystemKey.String("progress") - // SAP MaxDB - DBSystemMaxDB = DBSystemKey.String("maxdb") - // SAP HANA - DBSystemHanaDB = DBSystemKey.String("hanadb") - // Ingres - DBSystemIngres = DBSystemKey.String("ingres") - // FirstSQL - DBSystemFirstSQL = DBSystemKey.String("firstsql") - // EnterpriseDB - DBSystemEDB = DBSystemKey.String("edb") - // InterSystems Caché - DBSystemCache = DBSystemKey.String("cache") - // Adabas (Adaptable Database System) - DBSystemAdabas = DBSystemKey.String("adabas") - // Firebird - DBSystemFirebird = DBSystemKey.String("firebird") - // Apache Derby - DBSystemDerby = DBSystemKey.String("derby") - // FileMaker - DBSystemFilemaker = DBSystemKey.String("filemaker") - // Informix - DBSystemInformix = DBSystemKey.String("informix") - // InstantDB - DBSystemInstantDB = DBSystemKey.String("instantdb") - // InterBase - DBSystemInterbase = DBSystemKey.String("interbase") - // MariaDB - DBSystemMariaDB = DBSystemKey.String("mariadb") - // Netezza - DBSystemNetezza = DBSystemKey.String("netezza") - // Pervasive PSQL - DBSystemPervasive = DBSystemKey.String("pervasive") - // PointBase - DBSystemPointbase = DBSystemKey.String("pointbase") - // SQLite - DBSystemSqlite = DBSystemKey.String("sqlite") - // Sybase - DBSystemSybase = DBSystemKey.String("sybase") - // Teradata - DBSystemTeradata = DBSystemKey.String("teradata") - // Vertica - DBSystemVertica = DBSystemKey.String("vertica") - // H2 - DBSystemH2 = DBSystemKey.String("h2") - // ColdFusion IMQ - DBSystemColdfusion = DBSystemKey.String("coldfusion") - // Apache Cassandra - DBSystemCassandra = DBSystemKey.String("cassandra") - // Apache HBase - DBSystemHBase = DBSystemKey.String("hbase") - // MongoDB - DBSystemMongoDB = DBSystemKey.String("mongodb") - // Redis - DBSystemRedis = DBSystemKey.String("redis") - // Couchbase - DBSystemCouchbase = DBSystemKey.String("couchbase") - // CouchDB - DBSystemCouchDB = DBSystemKey.String("couchdb") - // Microsoft Azure Cosmos DB - DBSystemCosmosDB = DBSystemKey.String("cosmosdb") - // Amazon DynamoDB - DBSystemDynamoDB = DBSystemKey.String("dynamodb") - // Neo4j - DBSystemNeo4j = DBSystemKey.String("neo4j") - // Apache Geode - DBSystemGeode = DBSystemKey.String("geode") - // Elasticsearch - DBSystemElasticsearch = DBSystemKey.String("elasticsearch") - // Memcached - DBSystemMemcached = DBSystemKey.String("memcached") - // CockroachDB - DBSystemCockroachdb = DBSystemKey.String("cockroachdb") - // OpenSearch - DBSystemOpensearch = DBSystemKey.String("opensearch") - // ClickHouse - DBSystemClickhouse = DBSystemKey.String("clickhouse") -) - -// DBConnectionString returns an attribute KeyValue conforming to the -// "db.connection_string" semantic conventions. It represents the connection -// string used to connect to the database. It is recommended to remove embedded -// credentials. -func DBConnectionString(val string) attribute.KeyValue { - return DBConnectionStringKey.String(val) -} - -// DBUser returns an attribute KeyValue conforming to the "db.user" semantic -// conventions. It represents the username for accessing the database. -func DBUser(val string) attribute.KeyValue { - return DBUserKey.String(val) -} - -// DBJDBCDriverClassname returns an attribute KeyValue conforming to the -// "db.jdbc.driver_classname" semantic conventions. It represents the -// fully-qualified class name of the [Java Database Connectivity -// (JDBC)](https://docs.oracle.com/javase/8/docs/technotes/guides/jdbc/) driver -// used to connect. -func DBJDBCDriverClassname(val string) attribute.KeyValue { - return DBJDBCDriverClassnameKey.String(val) -} - -// DBName returns an attribute KeyValue conforming to the "db.name" semantic -// conventions. It represents the this attribute is used to report the name of -// the database being accessed. For commands that switch the database, this -// should be set to the target database (even if the command fails). -func DBName(val string) attribute.KeyValue { - return DBNameKey.String(val) -} - -// DBStatement returns an attribute KeyValue conforming to the -// "db.statement" semantic conventions. It represents the database statement -// being executed. -func DBStatement(val string) attribute.KeyValue { - return DBStatementKey.String(val) -} - -// DBOperation returns an attribute KeyValue conforming to the -// "db.operation" semantic conventions. It represents the name of the operation -// being executed, e.g. the [MongoDB command -// name](https://docs.mongodb.com/manual/reference/command/#database-operations) -// such as `findAndModify`, or the SQL keyword. -func DBOperation(val string) attribute.KeyValue { - return DBOperationKey.String(val) -} - -// Connection-level attributes for Microsoft SQL Server -const ( - // DBMSSQLInstanceNameKey is the attribute Key conforming to the - // "db.mssql.instance_name" semantic conventions. It represents the - // Microsoft SQL Server [instance - // name](https://docs.microsoft.com/en-us/sql/connect/jdbc/building-the-connection-url?view=sql-server-ver15) - // connecting to. This name is used to determine the port of a named - // instance. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'MSSQLSERVER' - // Note: If setting a `db.mssql.instance_name`, `net.peer.port` is no - // longer required (but still recommended if non-standard). - DBMSSQLInstanceNameKey = attribute.Key("db.mssql.instance_name") -) - -// DBMSSQLInstanceName returns an attribute KeyValue conforming to the -// "db.mssql.instance_name" semantic conventions. It represents the Microsoft -// SQL Server [instance -// name](https://docs.microsoft.com/en-us/sql/connect/jdbc/building-the-connection-url?view=sql-server-ver15) -// connecting to. This name is used to determine the port of a named instance. -func DBMSSQLInstanceName(val string) attribute.KeyValue { - return DBMSSQLInstanceNameKey.String(val) -} - -// Call-level attributes for Cassandra -const ( - // DBCassandraPageSizeKey is the attribute Key conforming to the - // "db.cassandra.page_size" semantic conventions. It represents the fetch - // size used for paging, i.e. how many rows will be returned at once. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 5000 - DBCassandraPageSizeKey = attribute.Key("db.cassandra.page_size") - - // DBCassandraConsistencyLevelKey is the attribute Key conforming to the - // "db.cassandra.consistency_level" semantic conventions. It represents the - // consistency level of the query. Based on consistency values from - // [CQL](https://docs.datastax.com/en/cassandra-oss/3.0/cassandra/dml/dmlConfigConsistency.html). - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - DBCassandraConsistencyLevelKey = attribute.Key("db.cassandra.consistency_level") - - // DBCassandraTableKey is the attribute Key conforming to the - // "db.cassandra.table" semantic conventions. It represents the name of the - // primary table that the operation is acting upon, including the keyspace - // name (if applicable). - // - // Type: string - // RequirementLevel: Recommended - // Stability: stable - // Examples: 'mytable' - // Note: This mirrors the db.sql.table attribute but references cassandra - // rather than sql. It is not recommended to attempt any client-side - // parsing of `db.statement` just to get this property, but it should be - // set if it is provided by the library being instrumented. If the - // operation is acting upon an anonymous table, or more than one table, - // this value MUST NOT be set. - DBCassandraTableKey = attribute.Key("db.cassandra.table") - - // DBCassandraIdempotenceKey is the attribute Key conforming to the - // "db.cassandra.idempotence" semantic conventions. It represents the - // whether or not the query is idempotent. - // - // Type: boolean - // RequirementLevel: Optional - // Stability: stable - DBCassandraIdempotenceKey = attribute.Key("db.cassandra.idempotence") - - // DBCassandraSpeculativeExecutionCountKey is the attribute Key conforming - // to the "db.cassandra.speculative_execution_count" semantic conventions. - // It represents the number of times a query was speculatively executed. - // Not set or `0` if the query was not executed speculatively. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 0, 2 - DBCassandraSpeculativeExecutionCountKey = attribute.Key("db.cassandra.speculative_execution_count") - - // DBCassandraCoordinatorIDKey is the attribute Key conforming to the - // "db.cassandra.coordinator.id" semantic conventions. It represents the ID - // of the coordinating node for a query. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'be13faa2-8574-4d71-926d-27f16cf8a7af' - DBCassandraCoordinatorIDKey = attribute.Key("db.cassandra.coordinator.id") - - // DBCassandraCoordinatorDCKey is the attribute Key conforming to the - // "db.cassandra.coordinator.dc" semantic conventions. It represents the - // data center of the coordinating node for a query. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'us-west-2' - DBCassandraCoordinatorDCKey = attribute.Key("db.cassandra.coordinator.dc") -) - -var ( - // all - DBCassandraConsistencyLevelAll = DBCassandraConsistencyLevelKey.String("all") - // each_quorum - DBCassandraConsistencyLevelEachQuorum = DBCassandraConsistencyLevelKey.String("each_quorum") - // quorum - DBCassandraConsistencyLevelQuorum = DBCassandraConsistencyLevelKey.String("quorum") - // local_quorum - DBCassandraConsistencyLevelLocalQuorum = DBCassandraConsistencyLevelKey.String("local_quorum") - // one - DBCassandraConsistencyLevelOne = DBCassandraConsistencyLevelKey.String("one") - // two - DBCassandraConsistencyLevelTwo = DBCassandraConsistencyLevelKey.String("two") - // three - DBCassandraConsistencyLevelThree = DBCassandraConsistencyLevelKey.String("three") - // local_one - DBCassandraConsistencyLevelLocalOne = DBCassandraConsistencyLevelKey.String("local_one") - // any - DBCassandraConsistencyLevelAny = DBCassandraConsistencyLevelKey.String("any") - // serial - DBCassandraConsistencyLevelSerial = DBCassandraConsistencyLevelKey.String("serial") - // local_serial - DBCassandraConsistencyLevelLocalSerial = DBCassandraConsistencyLevelKey.String("local_serial") -) - -// DBCassandraPageSize returns an attribute KeyValue conforming to the -// "db.cassandra.page_size" semantic conventions. It represents the fetch size -// used for paging, i.e. how many rows will be returned at once. -func DBCassandraPageSize(val int) attribute.KeyValue { - return DBCassandraPageSizeKey.Int(val) -} - -// DBCassandraTable returns an attribute KeyValue conforming to the -// "db.cassandra.table" semantic conventions. It represents the name of the -// primary table that the operation is acting upon, including the keyspace name -// (if applicable). -func DBCassandraTable(val string) attribute.KeyValue { - return DBCassandraTableKey.String(val) -} - -// DBCassandraIdempotence returns an attribute KeyValue conforming to the -// "db.cassandra.idempotence" semantic conventions. It represents the whether -// or not the query is idempotent. -func DBCassandraIdempotence(val bool) attribute.KeyValue { - return DBCassandraIdempotenceKey.Bool(val) -} - -// DBCassandraSpeculativeExecutionCount returns an attribute KeyValue -// conforming to the "db.cassandra.speculative_execution_count" semantic -// conventions. It represents the number of times a query was speculatively -// executed. Not set or `0` if the query was not executed speculatively. -func DBCassandraSpeculativeExecutionCount(val int) attribute.KeyValue { - return DBCassandraSpeculativeExecutionCountKey.Int(val) -} - -// DBCassandraCoordinatorID returns an attribute KeyValue conforming to the -// "db.cassandra.coordinator.id" semantic conventions. It represents the ID of -// the coordinating node for a query. -func DBCassandraCoordinatorID(val string) attribute.KeyValue { - return DBCassandraCoordinatorIDKey.String(val) -} - -// DBCassandraCoordinatorDC returns an attribute KeyValue conforming to the -// "db.cassandra.coordinator.dc" semantic conventions. It represents the data -// center of the coordinating node for a query. -func DBCassandraCoordinatorDC(val string) attribute.KeyValue { - return DBCassandraCoordinatorDCKey.String(val) -} - -// Call-level attributes for Redis -const ( - // DBRedisDBIndexKey is the attribute Key conforming to the - // "db.redis.database_index" semantic conventions. It represents the index - // of the database being accessed as used in the [`SELECT` - // command](https://redis.io/commands/select), provided as an integer. To - // be used instead of the generic `db.name` attribute. - // - // Type: int - // RequirementLevel: ConditionallyRequired (If other than the default - // database (`0`).) - // Stability: stable - // Examples: 0, 1, 15 - DBRedisDBIndexKey = attribute.Key("db.redis.database_index") -) - -// DBRedisDBIndex returns an attribute KeyValue conforming to the -// "db.redis.database_index" semantic conventions. It represents the index of -// the database being accessed as used in the [`SELECT` -// command](https://redis.io/commands/select), provided as an integer. To be -// used instead of the generic `db.name` attribute. -func DBRedisDBIndex(val int) attribute.KeyValue { - return DBRedisDBIndexKey.Int(val) -} - -// Call-level attributes for MongoDB -const ( - // DBMongoDBCollectionKey is the attribute Key conforming to the - // "db.mongodb.collection" semantic conventions. It represents the - // collection being accessed within the database stated in `db.name`. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'customers', 'products' - DBMongoDBCollectionKey = attribute.Key("db.mongodb.collection") -) - -// DBMongoDBCollection returns an attribute KeyValue conforming to the -// "db.mongodb.collection" semantic conventions. It represents the collection -// being accessed within the database stated in `db.name`. -func DBMongoDBCollection(val string) attribute.KeyValue { - return DBMongoDBCollectionKey.String(val) -} - -// Call-level attributes for SQL databases -const ( - // DBSQLTableKey is the attribute Key conforming to the "db.sql.table" - // semantic conventions. It represents the name of the primary table that - // the operation is acting upon, including the database name (if - // applicable). - // - // Type: string - // RequirementLevel: Recommended - // Stability: stable - // Examples: 'public.users', 'customers' - // Note: It is not recommended to attempt any client-side parsing of - // `db.statement` just to get this property, but it should be set if it is - // provided by the library being instrumented. If the operation is acting - // upon an anonymous table, or more than one table, this value MUST NOT be - // set. - DBSQLTableKey = attribute.Key("db.sql.table") -) - -// DBSQLTable returns an attribute KeyValue conforming to the "db.sql.table" -// semantic conventions. It represents the name of the primary table that the -// operation is acting upon, including the database name (if applicable). -func DBSQLTable(val string) attribute.KeyValue { - return DBSQLTableKey.String(val) -} - -// Span attributes used by non-OTLP exporters to represent OpenTelemetry Span's -// concepts. -const ( - // OtelStatusCodeKey is the attribute Key conforming to the - // "otel.status_code" semantic conventions. It represents the name of the - // code, either "OK" or "ERROR". MUST NOT be set if the status code is - // UNSET. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - OtelStatusCodeKey = attribute.Key("otel.status_code") - - // OtelStatusDescriptionKey is the attribute Key conforming to the - // "otel.status_description" semantic conventions. It represents the - // description of the Status if it has a value, otherwise not set. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'resource not found' - OtelStatusDescriptionKey = attribute.Key("otel.status_description") -) - -var ( - // The operation has been validated by an Application developer or Operator to have completed successfully - OtelStatusCodeOk = OtelStatusCodeKey.String("OK") - // The operation contains an error - OtelStatusCodeError = OtelStatusCodeKey.String("ERROR") -) - -// OtelStatusDescription returns an attribute KeyValue conforming to the -// "otel.status_description" semantic conventions. It represents the -// description of the Status if it has a value, otherwise not set. -func OtelStatusDescription(val string) attribute.KeyValue { - return OtelStatusDescriptionKey.String(val) -} - -// This semantic convention describes an instance of a function that runs -// without provisioning or managing of servers (also known as serverless -// functions or Function as a Service (FaaS)) with spans. -const ( - // FaaSTriggerKey is the attribute Key conforming to the "faas.trigger" - // semantic conventions. It represents the type of the trigger which caused - // this function execution. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - // Note: For the server/consumer span on the incoming side, - // `faas.trigger` MUST be set. - // - // Clients invoking FaaS instances usually cannot set `faas.trigger`, - // since they would typically need to look in the payload to determine - // the event type. If clients set it, it should be the same as the - // trigger that corresponding incoming would have (i.e., this has - // nothing to do with the underlying transport used to make the API - // call to invoke the lambda, which is often HTTP). - FaaSTriggerKey = attribute.Key("faas.trigger") - - // FaaSExecutionKey is the attribute Key conforming to the "faas.execution" - // semantic conventions. It represents the execution ID of the current - // function execution. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'af9d5aa4-a685-4c5f-a22b-444f80b3cc28' - FaaSExecutionKey = attribute.Key("faas.execution") -) - -var ( - // A response to some data source operation such as a database or filesystem read/write - FaaSTriggerDatasource = FaaSTriggerKey.String("datasource") - // To provide an answer to an inbound HTTP request - FaaSTriggerHTTP = FaaSTriggerKey.String("http") - // A function is set to be executed when messages are sent to a messaging system - FaaSTriggerPubsub = FaaSTriggerKey.String("pubsub") - // A function is scheduled to be executed regularly - FaaSTriggerTimer = FaaSTriggerKey.String("timer") - // If none of the others apply - FaaSTriggerOther = FaaSTriggerKey.String("other") -) - -// FaaSExecution returns an attribute KeyValue conforming to the -// "faas.execution" semantic conventions. It represents the execution ID of the -// current function execution. -func FaaSExecution(val string) attribute.KeyValue { - return FaaSExecutionKey.String(val) -} - -// Semantic Convention for FaaS triggered as a response to some data source -// operation such as a database or filesystem read/write. -const ( - // FaaSDocumentCollectionKey is the attribute Key conforming to the - // "faas.document.collection" semantic conventions. It represents the name - // of the source on which the triggering operation was performed. For - // example, in Cloud Storage or S3 corresponds to the bucket name, and in - // Cosmos DB to the database name. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'myBucketName', 'myDBName' - FaaSDocumentCollectionKey = attribute.Key("faas.document.collection") - - // FaaSDocumentOperationKey is the attribute Key conforming to the - // "faas.document.operation" semantic conventions. It represents the - // describes the type of the operation that was performed on the data. - // - // Type: Enum - // RequirementLevel: Required - // Stability: stable - FaaSDocumentOperationKey = attribute.Key("faas.document.operation") - - // FaaSDocumentTimeKey is the attribute Key conforming to the - // "faas.document.time" semantic conventions. It represents a string - // containing the time when the data was accessed in the [ISO - // 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format - // expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '2020-01-23T13:47:06Z' - FaaSDocumentTimeKey = attribute.Key("faas.document.time") - - // FaaSDocumentNameKey is the attribute Key conforming to the - // "faas.document.name" semantic conventions. It represents the document - // name/table subjected to the operation. For example, in Cloud Storage or - // S3 is the name of the file, and in Cosmos DB the table name. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'myFile.txt', 'myTableName' - FaaSDocumentNameKey = attribute.Key("faas.document.name") -) - -var ( - // When a new object is created - FaaSDocumentOperationInsert = FaaSDocumentOperationKey.String("insert") - // When an object is modified - FaaSDocumentOperationEdit = FaaSDocumentOperationKey.String("edit") - // When an object is deleted - FaaSDocumentOperationDelete = FaaSDocumentOperationKey.String("delete") -) - -// FaaSDocumentCollection returns an attribute KeyValue conforming to the -// "faas.document.collection" semantic conventions. It represents the name of -// the source on which the triggering operation was performed. For example, in -// Cloud Storage or S3 corresponds to the bucket name, and in Cosmos DB to the -// database name. -func FaaSDocumentCollection(val string) attribute.KeyValue { - return FaaSDocumentCollectionKey.String(val) -} - -// FaaSDocumentTime returns an attribute KeyValue conforming to the -// "faas.document.time" semantic conventions. It represents a string containing -// the time when the data was accessed in the [ISO -// 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format -// expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). -func FaaSDocumentTime(val string) attribute.KeyValue { - return FaaSDocumentTimeKey.String(val) -} - -// FaaSDocumentName returns an attribute KeyValue conforming to the -// "faas.document.name" semantic conventions. It represents the document -// name/table subjected to the operation. For example, in Cloud Storage or S3 -// is the name of the file, and in Cosmos DB the table name. -func FaaSDocumentName(val string) attribute.KeyValue { - return FaaSDocumentNameKey.String(val) -} - -// Semantic Convention for FaaS scheduled to be executed regularly. -const ( - // FaaSTimeKey is the attribute Key conforming to the "faas.time" semantic - // conventions. It represents a string containing the function invocation - // time in the [ISO - // 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format - // expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '2020-01-23T13:47:06Z' - FaaSTimeKey = attribute.Key("faas.time") - - // FaaSCronKey is the attribute Key conforming to the "faas.cron" semantic - // conventions. It represents a string containing the schedule period as - // [Cron - // Expression](https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '0/5 * * * ? *' - FaaSCronKey = attribute.Key("faas.cron") -) - -// FaaSTime returns an attribute KeyValue conforming to the "faas.time" -// semantic conventions. It represents a string containing the function -// invocation time in the [ISO -// 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format -// expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). -func FaaSTime(val string) attribute.KeyValue { - return FaaSTimeKey.String(val) -} - -// FaaSCron returns an attribute KeyValue conforming to the "faas.cron" -// semantic conventions. It represents a string containing the schedule period -// as [Cron -// Expression](https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm). -func FaaSCron(val string) attribute.KeyValue { - return FaaSCronKey.String(val) -} - -// Contains additional attributes for incoming FaaS spans. -const ( - // FaaSColdstartKey is the attribute Key conforming to the "faas.coldstart" - // semantic conventions. It represents a boolean that is true if the - // serverless function is executed for the first time (aka cold-start). - // - // Type: boolean - // RequirementLevel: Optional - // Stability: stable - FaaSColdstartKey = attribute.Key("faas.coldstart") -) - -// FaaSColdstart returns an attribute KeyValue conforming to the -// "faas.coldstart" semantic conventions. It represents a boolean that is true -// if the serverless function is executed for the first time (aka cold-start). -func FaaSColdstart(val bool) attribute.KeyValue { - return FaaSColdstartKey.Bool(val) -} - -// Contains additional attributes for outgoing FaaS spans. -const ( - // FaaSInvokedNameKey is the attribute Key conforming to the - // "faas.invoked_name" semantic conventions. It represents the name of the - // invoked function. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'my-function' - // Note: SHOULD be equal to the `faas.name` resource attribute of the - // invoked function. - FaaSInvokedNameKey = attribute.Key("faas.invoked_name") - - // FaaSInvokedProviderKey is the attribute Key conforming to the - // "faas.invoked_provider" semantic conventions. It represents the cloud - // provider of the invoked function. - // - // Type: Enum - // RequirementLevel: Required - // Stability: stable - // Note: SHOULD be equal to the `cloud.provider` resource attribute of the - // invoked function. - FaaSInvokedProviderKey = attribute.Key("faas.invoked_provider") - - // FaaSInvokedRegionKey is the attribute Key conforming to the - // "faas.invoked_region" semantic conventions. It represents the cloud - // region of the invoked function. - // - // Type: string - // RequirementLevel: ConditionallyRequired (For some cloud providers, like - // AWS or GCP, the region in which a function is hosted is essential to - // uniquely identify the function and also part of its endpoint. Since it's - // part of the endpoint being called, the region is always known to - // clients. In these cases, `faas.invoked_region` MUST be set accordingly. - // If the region is unknown to the client or not required for identifying - // the invoked function, setting `faas.invoked_region` is optional.) - // Stability: stable - // Examples: 'eu-central-1' - // Note: SHOULD be equal to the `cloud.region` resource attribute of the - // invoked function. - FaaSInvokedRegionKey = attribute.Key("faas.invoked_region") -) - -var ( - // Alibaba Cloud - FaaSInvokedProviderAlibabaCloud = FaaSInvokedProviderKey.String("alibaba_cloud") - // Amazon Web Services - FaaSInvokedProviderAWS = FaaSInvokedProviderKey.String("aws") - // Microsoft Azure - FaaSInvokedProviderAzure = FaaSInvokedProviderKey.String("azure") - // Google Cloud Platform - FaaSInvokedProviderGCP = FaaSInvokedProviderKey.String("gcp") - // Tencent Cloud - FaaSInvokedProviderTencentCloud = FaaSInvokedProviderKey.String("tencent_cloud") -) - -// FaaSInvokedName returns an attribute KeyValue conforming to the -// "faas.invoked_name" semantic conventions. It represents the name of the -// invoked function. -func FaaSInvokedName(val string) attribute.KeyValue { - return FaaSInvokedNameKey.String(val) -} - -// FaaSInvokedRegion returns an attribute KeyValue conforming to the -// "faas.invoked_region" semantic conventions. It represents the cloud region -// of the invoked function. -func FaaSInvokedRegion(val string) attribute.KeyValue { - return FaaSInvokedRegionKey.String(val) -} - -// These attributes may be used for any network related operation. -const ( - // NetTransportKey is the attribute Key conforming to the "net.transport" - // semantic conventions. It represents the transport protocol used. See - // note below. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - NetTransportKey = attribute.Key("net.transport") - - // NetAppProtocolNameKey is the attribute Key conforming to the - // "net.app.protocol.name" semantic conventions. It represents the - // application layer protocol used. The value SHOULD be normalized to - // lowercase. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'amqp', 'http', 'mqtt' - NetAppProtocolNameKey = attribute.Key("net.app.protocol.name") - - // NetAppProtocolVersionKey is the attribute Key conforming to the - // "net.app.protocol.version" semantic conventions. It represents the - // version of the application layer protocol used. See note below. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '3.1.1' - // Note: `net.app.protocol.version` refers to the version of the protocol - // used and might be different from the protocol client's version. If the - // HTTP client used has a version of `0.27.2`, but sends HTTP version - // `1.1`, this attribute should be set to `1.1`. - NetAppProtocolVersionKey = attribute.Key("net.app.protocol.version") - - // NetSockPeerNameKey is the attribute Key conforming to the - // "net.sock.peer.name" semantic conventions. It represents the remote - // socket peer name. - // - // Type: string - // RequirementLevel: Recommended (If available and different from - // `net.peer.name` and if `net.sock.peer.addr` is set.) - // Stability: stable - // Examples: 'proxy.example.com' - NetSockPeerNameKey = attribute.Key("net.sock.peer.name") - - // NetSockPeerAddrKey is the attribute Key conforming to the - // "net.sock.peer.addr" semantic conventions. It represents the remote - // socket peer address: IPv4 or IPv6 for internet protocols, path for local - // communication, - // [etc](https://man7.org/linux/man-pages/man7/address_families.7.html). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '127.0.0.1', '/tmp/mysql.sock' - NetSockPeerAddrKey = attribute.Key("net.sock.peer.addr") - - // NetSockPeerPortKey is the attribute Key conforming to the - // "net.sock.peer.port" semantic conventions. It represents the remote - // socket peer port. - // - // Type: int - // RequirementLevel: Recommended (If defined for the address family and if - // different than `net.peer.port` and if `net.sock.peer.addr` is set.) - // Stability: stable - // Examples: 16456 - NetSockPeerPortKey = attribute.Key("net.sock.peer.port") - - // NetSockFamilyKey is the attribute Key conforming to the - // "net.sock.family" semantic conventions. It represents the protocol - // [address - // family](https://man7.org/linux/man-pages/man7/address_families.7.html) - // which is used for communication. - // - // Type: Enum - // RequirementLevel: ConditionallyRequired (If different than `inet` and if - // any of `net.sock.peer.addr` or `net.sock.host.addr` are set. Consumers - // of telemetry SHOULD accept both IPv4 and IPv6 formats for the address in - // `net.sock.peer.addr` if `net.sock.family` is not set. This is to support - // instrumentations that follow previous versions of this document.) - // Stability: stable - // Examples: 'inet6', 'bluetooth' - NetSockFamilyKey = attribute.Key("net.sock.family") - - // NetPeerNameKey is the attribute Key conforming to the "net.peer.name" - // semantic conventions. It represents the logical remote hostname, see - // note below. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'example.com' - // Note: `net.peer.name` SHOULD NOT be set if capturing it would require an - // extra DNS lookup. - NetPeerNameKey = attribute.Key("net.peer.name") - - // NetPeerPortKey is the attribute Key conforming to the "net.peer.port" - // semantic conventions. It represents the logical remote port number - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 80, 8080, 443 - NetPeerPortKey = attribute.Key("net.peer.port") - - // NetHostNameKey is the attribute Key conforming to the "net.host.name" - // semantic conventions. It represents the logical local hostname or - // similar, see note below. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'localhost' - NetHostNameKey = attribute.Key("net.host.name") - - // NetHostPortKey is the attribute Key conforming to the "net.host.port" - // semantic conventions. It represents the logical local port number, - // preferably the one that the peer used to connect - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 8080 - NetHostPortKey = attribute.Key("net.host.port") - - // NetSockHostAddrKey is the attribute Key conforming to the - // "net.sock.host.addr" semantic conventions. It represents the local - // socket address. Useful in case of a multi-IP host. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '192.168.0.1' - NetSockHostAddrKey = attribute.Key("net.sock.host.addr") - - // NetSockHostPortKey is the attribute Key conforming to the - // "net.sock.host.port" semantic conventions. It represents the local - // socket port number. - // - // Type: int - // RequirementLevel: Recommended (If defined for the address family and if - // different than `net.host.port` and if `net.sock.host.addr` is set.) - // Stability: stable - // Examples: 35555 - NetSockHostPortKey = attribute.Key("net.sock.host.port") - - // NetHostConnectionTypeKey is the attribute Key conforming to the - // "net.host.connection.type" semantic conventions. It represents the - // internet connection type currently being used by the host. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - // Examples: 'wifi' - NetHostConnectionTypeKey = attribute.Key("net.host.connection.type") - - // NetHostConnectionSubtypeKey is the attribute Key conforming to the - // "net.host.connection.subtype" semantic conventions. It represents the - // this describes more details regarding the connection.type. It may be the - // type of cell technology connection, but it could be used for describing - // details about a wifi connection. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - // Examples: 'LTE' - NetHostConnectionSubtypeKey = attribute.Key("net.host.connection.subtype") - - // NetHostCarrierNameKey is the attribute Key conforming to the - // "net.host.carrier.name" semantic conventions. It represents the name of - // the mobile carrier. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'sprint' - NetHostCarrierNameKey = attribute.Key("net.host.carrier.name") - - // NetHostCarrierMccKey is the attribute Key conforming to the - // "net.host.carrier.mcc" semantic conventions. It represents the mobile - // carrier country code. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '310' - NetHostCarrierMccKey = attribute.Key("net.host.carrier.mcc") - - // NetHostCarrierMncKey is the attribute Key conforming to the - // "net.host.carrier.mnc" semantic conventions. It represents the mobile - // carrier network code. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '001' - NetHostCarrierMncKey = attribute.Key("net.host.carrier.mnc") - - // NetHostCarrierIccKey is the attribute Key conforming to the - // "net.host.carrier.icc" semantic conventions. It represents the ISO - // 3166-1 alpha-2 2-character country code associated with the mobile - // carrier network. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'DE' - NetHostCarrierIccKey = attribute.Key("net.host.carrier.icc") -) - -var ( - // ip_tcp - NetTransportTCP = NetTransportKey.String("ip_tcp") - // ip_udp - NetTransportUDP = NetTransportKey.String("ip_udp") - // Named or anonymous pipe. See note below - NetTransportPipe = NetTransportKey.String("pipe") - // In-process communication - NetTransportInProc = NetTransportKey.String("inproc") - // Something else (non IP-based) - NetTransportOther = NetTransportKey.String("other") -) - -var ( - // IPv4 address - NetSockFamilyInet = NetSockFamilyKey.String("inet") - // IPv6 address - NetSockFamilyInet6 = NetSockFamilyKey.String("inet6") - // Unix domain socket path - NetSockFamilyUnix = NetSockFamilyKey.String("unix") -) - -var ( - // wifi - NetHostConnectionTypeWifi = NetHostConnectionTypeKey.String("wifi") - // wired - NetHostConnectionTypeWired = NetHostConnectionTypeKey.String("wired") - // cell - NetHostConnectionTypeCell = NetHostConnectionTypeKey.String("cell") - // unavailable - NetHostConnectionTypeUnavailable = NetHostConnectionTypeKey.String("unavailable") - // unknown - NetHostConnectionTypeUnknown = NetHostConnectionTypeKey.String("unknown") -) - -var ( - // GPRS - NetHostConnectionSubtypeGprs = NetHostConnectionSubtypeKey.String("gprs") - // EDGE - NetHostConnectionSubtypeEdge = NetHostConnectionSubtypeKey.String("edge") - // UMTS - NetHostConnectionSubtypeUmts = NetHostConnectionSubtypeKey.String("umts") - // CDMA - NetHostConnectionSubtypeCdma = NetHostConnectionSubtypeKey.String("cdma") - // EVDO Rel. 0 - NetHostConnectionSubtypeEvdo0 = NetHostConnectionSubtypeKey.String("evdo_0") - // EVDO Rev. A - NetHostConnectionSubtypeEvdoA = NetHostConnectionSubtypeKey.String("evdo_a") - // CDMA2000 1XRTT - NetHostConnectionSubtypeCdma20001xrtt = NetHostConnectionSubtypeKey.String("cdma2000_1xrtt") - // HSDPA - NetHostConnectionSubtypeHsdpa = NetHostConnectionSubtypeKey.String("hsdpa") - // HSUPA - NetHostConnectionSubtypeHsupa = NetHostConnectionSubtypeKey.String("hsupa") - // HSPA - NetHostConnectionSubtypeHspa = NetHostConnectionSubtypeKey.String("hspa") - // IDEN - NetHostConnectionSubtypeIden = NetHostConnectionSubtypeKey.String("iden") - // EVDO Rev. B - NetHostConnectionSubtypeEvdoB = NetHostConnectionSubtypeKey.String("evdo_b") - // LTE - NetHostConnectionSubtypeLte = NetHostConnectionSubtypeKey.String("lte") - // EHRPD - NetHostConnectionSubtypeEhrpd = NetHostConnectionSubtypeKey.String("ehrpd") - // HSPAP - NetHostConnectionSubtypeHspap = NetHostConnectionSubtypeKey.String("hspap") - // GSM - NetHostConnectionSubtypeGsm = NetHostConnectionSubtypeKey.String("gsm") - // TD-SCDMA - NetHostConnectionSubtypeTdScdma = NetHostConnectionSubtypeKey.String("td_scdma") - // IWLAN - NetHostConnectionSubtypeIwlan = NetHostConnectionSubtypeKey.String("iwlan") - // 5G NR (New Radio) - NetHostConnectionSubtypeNr = NetHostConnectionSubtypeKey.String("nr") - // 5G NRNSA (New Radio Non-Standalone) - NetHostConnectionSubtypeNrnsa = NetHostConnectionSubtypeKey.String("nrnsa") - // LTE CA - NetHostConnectionSubtypeLteCa = NetHostConnectionSubtypeKey.String("lte_ca") -) - -// NetAppProtocolName returns an attribute KeyValue conforming to the -// "net.app.protocol.name" semantic conventions. It represents the application -// layer protocol used. The value SHOULD be normalized to lowercase. -func NetAppProtocolName(val string) attribute.KeyValue { - return NetAppProtocolNameKey.String(val) -} - -// NetAppProtocolVersion returns an attribute KeyValue conforming to the -// "net.app.protocol.version" semantic conventions. It represents the version -// of the application layer protocol used. See note below. -func NetAppProtocolVersion(val string) attribute.KeyValue { - return NetAppProtocolVersionKey.String(val) -} - -// NetSockPeerName returns an attribute KeyValue conforming to the -// "net.sock.peer.name" semantic conventions. It represents the remote socket -// peer name. -func NetSockPeerName(val string) attribute.KeyValue { - return NetSockPeerNameKey.String(val) -} - -// NetSockPeerAddr returns an attribute KeyValue conforming to the -// "net.sock.peer.addr" semantic conventions. It represents the remote socket -// peer address: IPv4 or IPv6 for internet protocols, path for local -// communication, -// [etc](https://man7.org/linux/man-pages/man7/address_families.7.html). -func NetSockPeerAddr(val string) attribute.KeyValue { - return NetSockPeerAddrKey.String(val) -} - -// NetSockPeerPort returns an attribute KeyValue conforming to the -// "net.sock.peer.port" semantic conventions. It represents the remote socket -// peer port. -func NetSockPeerPort(val int) attribute.KeyValue { - return NetSockPeerPortKey.Int(val) -} - -// NetPeerName returns an attribute KeyValue conforming to the -// "net.peer.name" semantic conventions. It represents the logical remote -// hostname, see note below. -func NetPeerName(val string) attribute.KeyValue { - return NetPeerNameKey.String(val) -} - -// NetPeerPort returns an attribute KeyValue conforming to the -// "net.peer.port" semantic conventions. It represents the logical remote port -// number -func NetPeerPort(val int) attribute.KeyValue { - return NetPeerPortKey.Int(val) -} - -// NetHostName returns an attribute KeyValue conforming to the -// "net.host.name" semantic conventions. It represents the logical local -// hostname or similar, see note below. -func NetHostName(val string) attribute.KeyValue { - return NetHostNameKey.String(val) -} - -// NetHostPort returns an attribute KeyValue conforming to the -// "net.host.port" semantic conventions. It represents the logical local port -// number, preferably the one that the peer used to connect -func NetHostPort(val int) attribute.KeyValue { - return NetHostPortKey.Int(val) -} - -// NetSockHostAddr returns an attribute KeyValue conforming to the -// "net.sock.host.addr" semantic conventions. It represents the local socket -// address. Useful in case of a multi-IP host. -func NetSockHostAddr(val string) attribute.KeyValue { - return NetSockHostAddrKey.String(val) -} - -// NetSockHostPort returns an attribute KeyValue conforming to the -// "net.sock.host.port" semantic conventions. It represents the local socket -// port number. -func NetSockHostPort(val int) attribute.KeyValue { - return NetSockHostPortKey.Int(val) -} - -// NetHostCarrierName returns an attribute KeyValue conforming to the -// "net.host.carrier.name" semantic conventions. It represents the name of the -// mobile carrier. -func NetHostCarrierName(val string) attribute.KeyValue { - return NetHostCarrierNameKey.String(val) -} - -// NetHostCarrierMcc returns an attribute KeyValue conforming to the -// "net.host.carrier.mcc" semantic conventions. It represents the mobile -// carrier country code. -func NetHostCarrierMcc(val string) attribute.KeyValue { - return NetHostCarrierMccKey.String(val) -} - -// NetHostCarrierMnc returns an attribute KeyValue conforming to the -// "net.host.carrier.mnc" semantic conventions. It represents the mobile -// carrier network code. -func NetHostCarrierMnc(val string) attribute.KeyValue { - return NetHostCarrierMncKey.String(val) -} - -// NetHostCarrierIcc returns an attribute KeyValue conforming to the -// "net.host.carrier.icc" semantic conventions. It represents the ISO 3166-1 -// alpha-2 2-character country code associated with the mobile carrier network. -func NetHostCarrierIcc(val string) attribute.KeyValue { - return NetHostCarrierIccKey.String(val) -} - -// Operations that access some remote service. -const ( - // PeerServiceKey is the attribute Key conforming to the "peer.service" - // semantic conventions. It represents the - // [`service.name`](../../resource/semantic_conventions/README.md#service) - // of the remote service. SHOULD be equal to the actual `service.name` - // resource attribute of the remote service if any. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'AuthTokenCache' - PeerServiceKey = attribute.Key("peer.service") -) - -// PeerService returns an attribute KeyValue conforming to the -// "peer.service" semantic conventions. It represents the -// [`service.name`](../../resource/semantic_conventions/README.md#service) of -// the remote service. SHOULD be equal to the actual `service.name` resource -// attribute of the remote service if any. -func PeerService(val string) attribute.KeyValue { - return PeerServiceKey.String(val) -} - -// These attributes may be used for any operation with an authenticated and/or -// authorized enduser. -const ( - // EnduserIDKey is the attribute Key conforming to the "enduser.id" - // semantic conventions. It represents the username or client_id extracted - // from the access token or - // [Authorization](https://tools.ietf.org/html/rfc7235#section-4.2) header - // in the inbound request from outside the system. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'username' - EnduserIDKey = attribute.Key("enduser.id") - - // EnduserRoleKey is the attribute Key conforming to the "enduser.role" - // semantic conventions. It represents the actual/assumed role the client - // is making the request under extracted from token or application security - // context. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'admin' - EnduserRoleKey = attribute.Key("enduser.role") - - // EnduserScopeKey is the attribute Key conforming to the "enduser.scope" - // semantic conventions. It represents the scopes or granted authorities - // the client currently possesses extracted from token or application - // security context. The value would come from the scope associated with an - // [OAuth 2.0 Access - // Token](https://tools.ietf.org/html/rfc6749#section-3.3) or an attribute - // value in a [SAML 2.0 - // Assertion](http://docs.oasis-open.org/security/saml/Post2.0/sstc-saml-tech-overview-2.0.html). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'read:message, write:files' - EnduserScopeKey = attribute.Key("enduser.scope") -) - -// EnduserID returns an attribute KeyValue conforming to the "enduser.id" -// semantic conventions. It represents the username or client_id extracted from -// the access token or -// [Authorization](https://tools.ietf.org/html/rfc7235#section-4.2) header in -// the inbound request from outside the system. -func EnduserID(val string) attribute.KeyValue { - return EnduserIDKey.String(val) -} - -// EnduserRole returns an attribute KeyValue conforming to the -// "enduser.role" semantic conventions. It represents the actual/assumed role -// the client is making the request under extracted from token or application -// security context. -func EnduserRole(val string) attribute.KeyValue { - return EnduserRoleKey.String(val) -} - -// EnduserScope returns an attribute KeyValue conforming to the -// "enduser.scope" semantic conventions. It represents the scopes or granted -// authorities the client currently possesses extracted from token or -// application security context. The value would come from the scope associated -// with an [OAuth 2.0 Access -// Token](https://tools.ietf.org/html/rfc6749#section-3.3) or an attribute -// value in a [SAML 2.0 -// Assertion](http://docs.oasis-open.org/security/saml/Post2.0/sstc-saml-tech-overview-2.0.html). -func EnduserScope(val string) attribute.KeyValue { - return EnduserScopeKey.String(val) -} - -// These attributes may be used for any operation to store information about a -// thread that started a span. -const ( - // ThreadIDKey is the attribute Key conforming to the "thread.id" semantic - // conventions. It represents the current "managed" thread ID (as opposed - // to OS thread ID). - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 42 - ThreadIDKey = attribute.Key("thread.id") - - // ThreadNameKey is the attribute Key conforming to the "thread.name" - // semantic conventions. It represents the current thread name. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'main' - ThreadNameKey = attribute.Key("thread.name") -) - -// ThreadID returns an attribute KeyValue conforming to the "thread.id" -// semantic conventions. It represents the current "managed" thread ID (as -// opposed to OS thread ID). -func ThreadID(val int) attribute.KeyValue { - return ThreadIDKey.Int(val) -} - -// ThreadName returns an attribute KeyValue conforming to the "thread.name" -// semantic conventions. It represents the current thread name. -func ThreadName(val string) attribute.KeyValue { - return ThreadNameKey.String(val) -} - -// These attributes allow to report this unit of code and therefore to provide -// more context about the span. -const ( - // CodeFunctionKey is the attribute Key conforming to the "code.function" - // semantic conventions. It represents the method or function name, or - // equivalent (usually rightmost part of the code unit's name). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'serveRequest' - CodeFunctionKey = attribute.Key("code.function") - - // CodeNamespaceKey is the attribute Key conforming to the "code.namespace" - // semantic conventions. It represents the "namespace" within which - // `code.function` is defined. Usually the qualified class or module name, - // such that `code.namespace` + some separator + `code.function` form a - // unique identifier for the code unit. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'com.example.MyHTTPService' - CodeNamespaceKey = attribute.Key("code.namespace") - - // CodeFilepathKey is the attribute Key conforming to the "code.filepath" - // semantic conventions. It represents the source code file name that - // identifies the code unit as uniquely as possible (preferably an absolute - // file path). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '/usr/local/MyApplication/content_root/app/index.php' - CodeFilepathKey = attribute.Key("code.filepath") - - // CodeLineNumberKey is the attribute Key conforming to the "code.lineno" - // semantic conventions. It represents the line number in `code.filepath` - // best representing the operation. It SHOULD point within the code unit - // named in `code.function`. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 42 - CodeLineNumberKey = attribute.Key("code.lineno") - - // CodeColumnKey is the attribute Key conforming to the "code.column" - // semantic conventions. It represents the column number in `code.filepath` - // best representing the operation. It SHOULD point within the code unit - // named in `code.function`. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 16 - CodeColumnKey = attribute.Key("code.column") -) - -// CodeFunction returns an attribute KeyValue conforming to the -// "code.function" semantic conventions. It represents the method or function -// name, or equivalent (usually rightmost part of the code unit's name). -func CodeFunction(val string) attribute.KeyValue { - return CodeFunctionKey.String(val) -} - -// CodeNamespace returns an attribute KeyValue conforming to the -// "code.namespace" semantic conventions. It represents the "namespace" within -// which `code.function` is defined. Usually the qualified class or module -// name, such that `code.namespace` + some separator + `code.function` form a -// unique identifier for the code unit. -func CodeNamespace(val string) attribute.KeyValue { - return CodeNamespaceKey.String(val) -} - -// CodeFilepath returns an attribute KeyValue conforming to the -// "code.filepath" semantic conventions. It represents the source code file -// name that identifies the code unit as uniquely as possible (preferably an -// absolute file path). -func CodeFilepath(val string) attribute.KeyValue { - return CodeFilepathKey.String(val) -} - -// CodeLineNumber returns an attribute KeyValue conforming to the "code.lineno" -// semantic conventions. It represents the line number in `code.filepath` best -// representing the operation. It SHOULD point within the code unit named in -// `code.function`. -func CodeLineNumber(val int) attribute.KeyValue { - return CodeLineNumberKey.Int(val) -} - -// CodeColumn returns an attribute KeyValue conforming to the "code.column" -// semantic conventions. It represents the column number in `code.filepath` -// best representing the operation. It SHOULD point within the code unit named -// in `code.function`. -func CodeColumn(val int) attribute.KeyValue { - return CodeColumnKey.Int(val) -} - -// Semantic conventions for HTTP client and server Spans. -const ( - // HTTPMethodKey is the attribute Key conforming to the "http.method" - // semantic conventions. It represents the hTTP request method. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'GET', 'POST', 'HEAD' - HTTPMethodKey = attribute.Key("http.method") - - // HTTPStatusCodeKey is the attribute Key conforming to the - // "http.status_code" semantic conventions. It represents the [HTTP - // response status code](https://tools.ietf.org/html/rfc7231#section-6). - // - // Type: int - // RequirementLevel: ConditionallyRequired (If and only if one was - // received/sent.) - // Stability: stable - // Examples: 200 - HTTPStatusCodeKey = attribute.Key("http.status_code") - - // HTTPFlavorKey is the attribute Key conforming to the "http.flavor" - // semantic conventions. It represents the kind of HTTP protocol used. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - // Note: If `net.transport` is not specified, it can be assumed to be - // `IP.TCP` except if `http.flavor` is `QUIC`, in which case `IP.UDP` is - // assumed. - HTTPFlavorKey = attribute.Key("http.flavor") - - // HTTPUserAgentKey is the attribute Key conforming to the - // "http.user_agent" semantic conventions. It represents the value of the - // [HTTP - // User-Agent](https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent) - // header sent by the client. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'CERN-LineMode/2.15 libwww/2.17b3' - HTTPUserAgentKey = attribute.Key("http.user_agent") - - // HTTPRequestContentLengthKey is the attribute Key conforming to the - // "http.request_content_length" semantic conventions. It represents the - // size of the request payload body in bytes. This is the number of bytes - // transferred excluding headers and is often, but not always, present as - // the - // [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) - // header. For requests using transport encoding, this should be the - // compressed size. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 3495 - HTTPRequestContentLengthKey = attribute.Key("http.request_content_length") - - // HTTPResponseContentLengthKey is the attribute Key conforming to the - // "http.response_content_length" semantic conventions. It represents the - // size of the response payload body in bytes. This is the number of bytes - // transferred excluding headers and is often, but not always, present as - // the - // [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) - // header. For requests using transport encoding, this should be the - // compressed size. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 3495 - HTTPResponseContentLengthKey = attribute.Key("http.response_content_length") -) - -var ( - // HTTP/1.0 - HTTPFlavorHTTP10 = HTTPFlavorKey.String("1.0") - // HTTP/1.1 - HTTPFlavorHTTP11 = HTTPFlavorKey.String("1.1") - // HTTP/2 - HTTPFlavorHTTP20 = HTTPFlavorKey.String("2.0") - // HTTP/3 - HTTPFlavorHTTP30 = HTTPFlavorKey.String("3.0") - // SPDY protocol - HTTPFlavorSPDY = HTTPFlavorKey.String("SPDY") - // QUIC protocol - HTTPFlavorQUIC = HTTPFlavorKey.String("QUIC") -) - -// HTTPMethod returns an attribute KeyValue conforming to the "http.method" -// semantic conventions. It represents the hTTP request method. -func HTTPMethod(val string) attribute.KeyValue { - return HTTPMethodKey.String(val) -} - -// HTTPStatusCode returns an attribute KeyValue conforming to the -// "http.status_code" semantic conventions. It represents the [HTTP response -// status code](https://tools.ietf.org/html/rfc7231#section-6). -func HTTPStatusCode(val int) attribute.KeyValue { - return HTTPStatusCodeKey.Int(val) -} - -// HTTPUserAgent returns an attribute KeyValue conforming to the -// "http.user_agent" semantic conventions. It represents the value of the [HTTP -// User-Agent](https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent) -// header sent by the client. -func HTTPUserAgent(val string) attribute.KeyValue { - return HTTPUserAgentKey.String(val) -} - -// HTTPRequestContentLength returns an attribute KeyValue conforming to the -// "http.request_content_length" semantic conventions. It represents the size -// of the request payload body in bytes. This is the number of bytes -// transferred excluding headers and is often, but not always, present as the -// [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) -// header. For requests using transport encoding, this should be the compressed -// size. -func HTTPRequestContentLength(val int) attribute.KeyValue { - return HTTPRequestContentLengthKey.Int(val) -} - -// HTTPResponseContentLength returns an attribute KeyValue conforming to the -// "http.response_content_length" semantic conventions. It represents the size -// of the response payload body in bytes. This is the number of bytes -// transferred excluding headers and is often, but not always, present as the -// [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) -// header. For requests using transport encoding, this should be the compressed -// size. -func HTTPResponseContentLength(val int) attribute.KeyValue { - return HTTPResponseContentLengthKey.Int(val) -} - -// Semantic Convention for HTTP Client -const ( - // HTTPURLKey is the attribute Key conforming to the "http.url" semantic - // conventions. It represents the full HTTP request URL in the form - // `scheme://host[:port]/path?query[#fragment]`. Usually the fragment is - // not transmitted over HTTP, but if it is known, it should be included - // nevertheless. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'https://www.foo.bar/search?q=OpenTelemetry#SemConv' - // Note: `http.url` MUST NOT contain credentials passed via URL in form of - // `https://username:password@www.example.com/`. In such case the - // attribute's value should be `https://www.example.com/`. - HTTPURLKey = attribute.Key("http.url") - - // HTTPResendCountKey is the attribute Key conforming to the - // "http.resend_count" semantic conventions. It represents the ordinal - // number of request resending attempt (for any reason, including - // redirects). - // - // Type: int - // RequirementLevel: Recommended (if and only if request was retried.) - // Stability: stable - // Examples: 3 - // Note: The resend count SHOULD be updated each time an HTTP request gets - // resent by the client, regardless of what was the cause of the resending - // (e.g. redirection, authorization failure, 503 Server Unavailable, - // network issues, or any other). - HTTPResendCountKey = attribute.Key("http.resend_count") -) - -// HTTPURL returns an attribute KeyValue conforming to the "http.url" -// semantic conventions. It represents the full HTTP request URL in the form -// `scheme://host[:port]/path?query[#fragment]`. Usually the fragment is not -// transmitted over HTTP, but if it is known, it should be included -// nevertheless. -func HTTPURL(val string) attribute.KeyValue { - return HTTPURLKey.String(val) -} - -// HTTPResendCount returns an attribute KeyValue conforming to the -// "http.resend_count" semantic conventions. It represents the ordinal number -// of request resending attempt (for any reason, including redirects). -func HTTPResendCount(val int) attribute.KeyValue { - return HTTPResendCountKey.Int(val) -} - -// Semantic Convention for HTTP Server -const ( - // HTTPSchemeKey is the attribute Key conforming to the "http.scheme" - // semantic conventions. It represents the URI scheme identifying the used - // protocol. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'http', 'https' - HTTPSchemeKey = attribute.Key("http.scheme") - - // HTTPTargetKey is the attribute Key conforming to the "http.target" - // semantic conventions. It represents the full request target as passed in - // a HTTP request line or equivalent. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: '/path/12314/?q=ddds' - HTTPTargetKey = attribute.Key("http.target") - - // HTTPRouteKey is the attribute Key conforming to the "http.route" - // semantic conventions. It represents the matched route (path template in - // the format used by the respective server framework). See note below - // - // Type: string - // RequirementLevel: ConditionallyRequired (If and only if it's available) - // Stability: stable - // Examples: '/users/:userID?', '{controller}/{action}/{id?}' - // Note: 'http.route' MUST NOT be populated when this is not supported by - // the HTTP server framework as the route attribute should have - // low-cardinality and the URI path can NOT substitute it. - HTTPRouteKey = attribute.Key("http.route") - - // HTTPClientIPKey is the attribute Key conforming to the "http.client_ip" - // semantic conventions. It represents the IP address of the original - // client behind all proxies, if known (e.g. from - // [X-Forwarded-For](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/X-Forwarded-For)). - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '83.164.160.102' - // Note: This is not necessarily the same as `net.sock.peer.addr`, which - // would - // identify the network-level peer, which may be a proxy. - // - // This attribute should be set when a source of information different - // from the one used for `net.sock.peer.addr`, is available even if that - // other - // source just confirms the same value as `net.sock.peer.addr`. - // Rationale: For `net.sock.peer.addr`, one typically does not know if it - // comes from a proxy, reverse proxy, or the actual client. Setting - // `http.client_ip` when it's the same as `net.sock.peer.addr` means that - // one is at least somewhat confident that the address is not that of - // the closest proxy. - HTTPClientIPKey = attribute.Key("http.client_ip") -) - -// HTTPScheme returns an attribute KeyValue conforming to the "http.scheme" -// semantic conventions. It represents the URI scheme identifying the used -// protocol. -func HTTPScheme(val string) attribute.KeyValue { - return HTTPSchemeKey.String(val) -} - -// HTTPTarget returns an attribute KeyValue conforming to the "http.target" -// semantic conventions. It represents the full request target as passed in a -// HTTP request line or equivalent. -func HTTPTarget(val string) attribute.KeyValue { - return HTTPTargetKey.String(val) -} - -// HTTPRoute returns an attribute KeyValue conforming to the "http.route" -// semantic conventions. It represents the matched route (path template in the -// format used by the respective server framework). See note below -func HTTPRoute(val string) attribute.KeyValue { - return HTTPRouteKey.String(val) -} - -// HTTPClientIP returns an attribute KeyValue conforming to the -// "http.client_ip" semantic conventions. It represents the IP address of the -// original client behind all proxies, if known (e.g. from -// [X-Forwarded-For](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/X-Forwarded-For)). -func HTTPClientIP(val string) attribute.KeyValue { - return HTTPClientIPKey.String(val) -} - -// Attributes that exist for multiple DynamoDB request types. -const ( - // AWSDynamoDBTableNamesKey is the attribute Key conforming to the - // "aws.dynamodb.table_names" semantic conventions. It represents the keys - // in the `RequestItems` object field. - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Users', 'Cats' - AWSDynamoDBTableNamesKey = attribute.Key("aws.dynamodb.table_names") - - // AWSDynamoDBConsumedCapacityKey is the attribute Key conforming to the - // "aws.dynamodb.consumed_capacity" semantic conventions. It represents the - // JSON-serialized value of each item in the `ConsumedCapacity` response - // field. - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: '{ "CapacityUnits": number, "GlobalSecondaryIndexes": { - // "string" : { "CapacityUnits": number, "ReadCapacityUnits": number, - // "WriteCapacityUnits": number } }, "LocalSecondaryIndexes": { "string" : - // { "CapacityUnits": number, "ReadCapacityUnits": number, - // "WriteCapacityUnits": number } }, "ReadCapacityUnits": number, "Table": - // { "CapacityUnits": number, "ReadCapacityUnits": number, - // "WriteCapacityUnits": number }, "TableName": "string", - // "WriteCapacityUnits": number }' - AWSDynamoDBConsumedCapacityKey = attribute.Key("aws.dynamodb.consumed_capacity") - - // AWSDynamoDBItemCollectionMetricsKey is the attribute Key conforming to - // the "aws.dynamodb.item_collection_metrics" semantic conventions. It - // represents the JSON-serialized value of the `ItemCollectionMetrics` - // response field. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '{ "string" : [ { "ItemCollectionKey": { "string" : { "B": - // blob, "BOOL": boolean, "BS": [ blob ], "L": [ "AttributeValue" ], "M": { - // "string" : "AttributeValue" }, "N": "string", "NS": [ "string" ], - // "NULL": boolean, "S": "string", "SS": [ "string" ] } }, - // "SizeEstimateRangeGB": [ number ] } ] }' - AWSDynamoDBItemCollectionMetricsKey = attribute.Key("aws.dynamodb.item_collection_metrics") - - // AWSDynamoDBProvisionedReadCapacityKey is the attribute Key conforming to - // the "aws.dynamodb.provisioned_read_capacity" semantic conventions. It - // represents the value of the `ProvisionedThroughput.ReadCapacityUnits` - // request parameter. - // - // Type: double - // RequirementLevel: Optional - // Stability: stable - // Examples: 1.0, 2.0 - AWSDynamoDBProvisionedReadCapacityKey = attribute.Key("aws.dynamodb.provisioned_read_capacity") - - // AWSDynamoDBProvisionedWriteCapacityKey is the attribute Key conforming - // to the "aws.dynamodb.provisioned_write_capacity" semantic conventions. - // It represents the value of the - // `ProvisionedThroughput.WriteCapacityUnits` request parameter. - // - // Type: double - // RequirementLevel: Optional - // Stability: stable - // Examples: 1.0, 2.0 - AWSDynamoDBProvisionedWriteCapacityKey = attribute.Key("aws.dynamodb.provisioned_write_capacity") - - // AWSDynamoDBConsistentReadKey is the attribute Key conforming to the - // "aws.dynamodb.consistent_read" semantic conventions. It represents the - // value of the `ConsistentRead` request parameter. - // - // Type: boolean - // RequirementLevel: Optional - // Stability: stable - AWSDynamoDBConsistentReadKey = attribute.Key("aws.dynamodb.consistent_read") - - // AWSDynamoDBProjectionKey is the attribute Key conforming to the - // "aws.dynamodb.projection" semantic conventions. It represents the value - // of the `ProjectionExpression` request parameter. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Title', 'Title, Price, Color', 'Title, Description, - // RelatedItems, ProductReviews' - AWSDynamoDBProjectionKey = attribute.Key("aws.dynamodb.projection") - - // AWSDynamoDBLimitKey is the attribute Key conforming to the - // "aws.dynamodb.limit" semantic conventions. It represents the value of - // the `Limit` request parameter. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 10 - AWSDynamoDBLimitKey = attribute.Key("aws.dynamodb.limit") - - // AWSDynamoDBAttributesToGetKey is the attribute Key conforming to the - // "aws.dynamodb.attributes_to_get" semantic conventions. It represents the - // value of the `AttributesToGet` request parameter. - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: 'lives', 'id' - AWSDynamoDBAttributesToGetKey = attribute.Key("aws.dynamodb.attributes_to_get") - - // AWSDynamoDBIndexNameKey is the attribute Key conforming to the - // "aws.dynamodb.index_name" semantic conventions. It represents the value - // of the `IndexName` request parameter. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'name_to_group' - AWSDynamoDBIndexNameKey = attribute.Key("aws.dynamodb.index_name") - - // AWSDynamoDBSelectKey is the attribute Key conforming to the - // "aws.dynamodb.select" semantic conventions. It represents the value of - // the `Select` request parameter. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'ALL_ATTRIBUTES', 'COUNT' - AWSDynamoDBSelectKey = attribute.Key("aws.dynamodb.select") -) - -// AWSDynamoDBTableNames returns an attribute KeyValue conforming to the -// "aws.dynamodb.table_names" semantic conventions. It represents the keys in -// the `RequestItems` object field. -func AWSDynamoDBTableNames(val ...string) attribute.KeyValue { - return AWSDynamoDBTableNamesKey.StringSlice(val) -} - -// AWSDynamoDBConsumedCapacity returns an attribute KeyValue conforming to -// the "aws.dynamodb.consumed_capacity" semantic conventions. It represents the -// JSON-serialized value of each item in the `ConsumedCapacity` response field. -func AWSDynamoDBConsumedCapacity(val ...string) attribute.KeyValue { - return AWSDynamoDBConsumedCapacityKey.StringSlice(val) -} - -// AWSDynamoDBItemCollectionMetrics returns an attribute KeyValue conforming -// to the "aws.dynamodb.item_collection_metrics" semantic conventions. It -// represents the JSON-serialized value of the `ItemCollectionMetrics` response -// field. -func AWSDynamoDBItemCollectionMetrics(val string) attribute.KeyValue { - return AWSDynamoDBItemCollectionMetricsKey.String(val) -} - -// AWSDynamoDBProvisionedReadCapacity returns an attribute KeyValue -// conforming to the "aws.dynamodb.provisioned_read_capacity" semantic -// conventions. It represents the value of the -// `ProvisionedThroughput.ReadCapacityUnits` request parameter. -func AWSDynamoDBProvisionedReadCapacity(val float64) attribute.KeyValue { - return AWSDynamoDBProvisionedReadCapacityKey.Float64(val) -} - -// AWSDynamoDBProvisionedWriteCapacity returns an attribute KeyValue -// conforming to the "aws.dynamodb.provisioned_write_capacity" semantic -// conventions. It represents the value of the -// `ProvisionedThroughput.WriteCapacityUnits` request parameter. -func AWSDynamoDBProvisionedWriteCapacity(val float64) attribute.KeyValue { - return AWSDynamoDBProvisionedWriteCapacityKey.Float64(val) -} - -// AWSDynamoDBConsistentRead returns an attribute KeyValue conforming to the -// "aws.dynamodb.consistent_read" semantic conventions. It represents the value -// of the `ConsistentRead` request parameter. -func AWSDynamoDBConsistentRead(val bool) attribute.KeyValue { - return AWSDynamoDBConsistentReadKey.Bool(val) -} - -// AWSDynamoDBProjection returns an attribute KeyValue conforming to the -// "aws.dynamodb.projection" semantic conventions. It represents the value of -// the `ProjectionExpression` request parameter. -func AWSDynamoDBProjection(val string) attribute.KeyValue { - return AWSDynamoDBProjectionKey.String(val) -} - -// AWSDynamoDBLimit returns an attribute KeyValue conforming to the -// "aws.dynamodb.limit" semantic conventions. It represents the value of the -// `Limit` request parameter. -func AWSDynamoDBLimit(val int) attribute.KeyValue { - return AWSDynamoDBLimitKey.Int(val) -} - -// AWSDynamoDBAttributesToGet returns an attribute KeyValue conforming to -// the "aws.dynamodb.attributes_to_get" semantic conventions. It represents the -// value of the `AttributesToGet` request parameter. -func AWSDynamoDBAttributesToGet(val ...string) attribute.KeyValue { - return AWSDynamoDBAttributesToGetKey.StringSlice(val) -} - -// AWSDynamoDBIndexName returns an attribute KeyValue conforming to the -// "aws.dynamodb.index_name" semantic conventions. It represents the value of -// the `IndexName` request parameter. -func AWSDynamoDBIndexName(val string) attribute.KeyValue { - return AWSDynamoDBIndexNameKey.String(val) -} - -// AWSDynamoDBSelect returns an attribute KeyValue conforming to the -// "aws.dynamodb.select" semantic conventions. It represents the value of the -// `Select` request parameter. -func AWSDynamoDBSelect(val string) attribute.KeyValue { - return AWSDynamoDBSelectKey.String(val) -} - -// DynamoDB.CreateTable -const ( - // AWSDynamoDBGlobalSecondaryIndexesKey is the attribute Key conforming to - // the "aws.dynamodb.global_secondary_indexes" semantic conventions. It - // represents the JSON-serialized value of each item of the - // `GlobalSecondaryIndexes` request field - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: '{ "IndexName": "string", "KeySchema": [ { "AttributeName": - // "string", "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ - // "string" ], "ProjectionType": "string" }, "ProvisionedThroughput": { - // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }' - AWSDynamoDBGlobalSecondaryIndexesKey = attribute.Key("aws.dynamodb.global_secondary_indexes") - - // AWSDynamoDBLocalSecondaryIndexesKey is the attribute Key conforming to - // the "aws.dynamodb.local_secondary_indexes" semantic conventions. It - // represents the JSON-serialized value of each item of the - // `LocalSecondaryIndexes` request field. - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: '{ "IndexARN": "string", "IndexName": "string", - // "IndexSizeBytes": number, "ItemCount": number, "KeySchema": [ { - // "AttributeName": "string", "KeyType": "string" } ], "Projection": { - // "NonKeyAttributes": [ "string" ], "ProjectionType": "string" } }' - AWSDynamoDBLocalSecondaryIndexesKey = attribute.Key("aws.dynamodb.local_secondary_indexes") -) - -// AWSDynamoDBGlobalSecondaryIndexes returns an attribute KeyValue -// conforming to the "aws.dynamodb.global_secondary_indexes" semantic -// conventions. It represents the JSON-serialized value of each item of the -// `GlobalSecondaryIndexes` request field -func AWSDynamoDBGlobalSecondaryIndexes(val ...string) attribute.KeyValue { - return AWSDynamoDBGlobalSecondaryIndexesKey.StringSlice(val) -} - -// AWSDynamoDBLocalSecondaryIndexes returns an attribute KeyValue conforming -// to the "aws.dynamodb.local_secondary_indexes" semantic conventions. It -// represents the JSON-serialized value of each item of the -// `LocalSecondaryIndexes` request field. -func AWSDynamoDBLocalSecondaryIndexes(val ...string) attribute.KeyValue { - return AWSDynamoDBLocalSecondaryIndexesKey.StringSlice(val) -} - -// DynamoDB.ListTables -const ( - // AWSDynamoDBExclusiveStartTableKey is the attribute Key conforming to the - // "aws.dynamodb.exclusive_start_table" semantic conventions. It represents - // the value of the `ExclusiveStartTableName` request parameter. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Users', 'CatsTable' - AWSDynamoDBExclusiveStartTableKey = attribute.Key("aws.dynamodb.exclusive_start_table") - - // AWSDynamoDBTableCountKey is the attribute Key conforming to the - // "aws.dynamodb.table_count" semantic conventions. It represents the the - // number of items in the `TableNames` response parameter. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 20 - AWSDynamoDBTableCountKey = attribute.Key("aws.dynamodb.table_count") -) - -// AWSDynamoDBExclusiveStartTable returns an attribute KeyValue conforming -// to the "aws.dynamodb.exclusive_start_table" semantic conventions. It -// represents the value of the `ExclusiveStartTableName` request parameter. -func AWSDynamoDBExclusiveStartTable(val string) attribute.KeyValue { - return AWSDynamoDBExclusiveStartTableKey.String(val) -} - -// AWSDynamoDBTableCount returns an attribute KeyValue conforming to the -// "aws.dynamodb.table_count" semantic conventions. It represents the the -// number of items in the `TableNames` response parameter. -func AWSDynamoDBTableCount(val int) attribute.KeyValue { - return AWSDynamoDBTableCountKey.Int(val) -} - -// DynamoDB.Query -const ( - // AWSDynamoDBScanForwardKey is the attribute Key conforming to the - // "aws.dynamodb.scan_forward" semantic conventions. It represents the - // value of the `ScanIndexForward` request parameter. - // - // Type: boolean - // RequirementLevel: Optional - // Stability: stable - AWSDynamoDBScanForwardKey = attribute.Key("aws.dynamodb.scan_forward") -) - -// AWSDynamoDBScanForward returns an attribute KeyValue conforming to the -// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of -// the `ScanIndexForward` request parameter. -func AWSDynamoDBScanForward(val bool) attribute.KeyValue { - return AWSDynamoDBScanForwardKey.Bool(val) -} - -// DynamoDB.Scan -const ( - // AWSDynamoDBSegmentKey is the attribute Key conforming to the - // "aws.dynamodb.segment" semantic conventions. It represents the value of - // the `Segment` request parameter. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 10 - AWSDynamoDBSegmentKey = attribute.Key("aws.dynamodb.segment") - - // AWSDynamoDBTotalSegmentsKey is the attribute Key conforming to the - // "aws.dynamodb.total_segments" semantic conventions. It represents the - // value of the `TotalSegments` request parameter. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 100 - AWSDynamoDBTotalSegmentsKey = attribute.Key("aws.dynamodb.total_segments") - - // AWSDynamoDBCountKey is the attribute Key conforming to the - // "aws.dynamodb.count" semantic conventions. It represents the value of - // the `Count` response parameter. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 10 - AWSDynamoDBCountKey = attribute.Key("aws.dynamodb.count") - - // AWSDynamoDBScannedCountKey is the attribute Key conforming to the - // "aws.dynamodb.scanned_count" semantic conventions. It represents the - // value of the `ScannedCount` response parameter. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 50 - AWSDynamoDBScannedCountKey = attribute.Key("aws.dynamodb.scanned_count") -) - -// AWSDynamoDBSegment returns an attribute KeyValue conforming to the -// "aws.dynamodb.segment" semantic conventions. It represents the value of the -// `Segment` request parameter. -func AWSDynamoDBSegment(val int) attribute.KeyValue { - return AWSDynamoDBSegmentKey.Int(val) -} - -// AWSDynamoDBTotalSegments returns an attribute KeyValue conforming to the -// "aws.dynamodb.total_segments" semantic conventions. It represents the value -// of the `TotalSegments` request parameter. -func AWSDynamoDBTotalSegments(val int) attribute.KeyValue { - return AWSDynamoDBTotalSegmentsKey.Int(val) -} - -// AWSDynamoDBCount returns an attribute KeyValue conforming to the -// "aws.dynamodb.count" semantic conventions. It represents the value of the -// `Count` response parameter. -func AWSDynamoDBCount(val int) attribute.KeyValue { - return AWSDynamoDBCountKey.Int(val) -} - -// AWSDynamoDBScannedCount returns an attribute KeyValue conforming to the -// "aws.dynamodb.scanned_count" semantic conventions. It represents the value -// of the `ScannedCount` response parameter. -func AWSDynamoDBScannedCount(val int) attribute.KeyValue { - return AWSDynamoDBScannedCountKey.Int(val) -} - -// DynamoDB.UpdateTable -const ( - // AWSDynamoDBAttributeDefinitionsKey is the attribute Key conforming to - // the "aws.dynamodb.attribute_definitions" semantic conventions. It - // represents the JSON-serialized value of each item in the - // `AttributeDefinitions` request field. - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: '{ "AttributeName": "string", "AttributeType": "string" }' - AWSDynamoDBAttributeDefinitionsKey = attribute.Key("aws.dynamodb.attribute_definitions") - - // AWSDynamoDBGlobalSecondaryIndexUpdatesKey is the attribute Key - // conforming to the "aws.dynamodb.global_secondary_index_updates" semantic - // conventions. It represents the JSON-serialized value of each item in the - // the `GlobalSecondaryIndexUpdates` request field. - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: '{ "Create": { "IndexName": "string", "KeySchema": [ { - // "AttributeName": "string", "KeyType": "string" } ], "Projection": { - // "NonKeyAttributes": [ "string" ], "ProjectionType": "string" }, - // "ProvisionedThroughput": { "ReadCapacityUnits": number, - // "WriteCapacityUnits": number } }' - AWSDynamoDBGlobalSecondaryIndexUpdatesKey = attribute.Key("aws.dynamodb.global_secondary_index_updates") -) - -// AWSDynamoDBAttributeDefinitions returns an attribute KeyValue conforming -// to the "aws.dynamodb.attribute_definitions" semantic conventions. It -// represents the JSON-serialized value of each item in the -// `AttributeDefinitions` request field. -func AWSDynamoDBAttributeDefinitions(val ...string) attribute.KeyValue { - return AWSDynamoDBAttributeDefinitionsKey.StringSlice(val) -} - -// AWSDynamoDBGlobalSecondaryIndexUpdates returns an attribute KeyValue -// conforming to the "aws.dynamodb.global_secondary_index_updates" semantic -// conventions. It represents the JSON-serialized value of each item in the the -// `GlobalSecondaryIndexUpdates` request field. -func AWSDynamoDBGlobalSecondaryIndexUpdates(val ...string) attribute.KeyValue { - return AWSDynamoDBGlobalSecondaryIndexUpdatesKey.StringSlice(val) -} - -// Semantic conventions to apply when instrumenting the GraphQL implementation. -// They map GraphQL operations to attributes on a Span. -const ( - // GraphqlOperationNameKey is the attribute Key conforming to the - // "graphql.operation.name" semantic conventions. It represents the name of - // the operation being executed. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'findBookByID' - GraphqlOperationNameKey = attribute.Key("graphql.operation.name") - - // GraphqlOperationTypeKey is the attribute Key conforming to the - // "graphql.operation.type" semantic conventions. It represents the type of - // the operation being executed. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - // Examples: 'query', 'mutation', 'subscription' - GraphqlOperationTypeKey = attribute.Key("graphql.operation.type") - - // GraphqlDocumentKey is the attribute Key conforming to the - // "graphql.document" semantic conventions. It represents the GraphQL - // document being executed. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'query findBookByID { bookByID(id: ?) { name } }' - // Note: The value may be sanitized to exclude sensitive information. - GraphqlDocumentKey = attribute.Key("graphql.document") -) - -var ( - // GraphQL query - GraphqlOperationTypeQuery = GraphqlOperationTypeKey.String("query") - // GraphQL mutation - GraphqlOperationTypeMutation = GraphqlOperationTypeKey.String("mutation") - // GraphQL subscription - GraphqlOperationTypeSubscription = GraphqlOperationTypeKey.String("subscription") -) - -// GraphqlOperationName returns an attribute KeyValue conforming to the -// "graphql.operation.name" semantic conventions. It represents the name of the -// operation being executed. -func GraphqlOperationName(val string) attribute.KeyValue { - return GraphqlOperationNameKey.String(val) -} - -// GraphqlDocument returns an attribute KeyValue conforming to the -// "graphql.document" semantic conventions. It represents the GraphQL document -// being executed. -func GraphqlDocument(val string) attribute.KeyValue { - return GraphqlDocumentKey.String(val) -} - -// Semantic convention describing per-message attributes populated on messaging -// spans or links. -const ( - // MessagingMessageIDKey is the attribute Key conforming to the - // "messaging.message.id" semantic conventions. It represents a value used - // by the messaging system as an identifier for the message, represented as - // a string. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '452a7c7c7c7048c2f887f61572b18fc2' - MessagingMessageIDKey = attribute.Key("messaging.message.id") - - // MessagingMessageConversationIDKey is the attribute Key conforming to the - // "messaging.message.conversation_id" semantic conventions. It represents - // the [conversation ID](#conversations) identifying the conversation to - // which the message belongs, represented as a string. Sometimes called - // "Correlation ID". - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'MyConversationID' - MessagingMessageConversationIDKey = attribute.Key("messaging.message.conversation_id") - - // MessagingMessagePayloadSizeBytesKey is the attribute Key conforming to - // the "messaging.message.payload_size_bytes" semantic conventions. It - // represents the (uncompressed) size of the message payload in bytes. Also - // use this attribute if it is unknown whether the compressed or - // uncompressed payload size is reported. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 2738 - MessagingMessagePayloadSizeBytesKey = attribute.Key("messaging.message.payload_size_bytes") - - // MessagingMessagePayloadCompressedSizeBytesKey is the attribute Key - // conforming to the "messaging.message.payload_compressed_size_bytes" - // semantic conventions. It represents the compressed size of the message - // payload in bytes. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 2048 - MessagingMessagePayloadCompressedSizeBytesKey = attribute.Key("messaging.message.payload_compressed_size_bytes") -) - -// MessagingMessageID returns an attribute KeyValue conforming to the -// "messaging.message.id" semantic conventions. It represents a value used by -// the messaging system as an identifier for the message, represented as a -// string. -func MessagingMessageID(val string) attribute.KeyValue { - return MessagingMessageIDKey.String(val) -} - -// MessagingMessageConversationID returns an attribute KeyValue conforming -// to the "messaging.message.conversation_id" semantic conventions. It -// represents the [conversation ID](#conversations) identifying the -// conversation to which the message belongs, represented as a string. -// Sometimes called "Correlation ID". -func MessagingMessageConversationID(val string) attribute.KeyValue { - return MessagingMessageConversationIDKey.String(val) -} - -// MessagingMessagePayloadSizeBytes returns an attribute KeyValue conforming -// to the "messaging.message.payload_size_bytes" semantic conventions. It -// represents the (uncompressed) size of the message payload in bytes. Also use -// this attribute if it is unknown whether the compressed or uncompressed -// payload size is reported. -func MessagingMessagePayloadSizeBytes(val int) attribute.KeyValue { - return MessagingMessagePayloadSizeBytesKey.Int(val) -} - -// MessagingMessagePayloadCompressedSizeBytes returns an attribute KeyValue -// conforming to the "messaging.message.payload_compressed_size_bytes" semantic -// conventions. It represents the compressed size of the message payload in -// bytes. -func MessagingMessagePayloadCompressedSizeBytes(val int) attribute.KeyValue { - return MessagingMessagePayloadCompressedSizeBytesKey.Int(val) -} - -// Semantic convention for attributes that describe messaging destination on -// broker -const ( - // MessagingDestinationNameKey is the attribute Key conforming to the - // "messaging.destination.name" semantic conventions. It represents the - // message destination name - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'MyQueue', 'MyTopic' - // Note: Destination name SHOULD uniquely identify a specific queue, topic - // or other entity within the broker. If - // the broker does not have such notion, the destination name SHOULD - // uniquely identify the broker. - MessagingDestinationNameKey = attribute.Key("messaging.destination.name") - - // MessagingDestinationKindKey is the attribute Key conforming to the - // "messaging.destination.kind" semantic conventions. It represents the - // kind of message destination - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - MessagingDestinationKindKey = attribute.Key("messaging.destination.kind") - - // MessagingDestinationTemplateKey is the attribute Key conforming to the - // "messaging.destination.template" semantic conventions. It represents the - // low cardinality representation of the messaging destination name - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '/customers/{customerID}' - // Note: Destination names could be constructed from templates. An example - // would be a destination name involving a user name or product id. - // Although the destination name in this case is of high cardinality, the - // underlying template is of low cardinality and can be effectively used - // for grouping and aggregation. - MessagingDestinationTemplateKey = attribute.Key("messaging.destination.template") - - // MessagingDestinationTemporaryKey is the attribute Key conforming to the - // "messaging.destination.temporary" semantic conventions. It represents a - // boolean that is true if the message destination is temporary and might - // not exist anymore after messages are processed. - // - // Type: boolean - // RequirementLevel: Optional - // Stability: stable - MessagingDestinationTemporaryKey = attribute.Key("messaging.destination.temporary") - - // MessagingDestinationAnonymousKey is the attribute Key conforming to the - // "messaging.destination.anonymous" semantic conventions. It represents a - // boolean that is true if the message destination is anonymous (could be - // unnamed or have auto-generated name). - // - // Type: boolean - // RequirementLevel: Optional - // Stability: stable - MessagingDestinationAnonymousKey = attribute.Key("messaging.destination.anonymous") -) - -var ( - // A message sent to a queue - MessagingDestinationKindQueue = MessagingDestinationKindKey.String("queue") - // A message sent to a topic - MessagingDestinationKindTopic = MessagingDestinationKindKey.String("topic") -) - -// MessagingDestinationName returns an attribute KeyValue conforming to the -// "messaging.destination.name" semantic conventions. It represents the message -// destination name -func MessagingDestinationName(val string) attribute.KeyValue { - return MessagingDestinationNameKey.String(val) -} - -// MessagingDestinationTemplate returns an attribute KeyValue conforming to -// the "messaging.destination.template" semantic conventions. It represents the -// low cardinality representation of the messaging destination name -func MessagingDestinationTemplate(val string) attribute.KeyValue { - return MessagingDestinationTemplateKey.String(val) -} - -// MessagingDestinationTemporary returns an attribute KeyValue conforming to -// the "messaging.destination.temporary" semantic conventions. It represents a -// boolean that is true if the message destination is temporary and might not -// exist anymore after messages are processed. -func MessagingDestinationTemporary(val bool) attribute.KeyValue { - return MessagingDestinationTemporaryKey.Bool(val) -} - -// MessagingDestinationAnonymous returns an attribute KeyValue conforming to -// the "messaging.destination.anonymous" semantic conventions. It represents a -// boolean that is true if the message destination is anonymous (could be -// unnamed or have auto-generated name). -func MessagingDestinationAnonymous(val bool) attribute.KeyValue { - return MessagingDestinationAnonymousKey.Bool(val) -} - -// Semantic convention for attributes that describe messaging source on broker -const ( - // MessagingSourceNameKey is the attribute Key conforming to the - // "messaging.source.name" semantic conventions. It represents the message - // source name - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'MyQueue', 'MyTopic' - // Note: Source name SHOULD uniquely identify a specific queue, topic, or - // other entity within the broker. If - // the broker does not have such notion, the source name SHOULD uniquely - // identify the broker. - MessagingSourceNameKey = attribute.Key("messaging.source.name") - - // MessagingSourceKindKey is the attribute Key conforming to the - // "messaging.source.kind" semantic conventions. It represents the kind of - // message source - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - MessagingSourceKindKey = attribute.Key("messaging.source.kind") - - // MessagingSourceTemplateKey is the attribute Key conforming to the - // "messaging.source.template" semantic conventions. It represents the low - // cardinality representation of the messaging source name - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '/customers/{customerID}' - // Note: Source names could be constructed from templates. An example would - // be a source name involving a user name or product id. Although the - // source name in this case is of high cardinality, the underlying template - // is of low cardinality and can be effectively used for grouping and - // aggregation. - MessagingSourceTemplateKey = attribute.Key("messaging.source.template") - - // MessagingSourceTemporaryKey is the attribute Key conforming to the - // "messaging.source.temporary" semantic conventions. It represents a - // boolean that is true if the message source is temporary and might not - // exist anymore after messages are processed. - // - // Type: boolean - // RequirementLevel: Optional - // Stability: stable - MessagingSourceTemporaryKey = attribute.Key("messaging.source.temporary") - - // MessagingSourceAnonymousKey is the attribute Key conforming to the - // "messaging.source.anonymous" semantic conventions. It represents a - // boolean that is true if the message source is anonymous (could be - // unnamed or have auto-generated name). - // - // Type: boolean - // RequirementLevel: Optional - // Stability: stable - MessagingSourceAnonymousKey = attribute.Key("messaging.source.anonymous") -) - -var ( - // A message received from a queue - MessagingSourceKindQueue = MessagingSourceKindKey.String("queue") - // A message received from a topic - MessagingSourceKindTopic = MessagingSourceKindKey.String("topic") -) - -// MessagingSourceName returns an attribute KeyValue conforming to the -// "messaging.source.name" semantic conventions. It represents the message -// source name -func MessagingSourceName(val string) attribute.KeyValue { - return MessagingSourceNameKey.String(val) -} - -// MessagingSourceTemplate returns an attribute KeyValue conforming to the -// "messaging.source.template" semantic conventions. It represents the low -// cardinality representation of the messaging source name -func MessagingSourceTemplate(val string) attribute.KeyValue { - return MessagingSourceTemplateKey.String(val) -} - -// MessagingSourceTemporary returns an attribute KeyValue conforming to the -// "messaging.source.temporary" semantic conventions. It represents a boolean -// that is true if the message source is temporary and might not exist anymore -// after messages are processed. -func MessagingSourceTemporary(val bool) attribute.KeyValue { - return MessagingSourceTemporaryKey.Bool(val) -} - -// MessagingSourceAnonymous returns an attribute KeyValue conforming to the -// "messaging.source.anonymous" semantic conventions. It represents a boolean -// that is true if the message source is anonymous (could be unnamed or have -// auto-generated name). -func MessagingSourceAnonymous(val bool) attribute.KeyValue { - return MessagingSourceAnonymousKey.Bool(val) -} - -// General attributes used in messaging systems. -const ( - // MessagingSystemKey is the attribute Key conforming to the - // "messaging.system" semantic conventions. It represents a string - // identifying the messaging system. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'kafka', 'rabbitmq', 'rocketmq', 'activemq', 'AmazonSQS' - MessagingSystemKey = attribute.Key("messaging.system") - - // MessagingOperationKey is the attribute Key conforming to the - // "messaging.operation" semantic conventions. It represents a string - // identifying the kind of messaging operation as defined in the [Operation - // names](#operation-names) section above. - // - // Type: Enum - // RequirementLevel: Required - // Stability: stable - // Note: If a custom value is used, it MUST be of low cardinality. - MessagingOperationKey = attribute.Key("messaging.operation") - - // MessagingBatchMessageCountKey is the attribute Key conforming to the - // "messaging.batch.message_count" semantic conventions. It represents the - // number of messages sent, received, or processed in the scope of the - // batching operation. - // - // Type: int - // RequirementLevel: ConditionallyRequired (If the span describes an - // operation on a batch of messages.) - // Stability: stable - // Examples: 0, 1, 2 - // Note: Instrumentations SHOULD NOT set `messaging.batch.message_count` on - // spans that operate with a single message. When a messaging client - // library supports both batch and single-message API for the same - // operation, instrumentations SHOULD use `messaging.batch.message_count` - // for batching APIs and SHOULD NOT use it for single-message APIs. - MessagingBatchMessageCountKey = attribute.Key("messaging.batch.message_count") -) - -var ( - // publish - MessagingOperationPublish = MessagingOperationKey.String("publish") - // receive - MessagingOperationReceive = MessagingOperationKey.String("receive") - // process - MessagingOperationProcess = MessagingOperationKey.String("process") -) - -// MessagingSystem returns an attribute KeyValue conforming to the -// "messaging.system" semantic conventions. It represents a string identifying -// the messaging system. -func MessagingSystem(val string) attribute.KeyValue { - return MessagingSystemKey.String(val) -} - -// MessagingBatchMessageCount returns an attribute KeyValue conforming to -// the "messaging.batch.message_count" semantic conventions. It represents the -// number of messages sent, received, or processed in the scope of the batching -// operation. -func MessagingBatchMessageCount(val int) attribute.KeyValue { - return MessagingBatchMessageCountKey.Int(val) -} - -// Semantic convention for a consumer of messages received from a messaging -// system -const ( - // MessagingConsumerIDKey is the attribute Key conforming to the - // "messaging.consumer.id" semantic conventions. It represents the - // identifier for the consumer receiving a message. For Kafka, set it to - // `{messaging.kafka.consumer.group} - {messaging.kafka.client_id}`, if - // both are present, or only `messaging.kafka.consumer.group`. For brokers, - // such as RabbitMQ and Artemis, set it to the `client_id` of the client - // consuming the message. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'mygroup - client-6' - MessagingConsumerIDKey = attribute.Key("messaging.consumer.id") -) - -// MessagingConsumerID returns an attribute KeyValue conforming to the -// "messaging.consumer.id" semantic conventions. It represents the identifier -// for the consumer receiving a message. For Kafka, set it to -// `{messaging.kafka.consumer.group} - {messaging.kafka.client_id}`, if both -// are present, or only `messaging.kafka.consumer.group`. For brokers, such as -// RabbitMQ and Artemis, set it to the `client_id` of the client consuming the -// message. -func MessagingConsumerID(val string) attribute.KeyValue { - return MessagingConsumerIDKey.String(val) -} - -// Attributes for RabbitMQ -const ( - // MessagingRabbitmqDestinationRoutingKeyKey is the attribute Key - // conforming to the "messaging.rabbitmq.destination.routing_key" semantic - // conventions. It represents the rabbitMQ message routing key. - // - // Type: string - // RequirementLevel: ConditionallyRequired (If not empty.) - // Stability: stable - // Examples: 'myKey' - MessagingRabbitmqDestinationRoutingKeyKey = attribute.Key("messaging.rabbitmq.destination.routing_key") -) - -// MessagingRabbitmqDestinationRoutingKey returns an attribute KeyValue -// conforming to the "messaging.rabbitmq.destination.routing_key" semantic -// conventions. It represents the rabbitMQ message routing key. -func MessagingRabbitmqDestinationRoutingKey(val string) attribute.KeyValue { - return MessagingRabbitmqDestinationRoutingKeyKey.String(val) -} - -// Attributes for Apache Kafka -const ( - // MessagingKafkaMessageKeyKey is the attribute Key conforming to the - // "messaging.kafka.message.key" semantic conventions. It represents the - // message keys in Kafka are used for grouping alike messages to ensure - // they're processed on the same partition. They differ from - // `messaging.message.id` in that they're not unique. If the key is `null`, - // the attribute MUST NOT be set. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'myKey' - // Note: If the key type is not string, it's string representation has to - // be supplied for the attribute. If the key has no unambiguous, canonical - // string form, don't include its value. - MessagingKafkaMessageKeyKey = attribute.Key("messaging.kafka.message.key") - - // MessagingKafkaConsumerGroupKey is the attribute Key conforming to the - // "messaging.kafka.consumer.group" semantic conventions. It represents the - // name of the Kafka Consumer Group that is handling the message. Only - // applies to consumers, not producers. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'my-group' - MessagingKafkaConsumerGroupKey = attribute.Key("messaging.kafka.consumer.group") - - // MessagingKafkaClientIDKey is the attribute Key conforming to the - // "messaging.kafka.client_id" semantic conventions. It represents the - // client ID for the Consumer or Producer that is handling the message. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'client-5' - MessagingKafkaClientIDKey = attribute.Key("messaging.kafka.client_id") - - // MessagingKafkaDestinationPartitionKey is the attribute Key conforming to - // the "messaging.kafka.destination.partition" semantic conventions. It - // represents the partition the message is sent to. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 2 - MessagingKafkaDestinationPartitionKey = attribute.Key("messaging.kafka.destination.partition") - - // MessagingKafkaSourcePartitionKey is the attribute Key conforming to the - // "messaging.kafka.source.partition" semantic conventions. It represents - // the partition the message is received from. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 2 - MessagingKafkaSourcePartitionKey = attribute.Key("messaging.kafka.source.partition") - - // MessagingKafkaMessageOffsetKey is the attribute Key conforming to the - // "messaging.kafka.message.offset" semantic conventions. It represents the - // offset of a record in the corresponding Kafka partition. - // - // Type: int - // RequirementLevel: Optional - // Stability: stable - // Examples: 42 - MessagingKafkaMessageOffsetKey = attribute.Key("messaging.kafka.message.offset") - - // MessagingKafkaMessageTombstoneKey is the attribute Key conforming to the - // "messaging.kafka.message.tombstone" semantic conventions. It represents - // a boolean that is true if the message is a tombstone. - // - // Type: boolean - // RequirementLevel: ConditionallyRequired (If value is `true`. When - // missing, the value is assumed to be `false`.) - // Stability: stable - MessagingKafkaMessageTombstoneKey = attribute.Key("messaging.kafka.message.tombstone") -) - -// MessagingKafkaMessageKey returns an attribute KeyValue conforming to the -// "messaging.kafka.message.key" semantic conventions. It represents the -// message keys in Kafka are used for grouping alike messages to ensure they're -// processed on the same partition. They differ from `messaging.message.id` in -// that they're not unique. If the key is `null`, the attribute MUST NOT be -// set. -func MessagingKafkaMessageKey(val string) attribute.KeyValue { - return MessagingKafkaMessageKeyKey.String(val) -} - -// MessagingKafkaConsumerGroup returns an attribute KeyValue conforming to -// the "messaging.kafka.consumer.group" semantic conventions. It represents the -// name of the Kafka Consumer Group that is handling the message. Only applies -// to consumers, not producers. -func MessagingKafkaConsumerGroup(val string) attribute.KeyValue { - return MessagingKafkaConsumerGroupKey.String(val) -} - -// MessagingKafkaClientID returns an attribute KeyValue conforming to the -// "messaging.kafka.client_id" semantic conventions. It represents the client -// ID for the Consumer or Producer that is handling the message. -func MessagingKafkaClientID(val string) attribute.KeyValue { - return MessagingKafkaClientIDKey.String(val) -} - -// MessagingKafkaDestinationPartition returns an attribute KeyValue -// conforming to the "messaging.kafka.destination.partition" semantic -// conventions. It represents the partition the message is sent to. -func MessagingKafkaDestinationPartition(val int) attribute.KeyValue { - return MessagingKafkaDestinationPartitionKey.Int(val) -} - -// MessagingKafkaSourcePartition returns an attribute KeyValue conforming to -// the "messaging.kafka.source.partition" semantic conventions. It represents -// the partition the message is received from. -func MessagingKafkaSourcePartition(val int) attribute.KeyValue { - return MessagingKafkaSourcePartitionKey.Int(val) -} - -// MessagingKafkaMessageOffset returns an attribute KeyValue conforming to -// the "messaging.kafka.message.offset" semantic conventions. It represents the -// offset of a record in the corresponding Kafka partition. -func MessagingKafkaMessageOffset(val int) attribute.KeyValue { - return MessagingKafkaMessageOffsetKey.Int(val) -} - -// MessagingKafkaMessageTombstone returns an attribute KeyValue conforming -// to the "messaging.kafka.message.tombstone" semantic conventions. It -// represents a boolean that is true if the message is a tombstone. -func MessagingKafkaMessageTombstone(val bool) attribute.KeyValue { - return MessagingKafkaMessageTombstoneKey.Bool(val) -} - -// Attributes for Apache RocketMQ -const ( - // MessagingRocketmqNamespaceKey is the attribute Key conforming to the - // "messaging.rocketmq.namespace" semantic conventions. It represents the - // namespace of RocketMQ resources, resources in different namespaces are - // individual. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'myNamespace' - MessagingRocketmqNamespaceKey = attribute.Key("messaging.rocketmq.namespace") - - // MessagingRocketmqClientGroupKey is the attribute Key conforming to the - // "messaging.rocketmq.client_group" semantic conventions. It represents - // the name of the RocketMQ producer/consumer group that is handling the - // message. The client type is identified by the SpanKind. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'myConsumerGroup' - MessagingRocketmqClientGroupKey = attribute.Key("messaging.rocketmq.client_group") - - // MessagingRocketmqClientIDKey is the attribute Key conforming to the - // "messaging.rocketmq.client_id" semantic conventions. It represents the - // unique identifier for each client. - // - // Type: string - // RequirementLevel: Required - // Stability: stable - // Examples: 'myhost@8742@s8083jm' - MessagingRocketmqClientIDKey = attribute.Key("messaging.rocketmq.client_id") - - // MessagingRocketmqMessageDeliveryTimestampKey is the attribute Key - // conforming to the "messaging.rocketmq.message.delivery_timestamp" - // semantic conventions. It represents the timestamp in milliseconds that - // the delay message is expected to be delivered to consumer. - // - // Type: int - // RequirementLevel: ConditionallyRequired (If the message type is delay - // and delay time level is not specified.) - // Stability: stable - // Examples: 1665987217045 - MessagingRocketmqMessageDeliveryTimestampKey = attribute.Key("messaging.rocketmq.message.delivery_timestamp") - - // MessagingRocketmqMessageDelayTimeLevelKey is the attribute Key - // conforming to the "messaging.rocketmq.message.delay_time_level" semantic - // conventions. It represents the delay time level for delay message, which - // determines the message delay time. - // - // Type: int - // RequirementLevel: ConditionallyRequired (If the message type is delay - // and delivery timestamp is not specified.) - // Stability: stable - // Examples: 3 - MessagingRocketmqMessageDelayTimeLevelKey = attribute.Key("messaging.rocketmq.message.delay_time_level") - - // MessagingRocketmqMessageGroupKey is the attribute Key conforming to the - // "messaging.rocketmq.message.group" semantic conventions. It represents - // the it is essential for FIFO message. Messages that belong to the same - // message group are always processed one by one within the same consumer - // group. - // - // Type: string - // RequirementLevel: ConditionallyRequired (If the message type is FIFO.) - // Stability: stable - // Examples: 'myMessageGroup' - MessagingRocketmqMessageGroupKey = attribute.Key("messaging.rocketmq.message.group") - - // MessagingRocketmqMessageTypeKey is the attribute Key conforming to the - // "messaging.rocketmq.message.type" semantic conventions. It represents - // the type of message. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - MessagingRocketmqMessageTypeKey = attribute.Key("messaging.rocketmq.message.type") - - // MessagingRocketmqMessageTagKey is the attribute Key conforming to the - // "messaging.rocketmq.message.tag" semantic conventions. It represents the - // secondary classifier of message besides topic. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'tagA' - MessagingRocketmqMessageTagKey = attribute.Key("messaging.rocketmq.message.tag") - - // MessagingRocketmqMessageKeysKey is the attribute Key conforming to the - // "messaging.rocketmq.message.keys" semantic conventions. It represents - // the key(s) of message, another way to mark message besides message id. - // - // Type: string[] - // RequirementLevel: Optional - // Stability: stable - // Examples: 'keyA', 'keyB' - MessagingRocketmqMessageKeysKey = attribute.Key("messaging.rocketmq.message.keys") - - // MessagingRocketmqConsumptionModelKey is the attribute Key conforming to - // the "messaging.rocketmq.consumption_model" semantic conventions. It - // represents the model of message consumption. This only applies to - // consumer spans. - // - // Type: Enum - // RequirementLevel: Optional - // Stability: stable - MessagingRocketmqConsumptionModelKey = attribute.Key("messaging.rocketmq.consumption_model") -) - -var ( - // Normal message - MessagingRocketmqMessageTypeNormal = MessagingRocketmqMessageTypeKey.String("normal") - // FIFO message - MessagingRocketmqMessageTypeFifo = MessagingRocketmqMessageTypeKey.String("fifo") - // Delay message - MessagingRocketmqMessageTypeDelay = MessagingRocketmqMessageTypeKey.String("delay") - // Transaction message - MessagingRocketmqMessageTypeTransaction = MessagingRocketmqMessageTypeKey.String("transaction") -) - -var ( - // Clustering consumption model - MessagingRocketmqConsumptionModelClustering = MessagingRocketmqConsumptionModelKey.String("clustering") - // Broadcasting consumption model - MessagingRocketmqConsumptionModelBroadcasting = MessagingRocketmqConsumptionModelKey.String("broadcasting") -) - -// MessagingRocketmqNamespace returns an attribute KeyValue conforming to -// the "messaging.rocketmq.namespace" semantic conventions. It represents the -// namespace of RocketMQ resources, resources in different namespaces are -// individual. -func MessagingRocketmqNamespace(val string) attribute.KeyValue { - return MessagingRocketmqNamespaceKey.String(val) -} - -// MessagingRocketmqClientGroup returns an attribute KeyValue conforming to -// the "messaging.rocketmq.client_group" semantic conventions. It represents -// the name of the RocketMQ producer/consumer group that is handling the -// message. The client type is identified by the SpanKind. -func MessagingRocketmqClientGroup(val string) attribute.KeyValue { - return MessagingRocketmqClientGroupKey.String(val) -} - -// MessagingRocketmqClientID returns an attribute KeyValue conforming to the -// "messaging.rocketmq.client_id" semantic conventions. It represents the -// unique identifier for each client. -func MessagingRocketmqClientID(val string) attribute.KeyValue { - return MessagingRocketmqClientIDKey.String(val) -} - -// MessagingRocketmqMessageDeliveryTimestamp returns an attribute KeyValue -// conforming to the "messaging.rocketmq.message.delivery_timestamp" semantic -// conventions. It represents the timestamp in milliseconds that the delay -// message is expected to be delivered to consumer. -func MessagingRocketmqMessageDeliveryTimestamp(val int) attribute.KeyValue { - return MessagingRocketmqMessageDeliveryTimestampKey.Int(val) -} - -// MessagingRocketmqMessageDelayTimeLevel returns an attribute KeyValue -// conforming to the "messaging.rocketmq.message.delay_time_level" semantic -// conventions. It represents the delay time level for delay message, which -// determines the message delay time. -func MessagingRocketmqMessageDelayTimeLevel(val int) attribute.KeyValue { - return MessagingRocketmqMessageDelayTimeLevelKey.Int(val) -} - -// MessagingRocketmqMessageGroup returns an attribute KeyValue conforming to -// the "messaging.rocketmq.message.group" semantic conventions. It represents -// the it is essential for FIFO message. Messages that belong to the same -// message group are always processed one by one within the same consumer -// group. -func MessagingRocketmqMessageGroup(val string) attribute.KeyValue { - return MessagingRocketmqMessageGroupKey.String(val) -} - -// MessagingRocketmqMessageTag returns an attribute KeyValue conforming to -// the "messaging.rocketmq.message.tag" semantic conventions. It represents the -// secondary classifier of message besides topic. -func MessagingRocketmqMessageTag(val string) attribute.KeyValue { - return MessagingRocketmqMessageTagKey.String(val) -} - -// MessagingRocketmqMessageKeys returns an attribute KeyValue conforming to -// the "messaging.rocketmq.message.keys" semantic conventions. It represents -// the key(s) of message, another way to mark message besides message id. -func MessagingRocketmqMessageKeys(val ...string) attribute.KeyValue { - return MessagingRocketmqMessageKeysKey.StringSlice(val) -} - -// Semantic conventions for remote procedure calls. -const ( - // RPCSystemKey is the attribute Key conforming to the "rpc.system" - // semantic conventions. It represents a string identifying the remoting - // system. See below for a list of well-known identifiers. - // - // Type: Enum - // RequirementLevel: Required - // Stability: stable - RPCSystemKey = attribute.Key("rpc.system") - - // RPCServiceKey is the attribute Key conforming to the "rpc.service" - // semantic conventions. It represents the full (logical) name of the - // service being called, including its package name, if applicable. - // - // Type: string - // RequirementLevel: Recommended - // Stability: stable - // Examples: 'myservice.EchoService' - // Note: This is the logical name of the service from the RPC interface - // perspective, which can be different from the name of any implementing - // class. The `code.namespace` attribute may be used to store the latter - // (despite the attribute name, it may include a class name; e.g., class - // with method actually executing the call on the server side, RPC client - // stub class on the client side). - RPCServiceKey = attribute.Key("rpc.service") - - // RPCMethodKey is the attribute Key conforming to the "rpc.method" - // semantic conventions. It represents the name of the (logical) method - // being called, must be equal to the $method part in the span name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: stable - // Examples: 'exampleMethod' - // Note: This is the logical name of the method from the RPC interface - // perspective, which can be different from the name of any implementing - // method/function. The `code.function` attribute may be used to store the - // latter (e.g., method actually executing the call on the server side, RPC - // client stub method on the client side). - RPCMethodKey = attribute.Key("rpc.method") -) - -var ( - // gRPC - RPCSystemGRPC = RPCSystemKey.String("grpc") - // Java RMI - RPCSystemJavaRmi = RPCSystemKey.String("java_rmi") - // .NET WCF - RPCSystemDotnetWcf = RPCSystemKey.String("dotnet_wcf") - // Apache Dubbo - RPCSystemApacheDubbo = RPCSystemKey.String("apache_dubbo") -) - -// RPCService returns an attribute KeyValue conforming to the "rpc.service" -// semantic conventions. It represents the full (logical) name of the service -// being called, including its package name, if applicable. -func RPCService(val string) attribute.KeyValue { - return RPCServiceKey.String(val) -} - -// RPCMethod returns an attribute KeyValue conforming to the "rpc.method" -// semantic conventions. It represents the name of the (logical) method being -// called, must be equal to the $method part in the span name. -func RPCMethod(val string) attribute.KeyValue { - return RPCMethodKey.String(val) -} - -// Tech-specific attributes for gRPC. -const ( - // RPCGRPCStatusCodeKey is the attribute Key conforming to the - // "rpc.grpc.status_code" semantic conventions. It represents the [numeric - // status - // code](https://github.com/grpc/grpc/blob/v1.33.2/doc/statuscodes.md) of - // the gRPC request. - // - // Type: Enum - // RequirementLevel: Required - // Stability: stable - RPCGRPCStatusCodeKey = attribute.Key("rpc.grpc.status_code") -) - -var ( - // OK - RPCGRPCStatusCodeOk = RPCGRPCStatusCodeKey.Int(0) - // CANCELLED - RPCGRPCStatusCodeCancelled = RPCGRPCStatusCodeKey.Int(1) - // UNKNOWN - RPCGRPCStatusCodeUnknown = RPCGRPCStatusCodeKey.Int(2) - // INVALID_ARGUMENT - RPCGRPCStatusCodeInvalidArgument = RPCGRPCStatusCodeKey.Int(3) - // DEADLINE_EXCEEDED - RPCGRPCStatusCodeDeadlineExceeded = RPCGRPCStatusCodeKey.Int(4) - // NOT_FOUND - RPCGRPCStatusCodeNotFound = RPCGRPCStatusCodeKey.Int(5) - // ALREADY_EXISTS - RPCGRPCStatusCodeAlreadyExists = RPCGRPCStatusCodeKey.Int(6) - // PERMISSION_DENIED - RPCGRPCStatusCodePermissionDenied = RPCGRPCStatusCodeKey.Int(7) - // RESOURCE_EXHAUSTED - RPCGRPCStatusCodeResourceExhausted = RPCGRPCStatusCodeKey.Int(8) - // FAILED_PRECONDITION - RPCGRPCStatusCodeFailedPrecondition = RPCGRPCStatusCodeKey.Int(9) - // ABORTED - RPCGRPCStatusCodeAborted = RPCGRPCStatusCodeKey.Int(10) - // OUT_OF_RANGE - RPCGRPCStatusCodeOutOfRange = RPCGRPCStatusCodeKey.Int(11) - // UNIMPLEMENTED - RPCGRPCStatusCodeUnimplemented = RPCGRPCStatusCodeKey.Int(12) - // INTERNAL - RPCGRPCStatusCodeInternal = RPCGRPCStatusCodeKey.Int(13) - // UNAVAILABLE - RPCGRPCStatusCodeUnavailable = RPCGRPCStatusCodeKey.Int(14) - // DATA_LOSS - RPCGRPCStatusCodeDataLoss = RPCGRPCStatusCodeKey.Int(15) - // UNAUTHENTICATED - RPCGRPCStatusCodeUnauthenticated = RPCGRPCStatusCodeKey.Int(16) -) - -// Tech-specific attributes for [JSON RPC](https://www.jsonrpc.org/). -const ( - // RPCJsonrpcVersionKey is the attribute Key conforming to the - // "rpc.jsonrpc.version" semantic conventions. It represents the protocol - // version as in `jsonrpc` property of request/response. Since JSON-RPC 1.0 - // does not specify this, the value can be omitted. - // - // Type: string - // RequirementLevel: ConditionallyRequired (If other than the default - // version (`1.0`)) - // Stability: stable - // Examples: '2.0', '1.0' - RPCJsonrpcVersionKey = attribute.Key("rpc.jsonrpc.version") - - // RPCJsonrpcRequestIDKey is the attribute Key conforming to the - // "rpc.jsonrpc.request_id" semantic conventions. It represents the `id` - // property of request or response. Since protocol allows id to be int, - // string, `null` or missing (for notifications), value is expected to be - // cast to string for simplicity. Use empty string in case of `null` value. - // Omit entirely if this is a notification. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: '10', 'request-7', '' - RPCJsonrpcRequestIDKey = attribute.Key("rpc.jsonrpc.request_id") - - // RPCJsonrpcErrorCodeKey is the attribute Key conforming to the - // "rpc.jsonrpc.error_code" semantic conventions. It represents the - // `error.code` property of response if it is an error response. - // - // Type: int - // RequirementLevel: ConditionallyRequired (If response is not successful.) - // Stability: stable - // Examples: -32700, 100 - RPCJsonrpcErrorCodeKey = attribute.Key("rpc.jsonrpc.error_code") - - // RPCJsonrpcErrorMessageKey is the attribute Key conforming to the - // "rpc.jsonrpc.error_message" semantic conventions. It represents the - // `error.message` property of response if it is an error response. - // - // Type: string - // RequirementLevel: Optional - // Stability: stable - // Examples: 'Parse error', 'User already exists' - RPCJsonrpcErrorMessageKey = attribute.Key("rpc.jsonrpc.error_message") -) - -// RPCJsonrpcVersion returns an attribute KeyValue conforming to the -// "rpc.jsonrpc.version" semantic conventions. It represents the protocol -// version as in `jsonrpc` property of request/response. Since JSON-RPC 1.0 -// does not specify this, the value can be omitted. -func RPCJsonrpcVersion(val string) attribute.KeyValue { - return RPCJsonrpcVersionKey.String(val) -} - -// RPCJsonrpcRequestID returns an attribute KeyValue conforming to the -// "rpc.jsonrpc.request_id" semantic conventions. It represents the `id` -// property of request or response. Since protocol allows id to be int, string, -// `null` or missing (for notifications), value is expected to be cast to -// string for simplicity. Use empty string in case of `null` value. Omit -// entirely if this is a notification. -func RPCJsonrpcRequestID(val string) attribute.KeyValue { - return RPCJsonrpcRequestIDKey.String(val) -} - -// RPCJsonrpcErrorCode returns an attribute KeyValue conforming to the -// "rpc.jsonrpc.error_code" semantic conventions. It represents the -// `error.code` property of response if it is an error response. -func RPCJsonrpcErrorCode(val int) attribute.KeyValue { - return RPCJsonrpcErrorCodeKey.Int(val) -} - -// RPCJsonrpcErrorMessage returns an attribute KeyValue conforming to the -// "rpc.jsonrpc.error_message" semantic conventions. It represents the -// `error.message` property of response if it is an error response. -func RPCJsonrpcErrorMessage(val string) attribute.KeyValue { - return RPCJsonrpcErrorMessageKey.String(val) -} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.37.0/attribute_group.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.37.0/attribute_group.go index b6b27498f2..2fcab24352 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.37.0/attribute_group.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.37.0/attribute_group.go @@ -1447,9 +1447,11 @@ func AWSExtendedRequestID(val string) attribute.KeyValue { // AWSKinesisStreamName returns an attribute KeyValue conforming to the // "aws.kinesis.stream_name" semantic conventions. It represents the name of the // AWS Kinesis [stream] the request refers to. Corresponds to the `--stream-name` -// parameter of the Kinesis [describe-stream] operation. +// +// parameter of the Kinesis [describe-stream] operation. // // [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html +// // [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html func AWSKinesisStreamName(val string) attribute.KeyValue { return AWSKinesisStreamNameKey.String(val) @@ -1459,7 +1461,8 @@ func AWSKinesisStreamName(val string) attribute.KeyValue { // "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked // ARN as provided on the `Context` passed to the function ( // `Lambda-Runtime-Invoked-Function-Arn` header on the `/runtime/invocation/next` -// applicable). +// +// applicable). func AWSLambdaInvokedARN(val string) attribute.KeyValue { return AWSLambdaInvokedARNKey.String(val) } @@ -2635,7 +2638,8 @@ func CloudRegion(val string) attribute.KeyValue { // "cloud.resource_id" semantic conventions. It represents the cloud // provider-specific native identifier of the monitored cloud resource (e.g. an // [ARN] on AWS, a [fully qualified resource ID] on Azure, a [full resource name] -// on GCP). +// +// on GCP). // // [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html // [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id @@ -15190,4 +15194,4 @@ func ZOSSmfID(val string) attribute.KeyValue { // to which the z/OS system belongs too. func ZOSSysplexName(val string) attribute.KeyValue { return ZOSSysplexNameKey.String(val) -} \ No newline at end of file +} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/MIGRATION.md b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/MIGRATION.md deleted file mode 100644 index fed7013e6f..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/MIGRATION.md +++ /dev/null @@ -1,78 +0,0 @@ - -# Migration from v1.38.0 to v1.39.0 - -The `go.opentelemetry.io/otel/semconv/v1.39.0` package should be a drop-in replacement for `go.opentelemetry.io/otel/semconv/v1.38.0` with the following exceptions. - -## Removed - -The following declarations have been removed. -Refer to the [OpenTelemetry Semantic Conventions documentation] for deprecation instructions. - -If the type is not listed in the documentation as deprecated, it has been removed in this version due to lack of applicability or use. -If you use any of these non-deprecated declarations in your Go application, please [open an issue] describing your use-case. - -- `LinuxMemorySlabStateKey` -- `LinuxMemorySlabStateReclaimable` -- `LinuxMemorySlabStateUnreclaimable` -- `PeerService` -- `PeerServiceKey` -- `RPCConnectRPCErrorCodeAborted` -- `RPCConnectRPCErrorCodeAlreadyExists` -- `RPCConnectRPCErrorCodeCancelled` -- `RPCConnectRPCErrorCodeDataLoss` -- `RPCConnectRPCErrorCodeDeadlineExceeded` -- `RPCConnectRPCErrorCodeFailedPrecondition` -- `RPCConnectRPCErrorCodeInternal` -- `RPCConnectRPCErrorCodeInvalidArgument` -- `RPCConnectRPCErrorCodeKey` -- `RPCConnectRPCErrorCodeNotFound` -- `RPCConnectRPCErrorCodeOutOfRange` -- `RPCConnectRPCErrorCodePermissionDenied` -- `RPCConnectRPCErrorCodeResourceExhausted` -- `RPCConnectRPCErrorCodeUnauthenticated` -- `RPCConnectRPCErrorCodeUnavailable` -- `RPCConnectRPCErrorCodeUnimplemented` -- `RPCConnectRPCErrorCodeUnknown` -- `RPCConnectRPCRequestMetadata` -- `RPCConnectRPCResponseMetadata` -- `RPCGRPCRequestMetadata` -- `RPCGRPCResponseMetadata` -- `RPCGRPCStatusCodeAborted` -- `RPCGRPCStatusCodeAlreadyExists` -- `RPCGRPCStatusCodeCancelled` -- `RPCGRPCStatusCodeDataLoss` -- `RPCGRPCStatusCodeDeadlineExceeded` -- `RPCGRPCStatusCodeFailedPrecondition` -- `RPCGRPCStatusCodeInternal` -- `RPCGRPCStatusCodeInvalidArgument` -- `RPCGRPCStatusCodeKey` -- `RPCGRPCStatusCodeNotFound` -- `RPCGRPCStatusCodeOk` -- `RPCGRPCStatusCodeOutOfRange` -- `RPCGRPCStatusCodePermissionDenied` -- `RPCGRPCStatusCodeResourceExhausted` -- `RPCGRPCStatusCodeUnauthenticated` -- `RPCGRPCStatusCodeUnavailable` -- `RPCGRPCStatusCodeUnimplemented` -- `RPCGRPCStatusCodeUnknown` -- `RPCJSONRPCErrorCode` -- `RPCJSONRPCErrorCodeKey` -- `RPCJSONRPCErrorMessage` -- `RPCJSONRPCErrorMessageKey` -- `RPCJSONRPCRequestID` -- `RPCJSONRPCRequestIDKey` -- `RPCJSONRPCVersion` -- `RPCJSONRPCVersionKey` -- `RPCService` -- `RPCServiceKey` -- `RPCSystemApacheDubbo` -- `RPCSystemConnectRPC` -- `RPCSystemDotnetWcf` -- `RPCSystemGRPC` -- `RPCSystemJSONRPC` -- `RPCSystemJavaRmi` -- `RPCSystemKey` -- `RPCSystemOncRPC` - -[OpenTelemetry Semantic Conventions documentation]: https://github.com/open-telemetry/semantic-conventions -[open an issue]: https://github.com/open-telemetry/opentelemetry-go/issues/new?template=Blank+issue diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/README.md b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/README.md deleted file mode 100644 index 4b0e6f7f3e..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/README.md +++ /dev/null @@ -1,3 +0,0 @@ -# Semconv v1.39.0 - -[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/semconv/v1.39.0)](https://pkg.go.dev/go.opentelemetry.io/otel/semconv/v1.39.0) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/attribute_group.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/attribute_group.go deleted file mode 100644 index 080365fc19..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/attribute_group.go +++ /dev/null @@ -1,16239 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -// Code generated from semantic convention specification. DO NOT EDIT. - -package semconv // import "go.opentelemetry.io/otel/semconv/v1.39.0" - -import "go.opentelemetry.io/otel/attribute" - -// Namespace: android -const ( - // AndroidAppStateKey is the attribute Key conforming to the "android.app.state" - // semantic conventions. It represents the this attribute represents the state - // of the application. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "created" - // Note: The Android lifecycle states are defined in - // [Activity lifecycle callbacks], and from which the `OS identifiers` are - // derived. - // - // [Activity lifecycle callbacks]: https://developer.android.com/guide/components/activities/activity-lifecycle#lc - AndroidAppStateKey = attribute.Key("android.app.state") - - // AndroidOSAPILevelKey is the attribute Key conforming to the - // "android.os.api_level" semantic conventions. It represents the uniquely - // identifies the framework API revision offered by a version (`os.version`) of - // the android operating system. More information can be found in the - // [Android API levels documentation]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "33", "32" - // - // [Android API levels documentation]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels - AndroidOSAPILevelKey = attribute.Key("android.os.api_level") -) - -// AndroidOSAPILevel returns an attribute KeyValue conforming to the -// "android.os.api_level" semantic conventions. It represents the uniquely -// identifies the framework API revision offered by a version (`os.version`) of -// the android operating system. More information can be found in the -// [Android API levels documentation]. -// -// [Android API levels documentation]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels -func AndroidOSAPILevel(val string) attribute.KeyValue { - return AndroidOSAPILevelKey.String(val) -} - -// Enum values for android.app.state -var ( - // Any time before Activity.onResume() or, if the app has no Activity, - // Context.startService() has been called in the app for the first time. - // - // Stability: development - AndroidAppStateCreated = AndroidAppStateKey.String("created") - // Any time after Activity.onPause() or, if the app has no Activity, - // Context.stopService() has been called when the app was in the foreground - // state. - // - // Stability: development - AndroidAppStateBackground = AndroidAppStateKey.String("background") - // Any time after Activity.onResume() or, if the app has no Activity, - // Context.startService() has been called when the app was in either the created - // or background states. - // - // Stability: development - AndroidAppStateForeground = AndroidAppStateKey.String("foreground") -) - -// Namespace: app -const ( - // AppBuildIDKey is the attribute Key conforming to the "app.build_id" semantic - // conventions. It represents the unique identifier for a particular build or - // compilation of the application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "6cff0a7e-cefc-4668-96f5-1273d8b334d0", - // "9f2b833506aa6973a92fde9733e6271f", "my-app-1.0.0-code-123" - AppBuildIDKey = attribute.Key("app.build_id") - - // AppInstallationIDKey is the attribute Key conforming to the - // "app.installation.id" semantic conventions. It represents a unique identifier - // representing the installation of an application on a specific device. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2ab2916d-a51f-4ac8-80ee-45ac31a28092" - // Note: Its value SHOULD persist across launches of the same application - // installation, including through application upgrades. - // It SHOULD change if the application is uninstalled or if all applications of - // the vendor are uninstalled. - // Additionally, users might be able to reset this value (e.g. by clearing - // application data). - // If an app is installed multiple times on the same device (e.g. in different - // accounts on Android), each `app.installation.id` SHOULD have a different - // value. - // If multiple OpenTelemetry SDKs are used within the same application, they - // SHOULD use the same value for `app.installation.id`. - // Hardware IDs (e.g. serial number, IMEI, MAC address) MUST NOT be used as the - // `app.installation.id`. - // - // For iOS, this value SHOULD be equal to the [vendor identifier]. - // - // For Android, examples of `app.installation.id` implementations include: - // - // - [Firebase Installation ID]. - // - A globally unique UUID which is persisted across sessions in your - // application. - // - [App set ID]. - // - [`Settings.getString(Settings.Secure.ANDROID_ID)`]. - // - // More information about Android identifier best practices can be found in the - // [Android user data IDs guide]. - // - // [vendor identifier]: https://developer.apple.com/documentation/uikit/uidevice/identifierforvendor - // [Firebase Installation ID]: https://firebase.google.com/docs/projects/manage-installations - // [App set ID]: https://developer.android.com/identity/app-set-id - // [`Settings.getString(Settings.Secure.ANDROID_ID)`]: https://developer.android.com/reference/android/provider/Settings.Secure#ANDROID_ID - // [Android user data IDs guide]: https://developer.android.com/training/articles/user-data-ids - AppInstallationIDKey = attribute.Key("app.installation.id") - - // AppJankFrameCountKey is the attribute Key conforming to the - // "app.jank.frame_count" semantic conventions. It represents a number of frame - // renders that experienced jank. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 9, 42 - // Note: Depending on platform limitations, the value provided MAY be - // approximation. - AppJankFrameCountKey = attribute.Key("app.jank.frame_count") - - // AppJankPeriodKey is the attribute Key conforming to the "app.jank.period" - // semantic conventions. It represents the time period, in seconds, for which - // this jank is being reported. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0, 5.0, 10.24 - AppJankPeriodKey = attribute.Key("app.jank.period") - - // AppJankThresholdKey is the attribute Key conforming to the - // "app.jank.threshold" semantic conventions. It represents the minimum - // rendering threshold for this jank, in seconds. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0.016, 0.7, 1.024 - AppJankThresholdKey = attribute.Key("app.jank.threshold") - - // AppScreenCoordinateXKey is the attribute Key conforming to the - // "app.screen.coordinate.x" semantic conventions. It represents the x - // (horizontal) coordinate of a screen coordinate, in screen pixels. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0, 131 - AppScreenCoordinateXKey = attribute.Key("app.screen.coordinate.x") - - // AppScreenCoordinateYKey is the attribute Key conforming to the - // "app.screen.coordinate.y" semantic conventions. It represents the y - // (vertical) component of a screen coordinate, in screen pixels. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 12, 99 - AppScreenCoordinateYKey = attribute.Key("app.screen.coordinate.y") - - // AppScreenIDKey is the attribute Key conforming to the "app.screen.id" - // semantic conventions. It represents an identifier that uniquely - // differentiates this screen from other screens in the same application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3", - // "com.example.app.MainActivity", "com.example.shop.ProductDetailFragment", - // "MyApp.ProfileView", "MyApp.ProfileViewController" - // Note: A screen represents only the part of the device display drawn by the - // app. It typically contains multiple widgets or UI components and is larger in - // scope than individual widgets. Multiple screens can coexist on the same - // display simultaneously (e.g., split view on tablets). - AppScreenIDKey = attribute.Key("app.screen.id") - - // AppScreenNameKey is the attribute Key conforming to the "app.screen.name" - // semantic conventions. It represents the name of an application screen. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MainActivity", "ProductDetailFragment", "ProfileView", - // "ProfileViewController" - // Note: A screen represents only the part of the device display drawn by the - // app. It typically contains multiple widgets or UI components and is larger in - // scope than individual widgets. Multiple screens can coexist on the same - // display simultaneously (e.g., split view on tablets). - AppScreenNameKey = attribute.Key("app.screen.name") - - // AppWidgetIDKey is the attribute Key conforming to the "app.widget.id" - // semantic conventions. It represents an identifier that uniquely - // differentiates this widget from other widgets in the same application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3", "submit_order_1829" - // Note: A widget is an application component, typically an on-screen visual GUI - // element. - AppWidgetIDKey = attribute.Key("app.widget.id") - - // AppWidgetNameKey is the attribute Key conforming to the "app.widget.name" - // semantic conventions. It represents the name of an application widget. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "submit", "attack", "Clear Cart" - // Note: A widget is an application component, typically an on-screen visual GUI - // element. - AppWidgetNameKey = attribute.Key("app.widget.name") -) - -// AppBuildID returns an attribute KeyValue conforming to the "app.build_id" -// semantic conventions. It represents the unique identifier for a particular -// build or compilation of the application. -func AppBuildID(val string) attribute.KeyValue { - return AppBuildIDKey.String(val) -} - -// AppInstallationID returns an attribute KeyValue conforming to the -// "app.installation.id" semantic conventions. It represents a unique identifier -// representing the installation of an application on a specific device. -func AppInstallationID(val string) attribute.KeyValue { - return AppInstallationIDKey.String(val) -} - -// AppJankFrameCount returns an attribute KeyValue conforming to the -// "app.jank.frame_count" semantic conventions. It represents a number of frame -// renders that experienced jank. -func AppJankFrameCount(val int) attribute.KeyValue { - return AppJankFrameCountKey.Int(val) -} - -// AppJankPeriod returns an attribute KeyValue conforming to the -// "app.jank.period" semantic conventions. It represents the time period, in -// seconds, for which this jank is being reported. -func AppJankPeriod(val float64) attribute.KeyValue { - return AppJankPeriodKey.Float64(val) -} - -// AppJankThreshold returns an attribute KeyValue conforming to the -// "app.jank.threshold" semantic conventions. It represents the minimum rendering -// threshold for this jank, in seconds. -func AppJankThreshold(val float64) attribute.KeyValue { - return AppJankThresholdKey.Float64(val) -} - -// AppScreenCoordinateX returns an attribute KeyValue conforming to the -// "app.screen.coordinate.x" semantic conventions. It represents the x -// (horizontal) coordinate of a screen coordinate, in screen pixels. -func AppScreenCoordinateX(val int) attribute.KeyValue { - return AppScreenCoordinateXKey.Int(val) -} - -// AppScreenCoordinateY returns an attribute KeyValue conforming to the -// "app.screen.coordinate.y" semantic conventions. It represents the y (vertical) -// component of a screen coordinate, in screen pixels. -func AppScreenCoordinateY(val int) attribute.KeyValue { - return AppScreenCoordinateYKey.Int(val) -} - -// AppScreenID returns an attribute KeyValue conforming to the "app.screen.id" -// semantic conventions. It represents an identifier that uniquely differentiates -// this screen from other screens in the same application. -func AppScreenID(val string) attribute.KeyValue { - return AppScreenIDKey.String(val) -} - -// AppScreenName returns an attribute KeyValue conforming to the -// "app.screen.name" semantic conventions. It represents the name of an -// application screen. -func AppScreenName(val string) attribute.KeyValue { - return AppScreenNameKey.String(val) -} - -// AppWidgetID returns an attribute KeyValue conforming to the "app.widget.id" -// semantic conventions. It represents an identifier that uniquely differentiates -// this widget from other widgets in the same application. -func AppWidgetID(val string) attribute.KeyValue { - return AppWidgetIDKey.String(val) -} - -// AppWidgetName returns an attribute KeyValue conforming to the -// "app.widget.name" semantic conventions. It represents the name of an -// application widget. -func AppWidgetName(val string) attribute.KeyValue { - return AppWidgetNameKey.String(val) -} - -// Namespace: artifact -const ( - // ArtifactAttestationFilenameKey is the attribute Key conforming to the - // "artifact.attestation.filename" semantic conventions. It represents the - // provenance filename of the built attestation which directly relates to the - // build artifact filename. This filename SHOULD accompany the artifact at - // publish time. See the [SLSA Relationship] specification for more information. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "golang-binary-amd64-v0.1.0.attestation", - // "docker-image-amd64-v0.1.0.intoto.json1", "release-1.tar.gz.attestation", - // "file-name-package.tar.gz.intoto.json1" - // - // [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations - ArtifactAttestationFilenameKey = attribute.Key("artifact.attestation.filename") - - // ArtifactAttestationHashKey is the attribute Key conforming to the - // "artifact.attestation.hash" semantic conventions. It represents the full - // [hash value (see glossary)], of the built attestation. Some envelopes in the - // [software attestation space] also refer to this as the **digest**. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1b31dfcd5b7f9267bf2ff47651df1cfb9147b9e4df1f335accf65b4cda498408" - // - // [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf - // [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec - ArtifactAttestationHashKey = attribute.Key("artifact.attestation.hash") - - // ArtifactAttestationIDKey is the attribute Key conforming to the - // "artifact.attestation.id" semantic conventions. It represents the id of the - // build [software attestation]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "123" - // - // [software attestation]: https://slsa.dev/attestation-model - ArtifactAttestationIDKey = attribute.Key("artifact.attestation.id") - - // ArtifactFilenameKey is the attribute Key conforming to the - // "artifact.filename" semantic conventions. It represents the human readable - // file name of the artifact, typically generated during build and release - // processes. Often includes the package name and version in the file name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "golang-binary-amd64-v0.1.0", "docker-image-amd64-v0.1.0", - // "release-1.tar.gz", "file-name-package.tar.gz" - // Note: This file name can also act as the [Package Name] - // in cases where the package ecosystem maps accordingly. - // Additionally, the artifact [can be published] - // for others, but that is not a guarantee. - // - // [Package Name]: https://slsa.dev/spec/v1.0/terminology#package-model - // [can be published]: https://slsa.dev/spec/v1.0/terminology#software-supply-chain - ArtifactFilenameKey = attribute.Key("artifact.filename") - - // ArtifactHashKey is the attribute Key conforming to the "artifact.hash" - // semantic conventions. It represents the full [hash value (see glossary)], - // often found in checksum.txt on a release of the artifact and used to verify - // package integrity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9ff4c52759e2c4ac70b7d517bc7fcdc1cda631ca0045271ddd1b192544f8a3e9" - // Note: The specific algorithm used to create the cryptographic hash value is - // not defined. In situations where an artifact has multiple - // cryptographic hashes, it is up to the implementer to choose which - // hash value to set here; this should be the most secure hash algorithm - // that is suitable for the situation and consistent with the - // corresponding attestation. The implementer can then provide the other - // hash values through an additional set of attribute extensions as they - // deem necessary. - // - // [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf - ArtifactHashKey = attribute.Key("artifact.hash") - - // ArtifactPurlKey is the attribute Key conforming to the "artifact.purl" - // semantic conventions. It represents the [Package URL] of the - // [package artifact] provides a standard way to identify and locate the - // packaged artifact. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "pkg:github/package-url/purl-spec@1209109710924", - // "pkg:npm/foo@12.12.3" - // - // [Package URL]: https://github.com/package-url/purl-spec - // [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model - ArtifactPurlKey = attribute.Key("artifact.purl") - - // ArtifactVersionKey is the attribute Key conforming to the "artifact.version" - // semantic conventions. It represents the version of the artifact. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "v0.1.0", "1.2.1", "122691-build" - ArtifactVersionKey = attribute.Key("artifact.version") -) - -// ArtifactAttestationFilename returns an attribute KeyValue conforming to the -// "artifact.attestation.filename" semantic conventions. It represents the -// provenance filename of the built attestation which directly relates to the -// build artifact filename. This filename SHOULD accompany the artifact at -// publish time. See the [SLSA Relationship] specification for more information. -// -// [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations -func ArtifactAttestationFilename(val string) attribute.KeyValue { - return ArtifactAttestationFilenameKey.String(val) -} - -// ArtifactAttestationHash returns an attribute KeyValue conforming to the -// "artifact.attestation.hash" semantic conventions. It represents the full -// [hash value (see glossary)], of the built attestation. Some envelopes in the -// [software attestation space] also refer to this as the **digest**. -// -// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf -// [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec -func ArtifactAttestationHash(val string) attribute.KeyValue { - return ArtifactAttestationHashKey.String(val) -} - -// ArtifactAttestationID returns an attribute KeyValue conforming to the -// "artifact.attestation.id" semantic conventions. It represents the id of the -// build [software attestation]. -// -// [software attestation]: https://slsa.dev/attestation-model -func ArtifactAttestationID(val string) attribute.KeyValue { - return ArtifactAttestationIDKey.String(val) -} - -// ArtifactFilename returns an attribute KeyValue conforming to the -// "artifact.filename" semantic conventions. It represents the human readable -// file name of the artifact, typically generated during build and release -// processes. Often includes the package name and version in the file name. -func ArtifactFilename(val string) attribute.KeyValue { - return ArtifactFilenameKey.String(val) -} - -// ArtifactHash returns an attribute KeyValue conforming to the "artifact.hash" -// semantic conventions. It represents the full [hash value (see glossary)], -// often found in checksum.txt on a release of the artifact and used to verify -// package integrity. -// -// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf -func ArtifactHash(val string) attribute.KeyValue { - return ArtifactHashKey.String(val) -} - -// ArtifactPurl returns an attribute KeyValue conforming to the "artifact.purl" -// semantic conventions. It represents the [Package URL] of the -// [package artifact] provides a standard way to identify and locate the packaged -// artifact. -// -// [Package URL]: https://github.com/package-url/purl-spec -// [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model -func ArtifactPurl(val string) attribute.KeyValue { - return ArtifactPurlKey.String(val) -} - -// ArtifactVersion returns an attribute KeyValue conforming to the -// "artifact.version" semantic conventions. It represents the version of the -// artifact. -func ArtifactVersion(val string) attribute.KeyValue { - return ArtifactVersionKey.String(val) -} - -// Namespace: aws -const ( - // AWSBedrockGuardrailIDKey is the attribute Key conforming to the - // "aws.bedrock.guardrail.id" semantic conventions. It represents the unique - // identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and - // prevent unwanted behavior from model responses or user messages. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "sgi5gkybzqak" - // - // [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html - AWSBedrockGuardrailIDKey = attribute.Key("aws.bedrock.guardrail.id") - - // AWSBedrockKnowledgeBaseIDKey is the attribute Key conforming to the - // "aws.bedrock.knowledge_base.id" semantic conventions. It represents the - // unique identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a - // bank of information that can be queried by models to generate more relevant - // responses and augment prompts. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "XFWUPB9PAW" - // - // [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html - AWSBedrockKnowledgeBaseIDKey = attribute.Key("aws.bedrock.knowledge_base.id") - - // AWSDynamoDBAttributeDefinitionsKey is the attribute Key conforming to the - // "aws.dynamodb.attribute_definitions" semantic conventions. It represents the - // JSON-serialized value of each item in the `AttributeDefinitions` request - // field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "AttributeName": "string", "AttributeType": "string" }" - AWSDynamoDBAttributeDefinitionsKey = attribute.Key("aws.dynamodb.attribute_definitions") - - // AWSDynamoDBAttributesToGetKey is the attribute Key conforming to the - // "aws.dynamodb.attributes_to_get" semantic conventions. It represents the - // value of the `AttributesToGet` request parameter. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "lives", "id" - AWSDynamoDBAttributesToGetKey = attribute.Key("aws.dynamodb.attributes_to_get") - - // AWSDynamoDBConsistentReadKey is the attribute Key conforming to the - // "aws.dynamodb.consistent_read" semantic conventions. It represents the value - // of the `ConsistentRead` request parameter. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - AWSDynamoDBConsistentReadKey = attribute.Key("aws.dynamodb.consistent_read") - - // AWSDynamoDBConsumedCapacityKey is the attribute Key conforming to the - // "aws.dynamodb.consumed_capacity" semantic conventions. It represents the - // JSON-serialized value of each item in the `ConsumedCapacity` response field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "CapacityUnits": number, "GlobalSecondaryIndexes": { "string" : - // { "CapacityUnits": number, "ReadCapacityUnits": number, "WriteCapacityUnits": - // number } }, "LocalSecondaryIndexes": { "string" : { "CapacityUnits": number, - // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }, - // "ReadCapacityUnits": number, "Table": { "CapacityUnits": number, - // "ReadCapacityUnits": number, "WriteCapacityUnits": number }, "TableName": - // "string", "WriteCapacityUnits": number }" - AWSDynamoDBConsumedCapacityKey = attribute.Key("aws.dynamodb.consumed_capacity") - - // AWSDynamoDBCountKey is the attribute Key conforming to the - // "aws.dynamodb.count" semantic conventions. It represents the value of the - // `Count` response parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 10 - AWSDynamoDBCountKey = attribute.Key("aws.dynamodb.count") - - // AWSDynamoDBExclusiveStartTableKey is the attribute Key conforming to the - // "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the - // value of the `ExclusiveStartTableName` request parameter. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Users", "CatsTable" - AWSDynamoDBExclusiveStartTableKey = attribute.Key("aws.dynamodb.exclusive_start_table") - - // AWSDynamoDBGlobalSecondaryIndexUpdatesKey is the attribute Key conforming to - // the "aws.dynamodb.global_secondary_index_updates" semantic conventions. It - // represents the JSON-serialized value of each item in the - // `GlobalSecondaryIndexUpdates` request field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "Create": { "IndexName": "string", "KeySchema": [ { - // "AttributeName": "string", "KeyType": "string" } ], "Projection": { - // "NonKeyAttributes": [ "string" ], "ProjectionType": "string" }, - // "ProvisionedThroughput": { "ReadCapacityUnits": number, "WriteCapacityUnits": - // number } }" - AWSDynamoDBGlobalSecondaryIndexUpdatesKey = attribute.Key("aws.dynamodb.global_secondary_index_updates") - - // AWSDynamoDBGlobalSecondaryIndexesKey is the attribute Key conforming to the - // "aws.dynamodb.global_secondary_indexes" semantic conventions. It represents - // the JSON-serialized value of each item of the `GlobalSecondaryIndexes` - // request field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "IndexName": "string", "KeySchema": [ { "AttributeName": - // "string", "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ - // "string" ], "ProjectionType": "string" }, "ProvisionedThroughput": { - // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }" - AWSDynamoDBGlobalSecondaryIndexesKey = attribute.Key("aws.dynamodb.global_secondary_indexes") - - // AWSDynamoDBIndexNameKey is the attribute Key conforming to the - // "aws.dynamodb.index_name" semantic conventions. It represents the value of - // the `IndexName` request parameter. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "name_to_group" - AWSDynamoDBIndexNameKey = attribute.Key("aws.dynamodb.index_name") - - // AWSDynamoDBItemCollectionMetricsKey is the attribute Key conforming to the - // "aws.dynamodb.item_collection_metrics" semantic conventions. It represents - // the JSON-serialized value of the `ItemCollectionMetrics` response field. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "string" : [ { "ItemCollectionKey": { "string" : { "B": blob, - // "BOOL": boolean, "BS": [ blob ], "L": [ "AttributeValue" ], "M": { "string" : - // "AttributeValue" }, "N": "string", "NS": [ "string" ], "NULL": boolean, "S": - // "string", "SS": [ "string" ] } }, "SizeEstimateRangeGB": [ number ] } ] }" - AWSDynamoDBItemCollectionMetricsKey = attribute.Key("aws.dynamodb.item_collection_metrics") - - // AWSDynamoDBLimitKey is the attribute Key conforming to the - // "aws.dynamodb.limit" semantic conventions. It represents the value of the - // `Limit` request parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 10 - AWSDynamoDBLimitKey = attribute.Key("aws.dynamodb.limit") - - // AWSDynamoDBLocalSecondaryIndexesKey is the attribute Key conforming to the - // "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents - // the JSON-serialized value of each item of the `LocalSecondaryIndexes` request - // field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "IndexArn": "string", "IndexName": "string", "IndexSizeBytes": - // number, "ItemCount": number, "KeySchema": [ { "AttributeName": "string", - // "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ "string" ], - // "ProjectionType": "string" } }" - AWSDynamoDBLocalSecondaryIndexesKey = attribute.Key("aws.dynamodb.local_secondary_indexes") - - // AWSDynamoDBProjectionKey is the attribute Key conforming to the - // "aws.dynamodb.projection" semantic conventions. It represents the value of - // the `ProjectionExpression` request parameter. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Title", "Title, Price, Color", "Title, Description, RelatedItems, - // ProductReviews" - AWSDynamoDBProjectionKey = attribute.Key("aws.dynamodb.projection") - - // AWSDynamoDBProvisionedReadCapacityKey is the attribute Key conforming to the - // "aws.dynamodb.provisioned_read_capacity" semantic conventions. It represents - // the value of the `ProvisionedThroughput.ReadCapacityUnits` request parameter. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0, 2.0 - AWSDynamoDBProvisionedReadCapacityKey = attribute.Key("aws.dynamodb.provisioned_read_capacity") - - // AWSDynamoDBProvisionedWriteCapacityKey is the attribute Key conforming to the - // "aws.dynamodb.provisioned_write_capacity" semantic conventions. It represents - // the value of the `ProvisionedThroughput.WriteCapacityUnits` request - // parameter. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0, 2.0 - AWSDynamoDBProvisionedWriteCapacityKey = attribute.Key("aws.dynamodb.provisioned_write_capacity") - - // AWSDynamoDBScanForwardKey is the attribute Key conforming to the - // "aws.dynamodb.scan_forward" semantic conventions. It represents the value of - // the `ScanIndexForward` request parameter. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - AWSDynamoDBScanForwardKey = attribute.Key("aws.dynamodb.scan_forward") - - // AWSDynamoDBScannedCountKey is the attribute Key conforming to the - // "aws.dynamodb.scanned_count" semantic conventions. It represents the value of - // the `ScannedCount` response parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 50 - AWSDynamoDBScannedCountKey = attribute.Key("aws.dynamodb.scanned_count") - - // AWSDynamoDBSegmentKey is the attribute Key conforming to the - // "aws.dynamodb.segment" semantic conventions. It represents the value of the - // `Segment` request parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 10 - AWSDynamoDBSegmentKey = attribute.Key("aws.dynamodb.segment") - - // AWSDynamoDBSelectKey is the attribute Key conforming to the - // "aws.dynamodb.select" semantic conventions. It represents the value of the - // `Select` request parameter. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ALL_ATTRIBUTES", "COUNT" - AWSDynamoDBSelectKey = attribute.Key("aws.dynamodb.select") - - // AWSDynamoDBTableCountKey is the attribute Key conforming to the - // "aws.dynamodb.table_count" semantic conventions. It represents the number of - // items in the `TableNames` response parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 20 - AWSDynamoDBTableCountKey = attribute.Key("aws.dynamodb.table_count") - - // AWSDynamoDBTableNamesKey is the attribute Key conforming to the - // "aws.dynamodb.table_names" semantic conventions. It represents the keys in - // the `RequestItems` object field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Users", "Cats" - AWSDynamoDBTableNamesKey = attribute.Key("aws.dynamodb.table_names") - - // AWSDynamoDBTotalSegmentsKey is the attribute Key conforming to the - // "aws.dynamodb.total_segments" semantic conventions. It represents the value - // of the `TotalSegments` request parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 100 - AWSDynamoDBTotalSegmentsKey = attribute.Key("aws.dynamodb.total_segments") - - // AWSECSClusterARNKey is the attribute Key conforming to the - // "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an - // [ECS cluster]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster" - // - // [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html - AWSECSClusterARNKey = attribute.Key("aws.ecs.cluster.arn") - - // AWSECSContainerARNKey is the attribute Key conforming to the - // "aws.ecs.container.arn" semantic conventions. It represents the Amazon - // Resource Name (ARN) of an [ECS container instance]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "arn:aws:ecs:us-west-1:123456789123:container/32624152-9086-4f0e-acae-1a75b14fe4d9" - // - // [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html - AWSECSContainerARNKey = attribute.Key("aws.ecs.container.arn") - - // AWSECSLaunchtypeKey is the attribute Key conforming to the - // "aws.ecs.launchtype" semantic conventions. It represents the [launch type] - // for an ECS task. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [launch type]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/launch_types.html - AWSECSLaunchtypeKey = attribute.Key("aws.ecs.launchtype") - - // AWSECSTaskARNKey is the attribute Key conforming to the "aws.ecs.task.arn" - // semantic conventions. It represents the ARN of a running [ECS task]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "arn:aws:ecs:us-west-1:123456789123:task/10838bed-421f-43ef-870a-f43feacbbb5b", - // "arn:aws:ecs:us-west-1:123456789123:task/my-cluster/task-id/23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd" - // - // [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids - AWSECSTaskARNKey = attribute.Key("aws.ecs.task.arn") - - // AWSECSTaskFamilyKey is the attribute Key conforming to the - // "aws.ecs.task.family" semantic conventions. It represents the family name of - // the [ECS task definition] used to create the ECS task. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry-family" - // - // [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html - AWSECSTaskFamilyKey = attribute.Key("aws.ecs.task.family") - - // AWSECSTaskIDKey is the attribute Key conforming to the "aws.ecs.task.id" - // semantic conventions. It represents the ID of a running ECS task. The ID MUST - // be extracted from `task.arn`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "10838bed-421f-43ef-870a-f43feacbbb5b", - // "23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd" - AWSECSTaskIDKey = attribute.Key("aws.ecs.task.id") - - // AWSECSTaskRevisionKey is the attribute Key conforming to the - // "aws.ecs.task.revision" semantic conventions. It represents the revision for - // the task definition used to create the ECS task. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "8", "26" - AWSECSTaskRevisionKey = attribute.Key("aws.ecs.task.revision") - - // AWSEKSClusterARNKey is the attribute Key conforming to the - // "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS - // cluster. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster" - AWSEKSClusterARNKey = attribute.Key("aws.eks.cluster.arn") - - // AWSExtendedRequestIDKey is the attribute Key conforming to the - // "aws.extended_request_id" semantic conventions. It represents the AWS - // extended request ID as returned in the response header `x-amz-id-2`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "wzHcyEWfmOGDIE5QOhTAqFDoDWP3y8IUvpNINCwL9N4TEHbUw0/gZJ+VZTmCNCWR7fezEN3eCiQ=" - AWSExtendedRequestIDKey = attribute.Key("aws.extended_request_id") - - // AWSKinesisStreamNameKey is the attribute Key conforming to the - // "aws.kinesis.stream_name" semantic conventions. It represents the name of the - // AWS Kinesis [stream] the request refers to. Corresponds to the - // `--stream-name` parameter of the Kinesis [describe-stream] operation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "some-stream-name" - // - // [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html - // [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html - AWSKinesisStreamNameKey = attribute.Key("aws.kinesis.stream_name") - - // AWSLambdaInvokedARNKey is the attribute Key conforming to the - // "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked - // ARN as provided on the `Context` passed to the function ( - // `Lambda-Runtime-Invoked-Function-Arn` header on the - // `/runtime/invocation/next` applicable). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:lambda:us-east-1:123456:function:myfunction:myalias" - // Note: This may be different from `cloud.resource_id` if an alias is involved. - AWSLambdaInvokedARNKey = attribute.Key("aws.lambda.invoked_arn") - - // AWSLambdaResourceMappingIDKey is the attribute Key conforming to the - // "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID - // of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda - // function. It's contents are read by Lambda and used to trigger a function. - // This isn't available in the lambda execution context or the lambda runtime - // environtment. This is going to be populated by the AWS SDK for each language - // when that UUID is present. Some of these operations are - // Create/Delete/Get/List/Update EventSourceMapping. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "587ad24b-03b9-4413-8202-bbd56b36e5b7" - // - // [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html - AWSLambdaResourceMappingIDKey = attribute.Key("aws.lambda.resource_mapping.id") - - // AWSLogGroupARNsKey is the attribute Key conforming to the - // "aws.log.group.arns" semantic conventions. It represents the Amazon Resource - // Name(s) (ARN) of the AWS log group(s). - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:*" - // Note: See the [log group ARN format documentation]. - // - // [log group ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format - AWSLogGroupARNsKey = attribute.Key("aws.log.group.arns") - - // AWSLogGroupNamesKey is the attribute Key conforming to the - // "aws.log.group.names" semantic conventions. It represents the name(s) of the - // AWS log group(s) an application is writing to. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/aws/lambda/my-function", "opentelemetry-service" - // Note: Multiple log groups must be supported for cases like multi-container - // applications, where a single application has sidecar containers, and each - // write to their own log group. - AWSLogGroupNamesKey = attribute.Key("aws.log.group.names") - - // AWSLogStreamARNsKey is the attribute Key conforming to the - // "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the - // AWS log stream(s). - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:log-stream:logs/main/10838bed-421f-43ef-870a-f43feacbbb5b" - // Note: See the [log stream ARN format documentation]. One log group can - // contain several log streams, so these ARNs necessarily identify both a log - // group and a log stream. - // - // [log stream ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format - AWSLogStreamARNsKey = attribute.Key("aws.log.stream.arns") - - // AWSLogStreamNamesKey is the attribute Key conforming to the - // "aws.log.stream.names" semantic conventions. It represents the name(s) of the - // AWS log stream(s) an application is writing to. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "logs/main/10838bed-421f-43ef-870a-f43feacbbb5b" - AWSLogStreamNamesKey = attribute.Key("aws.log.stream.names") - - // AWSRequestIDKey is the attribute Key conforming to the "aws.request_id" - // semantic conventions. It represents the AWS request ID as returned in the - // response headers `x-amzn-requestid`, `x-amzn-request-id` or - // `x-amz-request-id`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "79b9da39-b7ae-508a-a6bc-864b2829c622", "C9ER4AJX75574TDJ" - AWSRequestIDKey = attribute.Key("aws.request_id") - - // AWSS3BucketKey is the attribute Key conforming to the "aws.s3.bucket" - // semantic conventions. It represents the S3 bucket name the request refers to. - // Corresponds to the `--bucket` parameter of the [S3 API] operations. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "some-bucket-name" - // Note: The `bucket` attribute is applicable to all S3 operations that - // reference a bucket, i.e. that require the bucket name as a mandatory - // parameter. - // This applies to almost all S3 operations except `list-buckets`. - // - // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html - AWSS3BucketKey = attribute.Key("aws.s3.bucket") - - // AWSS3CopySourceKey is the attribute Key conforming to the - // "aws.s3.copy_source" semantic conventions. It represents the source object - // (in the form `bucket`/`key`) for the copy operation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "someFile.yml" - // Note: The `copy_source` attribute applies to S3 copy operations and - // corresponds to the `--copy-source` parameter - // of the [copy-object operation within the S3 API]. - // This applies in particular to the following operations: - // - // - [copy-object] - // - [upload-part-copy] - // - // - // [copy-object operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html - // [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html - // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html - AWSS3CopySourceKey = attribute.Key("aws.s3.copy_source") - - // AWSS3DeleteKey is the attribute Key conforming to the "aws.s3.delete" - // semantic conventions. It represents the delete request container that - // specifies the objects to be deleted. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "Objects=[{Key=string,VersionId=string},{Key=string,VersionId=string}],Quiet=boolean" - // Note: The `delete` attribute is only applicable to the [delete-object] - // operation. - // The `delete` attribute corresponds to the `--delete` parameter of the - // [delete-objects operation within the S3 API]. - // - // [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html - // [delete-objects operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-objects.html - AWSS3DeleteKey = attribute.Key("aws.s3.delete") - - // AWSS3KeyKey is the attribute Key conforming to the "aws.s3.key" semantic - // conventions. It represents the S3 object key the request refers to. - // Corresponds to the `--key` parameter of the [S3 API] operations. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "someFile.yml" - // Note: The `key` attribute is applicable to all object-related S3 operations, - // i.e. that require the object key as a mandatory parameter. - // This applies in particular to the following operations: - // - // - [copy-object] - // - [delete-object] - // - [get-object] - // - [head-object] - // - [put-object] - // - [restore-object] - // - [select-object-content] - // - [abort-multipart-upload] - // - [complete-multipart-upload] - // - [create-multipart-upload] - // - [list-parts] - // - [upload-part] - // - [upload-part-copy] - // - // - // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html - // [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html - // [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html - // [get-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/get-object.html - // [head-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/head-object.html - // [put-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/put-object.html - // [restore-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/restore-object.html - // [select-object-content]: https://docs.aws.amazon.com/cli/latest/reference/s3api/select-object-content.html - // [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html - // [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html - // [create-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/create-multipart-upload.html - // [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html - // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html - // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html - AWSS3KeyKey = attribute.Key("aws.s3.key") - - // AWSS3PartNumberKey is the attribute Key conforming to the - // "aws.s3.part_number" semantic conventions. It represents the part number of - // the part being uploaded in a multipart-upload operation. This is a positive - // integer between 1 and 10,000. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 3456 - // Note: The `part_number` attribute is only applicable to the [upload-part] - // and [upload-part-copy] operations. - // The `part_number` attribute corresponds to the `--part-number` parameter of - // the - // [upload-part operation within the S3 API]. - // - // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html - // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html - // [upload-part operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html - AWSS3PartNumberKey = attribute.Key("aws.s3.part_number") - - // AWSS3UploadIDKey is the attribute Key conforming to the "aws.s3.upload_id" - // semantic conventions. It represents the upload ID that identifies the - // multipart upload. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "dfRtDYWFbkRONycy.Yxwh66Yjlx.cph0gtNBtJ" - // Note: The `upload_id` attribute applies to S3 multipart-upload operations and - // corresponds to the `--upload-id` parameter - // of the [S3 API] multipart operations. - // This applies in particular to the following operations: - // - // - [abort-multipart-upload] - // - [complete-multipart-upload] - // - [list-parts] - // - [upload-part] - // - [upload-part-copy] - // - // - // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html - // [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html - // [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html - // [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html - // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html - // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html - AWSS3UploadIDKey = attribute.Key("aws.s3.upload_id") - - // AWSSecretsmanagerSecretARNKey is the attribute Key conforming to the - // "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN - // of the Secret stored in the Secrets Mangger. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "arn:aws:secretsmanager:us-east-1:123456789012:secret:SecretName-6RandomCharacters" - AWSSecretsmanagerSecretARNKey = attribute.Key("aws.secretsmanager.secret.arn") - - // AWSSNSTopicARNKey is the attribute Key conforming to the "aws.sns.topic.arn" - // semantic conventions. It represents the ARN of the AWS SNS Topic. An Amazon - // SNS [topic] is a logical access point that acts as a communication channel. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:sns:us-east-1:123456789012:mystack-mytopic-NZJ5JSMVGFIE" - // - // [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html - AWSSNSTopicARNKey = attribute.Key("aws.sns.topic.arn") - - // AWSSQSQueueURLKey is the attribute Key conforming to the "aws.sqs.queue.url" - // semantic conventions. It represents the URL of the AWS SQS Queue. It's a - // unique identifier for a queue in Amazon Simple Queue Service (SQS) and is - // used to access the queue and perform actions on it. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://sqs.us-east-1.amazonaws.com/123456789012/MyQueue" - AWSSQSQueueURLKey = attribute.Key("aws.sqs.queue.url") - - // AWSStepFunctionsActivityARNKey is the attribute Key conforming to the - // "aws.step_functions.activity.arn" semantic conventions. It represents the ARN - // of the AWS Step Functions Activity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:states:us-east-1:123456789012:activity:get-greeting" - AWSStepFunctionsActivityARNKey = attribute.Key("aws.step_functions.activity.arn") - - // AWSStepFunctionsStateMachineARNKey is the attribute Key conforming to the - // "aws.step_functions.state_machine.arn" semantic conventions. It represents - // the ARN of the AWS Step Functions State Machine. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "arn:aws:states:us-east-1:123456789012:stateMachine:myStateMachine:1" - AWSStepFunctionsStateMachineARNKey = attribute.Key("aws.step_functions.state_machine.arn") -) - -// AWSBedrockGuardrailID returns an attribute KeyValue conforming to the -// "aws.bedrock.guardrail.id" semantic conventions. It represents the unique -// identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and -// prevent unwanted behavior from model responses or user messages. -// -// [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html -func AWSBedrockGuardrailID(val string) attribute.KeyValue { - return AWSBedrockGuardrailIDKey.String(val) -} - -// AWSBedrockKnowledgeBaseID returns an attribute KeyValue conforming to the -// "aws.bedrock.knowledge_base.id" semantic conventions. It represents the unique -// identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a bank of -// information that can be queried by models to generate more relevant responses -// and augment prompts. -// -// [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html -func AWSBedrockKnowledgeBaseID(val string) attribute.KeyValue { - return AWSBedrockKnowledgeBaseIDKey.String(val) -} - -// AWSDynamoDBAttributeDefinitions returns an attribute KeyValue conforming to -// the "aws.dynamodb.attribute_definitions" semantic conventions. It represents -// the JSON-serialized value of each item in the `AttributeDefinitions` request -// field. -func AWSDynamoDBAttributeDefinitions(val ...string) attribute.KeyValue { - return AWSDynamoDBAttributeDefinitionsKey.StringSlice(val) -} - -// AWSDynamoDBAttributesToGet returns an attribute KeyValue conforming to the -// "aws.dynamodb.attributes_to_get" semantic conventions. It represents the value -// of the `AttributesToGet` request parameter. -func AWSDynamoDBAttributesToGet(val ...string) attribute.KeyValue { - return AWSDynamoDBAttributesToGetKey.StringSlice(val) -} - -// AWSDynamoDBConsistentRead returns an attribute KeyValue conforming to the -// "aws.dynamodb.consistent_read" semantic conventions. It represents the value -// of the `ConsistentRead` request parameter. -func AWSDynamoDBConsistentRead(val bool) attribute.KeyValue { - return AWSDynamoDBConsistentReadKey.Bool(val) -} - -// AWSDynamoDBConsumedCapacity returns an attribute KeyValue conforming to the -// "aws.dynamodb.consumed_capacity" semantic conventions. It represents the -// JSON-serialized value of each item in the `ConsumedCapacity` response field. -func AWSDynamoDBConsumedCapacity(val ...string) attribute.KeyValue { - return AWSDynamoDBConsumedCapacityKey.StringSlice(val) -} - -// AWSDynamoDBCount returns an attribute KeyValue conforming to the -// "aws.dynamodb.count" semantic conventions. It represents the value of the -// `Count` response parameter. -func AWSDynamoDBCount(val int) attribute.KeyValue { - return AWSDynamoDBCountKey.Int(val) -} - -// AWSDynamoDBExclusiveStartTable returns an attribute KeyValue conforming to the -// "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the -// value of the `ExclusiveStartTableName` request parameter. -func AWSDynamoDBExclusiveStartTable(val string) attribute.KeyValue { - return AWSDynamoDBExclusiveStartTableKey.String(val) -} - -// AWSDynamoDBGlobalSecondaryIndexUpdates returns an attribute KeyValue -// conforming to the "aws.dynamodb.global_secondary_index_updates" semantic -// conventions. It represents the JSON-serialized value of each item in the -// `GlobalSecondaryIndexUpdates` request field. -func AWSDynamoDBGlobalSecondaryIndexUpdates(val ...string) attribute.KeyValue { - return AWSDynamoDBGlobalSecondaryIndexUpdatesKey.StringSlice(val) -} - -// AWSDynamoDBGlobalSecondaryIndexes returns an attribute KeyValue conforming to -// the "aws.dynamodb.global_secondary_indexes" semantic conventions. It -// represents the JSON-serialized value of each item of the -// `GlobalSecondaryIndexes` request field. -func AWSDynamoDBGlobalSecondaryIndexes(val ...string) attribute.KeyValue { - return AWSDynamoDBGlobalSecondaryIndexesKey.StringSlice(val) -} - -// AWSDynamoDBIndexName returns an attribute KeyValue conforming to the -// "aws.dynamodb.index_name" semantic conventions. It represents the value of the -// `IndexName` request parameter. -func AWSDynamoDBIndexName(val string) attribute.KeyValue { - return AWSDynamoDBIndexNameKey.String(val) -} - -// AWSDynamoDBItemCollectionMetrics returns an attribute KeyValue conforming to -// the "aws.dynamodb.item_collection_metrics" semantic conventions. It represents -// the JSON-serialized value of the `ItemCollectionMetrics` response field. -func AWSDynamoDBItemCollectionMetrics(val string) attribute.KeyValue { - return AWSDynamoDBItemCollectionMetricsKey.String(val) -} - -// AWSDynamoDBLimit returns an attribute KeyValue conforming to the -// "aws.dynamodb.limit" semantic conventions. It represents the value of the -// `Limit` request parameter. -func AWSDynamoDBLimit(val int) attribute.KeyValue { - return AWSDynamoDBLimitKey.Int(val) -} - -// AWSDynamoDBLocalSecondaryIndexes returns an attribute KeyValue conforming to -// the "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents -// the JSON-serialized value of each item of the `LocalSecondaryIndexes` request -// field. -func AWSDynamoDBLocalSecondaryIndexes(val ...string) attribute.KeyValue { - return AWSDynamoDBLocalSecondaryIndexesKey.StringSlice(val) -} - -// AWSDynamoDBProjection returns an attribute KeyValue conforming to the -// "aws.dynamodb.projection" semantic conventions. It represents the value of the -// `ProjectionExpression` request parameter. -func AWSDynamoDBProjection(val string) attribute.KeyValue { - return AWSDynamoDBProjectionKey.String(val) -} - -// AWSDynamoDBProvisionedReadCapacity returns an attribute KeyValue conforming to -// the "aws.dynamodb.provisioned_read_capacity" semantic conventions. It -// represents the value of the `ProvisionedThroughput.ReadCapacityUnits` request -// parameter. -func AWSDynamoDBProvisionedReadCapacity(val float64) attribute.KeyValue { - return AWSDynamoDBProvisionedReadCapacityKey.Float64(val) -} - -// AWSDynamoDBProvisionedWriteCapacity returns an attribute KeyValue conforming -// to the "aws.dynamodb.provisioned_write_capacity" semantic conventions. It -// represents the value of the `ProvisionedThroughput.WriteCapacityUnits` request -// parameter. -func AWSDynamoDBProvisionedWriteCapacity(val float64) attribute.KeyValue { - return AWSDynamoDBProvisionedWriteCapacityKey.Float64(val) -} - -// AWSDynamoDBScanForward returns an attribute KeyValue conforming to the -// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of -// the `ScanIndexForward` request parameter. -func AWSDynamoDBScanForward(val bool) attribute.KeyValue { - return AWSDynamoDBScanForwardKey.Bool(val) -} - -// AWSDynamoDBScannedCount returns an attribute KeyValue conforming to the -// "aws.dynamodb.scanned_count" semantic conventions. It represents the value of -// the `ScannedCount` response parameter. -func AWSDynamoDBScannedCount(val int) attribute.KeyValue { - return AWSDynamoDBScannedCountKey.Int(val) -} - -// AWSDynamoDBSegment returns an attribute KeyValue conforming to the -// "aws.dynamodb.segment" semantic conventions. It represents the value of the -// `Segment` request parameter. -func AWSDynamoDBSegment(val int) attribute.KeyValue { - return AWSDynamoDBSegmentKey.Int(val) -} - -// AWSDynamoDBSelect returns an attribute KeyValue conforming to the -// "aws.dynamodb.select" semantic conventions. It represents the value of the -// `Select` request parameter. -func AWSDynamoDBSelect(val string) attribute.KeyValue { - return AWSDynamoDBSelectKey.String(val) -} - -// AWSDynamoDBTableCount returns an attribute KeyValue conforming to the -// "aws.dynamodb.table_count" semantic conventions. It represents the number of -// items in the `TableNames` response parameter. -func AWSDynamoDBTableCount(val int) attribute.KeyValue { - return AWSDynamoDBTableCountKey.Int(val) -} - -// AWSDynamoDBTableNames returns an attribute KeyValue conforming to the -// "aws.dynamodb.table_names" semantic conventions. It represents the keys in the -// `RequestItems` object field. -func AWSDynamoDBTableNames(val ...string) attribute.KeyValue { - return AWSDynamoDBTableNamesKey.StringSlice(val) -} - -// AWSDynamoDBTotalSegments returns an attribute KeyValue conforming to the -// "aws.dynamodb.total_segments" semantic conventions. It represents the value of -// the `TotalSegments` request parameter. -func AWSDynamoDBTotalSegments(val int) attribute.KeyValue { - return AWSDynamoDBTotalSegmentsKey.Int(val) -} - -// AWSECSClusterARN returns an attribute KeyValue conforming to the -// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an -// [ECS cluster]. -// -// [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html -func AWSECSClusterARN(val string) attribute.KeyValue { - return AWSECSClusterARNKey.String(val) -} - -// AWSECSContainerARN returns an attribute KeyValue conforming to the -// "aws.ecs.container.arn" semantic conventions. It represents the Amazon -// Resource Name (ARN) of an [ECS container instance]. -// -// [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html -func AWSECSContainerARN(val string) attribute.KeyValue { - return AWSECSContainerARNKey.String(val) -} - -// AWSECSTaskARN returns an attribute KeyValue conforming to the -// "aws.ecs.task.arn" semantic conventions. It represents the ARN of a running -// [ECS task]. -// -// [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids -func AWSECSTaskARN(val string) attribute.KeyValue { - return AWSECSTaskARNKey.String(val) -} - -// AWSECSTaskFamily returns an attribute KeyValue conforming to the -// "aws.ecs.task.family" semantic conventions. It represents the family name of -// the [ECS task definition] used to create the ECS task. -// -// [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html -func AWSECSTaskFamily(val string) attribute.KeyValue { - return AWSECSTaskFamilyKey.String(val) -} - -// AWSECSTaskID returns an attribute KeyValue conforming to the "aws.ecs.task.id" -// semantic conventions. It represents the ID of a running ECS task. The ID MUST -// be extracted from `task.arn`. -func AWSECSTaskID(val string) attribute.KeyValue { - return AWSECSTaskIDKey.String(val) -} - -// AWSECSTaskRevision returns an attribute KeyValue conforming to the -// "aws.ecs.task.revision" semantic conventions. It represents the revision for -// the task definition used to create the ECS task. -func AWSECSTaskRevision(val string) attribute.KeyValue { - return AWSECSTaskRevisionKey.String(val) -} - -// AWSEKSClusterARN returns an attribute KeyValue conforming to the -// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS -// cluster. -func AWSEKSClusterARN(val string) attribute.KeyValue { - return AWSEKSClusterARNKey.String(val) -} - -// AWSExtendedRequestID returns an attribute KeyValue conforming to the -// "aws.extended_request_id" semantic conventions. It represents the AWS extended -// request ID as returned in the response header `x-amz-id-2`. -func AWSExtendedRequestID(val string) attribute.KeyValue { - return AWSExtendedRequestIDKey.String(val) -} - -// AWSKinesisStreamName returns an attribute KeyValue conforming to the -// "aws.kinesis.stream_name" semantic conventions. It represents the name of the -// AWS Kinesis [stream] the request refers to. Corresponds to the `--stream-name` -// parameter of the Kinesis [describe-stream] operation. -// -// [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html -// [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html -func AWSKinesisStreamName(val string) attribute.KeyValue { - return AWSKinesisStreamNameKey.String(val) -} - -// AWSLambdaInvokedARN returns an attribute KeyValue conforming to the -// "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked -// ARN as provided on the `Context` passed to the function ( -// `Lambda-Runtime-Invoked-Function-Arn` header on the `/runtime/invocation/next` -// applicable). -func AWSLambdaInvokedARN(val string) attribute.KeyValue { - return AWSLambdaInvokedARNKey.String(val) -} - -// AWSLambdaResourceMappingID returns an attribute KeyValue conforming to the -// "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID -// of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda -// function. It's contents are read by Lambda and used to trigger a function. -// This isn't available in the lambda execution context or the lambda runtime -// environtment. This is going to be populated by the AWS SDK for each language -// when that UUID is present. Some of these operations are -// Create/Delete/Get/List/Update EventSourceMapping. -// -// [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html -func AWSLambdaResourceMappingID(val string) attribute.KeyValue { - return AWSLambdaResourceMappingIDKey.String(val) -} - -// AWSLogGroupARNs returns an attribute KeyValue conforming to the -// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource -// Name(s) (ARN) of the AWS log group(s). -func AWSLogGroupARNs(val ...string) attribute.KeyValue { - return AWSLogGroupARNsKey.StringSlice(val) -} - -// AWSLogGroupNames returns an attribute KeyValue conforming to the -// "aws.log.group.names" semantic conventions. It represents the name(s) of the -// AWS log group(s) an application is writing to. -func AWSLogGroupNames(val ...string) attribute.KeyValue { - return AWSLogGroupNamesKey.StringSlice(val) -} - -// AWSLogStreamARNs returns an attribute KeyValue conforming to the -// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the -// AWS log stream(s). -func AWSLogStreamARNs(val ...string) attribute.KeyValue { - return AWSLogStreamARNsKey.StringSlice(val) -} - -// AWSLogStreamNames returns an attribute KeyValue conforming to the -// "aws.log.stream.names" semantic conventions. It represents the name(s) of the -// AWS log stream(s) an application is writing to. -func AWSLogStreamNames(val ...string) attribute.KeyValue { - return AWSLogStreamNamesKey.StringSlice(val) -} - -// AWSRequestID returns an attribute KeyValue conforming to the "aws.request_id" -// semantic conventions. It represents the AWS request ID as returned in the -// response headers `x-amzn-requestid`, `x-amzn-request-id` or `x-amz-request-id` -// . -func AWSRequestID(val string) attribute.KeyValue { - return AWSRequestIDKey.String(val) -} - -// AWSS3Bucket returns an attribute KeyValue conforming to the "aws.s3.bucket" -// semantic conventions. It represents the S3 bucket name the request refers to. -// Corresponds to the `--bucket` parameter of the [S3 API] operations. -// -// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html -func AWSS3Bucket(val string) attribute.KeyValue { - return AWSS3BucketKey.String(val) -} - -// AWSS3CopySource returns an attribute KeyValue conforming to the -// "aws.s3.copy_source" semantic conventions. It represents the source object (in -// the form `bucket`/`key`) for the copy operation. -func AWSS3CopySource(val string) attribute.KeyValue { - return AWSS3CopySourceKey.String(val) -} - -// AWSS3Delete returns an attribute KeyValue conforming to the "aws.s3.delete" -// semantic conventions. It represents the delete request container that -// specifies the objects to be deleted. -func AWSS3Delete(val string) attribute.KeyValue { - return AWSS3DeleteKey.String(val) -} - -// AWSS3Key returns an attribute KeyValue conforming to the "aws.s3.key" semantic -// conventions. It represents the S3 object key the request refers to. -// Corresponds to the `--key` parameter of the [S3 API] operations. -// -// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html -func AWSS3Key(val string) attribute.KeyValue { - return AWSS3KeyKey.String(val) -} - -// AWSS3PartNumber returns an attribute KeyValue conforming to the -// "aws.s3.part_number" semantic conventions. It represents the part number of -// the part being uploaded in a multipart-upload operation. This is a positive -// integer between 1 and 10,000. -func AWSS3PartNumber(val int) attribute.KeyValue { - return AWSS3PartNumberKey.Int(val) -} - -// AWSS3UploadID returns an attribute KeyValue conforming to the -// "aws.s3.upload_id" semantic conventions. It represents the upload ID that -// identifies the multipart upload. -func AWSS3UploadID(val string) attribute.KeyValue { - return AWSS3UploadIDKey.String(val) -} - -// AWSSecretsmanagerSecretARN returns an attribute KeyValue conforming to the -// "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN of -// the Secret stored in the Secrets Mangger. -func AWSSecretsmanagerSecretARN(val string) attribute.KeyValue { - return AWSSecretsmanagerSecretARNKey.String(val) -} - -// AWSSNSTopicARN returns an attribute KeyValue conforming to the -// "aws.sns.topic.arn" semantic conventions. It represents the ARN of the AWS SNS -// Topic. An Amazon SNS [topic] is a logical access point that acts as a -// communication channel. -// -// [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html -func AWSSNSTopicARN(val string) attribute.KeyValue { - return AWSSNSTopicARNKey.String(val) -} - -// AWSSQSQueueURL returns an attribute KeyValue conforming to the -// "aws.sqs.queue.url" semantic conventions. It represents the URL of the AWS SQS -// Queue. It's a unique identifier for a queue in Amazon Simple Queue Service -// (SQS) and is used to access the queue and perform actions on it. -func AWSSQSQueueURL(val string) attribute.KeyValue { - return AWSSQSQueueURLKey.String(val) -} - -// AWSStepFunctionsActivityARN returns an attribute KeyValue conforming to the -// "aws.step_functions.activity.arn" semantic conventions. It represents the ARN -// of the AWS Step Functions Activity. -func AWSStepFunctionsActivityARN(val string) attribute.KeyValue { - return AWSStepFunctionsActivityARNKey.String(val) -} - -// AWSStepFunctionsStateMachineARN returns an attribute KeyValue conforming to -// the "aws.step_functions.state_machine.arn" semantic conventions. It represents -// the ARN of the AWS Step Functions State Machine. -func AWSStepFunctionsStateMachineARN(val string) attribute.KeyValue { - return AWSStepFunctionsStateMachineARNKey.String(val) -} - -// Enum values for aws.ecs.launchtype -var ( - // Amazon EC2 - // Stability: development - AWSECSLaunchtypeEC2 = AWSECSLaunchtypeKey.String("ec2") - // Amazon Fargate - // Stability: development - AWSECSLaunchtypeFargate = AWSECSLaunchtypeKey.String("fargate") -) - -// Namespace: azure -const ( - // AzureClientIDKey is the attribute Key conforming to the "azure.client.id" - // semantic conventions. It represents the unique identifier of the client - // instance. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "3ba4827d-4422-483f-b59f-85b74211c11d", "storage-client-1" - AzureClientIDKey = attribute.Key("azure.client.id") - - // AzureCosmosDBConnectionModeKey is the attribute Key conforming to the - // "azure.cosmosdb.connection.mode" semantic conventions. It represents the - // cosmos client connection mode. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - AzureCosmosDBConnectionModeKey = attribute.Key("azure.cosmosdb.connection.mode") - - // AzureCosmosDBConsistencyLevelKey is the attribute Key conforming to the - // "azure.cosmosdb.consistency.level" semantic conventions. It represents the - // account or request [consistency level]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Eventual", "ConsistentPrefix", "BoundedStaleness", "Strong", - // "Session" - // - // [consistency level]: https://learn.microsoft.com/azure/cosmos-db/consistency-levels - AzureCosmosDBConsistencyLevelKey = attribute.Key("azure.cosmosdb.consistency.level") - - // AzureCosmosDBOperationContactedRegionsKey is the attribute Key conforming to - // the "azure.cosmosdb.operation.contacted_regions" semantic conventions. It - // represents the list of regions contacted during operation in the order that - // they were contacted. If there is more than one region listed, it indicates - // that the operation was performed on multiple regions i.e. cross-regional - // call. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "North Central US", "Australia East", "Australia Southeast" - // Note: Region name matches the format of `displayName` in [Azure Location API] - // - // [Azure Location API]: https://learn.microsoft.com/rest/api/resources/subscriptions/list-locations - AzureCosmosDBOperationContactedRegionsKey = attribute.Key("azure.cosmosdb.operation.contacted_regions") - - // AzureCosmosDBOperationRequestChargeKey is the attribute Key conforming to the - // "azure.cosmosdb.operation.request_charge" semantic conventions. It represents - // the number of request units consumed by the operation. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 46.18, 1.0 - AzureCosmosDBOperationRequestChargeKey = attribute.Key("azure.cosmosdb.operation.request_charge") - - // AzureCosmosDBRequestBodySizeKey is the attribute Key conforming to the - // "azure.cosmosdb.request.body.size" semantic conventions. It represents the - // request payload size in bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - AzureCosmosDBRequestBodySizeKey = attribute.Key("azure.cosmosdb.request.body.size") - - // AzureCosmosDBResponseSubStatusCodeKey is the attribute Key conforming to the - // "azure.cosmosdb.response.sub_status_code" semantic conventions. It represents - // the cosmos DB sub status code. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1000, 1002 - AzureCosmosDBResponseSubStatusCodeKey = attribute.Key("azure.cosmosdb.response.sub_status_code") - - // AzureResourceProviderNamespaceKey is the attribute Key conforming to the - // "azure.resource_provider.namespace" semantic conventions. It represents the - // [Azure Resource Provider Namespace] as recognized by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Microsoft.Storage", "Microsoft.KeyVault", "Microsoft.ServiceBus" - // - // [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers - AzureResourceProviderNamespaceKey = attribute.Key("azure.resource_provider.namespace") - - // AzureServiceRequestIDKey is the attribute Key conforming to the - // "azure.service.request.id" semantic conventions. It represents the unique - // identifier of the service request. It's generated by the Azure service and - // returned with the response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "00000000-0000-0000-0000-000000000000" - AzureServiceRequestIDKey = attribute.Key("azure.service.request.id") -) - -// AzureClientID returns an attribute KeyValue conforming to the -// "azure.client.id" semantic conventions. It represents the unique identifier of -// the client instance. -func AzureClientID(val string) attribute.KeyValue { - return AzureClientIDKey.String(val) -} - -// AzureCosmosDBOperationContactedRegions returns an attribute KeyValue -// conforming to the "azure.cosmosdb.operation.contacted_regions" semantic -// conventions. It represents the list of regions contacted during operation in -// the order that they were contacted. If there is more than one region listed, -// it indicates that the operation was performed on multiple regions i.e. -// cross-regional call. -func AzureCosmosDBOperationContactedRegions(val ...string) attribute.KeyValue { - return AzureCosmosDBOperationContactedRegionsKey.StringSlice(val) -} - -// AzureCosmosDBOperationRequestCharge returns an attribute KeyValue conforming -// to the "azure.cosmosdb.operation.request_charge" semantic conventions. It -// represents the number of request units consumed by the operation. -func AzureCosmosDBOperationRequestCharge(val float64) attribute.KeyValue { - return AzureCosmosDBOperationRequestChargeKey.Float64(val) -} - -// AzureCosmosDBRequestBodySize returns an attribute KeyValue conforming to the -// "azure.cosmosdb.request.body.size" semantic conventions. It represents the -// request payload size in bytes. -func AzureCosmosDBRequestBodySize(val int) attribute.KeyValue { - return AzureCosmosDBRequestBodySizeKey.Int(val) -} - -// AzureCosmosDBResponseSubStatusCode returns an attribute KeyValue conforming to -// the "azure.cosmosdb.response.sub_status_code" semantic conventions. It -// represents the cosmos DB sub status code. -func AzureCosmosDBResponseSubStatusCode(val int) attribute.KeyValue { - return AzureCosmosDBResponseSubStatusCodeKey.Int(val) -} - -// AzureResourceProviderNamespace returns an attribute KeyValue conforming to the -// "azure.resource_provider.namespace" semantic conventions. It represents the -// [Azure Resource Provider Namespace] as recognized by the client. -// -// [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers -func AzureResourceProviderNamespace(val string) attribute.KeyValue { - return AzureResourceProviderNamespaceKey.String(val) -} - -// AzureServiceRequestID returns an attribute KeyValue conforming to the -// "azure.service.request.id" semantic conventions. It represents the unique -// identifier of the service request. It's generated by the Azure service and -// returned with the response. -func AzureServiceRequestID(val string) attribute.KeyValue { - return AzureServiceRequestIDKey.String(val) -} - -// Enum values for azure.cosmosdb.connection.mode -var ( - // Gateway (HTTP) connection. - // Stability: development - AzureCosmosDBConnectionModeGateway = AzureCosmosDBConnectionModeKey.String("gateway") - // Direct connection. - // Stability: development - AzureCosmosDBConnectionModeDirect = AzureCosmosDBConnectionModeKey.String("direct") -) - -// Enum values for azure.cosmosdb.consistency.level -var ( - // Strong - // Stability: development - AzureCosmosDBConsistencyLevelStrong = AzureCosmosDBConsistencyLevelKey.String("Strong") - // Bounded Staleness - // Stability: development - AzureCosmosDBConsistencyLevelBoundedStaleness = AzureCosmosDBConsistencyLevelKey.String("BoundedStaleness") - // Session - // Stability: development - AzureCosmosDBConsistencyLevelSession = AzureCosmosDBConsistencyLevelKey.String("Session") - // Eventual - // Stability: development - AzureCosmosDBConsistencyLevelEventual = AzureCosmosDBConsistencyLevelKey.String("Eventual") - // Consistent Prefix - // Stability: development - AzureCosmosDBConsistencyLevelConsistentPrefix = AzureCosmosDBConsistencyLevelKey.String("ConsistentPrefix") -) - -// Namespace: browser -const ( - // BrowserBrandsKey is the attribute Key conforming to the "browser.brands" - // semantic conventions. It represents the array of brand name and version - // separated by a space. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: " Not A;Brand 99", "Chromium 99", "Chrome 99" - // Note: This value is intended to be taken from the [UA client hints API] ( - // `navigator.userAgentData.brands`). - // - // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface - BrowserBrandsKey = attribute.Key("browser.brands") - - // BrowserLanguageKey is the attribute Key conforming to the "browser.language" - // semantic conventions. It represents the preferred language of the user using - // the browser. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "en", "en-US", "fr", "fr-FR" - // Note: This value is intended to be taken from the Navigator API - // `navigator.language`. - BrowserLanguageKey = attribute.Key("browser.language") - - // BrowserMobileKey is the attribute Key conforming to the "browser.mobile" - // semantic conventions. It represents a boolean that is true if the browser is - // running on a mobile device. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: This value is intended to be taken from the [UA client hints API] ( - // `navigator.userAgentData.mobile`). If unavailable, this attribute SHOULD be - // left unset. - // - // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface - BrowserMobileKey = attribute.Key("browser.mobile") - - // BrowserPlatformKey is the attribute Key conforming to the "browser.platform" - // semantic conventions. It represents the platform on which the browser is - // running. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Windows", "macOS", "Android" - // Note: This value is intended to be taken from the [UA client hints API] ( - // `navigator.userAgentData.platform`). If unavailable, the legacy - // `navigator.platform` API SHOULD NOT be used instead and this attribute SHOULD - // be left unset in order for the values to be consistent. - // The list of possible values is defined in the - // [W3C User-Agent Client Hints specification]. Note that some (but not all) of - // these values can overlap with values in the - // [`os.type` and `os.name` attributes]. However, for consistency, the values in - // the `browser.platform` attribute should capture the exact value that the user - // agent provides. - // - // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface - // [W3C User-Agent Client Hints specification]: https://wicg.github.io/ua-client-hints/#sec-ch-ua-platform - // [`os.type` and `os.name` attributes]: ./os.md - BrowserPlatformKey = attribute.Key("browser.platform") -) - -// BrowserBrands returns an attribute KeyValue conforming to the "browser.brands" -// semantic conventions. It represents the array of brand name and version -// separated by a space. -func BrowserBrands(val ...string) attribute.KeyValue { - return BrowserBrandsKey.StringSlice(val) -} - -// BrowserLanguage returns an attribute KeyValue conforming to the -// "browser.language" semantic conventions. It represents the preferred language -// of the user using the browser. -func BrowserLanguage(val string) attribute.KeyValue { - return BrowserLanguageKey.String(val) -} - -// BrowserMobile returns an attribute KeyValue conforming to the "browser.mobile" -// semantic conventions. It represents a boolean that is true if the browser is -// running on a mobile device. -func BrowserMobile(val bool) attribute.KeyValue { - return BrowserMobileKey.Bool(val) -} - -// BrowserPlatform returns an attribute KeyValue conforming to the -// "browser.platform" semantic conventions. It represents the platform on which -// the browser is running. -func BrowserPlatform(val string) attribute.KeyValue { - return BrowserPlatformKey.String(val) -} - -// Namespace: cassandra -const ( - // CassandraConsistencyLevelKey is the attribute Key conforming to the - // "cassandra.consistency.level" semantic conventions. It represents the - // consistency level of the query. Based on consistency values from [CQL]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [CQL]: https://docs.datastax.com/en/cassandra-oss/3.0/cassandra/dml/dmlConfigConsistency.html - CassandraConsistencyLevelKey = attribute.Key("cassandra.consistency.level") - - // CassandraCoordinatorDCKey is the attribute Key conforming to the - // "cassandra.coordinator.dc" semantic conventions. It represents the data - // center of the coordinating node for a query. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: us-west-2 - CassandraCoordinatorDCKey = attribute.Key("cassandra.coordinator.dc") - - // CassandraCoordinatorIDKey is the attribute Key conforming to the - // "cassandra.coordinator.id" semantic conventions. It represents the ID of the - // coordinating node for a query. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: be13faa2-8574-4d71-926d-27f16cf8a7af - CassandraCoordinatorIDKey = attribute.Key("cassandra.coordinator.id") - - // CassandraPageSizeKey is the attribute Key conforming to the - // "cassandra.page.size" semantic conventions. It represents the fetch size used - // for paging, i.e. how many rows will be returned at once. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 5000 - CassandraPageSizeKey = attribute.Key("cassandra.page.size") - - // CassandraQueryIdempotentKey is the attribute Key conforming to the - // "cassandra.query.idempotent" semantic conventions. It represents the whether - // or not the query is idempotent. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - CassandraQueryIdempotentKey = attribute.Key("cassandra.query.idempotent") - - // CassandraSpeculativeExecutionCountKey is the attribute Key conforming to the - // "cassandra.speculative_execution.count" semantic conventions. It represents - // the number of times a query was speculatively executed. Not set or `0` if the - // query was not executed speculatively. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0, 2 - CassandraSpeculativeExecutionCountKey = attribute.Key("cassandra.speculative_execution.count") -) - -// CassandraCoordinatorDC returns an attribute KeyValue conforming to the -// "cassandra.coordinator.dc" semantic conventions. It represents the data center -// of the coordinating node for a query. -func CassandraCoordinatorDC(val string) attribute.KeyValue { - return CassandraCoordinatorDCKey.String(val) -} - -// CassandraCoordinatorID returns an attribute KeyValue conforming to the -// "cassandra.coordinator.id" semantic conventions. It represents the ID of the -// coordinating node for a query. -func CassandraCoordinatorID(val string) attribute.KeyValue { - return CassandraCoordinatorIDKey.String(val) -} - -// CassandraPageSize returns an attribute KeyValue conforming to the -// "cassandra.page.size" semantic conventions. It represents the fetch size used -// for paging, i.e. how many rows will be returned at once. -func CassandraPageSize(val int) attribute.KeyValue { - return CassandraPageSizeKey.Int(val) -} - -// CassandraQueryIdempotent returns an attribute KeyValue conforming to the -// "cassandra.query.idempotent" semantic conventions. It represents the whether -// or not the query is idempotent. -func CassandraQueryIdempotent(val bool) attribute.KeyValue { - return CassandraQueryIdempotentKey.Bool(val) -} - -// CassandraSpeculativeExecutionCount returns an attribute KeyValue conforming to -// the "cassandra.speculative_execution.count" semantic conventions. It -// represents the number of times a query was speculatively executed. Not set or -// `0` if the query was not executed speculatively. -func CassandraSpeculativeExecutionCount(val int) attribute.KeyValue { - return CassandraSpeculativeExecutionCountKey.Int(val) -} - -// Enum values for cassandra.consistency.level -var ( - // All - // Stability: development - CassandraConsistencyLevelAll = CassandraConsistencyLevelKey.String("all") - // Each Quorum - // Stability: development - CassandraConsistencyLevelEachQuorum = CassandraConsistencyLevelKey.String("each_quorum") - // Quorum - // Stability: development - CassandraConsistencyLevelQuorum = CassandraConsistencyLevelKey.String("quorum") - // Local Quorum - // Stability: development - CassandraConsistencyLevelLocalQuorum = CassandraConsistencyLevelKey.String("local_quorum") - // One - // Stability: development - CassandraConsistencyLevelOne = CassandraConsistencyLevelKey.String("one") - // Two - // Stability: development - CassandraConsistencyLevelTwo = CassandraConsistencyLevelKey.String("two") - // Three - // Stability: development - CassandraConsistencyLevelThree = CassandraConsistencyLevelKey.String("three") - // Local One - // Stability: development - CassandraConsistencyLevelLocalOne = CassandraConsistencyLevelKey.String("local_one") - // Any - // Stability: development - CassandraConsistencyLevelAny = CassandraConsistencyLevelKey.String("any") - // Serial - // Stability: development - CassandraConsistencyLevelSerial = CassandraConsistencyLevelKey.String("serial") - // Local Serial - // Stability: development - CassandraConsistencyLevelLocalSerial = CassandraConsistencyLevelKey.String("local_serial") -) - -// Namespace: cicd -const ( - // CICDPipelineActionNameKey is the attribute Key conforming to the - // "cicd.pipeline.action.name" semantic conventions. It represents the kind of - // action a pipeline run is performing. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "BUILD", "RUN", "SYNC" - CICDPipelineActionNameKey = attribute.Key("cicd.pipeline.action.name") - - // CICDPipelineNameKey is the attribute Key conforming to the - // "cicd.pipeline.name" semantic conventions. It represents the human readable - // name of the pipeline within a CI/CD system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Build and Test", "Lint", "Deploy Go Project", - // "deploy_to_environment" - CICDPipelineNameKey = attribute.Key("cicd.pipeline.name") - - // CICDPipelineResultKey is the attribute Key conforming to the - // "cicd.pipeline.result" semantic conventions. It represents the result of a - // pipeline run. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "success", "failure", "timeout", "skipped" - CICDPipelineResultKey = attribute.Key("cicd.pipeline.result") - - // CICDPipelineRunIDKey is the attribute Key conforming to the - // "cicd.pipeline.run.id" semantic conventions. It represents the unique - // identifier of a pipeline run within a CI/CD system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "120912" - CICDPipelineRunIDKey = attribute.Key("cicd.pipeline.run.id") - - // CICDPipelineRunStateKey is the attribute Key conforming to the - // "cicd.pipeline.run.state" semantic conventions. It represents the pipeline - // run goes through these states during its lifecycle. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "pending", "executing", "finalizing" - CICDPipelineRunStateKey = attribute.Key("cicd.pipeline.run.state") - - // CICDPipelineRunURLFullKey is the attribute Key conforming to the - // "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of - // the pipeline run, providing the complete address in order to locate and - // identify the pipeline run. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763?pr=1075" - // - // [URL]: https://wikipedia.org/wiki/URL - CICDPipelineRunURLFullKey = attribute.Key("cicd.pipeline.run.url.full") - - // CICDPipelineTaskNameKey is the attribute Key conforming to the - // "cicd.pipeline.task.name" semantic conventions. It represents the human - // readable name of a task within a pipeline. Task here most closely aligns with - // a [computing process] in a pipeline. Other terms for tasks include commands, - // steps, and procedures. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Run GoLang Linter", "Go Build", "go-test", "deploy_binary" - // - // [computing process]: https://wikipedia.org/wiki/Pipeline_(computing) - CICDPipelineTaskNameKey = attribute.Key("cicd.pipeline.task.name") - - // CICDPipelineTaskRunIDKey is the attribute Key conforming to the - // "cicd.pipeline.task.run.id" semantic conventions. It represents the unique - // identifier of a task run within a pipeline. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "12097" - CICDPipelineTaskRunIDKey = attribute.Key("cicd.pipeline.task.run.id") - - // CICDPipelineTaskRunResultKey is the attribute Key conforming to the - // "cicd.pipeline.task.run.result" semantic conventions. It represents the - // result of a task run. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "success", "failure", "timeout", "skipped" - CICDPipelineTaskRunResultKey = attribute.Key("cicd.pipeline.task.run.result") - - // CICDPipelineTaskRunURLFullKey is the attribute Key conforming to the - // "cicd.pipeline.task.run.url.full" semantic conventions. It represents the - // [URL] of the pipeline task run, providing the complete address in order to - // locate and identify the pipeline task run. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763/job/26920038674?pr=1075" - // - // [URL]: https://wikipedia.org/wiki/URL - CICDPipelineTaskRunURLFullKey = attribute.Key("cicd.pipeline.task.run.url.full") - - // CICDPipelineTaskTypeKey is the attribute Key conforming to the - // "cicd.pipeline.task.type" semantic conventions. It represents the type of the - // task within a pipeline. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "build", "test", "deploy" - CICDPipelineTaskTypeKey = attribute.Key("cicd.pipeline.task.type") - - // CICDSystemComponentKey is the attribute Key conforming to the - // "cicd.system.component" semantic conventions. It represents the name of a - // component of the CICD system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "controller", "scheduler", "agent" - CICDSystemComponentKey = attribute.Key("cicd.system.component") - - // CICDWorkerIDKey is the attribute Key conforming to the "cicd.worker.id" - // semantic conventions. It represents the unique identifier of a worker within - // a CICD system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "abc123", "10.0.1.2", "controller" - CICDWorkerIDKey = attribute.Key("cicd.worker.id") - - // CICDWorkerNameKey is the attribute Key conforming to the "cicd.worker.name" - // semantic conventions. It represents the name of a worker within a CICD - // system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "agent-abc", "controller", "Ubuntu LTS" - CICDWorkerNameKey = attribute.Key("cicd.worker.name") - - // CICDWorkerStateKey is the attribute Key conforming to the "cicd.worker.state" - // semantic conventions. It represents the state of a CICD worker / agent. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "idle", "busy", "down" - CICDWorkerStateKey = attribute.Key("cicd.worker.state") - - // CICDWorkerURLFullKey is the attribute Key conforming to the - // "cicd.worker.url.full" semantic conventions. It represents the [URL] of the - // worker, providing the complete address in order to locate and identify the - // worker. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://cicd.example.org/worker/abc123" - // - // [URL]: https://wikipedia.org/wiki/URL - CICDWorkerURLFullKey = attribute.Key("cicd.worker.url.full") -) - -// CICDPipelineName returns an attribute KeyValue conforming to the -// "cicd.pipeline.name" semantic conventions. It represents the human readable -// name of the pipeline within a CI/CD system. -func CICDPipelineName(val string) attribute.KeyValue { - return CICDPipelineNameKey.String(val) -} - -// CICDPipelineRunID returns an attribute KeyValue conforming to the -// "cicd.pipeline.run.id" semantic conventions. It represents the unique -// identifier of a pipeline run within a CI/CD system. -func CICDPipelineRunID(val string) attribute.KeyValue { - return CICDPipelineRunIDKey.String(val) -} - -// CICDPipelineRunURLFull returns an attribute KeyValue conforming to the -// "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of -// the pipeline run, providing the complete address in order to locate and -// identify the pipeline run. -// -// [URL]: https://wikipedia.org/wiki/URL -func CICDPipelineRunURLFull(val string) attribute.KeyValue { - return CICDPipelineRunURLFullKey.String(val) -} - -// CICDPipelineTaskName returns an attribute KeyValue conforming to the -// "cicd.pipeline.task.name" semantic conventions. It represents the human -// readable name of a task within a pipeline. Task here most closely aligns with -// a [computing process] in a pipeline. Other terms for tasks include commands, -// steps, and procedures. -// -// [computing process]: https://wikipedia.org/wiki/Pipeline_(computing) -func CICDPipelineTaskName(val string) attribute.KeyValue { - return CICDPipelineTaskNameKey.String(val) -} - -// CICDPipelineTaskRunID returns an attribute KeyValue conforming to the -// "cicd.pipeline.task.run.id" semantic conventions. It represents the unique -// identifier of a task run within a pipeline. -func CICDPipelineTaskRunID(val string) attribute.KeyValue { - return CICDPipelineTaskRunIDKey.String(val) -} - -// CICDPipelineTaskRunURLFull returns an attribute KeyValue conforming to the -// "cicd.pipeline.task.run.url.full" semantic conventions. It represents the -// [URL] of the pipeline task run, providing the complete address in order to -// locate and identify the pipeline task run. -// -// [URL]: https://wikipedia.org/wiki/URL -func CICDPipelineTaskRunURLFull(val string) attribute.KeyValue { - return CICDPipelineTaskRunURLFullKey.String(val) -} - -// CICDSystemComponent returns an attribute KeyValue conforming to the -// "cicd.system.component" semantic conventions. It represents the name of a -// component of the CICD system. -func CICDSystemComponent(val string) attribute.KeyValue { - return CICDSystemComponentKey.String(val) -} - -// CICDWorkerID returns an attribute KeyValue conforming to the "cicd.worker.id" -// semantic conventions. It represents the unique identifier of a worker within a -// CICD system. -func CICDWorkerID(val string) attribute.KeyValue { - return CICDWorkerIDKey.String(val) -} - -// CICDWorkerName returns an attribute KeyValue conforming to the -// "cicd.worker.name" semantic conventions. It represents the name of a worker -// within a CICD system. -func CICDWorkerName(val string) attribute.KeyValue { - return CICDWorkerNameKey.String(val) -} - -// CICDWorkerURLFull returns an attribute KeyValue conforming to the -// "cicd.worker.url.full" semantic conventions. It represents the [URL] of the -// worker, providing the complete address in order to locate and identify the -// worker. -// -// [URL]: https://wikipedia.org/wiki/URL -func CICDWorkerURLFull(val string) attribute.KeyValue { - return CICDWorkerURLFullKey.String(val) -} - -// Enum values for cicd.pipeline.action.name -var ( - // The pipeline run is executing a build. - // Stability: development - CICDPipelineActionNameBuild = CICDPipelineActionNameKey.String("BUILD") - // The pipeline run is executing. - // Stability: development - CICDPipelineActionNameRun = CICDPipelineActionNameKey.String("RUN") - // The pipeline run is executing a sync. - // Stability: development - CICDPipelineActionNameSync = CICDPipelineActionNameKey.String("SYNC") -) - -// Enum values for cicd.pipeline.result -var ( - // The pipeline run finished successfully. - // Stability: development - CICDPipelineResultSuccess = CICDPipelineResultKey.String("success") - // The pipeline run did not finish successfully, eg. due to a compile error or a - // failing test. Such failures are usually detected by non-zero exit codes of - // the tools executed in the pipeline run. - // Stability: development - CICDPipelineResultFailure = CICDPipelineResultKey.String("failure") - // The pipeline run failed due to an error in the CICD system, eg. due to the - // worker being killed. - // Stability: development - CICDPipelineResultError = CICDPipelineResultKey.String("error") - // A timeout caused the pipeline run to be interrupted. - // Stability: development - CICDPipelineResultTimeout = CICDPipelineResultKey.String("timeout") - // The pipeline run was cancelled, eg. by a user manually cancelling the - // pipeline run. - // Stability: development - CICDPipelineResultCancellation = CICDPipelineResultKey.String("cancellation") - // The pipeline run was skipped, eg. due to a precondition not being met. - // Stability: development - CICDPipelineResultSkip = CICDPipelineResultKey.String("skip") -) - -// Enum values for cicd.pipeline.run.state -var ( - // The run pending state spans from the event triggering the pipeline run until - // the execution of the run starts (eg. time spent in a queue, provisioning - // agents, creating run resources). - // - // Stability: development - CICDPipelineRunStatePending = CICDPipelineRunStateKey.String("pending") - // The executing state spans the execution of any run tasks (eg. build, test). - // Stability: development - CICDPipelineRunStateExecuting = CICDPipelineRunStateKey.String("executing") - // The finalizing state spans from when the run has finished executing (eg. - // cleanup of run resources). - // Stability: development - CICDPipelineRunStateFinalizing = CICDPipelineRunStateKey.String("finalizing") -) - -// Enum values for cicd.pipeline.task.run.result -var ( - // The task run finished successfully. - // Stability: development - CICDPipelineTaskRunResultSuccess = CICDPipelineTaskRunResultKey.String("success") - // The task run did not finish successfully, eg. due to a compile error or a - // failing test. Such failures are usually detected by non-zero exit codes of - // the tools executed in the task run. - // Stability: development - CICDPipelineTaskRunResultFailure = CICDPipelineTaskRunResultKey.String("failure") - // The task run failed due to an error in the CICD system, eg. due to the worker - // being killed. - // Stability: development - CICDPipelineTaskRunResultError = CICDPipelineTaskRunResultKey.String("error") - // A timeout caused the task run to be interrupted. - // Stability: development - CICDPipelineTaskRunResultTimeout = CICDPipelineTaskRunResultKey.String("timeout") - // The task run was cancelled, eg. by a user manually cancelling the task run. - // Stability: development - CICDPipelineTaskRunResultCancellation = CICDPipelineTaskRunResultKey.String("cancellation") - // The task run was skipped, eg. due to a precondition not being met. - // Stability: development - CICDPipelineTaskRunResultSkip = CICDPipelineTaskRunResultKey.String("skip") -) - -// Enum values for cicd.pipeline.task.type -var ( - // build - // Stability: development - CICDPipelineTaskTypeBuild = CICDPipelineTaskTypeKey.String("build") - // test - // Stability: development - CICDPipelineTaskTypeTest = CICDPipelineTaskTypeKey.String("test") - // deploy - // Stability: development - CICDPipelineTaskTypeDeploy = CICDPipelineTaskTypeKey.String("deploy") -) - -// Enum values for cicd.worker.state -var ( - // The worker is not performing work for the CICD system. It is available to the - // CICD system to perform work on (online / idle). - // Stability: development - CICDWorkerStateAvailable = CICDWorkerStateKey.String("available") - // The worker is performing work for the CICD system. - // Stability: development - CICDWorkerStateBusy = CICDWorkerStateKey.String("busy") - // The worker is not available to the CICD system (disconnected / down). - // Stability: development - CICDWorkerStateOffline = CICDWorkerStateKey.String("offline") -) - -// Namespace: client -const ( - // ClientAddressKey is the attribute Key conforming to the "client.address" - // semantic conventions. It represents the client address - domain name if - // available without reverse DNS lookup; otherwise, IP address or Unix domain - // socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "client.example.com", "10.1.2.80", "/tmp/my.sock" - // Note: When observed from the server side, and when communicating through an - // intermediary, `client.address` SHOULD represent the client address behind any - // intermediaries, for example proxies, if it's available. - ClientAddressKey = attribute.Key("client.address") - - // ClientPortKey is the attribute Key conforming to the "client.port" semantic - // conventions. It represents the client port number. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 65123 - // Note: When observed from the server side, and when communicating through an - // intermediary, `client.port` SHOULD represent the client port behind any - // intermediaries, for example proxies, if it's available. - ClientPortKey = attribute.Key("client.port") -) - -// ClientAddress returns an attribute KeyValue conforming to the "client.address" -// semantic conventions. It represents the client address - domain name if -// available without reverse DNS lookup; otherwise, IP address or Unix domain -// socket name. -func ClientAddress(val string) attribute.KeyValue { - return ClientAddressKey.String(val) -} - -// ClientPort returns an attribute KeyValue conforming to the "client.port" -// semantic conventions. It represents the client port number. -func ClientPort(val int) attribute.KeyValue { - return ClientPortKey.Int(val) -} - -// Namespace: cloud -const ( - // CloudAccountIDKey is the attribute Key conforming to the "cloud.account.id" - // semantic conventions. It represents the cloud account ID the resource is - // assigned to. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "111111111111", "opentelemetry" - CloudAccountIDKey = attribute.Key("cloud.account.id") - - // CloudAvailabilityZoneKey is the attribute Key conforming to the - // "cloud.availability_zone" semantic conventions. It represents the cloud - // regions often have multiple, isolated locations known as zones to increase - // availability. Availability zone represents the zone where the resource is - // running. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-east-1c" - // Note: Availability zones are called "zones" on Alibaba Cloud and Google - // Cloud. - CloudAvailabilityZoneKey = attribute.Key("cloud.availability_zone") - - // CloudPlatformKey is the attribute Key conforming to the "cloud.platform" - // semantic conventions. It represents the cloud platform in use. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The prefix of the service SHOULD match the one specified in - // `cloud.provider`. - CloudPlatformKey = attribute.Key("cloud.platform") - - // CloudProviderKey is the attribute Key conforming to the "cloud.provider" - // semantic conventions. It represents the name of the cloud provider. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - CloudProviderKey = attribute.Key("cloud.provider") - - // CloudRegionKey is the attribute Key conforming to the "cloud.region" semantic - // conventions. It represents the geographical region within a cloud provider. - // When associated with a resource, this attribute specifies the region where - // the resource operates. When calling services or APIs deployed on a cloud, - // this attribute identifies the region where the called destination is - // deployed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-central1", "us-east-1" - // Note: Refer to your provider's docs to see the available regions, for example - // [Alibaba Cloud regions], [AWS regions], [Azure regions], - // [Google Cloud regions], or [Tencent Cloud regions]. - // - // [Alibaba Cloud regions]: https://www.alibabacloud.com/help/doc-detail/40654.htm - // [AWS regions]: https://aws.amazon.com/about-aws/global-infrastructure/regions_az/ - // [Azure regions]: https://azure.microsoft.com/global-infrastructure/geographies/ - // [Google Cloud regions]: https://cloud.google.com/about/locations - // [Tencent Cloud regions]: https://www.tencentcloud.com/document/product/213/6091 - CloudRegionKey = attribute.Key("cloud.region") - - // CloudResourceIDKey is the attribute Key conforming to the "cloud.resource_id" - // semantic conventions. It represents the cloud provider-specific native - // identifier of the monitored cloud resource (e.g. an [ARN] on AWS, a - // [fully qualified resource ID] on Azure, a [full resource name] on GCP). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:lambda:REGION:ACCOUNT_ID:function:my-function", - // "//run.googleapis.com/projects/PROJECT_ID/locations/LOCATION_ID/services/SERVICE_ID", - // "/subscriptions//resourceGroups/ - // /providers/Microsoft.Web/sites//functions/" - // Note: On some cloud providers, it may not be possible to determine the full - // ID at startup, - // so it may be necessary to set `cloud.resource_id` as a span attribute - // instead. - // - // The exact value to use for `cloud.resource_id` depends on the cloud provider. - // The following well-known definitions MUST be used if you set this attribute - // and they apply: - // - // - **AWS Lambda:** The function [ARN]. - // Take care not to use the "invoked ARN" directly but replace any - // [alias suffix] - // with the resolved function version, as the same runtime instance may be - // invocable with - // multiple different aliases. - // - **GCP:** The [URI of the resource] - // - **Azure:** The [Fully Qualified Resource ID] of the invoked function, - // *not* the function app, having the form - // - // `/subscriptions//resourceGroups//providers/Microsoft.Web/sites//functions/` - // . - // This means that a span attribute MUST be used, as an Azure function app - // can host multiple functions that would usually share - // a TracerProvider. - // - // - // [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html - // [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id - // [full resource name]: https://google.aip.dev/122#full-resource-names - // [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html - // [alias suffix]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-aliases.html - // [URI of the resource]: https://cloud.google.com/iam/docs/full-resource-names - // [Fully Qualified Resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id - CloudResourceIDKey = attribute.Key("cloud.resource_id") -) - -// CloudAccountID returns an attribute KeyValue conforming to the -// "cloud.account.id" semantic conventions. It represents the cloud account ID -// the resource is assigned to. -func CloudAccountID(val string) attribute.KeyValue { - return CloudAccountIDKey.String(val) -} - -// CloudAvailabilityZone returns an attribute KeyValue conforming to the -// "cloud.availability_zone" semantic conventions. It represents the cloud -// regions often have multiple, isolated locations known as zones to increase -// availability. Availability zone represents the zone where the resource is -// running. -func CloudAvailabilityZone(val string) attribute.KeyValue { - return CloudAvailabilityZoneKey.String(val) -} - -// CloudRegion returns an attribute KeyValue conforming to the "cloud.region" -// semantic conventions. It represents the geographical region within a cloud -// provider. When associated with a resource, this attribute specifies the region -// where the resource operates. When calling services or APIs deployed on a -// cloud, this attribute identifies the region where the called destination is -// deployed. -func CloudRegion(val string) attribute.KeyValue { - return CloudRegionKey.String(val) -} - -// CloudResourceID returns an attribute KeyValue conforming to the -// "cloud.resource_id" semantic conventions. It represents the cloud -// provider-specific native identifier of the monitored cloud resource (e.g. an -// [ARN] on AWS, a [fully qualified resource ID] on Azure, a [full resource name] -// on GCP). -// -// [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html -// [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id -// [full resource name]: https://google.aip.dev/122#full-resource-names -func CloudResourceID(val string) attribute.KeyValue { - return CloudResourceIDKey.String(val) -} - -// Enum values for cloud.platform -var ( - // Akamai Cloud Compute - // Stability: development - CloudPlatformAkamaiCloudCompute = CloudPlatformKey.String("akamai_cloud.compute") - // Alibaba Cloud Elastic Compute Service - // Stability: development - CloudPlatformAlibabaCloudECS = CloudPlatformKey.String("alibaba_cloud_ecs") - // Alibaba Cloud Function Compute - // Stability: development - CloudPlatformAlibabaCloudFC = CloudPlatformKey.String("alibaba_cloud_fc") - // Red Hat OpenShift on Alibaba Cloud - // Stability: development - CloudPlatformAlibabaCloudOpenShift = CloudPlatformKey.String("alibaba_cloud_openshift") - // AWS Elastic Compute Cloud - // Stability: development - CloudPlatformAWSEC2 = CloudPlatformKey.String("aws_ec2") - // AWS Elastic Container Service - // Stability: development - CloudPlatformAWSECS = CloudPlatformKey.String("aws_ecs") - // AWS Elastic Kubernetes Service - // Stability: development - CloudPlatformAWSEKS = CloudPlatformKey.String("aws_eks") - // AWS Lambda - // Stability: development - CloudPlatformAWSLambda = CloudPlatformKey.String("aws_lambda") - // AWS Elastic Beanstalk - // Stability: development - CloudPlatformAWSElasticBeanstalk = CloudPlatformKey.String("aws_elastic_beanstalk") - // AWS App Runner - // Stability: development - CloudPlatformAWSAppRunner = CloudPlatformKey.String("aws_app_runner") - // Red Hat OpenShift on AWS (ROSA) - // Stability: development - CloudPlatformAWSOpenShift = CloudPlatformKey.String("aws_openshift") - // Azure Virtual Machines - // Stability: development - CloudPlatformAzureVM = CloudPlatformKey.String("azure.vm") - // Azure Container Apps - // Stability: development - CloudPlatformAzureContainerApps = CloudPlatformKey.String("azure.container_apps") - // Azure Container Instances - // Stability: development - CloudPlatformAzureContainerInstances = CloudPlatformKey.String("azure.container_instances") - // Azure Kubernetes Service - // Stability: development - CloudPlatformAzureAKS = CloudPlatformKey.String("azure.aks") - // Azure Functions - // Stability: development - CloudPlatformAzureFunctions = CloudPlatformKey.String("azure.functions") - // Azure App Service - // Stability: development - CloudPlatformAzureAppService = CloudPlatformKey.String("azure.app_service") - // Azure Red Hat OpenShift - // Stability: development - CloudPlatformAzureOpenShift = CloudPlatformKey.String("azure.openshift") - // Google Vertex AI Agent Engine - // Stability: development - CloudPlatformGCPAgentEngine = CloudPlatformKey.String("gcp.agent_engine") - // Google Bare Metal Solution (BMS) - // Stability: development - CloudPlatformGCPBareMetalSolution = CloudPlatformKey.String("gcp_bare_metal_solution") - // Google Cloud Compute Engine (GCE) - // Stability: development - CloudPlatformGCPComputeEngine = CloudPlatformKey.String("gcp_compute_engine") - // Google Cloud Run - // Stability: development - CloudPlatformGCPCloudRun = CloudPlatformKey.String("gcp_cloud_run") - // Google Cloud Kubernetes Engine (GKE) - // Stability: development - CloudPlatformGCPKubernetesEngine = CloudPlatformKey.String("gcp_kubernetes_engine") - // Google Cloud Functions (GCF) - // Stability: development - CloudPlatformGCPCloudFunctions = CloudPlatformKey.String("gcp_cloud_functions") - // Google Cloud App Engine (GAE) - // Stability: development - CloudPlatformGCPAppEngine = CloudPlatformKey.String("gcp_app_engine") - // Red Hat OpenShift on Google Cloud - // Stability: development - CloudPlatformGCPOpenShift = CloudPlatformKey.String("gcp_openshift") - // Server on Hetzner Cloud - // Stability: development - CloudPlatformHetznerCloudServer = CloudPlatformKey.String("hetzner.cloud_server") - // Red Hat OpenShift on IBM Cloud - // Stability: development - CloudPlatformIBMCloudOpenShift = CloudPlatformKey.String("ibm_cloud_openshift") - // Compute on Oracle Cloud Infrastructure (OCI) - // Stability: development - CloudPlatformOracleCloudCompute = CloudPlatformKey.String("oracle_cloud_compute") - // Kubernetes Engine (OKE) on Oracle Cloud Infrastructure (OCI) - // Stability: development - CloudPlatformOracleCloudOKE = CloudPlatformKey.String("oracle_cloud_oke") - // Tencent Cloud Cloud Virtual Machine (CVM) - // Stability: development - CloudPlatformTencentCloudCVM = CloudPlatformKey.String("tencent_cloud_cvm") - // Tencent Cloud Elastic Kubernetes Service (EKS) - // Stability: development - CloudPlatformTencentCloudEKS = CloudPlatformKey.String("tencent_cloud_eks") - // Tencent Cloud Serverless Cloud Function (SCF) - // Stability: development - CloudPlatformTencentCloudSCF = CloudPlatformKey.String("tencent_cloud_scf") - // Vultr Cloud Compute - // Stability: development - CloudPlatformVultrCloudCompute = CloudPlatformKey.String("vultr.cloud_compute") -) - -// Enum values for cloud.provider -var ( - // Akamai Cloud - // Stability: development - CloudProviderAkamaiCloud = CloudProviderKey.String("akamai_cloud") - // Alibaba Cloud - // Stability: development - CloudProviderAlibabaCloud = CloudProviderKey.String("alibaba_cloud") - // Amazon Web Services - // Stability: development - CloudProviderAWS = CloudProviderKey.String("aws") - // Microsoft Azure - // Stability: development - CloudProviderAzure = CloudProviderKey.String("azure") - // Google Cloud Platform - // Stability: development - CloudProviderGCP = CloudProviderKey.String("gcp") - // Heroku Platform as a Service - // Stability: development - CloudProviderHeroku = CloudProviderKey.String("heroku") - // Hetzner - // Stability: development - CloudProviderHetzner = CloudProviderKey.String("hetzner") - // IBM Cloud - // Stability: development - CloudProviderIBMCloud = CloudProviderKey.String("ibm_cloud") - // Oracle Cloud Infrastructure (OCI) - // Stability: development - CloudProviderOracleCloud = CloudProviderKey.String("oracle_cloud") - // Tencent Cloud - // Stability: development - CloudProviderTencentCloud = CloudProviderKey.String("tencent_cloud") - // Vultr - // Stability: development - CloudProviderVultr = CloudProviderKey.String("vultr") -) - -// Namespace: cloudevents -const ( - // CloudEventsEventIDKey is the attribute Key conforming to the - // "cloudevents.event_id" semantic conventions. It represents the [event_id] - // uniquely identifies the event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "123e4567-e89b-12d3-a456-426614174000", "0001" - // - // [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id - CloudEventsEventIDKey = attribute.Key("cloudevents.event_id") - - // CloudEventsEventSourceKey is the attribute Key conforming to the - // "cloudevents.event_source" semantic conventions. It represents the [source] - // identifies the context in which an event happened. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://github.com/cloudevents", "/cloudevents/spec/pull/123", - // "my-service" - // - // [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1 - CloudEventsEventSourceKey = attribute.Key("cloudevents.event_source") - - // CloudEventsEventSpecVersionKey is the attribute Key conforming to the - // "cloudevents.event_spec_version" semantic conventions. It represents the - // [version of the CloudEvents specification] which the event uses. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0 - // - // [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion - CloudEventsEventSpecVersionKey = attribute.Key("cloudevents.event_spec_version") - - // CloudEventsEventSubjectKey is the attribute Key conforming to the - // "cloudevents.event_subject" semantic conventions. It represents the [subject] - // of the event in the context of the event producer (identified by source). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: mynewfile.jpg - // - // [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject - CloudEventsEventSubjectKey = attribute.Key("cloudevents.event_subject") - - // CloudEventsEventTypeKey is the attribute Key conforming to the - // "cloudevents.event_type" semantic conventions. It represents the [event_type] - // contains a value describing the type of event related to the originating - // occurrence. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "com.github.pull_request.opened", "com.example.object.deleted.v2" - // - // [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type - CloudEventsEventTypeKey = attribute.Key("cloudevents.event_type") -) - -// CloudEventsEventID returns an attribute KeyValue conforming to the -// "cloudevents.event_id" semantic conventions. It represents the [event_id] -// uniquely identifies the event. -// -// [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id -func CloudEventsEventID(val string) attribute.KeyValue { - return CloudEventsEventIDKey.String(val) -} - -// CloudEventsEventSource returns an attribute KeyValue conforming to the -// "cloudevents.event_source" semantic conventions. It represents the [source] -// identifies the context in which an event happened. -// -// [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1 -func CloudEventsEventSource(val string) attribute.KeyValue { - return CloudEventsEventSourceKey.String(val) -} - -// CloudEventsEventSpecVersion returns an attribute KeyValue conforming to the -// "cloudevents.event_spec_version" semantic conventions. It represents the -// [version of the CloudEvents specification] which the event uses. -// -// [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion -func CloudEventsEventSpecVersion(val string) attribute.KeyValue { - return CloudEventsEventSpecVersionKey.String(val) -} - -// CloudEventsEventSubject returns an attribute KeyValue conforming to the -// "cloudevents.event_subject" semantic conventions. It represents the [subject] -// of the event in the context of the event producer (identified by source). -// -// [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject -func CloudEventsEventSubject(val string) attribute.KeyValue { - return CloudEventsEventSubjectKey.String(val) -} - -// CloudEventsEventType returns an attribute KeyValue conforming to the -// "cloudevents.event_type" semantic conventions. It represents the [event_type] -// contains a value describing the type of event related to the originating -// occurrence. -// -// [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type -func CloudEventsEventType(val string) attribute.KeyValue { - return CloudEventsEventTypeKey.String(val) -} - -// Namespace: cloudfoundry -const ( - // CloudFoundryAppIDKey is the attribute Key conforming to the - // "cloudfoundry.app.id" semantic conventions. It represents the guid of the - // application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.application_id`. This is the same value as - // reported by `cf app --guid`. - CloudFoundryAppIDKey = attribute.Key("cloudfoundry.app.id") - - // CloudFoundryAppInstanceIDKey is the attribute Key conforming to the - // "cloudfoundry.app.instance.id" semantic conventions. It represents the index - // of the application instance. 0 when just one instance is active. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0", "1" - // Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope] - // . - // It is used for logs and metrics emitted by CloudFoundry. It is - // supposed to contain the application instance index for applications - // deployed on the runtime. - // - // Application instrumentation should use the value from environment - // variable `CF_INSTANCE_INDEX`. - // - // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope - CloudFoundryAppInstanceIDKey = attribute.Key("cloudfoundry.app.instance.id") - - // CloudFoundryAppNameKey is the attribute Key conforming to the - // "cloudfoundry.app.name" semantic conventions. It represents the name of the - // application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-app-name" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.application_name`. This is the same value - // as reported by `cf apps`. - CloudFoundryAppNameKey = attribute.Key("cloudfoundry.app.name") - - // CloudFoundryOrgIDKey is the attribute Key conforming to the - // "cloudfoundry.org.id" semantic conventions. It represents the guid of the - // CloudFoundry org the application is running in. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.org_id`. This is the same value as - // reported by `cf org --guid`. - CloudFoundryOrgIDKey = attribute.Key("cloudfoundry.org.id") - - // CloudFoundryOrgNameKey is the attribute Key conforming to the - // "cloudfoundry.org.name" semantic conventions. It represents the name of the - // CloudFoundry organization the app is running in. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-org-name" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.org_name`. This is the same value as - // reported by `cf orgs`. - CloudFoundryOrgNameKey = attribute.Key("cloudfoundry.org.name") - - // CloudFoundryProcessIDKey is the attribute Key conforming to the - // "cloudfoundry.process.id" semantic conventions. It represents the UID - // identifying the process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.process_id`. It is supposed to be equal to - // `VCAP_APPLICATION.app_id` for applications deployed to the runtime. - // For system components, this could be the actual PID. - CloudFoundryProcessIDKey = attribute.Key("cloudfoundry.process.id") - - // CloudFoundryProcessTypeKey is the attribute Key conforming to the - // "cloudfoundry.process.type" semantic conventions. It represents the type of - // process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "web" - // Note: CloudFoundry applications can consist of multiple jobs. Usually the - // main process will be of type `web`. There can be additional background - // tasks or side-cars with different process types. - CloudFoundryProcessTypeKey = attribute.Key("cloudfoundry.process.type") - - // CloudFoundrySpaceIDKey is the attribute Key conforming to the - // "cloudfoundry.space.id" semantic conventions. It represents the guid of the - // CloudFoundry space the application is running in. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.space_id`. This is the same value as - // reported by `cf space --guid`. - CloudFoundrySpaceIDKey = attribute.Key("cloudfoundry.space.id") - - // CloudFoundrySpaceNameKey is the attribute Key conforming to the - // "cloudfoundry.space.name" semantic conventions. It represents the name of the - // CloudFoundry space the application is running in. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-space-name" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.space_name`. This is the same value as - // reported by `cf spaces`. - CloudFoundrySpaceNameKey = attribute.Key("cloudfoundry.space.name") - - // CloudFoundrySystemIDKey is the attribute Key conforming to the - // "cloudfoundry.system.id" semantic conventions. It represents a guid or - // another name describing the event source. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cf/gorouter" - // Note: CloudFoundry defines the `source_id` in the [Loggregator v2 envelope]. - // It is used for logs and metrics emitted by CloudFoundry. It is - // supposed to contain the component name, e.g. "gorouter", for - // CloudFoundry components. - // - // When system components are instrumented, values from the - // [Bosh spec] - // should be used. The `system.id` should be set to - // `spec.deployment/spec.name`. - // - // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope - // [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec - CloudFoundrySystemIDKey = attribute.Key("cloudfoundry.system.id") - - // CloudFoundrySystemInstanceIDKey is the attribute Key conforming to the - // "cloudfoundry.system.instance.id" semantic conventions. It represents a guid - // describing the concrete instance of the event source. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope] - // . - // It is used for logs and metrics emitted by CloudFoundry. It is - // supposed to contain the vm id for CloudFoundry components. - // - // When system components are instrumented, values from the - // [Bosh spec] - // should be used. The `system.instance.id` should be set to `spec.id`. - // - // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope - // [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec - CloudFoundrySystemInstanceIDKey = attribute.Key("cloudfoundry.system.instance.id") -) - -// CloudFoundryAppID returns an attribute KeyValue conforming to the -// "cloudfoundry.app.id" semantic conventions. It represents the guid of the -// application. -func CloudFoundryAppID(val string) attribute.KeyValue { - return CloudFoundryAppIDKey.String(val) -} - -// CloudFoundryAppInstanceID returns an attribute KeyValue conforming to the -// "cloudfoundry.app.instance.id" semantic conventions. It represents the index -// of the application instance. 0 when just one instance is active. -func CloudFoundryAppInstanceID(val string) attribute.KeyValue { - return CloudFoundryAppInstanceIDKey.String(val) -} - -// CloudFoundryAppName returns an attribute KeyValue conforming to the -// "cloudfoundry.app.name" semantic conventions. It represents the name of the -// application. -func CloudFoundryAppName(val string) attribute.KeyValue { - return CloudFoundryAppNameKey.String(val) -} - -// CloudFoundryOrgID returns an attribute KeyValue conforming to the -// "cloudfoundry.org.id" semantic conventions. It represents the guid of the -// CloudFoundry org the application is running in. -func CloudFoundryOrgID(val string) attribute.KeyValue { - return CloudFoundryOrgIDKey.String(val) -} - -// CloudFoundryOrgName returns an attribute KeyValue conforming to the -// "cloudfoundry.org.name" semantic conventions. It represents the name of the -// CloudFoundry organization the app is running in. -func CloudFoundryOrgName(val string) attribute.KeyValue { - return CloudFoundryOrgNameKey.String(val) -} - -// CloudFoundryProcessID returns an attribute KeyValue conforming to the -// "cloudfoundry.process.id" semantic conventions. It represents the UID -// identifying the process. -func CloudFoundryProcessID(val string) attribute.KeyValue { - return CloudFoundryProcessIDKey.String(val) -} - -// CloudFoundryProcessType returns an attribute KeyValue conforming to the -// "cloudfoundry.process.type" semantic conventions. It represents the type of -// process. -func CloudFoundryProcessType(val string) attribute.KeyValue { - return CloudFoundryProcessTypeKey.String(val) -} - -// CloudFoundrySpaceID returns an attribute KeyValue conforming to the -// "cloudfoundry.space.id" semantic conventions. It represents the guid of the -// CloudFoundry space the application is running in. -func CloudFoundrySpaceID(val string) attribute.KeyValue { - return CloudFoundrySpaceIDKey.String(val) -} - -// CloudFoundrySpaceName returns an attribute KeyValue conforming to the -// "cloudfoundry.space.name" semantic conventions. It represents the name of the -// CloudFoundry space the application is running in. -func CloudFoundrySpaceName(val string) attribute.KeyValue { - return CloudFoundrySpaceNameKey.String(val) -} - -// CloudFoundrySystemID returns an attribute KeyValue conforming to the -// "cloudfoundry.system.id" semantic conventions. It represents a guid or another -// name describing the event source. -func CloudFoundrySystemID(val string) attribute.KeyValue { - return CloudFoundrySystemIDKey.String(val) -} - -// CloudFoundrySystemInstanceID returns an attribute KeyValue conforming to the -// "cloudfoundry.system.instance.id" semantic conventions. It represents a guid -// describing the concrete instance of the event source. -func CloudFoundrySystemInstanceID(val string) attribute.KeyValue { - return CloudFoundrySystemInstanceIDKey.String(val) -} - -// Namespace: code -const ( - // CodeColumnNumberKey is the attribute Key conforming to the - // "code.column.number" semantic conventions. It represents the column number in - // `code.file.path` best representing the operation. It SHOULD point within the - // code unit named in `code.function.name`. This attribute MUST NOT be used on - // the Profile signal since the data is already captured in 'message Line'. This - // constraint is imposed to prevent redundancy and maintain data integrity. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - CodeColumnNumberKey = attribute.Key("code.column.number") - - // CodeFilePathKey is the attribute Key conforming to the "code.file.path" - // semantic conventions. It represents the source code file name that identifies - // the code unit as uniquely as possible (preferably an absolute file path). - // This attribute MUST NOT be used on the Profile signal since the data is - // already captured in 'message Function'. This constraint is imposed to prevent - // redundancy and maintain data integrity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: /usr/local/MyApplication/content_root/app/index.php - CodeFilePathKey = attribute.Key("code.file.path") - - // CodeFunctionNameKey is the attribute Key conforming to the - // "code.function.name" semantic conventions. It represents the method or - // function fully-qualified name without arguments. The value should fit the - // natural representation of the language runtime, which is also likely the same - // used within `code.stacktrace` attribute value. This attribute MUST NOT be - // used on the Profile signal since the data is already captured in 'message - // Function'. This constraint is imposed to prevent redundancy and maintain data - // integrity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "com.example.MyHttpService.serveRequest", - // "GuzzleHttp\Client::transfer", "fopen" - // Note: Values and format depends on each language runtime, thus it is - // impossible to provide an exhaustive list of examples. - // The values are usually the same (or prefixes of) the ones found in native - // stack trace representation stored in - // `code.stacktrace` without information on arguments. - // - // Examples: - // - // - Java method: `com.example.MyHttpService.serveRequest` - // - Java anonymous class method: `com.mycompany.Main$1.myMethod` - // - Java lambda method: - // `com.mycompany.Main$$Lambda/0x0000748ae4149c00.myMethod` - // - PHP function: `GuzzleHttp\Client::transfer` - // - Go function: `github.com/my/repo/pkg.foo.func5` - // - Elixir: `OpenTelemetry.Ctx.new` - // - Erlang: `opentelemetry_ctx:new` - // - Rust: `playground::my_module::my_cool_func` - // - C function: `fopen` - CodeFunctionNameKey = attribute.Key("code.function.name") - - // CodeLineNumberKey is the attribute Key conforming to the "code.line.number" - // semantic conventions. It represents the line number in `code.file.path` best - // representing the operation. It SHOULD point within the code unit named in - // `code.function.name`. This attribute MUST NOT be used on the Profile signal - // since the data is already captured in 'message Line'. This constraint is - // imposed to prevent redundancy and maintain data integrity. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - CodeLineNumberKey = attribute.Key("code.line.number") - - // CodeStacktraceKey is the attribute Key conforming to the "code.stacktrace" - // semantic conventions. It represents a stacktrace as a string in the natural - // representation for the language runtime. The representation is identical to - // [`exception.stacktrace`]. This attribute MUST NOT be used on the Profile - // signal since the data is already captured in 'message Location'. This - // constraint is imposed to prevent redundancy and maintain data integrity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at - // com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at - // com.example.GenerateTrace.main(GenerateTrace.java:5) - // - // [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation - CodeStacktraceKey = attribute.Key("code.stacktrace") -) - -// CodeColumnNumber returns an attribute KeyValue conforming to the -// "code.column.number" semantic conventions. It represents the column number in -// `code.file.path` best representing the operation. It SHOULD point within the -// code unit named in `code.function.name`. This attribute MUST NOT be used on -// the Profile signal since the data is already captured in 'message Line'. This -// constraint is imposed to prevent redundancy and maintain data integrity. -func CodeColumnNumber(val int) attribute.KeyValue { - return CodeColumnNumberKey.Int(val) -} - -// CodeFilePath returns an attribute KeyValue conforming to the "code.file.path" -// semantic conventions. It represents the source code file name that identifies -// the code unit as uniquely as possible (preferably an absolute file path). This -// attribute MUST NOT be used on the Profile signal since the data is already -// captured in 'message Function'. This constraint is imposed to prevent -// redundancy and maintain data integrity. -func CodeFilePath(val string) attribute.KeyValue { - return CodeFilePathKey.String(val) -} - -// CodeFunctionName returns an attribute KeyValue conforming to the -// "code.function.name" semantic conventions. It represents the method or -// function fully-qualified name without arguments. The value should fit the -// natural representation of the language runtime, which is also likely the same -// used within `code.stacktrace` attribute value. This attribute MUST NOT be used -// on the Profile signal since the data is already captured in 'message -// Function'. This constraint is imposed to prevent redundancy and maintain data -// integrity. -func CodeFunctionName(val string) attribute.KeyValue { - return CodeFunctionNameKey.String(val) -} - -// CodeLineNumber returns an attribute KeyValue conforming to the -// "code.line.number" semantic conventions. It represents the line number in -// `code.file.path` best representing the operation. It SHOULD point within the -// code unit named in `code.function.name`. This attribute MUST NOT be used on -// the Profile signal since the data is already captured in 'message Line'. This -// constraint is imposed to prevent redundancy and maintain data integrity. -func CodeLineNumber(val int) attribute.KeyValue { - return CodeLineNumberKey.Int(val) -} - -// CodeStacktrace returns an attribute KeyValue conforming to the -// "code.stacktrace" semantic conventions. It represents a stacktrace as a string -// in the natural representation for the language runtime. The representation is -// identical to [`exception.stacktrace`]. This attribute MUST NOT be used on the -// Profile signal since the data is already captured in 'message Location'. This -// constraint is imposed to prevent redundancy and maintain data integrity. -// -// [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation -func CodeStacktrace(val string) attribute.KeyValue { - return CodeStacktraceKey.String(val) -} - -// Namespace: container -const ( - // ContainerCommandKey is the attribute Key conforming to the - // "container.command" semantic conventions. It represents the command used to - // run the container (i.e. the command name). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "otelcontribcol" - // Note: If using embedded credentials or sensitive data, it is recommended to - // remove them to prevent potential leakage. - ContainerCommandKey = attribute.Key("container.command") - - // ContainerCommandArgsKey is the attribute Key conforming to the - // "container.command_args" semantic conventions. It represents the all the - // command arguments (including the command/executable itself) run by the - // container. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "otelcontribcol", "--config", "config.yaml" - ContainerCommandArgsKey = attribute.Key("container.command_args") - - // ContainerCommandLineKey is the attribute Key conforming to the - // "container.command_line" semantic conventions. It represents the full command - // run by the container as a single string representing the full command. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "otelcontribcol --config config.yaml" - ContainerCommandLineKey = attribute.Key("container.command_line") - - // ContainerCSIPluginNameKey is the attribute Key conforming to the - // "container.csi.plugin.name" semantic conventions. It represents the name of - // the CSI ([Container Storage Interface]) plugin used by the volume. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "pd.csi.storage.gke.io" - // Note: This can sometimes be referred to as a "driver" in CSI implementations. - // This should represent the `name` field of the GetPluginInfo RPC. - // - // [Container Storage Interface]: https://github.com/container-storage-interface/spec - ContainerCSIPluginNameKey = attribute.Key("container.csi.plugin.name") - - // ContainerCSIVolumeIDKey is the attribute Key conforming to the - // "container.csi.volume.id" semantic conventions. It represents the unique - // volume ID returned by the CSI ([Container Storage Interface]) plugin. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "projects/my-gcp-project/zones/my-gcp-zone/disks/my-gcp-disk" - // Note: This can sometimes be referred to as a "volume handle" in CSI - // implementations. This should represent the `Volume.volume_id` field in CSI - // spec. - // - // [Container Storage Interface]: https://github.com/container-storage-interface/spec - ContainerCSIVolumeIDKey = attribute.Key("container.csi.volume.id") - - // ContainerIDKey is the attribute Key conforming to the "container.id" semantic - // conventions. It represents the container ID. Usually a UUID, as for example - // used to [identify Docker containers]. The UUID might be abbreviated. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "a3bf90e006b2" - // - // [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification - ContainerIDKey = attribute.Key("container.id") - - // ContainerImageIDKey is the attribute Key conforming to the - // "container.image.id" semantic conventions. It represents the runtime specific - // image identifier. Usually a hash algorithm followed by a UUID. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "sha256:19c92d0a00d1b66d897bceaa7319bee0dd38a10a851c60bcec9474aa3f01e50f" - // Note: Docker defines a sha256 of the image id; `container.image.id` - // corresponds to the `Image` field from the Docker container inspect [API] - // endpoint. - // K8s defines a link to the container registry repository with digest - // `"imageID": "registry.azurecr.io /namespace/service/dockerfile@sha256:bdeabd40c3a8a492eaf9e8e44d0ebbb84bac7ee25ac0cf8a7159d25f62555625"` - // . - // The ID is assigned by the container runtime and can vary in different - // environments. Consider using `oci.manifest.digest` if it is important to - // identify the same image in different environments/runtimes. - // - // [API]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Container/operation/ContainerInspect - ContainerImageIDKey = attribute.Key("container.image.id") - - // ContainerImageNameKey is the attribute Key conforming to the - // "container.image.name" semantic conventions. It represents the name of the - // image the container was built on. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "gcr.io/opentelemetry/operator" - ContainerImageNameKey = attribute.Key("container.image.name") - - // ContainerImageRepoDigestsKey is the attribute Key conforming to the - // "container.image.repo_digests" semantic conventions. It represents the repo - // digests of the container image as provided by the container runtime. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: - // "example@sha256:afcc7f1ac1b49db317a7196c902e61c6c3c4607d63599ee1a82d702d249a0ccb", - // "internal.registry.example.com:5000/example@sha256:b69959407d21e8a062e0416bf13405bb2b71ed7a84dde4158ebafacfa06f5578" - // Note: [Docker] and [CRI] report those under the `RepoDigests` field. - // - // [Docker]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect - // [CRI]: https://github.com/kubernetes/cri-api/blob/c75ef5b473bbe2d0a4fc92f82235efd665ea8e9f/pkg/apis/runtime/v1/api.proto#L1237-L1238 - ContainerImageRepoDigestsKey = attribute.Key("container.image.repo_digests") - - // ContainerImageTagsKey is the attribute Key conforming to the - // "container.image.tags" semantic conventions. It represents the container - // image tags. An example can be found in [Docker Image Inspect]. Should be only - // the `` section of the full name for example from - // `registry.example.com/my-org/my-image:`. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "v1.27.1", "3.5.7-0" - // - // [Docker Image Inspect]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect - ContainerImageTagsKey = attribute.Key("container.image.tags") - - // ContainerNameKey is the attribute Key conforming to the "container.name" - // semantic conventions. It represents the container name used by container - // runtime. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry-autoconf" - ContainerNameKey = attribute.Key("container.name") - - // ContainerRuntimeDescriptionKey is the attribute Key conforming to the - // "container.runtime.description" semantic conventions. It represents a - // description about the runtime which could include, for example details about - // the CRI/API version being used or other customisations. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "docker://19.3.1 - CRI: 1.22.0" - ContainerRuntimeDescriptionKey = attribute.Key("container.runtime.description") - - // ContainerRuntimeNameKey is the attribute Key conforming to the - // "container.runtime.name" semantic conventions. It represents the container - // runtime managing this container. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "docker", "containerd", "rkt" - ContainerRuntimeNameKey = attribute.Key("container.runtime.name") - - // ContainerRuntimeVersionKey is the attribute Key conforming to the - // "container.runtime.version" semantic conventions. It represents the version - // of the runtime of this process, as returned by the runtime without - // modification. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0.0 - ContainerRuntimeVersionKey = attribute.Key("container.runtime.version") -) - -// ContainerCommand returns an attribute KeyValue conforming to the -// "container.command" semantic conventions. It represents the command used to -// run the container (i.e. the command name). -func ContainerCommand(val string) attribute.KeyValue { - return ContainerCommandKey.String(val) -} - -// ContainerCommandArgs returns an attribute KeyValue conforming to the -// "container.command_args" semantic conventions. It represents the all the -// command arguments (including the command/executable itself) run by the -// container. -func ContainerCommandArgs(val ...string) attribute.KeyValue { - return ContainerCommandArgsKey.StringSlice(val) -} - -// ContainerCommandLine returns an attribute KeyValue conforming to the -// "container.command_line" semantic conventions. It represents the full command -// run by the container as a single string representing the full command. -func ContainerCommandLine(val string) attribute.KeyValue { - return ContainerCommandLineKey.String(val) -} - -// ContainerCSIPluginName returns an attribute KeyValue conforming to the -// "container.csi.plugin.name" semantic conventions. It represents the name of -// the CSI ([Container Storage Interface]) plugin used by the volume. -// -// [Container Storage Interface]: https://github.com/container-storage-interface/spec -func ContainerCSIPluginName(val string) attribute.KeyValue { - return ContainerCSIPluginNameKey.String(val) -} - -// ContainerCSIVolumeID returns an attribute KeyValue conforming to the -// "container.csi.volume.id" semantic conventions. It represents the unique -// volume ID returned by the CSI ([Container Storage Interface]) plugin. -// -// [Container Storage Interface]: https://github.com/container-storage-interface/spec -func ContainerCSIVolumeID(val string) attribute.KeyValue { - return ContainerCSIVolumeIDKey.String(val) -} - -// ContainerID returns an attribute KeyValue conforming to the "container.id" -// semantic conventions. It represents the container ID. Usually a UUID, as for -// example used to [identify Docker containers]. The UUID might be abbreviated. -// -// [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification -func ContainerID(val string) attribute.KeyValue { - return ContainerIDKey.String(val) -} - -// ContainerImageID returns an attribute KeyValue conforming to the -// "container.image.id" semantic conventions. It represents the runtime specific -// image identifier. Usually a hash algorithm followed by a UUID. -func ContainerImageID(val string) attribute.KeyValue { - return ContainerImageIDKey.String(val) -} - -// ContainerImageName returns an attribute KeyValue conforming to the -// "container.image.name" semantic conventions. It represents the name of the -// image the container was built on. -func ContainerImageName(val string) attribute.KeyValue { - return ContainerImageNameKey.String(val) -} - -// ContainerImageRepoDigests returns an attribute KeyValue conforming to the -// "container.image.repo_digests" semantic conventions. It represents the repo -// digests of the container image as provided by the container runtime. -func ContainerImageRepoDigests(val ...string) attribute.KeyValue { - return ContainerImageRepoDigestsKey.StringSlice(val) -} - -// ContainerImageTags returns an attribute KeyValue conforming to the -// "container.image.tags" semantic conventions. It represents the container image -// tags. An example can be found in [Docker Image Inspect]. Should be only the -// `` section of the full name for example from -// `registry.example.com/my-org/my-image:`. -// -// [Docker Image Inspect]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect -func ContainerImageTags(val ...string) attribute.KeyValue { - return ContainerImageTagsKey.StringSlice(val) -} - -// ContainerLabel returns an attribute KeyValue conforming to the -// "container.label" semantic conventions. It represents the container labels, -// `` being the label name, the value being the label value. -func ContainerLabel(key string, val string) attribute.KeyValue { - return attribute.String("container.label."+key, val) -} - -// ContainerName returns an attribute KeyValue conforming to the "container.name" -// semantic conventions. It represents the container name used by container -// runtime. -func ContainerName(val string) attribute.KeyValue { - return ContainerNameKey.String(val) -} - -// ContainerRuntimeDescription returns an attribute KeyValue conforming to the -// "container.runtime.description" semantic conventions. It represents a -// description about the runtime which could include, for example details about -// the CRI/API version being used or other customisations. -func ContainerRuntimeDescription(val string) attribute.KeyValue { - return ContainerRuntimeDescriptionKey.String(val) -} - -// ContainerRuntimeName returns an attribute KeyValue conforming to the -// "container.runtime.name" semantic conventions. It represents the container -// runtime managing this container. -func ContainerRuntimeName(val string) attribute.KeyValue { - return ContainerRuntimeNameKey.String(val) -} - -// ContainerRuntimeVersion returns an attribute KeyValue conforming to the -// "container.runtime.version" semantic conventions. It represents the version of -// the runtime of this process, as returned by the runtime without modification. -func ContainerRuntimeVersion(val string) attribute.KeyValue { - return ContainerRuntimeVersionKey.String(val) -} - -// Namespace: cpu -const ( - // CPULogicalNumberKey is the attribute Key conforming to the - // "cpu.logical_number" semantic conventions. It represents the logical CPU - // number [0..n-1]. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1 - CPULogicalNumberKey = attribute.Key("cpu.logical_number") - - // CPUModeKey is the attribute Key conforming to the "cpu.mode" semantic - // conventions. It represents the mode of the CPU. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "user", "system" - CPUModeKey = attribute.Key("cpu.mode") -) - -// CPULogicalNumber returns an attribute KeyValue conforming to the -// "cpu.logical_number" semantic conventions. It represents the logical CPU -// number [0..n-1]. -func CPULogicalNumber(val int) attribute.KeyValue { - return CPULogicalNumberKey.Int(val) -} - -// Enum values for cpu.mode -var ( - // User - // Stability: development - CPUModeUser = CPUModeKey.String("user") - // System - // Stability: development - CPUModeSystem = CPUModeKey.String("system") - // Nice - // Stability: development - CPUModeNice = CPUModeKey.String("nice") - // Idle - // Stability: development - CPUModeIdle = CPUModeKey.String("idle") - // IO Wait - // Stability: development - CPUModeIOWait = CPUModeKey.String("iowait") - // Interrupt - // Stability: development - CPUModeInterrupt = CPUModeKey.String("interrupt") - // Steal - // Stability: development - CPUModeSteal = CPUModeKey.String("steal") - // Kernel - // Stability: development - CPUModeKernel = CPUModeKey.String("kernel") -) - -// Namespace: db -const ( - // DBClientConnectionPoolNameKey is the attribute Key conforming to the - // "db.client.connection.pool.name" semantic conventions. It represents the name - // of the connection pool; unique within the instrumented application. In case - // the connection pool implementation doesn't provide a name, instrumentation - // SHOULD use a combination of parameters that would make the name unique, for - // example, combining attributes `server.address`, `server.port`, and - // `db.namespace`, formatted as `server.address:server.port/db.namespace`. - // Instrumentations that generate connection pool name following different - // patterns SHOULD document it. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "myDataSource" - DBClientConnectionPoolNameKey = attribute.Key("db.client.connection.pool.name") - - // DBClientConnectionStateKey is the attribute Key conforming to the - // "db.client.connection.state" semantic conventions. It represents the state of - // a connection in the pool. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "idle" - DBClientConnectionStateKey = attribute.Key("db.client.connection.state") - - // DBCollectionNameKey is the attribute Key conforming to the - // "db.collection.name" semantic conventions. It represents the name of a - // collection (table, container) within the database. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "public.users", "customers" - // Note: It is RECOMMENDED to capture the value as provided by the application - // without attempting to do any case normalization. - // - // The collection name SHOULD NOT be extracted from `db.query.text`, - // when the database system supports query text with multiple collections - // in non-batch operations. - // - // For batch operations, if the individual operations are known to have the same - // collection name then that collection name SHOULD be used. - DBCollectionNameKey = attribute.Key("db.collection.name") - - // DBNamespaceKey is the attribute Key conforming to the "db.namespace" semantic - // conventions. It represents the name of the database, fully qualified within - // the server address and port. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "customers", "test.users" - // Note: If a database system has multiple namespace components, they SHOULD be - // concatenated from the most general to the most specific namespace component, - // using `|` as a separator between the components. Any missing components (and - // their associated separators) SHOULD be omitted. - // Semantic conventions for individual database systems SHOULD document what - // `db.namespace` means in the context of that system. - // It is RECOMMENDED to capture the value as provided by the application without - // attempting to do any case normalization. - DBNamespaceKey = attribute.Key("db.namespace") - - // DBOperationBatchSizeKey is the attribute Key conforming to the - // "db.operation.batch.size" semantic conventions. It represents the number of - // queries included in a batch operation. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 2, 3, 4 - // Note: Operations are only considered batches when they contain two or more - // operations, and so `db.operation.batch.size` SHOULD never be `1`. - DBOperationBatchSizeKey = attribute.Key("db.operation.batch.size") - - // DBOperationNameKey is the attribute Key conforming to the "db.operation.name" - // semantic conventions. It represents the name of the operation or command - // being executed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "findAndModify", "HMSET", "SELECT" - // Note: It is RECOMMENDED to capture the value as provided by the application - // without attempting to do any case normalization. - // - // The operation name SHOULD NOT be extracted from `db.query.text`, - // when the database system supports query text with multiple operations - // in non-batch operations. - // - // If spaces can occur in the operation name, multiple consecutive spaces - // SHOULD be normalized to a single space. - // - // For batch operations, if the individual operations are known to have the same - // operation name - // then that operation name SHOULD be used prepended by `BATCH `, - // otherwise `db.operation.name` SHOULD be `BATCH` or some other database - // system specific term if more applicable. - DBOperationNameKey = attribute.Key("db.operation.name") - - // DBQuerySummaryKey is the attribute Key conforming to the "db.query.summary" - // semantic conventions. It represents the low cardinality summary of a database - // query. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "SELECT wuser_table", "INSERT shipping_details SELECT orders", "get - // user by id" - // Note: The query summary describes a class of database queries and is useful - // as a grouping key, especially when analyzing telemetry for database - // calls involving complex queries. - // - // Summary may be available to the instrumentation through - // instrumentation hooks or other means. If it is not available, - // instrumentations - // that support query parsing SHOULD generate a summary following - // [Generating query summary] - // section. - // - // [Generating query summary]: /docs/db/database-spans.md#generating-a-summary-of-the-query - DBQuerySummaryKey = attribute.Key("db.query.summary") - - // DBQueryTextKey is the attribute Key conforming to the "db.query.text" - // semantic conventions. It represents the database query being executed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "SELECT * FROM wuser_table where username = ?", "SET mykey ?" - // Note: For sanitization see [Sanitization of `db.query.text`]. - // For batch operations, if the individual operations are known to have the same - // query text then that query text SHOULD be used, otherwise all of the - // individual query texts SHOULD be concatenated with separator `; ` or some - // other database system specific separator if more applicable. - // Parameterized query text SHOULD NOT be sanitized. Even though parameterized - // query text can potentially have sensitive data, by using a parameterized - // query the user is giving a strong signal that any sensitive data will be - // passed as parameter values, and the benefit to observability of capturing the - // static part of the query text by default outweighs the risk. - // - // [Sanitization of `db.query.text`]: /docs/db/database-spans.md#sanitization-of-dbquerytext - DBQueryTextKey = attribute.Key("db.query.text") - - // DBResponseReturnedRowsKey is the attribute Key conforming to the - // "db.response.returned_rows" semantic conventions. It represents the number of - // rows returned by the operation. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 10, 30, 1000 - DBResponseReturnedRowsKey = attribute.Key("db.response.returned_rows") - - // DBResponseStatusCodeKey is the attribute Key conforming to the - // "db.response.status_code" semantic conventions. It represents the database - // response status code. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "102", "ORA-17002", "08P01", "404" - // Note: The status code returned by the database. Usually it represents an - // error code, but may also represent partial success, warning, or differentiate - // between various types of successful outcomes. - // Semantic conventions for individual database systems SHOULD document what - // `db.response.status_code` means in the context of that system. - DBResponseStatusCodeKey = attribute.Key("db.response.status_code") - - // DBStoredProcedureNameKey is the attribute Key conforming to the - // "db.stored_procedure.name" semantic conventions. It represents the name of a - // stored procedure within the database. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "GetCustomer" - // Note: It is RECOMMENDED to capture the value as provided by the application - // without attempting to do any case normalization. - // - // For batch operations, if the individual operations are known to have the same - // stored procedure name then that stored procedure name SHOULD be used. - DBStoredProcedureNameKey = attribute.Key("db.stored_procedure.name") - - // DBSystemNameKey is the attribute Key conforming to the "db.system.name" - // semantic conventions. It represents the database management system (DBMS) - // product as identified by the client instrumentation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: - // Note: The actual DBMS may differ from the one identified by the client. For - // example, when using PostgreSQL client libraries to connect to a CockroachDB, - // the `db.system.name` is set to `postgresql` based on the instrumentation's - // best knowledge. - DBSystemNameKey = attribute.Key("db.system.name") -) - -// DBClientConnectionPoolName returns an attribute KeyValue conforming to the -// "db.client.connection.pool.name" semantic conventions. It represents the name -// of the connection pool; unique within the instrumented application. In case -// the connection pool implementation doesn't provide a name, instrumentation -// SHOULD use a combination of parameters that would make the name unique, for -// example, combining attributes `server.address`, `server.port`, and -// `db.namespace`, formatted as `server.address:server.port/db.namespace`. -// Instrumentations that generate connection pool name following different -// patterns SHOULD document it. -func DBClientConnectionPoolName(val string) attribute.KeyValue { - return DBClientConnectionPoolNameKey.String(val) -} - -// DBCollectionName returns an attribute KeyValue conforming to the -// "db.collection.name" semantic conventions. It represents the name of a -// collection (table, container) within the database. -func DBCollectionName(val string) attribute.KeyValue { - return DBCollectionNameKey.String(val) -} - -// DBNamespace returns an attribute KeyValue conforming to the "db.namespace" -// semantic conventions. It represents the name of the database, fully qualified -// within the server address and port. -func DBNamespace(val string) attribute.KeyValue { - return DBNamespaceKey.String(val) -} - -// DBOperationBatchSize returns an attribute KeyValue conforming to the -// "db.operation.batch.size" semantic conventions. It represents the number of -// queries included in a batch operation. -func DBOperationBatchSize(val int) attribute.KeyValue { - return DBOperationBatchSizeKey.Int(val) -} - -// DBOperationName returns an attribute KeyValue conforming to the -// "db.operation.name" semantic conventions. It represents the name of the -// operation or command being executed. -func DBOperationName(val string) attribute.KeyValue { - return DBOperationNameKey.String(val) -} - -// DBOperationParameter returns an attribute KeyValue conforming to the -// "db.operation.parameter" semantic conventions. It represents a database -// operation parameter, with `` being the parameter name, and the attribute -// value being a string representation of the parameter value. -func DBOperationParameter(key string, val string) attribute.KeyValue { - return attribute.String("db.operation.parameter."+key, val) -} - -// DBQueryParameter returns an attribute KeyValue conforming to the -// "db.query.parameter" semantic conventions. It represents a database query -// parameter, with `` being the parameter name, and the attribute value -// being a string representation of the parameter value. -func DBQueryParameter(key string, val string) attribute.KeyValue { - return attribute.String("db.query.parameter."+key, val) -} - -// DBQuerySummary returns an attribute KeyValue conforming to the -// "db.query.summary" semantic conventions. It represents the low cardinality -// summary of a database query. -func DBQuerySummary(val string) attribute.KeyValue { - return DBQuerySummaryKey.String(val) -} - -// DBQueryText returns an attribute KeyValue conforming to the "db.query.text" -// semantic conventions. It represents the database query being executed. -func DBQueryText(val string) attribute.KeyValue { - return DBQueryTextKey.String(val) -} - -// DBResponseReturnedRows returns an attribute KeyValue conforming to the -// "db.response.returned_rows" semantic conventions. It represents the number of -// rows returned by the operation. -func DBResponseReturnedRows(val int) attribute.KeyValue { - return DBResponseReturnedRowsKey.Int(val) -} - -// DBResponseStatusCode returns an attribute KeyValue conforming to the -// "db.response.status_code" semantic conventions. It represents the database -// response status code. -func DBResponseStatusCode(val string) attribute.KeyValue { - return DBResponseStatusCodeKey.String(val) -} - -// DBStoredProcedureName returns an attribute KeyValue conforming to the -// "db.stored_procedure.name" semantic conventions. It represents the name of a -// stored procedure within the database. -func DBStoredProcedureName(val string) attribute.KeyValue { - return DBStoredProcedureNameKey.String(val) -} - -// Enum values for db.client.connection.state -var ( - // idle - // Stability: development - DBClientConnectionStateIdle = DBClientConnectionStateKey.String("idle") - // used - // Stability: development - DBClientConnectionStateUsed = DBClientConnectionStateKey.String("used") -) - -// Enum values for db.system.name -var ( - // Some other SQL database. Fallback only. - // Stability: development - DBSystemNameOtherSQL = DBSystemNameKey.String("other_sql") - // [Adabas (Adaptable Database System)] - // Stability: development - // - // [Adabas (Adaptable Database System)]: https://documentation.softwareag.com/?pf=adabas - DBSystemNameSoftwareagAdabas = DBSystemNameKey.String("softwareag.adabas") - // [Actian Ingres] - // Stability: development - // - // [Actian Ingres]: https://www.actian.com/databases/ingres/ - DBSystemNameActianIngres = DBSystemNameKey.String("actian.ingres") - // [Amazon DynamoDB] - // Stability: development - // - // [Amazon DynamoDB]: https://aws.amazon.com/pm/dynamodb/ - DBSystemNameAWSDynamoDB = DBSystemNameKey.String("aws.dynamodb") - // [Amazon Redshift] - // Stability: development - // - // [Amazon Redshift]: https://aws.amazon.com/redshift/ - DBSystemNameAWSRedshift = DBSystemNameKey.String("aws.redshift") - // [Azure Cosmos DB] - // Stability: development - // - // [Azure Cosmos DB]: https://learn.microsoft.com/azure/cosmos-db - DBSystemNameAzureCosmosDB = DBSystemNameKey.String("azure.cosmosdb") - // [InterSystems Caché] - // Stability: development - // - // [InterSystems Caché]: https://www.intersystems.com/products/cache/ - DBSystemNameIntersystemsCache = DBSystemNameKey.String("intersystems.cache") - // [Apache Cassandra] - // Stability: development - // - // [Apache Cassandra]: https://cassandra.apache.org/ - DBSystemNameCassandra = DBSystemNameKey.String("cassandra") - // [ClickHouse] - // Stability: development - // - // [ClickHouse]: https://clickhouse.com/ - DBSystemNameClickHouse = DBSystemNameKey.String("clickhouse") - // [CockroachDB] - // Stability: development - // - // [CockroachDB]: https://www.cockroachlabs.com/ - DBSystemNameCockroachDB = DBSystemNameKey.String("cockroachdb") - // [Couchbase] - // Stability: development - // - // [Couchbase]: https://www.couchbase.com/ - DBSystemNameCouchbase = DBSystemNameKey.String("couchbase") - // [Apache CouchDB] - // Stability: development - // - // [Apache CouchDB]: https://couchdb.apache.org/ - DBSystemNameCouchDB = DBSystemNameKey.String("couchdb") - // [Apache Derby] - // Stability: development - // - // [Apache Derby]: https://db.apache.org/derby/ - DBSystemNameDerby = DBSystemNameKey.String("derby") - // [Elasticsearch] - // Stability: development - // - // [Elasticsearch]: https://www.elastic.co/elasticsearch - DBSystemNameElasticsearch = DBSystemNameKey.String("elasticsearch") - // [Firebird] - // Stability: development - // - // [Firebird]: https://www.firebirdsql.org/ - DBSystemNameFirebirdSQL = DBSystemNameKey.String("firebirdsql") - // [Google Cloud Spanner] - // Stability: development - // - // [Google Cloud Spanner]: https://cloud.google.com/spanner - DBSystemNameGCPSpanner = DBSystemNameKey.String("gcp.spanner") - // [Apache Geode] - // Stability: development - // - // [Apache Geode]: https://geode.apache.org/ - DBSystemNameGeode = DBSystemNameKey.String("geode") - // [H2 Database] - // Stability: development - // - // [H2 Database]: https://h2database.com/ - DBSystemNameH2database = DBSystemNameKey.String("h2database") - // [Apache HBase] - // Stability: development - // - // [Apache HBase]: https://hbase.apache.org/ - DBSystemNameHBase = DBSystemNameKey.String("hbase") - // [Apache Hive] - // Stability: development - // - // [Apache Hive]: https://hive.apache.org/ - DBSystemNameHive = DBSystemNameKey.String("hive") - // [HyperSQL Database] - // Stability: development - // - // [HyperSQL Database]: https://hsqldb.org/ - DBSystemNameHSQLDB = DBSystemNameKey.String("hsqldb") - // [IBM Db2] - // Stability: development - // - // [IBM Db2]: https://www.ibm.com/db2 - DBSystemNameIBMDB2 = DBSystemNameKey.String("ibm.db2") - // [IBM Informix] - // Stability: development - // - // [IBM Informix]: https://www.ibm.com/products/informix - DBSystemNameIBMInformix = DBSystemNameKey.String("ibm.informix") - // [IBM Netezza] - // Stability: development - // - // [IBM Netezza]: https://www.ibm.com/products/netezza - DBSystemNameIBMNetezza = DBSystemNameKey.String("ibm.netezza") - // [InfluxDB] - // Stability: development - // - // [InfluxDB]: https://www.influxdata.com/ - DBSystemNameInfluxDB = DBSystemNameKey.String("influxdb") - // [Instant] - // Stability: development - // - // [Instant]: https://www.instantdb.com/ - DBSystemNameInstantDB = DBSystemNameKey.String("instantdb") - // [MariaDB] - // Stability: stable - // - // [MariaDB]: https://mariadb.org/ - DBSystemNameMariaDB = DBSystemNameKey.String("mariadb") - // [Memcached] - // Stability: development - // - // [Memcached]: https://memcached.org/ - DBSystemNameMemcached = DBSystemNameKey.String("memcached") - // [MongoDB] - // Stability: development - // - // [MongoDB]: https://www.mongodb.com/ - DBSystemNameMongoDB = DBSystemNameKey.String("mongodb") - // [Microsoft SQL Server] - // Stability: stable - // - // [Microsoft SQL Server]: https://www.microsoft.com/sql-server - DBSystemNameMicrosoftSQLServer = DBSystemNameKey.String("microsoft.sql_server") - // [MySQL] - // Stability: stable - // - // [MySQL]: https://www.mysql.com/ - DBSystemNameMySQL = DBSystemNameKey.String("mysql") - // [Neo4j] - // Stability: development - // - // [Neo4j]: https://neo4j.com/ - DBSystemNameNeo4j = DBSystemNameKey.String("neo4j") - // [OpenSearch] - // Stability: development - // - // [OpenSearch]: https://opensearch.org/ - DBSystemNameOpenSearch = DBSystemNameKey.String("opensearch") - // [Oracle Database] - // Stability: development - // - // [Oracle Database]: https://www.oracle.com/database/ - DBSystemNameOracleDB = DBSystemNameKey.String("oracle.db") - // [PostgreSQL] - // Stability: stable - // - // [PostgreSQL]: https://www.postgresql.org/ - DBSystemNamePostgreSQL = DBSystemNameKey.String("postgresql") - // [Redis] - // Stability: development - // - // [Redis]: https://redis.io/ - DBSystemNameRedis = DBSystemNameKey.String("redis") - // [SAP HANA] - // Stability: development - // - // [SAP HANA]: https://www.sap.com/products/technology-platform/hana/what-is-sap-hana.html - DBSystemNameSAPHANA = DBSystemNameKey.String("sap.hana") - // [SAP MaxDB] - // Stability: development - // - // [SAP MaxDB]: https://maxdb.sap.com/ - DBSystemNameSAPMaxDB = DBSystemNameKey.String("sap.maxdb") - // [SQLite] - // Stability: development - // - // [SQLite]: https://www.sqlite.org/ - DBSystemNameSQLite = DBSystemNameKey.String("sqlite") - // [Teradata] - // Stability: development - // - // [Teradata]: https://www.teradata.com/ - DBSystemNameTeradata = DBSystemNameKey.String("teradata") - // [Trino] - // Stability: development - // - // [Trino]: https://trino.io/ - DBSystemNameTrino = DBSystemNameKey.String("trino") -) - -// Namespace: deployment -const ( - // DeploymentEnvironmentNameKey is the attribute Key conforming to the - // "deployment.environment.name" semantic conventions. It represents the name of - // the [deployment environment] (aka deployment tier). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "staging", "production" - // Note: `deployment.environment.name` does not affect the uniqueness - // constraints defined through - // the `service.namespace`, `service.name` and `service.instance.id` resource - // attributes. - // This implies that resources carrying the following attribute combinations - // MUST be - // considered to be identifying the same service: - // - // - `service.name=frontend`, `deployment.environment.name=production` - // - `service.name=frontend`, `deployment.environment.name=staging`. - // - // - // [deployment environment]: https://wikipedia.org/wiki/Deployment_environment - DeploymentEnvironmentNameKey = attribute.Key("deployment.environment.name") - - // DeploymentIDKey is the attribute Key conforming to the "deployment.id" - // semantic conventions. It represents the id of the deployment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1208" - DeploymentIDKey = attribute.Key("deployment.id") - - // DeploymentNameKey is the attribute Key conforming to the "deployment.name" - // semantic conventions. It represents the name of the deployment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "deploy my app", "deploy-frontend" - DeploymentNameKey = attribute.Key("deployment.name") - - // DeploymentStatusKey is the attribute Key conforming to the - // "deployment.status" semantic conventions. It represents the status of the - // deployment. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - DeploymentStatusKey = attribute.Key("deployment.status") -) - -// DeploymentEnvironmentName returns an attribute KeyValue conforming to the -// "deployment.environment.name" semantic conventions. It represents the name of -// the [deployment environment] (aka deployment tier). -// -// [deployment environment]: https://wikipedia.org/wiki/Deployment_environment -func DeploymentEnvironmentName(val string) attribute.KeyValue { - return DeploymentEnvironmentNameKey.String(val) -} - -// DeploymentID returns an attribute KeyValue conforming to the "deployment.id" -// semantic conventions. It represents the id of the deployment. -func DeploymentID(val string) attribute.KeyValue { - return DeploymentIDKey.String(val) -} - -// DeploymentName returns an attribute KeyValue conforming to the -// "deployment.name" semantic conventions. It represents the name of the -// deployment. -func DeploymentName(val string) attribute.KeyValue { - return DeploymentNameKey.String(val) -} - -// Enum values for deployment.status -var ( - // failed - // Stability: development - DeploymentStatusFailed = DeploymentStatusKey.String("failed") - // succeeded - // Stability: development - DeploymentStatusSucceeded = DeploymentStatusKey.String("succeeded") -) - -// Namespace: destination -const ( - // DestinationAddressKey is the attribute Key conforming to the - // "destination.address" semantic conventions. It represents the destination - // address - domain name if available without reverse DNS lookup; otherwise, IP - // address or Unix domain socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "destination.example.com", "10.1.2.80", "/tmp/my.sock" - // Note: When observed from the source side, and when communicating through an - // intermediary, `destination.address` SHOULD represent the destination address - // behind any intermediaries, for example proxies, if it's available. - DestinationAddressKey = attribute.Key("destination.address") - - // DestinationPortKey is the attribute Key conforming to the "destination.port" - // semantic conventions. It represents the destination port number. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 3389, 2888 - DestinationPortKey = attribute.Key("destination.port") -) - -// DestinationAddress returns an attribute KeyValue conforming to the -// "destination.address" semantic conventions. It represents the destination -// address - domain name if available without reverse DNS lookup; otherwise, IP -// address or Unix domain socket name. -func DestinationAddress(val string) attribute.KeyValue { - return DestinationAddressKey.String(val) -} - -// DestinationPort returns an attribute KeyValue conforming to the -// "destination.port" semantic conventions. It represents the destination port -// number. -func DestinationPort(val int) attribute.KeyValue { - return DestinationPortKey.Int(val) -} - -// Namespace: device -const ( - // DeviceIDKey is the attribute Key conforming to the "device.id" semantic - // conventions. It represents a unique identifier representing the device. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "123456789012345", "01:23:45:67:89:AB" - // Note: Its value SHOULD be identical for all apps on a device and it SHOULD - // NOT change if an app is uninstalled and re-installed. - // However, it might be resettable by the user for all apps on a device. - // Hardware IDs (e.g. vendor-specific serial number, IMEI or MAC address) MAY be - // used as values. - // - // More information about Android identifier best practices can be found in the - // [Android user data IDs guide]. - // - // > [!WARNING]> This attribute may contain sensitive (PII) information. Caution - // > should be taken when storing personal data or anything which can identify a - // > user. GDPR and data protection laws may apply, - // > ensure you do your own due diligence.> Due to these reasons, this - // > identifier is not recommended for consumer applications and will likely - // > result in rejection from both Google Play and App Store. - // > However, it may be appropriate for specific enterprise scenarios, such as - // > kiosk devices or enterprise-managed devices, with appropriate compliance - // > clearance. - // > Any instrumentation providing this identifier MUST implement it as an - // > opt-in feature.> See [`app.installation.id`]> for a more - // > privacy-preserving alternative. - // - // [Android user data IDs guide]: https://developer.android.com/training/articles/user-data-ids - // [`app.installation.id`]: /docs/registry/attributes/app.md#app-installation-id - DeviceIDKey = attribute.Key("device.id") - - // DeviceManufacturerKey is the attribute Key conforming to the - // "device.manufacturer" semantic conventions. It represents the name of the - // device manufacturer. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Apple", "Samsung" - // Note: The Android OS provides this field via [Build]. iOS apps SHOULD - // hardcode the value `Apple`. - // - // [Build]: https://developer.android.com/reference/android/os/Build#MANUFACTURER - DeviceManufacturerKey = attribute.Key("device.manufacturer") - - // DeviceModelIdentifierKey is the attribute Key conforming to the - // "device.model.identifier" semantic conventions. It represents the model - // identifier for the device. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "iPhone3,4", "SM-G920F" - // Note: It's recommended this value represents a machine-readable version of - // the model identifier rather than the market or consumer-friendly name of the - // device. - DeviceModelIdentifierKey = attribute.Key("device.model.identifier") - - // DeviceModelNameKey is the attribute Key conforming to the "device.model.name" - // semantic conventions. It represents the marketing name for the device model. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "iPhone 6s Plus", "Samsung Galaxy S6" - // Note: It's recommended this value represents a human-readable version of the - // device model rather than a machine-readable alternative. - DeviceModelNameKey = attribute.Key("device.model.name") -) - -// DeviceID returns an attribute KeyValue conforming to the "device.id" semantic -// conventions. It represents a unique identifier representing the device. -func DeviceID(val string) attribute.KeyValue { - return DeviceIDKey.String(val) -} - -// DeviceManufacturer returns an attribute KeyValue conforming to the -// "device.manufacturer" semantic conventions. It represents the name of the -// device manufacturer. -func DeviceManufacturer(val string) attribute.KeyValue { - return DeviceManufacturerKey.String(val) -} - -// DeviceModelIdentifier returns an attribute KeyValue conforming to the -// "device.model.identifier" semantic conventions. It represents the model -// identifier for the device. -func DeviceModelIdentifier(val string) attribute.KeyValue { - return DeviceModelIdentifierKey.String(val) -} - -// DeviceModelName returns an attribute KeyValue conforming to the -// "device.model.name" semantic conventions. It represents the marketing name for -// the device model. -func DeviceModelName(val string) attribute.KeyValue { - return DeviceModelNameKey.String(val) -} - -// Namespace: disk -const ( - // DiskIODirectionKey is the attribute Key conforming to the "disk.io.direction" - // semantic conventions. It represents the disk IO operation direction. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "read" - DiskIODirectionKey = attribute.Key("disk.io.direction") -) - -// Enum values for disk.io.direction -var ( - // read - // Stability: development - DiskIODirectionRead = DiskIODirectionKey.String("read") - // write - // Stability: development - DiskIODirectionWrite = DiskIODirectionKey.String("write") -) - -// Namespace: dns -const ( - // DNSAnswersKey is the attribute Key conforming to the "dns.answers" semantic - // conventions. It represents the list of IPv4 or IPv6 addresses resolved during - // DNS lookup. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "10.0.0.1", "2001:0db8:85a3:0000:0000:8a2e:0370:7334" - DNSAnswersKey = attribute.Key("dns.answers") - - // DNSQuestionNameKey is the attribute Key conforming to the "dns.question.name" - // semantic conventions. It represents the name being queried. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "www.example.com", "opentelemetry.io" - // Note: The name represents the queried domain name as it appears in the DNS - // query without any additional normalization. - DNSQuestionNameKey = attribute.Key("dns.question.name") -) - -// DNSAnswers returns an attribute KeyValue conforming to the "dns.answers" -// semantic conventions. It represents the list of IPv4 or IPv6 addresses -// resolved during DNS lookup. -func DNSAnswers(val ...string) attribute.KeyValue { - return DNSAnswersKey.StringSlice(val) -} - -// DNSQuestionName returns an attribute KeyValue conforming to the -// "dns.question.name" semantic conventions. It represents the name being -// queried. -func DNSQuestionName(val string) attribute.KeyValue { - return DNSQuestionNameKey.String(val) -} - -// Namespace: elasticsearch -const ( - // ElasticsearchNodeNameKey is the attribute Key conforming to the - // "elasticsearch.node.name" semantic conventions. It represents the represents - // the human-readable identifier of the node/instance to which a request was - // routed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "instance-0000000001" - ElasticsearchNodeNameKey = attribute.Key("elasticsearch.node.name") -) - -// ElasticsearchNodeName returns an attribute KeyValue conforming to the -// "elasticsearch.node.name" semantic conventions. It represents the represents -// the human-readable identifier of the node/instance to which a request was -// routed. -func ElasticsearchNodeName(val string) attribute.KeyValue { - return ElasticsearchNodeNameKey.String(val) -} - -// Namespace: enduser -const ( - // EnduserIDKey is the attribute Key conforming to the "enduser.id" semantic - // conventions. It represents the unique identifier of an end user in the - // system. It maybe a username, email address, or other identifier. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "username" - // Note: Unique identifier of an end user in the system. - // - // > [!Warning] - // > This field contains sensitive (PII) information. - EnduserIDKey = attribute.Key("enduser.id") - - // EnduserPseudoIDKey is the attribute Key conforming to the "enduser.pseudo.id" - // semantic conventions. It represents the pseudonymous identifier of an end - // user. This identifier should be a random value that is not directly linked or - // associated with the end user's actual identity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "QdH5CAWJgqVT4rOr0qtumf" - // Note: Pseudonymous identifier of an end user. - // - // > [!Warning] - // > This field contains sensitive (linkable PII) information. - EnduserPseudoIDKey = attribute.Key("enduser.pseudo.id") -) - -// EnduserID returns an attribute KeyValue conforming to the "enduser.id" -// semantic conventions. It represents the unique identifier of an end user in -// the system. It maybe a username, email address, or other identifier. -func EnduserID(val string) attribute.KeyValue { - return EnduserIDKey.String(val) -} - -// EnduserPseudoID returns an attribute KeyValue conforming to the -// "enduser.pseudo.id" semantic conventions. It represents the pseudonymous -// identifier of an end user. This identifier should be a random value that is -// not directly linked or associated with the end user's actual identity. -func EnduserPseudoID(val string) attribute.KeyValue { - return EnduserPseudoIDKey.String(val) -} - -// Namespace: error -const ( - // ErrorMessageKey is the attribute Key conforming to the "error.message" - // semantic conventions. It represents a message providing more detail about an - // error in human-readable form. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Unexpected input type: string", "The user has exceeded their - // storage quota" - // Note: `error.message` should provide additional context and detail about an - // error. - // It is NOT RECOMMENDED to duplicate the value of `error.type` in - // `error.message`. - // It is also NOT RECOMMENDED to duplicate the value of `exception.message` in - // `error.message`. - // - // `error.message` is NOT RECOMMENDED for metrics or spans due to its unbounded - // cardinality and overlap with span status. - ErrorMessageKey = attribute.Key("error.message") - - // ErrorTypeKey is the attribute Key conforming to the "error.type" semantic - // conventions. It represents the describes a class of error the operation ended - // with. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "timeout", "java.net.UnknownHostException", - // "server_certificate_invalid", "500" - // Note: The `error.type` SHOULD be predictable, and SHOULD have low - // cardinality. - // - // When `error.type` is set to a type (e.g., an exception type), its - // canonical class name identifying the type within the artifact SHOULD be used. - // - // Instrumentations SHOULD document the list of errors they report. - // - // The cardinality of `error.type` within one instrumentation library SHOULD be - // low. - // Telemetry consumers that aggregate data from multiple instrumentation - // libraries and applications - // should be prepared for `error.type` to have high cardinality at query time - // when no - // additional filters are applied. - // - // If the operation has completed successfully, instrumentations SHOULD NOT set - // `error.type`. - // - // If a specific domain defines its own set of error identifiers (such as HTTP - // or RPC status codes), - // it's RECOMMENDED to: - // - // - Use a domain-specific attribute - // - Set `error.type` to capture all errors, regardless of whether they are - // defined within the domain-specific set or not. - ErrorTypeKey = attribute.Key("error.type") -) - -// ErrorMessage returns an attribute KeyValue conforming to the "error.message" -// semantic conventions. It represents a message providing more detail about an -// error in human-readable form. -func ErrorMessage(val string) attribute.KeyValue { - return ErrorMessageKey.String(val) -} - -// Enum values for error.type -var ( - // A fallback error value to be used when the instrumentation doesn't define a - // custom value. - // - // Stability: stable - ErrorTypeOther = ErrorTypeKey.String("_OTHER") -) - -// Namespace: exception -const ( - // ExceptionMessageKey is the attribute Key conforming to the - // "exception.message" semantic conventions. It represents the exception - // message. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "Division by zero", "Can't convert 'int' object to str implicitly" - ExceptionMessageKey = attribute.Key("exception.message") - - // ExceptionStacktraceKey is the attribute Key conforming to the - // "exception.stacktrace" semantic conventions. It represents a stacktrace as a - // string in the natural representation for the language runtime. The - // representation is to be determined and documented by each language SIG. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: Exception in thread "main" java.lang.RuntimeException: Test - // exception\n at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at - // com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at - // com.example.GenerateTrace.main(GenerateTrace.java:5) - ExceptionStacktraceKey = attribute.Key("exception.stacktrace") - - // ExceptionTypeKey is the attribute Key conforming to the "exception.type" - // semantic conventions. It represents the type of the exception (its - // fully-qualified class name, if applicable). The dynamic type of the exception - // should be preferred over the static type in languages that support it. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "java.net.ConnectException", "OSError" - ExceptionTypeKey = attribute.Key("exception.type") -) - -// ExceptionMessage returns an attribute KeyValue conforming to the -// "exception.message" semantic conventions. It represents the exception message. -func ExceptionMessage(val string) attribute.KeyValue { - return ExceptionMessageKey.String(val) -} - -// ExceptionStacktrace returns an attribute KeyValue conforming to the -// "exception.stacktrace" semantic conventions. It represents a stacktrace as a -// string in the natural representation for the language runtime. The -// representation is to be determined and documented by each language SIG. -func ExceptionStacktrace(val string) attribute.KeyValue { - return ExceptionStacktraceKey.String(val) -} - -// ExceptionType returns an attribute KeyValue conforming to the "exception.type" -// semantic conventions. It represents the type of the exception (its -// fully-qualified class name, if applicable). The dynamic type of the exception -// should be preferred over the static type in languages that support it. -func ExceptionType(val string) attribute.KeyValue { - return ExceptionTypeKey.String(val) -} - -// Namespace: faas -const ( - // FaaSColdstartKey is the attribute Key conforming to the "faas.coldstart" - // semantic conventions. It represents a boolean that is true if the serverless - // function is executed for the first time (aka cold-start). - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - FaaSColdstartKey = attribute.Key("faas.coldstart") - - // FaaSCronKey is the attribute Key conforming to the "faas.cron" semantic - // conventions. It represents a string containing the schedule period as - // [Cron Expression]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0/5 * * * ? * - // - // [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm - FaaSCronKey = attribute.Key("faas.cron") - - // FaaSDocumentCollectionKey is the attribute Key conforming to the - // "faas.document.collection" semantic conventions. It represents the name of - // the source on which the triggering operation was performed. For example, in - // Cloud Storage or S3 corresponds to the bucket name, and in Cosmos DB to the - // database name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "myBucketName", "myDbName" - FaaSDocumentCollectionKey = attribute.Key("faas.document.collection") - - // FaaSDocumentNameKey is the attribute Key conforming to the - // "faas.document.name" semantic conventions. It represents the document - // name/table subjected to the operation. For example, in Cloud Storage or S3 is - // the name of the file, and in Cosmos DB the table name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "myFile.txt", "myTableName" - FaaSDocumentNameKey = attribute.Key("faas.document.name") - - // FaaSDocumentOperationKey is the attribute Key conforming to the - // "faas.document.operation" semantic conventions. It represents the describes - // the type of the operation that was performed on the data. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - FaaSDocumentOperationKey = attribute.Key("faas.document.operation") - - // FaaSDocumentTimeKey is the attribute Key conforming to the - // "faas.document.time" semantic conventions. It represents a string containing - // the time when the data was accessed in the [ISO 8601] format expressed in - // [UTC]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 2020-01-23T13:47:06Z - // - // [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html - // [UTC]: https://www.w3.org/TR/NOTE-datetime - FaaSDocumentTimeKey = attribute.Key("faas.document.time") - - // FaaSInstanceKey is the attribute Key conforming to the "faas.instance" - // semantic conventions. It represents the execution environment ID as a string, - // that will be potentially reused for other invocations to the same - // function/function version. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021/06/28/[$LATEST]2f399eb14537447da05ab2a2e39309de" - // Note: - **AWS Lambda:** Use the (full) log stream name. - FaaSInstanceKey = attribute.Key("faas.instance") - - // FaaSInvocationIDKey is the attribute Key conforming to the - // "faas.invocation_id" semantic conventions. It represents the invocation ID of - // the current function invocation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: af9d5aa4-a685-4c5f-a22b-444f80b3cc28 - FaaSInvocationIDKey = attribute.Key("faas.invocation_id") - - // FaaSInvokedNameKey is the attribute Key conforming to the "faas.invoked_name" - // semantic conventions. It represents the name of the invoked function. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: my-function - // Note: SHOULD be equal to the `faas.name` resource attribute of the invoked - // function. - FaaSInvokedNameKey = attribute.Key("faas.invoked_name") - - // FaaSInvokedProviderKey is the attribute Key conforming to the - // "faas.invoked_provider" semantic conventions. It represents the cloud - // provider of the invoked function. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: SHOULD be equal to the `cloud.provider` resource attribute of the - // invoked function. - FaaSInvokedProviderKey = attribute.Key("faas.invoked_provider") - - // FaaSInvokedRegionKey is the attribute Key conforming to the - // "faas.invoked_region" semantic conventions. It represents the cloud region of - // the invoked function. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: eu-central-1 - // Note: SHOULD be equal to the `cloud.region` resource attribute of the invoked - // function. - FaaSInvokedRegionKey = attribute.Key("faas.invoked_region") - - // FaaSMaxMemoryKey is the attribute Key conforming to the "faas.max_memory" - // semantic conventions. It represents the amount of memory available to the - // serverless function converted to Bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Note: It's recommended to set this attribute since e.g. too little memory can - // easily stop a Java AWS Lambda function from working correctly. On AWS Lambda, - // the environment variable `AWS_LAMBDA_FUNCTION_MEMORY_SIZE` provides this - // information (which must be multiplied by 1,048,576). - FaaSMaxMemoryKey = attribute.Key("faas.max_memory") - - // FaaSNameKey is the attribute Key conforming to the "faas.name" semantic - // conventions. It represents the name of the single function that this runtime - // instance executes. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-function", "myazurefunctionapp/some-function-name" - // Note: This is the name of the function as configured/deployed on the FaaS - // platform and is usually different from the name of the callback - // function (which may be stored in the - // [`code.namespace`/`code.function.name`] - // span attributes). - // - // For some cloud providers, the above definition is ambiguous. The following - // definition of function name MUST be used for this attribute - // (and consequently the span name) for the listed cloud providers/products: - // - // - **Azure:** The full name `/`, i.e., function app name - // followed by a forward slash followed by the function name (this form - // can also be seen in the resource JSON for the function). - // This means that a span attribute MUST be used, as an Azure function - // app can host multiple functions that would usually share - // a TracerProvider (see also the `cloud.resource_id` attribute). - // - // - // [`code.namespace`/`code.function.name`]: /docs/general/attributes.md#source-code-attributes - FaaSNameKey = attribute.Key("faas.name") - - // FaaSTimeKey is the attribute Key conforming to the "faas.time" semantic - // conventions. It represents a string containing the function invocation time - // in the [ISO 8601] format expressed in [UTC]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 2020-01-23T13:47:06Z - // - // [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html - // [UTC]: https://www.w3.org/TR/NOTE-datetime - FaaSTimeKey = attribute.Key("faas.time") - - // FaaSTriggerKey is the attribute Key conforming to the "faas.trigger" semantic - // conventions. It represents the type of the trigger which caused this function - // invocation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - FaaSTriggerKey = attribute.Key("faas.trigger") - - // FaaSVersionKey is the attribute Key conforming to the "faas.version" semantic - // conventions. It represents the immutable version of the function being - // executed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "26", "pinkfroid-00002" - // Note: Depending on the cloud provider and platform, use: - // - // - **AWS Lambda:** The [function version] - // (an integer represented as a decimal string). - // - **Google Cloud Run (Services):** The [revision] - // (i.e., the function name plus the revision suffix). - // - **Google Cloud Functions:** The value of the - // [`K_REVISION` environment variable]. - // - **Azure Functions:** Not applicable. Do not set this attribute. - // - // - // [function version]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-versions.html - // [revision]: https://cloud.google.com/run/docs/managing/revisions - // [`K_REVISION` environment variable]: https://cloud.google.com/run/docs/container-contract#services-env-vars - FaaSVersionKey = attribute.Key("faas.version") -) - -// FaaSColdstart returns an attribute KeyValue conforming to the "faas.coldstart" -// semantic conventions. It represents a boolean that is true if the serverless -// function is executed for the first time (aka cold-start). -func FaaSColdstart(val bool) attribute.KeyValue { - return FaaSColdstartKey.Bool(val) -} - -// FaaSCron returns an attribute KeyValue conforming to the "faas.cron" semantic -// conventions. It represents a string containing the schedule period as -// [Cron Expression]. -// -// [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm -func FaaSCron(val string) attribute.KeyValue { - return FaaSCronKey.String(val) -} - -// FaaSDocumentCollection returns an attribute KeyValue conforming to the -// "faas.document.collection" semantic conventions. It represents the name of the -// source on which the triggering operation was performed. For example, in Cloud -// Storage or S3 corresponds to the bucket name, and in Cosmos DB to the database -// name. -func FaaSDocumentCollection(val string) attribute.KeyValue { - return FaaSDocumentCollectionKey.String(val) -} - -// FaaSDocumentName returns an attribute KeyValue conforming to the -// "faas.document.name" semantic conventions. It represents the document -// name/table subjected to the operation. For example, in Cloud Storage or S3 is -// the name of the file, and in Cosmos DB the table name. -func FaaSDocumentName(val string) attribute.KeyValue { - return FaaSDocumentNameKey.String(val) -} - -// FaaSDocumentTime returns an attribute KeyValue conforming to the -// "faas.document.time" semantic conventions. It represents a string containing -// the time when the data was accessed in the [ISO 8601] format expressed in -// [UTC]. -// -// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html -// [UTC]: https://www.w3.org/TR/NOTE-datetime -func FaaSDocumentTime(val string) attribute.KeyValue { - return FaaSDocumentTimeKey.String(val) -} - -// FaaSInstance returns an attribute KeyValue conforming to the "faas.instance" -// semantic conventions. It represents the execution environment ID as a string, -// that will be potentially reused for other invocations to the same -// function/function version. -func FaaSInstance(val string) attribute.KeyValue { - return FaaSInstanceKey.String(val) -} - -// FaaSInvocationID returns an attribute KeyValue conforming to the -// "faas.invocation_id" semantic conventions. It represents the invocation ID of -// the current function invocation. -func FaaSInvocationID(val string) attribute.KeyValue { - return FaaSInvocationIDKey.String(val) -} - -// FaaSInvokedName returns an attribute KeyValue conforming to the -// "faas.invoked_name" semantic conventions. It represents the name of the -// invoked function. -func FaaSInvokedName(val string) attribute.KeyValue { - return FaaSInvokedNameKey.String(val) -} - -// FaaSInvokedRegion returns an attribute KeyValue conforming to the -// "faas.invoked_region" semantic conventions. It represents the cloud region of -// the invoked function. -func FaaSInvokedRegion(val string) attribute.KeyValue { - return FaaSInvokedRegionKey.String(val) -} - -// FaaSMaxMemory returns an attribute KeyValue conforming to the -// "faas.max_memory" semantic conventions. It represents the amount of memory -// available to the serverless function converted to Bytes. -func FaaSMaxMemory(val int) attribute.KeyValue { - return FaaSMaxMemoryKey.Int(val) -} - -// FaaSName returns an attribute KeyValue conforming to the "faas.name" semantic -// conventions. It represents the name of the single function that this runtime -// instance executes. -func FaaSName(val string) attribute.KeyValue { - return FaaSNameKey.String(val) -} - -// FaaSTime returns an attribute KeyValue conforming to the "faas.time" semantic -// conventions. It represents a string containing the function invocation time in -// the [ISO 8601] format expressed in [UTC]. -// -// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html -// [UTC]: https://www.w3.org/TR/NOTE-datetime -func FaaSTime(val string) attribute.KeyValue { - return FaaSTimeKey.String(val) -} - -// FaaSVersion returns an attribute KeyValue conforming to the "faas.version" -// semantic conventions. It represents the immutable version of the function -// being executed. -func FaaSVersion(val string) attribute.KeyValue { - return FaaSVersionKey.String(val) -} - -// Enum values for faas.document.operation -var ( - // When a new object is created. - // Stability: development - FaaSDocumentOperationInsert = FaaSDocumentOperationKey.String("insert") - // When an object is modified. - // Stability: development - FaaSDocumentOperationEdit = FaaSDocumentOperationKey.String("edit") - // When an object is deleted. - // Stability: development - FaaSDocumentOperationDelete = FaaSDocumentOperationKey.String("delete") -) - -// Enum values for faas.invoked_provider -var ( - // Alibaba Cloud - // Stability: development - FaaSInvokedProviderAlibabaCloud = FaaSInvokedProviderKey.String("alibaba_cloud") - // Amazon Web Services - // Stability: development - FaaSInvokedProviderAWS = FaaSInvokedProviderKey.String("aws") - // Microsoft Azure - // Stability: development - FaaSInvokedProviderAzure = FaaSInvokedProviderKey.String("azure") - // Google Cloud Platform - // Stability: development - FaaSInvokedProviderGCP = FaaSInvokedProviderKey.String("gcp") - // Tencent Cloud - // Stability: development - FaaSInvokedProviderTencentCloud = FaaSInvokedProviderKey.String("tencent_cloud") -) - -// Enum values for faas.trigger -var ( - // A response to some data source operation such as a database or filesystem - // read/write - // Stability: development - FaaSTriggerDatasource = FaaSTriggerKey.String("datasource") - // To provide an answer to an inbound HTTP request - // Stability: development - FaaSTriggerHTTP = FaaSTriggerKey.String("http") - // A function is set to be executed when messages are sent to a messaging system - // Stability: development - FaaSTriggerPubSub = FaaSTriggerKey.String("pubsub") - // A function is scheduled to be executed regularly - // Stability: development - FaaSTriggerTimer = FaaSTriggerKey.String("timer") - // If none of the others apply - // Stability: development - FaaSTriggerOther = FaaSTriggerKey.String("other") -) - -// Namespace: feature_flag -const ( - // FeatureFlagContextIDKey is the attribute Key conforming to the - // "feature_flag.context.id" semantic conventions. It represents the unique - // identifier for the flag evaluation context. For example, the targeting key. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "5157782b-2203-4c80-a857-dbbd5e7761db" - FeatureFlagContextIDKey = attribute.Key("feature_flag.context.id") - - // FeatureFlagKeyKey is the attribute Key conforming to the "feature_flag.key" - // semantic conventions. It represents the lookup key of the feature flag. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "logo-color" - FeatureFlagKeyKey = attribute.Key("feature_flag.key") - - // FeatureFlagProviderNameKey is the attribute Key conforming to the - // "feature_flag.provider.name" semantic conventions. It represents the - // identifies the feature flag provider. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "Flag Manager" - FeatureFlagProviderNameKey = attribute.Key("feature_flag.provider.name") - - // FeatureFlagResultReasonKey is the attribute Key conforming to the - // "feature_flag.result.reason" semantic conventions. It represents the reason - // code which shows how a feature flag value was determined. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "static", "targeting_match", "error", "default" - FeatureFlagResultReasonKey = attribute.Key("feature_flag.result.reason") - - // FeatureFlagResultValueKey is the attribute Key conforming to the - // "feature_flag.result.value" semantic conventions. It represents the evaluated - // value of the feature flag. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "#ff0000", true, 3 - // Note: With some feature flag providers, feature flag results can be quite - // large or contain private or sensitive details. - // Because of this, `feature_flag.result.variant` is often the preferred - // attribute if it is available. - // - // It may be desirable to redact or otherwise limit the size and scope of - // `feature_flag.result.value` if possible. - // Because the evaluated flag value is unstructured and may be any type, it is - // left to the instrumentation author to determine how best to achieve this. - FeatureFlagResultValueKey = attribute.Key("feature_flag.result.value") - - // FeatureFlagResultVariantKey is the attribute Key conforming to the - // "feature_flag.result.variant" semantic conventions. It represents a semantic - // identifier for an evaluated flag value. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "red", "true", "on" - // Note: A semantic identifier, commonly referred to as a variant, provides a - // means - // for referring to a value without including the value itself. This can - // provide additional context for understanding the meaning behind a value. - // For example, the variant `red` maybe be used for the value `#c05543`. - FeatureFlagResultVariantKey = attribute.Key("feature_flag.result.variant") - - // FeatureFlagSetIDKey is the attribute Key conforming to the - // "feature_flag.set.id" semantic conventions. It represents the identifier of - // the [flag set] to which the feature flag belongs. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "proj-1", "ab98sgs", "service1/dev" - // - // [flag set]: https://openfeature.dev/specification/glossary/#flag-set - FeatureFlagSetIDKey = attribute.Key("feature_flag.set.id") - - // FeatureFlagVersionKey is the attribute Key conforming to the - // "feature_flag.version" semantic conventions. It represents the version of the - // ruleset used during the evaluation. This may be any stable value which - // uniquely identifies the ruleset. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "1", "01ABCDEF" - FeatureFlagVersionKey = attribute.Key("feature_flag.version") -) - -// FeatureFlagContextID returns an attribute KeyValue conforming to the -// "feature_flag.context.id" semantic conventions. It represents the unique -// identifier for the flag evaluation context. For example, the targeting key. -func FeatureFlagContextID(val string) attribute.KeyValue { - return FeatureFlagContextIDKey.String(val) -} - -// FeatureFlagKey returns an attribute KeyValue conforming to the -// "feature_flag.key" semantic conventions. It represents the lookup key of the -// feature flag. -func FeatureFlagKey(val string) attribute.KeyValue { - return FeatureFlagKeyKey.String(val) -} - -// FeatureFlagProviderName returns an attribute KeyValue conforming to the -// "feature_flag.provider.name" semantic conventions. It represents the -// identifies the feature flag provider. -func FeatureFlagProviderName(val string) attribute.KeyValue { - return FeatureFlagProviderNameKey.String(val) -} - -// FeatureFlagResultVariant returns an attribute KeyValue conforming to the -// "feature_flag.result.variant" semantic conventions. It represents a semantic -// identifier for an evaluated flag value. -func FeatureFlagResultVariant(val string) attribute.KeyValue { - return FeatureFlagResultVariantKey.String(val) -} - -// FeatureFlagSetID returns an attribute KeyValue conforming to the -// "feature_flag.set.id" semantic conventions. It represents the identifier of -// the [flag set] to which the feature flag belongs. -// -// [flag set]: https://openfeature.dev/specification/glossary/#flag-set -func FeatureFlagSetID(val string) attribute.KeyValue { - return FeatureFlagSetIDKey.String(val) -} - -// FeatureFlagVersion returns an attribute KeyValue conforming to the -// "feature_flag.version" semantic conventions. It represents the version of the -// ruleset used during the evaluation. This may be any stable value which -// uniquely identifies the ruleset. -func FeatureFlagVersion(val string) attribute.KeyValue { - return FeatureFlagVersionKey.String(val) -} - -// Enum values for feature_flag.result.reason -var ( - // The resolved value is static (no dynamic evaluation). - // Stability: release_candidate - FeatureFlagResultReasonStatic = FeatureFlagResultReasonKey.String("static") - // The resolved value fell back to a pre-configured value (no dynamic evaluation - // occurred or dynamic evaluation yielded no result). - // Stability: release_candidate - FeatureFlagResultReasonDefault = FeatureFlagResultReasonKey.String("default") - // The resolved value was the result of a dynamic evaluation, such as a rule or - // specific user-targeting. - // Stability: release_candidate - FeatureFlagResultReasonTargetingMatch = FeatureFlagResultReasonKey.String("targeting_match") - // The resolved value was the result of pseudorandom assignment. - // Stability: release_candidate - FeatureFlagResultReasonSplit = FeatureFlagResultReasonKey.String("split") - // The resolved value was retrieved from cache. - // Stability: release_candidate - FeatureFlagResultReasonCached = FeatureFlagResultReasonKey.String("cached") - // The resolved value was the result of the flag being disabled in the - // management system. - // Stability: release_candidate - FeatureFlagResultReasonDisabled = FeatureFlagResultReasonKey.String("disabled") - // The reason for the resolved value could not be determined. - // Stability: release_candidate - FeatureFlagResultReasonUnknown = FeatureFlagResultReasonKey.String("unknown") - // The resolved value is non-authoritative or possibly out of date - // Stability: release_candidate - FeatureFlagResultReasonStale = FeatureFlagResultReasonKey.String("stale") - // The resolved value was the result of an error. - // Stability: release_candidate - FeatureFlagResultReasonError = FeatureFlagResultReasonKey.String("error") -) - -// Namespace: file -const ( - // FileAccessedKey is the attribute Key conforming to the "file.accessed" - // semantic conventions. It represents the time when the file was last accessed, - // in ISO 8601 format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T12:00:00Z" - // Note: This attribute might not be supported by some file systems — NFS, - // FAT32, in embedded OS, etc. - FileAccessedKey = attribute.Key("file.accessed") - - // FileAttributesKey is the attribute Key conforming to the "file.attributes" - // semantic conventions. It represents the array of file attributes. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "readonly", "hidden" - // Note: Attributes names depend on the OS or file system. Here’s a - // non-exhaustive list of values expected for this attribute: `archive`, - // `compressed`, `directory`, `encrypted`, `execute`, `hidden`, `immutable`, - // `journaled`, `read`, `readonly`, `symbolic link`, `system`, `temporary`, - // `write`. - FileAttributesKey = attribute.Key("file.attributes") - - // FileChangedKey is the attribute Key conforming to the "file.changed" semantic - // conventions. It represents the time when the file attributes or metadata was - // last changed, in ISO 8601 format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T12:00:00Z" - // Note: `file.changed` captures the time when any of the file's properties or - // attributes (including the content) are changed, while `file.modified` - // captures the timestamp when the file content is modified. - FileChangedKey = attribute.Key("file.changed") - - // FileCreatedKey is the attribute Key conforming to the "file.created" semantic - // conventions. It represents the time when the file was created, in ISO 8601 - // format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T12:00:00Z" - // Note: This attribute might not be supported by some file systems — NFS, - // FAT32, in embedded OS, etc. - FileCreatedKey = attribute.Key("file.created") - - // FileDirectoryKey is the attribute Key conforming to the "file.directory" - // semantic conventions. It represents the directory where the file is located. - // It should include the drive letter, when appropriate. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/home/user", "C:\Program Files\MyApp" - FileDirectoryKey = attribute.Key("file.directory") - - // FileExtensionKey is the attribute Key conforming to the "file.extension" - // semantic conventions. It represents the file extension, excluding the leading - // dot. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "png", "gz" - // Note: When the file name has multiple extensions (example.tar.gz), only the - // last one should be captured ("gz", not "tar.gz"). - FileExtensionKey = attribute.Key("file.extension") - - // FileForkNameKey is the attribute Key conforming to the "file.fork_name" - // semantic conventions. It represents the name of the fork. A fork is - // additional data associated with a filesystem object. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Zone.Identifier" - // Note: On Linux, a resource fork is used to store additional data with a - // filesystem object. A file always has at least one fork for the data portion, - // and additional forks may exist. - // On NTFS, this is analogous to an Alternate Data Stream (ADS), and the default - // data stream for a file is just called $DATA. Zone.Identifier is commonly used - // by Windows to track contents downloaded from the Internet. An ADS is - // typically of the form: C:\path\to\filename.extension:some_fork_name, and - // some_fork_name is the value that should populate `fork_name`. - // `filename.extension` should populate `file.name`, and `extension` should - // populate `file.extension`. The full path, `file.path`, will include the fork - // name. - FileForkNameKey = attribute.Key("file.fork_name") - - // FileGroupIDKey is the attribute Key conforming to the "file.group.id" - // semantic conventions. It represents the primary Group ID (GID) of the file. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1000" - FileGroupIDKey = attribute.Key("file.group.id") - - // FileGroupNameKey is the attribute Key conforming to the "file.group.name" - // semantic conventions. It represents the primary group name of the file. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "users" - FileGroupNameKey = attribute.Key("file.group.name") - - // FileInodeKey is the attribute Key conforming to the "file.inode" semantic - // conventions. It represents the inode representing the file in the filesystem. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "256383" - FileInodeKey = attribute.Key("file.inode") - - // FileModeKey is the attribute Key conforming to the "file.mode" semantic - // conventions. It represents the mode of the file in octal representation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0640" - FileModeKey = attribute.Key("file.mode") - - // FileModifiedKey is the attribute Key conforming to the "file.modified" - // semantic conventions. It represents the time when the file content was last - // modified, in ISO 8601 format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T12:00:00Z" - FileModifiedKey = attribute.Key("file.modified") - - // FileNameKey is the attribute Key conforming to the "file.name" semantic - // conventions. It represents the name of the file including the extension, - // without the directory. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "example.png" - FileNameKey = attribute.Key("file.name") - - // FileOwnerIDKey is the attribute Key conforming to the "file.owner.id" - // semantic conventions. It represents the user ID (UID) or security identifier - // (SID) of the file owner. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1000" - FileOwnerIDKey = attribute.Key("file.owner.id") - - // FileOwnerNameKey is the attribute Key conforming to the "file.owner.name" - // semantic conventions. It represents the username of the file owner. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "root" - FileOwnerNameKey = attribute.Key("file.owner.name") - - // FilePathKey is the attribute Key conforming to the "file.path" semantic - // conventions. It represents the full path to the file, including the file - // name. It should include the drive letter, when appropriate. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/home/alice/example.png", "C:\Program Files\MyApp\myapp.exe" - FilePathKey = attribute.Key("file.path") - - // FileSizeKey is the attribute Key conforming to the "file.size" semantic - // conventions. It represents the file size in bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - FileSizeKey = attribute.Key("file.size") - - // FileSymbolicLinkTargetPathKey is the attribute Key conforming to the - // "file.symbolic_link.target_path" semantic conventions. It represents the path - // to the target of a symbolic link. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/usr/bin/python3" - // Note: This attribute is only applicable to symbolic links. - FileSymbolicLinkTargetPathKey = attribute.Key("file.symbolic_link.target_path") -) - -// FileAccessed returns an attribute KeyValue conforming to the "file.accessed" -// semantic conventions. It represents the time when the file was last accessed, -// in ISO 8601 format. -func FileAccessed(val string) attribute.KeyValue { - return FileAccessedKey.String(val) -} - -// FileAttributes returns an attribute KeyValue conforming to the -// "file.attributes" semantic conventions. It represents the array of file -// attributes. -func FileAttributes(val ...string) attribute.KeyValue { - return FileAttributesKey.StringSlice(val) -} - -// FileChanged returns an attribute KeyValue conforming to the "file.changed" -// semantic conventions. It represents the time when the file attributes or -// metadata was last changed, in ISO 8601 format. -func FileChanged(val string) attribute.KeyValue { - return FileChangedKey.String(val) -} - -// FileCreated returns an attribute KeyValue conforming to the "file.created" -// semantic conventions. It represents the time when the file was created, in ISO -// 8601 format. -func FileCreated(val string) attribute.KeyValue { - return FileCreatedKey.String(val) -} - -// FileDirectory returns an attribute KeyValue conforming to the "file.directory" -// semantic conventions. It represents the directory where the file is located. -// It should include the drive letter, when appropriate. -func FileDirectory(val string) attribute.KeyValue { - return FileDirectoryKey.String(val) -} - -// FileExtension returns an attribute KeyValue conforming to the "file.extension" -// semantic conventions. It represents the file extension, excluding the leading -// dot. -func FileExtension(val string) attribute.KeyValue { - return FileExtensionKey.String(val) -} - -// FileForkName returns an attribute KeyValue conforming to the "file.fork_name" -// semantic conventions. It represents the name of the fork. A fork is additional -// data associated with a filesystem object. -func FileForkName(val string) attribute.KeyValue { - return FileForkNameKey.String(val) -} - -// FileGroupID returns an attribute KeyValue conforming to the "file.group.id" -// semantic conventions. It represents the primary Group ID (GID) of the file. -func FileGroupID(val string) attribute.KeyValue { - return FileGroupIDKey.String(val) -} - -// FileGroupName returns an attribute KeyValue conforming to the -// "file.group.name" semantic conventions. It represents the primary group name -// of the file. -func FileGroupName(val string) attribute.KeyValue { - return FileGroupNameKey.String(val) -} - -// FileInode returns an attribute KeyValue conforming to the "file.inode" -// semantic conventions. It represents the inode representing the file in the -// filesystem. -func FileInode(val string) attribute.KeyValue { - return FileInodeKey.String(val) -} - -// FileMode returns an attribute KeyValue conforming to the "file.mode" semantic -// conventions. It represents the mode of the file in octal representation. -func FileMode(val string) attribute.KeyValue { - return FileModeKey.String(val) -} - -// FileModified returns an attribute KeyValue conforming to the "file.modified" -// semantic conventions. It represents the time when the file content was last -// modified, in ISO 8601 format. -func FileModified(val string) attribute.KeyValue { - return FileModifiedKey.String(val) -} - -// FileName returns an attribute KeyValue conforming to the "file.name" semantic -// conventions. It represents the name of the file including the extension, -// without the directory. -func FileName(val string) attribute.KeyValue { - return FileNameKey.String(val) -} - -// FileOwnerID returns an attribute KeyValue conforming to the "file.owner.id" -// semantic conventions. It represents the user ID (UID) or security identifier -// (SID) of the file owner. -func FileOwnerID(val string) attribute.KeyValue { - return FileOwnerIDKey.String(val) -} - -// FileOwnerName returns an attribute KeyValue conforming to the -// "file.owner.name" semantic conventions. It represents the username of the file -// owner. -func FileOwnerName(val string) attribute.KeyValue { - return FileOwnerNameKey.String(val) -} - -// FilePath returns an attribute KeyValue conforming to the "file.path" semantic -// conventions. It represents the full path to the file, including the file name. -// It should include the drive letter, when appropriate. -func FilePath(val string) attribute.KeyValue { - return FilePathKey.String(val) -} - -// FileSize returns an attribute KeyValue conforming to the "file.size" semantic -// conventions. It represents the file size in bytes. -func FileSize(val int) attribute.KeyValue { - return FileSizeKey.Int(val) -} - -// FileSymbolicLinkTargetPath returns an attribute KeyValue conforming to the -// "file.symbolic_link.target_path" semantic conventions. It represents the path -// to the target of a symbolic link. -func FileSymbolicLinkTargetPath(val string) attribute.KeyValue { - return FileSymbolicLinkTargetPathKey.String(val) -} - -// Namespace: gcp -const ( - // GCPAppHubApplicationContainerKey is the attribute Key conforming to the - // "gcp.apphub.application.container" semantic conventions. It represents the - // container within GCP where the AppHub application is defined. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "projects/my-container-project" - GCPAppHubApplicationContainerKey = attribute.Key("gcp.apphub.application.container") - - // GCPAppHubApplicationIDKey is the attribute Key conforming to the - // "gcp.apphub.application.id" semantic conventions. It represents the name of - // the application as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-application" - GCPAppHubApplicationIDKey = attribute.Key("gcp.apphub.application.id") - - // GCPAppHubApplicationLocationKey is the attribute Key conforming to the - // "gcp.apphub.application.location" semantic conventions. It represents the GCP - // zone or region where the application is defined. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-central1" - GCPAppHubApplicationLocationKey = attribute.Key("gcp.apphub.application.location") - - // GCPAppHubServiceCriticalityTypeKey is the attribute Key conforming to the - // "gcp.apphub.service.criticality_type" semantic conventions. It represents the - // criticality of a service indicates its importance to the business. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: [See AppHub type enum] - // - // [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type - GCPAppHubServiceCriticalityTypeKey = attribute.Key("gcp.apphub.service.criticality_type") - - // GCPAppHubServiceEnvironmentTypeKey is the attribute Key conforming to the - // "gcp.apphub.service.environment_type" semantic conventions. It represents the - // environment of a service is the stage of a software lifecycle. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: [See AppHub environment type] - // - // [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 - GCPAppHubServiceEnvironmentTypeKey = attribute.Key("gcp.apphub.service.environment_type") - - // GCPAppHubServiceIDKey is the attribute Key conforming to the - // "gcp.apphub.service.id" semantic conventions. It represents the name of the - // service as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-service" - GCPAppHubServiceIDKey = attribute.Key("gcp.apphub.service.id") - - // GCPAppHubWorkloadCriticalityTypeKey is the attribute Key conforming to the - // "gcp.apphub.workload.criticality_type" semantic conventions. It represents - // the criticality of a workload indicates its importance to the business. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: [See AppHub type enum] - // - // [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type - GCPAppHubWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub.workload.criticality_type") - - // GCPAppHubWorkloadEnvironmentTypeKey is the attribute Key conforming to the - // "gcp.apphub.workload.environment_type" semantic conventions. It represents - // the environment of a workload is the stage of a software lifecycle. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: [See AppHub environment type] - // - // [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 - GCPAppHubWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub.workload.environment_type") - - // GCPAppHubWorkloadIDKey is the attribute Key conforming to the - // "gcp.apphub.workload.id" semantic conventions. It represents the name of the - // workload as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-workload" - GCPAppHubWorkloadIDKey = attribute.Key("gcp.apphub.workload.id") - - // GCPAppHubDestinationApplicationContainerKey is the attribute Key conforming - // to the "gcp.apphub_destination.application.container" semantic conventions. - // It represents the container within GCP where the AppHub destination - // application is defined. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "projects/my-container-project" - GCPAppHubDestinationApplicationContainerKey = attribute.Key("gcp.apphub_destination.application.container") - - // GCPAppHubDestinationApplicationIDKey is the attribute Key conforming to the - // "gcp.apphub_destination.application.id" semantic conventions. It represents - // the name of the destination application as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-application" - GCPAppHubDestinationApplicationIDKey = attribute.Key("gcp.apphub_destination.application.id") - - // GCPAppHubDestinationApplicationLocationKey is the attribute Key conforming to - // the "gcp.apphub_destination.application.location" semantic conventions. It - // represents the GCP zone or region where the destination application is - // defined. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-central1" - GCPAppHubDestinationApplicationLocationKey = attribute.Key("gcp.apphub_destination.application.location") - - // GCPAppHubDestinationServiceCriticalityTypeKey is the attribute Key conforming - // to the "gcp.apphub_destination.service.criticality_type" semantic - // conventions. It represents the criticality of a destination workload - // indicates its importance to the business as specified in [AppHub type enum]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type - GCPAppHubDestinationServiceCriticalityTypeKey = attribute.Key("gcp.apphub_destination.service.criticality_type") - - // GCPAppHubDestinationServiceEnvironmentTypeKey is the attribute Key conforming - // to the "gcp.apphub_destination.service.environment_type" semantic - // conventions. It represents the software lifecycle stage of a destination - // service as defined [AppHub environment type]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 - GCPAppHubDestinationServiceEnvironmentTypeKey = attribute.Key("gcp.apphub_destination.service.environment_type") - - // GCPAppHubDestinationServiceIDKey is the attribute Key conforming to the - // "gcp.apphub_destination.service.id" semantic conventions. It represents the - // name of the destination service as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-service" - GCPAppHubDestinationServiceIDKey = attribute.Key("gcp.apphub_destination.service.id") - - // GCPAppHubDestinationWorkloadCriticalityTypeKey is the attribute Key - // conforming to the "gcp.apphub_destination.workload.criticality_type" semantic - // conventions. It represents the criticality of a destination workload - // indicates its importance to the business as specified in [AppHub type enum]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type - GCPAppHubDestinationWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub_destination.workload.criticality_type") - - // GCPAppHubDestinationWorkloadEnvironmentTypeKey is the attribute Key - // conforming to the "gcp.apphub_destination.workload.environment_type" semantic - // conventions. It represents the environment of a destination workload is the - // stage of a software lifecycle as provided in the [AppHub environment type]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 - GCPAppHubDestinationWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub_destination.workload.environment_type") - - // GCPAppHubDestinationWorkloadIDKey is the attribute Key conforming to the - // "gcp.apphub_destination.workload.id" semantic conventions. It represents the - // name of the destination workload as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-workload" - GCPAppHubDestinationWorkloadIDKey = attribute.Key("gcp.apphub_destination.workload.id") - - // GCPClientServiceKey is the attribute Key conforming to the - // "gcp.client.service" semantic conventions. It represents the identifies the - // Google Cloud service for which the official client library is intended. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "appengine", "run", "firestore", "alloydb", "spanner" - // Note: Intended to be a stable identifier for Google Cloud client libraries - // that is uniform across implementation languages. The value should be derived - // from the canonical service domain for the service; for example, - // 'foo.googleapis.com' should result in a value of 'foo'. - GCPClientServiceKey = attribute.Key("gcp.client.service") - - // GCPCloudRunJobExecutionKey is the attribute Key conforming to the - // "gcp.cloud_run.job.execution" semantic conventions. It represents the name of - // the Cloud Run [execution] being run for the Job, as set by the - // [`CLOUD_RUN_EXECUTION`] environment variable. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "job-name-xxxx", "sample-job-mdw84" - // - // [execution]: https://cloud.google.com/run/docs/managing/job-executions - // [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars - GCPCloudRunJobExecutionKey = attribute.Key("gcp.cloud_run.job.execution") - - // GCPCloudRunJobTaskIndexKey is the attribute Key conforming to the - // "gcp.cloud_run.job.task_index" semantic conventions. It represents the index - // for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`] - // environment variable. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0, 1 - // - // [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars - GCPCloudRunJobTaskIndexKey = attribute.Key("gcp.cloud_run.job.task_index") - - // GCPGCEInstanceHostnameKey is the attribute Key conforming to the - // "gcp.gce.instance.hostname" semantic conventions. It represents the hostname - // of a GCE instance. This is the full value of the default or [custom hostname] - // . - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-host1234.example.com", - // "sample-vm.us-west1-b.c.my-project.internal" - // - // [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm - GCPGCEInstanceHostnameKey = attribute.Key("gcp.gce.instance.hostname") - - // GCPGCEInstanceNameKey is the attribute Key conforming to the - // "gcp.gce.instance.name" semantic conventions. It represents the instance name - // of a GCE instance. This is the value provided by `host.name`, the visible - // name of the instance in the Cloud Console UI, and the prefix for the default - // hostname of the instance as defined by the [default internal DNS name]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "instance-1", "my-vm-name" - // - // [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names - GCPGCEInstanceNameKey = attribute.Key("gcp.gce.instance.name") -) - -// GCPAppHubApplicationContainer returns an attribute KeyValue conforming to the -// "gcp.apphub.application.container" semantic conventions. It represents the -// container within GCP where the AppHub application is defined. -func GCPAppHubApplicationContainer(val string) attribute.KeyValue { - return GCPAppHubApplicationContainerKey.String(val) -} - -// GCPAppHubApplicationID returns an attribute KeyValue conforming to the -// "gcp.apphub.application.id" semantic conventions. It represents the name of -// the application as configured in AppHub. -func GCPAppHubApplicationID(val string) attribute.KeyValue { - return GCPAppHubApplicationIDKey.String(val) -} - -// GCPAppHubApplicationLocation returns an attribute KeyValue conforming to the -// "gcp.apphub.application.location" semantic conventions. It represents the GCP -// zone or region where the application is defined. -func GCPAppHubApplicationLocation(val string) attribute.KeyValue { - return GCPAppHubApplicationLocationKey.String(val) -} - -// GCPAppHubServiceID returns an attribute KeyValue conforming to the -// "gcp.apphub.service.id" semantic conventions. It represents the name of the -// service as configured in AppHub. -func GCPAppHubServiceID(val string) attribute.KeyValue { - return GCPAppHubServiceIDKey.String(val) -} - -// GCPAppHubWorkloadID returns an attribute KeyValue conforming to the -// "gcp.apphub.workload.id" semantic conventions. It represents the name of the -// workload as configured in AppHub. -func GCPAppHubWorkloadID(val string) attribute.KeyValue { - return GCPAppHubWorkloadIDKey.String(val) -} - -// GCPAppHubDestinationApplicationContainer returns an attribute KeyValue -// conforming to the "gcp.apphub_destination.application.container" semantic -// conventions. It represents the container within GCP where the AppHub -// destination application is defined. -func GCPAppHubDestinationApplicationContainer(val string) attribute.KeyValue { - return GCPAppHubDestinationApplicationContainerKey.String(val) -} - -// GCPAppHubDestinationApplicationID returns an attribute KeyValue conforming to -// the "gcp.apphub_destination.application.id" semantic conventions. It -// represents the name of the destination application as configured in AppHub. -func GCPAppHubDestinationApplicationID(val string) attribute.KeyValue { - return GCPAppHubDestinationApplicationIDKey.String(val) -} - -// GCPAppHubDestinationApplicationLocation returns an attribute KeyValue -// conforming to the "gcp.apphub_destination.application.location" semantic -// conventions. It represents the GCP zone or region where the destination -// application is defined. -func GCPAppHubDestinationApplicationLocation(val string) attribute.KeyValue { - return GCPAppHubDestinationApplicationLocationKey.String(val) -} - -// GCPAppHubDestinationServiceID returns an attribute KeyValue conforming to the -// "gcp.apphub_destination.service.id" semantic conventions. It represents the -// name of the destination service as configured in AppHub. -func GCPAppHubDestinationServiceID(val string) attribute.KeyValue { - return GCPAppHubDestinationServiceIDKey.String(val) -} - -// GCPAppHubDestinationWorkloadID returns an attribute KeyValue conforming to the -// "gcp.apphub_destination.workload.id" semantic conventions. It represents the -// name of the destination workload as configured in AppHub. -func GCPAppHubDestinationWorkloadID(val string) attribute.KeyValue { - return GCPAppHubDestinationWorkloadIDKey.String(val) -} - -// GCPClientService returns an attribute KeyValue conforming to the -// "gcp.client.service" semantic conventions. It represents the identifies the -// Google Cloud service for which the official client library is intended. -func GCPClientService(val string) attribute.KeyValue { - return GCPClientServiceKey.String(val) -} - -// GCPCloudRunJobExecution returns an attribute KeyValue conforming to the -// "gcp.cloud_run.job.execution" semantic conventions. It represents the name of -// the Cloud Run [execution] being run for the Job, as set by the -// [`CLOUD_RUN_EXECUTION`] environment variable. -// -// [execution]: https://cloud.google.com/run/docs/managing/job-executions -// [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars -func GCPCloudRunJobExecution(val string) attribute.KeyValue { - return GCPCloudRunJobExecutionKey.String(val) -} - -// GCPCloudRunJobTaskIndex returns an attribute KeyValue conforming to the -// "gcp.cloud_run.job.task_index" semantic conventions. It represents the index -// for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`] -// environment variable. -// -// [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars -func GCPCloudRunJobTaskIndex(val int) attribute.KeyValue { - return GCPCloudRunJobTaskIndexKey.Int(val) -} - -// GCPGCEInstanceHostname returns an attribute KeyValue conforming to the -// "gcp.gce.instance.hostname" semantic conventions. It represents the hostname -// of a GCE instance. This is the full value of the default or [custom hostname] -// . -// -// [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm -func GCPGCEInstanceHostname(val string) attribute.KeyValue { - return GCPGCEInstanceHostnameKey.String(val) -} - -// GCPGCEInstanceName returns an attribute KeyValue conforming to the -// "gcp.gce.instance.name" semantic conventions. It represents the instance name -// of a GCE instance. This is the value provided by `host.name`, the visible name -// of the instance in the Cloud Console UI, and the prefix for the default -// hostname of the instance as defined by the [default internal DNS name]. -// -// [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names -func GCPGCEInstanceName(val string) attribute.KeyValue { - return GCPGCEInstanceNameKey.String(val) -} - -// Enum values for gcp.apphub.service.criticality_type -var ( - // Mission critical service. - // Stability: development - GCPAppHubServiceCriticalityTypeMissionCritical = GCPAppHubServiceCriticalityTypeKey.String("MISSION_CRITICAL") - // High impact. - // Stability: development - GCPAppHubServiceCriticalityTypeHigh = GCPAppHubServiceCriticalityTypeKey.String("HIGH") - // Medium impact. - // Stability: development - GCPAppHubServiceCriticalityTypeMedium = GCPAppHubServiceCriticalityTypeKey.String("MEDIUM") - // Low impact. - // Stability: development - GCPAppHubServiceCriticalityTypeLow = GCPAppHubServiceCriticalityTypeKey.String("LOW") -) - -// Enum values for gcp.apphub.service.environment_type -var ( - // Production environment. - // Stability: development - GCPAppHubServiceEnvironmentTypeProduction = GCPAppHubServiceEnvironmentTypeKey.String("PRODUCTION") - // Staging environment. - // Stability: development - GCPAppHubServiceEnvironmentTypeStaging = GCPAppHubServiceEnvironmentTypeKey.String("STAGING") - // Test environment. - // Stability: development - GCPAppHubServiceEnvironmentTypeTest = GCPAppHubServiceEnvironmentTypeKey.String("TEST") - // Development environment. - // Stability: development - GCPAppHubServiceEnvironmentTypeDevelopment = GCPAppHubServiceEnvironmentTypeKey.String("DEVELOPMENT") -) - -// Enum values for gcp.apphub.workload.criticality_type -var ( - // Mission critical service. - // Stability: development - GCPAppHubWorkloadCriticalityTypeMissionCritical = GCPAppHubWorkloadCriticalityTypeKey.String("MISSION_CRITICAL") - // High impact. - // Stability: development - GCPAppHubWorkloadCriticalityTypeHigh = GCPAppHubWorkloadCriticalityTypeKey.String("HIGH") - // Medium impact. - // Stability: development - GCPAppHubWorkloadCriticalityTypeMedium = GCPAppHubWorkloadCriticalityTypeKey.String("MEDIUM") - // Low impact. - // Stability: development - GCPAppHubWorkloadCriticalityTypeLow = GCPAppHubWorkloadCriticalityTypeKey.String("LOW") -) - -// Enum values for gcp.apphub.workload.environment_type -var ( - // Production environment. - // Stability: development - GCPAppHubWorkloadEnvironmentTypeProduction = GCPAppHubWorkloadEnvironmentTypeKey.String("PRODUCTION") - // Staging environment. - // Stability: development - GCPAppHubWorkloadEnvironmentTypeStaging = GCPAppHubWorkloadEnvironmentTypeKey.String("STAGING") - // Test environment. - // Stability: development - GCPAppHubWorkloadEnvironmentTypeTest = GCPAppHubWorkloadEnvironmentTypeKey.String("TEST") - // Development environment. - // Stability: development - GCPAppHubWorkloadEnvironmentTypeDevelopment = GCPAppHubWorkloadEnvironmentTypeKey.String("DEVELOPMENT") -) - -// Enum values for gcp.apphub_destination.service.criticality_type -var ( - // Mission critical service. - // Stability: development - GCPAppHubDestinationServiceCriticalityTypeMissionCritical = GCPAppHubDestinationServiceCriticalityTypeKey.String("MISSION_CRITICAL") - // High impact. - // Stability: development - GCPAppHubDestinationServiceCriticalityTypeHigh = GCPAppHubDestinationServiceCriticalityTypeKey.String("HIGH") - // Medium impact. - // Stability: development - GCPAppHubDestinationServiceCriticalityTypeMedium = GCPAppHubDestinationServiceCriticalityTypeKey.String("MEDIUM") - // Low impact. - // Stability: development - GCPAppHubDestinationServiceCriticalityTypeLow = GCPAppHubDestinationServiceCriticalityTypeKey.String("LOW") -) - -// Enum values for gcp.apphub_destination.service.environment_type -var ( - // Production environment. - // Stability: development - GCPAppHubDestinationServiceEnvironmentTypeProduction = GCPAppHubDestinationServiceEnvironmentTypeKey.String("PRODUCTION") - // Staging environment. - // Stability: development - GCPAppHubDestinationServiceEnvironmentTypeStaging = GCPAppHubDestinationServiceEnvironmentTypeKey.String("STAGING") - // Test environment. - // Stability: development - GCPAppHubDestinationServiceEnvironmentTypeTest = GCPAppHubDestinationServiceEnvironmentTypeKey.String("TEST") - // Development environment. - // Stability: development - GCPAppHubDestinationServiceEnvironmentTypeDevelopment = GCPAppHubDestinationServiceEnvironmentTypeKey.String("DEVELOPMENT") -) - -// Enum values for gcp.apphub_destination.workload.criticality_type -var ( - // Mission critical service. - // Stability: development - GCPAppHubDestinationWorkloadCriticalityTypeMissionCritical = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("MISSION_CRITICAL") - // High impact. - // Stability: development - GCPAppHubDestinationWorkloadCriticalityTypeHigh = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("HIGH") - // Medium impact. - // Stability: development - GCPAppHubDestinationWorkloadCriticalityTypeMedium = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("MEDIUM") - // Low impact. - // Stability: development - GCPAppHubDestinationWorkloadCriticalityTypeLow = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("LOW") -) - -// Enum values for gcp.apphub_destination.workload.environment_type -var ( - // Production environment. - // Stability: development - GCPAppHubDestinationWorkloadEnvironmentTypeProduction = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("PRODUCTION") - // Staging environment. - // Stability: development - GCPAppHubDestinationWorkloadEnvironmentTypeStaging = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("STAGING") - // Test environment. - // Stability: development - GCPAppHubDestinationWorkloadEnvironmentTypeTest = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("TEST") - // Development environment. - // Stability: development - GCPAppHubDestinationWorkloadEnvironmentTypeDevelopment = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("DEVELOPMENT") -) - -// Namespace: gen_ai -const ( - // GenAIAgentDescriptionKey is the attribute Key conforming to the - // "gen_ai.agent.description" semantic conventions. It represents the free-form - // description of the GenAI agent provided by the application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Helps with math problems", "Generates fiction stories" - GenAIAgentDescriptionKey = attribute.Key("gen_ai.agent.description") - - // GenAIAgentIDKey is the attribute Key conforming to the "gen_ai.agent.id" - // semantic conventions. It represents the unique identifier of the GenAI agent. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "asst_5j66UpCpwteGg4YSxUnt7lPY" - GenAIAgentIDKey = attribute.Key("gen_ai.agent.id") - - // GenAIAgentNameKey is the attribute Key conforming to the "gen_ai.agent.name" - // semantic conventions. It represents the human-readable name of the GenAI - // agent provided by the application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Math Tutor", "Fiction Writer" - GenAIAgentNameKey = attribute.Key("gen_ai.agent.name") - - // GenAIConversationIDKey is the attribute Key conforming to the - // "gen_ai.conversation.id" semantic conventions. It represents the unique - // identifier for a conversation (session, thread), used to store and correlate - // messages within this conversation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "conv_5j66UpCpwteGg4YSxUnt7lPY" - GenAIConversationIDKey = attribute.Key("gen_ai.conversation.id") - - // GenAIDataSourceIDKey is the attribute Key conforming to the - // "gen_ai.data_source.id" semantic conventions. It represents the data source - // identifier. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "H7STPQYOND" - // Note: Data sources are used by AI agents and RAG applications to store - // grounding data. A data source may be an external database, object store, - // document collection, website, or any other storage system used by the GenAI - // agent or application. The `gen_ai.data_source.id` SHOULD match the identifier - // used by the GenAI system rather than a name specific to the external storage, - // such as a database or object store. Semantic conventions referencing - // `gen_ai.data_source.id` MAY also leverage additional attributes, such as - // `db.*`, to further identify and describe the data source. - GenAIDataSourceIDKey = attribute.Key("gen_ai.data_source.id") - - // GenAIEmbeddingsDimensionCountKey is the attribute Key conforming to the - // "gen_ai.embeddings.dimension.count" semantic conventions. It represents the - // number of dimensions the resulting output embeddings should have. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 512, 1024 - GenAIEmbeddingsDimensionCountKey = attribute.Key("gen_ai.embeddings.dimension.count") - - // GenAIEvaluationExplanationKey is the attribute Key conforming to the - // "gen_ai.evaluation.explanation" semantic conventions. It represents a - // free-form explanation for the assigned score provided by the evaluator. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "The response is factually accurate but lacks sufficient detail to - // fully address the question." - GenAIEvaluationExplanationKey = attribute.Key("gen_ai.evaluation.explanation") - - // GenAIEvaluationNameKey is the attribute Key conforming to the - // "gen_ai.evaluation.name" semantic conventions. It represents the name of the - // evaluation metric used for the GenAI response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Relevance", "IntentResolution" - GenAIEvaluationNameKey = attribute.Key("gen_ai.evaluation.name") - - // GenAIEvaluationScoreLabelKey is the attribute Key conforming to the - // "gen_ai.evaluation.score.label" semantic conventions. It represents the human - // readable label for evaluation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "relevant", "not_relevant", "correct", "incorrect", "pass", "fail" - // Note: This attribute provides a human-readable interpretation of the - // evaluation score produced by an evaluator. For example, a score value of 1 - // could mean "relevant" in one evaluation system and "not relevant" in another, - // depending on the scoring range and evaluator. The label SHOULD have low - // cardinality. Possible values depend on the evaluation metric and evaluator - // used; implementations SHOULD document the possible values. - GenAIEvaluationScoreLabelKey = attribute.Key("gen_ai.evaluation.score.label") - - // GenAIEvaluationScoreValueKey is the attribute Key conforming to the - // "gen_ai.evaluation.score.value" semantic conventions. It represents the - // evaluation score returned by the evaluator. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 4.0 - GenAIEvaluationScoreValueKey = attribute.Key("gen_ai.evaluation.score.value") - - // GenAIInputMessagesKey is the attribute Key conforming to the - // "gen_ai.input.messages" semantic conventions. It represents the chat history - // provided to the model as an input. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "[\n {\n "role": "user",\n "parts": [\n {\n "type": "text",\n - // "content": "Weather in Paris?"\n }\n ]\n },\n {\n "role": "assistant",\n - // "parts": [\n {\n "type": "tool_call",\n "id": - // "call_VSPygqKTWdrhaFErNvMV18Yl",\n "name": "get_weather",\n "arguments": {\n - // "location": "Paris"\n }\n }\n ]\n },\n {\n "role": "tool",\n "parts": [\n {\n - // "type": "tool_call_response",\n "id": " call_VSPygqKTWdrhaFErNvMV18Yl",\n - // "result": "rainy, 57°F"\n }\n ]\n }\n]\n" - // Note: Instrumentations MUST follow [Input messages JSON schema]. - // When the attribute is recorded on events, it MUST be recorded in structured - // form. When recorded on spans, it MAY be recorded as a JSON string if - // structured - // format is not supported and SHOULD be recorded in structured form otherwise. - // - // Messages MUST be provided in the order they were sent to the model. - // Instrumentations MAY provide a way for users to filter or truncate - // input messages. - // - // > [!Warning] - // > This attribute is likely to contain sensitive information including - // > user/PII data. - // - // See [Recording content on attributes] - // section for more details. - // - // [Input messages JSON schema]: /docs/gen-ai/gen-ai-input-messages.json - // [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes - GenAIInputMessagesKey = attribute.Key("gen_ai.input.messages") - - // GenAIOperationNameKey is the attribute Key conforming to the - // "gen_ai.operation.name" semantic conventions. It represents the name of the - // operation being performed. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: If one of the predefined values applies, but specific system uses a - // different name it's RECOMMENDED to document it in the semantic conventions - // for specific GenAI system and use system-specific name in the - // instrumentation. If a different name is not documented, instrumentation - // libraries SHOULD use applicable predefined value. - GenAIOperationNameKey = attribute.Key("gen_ai.operation.name") - - // GenAIOutputMessagesKey is the attribute Key conforming to the - // "gen_ai.output.messages" semantic conventions. It represents the messages - // returned by the model where each message represents a specific model response - // (choice, candidate). - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "[\n {\n "role": "assistant",\n "parts": [\n {\n "type": "text",\n - // "content": "The weather in Paris is currently rainy with a temperature of - // 57°F."\n }\n ],\n "finish_reason": "stop"\n }\n]\n" - // Note: Instrumentations MUST follow [Output messages JSON schema] - // - // Each message represents a single output choice/candidate generated by - // the model. Each message corresponds to exactly one generation - // (choice/candidate) and vice versa - one choice cannot be split across - // multiple messages or one message cannot contain parts from multiple choices. - // - // When the attribute is recorded on events, it MUST be recorded in structured - // form. When recorded on spans, it MAY be recorded as a JSON string if - // structured - // format is not supported and SHOULD be recorded in structured form otherwise. - // - // Instrumentations MAY provide a way for users to filter or truncate - // output messages. - // - // > [!Warning] - // > This attribute is likely to contain sensitive information including - // > user/PII data. - // - // See [Recording content on attributes] - // section for more details. - // - // [Output messages JSON schema]: /docs/gen-ai/gen-ai-output-messages.json - // [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes - GenAIOutputMessagesKey = attribute.Key("gen_ai.output.messages") - - // GenAIOutputTypeKey is the attribute Key conforming to the - // "gen_ai.output.type" semantic conventions. It represents the represents the - // content type requested by the client. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: This attribute SHOULD be used when the client requests output of a - // specific type. The model may return zero or more outputs of this type. - // This attribute specifies the output modality and not the actual output - // format. For example, if an image is requested, the actual output could be a - // URL pointing to an image file. - // Additional output format details may be recorded in the future in the - // `gen_ai.output.{type}.*` attributes. - GenAIOutputTypeKey = attribute.Key("gen_ai.output.type") - - // GenAIPromptNameKey is the attribute Key conforming to the - // "gen_ai.prompt.name" semantic conventions. It represents the name of the - // prompt that uniquely identifies it. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "analyze-code" - GenAIPromptNameKey = attribute.Key("gen_ai.prompt.name") - - // GenAIProviderNameKey is the attribute Key conforming to the - // "gen_ai.provider.name" semantic conventions. It represents the Generative AI - // provider as identified by the client or server instrumentation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The attribute SHOULD be set based on the instrumentation's best - // knowledge and may differ from the actual model provider. - // - // Multiple providers, including Azure OpenAI, Gemini, and AI hosting platforms - // are accessible using the OpenAI REST API and corresponding client libraries, - // but may proxy or host models from different providers. - // - // The `gen_ai.request.model`, `gen_ai.response.model`, and `server.address` - // attributes may help identify the actual system in use. - // - // The `gen_ai.provider.name` attribute acts as a discriminator that - // identifies the GenAI telemetry format flavor specific to that provider - // within GenAI semantic conventions. - // It SHOULD be set consistently with provider-specific attributes and signals. - // For example, GenAI spans, metrics, and events related to AWS Bedrock - // should have the `gen_ai.provider.name` set to `aws.bedrock` and include - // applicable `aws.bedrock.*` attributes and are not expected to include - // `openai.*` attributes. - GenAIProviderNameKey = attribute.Key("gen_ai.provider.name") - - // GenAIRequestChoiceCountKey is the attribute Key conforming to the - // "gen_ai.request.choice.count" semantic conventions. It represents the target - // number of candidate completions to return. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 3 - GenAIRequestChoiceCountKey = attribute.Key("gen_ai.request.choice.count") - - // GenAIRequestEncodingFormatsKey is the attribute Key conforming to the - // "gen_ai.request.encoding_formats" semantic conventions. It represents the - // encoding formats requested in an embeddings operation, if specified. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "base64"], ["float", "binary" - // Note: In some GenAI systems the encoding formats are called embedding types. - // Also, some GenAI systems only accept a single format per request. - GenAIRequestEncodingFormatsKey = attribute.Key("gen_ai.request.encoding_formats") - - // GenAIRequestFrequencyPenaltyKey is the attribute Key conforming to the - // "gen_ai.request.frequency_penalty" semantic conventions. It represents the - // frequency penalty setting for the GenAI request. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0.1 - GenAIRequestFrequencyPenaltyKey = attribute.Key("gen_ai.request.frequency_penalty") - - // GenAIRequestMaxTokensKey is the attribute Key conforming to the - // "gen_ai.request.max_tokens" semantic conventions. It represents the maximum - // number of tokens the model generates for a request. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 100 - GenAIRequestMaxTokensKey = attribute.Key("gen_ai.request.max_tokens") - - // GenAIRequestModelKey is the attribute Key conforming to the - // "gen_ai.request.model" semantic conventions. It represents the name of the - // GenAI model a request is being made to. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: gpt-4 - GenAIRequestModelKey = attribute.Key("gen_ai.request.model") - - // GenAIRequestPresencePenaltyKey is the attribute Key conforming to the - // "gen_ai.request.presence_penalty" semantic conventions. It represents the - // presence penalty setting for the GenAI request. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0.1 - GenAIRequestPresencePenaltyKey = attribute.Key("gen_ai.request.presence_penalty") - - // GenAIRequestSeedKey is the attribute Key conforming to the - // "gen_ai.request.seed" semantic conventions. It represents the requests with - // same seed value more likely to return same result. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 100 - GenAIRequestSeedKey = attribute.Key("gen_ai.request.seed") - - // GenAIRequestStopSequencesKey is the attribute Key conforming to the - // "gen_ai.request.stop_sequences" semantic conventions. It represents the list - // of sequences that the model will use to stop generating further tokens. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "forest", "lived" - GenAIRequestStopSequencesKey = attribute.Key("gen_ai.request.stop_sequences") - - // GenAIRequestTemperatureKey is the attribute Key conforming to the - // "gen_ai.request.temperature" semantic conventions. It represents the - // temperature setting for the GenAI request. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0.0 - GenAIRequestTemperatureKey = attribute.Key("gen_ai.request.temperature") - - // GenAIRequestTopKKey is the attribute Key conforming to the - // "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling - // setting for the GenAI request. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0 - GenAIRequestTopKKey = attribute.Key("gen_ai.request.top_k") - - // GenAIRequestTopPKey is the attribute Key conforming to the - // "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling - // setting for the GenAI request. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0 - GenAIRequestTopPKey = attribute.Key("gen_ai.request.top_p") - - // GenAIResponseFinishReasonsKey is the attribute Key conforming to the - // "gen_ai.response.finish_reasons" semantic conventions. It represents the - // array of reasons the model stopped generating tokens, corresponding to each - // generation received. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "stop"], ["stop", "length" - GenAIResponseFinishReasonsKey = attribute.Key("gen_ai.response.finish_reasons") - - // GenAIResponseIDKey is the attribute Key conforming to the - // "gen_ai.response.id" semantic conventions. It represents the unique - // identifier for the completion. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "chatcmpl-123" - GenAIResponseIDKey = attribute.Key("gen_ai.response.id") - - // GenAIResponseModelKey is the attribute Key conforming to the - // "gen_ai.response.model" semantic conventions. It represents the name of the - // model that generated the response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "gpt-4-0613" - GenAIResponseModelKey = attribute.Key("gen_ai.response.model") - - // GenAISystemInstructionsKey is the attribute Key conforming to the - // "gen_ai.system_instructions" semantic conventions. It represents the system - // message or instructions provided to the GenAI model separately from the chat - // history. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "[\n {\n "type": "text",\n "content": "You are an Agent that greet - // users, always use greetings tool to respond"\n }\n]\n", "[\n {\n "type": - // "text",\n "content": "You are a language translator."\n },\n {\n "type": - // "text",\n "content": "Your mission is to translate text in English to - // French."\n }\n]\n" - // Note: This attribute SHOULD be used when the corresponding provider or API - // allows to provide system instructions or messages separately from the - // chat history. - // - // Instructions that are part of the chat history SHOULD be recorded in - // `gen_ai.input.messages` attribute instead. - // - // Instrumentations MUST follow [System instructions JSON schema]. - // - // When recorded on spans, it MAY be recorded as a JSON string if structured - // format is not supported and SHOULD be recorded in structured form otherwise. - // - // Instrumentations MAY provide a way for users to filter or truncate - // system instructions. - // - // > [!Warning] - // > This attribute may contain sensitive information. - // - // See [Recording content on attributes] - // section for more details. - // - // [System instructions JSON schema]: /docs/gen-ai/gen-ai-system-instructions.json - // [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes - GenAISystemInstructionsKey = attribute.Key("gen_ai.system_instructions") - - // GenAITokenTypeKey is the attribute Key conforming to the "gen_ai.token.type" - // semantic conventions. It represents the type of token being counted. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "input", "output" - GenAITokenTypeKey = attribute.Key("gen_ai.token.type") - - // GenAIToolCallArgumentsKey is the attribute Key conforming to the - // "gen_ai.tool.call.arguments" semantic conventions. It represents the - // parameters passed to the tool call. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{\n "location": "San Francisco?",\n "date": "2025-10-01"\n}\n" - // Note: > [!WARNING] - // - // > This attribute may contain sensitive information. - // - // It's expected to be an object - in case a serialized string is available - // to the instrumentation, the instrumentation SHOULD do the best effort to - // deserialize it to an object. When recorded on spans, it MAY be recorded as a - // JSON string if structured format is not supported and SHOULD be recorded in - // structured form otherwise. - GenAIToolCallArgumentsKey = attribute.Key("gen_ai.tool.call.arguments") - - // GenAIToolCallIDKey is the attribute Key conforming to the - // "gen_ai.tool.call.id" semantic conventions. It represents the tool call - // identifier. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "call_mszuSIzqtI65i1wAUOE8w5H4" - GenAIToolCallIDKey = attribute.Key("gen_ai.tool.call.id") - - // GenAIToolCallResultKey is the attribute Key conforming to the - // "gen_ai.tool.call.result" semantic conventions. It represents the result - // returned by the tool call (if any and if execution was successful). - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{\n "temperature_range": {\n "high": 75,\n "low": 60\n },\n - // "conditions": "sunny"\n}\n" - // Note: > [!WARNING] - // - // > This attribute may contain sensitive information. - // - // It's expected to be an object - in case a serialized string is available - // to the instrumentation, the instrumentation SHOULD do the best effort to - // deserialize it to an object. When recorded on spans, it MAY be recorded as a - // JSON string if structured format is not supported and SHOULD be recorded in - // structured form otherwise. - GenAIToolCallResultKey = attribute.Key("gen_ai.tool.call.result") - - // GenAIToolDefinitionsKey is the attribute Key conforming to the - // "gen_ai.tool.definitions" semantic conventions. It represents the list of - // source system tool definitions available to the GenAI agent or model. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "[\n {\n "type": "function",\n "name": "get_current_weather",\n - // "description": "Get the current weather in a given location",\n "parameters": - // {\n "type": "object",\n "properties": {\n "location": {\n "type": "string",\n - // "description": "The city and state, e.g. San Francisco, CA"\n },\n "unit": - // {\n "type": "string",\n "enum": [\n "celsius",\n "fahrenheit"\n ]\n }\n },\n - // "required": [\n "location",\n "unit"\n ]\n }\n }\n]\n" - // Note: The value of this attribute matches source system tool definition - // format. - // - // It's expected to be an array of objects where each object represents a tool - // definition. In case a serialized string is available - // to the instrumentation, the instrumentation SHOULD do the best effort to - // deserialize it to an array. When recorded on spans, it MAY be recorded as a - // JSON string if structured format is not supported and SHOULD be recorded in - // structured form otherwise. - // - // Since this attribute could be large, it's NOT RECOMMENDED to populate - // it by default. Instrumentations MAY provide a way to enable - // populating this attribute. - GenAIToolDefinitionsKey = attribute.Key("gen_ai.tool.definitions") - - // GenAIToolDescriptionKey is the attribute Key conforming to the - // "gen_ai.tool.description" semantic conventions. It represents the tool - // description. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Multiply two numbers" - GenAIToolDescriptionKey = attribute.Key("gen_ai.tool.description") - - // GenAIToolNameKey is the attribute Key conforming to the "gen_ai.tool.name" - // semantic conventions. It represents the name of the tool utilized by the - // agent. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Flights" - GenAIToolNameKey = attribute.Key("gen_ai.tool.name") - - // GenAIToolTypeKey is the attribute Key conforming to the "gen_ai.tool.type" - // semantic conventions. It represents the type of the tool utilized by the - // agent. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "function", "extension", "datastore" - // Note: Extension: A tool executed on the agent-side to directly call external - // APIs, bridging the gap between the agent and real-world systems. - // Agent-side operations involve actions that are performed by the agent on the - // server or within the agent's controlled environment. - // Function: A tool executed on the client-side, where the agent generates - // parameters for a predefined function, and the client executes the logic. - // Client-side operations are actions taken on the user's end or within the - // client application. - // Datastore: A tool used by the agent to access and query structured or - // unstructured external data for retrieval-augmented tasks or knowledge - // updates. - GenAIToolTypeKey = attribute.Key("gen_ai.tool.type") - - // GenAIUsageInputTokensKey is the attribute Key conforming to the - // "gen_ai.usage.input_tokens" semantic conventions. It represents the number of - // tokens used in the GenAI input (prompt). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 100 - GenAIUsageInputTokensKey = attribute.Key("gen_ai.usage.input_tokens") - - // GenAIUsageOutputTokensKey is the attribute Key conforming to the - // "gen_ai.usage.output_tokens" semantic conventions. It represents the number - // of tokens used in the GenAI response (completion). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 180 - GenAIUsageOutputTokensKey = attribute.Key("gen_ai.usage.output_tokens") -) - -// GenAIAgentDescription returns an attribute KeyValue conforming to the -// "gen_ai.agent.description" semantic conventions. It represents the free-form -// description of the GenAI agent provided by the application. -func GenAIAgentDescription(val string) attribute.KeyValue { - return GenAIAgentDescriptionKey.String(val) -} - -// GenAIAgentID returns an attribute KeyValue conforming to the "gen_ai.agent.id" -// semantic conventions. It represents the unique identifier of the GenAI agent. -func GenAIAgentID(val string) attribute.KeyValue { - return GenAIAgentIDKey.String(val) -} - -// GenAIAgentName returns an attribute KeyValue conforming to the -// "gen_ai.agent.name" semantic conventions. It represents the human-readable -// name of the GenAI agent provided by the application. -func GenAIAgentName(val string) attribute.KeyValue { - return GenAIAgentNameKey.String(val) -} - -// GenAIConversationID returns an attribute KeyValue conforming to the -// "gen_ai.conversation.id" semantic conventions. It represents the unique -// identifier for a conversation (session, thread), used to store and correlate -// messages within this conversation. -func GenAIConversationID(val string) attribute.KeyValue { - return GenAIConversationIDKey.String(val) -} - -// GenAIDataSourceID returns an attribute KeyValue conforming to the -// "gen_ai.data_source.id" semantic conventions. It represents the data source -// identifier. -func GenAIDataSourceID(val string) attribute.KeyValue { - return GenAIDataSourceIDKey.String(val) -} - -// GenAIEmbeddingsDimensionCount returns an attribute KeyValue conforming to the -// "gen_ai.embeddings.dimension.count" semantic conventions. It represents the -// number of dimensions the resulting output embeddings should have. -func GenAIEmbeddingsDimensionCount(val int) attribute.KeyValue { - return GenAIEmbeddingsDimensionCountKey.Int(val) -} - -// GenAIEvaluationExplanation returns an attribute KeyValue conforming to the -// "gen_ai.evaluation.explanation" semantic conventions. It represents a -// free-form explanation for the assigned score provided by the evaluator. -func GenAIEvaluationExplanation(val string) attribute.KeyValue { - return GenAIEvaluationExplanationKey.String(val) -} - -// GenAIEvaluationName returns an attribute KeyValue conforming to the -// "gen_ai.evaluation.name" semantic conventions. It represents the name of the -// evaluation metric used for the GenAI response. -func GenAIEvaluationName(val string) attribute.KeyValue { - return GenAIEvaluationNameKey.String(val) -} - -// GenAIEvaluationScoreLabel returns an attribute KeyValue conforming to the -// "gen_ai.evaluation.score.label" semantic conventions. It represents the human -// readable label for evaluation. -func GenAIEvaluationScoreLabel(val string) attribute.KeyValue { - return GenAIEvaluationScoreLabelKey.String(val) -} - -// GenAIEvaluationScoreValue returns an attribute KeyValue conforming to the -// "gen_ai.evaluation.score.value" semantic conventions. It represents the -// evaluation score returned by the evaluator. -func GenAIEvaluationScoreValue(val float64) attribute.KeyValue { - return GenAIEvaluationScoreValueKey.Float64(val) -} - -// GenAIPromptName returns an attribute KeyValue conforming to the -// "gen_ai.prompt.name" semantic conventions. It represents the name of the -// prompt that uniquely identifies it. -func GenAIPromptName(val string) attribute.KeyValue { - return GenAIPromptNameKey.String(val) -} - -// GenAIRequestChoiceCount returns an attribute KeyValue conforming to the -// "gen_ai.request.choice.count" semantic conventions. It represents the target -// number of candidate completions to return. -func GenAIRequestChoiceCount(val int) attribute.KeyValue { - return GenAIRequestChoiceCountKey.Int(val) -} - -// GenAIRequestEncodingFormats returns an attribute KeyValue conforming to the -// "gen_ai.request.encoding_formats" semantic conventions. It represents the -// encoding formats requested in an embeddings operation, if specified. -func GenAIRequestEncodingFormats(val ...string) attribute.KeyValue { - return GenAIRequestEncodingFormatsKey.StringSlice(val) -} - -// GenAIRequestFrequencyPenalty returns an attribute KeyValue conforming to the -// "gen_ai.request.frequency_penalty" semantic conventions. It represents the -// frequency penalty setting for the GenAI request. -func GenAIRequestFrequencyPenalty(val float64) attribute.KeyValue { - return GenAIRequestFrequencyPenaltyKey.Float64(val) -} - -// GenAIRequestMaxTokens returns an attribute KeyValue conforming to the -// "gen_ai.request.max_tokens" semantic conventions. It represents the maximum -// number of tokens the model generates for a request. -func GenAIRequestMaxTokens(val int) attribute.KeyValue { - return GenAIRequestMaxTokensKey.Int(val) -} - -// GenAIRequestModel returns an attribute KeyValue conforming to the -// "gen_ai.request.model" semantic conventions. It represents the name of the -// GenAI model a request is being made to. -func GenAIRequestModel(val string) attribute.KeyValue { - return GenAIRequestModelKey.String(val) -} - -// GenAIRequestPresencePenalty returns an attribute KeyValue conforming to the -// "gen_ai.request.presence_penalty" semantic conventions. It represents the -// presence penalty setting for the GenAI request. -func GenAIRequestPresencePenalty(val float64) attribute.KeyValue { - return GenAIRequestPresencePenaltyKey.Float64(val) -} - -// GenAIRequestSeed returns an attribute KeyValue conforming to the -// "gen_ai.request.seed" semantic conventions. It represents the requests with -// same seed value more likely to return same result. -func GenAIRequestSeed(val int) attribute.KeyValue { - return GenAIRequestSeedKey.Int(val) -} - -// GenAIRequestStopSequences returns an attribute KeyValue conforming to the -// "gen_ai.request.stop_sequences" semantic conventions. It represents the list -// of sequences that the model will use to stop generating further tokens. -func GenAIRequestStopSequences(val ...string) attribute.KeyValue { - return GenAIRequestStopSequencesKey.StringSlice(val) -} - -// GenAIRequestTemperature returns an attribute KeyValue conforming to the -// "gen_ai.request.temperature" semantic conventions. It represents the -// temperature setting for the GenAI request. -func GenAIRequestTemperature(val float64) attribute.KeyValue { - return GenAIRequestTemperatureKey.Float64(val) -} - -// GenAIRequestTopK returns an attribute KeyValue conforming to the -// "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling -// setting for the GenAI request. -func GenAIRequestTopK(val float64) attribute.KeyValue { - return GenAIRequestTopKKey.Float64(val) -} - -// GenAIRequestTopP returns an attribute KeyValue conforming to the -// "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling -// setting for the GenAI request. -func GenAIRequestTopP(val float64) attribute.KeyValue { - return GenAIRequestTopPKey.Float64(val) -} - -// GenAIResponseFinishReasons returns an attribute KeyValue conforming to the -// "gen_ai.response.finish_reasons" semantic conventions. It represents the array -// of reasons the model stopped generating tokens, corresponding to each -// generation received. -func GenAIResponseFinishReasons(val ...string) attribute.KeyValue { - return GenAIResponseFinishReasonsKey.StringSlice(val) -} - -// GenAIResponseID returns an attribute KeyValue conforming to the -// "gen_ai.response.id" semantic conventions. It represents the unique identifier -// for the completion. -func GenAIResponseID(val string) attribute.KeyValue { - return GenAIResponseIDKey.String(val) -} - -// GenAIResponseModel returns an attribute KeyValue conforming to the -// "gen_ai.response.model" semantic conventions. It represents the name of the -// model that generated the response. -func GenAIResponseModel(val string) attribute.KeyValue { - return GenAIResponseModelKey.String(val) -} - -// GenAIToolCallID returns an attribute KeyValue conforming to the -// "gen_ai.tool.call.id" semantic conventions. It represents the tool call -// identifier. -func GenAIToolCallID(val string) attribute.KeyValue { - return GenAIToolCallIDKey.String(val) -} - -// GenAIToolDescription returns an attribute KeyValue conforming to the -// "gen_ai.tool.description" semantic conventions. It represents the tool -// description. -func GenAIToolDescription(val string) attribute.KeyValue { - return GenAIToolDescriptionKey.String(val) -} - -// GenAIToolName returns an attribute KeyValue conforming to the -// "gen_ai.tool.name" semantic conventions. It represents the name of the tool -// utilized by the agent. -func GenAIToolName(val string) attribute.KeyValue { - return GenAIToolNameKey.String(val) -} - -// GenAIToolType returns an attribute KeyValue conforming to the -// "gen_ai.tool.type" semantic conventions. It represents the type of the tool -// utilized by the agent. -func GenAIToolType(val string) attribute.KeyValue { - return GenAIToolTypeKey.String(val) -} - -// GenAIUsageInputTokens returns an attribute KeyValue conforming to the -// "gen_ai.usage.input_tokens" semantic conventions. It represents the number of -// tokens used in the GenAI input (prompt). -func GenAIUsageInputTokens(val int) attribute.KeyValue { - return GenAIUsageInputTokensKey.Int(val) -} - -// GenAIUsageOutputTokens returns an attribute KeyValue conforming to the -// "gen_ai.usage.output_tokens" semantic conventions. It represents the number of -// tokens used in the GenAI response (completion). -func GenAIUsageOutputTokens(val int) attribute.KeyValue { - return GenAIUsageOutputTokensKey.Int(val) -} - -// Enum values for gen_ai.operation.name -var ( - // Chat completion operation such as [OpenAI Chat API] - // Stability: development - // - // [OpenAI Chat API]: https://platform.openai.com/docs/api-reference/chat - GenAIOperationNameChat = GenAIOperationNameKey.String("chat") - // Multimodal content generation operation such as [Gemini Generate Content] - // Stability: development - // - // [Gemini Generate Content]: https://ai.google.dev/api/generate-content - GenAIOperationNameGenerateContent = GenAIOperationNameKey.String("generate_content") - // Text completions operation such as [OpenAI Completions API (Legacy)] - // Stability: development - // - // [OpenAI Completions API (Legacy)]: https://platform.openai.com/docs/api-reference/completions - GenAIOperationNameTextCompletion = GenAIOperationNameKey.String("text_completion") - // Embeddings operation such as [OpenAI Create embeddings API] - // Stability: development - // - // [OpenAI Create embeddings API]: https://platform.openai.com/docs/api-reference/embeddings/create - GenAIOperationNameEmbeddings = GenAIOperationNameKey.String("embeddings") - // Create GenAI agent - // Stability: development - GenAIOperationNameCreateAgent = GenAIOperationNameKey.String("create_agent") - // Invoke GenAI agent - // Stability: development - GenAIOperationNameInvokeAgent = GenAIOperationNameKey.String("invoke_agent") - // Execute a tool - // Stability: development - GenAIOperationNameExecuteTool = GenAIOperationNameKey.String("execute_tool") -) - -// Enum values for gen_ai.output.type -var ( - // Plain text - // Stability: development - GenAIOutputTypeText = GenAIOutputTypeKey.String("text") - // JSON object with known or unknown schema - // Stability: development - GenAIOutputTypeJSON = GenAIOutputTypeKey.String("json") - // Image - // Stability: development - GenAIOutputTypeImage = GenAIOutputTypeKey.String("image") - // Speech - // Stability: development - GenAIOutputTypeSpeech = GenAIOutputTypeKey.String("speech") -) - -// Enum values for gen_ai.provider.name -var ( - // [OpenAI] - // Stability: development - // - // [OpenAI]: https://openai.com/ - GenAIProviderNameOpenAI = GenAIProviderNameKey.String("openai") - // Any Google generative AI endpoint - // Stability: development - GenAIProviderNameGCPGenAI = GenAIProviderNameKey.String("gcp.gen_ai") - // [Vertex AI] - // Stability: development - // - // [Vertex AI]: https://cloud.google.com/vertex-ai - GenAIProviderNameGCPVertexAI = GenAIProviderNameKey.String("gcp.vertex_ai") - // [Gemini] - // Stability: development - // - // [Gemini]: https://cloud.google.com/products/gemini - GenAIProviderNameGCPGemini = GenAIProviderNameKey.String("gcp.gemini") - // [Anthropic] - // Stability: development - // - // [Anthropic]: https://www.anthropic.com/ - GenAIProviderNameAnthropic = GenAIProviderNameKey.String("anthropic") - // [Cohere] - // Stability: development - // - // [Cohere]: https://cohere.com/ - GenAIProviderNameCohere = GenAIProviderNameKey.String("cohere") - // Azure AI Inference - // Stability: development - GenAIProviderNameAzureAIInference = GenAIProviderNameKey.String("azure.ai.inference") - // [Azure OpenAI] - // Stability: development - // - // [Azure OpenAI]: https://azure.microsoft.com/products/ai-services/openai-service/ - GenAIProviderNameAzureAIOpenAI = GenAIProviderNameKey.String("azure.ai.openai") - // [IBM Watsonx AI] - // Stability: development - // - // [IBM Watsonx AI]: https://www.ibm.com/products/watsonx-ai - GenAIProviderNameIBMWatsonxAI = GenAIProviderNameKey.String("ibm.watsonx.ai") - // [AWS Bedrock] - // Stability: development - // - // [AWS Bedrock]: https://aws.amazon.com/bedrock - GenAIProviderNameAWSBedrock = GenAIProviderNameKey.String("aws.bedrock") - // [Perplexity] - // Stability: development - // - // [Perplexity]: https://www.perplexity.ai/ - GenAIProviderNamePerplexity = GenAIProviderNameKey.String("perplexity") - // [xAI] - // Stability: development - // - // [xAI]: https://x.ai/ - GenAIProviderNameXAI = GenAIProviderNameKey.String("x_ai") - // [DeepSeek] - // Stability: development - // - // [DeepSeek]: https://www.deepseek.com/ - GenAIProviderNameDeepseek = GenAIProviderNameKey.String("deepseek") - // [Groq] - // Stability: development - // - // [Groq]: https://groq.com/ - GenAIProviderNameGroq = GenAIProviderNameKey.String("groq") - // [Mistral AI] - // Stability: development - // - // [Mistral AI]: https://mistral.ai/ - GenAIProviderNameMistralAI = GenAIProviderNameKey.String("mistral_ai") -) - -// Enum values for gen_ai.token.type -var ( - // Input tokens (prompt, input, etc.) - // Stability: development - GenAITokenTypeInput = GenAITokenTypeKey.String("input") - // Output tokens (completion, response, etc.) - // Stability: development - GenAITokenTypeOutput = GenAITokenTypeKey.String("output") -) - -// Namespace: geo -const ( - // GeoContinentCodeKey is the attribute Key conforming to the - // "geo.continent.code" semantic conventions. It represents the two-letter code - // representing continent’s name. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - GeoContinentCodeKey = attribute.Key("geo.continent.code") - - // GeoCountryISOCodeKey is the attribute Key conforming to the - // "geo.country.iso_code" semantic conventions. It represents the two-letter ISO - // Country Code ([ISO 3166-1 alpha2]). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CA" - // - // [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes - GeoCountryISOCodeKey = attribute.Key("geo.country.iso_code") - - // GeoLocalityNameKey is the attribute Key conforming to the "geo.locality.name" - // semantic conventions. It represents the locality name. Represents the name of - // a city, town, village, or similar populated place. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Montreal", "Berlin" - GeoLocalityNameKey = attribute.Key("geo.locality.name") - - // GeoLocationLatKey is the attribute Key conforming to the "geo.location.lat" - // semantic conventions. It represents the latitude of the geo location in - // [WGS84]. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 45.505918 - // - // [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 - GeoLocationLatKey = attribute.Key("geo.location.lat") - - // GeoLocationLonKey is the attribute Key conforming to the "geo.location.lon" - // semantic conventions. It represents the longitude of the geo location in - // [WGS84]. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: -73.61483 - // - // [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 - GeoLocationLonKey = attribute.Key("geo.location.lon") - - // GeoPostalCodeKey is the attribute Key conforming to the "geo.postal_code" - // semantic conventions. It represents the postal code associated with the - // location. Values appropriate for this field may also be known as a postcode - // or ZIP code and will vary widely from country to country. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "94040" - GeoPostalCodeKey = attribute.Key("geo.postal_code") - - // GeoRegionISOCodeKey is the attribute Key conforming to the - // "geo.region.iso_code" semantic conventions. It represents the region ISO code - // ([ISO 3166-2]). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CA-QC" - // - // [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2 - GeoRegionISOCodeKey = attribute.Key("geo.region.iso_code") -) - -// GeoCountryISOCode returns an attribute KeyValue conforming to the -// "geo.country.iso_code" semantic conventions. It represents the two-letter ISO -// Country Code ([ISO 3166-1 alpha2]). -// -// [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes -func GeoCountryISOCode(val string) attribute.KeyValue { - return GeoCountryISOCodeKey.String(val) -} - -// GeoLocalityName returns an attribute KeyValue conforming to the -// "geo.locality.name" semantic conventions. It represents the locality name. -// Represents the name of a city, town, village, or similar populated place. -func GeoLocalityName(val string) attribute.KeyValue { - return GeoLocalityNameKey.String(val) -} - -// GeoLocationLat returns an attribute KeyValue conforming to the -// "geo.location.lat" semantic conventions. It represents the latitude of the geo -// location in [WGS84]. -// -// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 -func GeoLocationLat(val float64) attribute.KeyValue { - return GeoLocationLatKey.Float64(val) -} - -// GeoLocationLon returns an attribute KeyValue conforming to the -// "geo.location.lon" semantic conventions. It represents the longitude of the -// geo location in [WGS84]. -// -// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 -func GeoLocationLon(val float64) attribute.KeyValue { - return GeoLocationLonKey.Float64(val) -} - -// GeoPostalCode returns an attribute KeyValue conforming to the -// "geo.postal_code" semantic conventions. It represents the postal code -// associated with the location. Values appropriate for this field may also be -// known as a postcode or ZIP code and will vary widely from country to country. -func GeoPostalCode(val string) attribute.KeyValue { - return GeoPostalCodeKey.String(val) -} - -// GeoRegionISOCode returns an attribute KeyValue conforming to the -// "geo.region.iso_code" semantic conventions. It represents the region ISO code -// ([ISO 3166-2]). -// -// [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2 -func GeoRegionISOCode(val string) attribute.KeyValue { - return GeoRegionISOCodeKey.String(val) -} - -// Enum values for geo.continent.code -var ( - // Africa - // Stability: development - GeoContinentCodeAf = GeoContinentCodeKey.String("AF") - // Antarctica - // Stability: development - GeoContinentCodeAn = GeoContinentCodeKey.String("AN") - // Asia - // Stability: development - GeoContinentCodeAs = GeoContinentCodeKey.String("AS") - // Europe - // Stability: development - GeoContinentCodeEu = GeoContinentCodeKey.String("EU") - // North America - // Stability: development - GeoContinentCodeNa = GeoContinentCodeKey.String("NA") - // Oceania - // Stability: development - GeoContinentCodeOc = GeoContinentCodeKey.String("OC") - // South America - // Stability: development - GeoContinentCodeSa = GeoContinentCodeKey.String("SA") -) - -// Namespace: go -const ( - // GoMemoryTypeKey is the attribute Key conforming to the "go.memory.type" - // semantic conventions. It represents the type of memory. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "other", "stack" - GoMemoryTypeKey = attribute.Key("go.memory.type") -) - -// Enum values for go.memory.type -var ( - // Memory allocated from the heap that is reserved for stack space, whether or - // not it is currently in-use. - // Stability: development - GoMemoryTypeStack = GoMemoryTypeKey.String("stack") - // Memory used by the Go runtime, excluding other categories of memory usage - // described in this enumeration. - // Stability: development - GoMemoryTypeOther = GoMemoryTypeKey.String("other") -) - -// Namespace: graphql -const ( - // GraphQLDocumentKey is the attribute Key conforming to the "graphql.document" - // semantic conventions. It represents the GraphQL document being executed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: query findBookById { bookById(id: ?) { name } } - // Note: The value may be sanitized to exclude sensitive information. - GraphQLDocumentKey = attribute.Key("graphql.document") - - // GraphQLOperationNameKey is the attribute Key conforming to the - // "graphql.operation.name" semantic conventions. It represents the name of the - // operation being executed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: findBookById - GraphQLOperationNameKey = attribute.Key("graphql.operation.name") - - // GraphQLOperationTypeKey is the attribute Key conforming to the - // "graphql.operation.type" semantic conventions. It represents the type of the - // operation being executed. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "query", "mutation", "subscription" - GraphQLOperationTypeKey = attribute.Key("graphql.operation.type") -) - -// GraphQLDocument returns an attribute KeyValue conforming to the -// "graphql.document" semantic conventions. It represents the GraphQL document -// being executed. -func GraphQLDocument(val string) attribute.KeyValue { - return GraphQLDocumentKey.String(val) -} - -// GraphQLOperationName returns an attribute KeyValue conforming to the -// "graphql.operation.name" semantic conventions. It represents the name of the -// operation being executed. -func GraphQLOperationName(val string) attribute.KeyValue { - return GraphQLOperationNameKey.String(val) -} - -// Enum values for graphql.operation.type -var ( - // GraphQL query - // Stability: development - GraphQLOperationTypeQuery = GraphQLOperationTypeKey.String("query") - // GraphQL mutation - // Stability: development - GraphQLOperationTypeMutation = GraphQLOperationTypeKey.String("mutation") - // GraphQL subscription - // Stability: development - GraphQLOperationTypeSubscription = GraphQLOperationTypeKey.String("subscription") -) - -// Namespace: heroku -const ( - // HerokuAppIDKey is the attribute Key conforming to the "heroku.app.id" - // semantic conventions. It represents the unique identifier for the - // application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2daa2797-e42b-4624-9322-ec3f968df4da" - HerokuAppIDKey = attribute.Key("heroku.app.id") - - // HerokuReleaseCommitKey is the attribute Key conforming to the - // "heroku.release.commit" semantic conventions. It represents the commit hash - // for the current release. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "e6134959463efd8966b20e75b913cafe3f5ec" - HerokuReleaseCommitKey = attribute.Key("heroku.release.commit") - - // HerokuReleaseCreationTimestampKey is the attribute Key conforming to the - // "heroku.release.creation_timestamp" semantic conventions. It represents the - // time and date the release was created. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2022-10-23T18:00:42Z" - HerokuReleaseCreationTimestampKey = attribute.Key("heroku.release.creation_timestamp") -) - -// HerokuAppID returns an attribute KeyValue conforming to the "heroku.app.id" -// semantic conventions. It represents the unique identifier for the application. -func HerokuAppID(val string) attribute.KeyValue { - return HerokuAppIDKey.String(val) -} - -// HerokuReleaseCommit returns an attribute KeyValue conforming to the -// "heroku.release.commit" semantic conventions. It represents the commit hash -// for the current release. -func HerokuReleaseCommit(val string) attribute.KeyValue { - return HerokuReleaseCommitKey.String(val) -} - -// HerokuReleaseCreationTimestamp returns an attribute KeyValue conforming to the -// "heroku.release.creation_timestamp" semantic conventions. It represents the -// time and date the release was created. -func HerokuReleaseCreationTimestamp(val string) attribute.KeyValue { - return HerokuReleaseCreationTimestampKey.String(val) -} - -// Namespace: host -const ( - // HostArchKey is the attribute Key conforming to the "host.arch" semantic - // conventions. It represents the CPU architecture the host system is running - // on. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HostArchKey = attribute.Key("host.arch") - - // HostCPUCacheL2SizeKey is the attribute Key conforming to the - // "host.cpu.cache.l2.size" semantic conventions. It represents the amount of - // level 2 memory cache available to the processor (in Bytes). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 12288000 - HostCPUCacheL2SizeKey = attribute.Key("host.cpu.cache.l2.size") - - // HostCPUFamilyKey is the attribute Key conforming to the "host.cpu.family" - // semantic conventions. It represents the family or generation of the CPU. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "6", "PA-RISC 1.1e" - HostCPUFamilyKey = attribute.Key("host.cpu.family") - - // HostCPUModelIDKey is the attribute Key conforming to the "host.cpu.model.id" - // semantic conventions. It represents the model identifier. It provides more - // granular information about the CPU, distinguishing it from other CPUs within - // the same family. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "6", "9000/778/B180L" - HostCPUModelIDKey = attribute.Key("host.cpu.model.id") - - // HostCPUModelNameKey is the attribute Key conforming to the - // "host.cpu.model.name" semantic conventions. It represents the model - // designation of the processor. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "11th Gen Intel(R) Core(TM) i7-1185G7 @ 3.00GHz" - HostCPUModelNameKey = attribute.Key("host.cpu.model.name") - - // HostCPUSteppingKey is the attribute Key conforming to the "host.cpu.stepping" - // semantic conventions. It represents the stepping or core revisions. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1", "r1p1" - HostCPUSteppingKey = attribute.Key("host.cpu.stepping") - - // HostCPUVendorIDKey is the attribute Key conforming to the - // "host.cpu.vendor.id" semantic conventions. It represents the processor - // manufacturer identifier. A maximum 12-character string. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "GenuineIntel" - // Note: [CPUID] command returns the vendor ID string in EBX, EDX and ECX - // registers. Writing these to memory in this order results in a 12-character - // string. - // - // [CPUID]: https://wiki.osdev.org/CPUID - HostCPUVendorIDKey = attribute.Key("host.cpu.vendor.id") - - // HostIDKey is the attribute Key conforming to the "host.id" semantic - // conventions. It represents the unique host ID. For Cloud, this must be the - // instance_id assigned by the cloud provider. For non-containerized systems, - // this should be the `machine-id`. See the table below for the sources to use - // to determine the `machine-id` based on operating system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "fdbf79e8af94cb7f9e8df36789187052" - HostIDKey = attribute.Key("host.id") - - // HostImageIDKey is the attribute Key conforming to the "host.image.id" - // semantic conventions. It represents the VM image ID or host OS image ID. For - // Cloud, this value is from the provider. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ami-07b06b442921831e5" - HostImageIDKey = attribute.Key("host.image.id") - - // HostImageNameKey is the attribute Key conforming to the "host.image.name" - // semantic conventions. It represents the name of the VM image or OS install - // the host was instantiated from. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "infra-ami-eks-worker-node-7d4ec78312", "CentOS-8-x86_64-1905" - HostImageNameKey = attribute.Key("host.image.name") - - // HostImageVersionKey is the attribute Key conforming to the - // "host.image.version" semantic conventions. It represents the version string - // of the VM image or host OS as defined in [Version Attributes]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0.1" - // - // [Version Attributes]: /docs/resource/README.md#version-attributes - HostImageVersionKey = attribute.Key("host.image.version") - - // HostIPKey is the attribute Key conforming to the "host.ip" semantic - // conventions. It represents the available IP addresses of the host, excluding - // loopback interfaces. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "192.168.1.140", "fe80::abc2:4a28:737a:609e" - // Note: IPv4 Addresses MUST be specified in dotted-quad notation. IPv6 - // addresses MUST be specified in the [RFC 5952] format. - // - // [RFC 5952]: https://www.rfc-editor.org/rfc/rfc5952.html - HostIPKey = attribute.Key("host.ip") - - // HostMacKey is the attribute Key conforming to the "host.mac" semantic - // conventions. It represents the available MAC addresses of the host, excluding - // loopback interfaces. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "AC-DE-48-23-45-67", "AC-DE-48-23-45-67-01-9F" - // Note: MAC Addresses MUST be represented in [IEEE RA hexadecimal form]: as - // hyphen-separated octets in uppercase hexadecimal form from most to least - // significant. - // - // [IEEE RA hexadecimal form]: https://standards.ieee.org/wp-content/uploads/import/documents/tutorials/eui.pdf - HostMacKey = attribute.Key("host.mac") - - // HostNameKey is the attribute Key conforming to the "host.name" semantic - // conventions. It represents the name of the host. On Unix systems, it may - // contain what the hostname command returns, or the fully qualified hostname, - // or another name specified by the user. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry-test" - HostNameKey = attribute.Key("host.name") - - // HostTypeKey is the attribute Key conforming to the "host.type" semantic - // conventions. It represents the type of host. For Cloud, this must be the - // machine type. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "n1-standard-1" - HostTypeKey = attribute.Key("host.type") -) - -// HostCPUCacheL2Size returns an attribute KeyValue conforming to the -// "host.cpu.cache.l2.size" semantic conventions. It represents the amount of -// level 2 memory cache available to the processor (in Bytes). -func HostCPUCacheL2Size(val int) attribute.KeyValue { - return HostCPUCacheL2SizeKey.Int(val) -} - -// HostCPUFamily returns an attribute KeyValue conforming to the -// "host.cpu.family" semantic conventions. It represents the family or generation -// of the CPU. -func HostCPUFamily(val string) attribute.KeyValue { - return HostCPUFamilyKey.String(val) -} - -// HostCPUModelID returns an attribute KeyValue conforming to the -// "host.cpu.model.id" semantic conventions. It represents the model identifier. -// It provides more granular information about the CPU, distinguishing it from -// other CPUs within the same family. -func HostCPUModelID(val string) attribute.KeyValue { - return HostCPUModelIDKey.String(val) -} - -// HostCPUModelName returns an attribute KeyValue conforming to the -// "host.cpu.model.name" semantic conventions. It represents the model -// designation of the processor. -func HostCPUModelName(val string) attribute.KeyValue { - return HostCPUModelNameKey.String(val) -} - -// HostCPUStepping returns an attribute KeyValue conforming to the -// "host.cpu.stepping" semantic conventions. It represents the stepping or core -// revisions. -func HostCPUStepping(val string) attribute.KeyValue { - return HostCPUSteppingKey.String(val) -} - -// HostCPUVendorID returns an attribute KeyValue conforming to the -// "host.cpu.vendor.id" semantic conventions. It represents the processor -// manufacturer identifier. A maximum 12-character string. -func HostCPUVendorID(val string) attribute.KeyValue { - return HostCPUVendorIDKey.String(val) -} - -// HostID returns an attribute KeyValue conforming to the "host.id" semantic -// conventions. It represents the unique host ID. For Cloud, this must be the -// instance_id assigned by the cloud provider. For non-containerized systems, -// this should be the `machine-id`. See the table below for the sources to use to -// determine the `machine-id` based on operating system. -func HostID(val string) attribute.KeyValue { - return HostIDKey.String(val) -} - -// HostImageID returns an attribute KeyValue conforming to the "host.image.id" -// semantic conventions. It represents the VM image ID or host OS image ID. For -// Cloud, this value is from the provider. -func HostImageID(val string) attribute.KeyValue { - return HostImageIDKey.String(val) -} - -// HostImageName returns an attribute KeyValue conforming to the -// "host.image.name" semantic conventions. It represents the name of the VM image -// or OS install the host was instantiated from. -func HostImageName(val string) attribute.KeyValue { - return HostImageNameKey.String(val) -} - -// HostImageVersion returns an attribute KeyValue conforming to the -// "host.image.version" semantic conventions. It represents the version string of -// the VM image or host OS as defined in [Version Attributes]. -// -// [Version Attributes]: /docs/resource/README.md#version-attributes -func HostImageVersion(val string) attribute.KeyValue { - return HostImageVersionKey.String(val) -} - -// HostIP returns an attribute KeyValue conforming to the "host.ip" semantic -// conventions. It represents the available IP addresses of the host, excluding -// loopback interfaces. -func HostIP(val ...string) attribute.KeyValue { - return HostIPKey.StringSlice(val) -} - -// HostMac returns an attribute KeyValue conforming to the "host.mac" semantic -// conventions. It represents the available MAC addresses of the host, excluding -// loopback interfaces. -func HostMac(val ...string) attribute.KeyValue { - return HostMacKey.StringSlice(val) -} - -// HostName returns an attribute KeyValue conforming to the "host.name" semantic -// conventions. It represents the name of the host. On Unix systems, it may -// contain what the hostname command returns, or the fully qualified hostname, or -// another name specified by the user. -func HostName(val string) attribute.KeyValue { - return HostNameKey.String(val) -} - -// HostType returns an attribute KeyValue conforming to the "host.type" semantic -// conventions. It represents the type of host. For Cloud, this must be the -// machine type. -func HostType(val string) attribute.KeyValue { - return HostTypeKey.String(val) -} - -// Enum values for host.arch -var ( - // AMD64 - // Stability: development - HostArchAMD64 = HostArchKey.String("amd64") - // ARM32 - // Stability: development - HostArchARM32 = HostArchKey.String("arm32") - // ARM64 - // Stability: development - HostArchARM64 = HostArchKey.String("arm64") - // Itanium - // Stability: development - HostArchIA64 = HostArchKey.String("ia64") - // 32-bit PowerPC - // Stability: development - HostArchPPC32 = HostArchKey.String("ppc32") - // 64-bit PowerPC - // Stability: development - HostArchPPC64 = HostArchKey.String("ppc64") - // IBM z/Architecture - // Stability: development - HostArchS390x = HostArchKey.String("s390x") - // 32-bit x86 - // Stability: development - HostArchX86 = HostArchKey.String("x86") -) - -// Namespace: http -const ( - // HTTPConnectionStateKey is the attribute Key conforming to the - // "http.connection.state" semantic conventions. It represents the state of the - // HTTP connection in the HTTP connection pool. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "active", "idle" - HTTPConnectionStateKey = attribute.Key("http.connection.state") - - // HTTPRequestBodySizeKey is the attribute Key conforming to the - // "http.request.body.size" semantic conventions. It represents the size of the - // request payload body in bytes. This is the number of bytes transferred - // excluding headers and is often, but not always, present as the - // [Content-Length] header. For requests using transport encoding, this should - // be the compressed size. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length - HTTPRequestBodySizeKey = attribute.Key("http.request.body.size") - - // HTTPRequestMethodKey is the attribute Key conforming to the - // "http.request.method" semantic conventions. It represents the HTTP request - // method. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "GET", "POST", "HEAD" - // Note: HTTP request method value SHOULD be "known" to the instrumentation. - // By default, this convention defines "known" methods as the ones listed in - // [RFC9110], - // the PATCH method defined in [RFC5789] - // and the QUERY method defined in [httpbis-safe-method-w-body]. - // - // If the HTTP request method is not known to instrumentation, it MUST set the - // `http.request.method` attribute to `_OTHER`. - // - // If the HTTP instrumentation could end up converting valid HTTP request - // methods to `_OTHER`, then it MUST provide a way to override - // the list of known HTTP methods. If this override is done via environment - // variable, then the environment variable MUST be named - // OTEL_INSTRUMENTATION_HTTP_KNOWN_METHODS and support a comma-separated list of - // case-sensitive known HTTP methods - // (this list MUST be a full override of the default known method, it is not a - // list of known methods in addition to the defaults). - // - // HTTP method names are case-sensitive and `http.request.method` attribute - // value MUST match a known HTTP method name exactly. - // Instrumentations for specific web frameworks that consider HTTP methods to be - // case insensitive, SHOULD populate a canonical equivalent. - // Tracing instrumentations that do so, MUST also set - // `http.request.method_original` to the original value. - // - // [RFC9110]: https://www.rfc-editor.org/rfc/rfc9110.html#name-methods - // [RFC5789]: https://www.rfc-editor.org/rfc/rfc5789.html - // [httpbis-safe-method-w-body]: https://datatracker.ietf.org/doc/draft-ietf-httpbis-safe-method-w-body/?include_text=1 - HTTPRequestMethodKey = attribute.Key("http.request.method") - - // HTTPRequestMethodOriginalKey is the attribute Key conforming to the - // "http.request.method_original" semantic conventions. It represents the - // original HTTP method sent by the client in the request line. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "GeT", "ACL", "foo" - HTTPRequestMethodOriginalKey = attribute.Key("http.request.method_original") - - // HTTPRequestResendCountKey is the attribute Key conforming to the - // "http.request.resend_count" semantic conventions. It represents the ordinal - // number of request resending attempt (for any reason, including redirects). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Note: The resend count SHOULD be updated each time an HTTP request gets - // resent by the client, regardless of what was the cause of the resending (e.g. - // redirection, authorization failure, 503 Server Unavailable, network issues, - // or any other). - HTTPRequestResendCountKey = attribute.Key("http.request.resend_count") - - // HTTPRequestSizeKey is the attribute Key conforming to the "http.request.size" - // semantic conventions. It represents the total size of the request in bytes. - // This should be the total number of bytes sent over the wire, including the - // request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers, and request - // body if any. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - HTTPRequestSizeKey = attribute.Key("http.request.size") - - // HTTPResponseBodySizeKey is the attribute Key conforming to the - // "http.response.body.size" semantic conventions. It represents the size of the - // response payload body in bytes. This is the number of bytes transferred - // excluding headers and is often, but not always, present as the - // [Content-Length] header. For requests using transport encoding, this should - // be the compressed size. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length - HTTPResponseBodySizeKey = attribute.Key("http.response.body.size") - - // HTTPResponseSizeKey is the attribute Key conforming to the - // "http.response.size" semantic conventions. It represents the total size of - // the response in bytes. This should be the total number of bytes sent over the - // wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3), - // headers, and response body and trailers if any. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - HTTPResponseSizeKey = attribute.Key("http.response.size") - - // HTTPResponseStatusCodeKey is the attribute Key conforming to the - // "http.response.status_code" semantic conventions. It represents the - // [HTTP response status code]. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 200 - // - // [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 - HTTPResponseStatusCodeKey = attribute.Key("http.response.status_code") - - // HTTPRouteKey is the attribute Key conforming to the "http.route" semantic - // conventions. It represents the matched route template for the request. This - // MUST be low-cardinality and include all static path segments, with dynamic - // path segments represented with placeholders. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "/users/:userID?", "my-controller/my-action/{id?}" - // Note: MUST NOT be populated when this is not supported by the HTTP server - // framework as the route attribute should have low-cardinality and the URI path - // can NOT substitute it. - // SHOULD include the [application root] if there is one. - // - // A static path segment is a part of the route template with a fixed, - // low-cardinality value. This includes literal strings like `/users/` and - // placeholders that - // are constrained to a finite, predefined set of values, e.g. `{controller}` or - // `{action}`. - // - // A dynamic path segment is a placeholder for a value that can have high - // cardinality and is not constrained to a predefined list like static path - // segments. - // - // Instrumentations SHOULD use routing information provided by the corresponding - // web framework. They SHOULD pick the most precise source of routing - // information and MAY - // support custom route formatting. Instrumentations SHOULD document the format - // and the API used to obtain the route string. - // - // [application root]: /docs/http/http-spans.md#http-server-definitions - HTTPRouteKey = attribute.Key("http.route") -) - -// HTTPRequestBodySize returns an attribute KeyValue conforming to the -// "http.request.body.size" semantic conventions. It represents the size of the -// request payload body in bytes. This is the number of bytes transferred -// excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func HTTPRequestBodySize(val int) attribute.KeyValue { - return HTTPRequestBodySizeKey.Int(val) -} - -// HTTPRequestHeader returns an attribute KeyValue conforming to the -// "http.request.header" semantic conventions. It represents the HTTP request -// headers, `` being the normalized HTTP Header name (lowercase), the value -// being the header values. -func HTTPRequestHeader(key string, val ...string) attribute.KeyValue { - return attribute.StringSlice("http.request.header."+key, val) -} - -// HTTPRequestMethodOriginal returns an attribute KeyValue conforming to the -// "http.request.method_original" semantic conventions. It represents the -// original HTTP method sent by the client in the request line. -func HTTPRequestMethodOriginal(val string) attribute.KeyValue { - return HTTPRequestMethodOriginalKey.String(val) -} - -// HTTPRequestResendCount returns an attribute KeyValue conforming to the -// "http.request.resend_count" semantic conventions. It represents the ordinal -// number of request resending attempt (for any reason, including redirects). -func HTTPRequestResendCount(val int) attribute.KeyValue { - return HTTPRequestResendCountKey.Int(val) -} - -// HTTPRequestSize returns an attribute KeyValue conforming to the -// "http.request.size" semantic conventions. It represents the total size of the -// request in bytes. This should be the total number of bytes sent over the wire, -// including the request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers, -// and request body if any. -func HTTPRequestSize(val int) attribute.KeyValue { - return HTTPRequestSizeKey.Int(val) -} - -// HTTPResponseBodySize returns an attribute KeyValue conforming to the -// "http.response.body.size" semantic conventions. It represents the size of the -// response payload body in bytes. This is the number of bytes transferred -// excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func HTTPResponseBodySize(val int) attribute.KeyValue { - return HTTPResponseBodySizeKey.Int(val) -} - -// HTTPResponseHeader returns an attribute KeyValue conforming to the -// "http.response.header" semantic conventions. It represents the HTTP response -// headers, `` being the normalized HTTP Header name (lowercase), the value -// being the header values. -func HTTPResponseHeader(key string, val ...string) attribute.KeyValue { - return attribute.StringSlice("http.response.header."+key, val) -} - -// HTTPResponseSize returns an attribute KeyValue conforming to the -// "http.response.size" semantic conventions. It represents the total size of the -// response in bytes. This should be the total number of bytes sent over the -// wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3), -// headers, and response body and trailers if any. -func HTTPResponseSize(val int) attribute.KeyValue { - return HTTPResponseSizeKey.Int(val) -} - -// HTTPResponseStatusCode returns an attribute KeyValue conforming to the -// "http.response.status_code" semantic conventions. It represents the -// [HTTP response status code]. -// -// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 -func HTTPResponseStatusCode(val int) attribute.KeyValue { - return HTTPResponseStatusCodeKey.Int(val) -} - -// HTTPRoute returns an attribute KeyValue conforming to the "http.route" -// semantic conventions. It represents the matched route template for the -// request. This MUST be low-cardinality and include all static path segments, -// with dynamic path segments represented with placeholders. -func HTTPRoute(val string) attribute.KeyValue { - return HTTPRouteKey.String(val) -} - -// Enum values for http.connection.state -var ( - // active state. - // Stability: development - HTTPConnectionStateActive = HTTPConnectionStateKey.String("active") - // idle state. - // Stability: development - HTTPConnectionStateIdle = HTTPConnectionStateKey.String("idle") -) - -// Enum values for http.request.method -var ( - // CONNECT method. - // Stability: stable - HTTPRequestMethodConnect = HTTPRequestMethodKey.String("CONNECT") - // DELETE method. - // Stability: stable - HTTPRequestMethodDelete = HTTPRequestMethodKey.String("DELETE") - // GET method. - // Stability: stable - HTTPRequestMethodGet = HTTPRequestMethodKey.String("GET") - // HEAD method. - // Stability: stable - HTTPRequestMethodHead = HTTPRequestMethodKey.String("HEAD") - // OPTIONS method. - // Stability: stable - HTTPRequestMethodOptions = HTTPRequestMethodKey.String("OPTIONS") - // PATCH method. - // Stability: stable - HTTPRequestMethodPatch = HTTPRequestMethodKey.String("PATCH") - // POST method. - // Stability: stable - HTTPRequestMethodPost = HTTPRequestMethodKey.String("POST") - // PUT method. - // Stability: stable - HTTPRequestMethodPut = HTTPRequestMethodKey.String("PUT") - // TRACE method. - // Stability: stable - HTTPRequestMethodTrace = HTTPRequestMethodKey.String("TRACE") - // QUERY method. - // Stability: development - HTTPRequestMethodQuery = HTTPRequestMethodKey.String("QUERY") - // Any HTTP method that the instrumentation has no prior knowledge of. - // Stability: stable - HTTPRequestMethodOther = HTTPRequestMethodKey.String("_OTHER") -) - -// Namespace: hw -const ( - // HwBatteryCapacityKey is the attribute Key conforming to the - // "hw.battery.capacity" semantic conventions. It represents the design capacity - // in Watts-hours or Amper-hours. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9.3Ah", "50Wh" - HwBatteryCapacityKey = attribute.Key("hw.battery.capacity") - - // HwBatteryChemistryKey is the attribute Key conforming to the - // "hw.battery.chemistry" semantic conventions. It represents the battery - // [chemistry], e.g. Lithium-Ion, Nickel-Cadmium, etc. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Li-ion", "NiMH" - // - // [chemistry]: https://schemas.dmtf.org/wbem/cim-html/2.31.0/CIM_Battery.html - HwBatteryChemistryKey = attribute.Key("hw.battery.chemistry") - - // HwBatteryStateKey is the attribute Key conforming to the "hw.battery.state" - // semantic conventions. It represents the current state of the battery. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwBatteryStateKey = attribute.Key("hw.battery.state") - - // HwBiosVersionKey is the attribute Key conforming to the "hw.bios_version" - // semantic conventions. It represents the BIOS version of the hardware - // component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1.2.3" - HwBiosVersionKey = attribute.Key("hw.bios_version") - - // HwDriverVersionKey is the attribute Key conforming to the "hw.driver_version" - // semantic conventions. It represents the driver version for the hardware - // component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "10.2.1-3" - HwDriverVersionKey = attribute.Key("hw.driver_version") - - // HwEnclosureTypeKey is the attribute Key conforming to the "hw.enclosure.type" - // semantic conventions. It represents the type of the enclosure (useful for - // modular systems). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Computer", "Storage", "Switch" - HwEnclosureTypeKey = attribute.Key("hw.enclosure.type") - - // HwFirmwareVersionKey is the attribute Key conforming to the - // "hw.firmware_version" semantic conventions. It represents the firmware - // version of the hardware component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2.0.1" - HwFirmwareVersionKey = attribute.Key("hw.firmware_version") - - // HwGpuTaskKey is the attribute Key conforming to the "hw.gpu.task" semantic - // conventions. It represents the type of task the GPU is performing. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwGpuTaskKey = attribute.Key("hw.gpu.task") - - // HwIDKey is the attribute Key conforming to the "hw.id" semantic conventions. - // It represents an identifier for the hardware component, unique within the - // monitored host. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "win32battery_battery_testsysa33_1" - HwIDKey = attribute.Key("hw.id") - - // HwLimitTypeKey is the attribute Key conforming to the "hw.limit_type" - // semantic conventions. It represents the type of limit for hardware - // components. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwLimitTypeKey = attribute.Key("hw.limit_type") - - // HwLogicalDiskRaidLevelKey is the attribute Key conforming to the - // "hw.logical_disk.raid_level" semantic conventions. It represents the RAID - // Level of the logical disk. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "RAID0+1", "RAID5", "RAID10" - HwLogicalDiskRaidLevelKey = attribute.Key("hw.logical_disk.raid_level") - - // HwLogicalDiskStateKey is the attribute Key conforming to the - // "hw.logical_disk.state" semantic conventions. It represents the state of the - // logical disk space usage. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwLogicalDiskStateKey = attribute.Key("hw.logical_disk.state") - - // HwMemoryTypeKey is the attribute Key conforming to the "hw.memory.type" - // semantic conventions. It represents the type of the memory module. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "DDR4", "DDR5", "LPDDR5" - HwMemoryTypeKey = attribute.Key("hw.memory.type") - - // HwModelKey is the attribute Key conforming to the "hw.model" semantic - // conventions. It represents the descriptive model name of the hardware - // component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "PERC H740P", "Intel(R) Core(TM) i7-10700K", "Dell XPS 15 Battery" - HwModelKey = attribute.Key("hw.model") - - // HwNameKey is the attribute Key conforming to the "hw.name" semantic - // conventions. It represents an easily-recognizable name for the hardware - // component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "eth0" - HwNameKey = attribute.Key("hw.name") - - // HwNetworkLogicalAddressesKey is the attribute Key conforming to the - // "hw.network.logical_addresses" semantic conventions. It represents the - // logical addresses of the adapter (e.g. IP address, or WWPN). - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "172.16.8.21", "57.11.193.42" - HwNetworkLogicalAddressesKey = attribute.Key("hw.network.logical_addresses") - - // HwNetworkPhysicalAddressKey is the attribute Key conforming to the - // "hw.network.physical_address" semantic conventions. It represents the - // physical address of the adapter (e.g. MAC address, or WWNN). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "00-90-F5-E9-7B-36" - HwNetworkPhysicalAddressKey = attribute.Key("hw.network.physical_address") - - // HwParentKey is the attribute Key conforming to the "hw.parent" semantic - // conventions. It represents the unique identifier of the parent component - // (typically the `hw.id` attribute of the enclosure, or disk controller). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "dellStorage_perc_0" - HwParentKey = attribute.Key("hw.parent") - - // HwPhysicalDiskSmartAttributeKey is the attribute Key conforming to the - // "hw.physical_disk.smart_attribute" semantic conventions. It represents the - // [S.M.A.R.T.] (Self-Monitoring, Analysis, and Reporting Technology) attribute - // of the physical disk. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Spin Retry Count", "Seek Error Rate", "Raw Read Error Rate" - // - // [S.M.A.R.T.]: https://wikipedia.org/wiki/S.M.A.R.T. - HwPhysicalDiskSmartAttributeKey = attribute.Key("hw.physical_disk.smart_attribute") - - // HwPhysicalDiskStateKey is the attribute Key conforming to the - // "hw.physical_disk.state" semantic conventions. It represents the state of the - // physical disk endurance utilization. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwPhysicalDiskStateKey = attribute.Key("hw.physical_disk.state") - - // HwPhysicalDiskTypeKey is the attribute Key conforming to the - // "hw.physical_disk.type" semantic conventions. It represents the type of the - // physical disk. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "HDD", "SSD", "10K" - HwPhysicalDiskTypeKey = attribute.Key("hw.physical_disk.type") - - // HwSensorLocationKey is the attribute Key conforming to the - // "hw.sensor_location" semantic conventions. It represents the location of the - // sensor. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cpu0", "ps1", "INLET", "CPU0_DIE", "AMBIENT", "MOTHERBOARD", "PS0 - // V3_3", "MAIN_12V", "CPU_VCORE" - HwSensorLocationKey = attribute.Key("hw.sensor_location") - - // HwSerialNumberKey is the attribute Key conforming to the "hw.serial_number" - // semantic conventions. It represents the serial number of the hardware - // component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CNFCP0123456789" - HwSerialNumberKey = attribute.Key("hw.serial_number") - - // HwStateKey is the attribute Key conforming to the "hw.state" semantic - // conventions. It represents the current state of the component. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwStateKey = attribute.Key("hw.state") - - // HwTapeDriveOperationTypeKey is the attribute Key conforming to the - // "hw.tape_drive.operation_type" semantic conventions. It represents the type - // of tape drive operation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwTapeDriveOperationTypeKey = attribute.Key("hw.tape_drive.operation_type") - - // HwTypeKey is the attribute Key conforming to the "hw.type" semantic - // conventions. It represents the type of the component. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: Describes the category of the hardware component for which `hw.state` - // is being reported. For example, `hw.type=temperature` along with - // `hw.state=degraded` would indicate that the temperature of the hardware - // component has been reported as `degraded`. - HwTypeKey = attribute.Key("hw.type") - - // HwVendorKey is the attribute Key conforming to the "hw.vendor" semantic - // conventions. It represents the vendor name of the hardware component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Dell", "HP", "Intel", "AMD", "LSI", "Lenovo" - HwVendorKey = attribute.Key("hw.vendor") -) - -// HwBatteryCapacity returns an attribute KeyValue conforming to the -// "hw.battery.capacity" semantic conventions. It represents the design capacity -// in Watts-hours or Amper-hours. -func HwBatteryCapacity(val string) attribute.KeyValue { - return HwBatteryCapacityKey.String(val) -} - -// HwBatteryChemistry returns an attribute KeyValue conforming to the -// "hw.battery.chemistry" semantic conventions. It represents the battery -// [chemistry], e.g. Lithium-Ion, Nickel-Cadmium, etc. -// -// [chemistry]: https://schemas.dmtf.org/wbem/cim-html/2.31.0/CIM_Battery.html -func HwBatteryChemistry(val string) attribute.KeyValue { - return HwBatteryChemistryKey.String(val) -} - -// HwBiosVersion returns an attribute KeyValue conforming to the -// "hw.bios_version" semantic conventions. It represents the BIOS version of the -// hardware component. -func HwBiosVersion(val string) attribute.KeyValue { - return HwBiosVersionKey.String(val) -} - -// HwDriverVersion returns an attribute KeyValue conforming to the -// "hw.driver_version" semantic conventions. It represents the driver version for -// the hardware component. -func HwDriverVersion(val string) attribute.KeyValue { - return HwDriverVersionKey.String(val) -} - -// HwEnclosureType returns an attribute KeyValue conforming to the -// "hw.enclosure.type" semantic conventions. It represents the type of the -// enclosure (useful for modular systems). -func HwEnclosureType(val string) attribute.KeyValue { - return HwEnclosureTypeKey.String(val) -} - -// HwFirmwareVersion returns an attribute KeyValue conforming to the -// "hw.firmware_version" semantic conventions. It represents the firmware version -// of the hardware component. -func HwFirmwareVersion(val string) attribute.KeyValue { - return HwFirmwareVersionKey.String(val) -} - -// HwID returns an attribute KeyValue conforming to the "hw.id" semantic -// conventions. It represents an identifier for the hardware component, unique -// within the monitored host. -func HwID(val string) attribute.KeyValue { - return HwIDKey.String(val) -} - -// HwLogicalDiskRaidLevel returns an attribute KeyValue conforming to the -// "hw.logical_disk.raid_level" semantic conventions. It represents the RAID -// Level of the logical disk. -func HwLogicalDiskRaidLevel(val string) attribute.KeyValue { - return HwLogicalDiskRaidLevelKey.String(val) -} - -// HwMemoryType returns an attribute KeyValue conforming to the "hw.memory.type" -// semantic conventions. It represents the type of the memory module. -func HwMemoryType(val string) attribute.KeyValue { - return HwMemoryTypeKey.String(val) -} - -// HwModel returns an attribute KeyValue conforming to the "hw.model" semantic -// conventions. It represents the descriptive model name of the hardware -// component. -func HwModel(val string) attribute.KeyValue { - return HwModelKey.String(val) -} - -// HwName returns an attribute KeyValue conforming to the "hw.name" semantic -// conventions. It represents an easily-recognizable name for the hardware -// component. -func HwName(val string) attribute.KeyValue { - return HwNameKey.String(val) -} - -// HwNetworkLogicalAddresses returns an attribute KeyValue conforming to the -// "hw.network.logical_addresses" semantic conventions. It represents the logical -// addresses of the adapter (e.g. IP address, or WWPN). -func HwNetworkLogicalAddresses(val ...string) attribute.KeyValue { - return HwNetworkLogicalAddressesKey.StringSlice(val) -} - -// HwNetworkPhysicalAddress returns an attribute KeyValue conforming to the -// "hw.network.physical_address" semantic conventions. It represents the physical -// address of the adapter (e.g. MAC address, or WWNN). -func HwNetworkPhysicalAddress(val string) attribute.KeyValue { - return HwNetworkPhysicalAddressKey.String(val) -} - -// HwParent returns an attribute KeyValue conforming to the "hw.parent" semantic -// conventions. It represents the unique identifier of the parent component -// (typically the `hw.id` attribute of the enclosure, or disk controller). -func HwParent(val string) attribute.KeyValue { - return HwParentKey.String(val) -} - -// HwPhysicalDiskSmartAttribute returns an attribute KeyValue conforming to the -// "hw.physical_disk.smart_attribute" semantic conventions. It represents the -// [S.M.A.R.T.] (Self-Monitoring, Analysis, and Reporting Technology) attribute -// of the physical disk. -// -// [S.M.A.R.T.]: https://wikipedia.org/wiki/S.M.A.R.T. -func HwPhysicalDiskSmartAttribute(val string) attribute.KeyValue { - return HwPhysicalDiskSmartAttributeKey.String(val) -} - -// HwPhysicalDiskType returns an attribute KeyValue conforming to the -// "hw.physical_disk.type" semantic conventions. It represents the type of the -// physical disk. -func HwPhysicalDiskType(val string) attribute.KeyValue { - return HwPhysicalDiskTypeKey.String(val) -} - -// HwSensorLocation returns an attribute KeyValue conforming to the -// "hw.sensor_location" semantic conventions. It represents the location of the -// sensor. -func HwSensorLocation(val string) attribute.KeyValue { - return HwSensorLocationKey.String(val) -} - -// HwSerialNumber returns an attribute KeyValue conforming to the -// "hw.serial_number" semantic conventions. It represents the serial number of -// the hardware component. -func HwSerialNumber(val string) attribute.KeyValue { - return HwSerialNumberKey.String(val) -} - -// HwVendor returns an attribute KeyValue conforming to the "hw.vendor" semantic -// conventions. It represents the vendor name of the hardware component. -func HwVendor(val string) attribute.KeyValue { - return HwVendorKey.String(val) -} - -// Enum values for hw.battery.state -var ( - // Charging - // Stability: development - HwBatteryStateCharging = HwBatteryStateKey.String("charging") - // Discharging - // Stability: development - HwBatteryStateDischarging = HwBatteryStateKey.String("discharging") -) - -// Enum values for hw.gpu.task -var ( - // Decoder - // Stability: development - HwGpuTaskDecoder = HwGpuTaskKey.String("decoder") - // Encoder - // Stability: development - HwGpuTaskEncoder = HwGpuTaskKey.String("encoder") - // General - // Stability: development - HwGpuTaskGeneral = HwGpuTaskKey.String("general") -) - -// Enum values for hw.limit_type -var ( - // Critical - // Stability: development - HwLimitTypeCritical = HwLimitTypeKey.String("critical") - // Degraded - // Stability: development - HwLimitTypeDegraded = HwLimitTypeKey.String("degraded") - // High Critical - // Stability: development - HwLimitTypeHighCritical = HwLimitTypeKey.String("high.critical") - // High Degraded - // Stability: development - HwLimitTypeHighDegraded = HwLimitTypeKey.String("high.degraded") - // Low Critical - // Stability: development - HwLimitTypeLowCritical = HwLimitTypeKey.String("low.critical") - // Low Degraded - // Stability: development - HwLimitTypeLowDegraded = HwLimitTypeKey.String("low.degraded") - // Maximum - // Stability: development - HwLimitTypeMax = HwLimitTypeKey.String("max") - // Throttled - // Stability: development - HwLimitTypeThrottled = HwLimitTypeKey.String("throttled") - // Turbo - // Stability: development - HwLimitTypeTurbo = HwLimitTypeKey.String("turbo") -) - -// Enum values for hw.logical_disk.state -var ( - // Used - // Stability: development - HwLogicalDiskStateUsed = HwLogicalDiskStateKey.String("used") - // Free - // Stability: development - HwLogicalDiskStateFree = HwLogicalDiskStateKey.String("free") -) - -// Enum values for hw.physical_disk.state -var ( - // Remaining - // Stability: development - HwPhysicalDiskStateRemaining = HwPhysicalDiskStateKey.String("remaining") -) - -// Enum values for hw.state -var ( - // Degraded - // Stability: development - HwStateDegraded = HwStateKey.String("degraded") - // Failed - // Stability: development - HwStateFailed = HwStateKey.String("failed") - // Needs Cleaning - // Stability: development - HwStateNeedsCleaning = HwStateKey.String("needs_cleaning") - // OK - // Stability: development - HwStateOk = HwStateKey.String("ok") - // Predicted Failure - // Stability: development - HwStatePredictedFailure = HwStateKey.String("predicted_failure") -) - -// Enum values for hw.tape_drive.operation_type -var ( - // Mount - // Stability: development - HwTapeDriveOperationTypeMount = HwTapeDriveOperationTypeKey.String("mount") - // Unmount - // Stability: development - HwTapeDriveOperationTypeUnmount = HwTapeDriveOperationTypeKey.String("unmount") - // Clean - // Stability: development - HwTapeDriveOperationTypeClean = HwTapeDriveOperationTypeKey.String("clean") -) - -// Enum values for hw.type -var ( - // Battery - // Stability: development - HwTypeBattery = HwTypeKey.String("battery") - // CPU - // Stability: development - HwTypeCPU = HwTypeKey.String("cpu") - // Disk controller - // Stability: development - HwTypeDiskController = HwTypeKey.String("disk_controller") - // Enclosure - // Stability: development - HwTypeEnclosure = HwTypeKey.String("enclosure") - // Fan - // Stability: development - HwTypeFan = HwTypeKey.String("fan") - // GPU - // Stability: development - HwTypeGpu = HwTypeKey.String("gpu") - // Logical disk - // Stability: development - HwTypeLogicalDisk = HwTypeKey.String("logical_disk") - // Memory - // Stability: development - HwTypeMemory = HwTypeKey.String("memory") - // Network - // Stability: development - HwTypeNetwork = HwTypeKey.String("network") - // Physical disk - // Stability: development - HwTypePhysicalDisk = HwTypeKey.String("physical_disk") - // Power supply - // Stability: development - HwTypePowerSupply = HwTypeKey.String("power_supply") - // Tape drive - // Stability: development - HwTypeTapeDrive = HwTypeKey.String("tape_drive") - // Temperature - // Stability: development - HwTypeTemperature = HwTypeKey.String("temperature") - // Voltage - // Stability: development - HwTypeVoltage = HwTypeKey.String("voltage") -) - -// Namespace: ios -const ( - // IOSAppStateKey is the attribute Key conforming to the "ios.app.state" - // semantic conventions. It represents the this attribute represents the state - // of the application. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The iOS lifecycle states are defined in the - // [UIApplicationDelegate documentation], and from which the `OS terminology` - // column values are derived. - // - // [UIApplicationDelegate documentation]: https://developer.apple.com/documentation/uikit/uiapplicationdelegate - IOSAppStateKey = attribute.Key("ios.app.state") -) - -// Enum values for ios.app.state -var ( - // The app has become `active`. Associated with UIKit notification - // `applicationDidBecomeActive`. - // - // Stability: development - IOSAppStateActive = IOSAppStateKey.String("active") - // The app is now `inactive`. Associated with UIKit notification - // `applicationWillResignActive`. - // - // Stability: development - IOSAppStateInactive = IOSAppStateKey.String("inactive") - // The app is now in the background. This value is associated with UIKit - // notification `applicationDidEnterBackground`. - // - // Stability: development - IOSAppStateBackground = IOSAppStateKey.String("background") - // The app is now in the foreground. This value is associated with UIKit - // notification `applicationWillEnterForeground`. - // - // Stability: development - IOSAppStateForeground = IOSAppStateKey.String("foreground") - // The app is about to terminate. Associated with UIKit notification - // `applicationWillTerminate`. - // - // Stability: development - IOSAppStateTerminate = IOSAppStateKey.String("terminate") -) - -// Namespace: jsonrpc -const ( - // JSONRPCProtocolVersionKey is the attribute Key conforming to the - // "jsonrpc.protocol.version" semantic conventions. It represents the protocol - // version, as specified in the `jsonrpc` property of the request and its - // corresponding response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2.0", "1.0" - JSONRPCProtocolVersionKey = attribute.Key("jsonrpc.protocol.version") - - // JSONRPCRequestIDKey is the attribute Key conforming to the - // "jsonrpc.request.id" semantic conventions. It represents a string - // representation of the `id` property of the request and its corresponding - // response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "10", "request-7" - // Note: Under the [JSON-RPC specification], the `id` property may be a string, - // number, null, or omitted entirely. When omitted, the request is treated as a - // notification. Using `null` is not equivalent to omitting the `id`, but it is - // discouraged. - // Instrumentations SHOULD NOT capture this attribute when the `id` is `null` or - // omitted. - // - // [JSON-RPC specification]: https://www.jsonrpc.org/specification - JSONRPCRequestIDKey = attribute.Key("jsonrpc.request.id") -) - -// JSONRPCProtocolVersion returns an attribute KeyValue conforming to the -// "jsonrpc.protocol.version" semantic conventions. It represents the protocol -// version, as specified in the `jsonrpc` property of the request and its -// corresponding response. -func JSONRPCProtocolVersion(val string) attribute.KeyValue { - return JSONRPCProtocolVersionKey.String(val) -} - -// JSONRPCRequestID returns an attribute KeyValue conforming to the -// "jsonrpc.request.id" semantic conventions. It represents a string -// representation of the `id` property of the request and its corresponding -// response. -func JSONRPCRequestID(val string) attribute.KeyValue { - return JSONRPCRequestIDKey.String(val) -} - -// Namespace: k8s -const ( - // K8SClusterNameKey is the attribute Key conforming to the "k8s.cluster.name" - // semantic conventions. It represents the name of the cluster. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "opentelemetry-cluster" - K8SClusterNameKey = attribute.Key("k8s.cluster.name") - - // K8SClusterUIDKey is the attribute Key conforming to the "k8s.cluster.uid" - // semantic conventions. It represents a pseudo-ID for the cluster, set to the - // UID of the `kube-system` namespace. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: K8s doesn't have support for obtaining a cluster ID. If this is ever - // added, we will recommend collecting the `k8s.cluster.uid` through the - // official APIs. In the meantime, we are able to use the `uid` of the - // `kube-system` namespace as a proxy for cluster ID. Read on for the - // rationale. - // - // Every object created in a K8s cluster is assigned a distinct UID. The - // `kube-system` namespace is used by Kubernetes itself and will exist - // for the lifetime of the cluster. Using the `uid` of the `kube-system` - // namespace is a reasonable proxy for the K8s ClusterID as it will only - // change if the cluster is rebuilt. Furthermore, Kubernetes UIDs are - // UUIDs as standardized by - // [ISO/IEC 9834-8 and ITU-T X.667]. - // Which states: - // - // > If generated according to one of the mechanisms defined in Rec. - // > ITU-T X.667 | ISO/IEC 9834-8, a UUID is either guaranteed to be - // > different from all other UUIDs generated before 3603 A.D., or is - // > extremely likely to be different (depending on the mechanism chosen). - // - // Therefore, UIDs between clusters should be extremely unlikely to - // conflict. - // - // [ISO/IEC 9834-8 and ITU-T X.667]: https://www.itu.int/ITU-T/studygroups/com17/oid.html - K8SClusterUIDKey = attribute.Key("k8s.cluster.uid") - - // K8SContainerNameKey is the attribute Key conforming to the - // "k8s.container.name" semantic conventions. It represents the name of the - // Container from Pod specification, must be unique within a Pod. Container - // runtime usually uses different globally unique name (`container.name`). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "redis" - K8SContainerNameKey = attribute.Key("k8s.container.name") - - // K8SContainerRestartCountKey is the attribute Key conforming to the - // "k8s.container.restart_count" semantic conventions. It represents the number - // of times the container was restarted. This attribute can be used to identify - // a particular container (running or stopped) within a container spec. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: - K8SContainerRestartCountKey = attribute.Key("k8s.container.restart_count") - - // K8SContainerStatusLastTerminatedReasonKey is the attribute Key conforming to - // the "k8s.container.status.last_terminated_reason" semantic conventions. It - // represents the last terminated reason of the Container. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Evicted", "Error" - K8SContainerStatusLastTerminatedReasonKey = attribute.Key("k8s.container.status.last_terminated_reason") - - // K8SContainerStatusReasonKey is the attribute Key conforming to the - // "k8s.container.status.reason" semantic conventions. It represents the reason - // for the container state. Corresponds to the `reason` field of the: - // [K8s ContainerStateWaiting] or [K8s ContainerStateTerminated]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ContainerCreating", "CrashLoopBackOff", - // "CreateContainerConfigError", "ErrImagePull", "ImagePullBackOff", - // "OOMKilled", "Completed", "Error", "ContainerCannotRun" - // - // [K8s ContainerStateWaiting]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstatewaiting-v1-core - // [K8s ContainerStateTerminated]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstateterminated-v1-core - K8SContainerStatusReasonKey = attribute.Key("k8s.container.status.reason") - - // K8SContainerStatusStateKey is the attribute Key conforming to the - // "k8s.container.status.state" semantic conventions. It represents the state of - // the container. [K8s ContainerState]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "terminated", "running", "waiting" - // - // [K8s ContainerState]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstate-v1-core - K8SContainerStatusStateKey = attribute.Key("k8s.container.status.state") - - // K8SCronJobNameKey is the attribute Key conforming to the "k8s.cronjob.name" - // semantic conventions. It represents the name of the CronJob. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "opentelemetry" - K8SCronJobNameKey = attribute.Key("k8s.cronjob.name") - - // K8SCronJobUIDKey is the attribute Key conforming to the "k8s.cronjob.uid" - // semantic conventions. It represents the UID of the CronJob. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SCronJobUIDKey = attribute.Key("k8s.cronjob.uid") - - // K8SDaemonSetNameKey is the attribute Key conforming to the - // "k8s.daemonset.name" semantic conventions. It represents the name of the - // DaemonSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "opentelemetry" - K8SDaemonSetNameKey = attribute.Key("k8s.daemonset.name") - - // K8SDaemonSetUIDKey is the attribute Key conforming to the "k8s.daemonset.uid" - // semantic conventions. It represents the UID of the DaemonSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SDaemonSetUIDKey = attribute.Key("k8s.daemonset.uid") - - // K8SDeploymentNameKey is the attribute Key conforming to the - // "k8s.deployment.name" semantic conventions. It represents the name of the - // Deployment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "opentelemetry" - K8SDeploymentNameKey = attribute.Key("k8s.deployment.name") - - // K8SDeploymentUIDKey is the attribute Key conforming to the - // "k8s.deployment.uid" semantic conventions. It represents the UID of the - // Deployment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SDeploymentUIDKey = attribute.Key("k8s.deployment.uid") - - // K8SHPAMetricTypeKey is the attribute Key conforming to the - // "k8s.hpa.metric.type" semantic conventions. It represents the type of metric - // source for the horizontal pod autoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Resource", "ContainerResource" - // Note: This attribute reflects the `type` field of spec.metrics[] in the HPA. - K8SHPAMetricTypeKey = attribute.Key("k8s.hpa.metric.type") - - // K8SHPANameKey is the attribute Key conforming to the "k8s.hpa.name" semantic - // conventions. It represents the name of the horizontal pod autoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry" - K8SHPANameKey = attribute.Key("k8s.hpa.name") - - // K8SHPAScaletargetrefAPIVersionKey is the attribute Key conforming to the - // "k8s.hpa.scaletargetref.api_version" semantic conventions. It represents the - // API version of the target resource to scale for the HorizontalPodAutoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "apps/v1", "autoscaling/v2" - // Note: This maps to the `apiVersion` field in the `scaleTargetRef` of the HPA - // spec. - K8SHPAScaletargetrefAPIVersionKey = attribute.Key("k8s.hpa.scaletargetref.api_version") - - // K8SHPAScaletargetrefKindKey is the attribute Key conforming to the - // "k8s.hpa.scaletargetref.kind" semantic conventions. It represents the kind of - // the target resource to scale for the HorizontalPodAutoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Deployment", "StatefulSet" - // Note: This maps to the `kind` field in the `scaleTargetRef` of the HPA spec. - K8SHPAScaletargetrefKindKey = attribute.Key("k8s.hpa.scaletargetref.kind") - - // K8SHPAScaletargetrefNameKey is the attribute Key conforming to the - // "k8s.hpa.scaletargetref.name" semantic conventions. It represents the name of - // the target resource to scale for the HorizontalPodAutoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-deployment", "my-statefulset" - // Note: This maps to the `name` field in the `scaleTargetRef` of the HPA spec. - K8SHPAScaletargetrefNameKey = attribute.Key("k8s.hpa.scaletargetref.name") - - // K8SHPAUIDKey is the attribute Key conforming to the "k8s.hpa.uid" semantic - // conventions. It represents the UID of the horizontal pod autoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SHPAUIDKey = attribute.Key("k8s.hpa.uid") - - // K8SHugepageSizeKey is the attribute Key conforming to the "k8s.hugepage.size" - // semantic conventions. It represents the size (identifier) of the K8s huge - // page. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2Mi" - K8SHugepageSizeKey = attribute.Key("k8s.hugepage.size") - - // K8SJobNameKey is the attribute Key conforming to the "k8s.job.name" semantic - // conventions. It represents the name of the Job. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "opentelemetry" - K8SJobNameKey = attribute.Key("k8s.job.name") - - // K8SJobUIDKey is the attribute Key conforming to the "k8s.job.uid" semantic - // conventions. It represents the UID of the Job. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SJobUIDKey = attribute.Key("k8s.job.uid") - - // K8SNamespaceNameKey is the attribute Key conforming to the - // "k8s.namespace.name" semantic conventions. It represents the name of the - // namespace that the pod is running in. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "default" - K8SNamespaceNameKey = attribute.Key("k8s.namespace.name") - - // K8SNamespacePhaseKey is the attribute Key conforming to the - // "k8s.namespace.phase" semantic conventions. It represents the phase of the - // K8s namespace. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "active", "terminating" - // Note: This attribute aligns with the `phase` field of the - // [K8s NamespaceStatus] - // - // [K8s NamespaceStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#namespacestatus-v1-core - K8SNamespacePhaseKey = attribute.Key("k8s.namespace.phase") - - // K8SNodeConditionStatusKey is the attribute Key conforming to the - // "k8s.node.condition.status" semantic conventions. It represents the status of - // the condition, one of True, False, Unknown. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "true", "false", "unknown" - // Note: This attribute aligns with the `status` field of the - // [NodeCondition] - // - // [NodeCondition]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#nodecondition-v1-core - K8SNodeConditionStatusKey = attribute.Key("k8s.node.condition.status") - - // K8SNodeConditionTypeKey is the attribute Key conforming to the - // "k8s.node.condition.type" semantic conventions. It represents the condition - // type of a K8s Node. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Ready", "DiskPressure" - // Note: K8s Node conditions as described - // by [K8s documentation]. - // - // This attribute aligns with the `type` field of the - // [NodeCondition] - // - // The set of possible values is not limited to those listed here. Managed - // Kubernetes environments, - // or custom controllers MAY introduce additional node condition types. - // When this occurs, the exact value as reported by the Kubernetes API SHOULD be - // used. - // - // [K8s documentation]: https://v1-32.docs.kubernetes.io/docs/reference/node/node-status/#condition - // [NodeCondition]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#nodecondition-v1-core - K8SNodeConditionTypeKey = attribute.Key("k8s.node.condition.type") - - // K8SNodeNameKey is the attribute Key conforming to the "k8s.node.name" - // semantic conventions. It represents the name of the Node. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "node-1" - K8SNodeNameKey = attribute.Key("k8s.node.name") - - // K8SNodeUIDKey is the attribute Key conforming to the "k8s.node.uid" semantic - // conventions. It represents the UID of the Node. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "1eb3a0c6-0477-4080-a9cb-0cb7db65c6a2" - K8SNodeUIDKey = attribute.Key("k8s.node.uid") - - // K8SPodHostnameKey is the attribute Key conforming to the "k8s.pod.hostname" - // semantic conventions. It represents the specifies the hostname of the Pod. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "collector-gateway" - // Note: The K8s Pod spec has an optional hostname field, which can be used to - // specify a hostname. - // Refer to [K8s docs] - // for more information about this field. - // - // This attribute aligns with the `hostname` field of the - // [K8s PodSpec]. - // - // [K8s docs]: https://kubernetes.io/docs/concepts/services-networking/dns-pod-service/#pod-hostname-and-subdomain-field - // [K8s PodSpec]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podspec-v1-core - K8SPodHostnameKey = attribute.Key("k8s.pod.hostname") - - // K8SPodIPKey is the attribute Key conforming to the "k8s.pod.ip" semantic - // conventions. It represents the IP address allocated to the Pod. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "172.18.0.2" - // Note: This attribute aligns with the `podIP` field of the - // [K8s PodStatus]. - // - // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podstatus-v1-core - K8SPodIPKey = attribute.Key("k8s.pod.ip") - - // K8SPodNameKey is the attribute Key conforming to the "k8s.pod.name" semantic - // conventions. It represents the name of the Pod. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "opentelemetry-pod-autoconf" - K8SPodNameKey = attribute.Key("k8s.pod.name") - - // K8SPodStartTimeKey is the attribute Key conforming to the - // "k8s.pod.start_time" semantic conventions. It represents the start timestamp - // of the Pod. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "2025-12-04T08:41:03Z" - // Note: Date and time at which the object was acknowledged by the Kubelet. - // This is before the Kubelet pulled the container image(s) for the pod. - // - // This attribute aligns with the `startTime` field of the - // [K8s PodStatus], - // in ISO 8601 (RFC 3339 compatible) format. - // - // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podstatus-v1-core - K8SPodStartTimeKey = attribute.Key("k8s.pod.start_time") - - // K8SPodStatusPhaseKey is the attribute Key conforming to the - // "k8s.pod.status.phase" semantic conventions. It represents the phase for the - // pod. Corresponds to the `phase` field of the: [K8s PodStatus]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Pending", "Running" - // - // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.33/#podstatus-v1-core - K8SPodStatusPhaseKey = attribute.Key("k8s.pod.status.phase") - - // K8SPodStatusReasonKey is the attribute Key conforming to the - // "k8s.pod.status.reason" semantic conventions. It represents the reason for - // the pod state. Corresponds to the `reason` field of the: [K8s PodStatus]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Evicted", "NodeAffinity" - // - // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.33/#podstatus-v1-core - K8SPodStatusReasonKey = attribute.Key("k8s.pod.status.reason") - - // K8SPodUIDKey is the attribute Key conforming to the "k8s.pod.uid" semantic - // conventions. It represents the UID of the Pod. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SPodUIDKey = attribute.Key("k8s.pod.uid") - - // K8SReplicaSetNameKey is the attribute Key conforming to the - // "k8s.replicaset.name" semantic conventions. It represents the name of the - // ReplicaSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "opentelemetry" - K8SReplicaSetNameKey = attribute.Key("k8s.replicaset.name") - - // K8SReplicaSetUIDKey is the attribute Key conforming to the - // "k8s.replicaset.uid" semantic conventions. It represents the UID of the - // ReplicaSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SReplicaSetUIDKey = attribute.Key("k8s.replicaset.uid") - - // K8SReplicationControllerNameKey is the attribute Key conforming to the - // "k8s.replicationcontroller.name" semantic conventions. It represents the name - // of the replication controller. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry" - K8SReplicationControllerNameKey = attribute.Key("k8s.replicationcontroller.name") - - // K8SReplicationControllerUIDKey is the attribute Key conforming to the - // "k8s.replicationcontroller.uid" semantic conventions. It represents the UID - // of the replication controller. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SReplicationControllerUIDKey = attribute.Key("k8s.replicationcontroller.uid") - - // K8SResourceQuotaNameKey is the attribute Key conforming to the - // "k8s.resourcequota.name" semantic conventions. It represents the name of the - // resource quota. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry" - K8SResourceQuotaNameKey = attribute.Key("k8s.resourcequota.name") - - // K8SResourceQuotaResourceNameKey is the attribute Key conforming to the - // "k8s.resourcequota.resource_name" semantic conventions. It represents the - // name of the K8s resource a resource quota defines. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "count/replicationcontrollers" - // Note: The value for this attribute can be either the full - // `count/[.]` string (e.g., count/deployments.apps, - // count/pods), or, for certain core Kubernetes resources, just the resource - // name (e.g., pods, services, configmaps). Both forms are supported by - // Kubernetes for object count quotas. See - // [Kubernetes Resource Quotas documentation] for more details. - // - // [Kubernetes Resource Quotas documentation]: https://kubernetes.io/docs/concepts/policy/resource-quotas/#quota-on-object-count - K8SResourceQuotaResourceNameKey = attribute.Key("k8s.resourcequota.resource_name") - - // K8SResourceQuotaUIDKey is the attribute Key conforming to the - // "k8s.resourcequota.uid" semantic conventions. It represents the UID of the - // resource quota. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SResourceQuotaUIDKey = attribute.Key("k8s.resourcequota.uid") - - // K8SStatefulSetNameKey is the attribute Key conforming to the - // "k8s.statefulset.name" semantic conventions. It represents the name of the - // StatefulSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "opentelemetry" - K8SStatefulSetNameKey = attribute.Key("k8s.statefulset.name") - - // K8SStatefulSetUIDKey is the attribute Key conforming to the - // "k8s.statefulset.uid" semantic conventions. It represents the UID of the - // StatefulSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Alpha - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SStatefulSetUIDKey = attribute.Key("k8s.statefulset.uid") - - // K8SStorageclassNameKey is the attribute Key conforming to the - // "k8s.storageclass.name" semantic conventions. It represents the name of K8s - // [StorageClass] object. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "gold.storageclass.storage.k8s.io" - // - // [StorageClass]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#storageclass-v1-storage-k8s-io - K8SStorageclassNameKey = attribute.Key("k8s.storageclass.name") - - // K8SVolumeNameKey is the attribute Key conforming to the "k8s.volume.name" - // semantic conventions. It represents the name of the K8s volume. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "volume0" - K8SVolumeNameKey = attribute.Key("k8s.volume.name") - - // K8SVolumeTypeKey is the attribute Key conforming to the "k8s.volume.type" - // semantic conventions. It represents the type of the K8s volume. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "emptyDir", "persistentVolumeClaim" - K8SVolumeTypeKey = attribute.Key("k8s.volume.type") -) - -// K8SClusterName returns an attribute KeyValue conforming to the -// "k8s.cluster.name" semantic conventions. It represents the name of the -// cluster. -func K8SClusterName(val string) attribute.KeyValue { - return K8SClusterNameKey.String(val) -} - -// K8SClusterUID returns an attribute KeyValue conforming to the -// "k8s.cluster.uid" semantic conventions. It represents a pseudo-ID for the -// cluster, set to the UID of the `kube-system` namespace. -func K8SClusterUID(val string) attribute.KeyValue { - return K8SClusterUIDKey.String(val) -} - -// K8SContainerName returns an attribute KeyValue conforming to the -// "k8s.container.name" semantic conventions. It represents the name of the -// Container from Pod specification, must be unique within a Pod. Container -// runtime usually uses different globally unique name (`container.name`). -func K8SContainerName(val string) attribute.KeyValue { - return K8SContainerNameKey.String(val) -} - -// K8SContainerRestartCount returns an attribute KeyValue conforming to the -// "k8s.container.restart_count" semantic conventions. It represents the number -// of times the container was restarted. This attribute can be used to identify a -// particular container (running or stopped) within a container spec. -func K8SContainerRestartCount(val int) attribute.KeyValue { - return K8SContainerRestartCountKey.Int(val) -} - -// K8SContainerStatusLastTerminatedReason returns an attribute KeyValue -// conforming to the "k8s.container.status.last_terminated_reason" semantic -// conventions. It represents the last terminated reason of the Container. -func K8SContainerStatusLastTerminatedReason(val string) attribute.KeyValue { - return K8SContainerStatusLastTerminatedReasonKey.String(val) -} - -// K8SCronJobAnnotation returns an attribute KeyValue conforming to the -// "k8s.cronjob.annotation" semantic conventions. It represents the cronjob -// annotation placed on the CronJob, the `` being the annotation name, the -// value being the annotation value. -func K8SCronJobAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.cronjob.annotation."+key, val) -} - -// K8SCronJobLabel returns an attribute KeyValue conforming to the -// "k8s.cronjob.label" semantic conventions. It represents the label placed on -// the CronJob, the `` being the label name, the value being the label -// value. -func K8SCronJobLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.cronjob.label."+key, val) -} - -// K8SCronJobName returns an attribute KeyValue conforming to the -// "k8s.cronjob.name" semantic conventions. It represents the name of the -// CronJob. -func K8SCronJobName(val string) attribute.KeyValue { - return K8SCronJobNameKey.String(val) -} - -// K8SCronJobUID returns an attribute KeyValue conforming to the -// "k8s.cronjob.uid" semantic conventions. It represents the UID of the CronJob. -func K8SCronJobUID(val string) attribute.KeyValue { - return K8SCronJobUIDKey.String(val) -} - -// K8SDaemonSetAnnotation returns an attribute KeyValue conforming to the -// "k8s.daemonset.annotation" semantic conventions. It represents the annotation -// placed on the DaemonSet, the `` being the annotation name, the value -// being the annotation value, even if the value is empty. -func K8SDaemonSetAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.daemonset.annotation."+key, val) -} - -// K8SDaemonSetLabel returns an attribute KeyValue conforming to the -// "k8s.daemonset.label" semantic conventions. It represents the label placed on -// the DaemonSet, the `` being the label name, the value being the label -// value, even if the value is empty. -func K8SDaemonSetLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.daemonset.label."+key, val) -} - -// K8SDaemonSetName returns an attribute KeyValue conforming to the -// "k8s.daemonset.name" semantic conventions. It represents the name of the -// DaemonSet. -func K8SDaemonSetName(val string) attribute.KeyValue { - return K8SDaemonSetNameKey.String(val) -} - -// K8SDaemonSetUID returns an attribute KeyValue conforming to the -// "k8s.daemonset.uid" semantic conventions. It represents the UID of the -// DaemonSet. -func K8SDaemonSetUID(val string) attribute.KeyValue { - return K8SDaemonSetUIDKey.String(val) -} - -// K8SDeploymentAnnotation returns an attribute KeyValue conforming to the -// "k8s.deployment.annotation" semantic conventions. It represents the annotation -// placed on the Deployment, the `` being the annotation name, the value -// being the annotation value, even if the value is empty. -func K8SDeploymentAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.deployment.annotation."+key, val) -} - -// K8SDeploymentLabel returns an attribute KeyValue conforming to the -// "k8s.deployment.label" semantic conventions. It represents the label placed on -// the Deployment, the `` being the label name, the value being the label -// value, even if the value is empty. -func K8SDeploymentLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.deployment.label."+key, val) -} - -// K8SDeploymentName returns an attribute KeyValue conforming to the -// "k8s.deployment.name" semantic conventions. It represents the name of the -// Deployment. -func K8SDeploymentName(val string) attribute.KeyValue { - return K8SDeploymentNameKey.String(val) -} - -// K8SDeploymentUID returns an attribute KeyValue conforming to the -// "k8s.deployment.uid" semantic conventions. It represents the UID of the -// Deployment. -func K8SDeploymentUID(val string) attribute.KeyValue { - return K8SDeploymentUIDKey.String(val) -} - -// K8SHPAMetricType returns an attribute KeyValue conforming to the -// "k8s.hpa.metric.type" semantic conventions. It represents the type of metric -// source for the horizontal pod autoscaler. -func K8SHPAMetricType(val string) attribute.KeyValue { - return K8SHPAMetricTypeKey.String(val) -} - -// K8SHPAName returns an attribute KeyValue conforming to the "k8s.hpa.name" -// semantic conventions. It represents the name of the horizontal pod autoscaler. -func K8SHPAName(val string) attribute.KeyValue { - return K8SHPANameKey.String(val) -} - -// K8SHPAScaletargetrefAPIVersion returns an attribute KeyValue conforming to the -// "k8s.hpa.scaletargetref.api_version" semantic conventions. It represents the -// API version of the target resource to scale for the HorizontalPodAutoscaler. -func K8SHPAScaletargetrefAPIVersion(val string) attribute.KeyValue { - return K8SHPAScaletargetrefAPIVersionKey.String(val) -} - -// K8SHPAScaletargetrefKind returns an attribute KeyValue conforming to the -// "k8s.hpa.scaletargetref.kind" semantic conventions. It represents the kind of -// the target resource to scale for the HorizontalPodAutoscaler. -func K8SHPAScaletargetrefKind(val string) attribute.KeyValue { - return K8SHPAScaletargetrefKindKey.String(val) -} - -// K8SHPAScaletargetrefName returns an attribute KeyValue conforming to the -// "k8s.hpa.scaletargetref.name" semantic conventions. It represents the name of -// the target resource to scale for the HorizontalPodAutoscaler. -func K8SHPAScaletargetrefName(val string) attribute.KeyValue { - return K8SHPAScaletargetrefNameKey.String(val) -} - -// K8SHPAUID returns an attribute KeyValue conforming to the "k8s.hpa.uid" -// semantic conventions. It represents the UID of the horizontal pod autoscaler. -func K8SHPAUID(val string) attribute.KeyValue { - return K8SHPAUIDKey.String(val) -} - -// K8SHugepageSize returns an attribute KeyValue conforming to the -// "k8s.hugepage.size" semantic conventions. It represents the size (identifier) -// of the K8s huge page. -func K8SHugepageSize(val string) attribute.KeyValue { - return K8SHugepageSizeKey.String(val) -} - -// K8SJobAnnotation returns an attribute KeyValue conforming to the -// "k8s.job.annotation" semantic conventions. It represents the annotation placed -// on the Job, the `` being the annotation name, the value being the -// annotation value, even if the value is empty. -func K8SJobAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.job.annotation."+key, val) -} - -// K8SJobLabel returns an attribute KeyValue conforming to the "k8s.job.label" -// semantic conventions. It represents the label placed on the Job, the `` -// being the label name, the value being the label value, even if the value is -// empty. -func K8SJobLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.job.label."+key, val) -} - -// K8SJobName returns an attribute KeyValue conforming to the "k8s.job.name" -// semantic conventions. It represents the name of the Job. -func K8SJobName(val string) attribute.KeyValue { - return K8SJobNameKey.String(val) -} - -// K8SJobUID returns an attribute KeyValue conforming to the "k8s.job.uid" -// semantic conventions. It represents the UID of the Job. -func K8SJobUID(val string) attribute.KeyValue { - return K8SJobUIDKey.String(val) -} - -// K8SNamespaceAnnotation returns an attribute KeyValue conforming to the -// "k8s.namespace.annotation" semantic conventions. It represents the annotation -// placed on the Namespace, the `` being the annotation name, the value -// being the annotation value, even if the value is empty. -func K8SNamespaceAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.namespace.annotation."+key, val) -} - -// K8SNamespaceLabel returns an attribute KeyValue conforming to the -// "k8s.namespace.label" semantic conventions. It represents the label placed on -// the Namespace, the `` being the label name, the value being the label -// value, even if the value is empty. -func K8SNamespaceLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.namespace.label."+key, val) -} - -// K8SNamespaceName returns an attribute KeyValue conforming to the -// "k8s.namespace.name" semantic conventions. It represents the name of the -// namespace that the pod is running in. -func K8SNamespaceName(val string) attribute.KeyValue { - return K8SNamespaceNameKey.String(val) -} - -// K8SNodeAnnotation returns an attribute KeyValue conforming to the -// "k8s.node.annotation" semantic conventions. It represents the annotation -// placed on the Node, the `` being the annotation name, the value being the -// annotation value, even if the value is empty. -func K8SNodeAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.node.annotation."+key, val) -} - -// K8SNodeLabel returns an attribute KeyValue conforming to the "k8s.node.label" -// semantic conventions. It represents the label placed on the Node, the `` -// being the label name, the value being the label value, even if the value is -// empty. -func K8SNodeLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.node.label."+key, val) -} - -// K8SNodeName returns an attribute KeyValue conforming to the "k8s.node.name" -// semantic conventions. It represents the name of the Node. -func K8SNodeName(val string) attribute.KeyValue { - return K8SNodeNameKey.String(val) -} - -// K8SNodeUID returns an attribute KeyValue conforming to the "k8s.node.uid" -// semantic conventions. It represents the UID of the Node. -func K8SNodeUID(val string) attribute.KeyValue { - return K8SNodeUIDKey.String(val) -} - -// K8SPodAnnotation returns an attribute KeyValue conforming to the -// "k8s.pod.annotation" semantic conventions. It represents the annotation placed -// on the Pod, the `` being the annotation name, the value being the -// annotation value. -func K8SPodAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.pod.annotation."+key, val) -} - -// K8SPodHostname returns an attribute KeyValue conforming to the -// "k8s.pod.hostname" semantic conventions. It represents the specifies the -// hostname of the Pod. -func K8SPodHostname(val string) attribute.KeyValue { - return K8SPodHostnameKey.String(val) -} - -// K8SPodIP returns an attribute KeyValue conforming to the "k8s.pod.ip" semantic -// conventions. It represents the IP address allocated to the Pod. -func K8SPodIP(val string) attribute.KeyValue { - return K8SPodIPKey.String(val) -} - -// K8SPodLabel returns an attribute KeyValue conforming to the "k8s.pod.label" -// semantic conventions. It represents the label placed on the Pod, the `` -// being the label name, the value being the label value. -func K8SPodLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.pod.label."+key, val) -} - -// K8SPodName returns an attribute KeyValue conforming to the "k8s.pod.name" -// semantic conventions. It represents the name of the Pod. -func K8SPodName(val string) attribute.KeyValue { - return K8SPodNameKey.String(val) -} - -// K8SPodStartTime returns an attribute KeyValue conforming to the -// "k8s.pod.start_time" semantic conventions. It represents the start timestamp -// of the Pod. -func K8SPodStartTime(val string) attribute.KeyValue { - return K8SPodStartTimeKey.String(val) -} - -// K8SPodUID returns an attribute KeyValue conforming to the "k8s.pod.uid" -// semantic conventions. It represents the UID of the Pod. -func K8SPodUID(val string) attribute.KeyValue { - return K8SPodUIDKey.String(val) -} - -// K8SReplicaSetAnnotation returns an attribute KeyValue conforming to the -// "k8s.replicaset.annotation" semantic conventions. It represents the annotation -// placed on the ReplicaSet, the `` being the annotation name, the value -// being the annotation value, even if the value is empty. -func K8SReplicaSetAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.replicaset.annotation."+key, val) -} - -// K8SReplicaSetLabel returns an attribute KeyValue conforming to the -// "k8s.replicaset.label" semantic conventions. It represents the label placed on -// the ReplicaSet, the `` being the label name, the value being the label -// value, even if the value is empty. -func K8SReplicaSetLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.replicaset.label."+key, val) -} - -// K8SReplicaSetName returns an attribute KeyValue conforming to the -// "k8s.replicaset.name" semantic conventions. It represents the name of the -// ReplicaSet. -func K8SReplicaSetName(val string) attribute.KeyValue { - return K8SReplicaSetNameKey.String(val) -} - -// K8SReplicaSetUID returns an attribute KeyValue conforming to the -// "k8s.replicaset.uid" semantic conventions. It represents the UID of the -// ReplicaSet. -func K8SReplicaSetUID(val string) attribute.KeyValue { - return K8SReplicaSetUIDKey.String(val) -} - -// K8SReplicationControllerName returns an attribute KeyValue conforming to the -// "k8s.replicationcontroller.name" semantic conventions. It represents the name -// of the replication controller. -func K8SReplicationControllerName(val string) attribute.KeyValue { - return K8SReplicationControllerNameKey.String(val) -} - -// K8SReplicationControllerUID returns an attribute KeyValue conforming to the -// "k8s.replicationcontroller.uid" semantic conventions. It represents the UID of -// the replication controller. -func K8SReplicationControllerUID(val string) attribute.KeyValue { - return K8SReplicationControllerUIDKey.String(val) -} - -// K8SResourceQuotaName returns an attribute KeyValue conforming to the -// "k8s.resourcequota.name" semantic conventions. It represents the name of the -// resource quota. -func K8SResourceQuotaName(val string) attribute.KeyValue { - return K8SResourceQuotaNameKey.String(val) -} - -// K8SResourceQuotaResourceName returns an attribute KeyValue conforming to the -// "k8s.resourcequota.resource_name" semantic conventions. It represents the name -// of the K8s resource a resource quota defines. -func K8SResourceQuotaResourceName(val string) attribute.KeyValue { - return K8SResourceQuotaResourceNameKey.String(val) -} - -// K8SResourceQuotaUID returns an attribute KeyValue conforming to the -// "k8s.resourcequota.uid" semantic conventions. It represents the UID of the -// resource quota. -func K8SResourceQuotaUID(val string) attribute.KeyValue { - return K8SResourceQuotaUIDKey.String(val) -} - -// K8SStatefulSetAnnotation returns an attribute KeyValue conforming to the -// "k8s.statefulset.annotation" semantic conventions. It represents the -// annotation placed on the StatefulSet, the `` being the annotation name, -// the value being the annotation value, even if the value is empty. -func K8SStatefulSetAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.statefulset.annotation."+key, val) -} - -// K8SStatefulSetLabel returns an attribute KeyValue conforming to the -// "k8s.statefulset.label" semantic conventions. It represents the label placed -// on the StatefulSet, the `` being the label name, the value being the -// label value, even if the value is empty. -func K8SStatefulSetLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.statefulset.label."+key, val) -} - -// K8SStatefulSetName returns an attribute KeyValue conforming to the -// "k8s.statefulset.name" semantic conventions. It represents the name of the -// StatefulSet. -func K8SStatefulSetName(val string) attribute.KeyValue { - return K8SStatefulSetNameKey.String(val) -} - -// K8SStatefulSetUID returns an attribute KeyValue conforming to the -// "k8s.statefulset.uid" semantic conventions. It represents the UID of the -// StatefulSet. -func K8SStatefulSetUID(val string) attribute.KeyValue { - return K8SStatefulSetUIDKey.String(val) -} - -// K8SStorageclassName returns an attribute KeyValue conforming to the -// "k8s.storageclass.name" semantic conventions. It represents the name of K8s -// [StorageClass] object. -// -// [StorageClass]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#storageclass-v1-storage-k8s-io -func K8SStorageclassName(val string) attribute.KeyValue { - return K8SStorageclassNameKey.String(val) -} - -// K8SVolumeName returns an attribute KeyValue conforming to the -// "k8s.volume.name" semantic conventions. It represents the name of the K8s -// volume. -func K8SVolumeName(val string) attribute.KeyValue { - return K8SVolumeNameKey.String(val) -} - -// Enum values for k8s.container.status.reason -var ( - // The container is being created. - // Stability: development - K8SContainerStatusReasonContainerCreating = K8SContainerStatusReasonKey.String("ContainerCreating") - // The container is in a crash loop back off state. - // Stability: development - K8SContainerStatusReasonCrashLoopBackOff = K8SContainerStatusReasonKey.String("CrashLoopBackOff") - // There was an error creating the container configuration. - // Stability: development - K8SContainerStatusReasonCreateContainerConfigError = K8SContainerStatusReasonKey.String("CreateContainerConfigError") - // There was an error pulling the container image. - // Stability: development - K8SContainerStatusReasonErrImagePull = K8SContainerStatusReasonKey.String("ErrImagePull") - // The container image pull is in back off state. - // Stability: development - K8SContainerStatusReasonImagePullBackOff = K8SContainerStatusReasonKey.String("ImagePullBackOff") - // The container was killed due to out of memory. - // Stability: development - K8SContainerStatusReasonOomKilled = K8SContainerStatusReasonKey.String("OOMKilled") - // The container has completed execution. - // Stability: development - K8SContainerStatusReasonCompleted = K8SContainerStatusReasonKey.String("Completed") - // There was an error with the container. - // Stability: development - K8SContainerStatusReasonError = K8SContainerStatusReasonKey.String("Error") - // The container cannot run. - // Stability: development - K8SContainerStatusReasonContainerCannotRun = K8SContainerStatusReasonKey.String("ContainerCannotRun") -) - -// Enum values for k8s.container.status.state -var ( - // The container has terminated. - // Stability: development - K8SContainerStatusStateTerminated = K8SContainerStatusStateKey.String("terminated") - // The container is running. - // Stability: development - K8SContainerStatusStateRunning = K8SContainerStatusStateKey.String("running") - // The container is waiting. - // Stability: development - K8SContainerStatusStateWaiting = K8SContainerStatusStateKey.String("waiting") -) - -// Enum values for k8s.namespace.phase -var ( - // Active namespace phase as described by [K8s API] - // Stability: development - // - // [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase - K8SNamespacePhaseActive = K8SNamespacePhaseKey.String("active") - // Terminating namespace phase as described by [K8s API] - // Stability: development - // - // [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase - K8SNamespacePhaseTerminating = K8SNamespacePhaseKey.String("terminating") -) - -// Enum values for k8s.node.condition.status -var ( - // condition_true - // Stability: development - K8SNodeConditionStatusConditionTrue = K8SNodeConditionStatusKey.String("true") - // condition_false - // Stability: development - K8SNodeConditionStatusConditionFalse = K8SNodeConditionStatusKey.String("false") - // condition_unknown - // Stability: development - K8SNodeConditionStatusConditionUnknown = K8SNodeConditionStatusKey.String("unknown") -) - -// Enum values for k8s.node.condition.type -var ( - // The node is healthy and ready to accept pods - // Stability: development - K8SNodeConditionTypeReady = K8SNodeConditionTypeKey.String("Ready") - // Pressure exists on the disk size—that is, if the disk capacity is low - // Stability: development - K8SNodeConditionTypeDiskPressure = K8SNodeConditionTypeKey.String("DiskPressure") - // Pressure exists on the node memory—that is, if the node memory is low - // Stability: development - K8SNodeConditionTypeMemoryPressure = K8SNodeConditionTypeKey.String("MemoryPressure") - // Pressure exists on the processes—that is, if there are too many processes - // on the node - // Stability: development - K8SNodeConditionTypePIDPressure = K8SNodeConditionTypeKey.String("PIDPressure") - // The network for the node is not correctly configured - // Stability: development - K8SNodeConditionTypeNetworkUnavailable = K8SNodeConditionTypeKey.String("NetworkUnavailable") -) - -// Enum values for k8s.pod.status.phase -var ( - // The pod has been accepted by the system, but one or more of the containers - // has not been started. This includes time before being bound to a node, as - // well as time spent pulling images onto the host. - // - // Stability: development - K8SPodStatusPhasePending = K8SPodStatusPhaseKey.String("Pending") - // The pod has been bound to a node and all of the containers have been started. - // At least one container is still running or is in the process of being - // restarted. - // - // Stability: development - K8SPodStatusPhaseRunning = K8SPodStatusPhaseKey.String("Running") - // All containers in the pod have voluntarily terminated with a container exit - // code of 0, and the system is not going to restart any of these containers. - // - // Stability: development - K8SPodStatusPhaseSucceeded = K8SPodStatusPhaseKey.String("Succeeded") - // All containers in the pod have terminated, and at least one container has - // terminated in a failure (exited with a non-zero exit code or was stopped by - // the system). - // - // Stability: development - K8SPodStatusPhaseFailed = K8SPodStatusPhaseKey.String("Failed") - // For some reason the state of the pod could not be obtained, typically due to - // an error in communicating with the host of the pod. - // - // Stability: development - K8SPodStatusPhaseUnknown = K8SPodStatusPhaseKey.String("Unknown") -) - -// Enum values for k8s.pod.status.reason -var ( - // The pod is evicted. - // Stability: development - K8SPodStatusReasonEvicted = K8SPodStatusReasonKey.String("Evicted") - // The pod is in a status because of its node affinity - // Stability: development - K8SPodStatusReasonNodeAffinity = K8SPodStatusReasonKey.String("NodeAffinity") - // The reason on a pod when its state cannot be confirmed as kubelet is - // unresponsive on the node it is (was) running. - // - // Stability: development - K8SPodStatusReasonNodeLost = K8SPodStatusReasonKey.String("NodeLost") - // The node is shutdown - // Stability: development - K8SPodStatusReasonShutdown = K8SPodStatusReasonKey.String("Shutdown") - // The pod was rejected admission to the node because of an error during - // admission that could not be categorized. - // - // Stability: development - K8SPodStatusReasonUnexpectedAdmissionError = K8SPodStatusReasonKey.String("UnexpectedAdmissionError") -) - -// Enum values for k8s.volume.type -var ( - // A [persistentVolumeClaim] volume - // Stability: development - // - // [persistentVolumeClaim]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#persistentvolumeclaim - K8SVolumeTypePersistentVolumeClaim = K8SVolumeTypeKey.String("persistentVolumeClaim") - // A [configMap] volume - // Stability: development - // - // [configMap]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#configmap - K8SVolumeTypeConfigMap = K8SVolumeTypeKey.String("configMap") - // A [downwardAPI] volume - // Stability: development - // - // [downwardAPI]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#downwardapi - K8SVolumeTypeDownwardAPI = K8SVolumeTypeKey.String("downwardAPI") - // An [emptyDir] volume - // Stability: development - // - // [emptyDir]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#emptydir - K8SVolumeTypeEmptyDir = K8SVolumeTypeKey.String("emptyDir") - // A [secret] volume - // Stability: development - // - // [secret]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#secret - K8SVolumeTypeSecret = K8SVolumeTypeKey.String("secret") - // A [local] volume - // Stability: development - // - // [local]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#local - K8SVolumeTypeLocal = K8SVolumeTypeKey.String("local") -) - -// Namespace: log -const ( - // LogFileNameKey is the attribute Key conforming to the "log.file.name" - // semantic conventions. It represents the basename of the file. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "audit.log" - LogFileNameKey = attribute.Key("log.file.name") - - // LogFileNameResolvedKey is the attribute Key conforming to the - // "log.file.name_resolved" semantic conventions. It represents the basename of - // the file, with symlinks resolved. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "uuid.log" - LogFileNameResolvedKey = attribute.Key("log.file.name_resolved") - - // LogFilePathKey is the attribute Key conforming to the "log.file.path" - // semantic conventions. It represents the full path to the file. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/var/log/mysql/audit.log" - LogFilePathKey = attribute.Key("log.file.path") - - // LogFilePathResolvedKey is the attribute Key conforming to the - // "log.file.path_resolved" semantic conventions. It represents the full path to - // the file, with symlinks resolved. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/var/lib/docker/uuid.log" - LogFilePathResolvedKey = attribute.Key("log.file.path_resolved") - - // LogIostreamKey is the attribute Key conforming to the "log.iostream" semantic - // conventions. It represents the stream associated with the log. See below for - // a list of well-known values. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - LogIostreamKey = attribute.Key("log.iostream") - - // LogRecordOriginalKey is the attribute Key conforming to the - // "log.record.original" semantic conventions. It represents the complete - // original Log Record. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "77 <86>1 2015-08-06T21:58:59.694Z 192.168.2.133 inactive - - - - // Something happened", "[INFO] 8/3/24 12:34:56 Something happened" - // Note: This value MAY be added when processing a Log Record which was - // originally transmitted as a string or equivalent data type AND the Body field - // of the Log Record does not contain the same value. (e.g. a syslog or a log - // record read from a file.) - LogRecordOriginalKey = attribute.Key("log.record.original") - - // LogRecordUIDKey is the attribute Key conforming to the "log.record.uid" - // semantic conventions. It represents a unique identifier for the Log Record. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "01ARZ3NDEKTSV4RRFFQ69G5FAV" - // Note: If an id is provided, other log records with the same id will be - // considered duplicates and can be removed safely. This means, that two - // distinguishable log records MUST have different values. - // The id MAY be an - // [Universally Unique Lexicographically Sortable Identifier (ULID)], but other - // identifiers (e.g. UUID) may be used as needed. - // - // [Universally Unique Lexicographically Sortable Identifier (ULID)]: https://github.com/ulid/spec - LogRecordUIDKey = attribute.Key("log.record.uid") -) - -// LogFileName returns an attribute KeyValue conforming to the "log.file.name" -// semantic conventions. It represents the basename of the file. -func LogFileName(val string) attribute.KeyValue { - return LogFileNameKey.String(val) -} - -// LogFileNameResolved returns an attribute KeyValue conforming to the -// "log.file.name_resolved" semantic conventions. It represents the basename of -// the file, with symlinks resolved. -func LogFileNameResolved(val string) attribute.KeyValue { - return LogFileNameResolvedKey.String(val) -} - -// LogFilePath returns an attribute KeyValue conforming to the "log.file.path" -// semantic conventions. It represents the full path to the file. -func LogFilePath(val string) attribute.KeyValue { - return LogFilePathKey.String(val) -} - -// LogFilePathResolved returns an attribute KeyValue conforming to the -// "log.file.path_resolved" semantic conventions. It represents the full path to -// the file, with symlinks resolved. -func LogFilePathResolved(val string) attribute.KeyValue { - return LogFilePathResolvedKey.String(val) -} - -// LogRecordOriginal returns an attribute KeyValue conforming to the -// "log.record.original" semantic conventions. It represents the complete -// original Log Record. -func LogRecordOriginal(val string) attribute.KeyValue { - return LogRecordOriginalKey.String(val) -} - -// LogRecordUID returns an attribute KeyValue conforming to the "log.record.uid" -// semantic conventions. It represents a unique identifier for the Log Record. -func LogRecordUID(val string) attribute.KeyValue { - return LogRecordUIDKey.String(val) -} - -// Enum values for log.iostream -var ( - // Logs from stdout stream - // Stability: development - LogIostreamStdout = LogIostreamKey.String("stdout") - // Events from stderr stream - // Stability: development - LogIostreamStderr = LogIostreamKey.String("stderr") -) - -// Namespace: mainframe -const ( - // MainframeLparNameKey is the attribute Key conforming to the - // "mainframe.lpar.name" semantic conventions. It represents the name of the - // logical partition that hosts a systems with a mainframe operating system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "LPAR01" - MainframeLparNameKey = attribute.Key("mainframe.lpar.name") -) - -// MainframeLparName returns an attribute KeyValue conforming to the -// "mainframe.lpar.name" semantic conventions. It represents the name of the -// logical partition that hosts a systems with a mainframe operating system. -func MainframeLparName(val string) attribute.KeyValue { - return MainframeLparNameKey.String(val) -} - -// Namespace: mcp -const ( - // McpMethodNameKey is the attribute Key conforming to the "mcp.method.name" - // semantic conventions. It represents the name of the request or notification - // method. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - McpMethodNameKey = attribute.Key("mcp.method.name") - - // McpProtocolVersionKey is the attribute Key conforming to the - // "mcp.protocol.version" semantic conventions. It represents the [version] of - // the Model Context Protocol used. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2025-06-18" - // - // [version]: https://modelcontextprotocol.io/specification/versioning - McpProtocolVersionKey = attribute.Key("mcp.protocol.version") - - // McpResourceURIKey is the attribute Key conforming to the "mcp.resource.uri" - // semantic conventions. It represents the value of the resource uri. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "postgres://database/customers/schema", - // "file:///home/user/documents/report.pdf" - // Note: This is a URI of the resource provided in the following requests or - // notifications: `resources/read`, `resources/subscribe`, - // `resources/unsubscribe`, or `notifications/resources/updated`. - McpResourceURIKey = attribute.Key("mcp.resource.uri") - - // McpSessionIDKey is the attribute Key conforming to the "mcp.session.id" - // semantic conventions. It represents the identifies [MCP session]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "191c4850af6c49e08843a3f6c80e5046" - // - // [MCP session]: https://modelcontextprotocol.io/specification/2025-06-18/basic/transports#session-management - McpSessionIDKey = attribute.Key("mcp.session.id") -) - -// McpProtocolVersion returns an attribute KeyValue conforming to the -// "mcp.protocol.version" semantic conventions. It represents the [version] of -// the Model Context Protocol used. -// -// [version]: https://modelcontextprotocol.io/specification/versioning -func McpProtocolVersion(val string) attribute.KeyValue { - return McpProtocolVersionKey.String(val) -} - -// McpResourceURI returns an attribute KeyValue conforming to the -// "mcp.resource.uri" semantic conventions. It represents the value of the -// resource uri. -func McpResourceURI(val string) attribute.KeyValue { - return McpResourceURIKey.String(val) -} - -// McpSessionID returns an attribute KeyValue conforming to the "mcp.session.id" -// semantic conventions. It represents the identifies [MCP session]. -// -// [MCP session]: https://modelcontextprotocol.io/specification/2025-06-18/basic/transports#session-management -func McpSessionID(val string) attribute.KeyValue { - return McpSessionIDKey.String(val) -} - -// Enum values for mcp.method.name -var ( - // Notification cancelling a previously-issued request. - // - // Stability: development - McpMethodNameNotificationsCancelled = McpMethodNameKey.String("notifications/cancelled") - // Request to initialize the MCP client. - // - // Stability: development - McpMethodNameInitialize = McpMethodNameKey.String("initialize") - // Notification indicating that the MCP client has been initialized. - // - // Stability: development - McpMethodNameNotificationsInitialized = McpMethodNameKey.String("notifications/initialized") - // Notification indicating the progress for a long-running operation. - // - // Stability: development - McpMethodNameNotificationsProgress = McpMethodNameKey.String("notifications/progress") - // Request to check that the other party is still alive. - // - // Stability: development - McpMethodNamePing = McpMethodNameKey.String("ping") - // Request to list resources available on server. - // - // Stability: development - McpMethodNameResourcesList = McpMethodNameKey.String("resources/list") - // Request to list resource templates available on server. - // - // Stability: development - McpMethodNameResourcesTemplatesList = McpMethodNameKey.String("resources/templates/list") - // Request to read a resource. - // - // Stability: development - McpMethodNameResourcesRead = McpMethodNameKey.String("resources/read") - // Notification indicating that the list of resources has changed. - // - // Stability: development - McpMethodNameNotificationsResourcesListChanged = McpMethodNameKey.String("notifications/resources/list_changed") - // Request to subscribe to a resource. - // - // Stability: development - McpMethodNameResourcesSubscribe = McpMethodNameKey.String("resources/subscribe") - // Request to unsubscribe from resource updates. - // - // Stability: development - McpMethodNameResourcesUnsubscribe = McpMethodNameKey.String("resources/unsubscribe") - // Notification indicating that a resource has been updated. - // - // Stability: development - McpMethodNameNotificationsResourcesUpdated = McpMethodNameKey.String("notifications/resources/updated") - // Request to list prompts available on server. - // - // Stability: development - McpMethodNamePromptsList = McpMethodNameKey.String("prompts/list") - // Request to get a prompt. - // - // Stability: development - McpMethodNamePromptsGet = McpMethodNameKey.String("prompts/get") - // Notification indicating that the list of prompts has changed. - // - // Stability: development - McpMethodNameNotificationsPromptsListChanged = McpMethodNameKey.String("notifications/prompts/list_changed") - // Request to list tools available on server. - // - // Stability: development - McpMethodNameToolsList = McpMethodNameKey.String("tools/list") - // Request to call a tool. - // - // Stability: development - McpMethodNameToolsCall = McpMethodNameKey.String("tools/call") - // Notification indicating that the list of tools has changed. - // - // Stability: development - McpMethodNameNotificationsToolsListChanged = McpMethodNameKey.String("notifications/tools/list_changed") - // Request to set the logging level. - // - // Stability: development - McpMethodNameLoggingSetLevel = McpMethodNameKey.String("logging/setLevel") - // Notification indicating that a message has been received. - // - // Stability: development - McpMethodNameNotificationsMessage = McpMethodNameKey.String("notifications/message") - // Request to create a sampling message. - // - // Stability: development - McpMethodNameSamplingCreateMessage = McpMethodNameKey.String("sampling/createMessage") - // Request to complete a prompt. - // - // Stability: development - McpMethodNameCompletionComplete = McpMethodNameKey.String("completion/complete") - // Request to list roots available on server. - // - // Stability: development - McpMethodNameRootsList = McpMethodNameKey.String("roots/list") - // Notification indicating that the list of roots has changed. - // - // Stability: development - McpMethodNameNotificationsRootsListChanged = McpMethodNameKey.String("notifications/roots/list_changed") - // Request from the server to elicit additional information from the user via - // the client - // - // Stability: development - McpMethodNameElicitationCreate = McpMethodNameKey.String("elicitation/create") -) - -// Namespace: messaging -const ( - // MessagingBatchMessageCountKey is the attribute Key conforming to the - // "messaging.batch.message_count" semantic conventions. It represents the - // number of messages sent, received, or processed in the scope of the batching - // operation. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0, 1, 2 - // Note: Instrumentations SHOULD NOT set `messaging.batch.message_count` on - // spans that operate with a single message. When a messaging client library - // supports both batch and single-message API for the same operation, - // instrumentations SHOULD use `messaging.batch.message_count` for batching APIs - // and SHOULD NOT use it for single-message APIs. - MessagingBatchMessageCountKey = attribute.Key("messaging.batch.message_count") - - // MessagingClientIDKey is the attribute Key conforming to the - // "messaging.client.id" semantic conventions. It represents a unique identifier - // for the client that consumes or produces a message. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "client-5", "myhost@8742@s8083jm" - MessagingClientIDKey = attribute.Key("messaging.client.id") - - // MessagingConsumerGroupNameKey is the attribute Key conforming to the - // "messaging.consumer.group.name" semantic conventions. It represents the name - // of the consumer group with which a consumer is associated. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-group", "indexer" - // Note: Semantic conventions for individual messaging systems SHOULD document - // whether `messaging.consumer.group.name` is applicable and what it means in - // the context of that system. - MessagingConsumerGroupNameKey = attribute.Key("messaging.consumer.group.name") - - // MessagingDestinationAnonymousKey is the attribute Key conforming to the - // "messaging.destination.anonymous" semantic conventions. It represents a - // boolean that is true if the message destination is anonymous (could be - // unnamed or have auto-generated name). - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - MessagingDestinationAnonymousKey = attribute.Key("messaging.destination.anonymous") - - // MessagingDestinationNameKey is the attribute Key conforming to the - // "messaging.destination.name" semantic conventions. It represents the message - // destination name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MyQueue", "MyTopic" - // Note: Destination name SHOULD uniquely identify a specific queue, topic or - // other entity within the broker. If - // the broker doesn't have such notion, the destination name SHOULD uniquely - // identify the broker. - MessagingDestinationNameKey = attribute.Key("messaging.destination.name") - - // MessagingDestinationPartitionIDKey is the attribute Key conforming to the - // "messaging.destination.partition.id" semantic conventions. It represents the - // identifier of the partition messages are sent to or received from, unique - // within the `messaging.destination.name`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1 - MessagingDestinationPartitionIDKey = attribute.Key("messaging.destination.partition.id") - - // MessagingDestinationSubscriptionNameKey is the attribute Key conforming to - // the "messaging.destination.subscription.name" semantic conventions. It - // represents the name of the destination subscription from which a message is - // consumed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "subscription-a" - // Note: Semantic conventions for individual messaging systems SHOULD document - // whether `messaging.destination.subscription.name` is applicable and what it - // means in the context of that system. - MessagingDestinationSubscriptionNameKey = attribute.Key("messaging.destination.subscription.name") - - // MessagingDestinationTemplateKey is the attribute Key conforming to the - // "messaging.destination.template" semantic conventions. It represents the low - // cardinality representation of the messaging destination name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/customers/{customerId}" - // Note: Destination names could be constructed from templates. An example would - // be a destination name involving a user name or product id. Although the - // destination name in this case is of high cardinality, the underlying template - // is of low cardinality and can be effectively used for grouping and - // aggregation. - MessagingDestinationTemplateKey = attribute.Key("messaging.destination.template") - - // MessagingDestinationTemporaryKey is the attribute Key conforming to the - // "messaging.destination.temporary" semantic conventions. It represents a - // boolean that is true if the message destination is temporary and might not - // exist anymore after messages are processed. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - MessagingDestinationTemporaryKey = attribute.Key("messaging.destination.temporary") - - // MessagingEventHubsMessageEnqueuedTimeKey is the attribute Key conforming to - // the "messaging.eventhubs.message.enqueued_time" semantic conventions. It - // represents the UTC epoch seconds at which the message has been accepted and - // stored in the entity. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingEventHubsMessageEnqueuedTimeKey = attribute.Key("messaging.eventhubs.message.enqueued_time") - - // MessagingGCPPubSubMessageAckDeadlineKey is the attribute Key conforming to - // the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It - // represents the ack deadline in seconds set for the modify ack deadline - // request. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingGCPPubSubMessageAckDeadlineKey = attribute.Key("messaging.gcp_pubsub.message.ack_deadline") - - // MessagingGCPPubSubMessageAckIDKey is the attribute Key conforming to the - // "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the - // ack id for a given message. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: ack_id - MessagingGCPPubSubMessageAckIDKey = attribute.Key("messaging.gcp_pubsub.message.ack_id") - - // MessagingGCPPubSubMessageDeliveryAttemptKey is the attribute Key conforming - // to the "messaging.gcp_pubsub.message.delivery_attempt" semantic conventions. - // It represents the delivery attempt for a given message. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingGCPPubSubMessageDeliveryAttemptKey = attribute.Key("messaging.gcp_pubsub.message.delivery_attempt") - - // MessagingGCPPubSubMessageOrderingKeyKey is the attribute Key conforming to - // the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It - // represents the ordering key for a given message. If the attribute is not - // present, the message does not have an ordering key. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: ordering_key - MessagingGCPPubSubMessageOrderingKeyKey = attribute.Key("messaging.gcp_pubsub.message.ordering_key") - - // MessagingKafkaMessageKeyKey is the attribute Key conforming to the - // "messaging.kafka.message.key" semantic conventions. It represents the message - // keys in Kafka are used for grouping alike messages to ensure they're - // processed on the same partition. They differ from `messaging.message.id` in - // that they're not unique. If the key is `null`, the attribute MUST NOT be set. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: myKey - // Note: If the key type is not string, it's string representation has to be - // supplied for the attribute. If the key has no unambiguous, canonical string - // form, don't include its value. - MessagingKafkaMessageKeyKey = attribute.Key("messaging.kafka.message.key") - - // MessagingKafkaMessageTombstoneKey is the attribute Key conforming to the - // "messaging.kafka.message.tombstone" semantic conventions. It represents a - // boolean that is true if the message is a tombstone. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - MessagingKafkaMessageTombstoneKey = attribute.Key("messaging.kafka.message.tombstone") - - // MessagingKafkaOffsetKey is the attribute Key conforming to the - // "messaging.kafka.offset" semantic conventions. It represents the offset of a - // record in the corresponding Kafka partition. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingKafkaOffsetKey = attribute.Key("messaging.kafka.offset") - - // MessagingMessageBodySizeKey is the attribute Key conforming to the - // "messaging.message.body.size" semantic conventions. It represents the size of - // the message body in bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Note: This can refer to both the compressed or uncompressed body size. If - // both sizes are known, the uncompressed - // body size should be used. - MessagingMessageBodySizeKey = attribute.Key("messaging.message.body.size") - - // MessagingMessageConversationIDKey is the attribute Key conforming to the - // "messaging.message.conversation_id" semantic conventions. It represents the - // conversation ID identifying the conversation to which the message belongs, - // represented as a string. Sometimes called "Correlation ID". - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: MyConversationId - MessagingMessageConversationIDKey = attribute.Key("messaging.message.conversation_id") - - // MessagingMessageEnvelopeSizeKey is the attribute Key conforming to the - // "messaging.message.envelope.size" semantic conventions. It represents the - // size of the message body and metadata in bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Note: This can refer to both the compressed or uncompressed size. If both - // sizes are known, the uncompressed - // size should be used. - MessagingMessageEnvelopeSizeKey = attribute.Key("messaging.message.envelope.size") - - // MessagingMessageIDKey is the attribute Key conforming to the - // "messaging.message.id" semantic conventions. It represents a value used by - // the messaging system as an identifier for the message, represented as a - // string. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 452a7c7c7c7048c2f887f61572b18fc2 - MessagingMessageIDKey = attribute.Key("messaging.message.id") - - // MessagingOperationNameKey is the attribute Key conforming to the - // "messaging.operation.name" semantic conventions. It represents the - // system-specific name of the messaging operation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ack", "nack", "send" - MessagingOperationNameKey = attribute.Key("messaging.operation.name") - - // MessagingOperationTypeKey is the attribute Key conforming to the - // "messaging.operation.type" semantic conventions. It represents a string - // identifying the type of the messaging operation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: If a custom value is used, it MUST be of low cardinality. - MessagingOperationTypeKey = attribute.Key("messaging.operation.type") - - // MessagingRabbitMQDestinationRoutingKeyKey is the attribute Key conforming to - // the "messaging.rabbitmq.destination.routing_key" semantic conventions. It - // represents the rabbitMQ message routing key. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: myKey - MessagingRabbitMQDestinationRoutingKeyKey = attribute.Key("messaging.rabbitmq.destination.routing_key") - - // MessagingRabbitMQMessageDeliveryTagKey is the attribute Key conforming to the - // "messaging.rabbitmq.message.delivery_tag" semantic conventions. It represents - // the rabbitMQ message delivery tag. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingRabbitMQMessageDeliveryTagKey = attribute.Key("messaging.rabbitmq.message.delivery_tag") - - // MessagingRocketMQConsumptionModelKey is the attribute Key conforming to the - // "messaging.rocketmq.consumption_model" semantic conventions. It represents - // the model of message consumption. This only applies to consumer spans. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - MessagingRocketMQConsumptionModelKey = attribute.Key("messaging.rocketmq.consumption_model") - - // MessagingRocketMQMessageDelayTimeLevelKey is the attribute Key conforming to - // the "messaging.rocketmq.message.delay_time_level" semantic conventions. It - // represents the delay time level for delay message, which determines the - // message delay time. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingRocketMQMessageDelayTimeLevelKey = attribute.Key("messaging.rocketmq.message.delay_time_level") - - // MessagingRocketMQMessageDeliveryTimestampKey is the attribute Key conforming - // to the "messaging.rocketmq.message.delivery_timestamp" semantic conventions. - // It represents the timestamp in milliseconds that the delay message is - // expected to be delivered to consumer. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingRocketMQMessageDeliveryTimestampKey = attribute.Key("messaging.rocketmq.message.delivery_timestamp") - - // MessagingRocketMQMessageGroupKey is the attribute Key conforming to the - // "messaging.rocketmq.message.group" semantic conventions. It represents the it - // is essential for FIFO message. Messages that belong to the same message group - // are always processed one by one within the same consumer group. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: myMessageGroup - MessagingRocketMQMessageGroupKey = attribute.Key("messaging.rocketmq.message.group") - - // MessagingRocketMQMessageKeysKey is the attribute Key conforming to the - // "messaging.rocketmq.message.keys" semantic conventions. It represents the - // key(s) of message, another way to mark message besides message id. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "keyA", "keyB" - MessagingRocketMQMessageKeysKey = attribute.Key("messaging.rocketmq.message.keys") - - // MessagingRocketMQMessageTagKey is the attribute Key conforming to the - // "messaging.rocketmq.message.tag" semantic conventions. It represents the - // secondary classifier of message besides topic. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: tagA - MessagingRocketMQMessageTagKey = attribute.Key("messaging.rocketmq.message.tag") - - // MessagingRocketMQMessageTypeKey is the attribute Key conforming to the - // "messaging.rocketmq.message.type" semantic conventions. It represents the - // type of message. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - MessagingRocketMQMessageTypeKey = attribute.Key("messaging.rocketmq.message.type") - - // MessagingRocketMQNamespaceKey is the attribute Key conforming to the - // "messaging.rocketmq.namespace" semantic conventions. It represents the - // namespace of RocketMQ resources, resources in different namespaces are - // individual. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: myNamespace - MessagingRocketMQNamespaceKey = attribute.Key("messaging.rocketmq.namespace") - - // MessagingServiceBusDispositionStatusKey is the attribute Key conforming to - // the "messaging.servicebus.disposition_status" semantic conventions. It - // represents the describes the [settlement type]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [settlement type]: https://learn.microsoft.com/azure/service-bus-messaging/message-transfers-locks-settlement#peeklock - MessagingServiceBusDispositionStatusKey = attribute.Key("messaging.servicebus.disposition_status") - - // MessagingServiceBusMessageDeliveryCountKey is the attribute Key conforming to - // the "messaging.servicebus.message.delivery_count" semantic conventions. It - // represents the number of deliveries that have been attempted for this - // message. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingServiceBusMessageDeliveryCountKey = attribute.Key("messaging.servicebus.message.delivery_count") - - // MessagingServiceBusMessageEnqueuedTimeKey is the attribute Key conforming to - // the "messaging.servicebus.message.enqueued_time" semantic conventions. It - // represents the UTC epoch seconds at which the message has been accepted and - // stored in the entity. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingServiceBusMessageEnqueuedTimeKey = attribute.Key("messaging.servicebus.message.enqueued_time") - - // MessagingSystemKey is the attribute Key conforming to the "messaging.system" - // semantic conventions. It represents the messaging system as identified by the - // client instrumentation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The actual messaging system may differ from the one known by the - // client. For example, when using Kafka client libraries to communicate with - // Azure Event Hubs, the `messaging.system` is set to `kafka` based on the - // instrumentation's best knowledge. - MessagingSystemKey = attribute.Key("messaging.system") -) - -// MessagingBatchMessageCount returns an attribute KeyValue conforming to the -// "messaging.batch.message_count" semantic conventions. It represents the number -// of messages sent, received, or processed in the scope of the batching -// operation. -func MessagingBatchMessageCount(val int) attribute.KeyValue { - return MessagingBatchMessageCountKey.Int(val) -} - -// MessagingClientID returns an attribute KeyValue conforming to the -// "messaging.client.id" semantic conventions. It represents a unique identifier -// for the client that consumes or produces a message. -func MessagingClientID(val string) attribute.KeyValue { - return MessagingClientIDKey.String(val) -} - -// MessagingConsumerGroupName returns an attribute KeyValue conforming to the -// "messaging.consumer.group.name" semantic conventions. It represents the name -// of the consumer group with which a consumer is associated. -func MessagingConsumerGroupName(val string) attribute.KeyValue { - return MessagingConsumerGroupNameKey.String(val) -} - -// MessagingDestinationAnonymous returns an attribute KeyValue conforming to the -// "messaging.destination.anonymous" semantic conventions. It represents a -// boolean that is true if the message destination is anonymous (could be unnamed -// or have auto-generated name). -func MessagingDestinationAnonymous(val bool) attribute.KeyValue { - return MessagingDestinationAnonymousKey.Bool(val) -} - -// MessagingDestinationName returns an attribute KeyValue conforming to the -// "messaging.destination.name" semantic conventions. It represents the message -// destination name. -func MessagingDestinationName(val string) attribute.KeyValue { - return MessagingDestinationNameKey.String(val) -} - -// MessagingDestinationPartitionID returns an attribute KeyValue conforming to -// the "messaging.destination.partition.id" semantic conventions. It represents -// the identifier of the partition messages are sent to or received from, unique -// within the `messaging.destination.name`. -func MessagingDestinationPartitionID(val string) attribute.KeyValue { - return MessagingDestinationPartitionIDKey.String(val) -} - -// MessagingDestinationSubscriptionName returns an attribute KeyValue conforming -// to the "messaging.destination.subscription.name" semantic conventions. It -// represents the name of the destination subscription from which a message is -// consumed. -func MessagingDestinationSubscriptionName(val string) attribute.KeyValue { - return MessagingDestinationSubscriptionNameKey.String(val) -} - -// MessagingDestinationTemplate returns an attribute KeyValue conforming to the -// "messaging.destination.template" semantic conventions. It represents the low -// cardinality representation of the messaging destination name. -func MessagingDestinationTemplate(val string) attribute.KeyValue { - return MessagingDestinationTemplateKey.String(val) -} - -// MessagingDestinationTemporary returns an attribute KeyValue conforming to the -// "messaging.destination.temporary" semantic conventions. It represents a -// boolean that is true if the message destination is temporary and might not -// exist anymore after messages are processed. -func MessagingDestinationTemporary(val bool) attribute.KeyValue { - return MessagingDestinationTemporaryKey.Bool(val) -} - -// MessagingEventHubsMessageEnqueuedTime returns an attribute KeyValue conforming -// to the "messaging.eventhubs.message.enqueued_time" semantic conventions. It -// represents the UTC epoch seconds at which the message has been accepted and -// stored in the entity. -func MessagingEventHubsMessageEnqueuedTime(val int) attribute.KeyValue { - return MessagingEventHubsMessageEnqueuedTimeKey.Int(val) -} - -// MessagingGCPPubSubMessageAckDeadline returns an attribute KeyValue conforming -// to the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It -// represents the ack deadline in seconds set for the modify ack deadline -// request. -func MessagingGCPPubSubMessageAckDeadline(val int) attribute.KeyValue { - return MessagingGCPPubSubMessageAckDeadlineKey.Int(val) -} - -// MessagingGCPPubSubMessageAckID returns an attribute KeyValue conforming to the -// "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the -// ack id for a given message. -func MessagingGCPPubSubMessageAckID(val string) attribute.KeyValue { - return MessagingGCPPubSubMessageAckIDKey.String(val) -} - -// MessagingGCPPubSubMessageDeliveryAttempt returns an attribute KeyValue -// conforming to the "messaging.gcp_pubsub.message.delivery_attempt" semantic -// conventions. It represents the delivery attempt for a given message. -func MessagingGCPPubSubMessageDeliveryAttempt(val int) attribute.KeyValue { - return MessagingGCPPubSubMessageDeliveryAttemptKey.Int(val) -} - -// MessagingGCPPubSubMessageOrderingKey returns an attribute KeyValue conforming -// to the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It -// represents the ordering key for a given message. If the attribute is not -// present, the message does not have an ordering key. -func MessagingGCPPubSubMessageOrderingKey(val string) attribute.KeyValue { - return MessagingGCPPubSubMessageOrderingKeyKey.String(val) -} - -// MessagingKafkaMessageKey returns an attribute KeyValue conforming to the -// "messaging.kafka.message.key" semantic conventions. It represents the message -// keys in Kafka are used for grouping alike messages to ensure they're processed -// on the same partition. They differ from `messaging.message.id` in that they're -// not unique. If the key is `null`, the attribute MUST NOT be set. -func MessagingKafkaMessageKey(val string) attribute.KeyValue { - return MessagingKafkaMessageKeyKey.String(val) -} - -// MessagingKafkaMessageTombstone returns an attribute KeyValue conforming to the -// "messaging.kafka.message.tombstone" semantic conventions. It represents a -// boolean that is true if the message is a tombstone. -func MessagingKafkaMessageTombstone(val bool) attribute.KeyValue { - return MessagingKafkaMessageTombstoneKey.Bool(val) -} - -// MessagingKafkaOffset returns an attribute KeyValue conforming to the -// "messaging.kafka.offset" semantic conventions. It represents the offset of a -// record in the corresponding Kafka partition. -func MessagingKafkaOffset(val int) attribute.KeyValue { - return MessagingKafkaOffsetKey.Int(val) -} - -// MessagingMessageBodySize returns an attribute KeyValue conforming to the -// "messaging.message.body.size" semantic conventions. It represents the size of -// the message body in bytes. -func MessagingMessageBodySize(val int) attribute.KeyValue { - return MessagingMessageBodySizeKey.Int(val) -} - -// MessagingMessageConversationID returns an attribute KeyValue conforming to the -// "messaging.message.conversation_id" semantic conventions. It represents the -// conversation ID identifying the conversation to which the message belongs, -// represented as a string. Sometimes called "Correlation ID". -func MessagingMessageConversationID(val string) attribute.KeyValue { - return MessagingMessageConversationIDKey.String(val) -} - -// MessagingMessageEnvelopeSize returns an attribute KeyValue conforming to the -// "messaging.message.envelope.size" semantic conventions. It represents the size -// of the message body and metadata in bytes. -func MessagingMessageEnvelopeSize(val int) attribute.KeyValue { - return MessagingMessageEnvelopeSizeKey.Int(val) -} - -// MessagingMessageID returns an attribute KeyValue conforming to the -// "messaging.message.id" semantic conventions. It represents a value used by the -// messaging system as an identifier for the message, represented as a string. -func MessagingMessageID(val string) attribute.KeyValue { - return MessagingMessageIDKey.String(val) -} - -// MessagingOperationName returns an attribute KeyValue conforming to the -// "messaging.operation.name" semantic conventions. It represents the -// system-specific name of the messaging operation. -func MessagingOperationName(val string) attribute.KeyValue { - return MessagingOperationNameKey.String(val) -} - -// MessagingRabbitMQDestinationRoutingKey returns an attribute KeyValue -// conforming to the "messaging.rabbitmq.destination.routing_key" semantic -// conventions. It represents the rabbitMQ message routing key. -func MessagingRabbitMQDestinationRoutingKey(val string) attribute.KeyValue { - return MessagingRabbitMQDestinationRoutingKeyKey.String(val) -} - -// MessagingRabbitMQMessageDeliveryTag returns an attribute KeyValue conforming -// to the "messaging.rabbitmq.message.delivery_tag" semantic conventions. It -// represents the rabbitMQ message delivery tag. -func MessagingRabbitMQMessageDeliveryTag(val int) attribute.KeyValue { - return MessagingRabbitMQMessageDeliveryTagKey.Int(val) -} - -// MessagingRocketMQMessageDelayTimeLevel returns an attribute KeyValue -// conforming to the "messaging.rocketmq.message.delay_time_level" semantic -// conventions. It represents the delay time level for delay message, which -// determines the message delay time. -func MessagingRocketMQMessageDelayTimeLevel(val int) attribute.KeyValue { - return MessagingRocketMQMessageDelayTimeLevelKey.Int(val) -} - -// MessagingRocketMQMessageDeliveryTimestamp returns an attribute KeyValue -// conforming to the "messaging.rocketmq.message.delivery_timestamp" semantic -// conventions. It represents the timestamp in milliseconds that the delay -// message is expected to be delivered to consumer. -func MessagingRocketMQMessageDeliveryTimestamp(val int) attribute.KeyValue { - return MessagingRocketMQMessageDeliveryTimestampKey.Int(val) -} - -// MessagingRocketMQMessageGroup returns an attribute KeyValue conforming to the -// "messaging.rocketmq.message.group" semantic conventions. It represents the it -// is essential for FIFO message. Messages that belong to the same message group -// are always processed one by one within the same consumer group. -func MessagingRocketMQMessageGroup(val string) attribute.KeyValue { - return MessagingRocketMQMessageGroupKey.String(val) -} - -// MessagingRocketMQMessageKeys returns an attribute KeyValue conforming to the -// "messaging.rocketmq.message.keys" semantic conventions. It represents the -// key(s) of message, another way to mark message besides message id. -func MessagingRocketMQMessageKeys(val ...string) attribute.KeyValue { - return MessagingRocketMQMessageKeysKey.StringSlice(val) -} - -// MessagingRocketMQMessageTag returns an attribute KeyValue conforming to the -// "messaging.rocketmq.message.tag" semantic conventions. It represents the -// secondary classifier of message besides topic. -func MessagingRocketMQMessageTag(val string) attribute.KeyValue { - return MessagingRocketMQMessageTagKey.String(val) -} - -// MessagingRocketMQNamespace returns an attribute KeyValue conforming to the -// "messaging.rocketmq.namespace" semantic conventions. It represents the -// namespace of RocketMQ resources, resources in different namespaces are -// individual. -func MessagingRocketMQNamespace(val string) attribute.KeyValue { - return MessagingRocketMQNamespaceKey.String(val) -} - -// MessagingServiceBusMessageDeliveryCount returns an attribute KeyValue -// conforming to the "messaging.servicebus.message.delivery_count" semantic -// conventions. It represents the number of deliveries that have been attempted -// for this message. -func MessagingServiceBusMessageDeliveryCount(val int) attribute.KeyValue { - return MessagingServiceBusMessageDeliveryCountKey.Int(val) -} - -// MessagingServiceBusMessageEnqueuedTime returns an attribute KeyValue -// conforming to the "messaging.servicebus.message.enqueued_time" semantic -// conventions. It represents the UTC epoch seconds at which the message has been -// accepted and stored in the entity. -func MessagingServiceBusMessageEnqueuedTime(val int) attribute.KeyValue { - return MessagingServiceBusMessageEnqueuedTimeKey.Int(val) -} - -// Enum values for messaging.operation.type -var ( - // A message is created. "Create" spans always refer to a single message and are - // used to provide a unique creation context for messages in batch sending - // scenarios. - // - // Stability: development - MessagingOperationTypeCreate = MessagingOperationTypeKey.String("create") - // One or more messages are provided for sending to an intermediary. If a single - // message is sent, the context of the "Send" span can be used as the creation - // context and no "Create" span needs to be created. - // - // Stability: development - MessagingOperationTypeSend = MessagingOperationTypeKey.String("send") - // One or more messages are requested by a consumer. This operation refers to - // pull-based scenarios, where consumers explicitly call methods of messaging - // SDKs to receive messages. - // - // Stability: development - MessagingOperationTypeReceive = MessagingOperationTypeKey.String("receive") - // One or more messages are processed by a consumer. - // - // Stability: development - MessagingOperationTypeProcess = MessagingOperationTypeKey.String("process") - // One or more messages are settled. - // - // Stability: development - MessagingOperationTypeSettle = MessagingOperationTypeKey.String("settle") -) - -// Enum values for messaging.rocketmq.consumption_model -var ( - // Clustering consumption model - // Stability: development - MessagingRocketMQConsumptionModelClustering = MessagingRocketMQConsumptionModelKey.String("clustering") - // Broadcasting consumption model - // Stability: development - MessagingRocketMQConsumptionModelBroadcasting = MessagingRocketMQConsumptionModelKey.String("broadcasting") -) - -// Enum values for messaging.rocketmq.message.type -var ( - // Normal message - // Stability: development - MessagingRocketMQMessageTypeNormal = MessagingRocketMQMessageTypeKey.String("normal") - // FIFO message - // Stability: development - MessagingRocketMQMessageTypeFifo = MessagingRocketMQMessageTypeKey.String("fifo") - // Delay message - // Stability: development - MessagingRocketMQMessageTypeDelay = MessagingRocketMQMessageTypeKey.String("delay") - // Transaction message - // Stability: development - MessagingRocketMQMessageTypeTransaction = MessagingRocketMQMessageTypeKey.String("transaction") -) - -// Enum values for messaging.servicebus.disposition_status -var ( - // Message is completed - // Stability: development - MessagingServiceBusDispositionStatusComplete = MessagingServiceBusDispositionStatusKey.String("complete") - // Message is abandoned - // Stability: development - MessagingServiceBusDispositionStatusAbandon = MessagingServiceBusDispositionStatusKey.String("abandon") - // Message is sent to dead letter queue - // Stability: development - MessagingServiceBusDispositionStatusDeadLetter = MessagingServiceBusDispositionStatusKey.String("dead_letter") - // Message is deferred - // Stability: development - MessagingServiceBusDispositionStatusDefer = MessagingServiceBusDispositionStatusKey.String("defer") -) - -// Enum values for messaging.system -var ( - // Apache ActiveMQ - // Stability: development - MessagingSystemActiveMQ = MessagingSystemKey.String("activemq") - // Amazon Simple Notification Service (SNS) - // Stability: development - MessagingSystemAWSSNS = MessagingSystemKey.String("aws.sns") - // Amazon Simple Queue Service (SQS) - // Stability: development - MessagingSystemAWSSQS = MessagingSystemKey.String("aws_sqs") - // Azure Event Grid - // Stability: development - MessagingSystemEventGrid = MessagingSystemKey.String("eventgrid") - // Azure Event Hubs - // Stability: development - MessagingSystemEventHubs = MessagingSystemKey.String("eventhubs") - // Azure Service Bus - // Stability: development - MessagingSystemServiceBus = MessagingSystemKey.String("servicebus") - // Google Cloud Pub/Sub - // Stability: development - MessagingSystemGCPPubSub = MessagingSystemKey.String("gcp_pubsub") - // Java Message Service - // Stability: development - MessagingSystemJMS = MessagingSystemKey.String("jms") - // Apache Kafka - // Stability: development - MessagingSystemKafka = MessagingSystemKey.String("kafka") - // RabbitMQ - // Stability: development - MessagingSystemRabbitMQ = MessagingSystemKey.String("rabbitmq") - // Apache RocketMQ - // Stability: development - MessagingSystemRocketMQ = MessagingSystemKey.String("rocketmq") - // Apache Pulsar - // Stability: development - MessagingSystemPulsar = MessagingSystemKey.String("pulsar") -) - -// Namespace: network -const ( - // NetworkCarrierICCKey is the attribute Key conforming to the - // "network.carrier.icc" semantic conventions. It represents the ISO 3166-1 - // alpha-2 2-character country code associated with the mobile carrier network. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: DE - NetworkCarrierICCKey = attribute.Key("network.carrier.icc") - - // NetworkCarrierMCCKey is the attribute Key conforming to the - // "network.carrier.mcc" semantic conventions. It represents the mobile carrier - // country code. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 310 - NetworkCarrierMCCKey = attribute.Key("network.carrier.mcc") - - // NetworkCarrierMNCKey is the attribute Key conforming to the - // "network.carrier.mnc" semantic conventions. It represents the mobile carrier - // network code. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 001 - NetworkCarrierMNCKey = attribute.Key("network.carrier.mnc") - - // NetworkCarrierNameKey is the attribute Key conforming to the - // "network.carrier.name" semantic conventions. It represents the name of the - // mobile carrier. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: sprint - NetworkCarrierNameKey = attribute.Key("network.carrier.name") - - // NetworkConnectionStateKey is the attribute Key conforming to the - // "network.connection.state" semantic conventions. It represents the state of - // network connection. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "close_wait" - // Note: Connection states are defined as part of the [rfc9293] - // - // [rfc9293]: https://datatracker.ietf.org/doc/html/rfc9293#section-3.3.2 - NetworkConnectionStateKey = attribute.Key("network.connection.state") - - // NetworkConnectionSubtypeKey is the attribute Key conforming to the - // "network.connection.subtype" semantic conventions. It represents the this - // describes more details regarding the connection.type. It may be the type of - // cell technology connection, but it could be used for describing details about - // a wifi connection. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: LTE - NetworkConnectionSubtypeKey = attribute.Key("network.connection.subtype") - - // NetworkConnectionTypeKey is the attribute Key conforming to the - // "network.connection.type" semantic conventions. It represents the internet - // connection type. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: wifi - NetworkConnectionTypeKey = attribute.Key("network.connection.type") - - // NetworkInterfaceNameKey is the attribute Key conforming to the - // "network.interface.name" semantic conventions. It represents the network - // interface name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "lo", "eth0" - NetworkInterfaceNameKey = attribute.Key("network.interface.name") - - // NetworkIODirectionKey is the attribute Key conforming to the - // "network.io.direction" semantic conventions. It represents the network IO - // operation direction. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "transmit" - NetworkIODirectionKey = attribute.Key("network.io.direction") - - // NetworkLocalAddressKey is the attribute Key conforming to the - // "network.local.address" semantic conventions. It represents the local address - // of the network connection - IP address or Unix domain socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "10.1.2.80", "/tmp/my.sock" - NetworkLocalAddressKey = attribute.Key("network.local.address") - - // NetworkLocalPortKey is the attribute Key conforming to the - // "network.local.port" semantic conventions. It represents the local port - // number of the network connection. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 65123 - NetworkLocalPortKey = attribute.Key("network.local.port") - - // NetworkPeerAddressKey is the attribute Key conforming to the - // "network.peer.address" semantic conventions. It represents the peer address - // of the network connection - IP address or Unix domain socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "10.1.2.80", "/tmp/my.sock" - NetworkPeerAddressKey = attribute.Key("network.peer.address") - - // NetworkPeerPortKey is the attribute Key conforming to the "network.peer.port" - // semantic conventions. It represents the peer port number of the network - // connection. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 65123 - NetworkPeerPortKey = attribute.Key("network.peer.port") - - // NetworkProtocolNameKey is the attribute Key conforming to the - // "network.protocol.name" semantic conventions. It represents the - // [OSI application layer] or non-OSI equivalent. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "amqp", "http", "mqtt" - // Note: The value SHOULD be normalized to lowercase. - // - // [OSI application layer]: https://wikipedia.org/wiki/Application_layer - NetworkProtocolNameKey = attribute.Key("network.protocol.name") - - // NetworkProtocolVersionKey is the attribute Key conforming to the - // "network.protocol.version" semantic conventions. It represents the actual - // version of the protocol used for network communication. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "1.1", "2" - // Note: If protocol version is subject to negotiation (for example using [ALPN] - // ), this attribute SHOULD be set to the negotiated version. If the actual - // protocol version is not known, this attribute SHOULD NOT be set. - // - // [ALPN]: https://www.rfc-editor.org/rfc/rfc7301.html - NetworkProtocolVersionKey = attribute.Key("network.protocol.version") - - // NetworkTransportKey is the attribute Key conforming to the - // "network.transport" semantic conventions. It represents the - // [OSI transport layer] or [inter-process communication method]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "tcp", "udp" - // Note: The value SHOULD be normalized to lowercase. - // - // Consider always setting the transport when setting a port number, since - // a port number is ambiguous without knowing the transport. For example - // different processes could be listening on TCP port 12345 and UDP port 12345. - // - // [OSI transport layer]: https://wikipedia.org/wiki/Transport_layer - // [inter-process communication method]: https://wikipedia.org/wiki/Inter-process_communication - NetworkTransportKey = attribute.Key("network.transport") - - // NetworkTypeKey is the attribute Key conforming to the "network.type" semantic - // conventions. It represents the [OSI network layer] or non-OSI equivalent. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "ipv4", "ipv6" - // Note: The value SHOULD be normalized to lowercase. - // - // [OSI network layer]: https://wikipedia.org/wiki/Network_layer - NetworkTypeKey = attribute.Key("network.type") -) - -// NetworkCarrierICC returns an attribute KeyValue conforming to the -// "network.carrier.icc" semantic conventions. It represents the ISO 3166-1 -// alpha-2 2-character country code associated with the mobile carrier network. -func NetworkCarrierICC(val string) attribute.KeyValue { - return NetworkCarrierICCKey.String(val) -} - -// NetworkCarrierMCC returns an attribute KeyValue conforming to the -// "network.carrier.mcc" semantic conventions. It represents the mobile carrier -// country code. -func NetworkCarrierMCC(val string) attribute.KeyValue { - return NetworkCarrierMCCKey.String(val) -} - -// NetworkCarrierMNC returns an attribute KeyValue conforming to the -// "network.carrier.mnc" semantic conventions. It represents the mobile carrier -// network code. -func NetworkCarrierMNC(val string) attribute.KeyValue { - return NetworkCarrierMNCKey.String(val) -} - -// NetworkCarrierName returns an attribute KeyValue conforming to the -// "network.carrier.name" semantic conventions. It represents the name of the -// mobile carrier. -func NetworkCarrierName(val string) attribute.KeyValue { - return NetworkCarrierNameKey.String(val) -} - -// NetworkInterfaceName returns an attribute KeyValue conforming to the -// "network.interface.name" semantic conventions. It represents the network -// interface name. -func NetworkInterfaceName(val string) attribute.KeyValue { - return NetworkInterfaceNameKey.String(val) -} - -// NetworkLocalAddress returns an attribute KeyValue conforming to the -// "network.local.address" semantic conventions. It represents the local address -// of the network connection - IP address or Unix domain socket name. -func NetworkLocalAddress(val string) attribute.KeyValue { - return NetworkLocalAddressKey.String(val) -} - -// NetworkLocalPort returns an attribute KeyValue conforming to the -// "network.local.port" semantic conventions. It represents the local port number -// of the network connection. -func NetworkLocalPort(val int) attribute.KeyValue { - return NetworkLocalPortKey.Int(val) -} - -// NetworkPeerAddress returns an attribute KeyValue conforming to the -// "network.peer.address" semantic conventions. It represents the peer address of -// the network connection - IP address or Unix domain socket name. -func NetworkPeerAddress(val string) attribute.KeyValue { - return NetworkPeerAddressKey.String(val) -} - -// NetworkPeerPort returns an attribute KeyValue conforming to the -// "network.peer.port" semantic conventions. It represents the peer port number -// of the network connection. -func NetworkPeerPort(val int) attribute.KeyValue { - return NetworkPeerPortKey.Int(val) -} - -// NetworkProtocolName returns an attribute KeyValue conforming to the -// "network.protocol.name" semantic conventions. It represents the -// [OSI application layer] or non-OSI equivalent. -// -// [OSI application layer]: https://wikipedia.org/wiki/Application_layer -func NetworkProtocolName(val string) attribute.KeyValue { - return NetworkProtocolNameKey.String(val) -} - -// NetworkProtocolVersion returns an attribute KeyValue conforming to the -// "network.protocol.version" semantic conventions. It represents the actual -// version of the protocol used for network communication. -func NetworkProtocolVersion(val string) attribute.KeyValue { - return NetworkProtocolVersionKey.String(val) -} - -// Enum values for network.connection.state -var ( - // closed - // Stability: development - NetworkConnectionStateClosed = NetworkConnectionStateKey.String("closed") - // close_wait - // Stability: development - NetworkConnectionStateCloseWait = NetworkConnectionStateKey.String("close_wait") - // closing - // Stability: development - NetworkConnectionStateClosing = NetworkConnectionStateKey.String("closing") - // established - // Stability: development - NetworkConnectionStateEstablished = NetworkConnectionStateKey.String("established") - // fin_wait_1 - // Stability: development - NetworkConnectionStateFinWait1 = NetworkConnectionStateKey.String("fin_wait_1") - // fin_wait_2 - // Stability: development - NetworkConnectionStateFinWait2 = NetworkConnectionStateKey.String("fin_wait_2") - // last_ack - // Stability: development - NetworkConnectionStateLastAck = NetworkConnectionStateKey.String("last_ack") - // listen - // Stability: development - NetworkConnectionStateListen = NetworkConnectionStateKey.String("listen") - // syn_received - // Stability: development - NetworkConnectionStateSynReceived = NetworkConnectionStateKey.String("syn_received") - // syn_sent - // Stability: development - NetworkConnectionStateSynSent = NetworkConnectionStateKey.String("syn_sent") - // time_wait - // Stability: development - NetworkConnectionStateTimeWait = NetworkConnectionStateKey.String("time_wait") -) - -// Enum values for network.connection.subtype -var ( - // GPRS - // Stability: development - NetworkConnectionSubtypeGprs = NetworkConnectionSubtypeKey.String("gprs") - // EDGE - // Stability: development - NetworkConnectionSubtypeEdge = NetworkConnectionSubtypeKey.String("edge") - // UMTS - // Stability: development - NetworkConnectionSubtypeUmts = NetworkConnectionSubtypeKey.String("umts") - // CDMA - // Stability: development - NetworkConnectionSubtypeCdma = NetworkConnectionSubtypeKey.String("cdma") - // EVDO Rel. 0 - // Stability: development - NetworkConnectionSubtypeEvdo0 = NetworkConnectionSubtypeKey.String("evdo_0") - // EVDO Rev. A - // Stability: development - NetworkConnectionSubtypeEvdoA = NetworkConnectionSubtypeKey.String("evdo_a") - // CDMA2000 1XRTT - // Stability: development - NetworkConnectionSubtypeCdma20001xrtt = NetworkConnectionSubtypeKey.String("cdma2000_1xrtt") - // HSDPA - // Stability: development - NetworkConnectionSubtypeHsdpa = NetworkConnectionSubtypeKey.String("hsdpa") - // HSUPA - // Stability: development - NetworkConnectionSubtypeHsupa = NetworkConnectionSubtypeKey.String("hsupa") - // HSPA - // Stability: development - NetworkConnectionSubtypeHspa = NetworkConnectionSubtypeKey.String("hspa") - // IDEN - // Stability: development - NetworkConnectionSubtypeIden = NetworkConnectionSubtypeKey.String("iden") - // EVDO Rev. B - // Stability: development - NetworkConnectionSubtypeEvdoB = NetworkConnectionSubtypeKey.String("evdo_b") - // LTE - // Stability: development - NetworkConnectionSubtypeLte = NetworkConnectionSubtypeKey.String("lte") - // EHRPD - // Stability: development - NetworkConnectionSubtypeEhrpd = NetworkConnectionSubtypeKey.String("ehrpd") - // HSPAP - // Stability: development - NetworkConnectionSubtypeHspap = NetworkConnectionSubtypeKey.String("hspap") - // GSM - // Stability: development - NetworkConnectionSubtypeGsm = NetworkConnectionSubtypeKey.String("gsm") - // TD-SCDMA - // Stability: development - NetworkConnectionSubtypeTdScdma = NetworkConnectionSubtypeKey.String("td_scdma") - // IWLAN - // Stability: development - NetworkConnectionSubtypeIwlan = NetworkConnectionSubtypeKey.String("iwlan") - // 5G NR (New Radio) - // Stability: development - NetworkConnectionSubtypeNr = NetworkConnectionSubtypeKey.String("nr") - // 5G NRNSA (New Radio Non-Standalone) - // Stability: development - NetworkConnectionSubtypeNrnsa = NetworkConnectionSubtypeKey.String("nrnsa") - // LTE CA - // Stability: development - NetworkConnectionSubtypeLteCa = NetworkConnectionSubtypeKey.String("lte_ca") -) - -// Enum values for network.connection.type -var ( - // wifi - // Stability: development - NetworkConnectionTypeWifi = NetworkConnectionTypeKey.String("wifi") - // wired - // Stability: development - NetworkConnectionTypeWired = NetworkConnectionTypeKey.String("wired") - // cell - // Stability: development - NetworkConnectionTypeCell = NetworkConnectionTypeKey.String("cell") - // unavailable - // Stability: development - NetworkConnectionTypeUnavailable = NetworkConnectionTypeKey.String("unavailable") - // unknown - // Stability: development - NetworkConnectionTypeUnknown = NetworkConnectionTypeKey.String("unknown") -) - -// Enum values for network.io.direction -var ( - // transmit - // Stability: development - NetworkIODirectionTransmit = NetworkIODirectionKey.String("transmit") - // receive - // Stability: development - NetworkIODirectionReceive = NetworkIODirectionKey.String("receive") -) - -// Enum values for network.transport -var ( - // TCP - // Stability: stable - NetworkTransportTCP = NetworkTransportKey.String("tcp") - // UDP - // Stability: stable - NetworkTransportUDP = NetworkTransportKey.String("udp") - // Named or anonymous pipe. - // Stability: stable - NetworkTransportPipe = NetworkTransportKey.String("pipe") - // Unix domain socket - // Stability: stable - NetworkTransportUnix = NetworkTransportKey.String("unix") - // QUIC - // Stability: stable - NetworkTransportQUIC = NetworkTransportKey.String("quic") -) - -// Enum values for network.type -var ( - // IPv4 - // Stability: stable - NetworkTypeIPv4 = NetworkTypeKey.String("ipv4") - // IPv6 - // Stability: stable - NetworkTypeIPv6 = NetworkTypeKey.String("ipv6") -) - -// Namespace: nfs -const ( - // NfsOperationNameKey is the attribute Key conforming to the - // "nfs.operation.name" semantic conventions. It represents the NFSv4+ operation - // name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "OPEN", "READ", "GETATTR" - NfsOperationNameKey = attribute.Key("nfs.operation.name") - - // NfsServerRepcacheStatusKey is the attribute Key conforming to the - // "nfs.server.repcache.status" semantic conventions. It represents the linux: - // one of "hit" (NFSD_STATS_RC_HITS), "miss" (NFSD_STATS_RC_MISSES), or - // "nocache" (NFSD_STATS_RC_NOCACHE -- uncacheable). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: hit - NfsServerRepcacheStatusKey = attribute.Key("nfs.server.repcache.status") -) - -// NfsOperationName returns an attribute KeyValue conforming to the -// "nfs.operation.name" semantic conventions. It represents the NFSv4+ operation -// name. -func NfsOperationName(val string) attribute.KeyValue { - return NfsOperationNameKey.String(val) -} - -// NfsServerRepcacheStatus returns an attribute KeyValue conforming to the -// "nfs.server.repcache.status" semantic conventions. It represents the linux: -// one of "hit" (NFSD_STATS_RC_HITS), "miss" (NFSD_STATS_RC_MISSES), or "nocache" -// (NFSD_STATS_RC_NOCACHE -- uncacheable). -func NfsServerRepcacheStatus(val string) attribute.KeyValue { - return NfsServerRepcacheStatusKey.String(val) -} - -// Namespace: oci -const ( - // OCIManifestDigestKey is the attribute Key conforming to the - // "oci.manifest.digest" semantic conventions. It represents the digest of the - // OCI image manifest. For container images specifically is the digest by which - // the container image is known. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "sha256:e4ca62c0d62f3e886e684806dfe9d4e0cda60d54986898173c1083856cfda0f4" - // Note: Follows [OCI Image Manifest Specification], and specifically the - // [Digest property]. - // An example can be found in [Example Image Manifest]. - // - // [OCI Image Manifest Specification]: https://github.com/opencontainers/image-spec/blob/main/manifest.md - // [Digest property]: https://github.com/opencontainers/image-spec/blob/main/descriptor.md#digests - // [Example Image Manifest]: https://github.com/opencontainers/image-spec/blob/main/manifest.md#example-image-manifest - OCIManifestDigestKey = attribute.Key("oci.manifest.digest") -) - -// OCIManifestDigest returns an attribute KeyValue conforming to the -// "oci.manifest.digest" semantic conventions. It represents the digest of the -// OCI image manifest. For container images specifically is the digest by which -// the container image is known. -func OCIManifestDigest(val string) attribute.KeyValue { - return OCIManifestDigestKey.String(val) -} - -// Namespace: onc_rpc -const ( - // OncRPCProcedureNameKey is the attribute Key conforming to the - // "onc_rpc.procedure.name" semantic conventions. It represents the ONC/Sun RPC - // procedure name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "OPEN", "READ", "GETATTR" - OncRPCProcedureNameKey = attribute.Key("onc_rpc.procedure.name") - - // OncRPCProcedureNumberKey is the attribute Key conforming to the - // "onc_rpc.procedure.number" semantic conventions. It represents the ONC/Sun - // RPC procedure number. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - OncRPCProcedureNumberKey = attribute.Key("onc_rpc.procedure.number") - - // OncRPCProgramNameKey is the attribute Key conforming to the - // "onc_rpc.program.name" semantic conventions. It represents the ONC/Sun RPC - // program name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "portmapper", "nfs" - OncRPCProgramNameKey = attribute.Key("onc_rpc.program.name") - - // OncRPCVersionKey is the attribute Key conforming to the "onc_rpc.version" - // semantic conventions. It represents the ONC/Sun RPC program version. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - OncRPCVersionKey = attribute.Key("onc_rpc.version") -) - -// OncRPCProcedureName returns an attribute KeyValue conforming to the -// "onc_rpc.procedure.name" semantic conventions. It represents the ONC/Sun RPC -// procedure name. -func OncRPCProcedureName(val string) attribute.KeyValue { - return OncRPCProcedureNameKey.String(val) -} - -// OncRPCProcedureNumber returns an attribute KeyValue conforming to the -// "onc_rpc.procedure.number" semantic conventions. It represents the ONC/Sun RPC -// procedure number. -func OncRPCProcedureNumber(val int) attribute.KeyValue { - return OncRPCProcedureNumberKey.Int(val) -} - -// OncRPCProgramName returns an attribute KeyValue conforming to the -// "onc_rpc.program.name" semantic conventions. It represents the ONC/Sun RPC -// program name. -func OncRPCProgramName(val string) attribute.KeyValue { - return OncRPCProgramNameKey.String(val) -} - -// OncRPCVersion returns an attribute KeyValue conforming to the -// "onc_rpc.version" semantic conventions. It represents the ONC/Sun RPC program -// version. -func OncRPCVersion(val int) attribute.KeyValue { - return OncRPCVersionKey.Int(val) -} - -// Namespace: openai -const ( - // OpenAIRequestServiceTierKey is the attribute Key conforming to the - // "openai.request.service_tier" semantic conventions. It represents the service - // tier requested. May be a specific tier, default, or auto. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "auto", "default" - OpenAIRequestServiceTierKey = attribute.Key("openai.request.service_tier") - - // OpenAIResponseServiceTierKey is the attribute Key conforming to the - // "openai.response.service_tier" semantic conventions. It represents the - // service tier used for the response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "scale", "default" - OpenAIResponseServiceTierKey = attribute.Key("openai.response.service_tier") - - // OpenAIResponseSystemFingerprintKey is the attribute Key conforming to the - // "openai.response.system_fingerprint" semantic conventions. It represents a - // fingerprint to track any eventual change in the Generative AI environment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "fp_44709d6fcb" - OpenAIResponseSystemFingerprintKey = attribute.Key("openai.response.system_fingerprint") -) - -// OpenAIResponseServiceTier returns an attribute KeyValue conforming to the -// "openai.response.service_tier" semantic conventions. It represents the service -// tier used for the response. -func OpenAIResponseServiceTier(val string) attribute.KeyValue { - return OpenAIResponseServiceTierKey.String(val) -} - -// OpenAIResponseSystemFingerprint returns an attribute KeyValue conforming to -// the "openai.response.system_fingerprint" semantic conventions. It represents a -// fingerprint to track any eventual change in the Generative AI environment. -func OpenAIResponseSystemFingerprint(val string) attribute.KeyValue { - return OpenAIResponseSystemFingerprintKey.String(val) -} - -// Enum values for openai.request.service_tier -var ( - // The system will utilize scale tier credits until they are exhausted. - // Stability: development - OpenAIRequestServiceTierAuto = OpenAIRequestServiceTierKey.String("auto") - // The system will utilize the default scale tier. - // Stability: development - OpenAIRequestServiceTierDefault = OpenAIRequestServiceTierKey.String("default") -) - -// Namespace: openshift -const ( - // OpenShiftClusterquotaNameKey is the attribute Key conforming to the - // "openshift.clusterquota.name" semantic conventions. It represents the name of - // the cluster quota. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry" - OpenShiftClusterquotaNameKey = attribute.Key("openshift.clusterquota.name") - - // OpenShiftClusterquotaUIDKey is the attribute Key conforming to the - // "openshift.clusterquota.uid" semantic conventions. It represents the UID of - // the cluster quota. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - OpenShiftClusterquotaUIDKey = attribute.Key("openshift.clusterquota.uid") -) - -// OpenShiftClusterquotaName returns an attribute KeyValue conforming to the -// "openshift.clusterquota.name" semantic conventions. It represents the name of -// the cluster quota. -func OpenShiftClusterquotaName(val string) attribute.KeyValue { - return OpenShiftClusterquotaNameKey.String(val) -} - -// OpenShiftClusterquotaUID returns an attribute KeyValue conforming to the -// "openshift.clusterquota.uid" semantic conventions. It represents the UID of -// the cluster quota. -func OpenShiftClusterquotaUID(val string) attribute.KeyValue { - return OpenShiftClusterquotaUIDKey.String(val) -} - -// Namespace: opentracing -const ( - // OpenTracingRefTypeKey is the attribute Key conforming to the - // "opentracing.ref_type" semantic conventions. It represents the parent-child - // Reference type. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The causal relationship between a child Span and a parent Span. - OpenTracingRefTypeKey = attribute.Key("opentracing.ref_type") -) - -// Enum values for opentracing.ref_type -var ( - // The parent Span depends on the child Span in some capacity - // Stability: development - OpenTracingRefTypeChildOf = OpenTracingRefTypeKey.String("child_of") - // The parent Span doesn't depend in any way on the result of the child Span - // Stability: development - OpenTracingRefTypeFollowsFrom = OpenTracingRefTypeKey.String("follows_from") -) - -// Namespace: os -const ( - // OSBuildIDKey is the attribute Key conforming to the "os.build_id" semantic - // conventions. It represents the unique identifier for a particular build or - // compilation of the operating system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "TQ3C.230805.001.B2", "20E247", "22621" - OSBuildIDKey = attribute.Key("os.build_id") - - // OSDescriptionKey is the attribute Key conforming to the "os.description" - // semantic conventions. It represents the human readable (not intended to be - // parsed) OS version information, like e.g. reported by `ver` or - // `lsb_release -a` commands. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Microsoft Windows [Version 10.0.18363.778]", "Ubuntu 18.04.1 LTS" - OSDescriptionKey = attribute.Key("os.description") - - // OSNameKey is the attribute Key conforming to the "os.name" semantic - // conventions. It represents the human readable operating system name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "iOS", "Android", "Ubuntu" - OSNameKey = attribute.Key("os.name") - - // OSTypeKey is the attribute Key conforming to the "os.type" semantic - // conventions. It represents the operating system type. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - OSTypeKey = attribute.Key("os.type") - - // OSVersionKey is the attribute Key conforming to the "os.version" semantic - // conventions. It represents the version string of the operating system as - // defined in [Version Attributes]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "14.2.1", "18.04.1" - // - // [Version Attributes]: /docs/resource/README.md#version-attributes - OSVersionKey = attribute.Key("os.version") -) - -// OSBuildID returns an attribute KeyValue conforming to the "os.build_id" -// semantic conventions. It represents the unique identifier for a particular -// build or compilation of the operating system. -func OSBuildID(val string) attribute.KeyValue { - return OSBuildIDKey.String(val) -} - -// OSDescription returns an attribute KeyValue conforming to the "os.description" -// semantic conventions. It represents the human readable (not intended to be -// parsed) OS version information, like e.g. reported by `ver` or -// `lsb_release -a` commands. -func OSDescription(val string) attribute.KeyValue { - return OSDescriptionKey.String(val) -} - -// OSName returns an attribute KeyValue conforming to the "os.name" semantic -// conventions. It represents the human readable operating system name. -func OSName(val string) attribute.KeyValue { - return OSNameKey.String(val) -} - -// OSVersion returns an attribute KeyValue conforming to the "os.version" -// semantic conventions. It represents the version string of the operating system -// as defined in [Version Attributes]. -// -// [Version Attributes]: /docs/resource/README.md#version-attributes -func OSVersion(val string) attribute.KeyValue { - return OSVersionKey.String(val) -} - -// Enum values for os.type -var ( - // Microsoft Windows - // Stability: development - OSTypeWindows = OSTypeKey.String("windows") - // Linux - // Stability: development - OSTypeLinux = OSTypeKey.String("linux") - // Apple Darwin - // Stability: development - OSTypeDarwin = OSTypeKey.String("darwin") - // FreeBSD - // Stability: development - OSTypeFreeBSD = OSTypeKey.String("freebsd") - // NetBSD - // Stability: development - OSTypeNetBSD = OSTypeKey.String("netbsd") - // OpenBSD - // Stability: development - OSTypeOpenBSD = OSTypeKey.String("openbsd") - // DragonFly BSD - // Stability: development - OSTypeDragonflyBSD = OSTypeKey.String("dragonflybsd") - // HP-UX (Hewlett Packard Unix) - // Stability: development - OSTypeHPUX = OSTypeKey.String("hpux") - // AIX (Advanced Interactive eXecutive) - // Stability: development - OSTypeAIX = OSTypeKey.String("aix") - // SunOS, Oracle Solaris - // Stability: development - OSTypeSolaris = OSTypeKey.String("solaris") - // IBM z/OS - // Stability: development - OSTypeZOS = OSTypeKey.String("zos") -) - -// Namespace: otel -const ( - // OTelComponentNameKey is the attribute Key conforming to the - // "otel.component.name" semantic conventions. It represents a name uniquely - // identifying the instance of the OpenTelemetry component within its containing - // SDK instance. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "otlp_grpc_span_exporter/0", "custom-name" - // Note: Implementations SHOULD ensure a low cardinality for this attribute, - // even across application or SDK restarts. - // E.g. implementations MUST NOT use UUIDs as values for this attribute. - // - // Implementations MAY achieve these goals by following a - // `/` pattern, e.g. - // `batching_span_processor/0`. - // Hereby `otel.component.type` refers to the corresponding attribute value of - // the component. - // - // The value of `instance-counter` MAY be automatically assigned by the - // component and uniqueness within the enclosing SDK instance MUST be - // guaranteed. - // For example, `` MAY be implemented by using a monotonically - // increasing counter (starting with `0`), which is incremented every time an - // instance of the given component type is started. - // - // With this implementation, for example the first Batching Span Processor would - // have `batching_span_processor/0` - // as `otel.component.name`, the second one `batching_span_processor/1` and so - // on. - // These values will therefore be reused in the case of an application restart. - OTelComponentNameKey = attribute.Key("otel.component.name") - - // OTelComponentTypeKey is the attribute Key conforming to the - // "otel.component.type" semantic conventions. It represents a name identifying - // the type of the OpenTelemetry component. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "batching_span_processor", "com.example.MySpanExporter" - // Note: If none of the standardized values apply, implementations SHOULD use - // the language-defined name of the type. - // E.g. for Java the fully qualified classname SHOULD be used in this case. - OTelComponentTypeKey = attribute.Key("otel.component.type") - - // OTelEventNameKey is the attribute Key conforming to the "otel.event.name" - // semantic conventions. It represents the identifies the class / type of event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "browser.mouse.click", "device.app.lifecycle" - // Note: This attribute SHOULD be used by non-OTLP exporters when destination - // does not support `EventName` or equivalent field. This attribute MAY be used - // by applications using existing logging libraries so that it can be used to - // set the `EventName` field by Collector or SDK components. - OTelEventNameKey = attribute.Key("otel.event.name") - - // OTelScopeNameKey is the attribute Key conforming to the "otel.scope.name" - // semantic conventions. It represents the name of the instrumentation scope - ( - // `InstrumentationScope.Name` in OTLP). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "io.opentelemetry.contrib.mongodb" - OTelScopeNameKey = attribute.Key("otel.scope.name") - - // OTelScopeSchemaURLKey is the attribute Key conforming to the - // "otel.scope.schema_url" semantic conventions. It represents the schema URL of - // the instrumentation scope. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://opentelemetry.io/schemas/1.31.0" - OTelScopeSchemaURLKey = attribute.Key("otel.scope.schema_url") - - // OTelScopeVersionKey is the attribute Key conforming to the - // "otel.scope.version" semantic conventions. It represents the version of the - // instrumentation scope - (`InstrumentationScope.Version` in OTLP). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "1.0.0" - OTelScopeVersionKey = attribute.Key("otel.scope.version") - - // OTelSpanParentOriginKey is the attribute Key conforming to the - // "otel.span.parent.origin" semantic conventions. It represents the determines - // whether the span has a parent span, and if so, - // [whether it is a remote parent]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote - OTelSpanParentOriginKey = attribute.Key("otel.span.parent.origin") - - // OTelSpanSamplingResultKey is the attribute Key conforming to the - // "otel.span.sampling_result" semantic conventions. It represents the result - // value of the sampler for this span. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - OTelSpanSamplingResultKey = attribute.Key("otel.span.sampling_result") - - // OTelStatusCodeKey is the attribute Key conforming to the "otel.status_code" - // semantic conventions. It represents the name of the code, either "OK" or - // "ERROR". MUST NOT be set if the status code is UNSET. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: - OTelStatusCodeKey = attribute.Key("otel.status_code") - - // OTelStatusDescriptionKey is the attribute Key conforming to the - // "otel.status_description" semantic conventions. It represents the description - // of the Status if it has a value, otherwise not set. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "resource not found" - OTelStatusDescriptionKey = attribute.Key("otel.status_description") -) - -// OTelComponentName returns an attribute KeyValue conforming to the -// "otel.component.name" semantic conventions. It represents a name uniquely -// identifying the instance of the OpenTelemetry component within its containing -// SDK instance. -func OTelComponentName(val string) attribute.KeyValue { - return OTelComponentNameKey.String(val) -} - -// OTelEventName returns an attribute KeyValue conforming to the -// "otel.event.name" semantic conventions. It represents the identifies the class -// / type of event. -func OTelEventName(val string) attribute.KeyValue { - return OTelEventNameKey.String(val) -} - -// OTelScopeName returns an attribute KeyValue conforming to the -// "otel.scope.name" semantic conventions. It represents the name of the -// instrumentation scope - (`InstrumentationScope.Name` in OTLP). -func OTelScopeName(val string) attribute.KeyValue { - return OTelScopeNameKey.String(val) -} - -// OTelScopeSchemaURL returns an attribute KeyValue conforming to the -// "otel.scope.schema_url" semantic conventions. It represents the schema URL of -// the instrumentation scope. -func OTelScopeSchemaURL(val string) attribute.KeyValue { - return OTelScopeSchemaURLKey.String(val) -} - -// OTelScopeVersion returns an attribute KeyValue conforming to the -// "otel.scope.version" semantic conventions. It represents the version of the -// instrumentation scope - (`InstrumentationScope.Version` in OTLP). -func OTelScopeVersion(val string) attribute.KeyValue { - return OTelScopeVersionKey.String(val) -} - -// OTelStatusDescription returns an attribute KeyValue conforming to the -// "otel.status_description" semantic conventions. It represents the description -// of the Status if it has a value, otherwise not set. -func OTelStatusDescription(val string) attribute.KeyValue { - return OTelStatusDescriptionKey.String(val) -} - -// Enum values for otel.component.type -var ( - // The builtin SDK batching span processor - // - // Stability: development - OTelComponentTypeBatchingSpanProcessor = OTelComponentTypeKey.String("batching_span_processor") - // The builtin SDK simple span processor - // - // Stability: development - OTelComponentTypeSimpleSpanProcessor = OTelComponentTypeKey.String("simple_span_processor") - // The builtin SDK batching log record processor - // - // Stability: development - OTelComponentTypeBatchingLogProcessor = OTelComponentTypeKey.String("batching_log_processor") - // The builtin SDK simple log record processor - // - // Stability: development - OTelComponentTypeSimpleLogProcessor = OTelComponentTypeKey.String("simple_log_processor") - // OTLP span exporter over gRPC with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpGRPCSpanExporter = OTelComponentTypeKey.String("otlp_grpc_span_exporter") - // OTLP span exporter over HTTP with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPSpanExporter = OTelComponentTypeKey.String("otlp_http_span_exporter") - // OTLP span exporter over HTTP with JSON serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPJSONSpanExporter = OTelComponentTypeKey.String("otlp_http_json_span_exporter") - // Zipkin span exporter over HTTP - // - // Stability: development - OTelComponentTypeZipkinHTTPSpanExporter = OTelComponentTypeKey.String("zipkin_http_span_exporter") - // OTLP log record exporter over gRPC with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpGRPCLogExporter = OTelComponentTypeKey.String("otlp_grpc_log_exporter") - // OTLP log record exporter over HTTP with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPLogExporter = OTelComponentTypeKey.String("otlp_http_log_exporter") - // OTLP log record exporter over HTTP with JSON serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPJSONLogExporter = OTelComponentTypeKey.String("otlp_http_json_log_exporter") - // The builtin SDK periodically exporting metric reader - // - // Stability: development - OTelComponentTypePeriodicMetricReader = OTelComponentTypeKey.String("periodic_metric_reader") - // OTLP metric exporter over gRPC with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpGRPCMetricExporter = OTelComponentTypeKey.String("otlp_grpc_metric_exporter") - // OTLP metric exporter over HTTP with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPMetricExporter = OTelComponentTypeKey.String("otlp_http_metric_exporter") - // OTLP metric exporter over HTTP with JSON serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPJSONMetricExporter = OTelComponentTypeKey.String("otlp_http_json_metric_exporter") - // Prometheus metric exporter over HTTP with the default text-based format - // - // Stability: development - OTelComponentTypePrometheusHTTPTextMetricExporter = OTelComponentTypeKey.String("prometheus_http_text_metric_exporter") -) - -// Enum values for otel.span.parent.origin -var ( - // The span does not have a parent, it is a root span - // Stability: development - OTelSpanParentOriginNone = OTelSpanParentOriginKey.String("none") - // The span has a parent and the parent's span context [isRemote()] is false - // Stability: development - // - // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote - OTelSpanParentOriginLocal = OTelSpanParentOriginKey.String("local") - // The span has a parent and the parent's span context [isRemote()] is true - // Stability: development - // - // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote - OTelSpanParentOriginRemote = OTelSpanParentOriginKey.String("remote") -) - -// Enum values for otel.span.sampling_result -var ( - // The span is not sampled and not recording - // Stability: development - OTelSpanSamplingResultDrop = OTelSpanSamplingResultKey.String("DROP") - // The span is not sampled, but recording - // Stability: development - OTelSpanSamplingResultRecordOnly = OTelSpanSamplingResultKey.String("RECORD_ONLY") - // The span is sampled and recording - // Stability: development - OTelSpanSamplingResultRecordAndSample = OTelSpanSamplingResultKey.String("RECORD_AND_SAMPLE") -) - -// Enum values for otel.status_code -var ( - // The operation has been validated by an Application developer or Operator to - // have completed successfully. - // Stability: stable - OTelStatusCodeOk = OTelStatusCodeKey.String("OK") - // The operation contains an error. - // Stability: stable - OTelStatusCodeError = OTelStatusCodeKey.String("ERROR") -) - -// Namespace: pprof -const ( - // PprofLocationIsFoldedKey is the attribute Key conforming to the - // "pprof.location.is_folded" semantic conventions. It represents the provides - // an indication that multiple symbols map to this location's address, for - // example due to identical code folding by the linker. In that case the line - // information represents one of the multiple symbols. This field must be - // recomputed when the symbolization state of the profile changes. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - PprofLocationIsFoldedKey = attribute.Key("pprof.location.is_folded") - - // PprofMappingHasFilenamesKey is the attribute Key conforming to the - // "pprof.mapping.has_filenames" semantic conventions. It represents the - // indicates that there are filenames related to this mapping. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - PprofMappingHasFilenamesKey = attribute.Key("pprof.mapping.has_filenames") - - // PprofMappingHasFunctionsKey is the attribute Key conforming to the - // "pprof.mapping.has_functions" semantic conventions. It represents the - // indicates that there are functions related to this mapping. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - PprofMappingHasFunctionsKey = attribute.Key("pprof.mapping.has_functions") - - // PprofMappingHasInlineFramesKey is the attribute Key conforming to the - // "pprof.mapping.has_inline_frames" semantic conventions. It represents the - // indicates that there are inline frames related to this mapping. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - PprofMappingHasInlineFramesKey = attribute.Key("pprof.mapping.has_inline_frames") - - // PprofMappingHasLineNumbersKey is the attribute Key conforming to the - // "pprof.mapping.has_line_numbers" semantic conventions. It represents the - // indicates that there are line numbers related to this mapping. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - PprofMappingHasLineNumbersKey = attribute.Key("pprof.mapping.has_line_numbers") - - // PprofProfileCommentKey is the attribute Key conforming to the - // "pprof.profile.comment" semantic conventions. It represents the free-form - // text associated with the profile. This field should not be used to store any - // machine-readable information, it is only for human-friendly content. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "hello world", "bazinga" - PprofProfileCommentKey = attribute.Key("pprof.profile.comment") - - // PprofProfileDocURLKey is the attribute Key conforming to the - // "pprof.profile.doc_url" semantic conventions. It represents the documentation - // link for this profile type. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "http://pprof.example.com/cpu-profile.html" - // Note: The URL must be absolute and may be missing if the profile was - // generated by code that did not supply a link - PprofProfileDocURLKey = attribute.Key("pprof.profile.doc_url") - - // PprofProfileDropFramesKey is the attribute Key conforming to the - // "pprof.profile.drop_frames" semantic conventions. It represents the frames - // with Function.function_name fully matching the regexp will be dropped from - // the samples, along with their successors. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/foobar/" - PprofProfileDropFramesKey = attribute.Key("pprof.profile.drop_frames") - - // PprofProfileKeepFramesKey is the attribute Key conforming to the - // "pprof.profile.keep_frames" semantic conventions. It represents the frames - // with Function.function_name fully matching the regexp will be kept, even if - // it matches drop_frames. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/bazinga/" - PprofProfileKeepFramesKey = attribute.Key("pprof.profile.keep_frames") -) - -// PprofLocationIsFolded returns an attribute KeyValue conforming to the -// "pprof.location.is_folded" semantic conventions. It represents the provides an -// indication that multiple symbols map to this location's address, for example -// due to identical code folding by the linker. In that case the line information -// represents one of the multiple symbols. This field must be recomputed when the -// symbolization state of the profile changes. -func PprofLocationIsFolded(val bool) attribute.KeyValue { - return PprofLocationIsFoldedKey.Bool(val) -} - -// PprofMappingHasFilenames returns an attribute KeyValue conforming to the -// "pprof.mapping.has_filenames" semantic conventions. It represents the -// indicates that there are filenames related to this mapping. -func PprofMappingHasFilenames(val bool) attribute.KeyValue { - return PprofMappingHasFilenamesKey.Bool(val) -} - -// PprofMappingHasFunctions returns an attribute KeyValue conforming to the -// "pprof.mapping.has_functions" semantic conventions. It represents the -// indicates that there are functions related to this mapping. -func PprofMappingHasFunctions(val bool) attribute.KeyValue { - return PprofMappingHasFunctionsKey.Bool(val) -} - -// PprofMappingHasInlineFrames returns an attribute KeyValue conforming to the -// "pprof.mapping.has_inline_frames" semantic conventions. It represents the -// indicates that there are inline frames related to this mapping. -func PprofMappingHasInlineFrames(val bool) attribute.KeyValue { - return PprofMappingHasInlineFramesKey.Bool(val) -} - -// PprofMappingHasLineNumbers returns an attribute KeyValue conforming to the -// "pprof.mapping.has_line_numbers" semantic conventions. It represents the -// indicates that there are line numbers related to this mapping. -func PprofMappingHasLineNumbers(val bool) attribute.KeyValue { - return PprofMappingHasLineNumbersKey.Bool(val) -} - -// PprofProfileComment returns an attribute KeyValue conforming to the -// "pprof.profile.comment" semantic conventions. It represents the free-form text -// associated with the profile. This field should not be used to store any -// machine-readable information, it is only for human-friendly content. -func PprofProfileComment(val ...string) attribute.KeyValue { - return PprofProfileCommentKey.StringSlice(val) -} - -// PprofProfileDocURL returns an attribute KeyValue conforming to the -// "pprof.profile.doc_url" semantic conventions. It represents the documentation -// link for this profile type. -func PprofProfileDocURL(val string) attribute.KeyValue { - return PprofProfileDocURLKey.String(val) -} - -// PprofProfileDropFrames returns an attribute KeyValue conforming to the -// "pprof.profile.drop_frames" semantic conventions. It represents the frames -// with Function.function_name fully matching the regexp will be dropped from the -// samples, along with their successors. -func PprofProfileDropFrames(val string) attribute.KeyValue { - return PprofProfileDropFramesKey.String(val) -} - -// PprofProfileKeepFrames returns an attribute KeyValue conforming to the -// "pprof.profile.keep_frames" semantic conventions. It represents the frames -// with Function.function_name fully matching the regexp will be kept, even if it -// matches drop_frames. -func PprofProfileKeepFrames(val string) attribute.KeyValue { - return PprofProfileKeepFramesKey.String(val) -} - -// Namespace: process -const ( - // ProcessArgsCountKey is the attribute Key conforming to the - // "process.args_count" semantic conventions. It represents the length of the - // process.command_args array. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 4 - // Note: This field can be useful for querying or performing bucket analysis on - // how many arguments were provided to start a process. More arguments may be an - // indication of suspicious activity. - ProcessArgsCountKey = attribute.Key("process.args_count") - - // ProcessCommandKey is the attribute Key conforming to the "process.command" - // semantic conventions. It represents the command used to launch the process - // (i.e. the command name). On Linux based systems, can be set to the zeroth - // string in `proc/[pid]/cmdline`. On Windows, can be set to the first parameter - // extracted from `GetCommandLineW`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cmd/otelcol" - ProcessCommandKey = attribute.Key("process.command") - - // ProcessCommandArgsKey is the attribute Key conforming to the - // "process.command_args" semantic conventions. It represents the all the - // command arguments (including the command/executable itself) as received by - // the process. On Linux-based systems (and some other Unixoid systems - // supporting procfs), can be set according to the list of null-delimited - // strings extracted from `proc/[pid]/cmdline`. For libc-based executables, this - // would be the full argv vector passed to `main`. SHOULD NOT be collected by - // default unless there is sanitization that excludes sensitive data. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cmd/otecol", "--config=config.yaml" - ProcessCommandArgsKey = attribute.Key("process.command_args") - - // ProcessCommandLineKey is the attribute Key conforming to the - // "process.command_line" semantic conventions. It represents the full command - // used to launch the process as a single string representing the full command. - // On Windows, can be set to the result of `GetCommandLineW`. Do not set this if - // you have to assemble it just for monitoring; use `process.command_args` - // instead. SHOULD NOT be collected by default unless there is sanitization that - // excludes sensitive data. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "C:\cmd\otecol --config="my directory\config.yaml"" - ProcessCommandLineKey = attribute.Key("process.command_line") - - // ProcessContextSwitchTypeKey is the attribute Key conforming to the - // "process.context_switch.type" semantic conventions. It represents the - // specifies whether the context switches for this data point were voluntary or - // involuntary. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - ProcessContextSwitchTypeKey = attribute.Key("process.context_switch.type") - - // ProcessCreationTimeKey is the attribute Key conforming to the - // "process.creation.time" semantic conventions. It represents the date and time - // the process was created, in ISO 8601 format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2023-11-21T09:25:34.853Z" - ProcessCreationTimeKey = attribute.Key("process.creation.time") - - // ProcessExecutableBuildIDGNUKey is the attribute Key conforming to the - // "process.executable.build_id.gnu" semantic conventions. It represents the GNU - // build ID as found in the `.note.gnu.build-id` ELF section (hex string). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "c89b11207f6479603b0d49bf291c092c2b719293" - ProcessExecutableBuildIDGNUKey = attribute.Key("process.executable.build_id.gnu") - - // ProcessExecutableBuildIDGoKey is the attribute Key conforming to the - // "process.executable.build_id.go" semantic conventions. It represents the Go - // build ID as retrieved by `go tool buildid `. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "foh3mEXu7BLZjsN9pOwG/kATcXlYVCDEFouRMQed_/WwRFB1hPo9LBkekthSPG/x8hMC8emW2cCjXD0_1aY" - ProcessExecutableBuildIDGoKey = attribute.Key("process.executable.build_id.go") - - // ProcessExecutableBuildIDHtlhashKey is the attribute Key conforming to the - // "process.executable.build_id.htlhash" semantic conventions. It represents the - // profiling specific build ID for executables. See the OTel specification for - // Profiles for more information. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "600DCAFE4A110000F2BF38C493F5FB92" - ProcessExecutableBuildIDHtlhashKey = attribute.Key("process.executable.build_id.htlhash") - - // ProcessExecutableNameKey is the attribute Key conforming to the - // "process.executable.name" semantic conventions. It represents the name of the - // process executable. On Linux based systems, this SHOULD be set to the base - // name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to - // the base name of `GetProcessImageFileNameW`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "otelcol" - ProcessExecutableNameKey = attribute.Key("process.executable.name") - - // ProcessExecutablePathKey is the attribute Key conforming to the - // "process.executable.path" semantic conventions. It represents the full path - // to the process executable. On Linux based systems, can be set to the target - // of `proc/[pid]/exe`. On Windows, can be set to the result of - // `GetProcessImageFileNameW`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/usr/bin/cmd/otelcol" - ProcessExecutablePathKey = attribute.Key("process.executable.path") - - // ProcessExitCodeKey is the attribute Key conforming to the "process.exit.code" - // semantic conventions. It represents the exit code of the process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 127 - ProcessExitCodeKey = attribute.Key("process.exit.code") - - // ProcessExitTimeKey is the attribute Key conforming to the "process.exit.time" - // semantic conventions. It represents the date and time the process exited, in - // ISO 8601 format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2023-11-21T09:26:12.315Z" - ProcessExitTimeKey = attribute.Key("process.exit.time") - - // ProcessGroupLeaderPIDKey is the attribute Key conforming to the - // "process.group_leader.pid" semantic conventions. It represents the PID of the - // process's group leader. This is also the process group ID (PGID) of the - // process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 23 - ProcessGroupLeaderPIDKey = attribute.Key("process.group_leader.pid") - - // ProcessInteractiveKey is the attribute Key conforming to the - // "process.interactive" semantic conventions. It represents the whether the - // process is connected to an interactive shell. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - ProcessInteractiveKey = attribute.Key("process.interactive") - - // ProcessLinuxCgroupKey is the attribute Key conforming to the - // "process.linux.cgroup" semantic conventions. It represents the control group - // associated with the process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1:name=systemd:/user.slice/user-1000.slice/session-3.scope", - // "0::/user.slice/user-1000.slice/user@1000.service/tmux-spawn-0267755b-4639-4a27-90ed-f19f88e53748.scope" - // Note: Control groups (cgroups) are a kernel feature used to organize and - // manage process resources. This attribute provides the path(s) to the - // cgroup(s) associated with the process, which should match the contents of the - // [/proc/[PID]/cgroup] file. - // - // [/proc/[PID]/cgroup]: https://man7.org/linux/man-pages/man7/cgroups.7.html - ProcessLinuxCgroupKey = attribute.Key("process.linux.cgroup") - - // ProcessOwnerKey is the attribute Key conforming to the "process.owner" - // semantic conventions. It represents the username of the user that owns the - // process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "root" - ProcessOwnerKey = attribute.Key("process.owner") - - // ProcessParentPIDKey is the attribute Key conforming to the - // "process.parent_pid" semantic conventions. It represents the parent Process - // identifier (PPID). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 111 - ProcessParentPIDKey = attribute.Key("process.parent_pid") - - // ProcessPIDKey is the attribute Key conforming to the "process.pid" semantic - // conventions. It represents the process identifier (PID). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1234 - ProcessPIDKey = attribute.Key("process.pid") - - // ProcessRealUserIDKey is the attribute Key conforming to the - // "process.real_user.id" semantic conventions. It represents the real user ID - // (RUID) of the process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1000 - ProcessRealUserIDKey = attribute.Key("process.real_user.id") - - // ProcessRealUserNameKey is the attribute Key conforming to the - // "process.real_user.name" semantic conventions. It represents the username of - // the real user of the process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "operator" - ProcessRealUserNameKey = attribute.Key("process.real_user.name") - - // ProcessRuntimeDescriptionKey is the attribute Key conforming to the - // "process.runtime.description" semantic conventions. It represents an - // additional description about the runtime of the process, for example a - // specific vendor customization of the runtime environment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: Eclipse OpenJ9 Eclipse OpenJ9 VM openj9-0.21.0 - ProcessRuntimeDescriptionKey = attribute.Key("process.runtime.description") - - // ProcessRuntimeNameKey is the attribute Key conforming to the - // "process.runtime.name" semantic conventions. It represents the name of the - // runtime of this process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "OpenJDK Runtime Environment" - ProcessRuntimeNameKey = attribute.Key("process.runtime.name") - - // ProcessRuntimeVersionKey is the attribute Key conforming to the - // "process.runtime.version" semantic conventions. It represents the version of - // the runtime of this process, as returned by the runtime without modification. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 14.0.2 - ProcessRuntimeVersionKey = attribute.Key("process.runtime.version") - - // ProcessSavedUserIDKey is the attribute Key conforming to the - // "process.saved_user.id" semantic conventions. It represents the saved user ID - // (SUID) of the process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1002 - ProcessSavedUserIDKey = attribute.Key("process.saved_user.id") - - // ProcessSavedUserNameKey is the attribute Key conforming to the - // "process.saved_user.name" semantic conventions. It represents the username of - // the saved user. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "operator" - ProcessSavedUserNameKey = attribute.Key("process.saved_user.name") - - // ProcessSessionLeaderPIDKey is the attribute Key conforming to the - // "process.session_leader.pid" semantic conventions. It represents the PID of - // the process's session leader. This is also the session ID (SID) of the - // process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 14 - ProcessSessionLeaderPIDKey = attribute.Key("process.session_leader.pid") - - // ProcessStateKey is the attribute Key conforming to the "process.state" - // semantic conventions. It represents the process state, e.g., - // [Linux Process State Codes]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "running" - // - // [Linux Process State Codes]: https://man7.org/linux/man-pages/man1/ps.1.html#PROCESS_STATE_CODES - ProcessStateKey = attribute.Key("process.state") - - // ProcessTitleKey is the attribute Key conforming to the "process.title" - // semantic conventions. It represents the process title (proctitle). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cat /etc/hostname", "xfce4-session", "bash" - // Note: In many Unix-like systems, process title (proctitle), is the string - // that represents the name or command line of a running process, displayed by - // system monitoring tools like ps, top, and htop. - ProcessTitleKey = attribute.Key("process.title") - - // ProcessUserIDKey is the attribute Key conforming to the "process.user.id" - // semantic conventions. It represents the effective user ID (EUID) of the - // process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1001 - ProcessUserIDKey = attribute.Key("process.user.id") - - // ProcessUserNameKey is the attribute Key conforming to the "process.user.name" - // semantic conventions. It represents the username of the effective user of the - // process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "root" - ProcessUserNameKey = attribute.Key("process.user.name") - - // ProcessVpidKey is the attribute Key conforming to the "process.vpid" semantic - // conventions. It represents the virtual process identifier. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 12 - // Note: The process ID within a PID namespace. This is not necessarily unique - // across all processes on the host but it is unique within the process - // namespace that the process exists within. - ProcessVpidKey = attribute.Key("process.vpid") - - // ProcessWorkingDirectoryKey is the attribute Key conforming to the - // "process.working_directory" semantic conventions. It represents the working - // directory of the process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/root" - ProcessWorkingDirectoryKey = attribute.Key("process.working_directory") -) - -// ProcessArgsCount returns an attribute KeyValue conforming to the -// "process.args_count" semantic conventions. It represents the length of the -// process.command_args array. -func ProcessArgsCount(val int) attribute.KeyValue { - return ProcessArgsCountKey.Int(val) -} - -// ProcessCommand returns an attribute KeyValue conforming to the -// "process.command" semantic conventions. It represents the command used to -// launch the process (i.e. the command name). On Linux based systems, can be set -// to the zeroth string in `proc/[pid]/cmdline`. On Windows, can be set to the -// first parameter extracted from `GetCommandLineW`. -func ProcessCommand(val string) attribute.KeyValue { - return ProcessCommandKey.String(val) -} - -// ProcessCommandArgs returns an attribute KeyValue conforming to the -// "process.command_args" semantic conventions. It represents the all the command -// arguments (including the command/executable itself) as received by the -// process. On Linux-based systems (and some other Unixoid systems supporting -// procfs), can be set according to the list of null-delimited strings extracted -// from `proc/[pid]/cmdline`. For libc-based executables, this would be the full -// argv vector passed to `main`. SHOULD NOT be collected by default unless there -// is sanitization that excludes sensitive data. -func ProcessCommandArgs(val ...string) attribute.KeyValue { - return ProcessCommandArgsKey.StringSlice(val) -} - -// ProcessCommandLine returns an attribute KeyValue conforming to the -// "process.command_line" semantic conventions. It represents the full command -// used to launch the process as a single string representing the full command. -// On Windows, can be set to the result of `GetCommandLineW`. Do not set this if -// you have to assemble it just for monitoring; use `process.command_args` -// instead. SHOULD NOT be collected by default unless there is sanitization that -// excludes sensitive data. -func ProcessCommandLine(val string) attribute.KeyValue { - return ProcessCommandLineKey.String(val) -} - -// ProcessCreationTime returns an attribute KeyValue conforming to the -// "process.creation.time" semantic conventions. It represents the date and time -// the process was created, in ISO 8601 format. -func ProcessCreationTime(val string) attribute.KeyValue { - return ProcessCreationTimeKey.String(val) -} - -// ProcessEnvironmentVariable returns an attribute KeyValue conforming to the -// "process.environment_variable" semantic conventions. It represents the process -// environment variables, `` being the environment variable name, the value -// being the environment variable value. -func ProcessEnvironmentVariable(key string, val string) attribute.KeyValue { - return attribute.String("process.environment_variable."+key, val) -} - -// ProcessExecutableBuildIDGNU returns an attribute KeyValue conforming to the -// "process.executable.build_id.gnu" semantic conventions. It represents the GNU -// build ID as found in the `.note.gnu.build-id` ELF section (hex string). -func ProcessExecutableBuildIDGNU(val string) attribute.KeyValue { - return ProcessExecutableBuildIDGNUKey.String(val) -} - -// ProcessExecutableBuildIDGo returns an attribute KeyValue conforming to the -// "process.executable.build_id.go" semantic conventions. It represents the Go -// build ID as retrieved by `go tool buildid `. -func ProcessExecutableBuildIDGo(val string) attribute.KeyValue { - return ProcessExecutableBuildIDGoKey.String(val) -} - -// ProcessExecutableBuildIDHtlhash returns an attribute KeyValue conforming to -// the "process.executable.build_id.htlhash" semantic conventions. It represents -// the profiling specific build ID for executables. See the OTel specification -// for Profiles for more information. -func ProcessExecutableBuildIDHtlhash(val string) attribute.KeyValue { - return ProcessExecutableBuildIDHtlhashKey.String(val) -} - -// ProcessExecutableName returns an attribute KeyValue conforming to the -// "process.executable.name" semantic conventions. It represents the name of the -// process executable. On Linux based systems, this SHOULD be set to the base -// name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to the -// base name of `GetProcessImageFileNameW`. -func ProcessExecutableName(val string) attribute.KeyValue { - return ProcessExecutableNameKey.String(val) -} - -// ProcessExecutablePath returns an attribute KeyValue conforming to the -// "process.executable.path" semantic conventions. It represents the full path to -// the process executable. On Linux based systems, can be set to the target of -// `proc/[pid]/exe`. On Windows, can be set to the result of -// `GetProcessImageFileNameW`. -func ProcessExecutablePath(val string) attribute.KeyValue { - return ProcessExecutablePathKey.String(val) -} - -// ProcessExitCode returns an attribute KeyValue conforming to the -// "process.exit.code" semantic conventions. It represents the exit code of the -// process. -func ProcessExitCode(val int) attribute.KeyValue { - return ProcessExitCodeKey.Int(val) -} - -// ProcessExitTime returns an attribute KeyValue conforming to the -// "process.exit.time" semantic conventions. It represents the date and time the -// process exited, in ISO 8601 format. -func ProcessExitTime(val string) attribute.KeyValue { - return ProcessExitTimeKey.String(val) -} - -// ProcessGroupLeaderPID returns an attribute KeyValue conforming to the -// "process.group_leader.pid" semantic conventions. It represents the PID of the -// process's group leader. This is also the process group ID (PGID) of the -// process. -func ProcessGroupLeaderPID(val int) attribute.KeyValue { - return ProcessGroupLeaderPIDKey.Int(val) -} - -// ProcessInteractive returns an attribute KeyValue conforming to the -// "process.interactive" semantic conventions. It represents the whether the -// process is connected to an interactive shell. -func ProcessInteractive(val bool) attribute.KeyValue { - return ProcessInteractiveKey.Bool(val) -} - -// ProcessLinuxCgroup returns an attribute KeyValue conforming to the -// "process.linux.cgroup" semantic conventions. It represents the control group -// associated with the process. -func ProcessLinuxCgroup(val string) attribute.KeyValue { - return ProcessLinuxCgroupKey.String(val) -} - -// ProcessOwner returns an attribute KeyValue conforming to the "process.owner" -// semantic conventions. It represents the username of the user that owns the -// process. -func ProcessOwner(val string) attribute.KeyValue { - return ProcessOwnerKey.String(val) -} - -// ProcessParentPID returns an attribute KeyValue conforming to the -// "process.parent_pid" semantic conventions. It represents the parent Process -// identifier (PPID). -func ProcessParentPID(val int) attribute.KeyValue { - return ProcessParentPIDKey.Int(val) -} - -// ProcessPID returns an attribute KeyValue conforming to the "process.pid" -// semantic conventions. It represents the process identifier (PID). -func ProcessPID(val int) attribute.KeyValue { - return ProcessPIDKey.Int(val) -} - -// ProcessRealUserID returns an attribute KeyValue conforming to the -// "process.real_user.id" semantic conventions. It represents the real user ID -// (RUID) of the process. -func ProcessRealUserID(val int) attribute.KeyValue { - return ProcessRealUserIDKey.Int(val) -} - -// ProcessRealUserName returns an attribute KeyValue conforming to the -// "process.real_user.name" semantic conventions. It represents the username of -// the real user of the process. -func ProcessRealUserName(val string) attribute.KeyValue { - return ProcessRealUserNameKey.String(val) -} - -// ProcessRuntimeDescription returns an attribute KeyValue conforming to the -// "process.runtime.description" semantic conventions. It represents an -// additional description about the runtime of the process, for example a -// specific vendor customization of the runtime environment. -func ProcessRuntimeDescription(val string) attribute.KeyValue { - return ProcessRuntimeDescriptionKey.String(val) -} - -// ProcessRuntimeName returns an attribute KeyValue conforming to the -// "process.runtime.name" semantic conventions. It represents the name of the -// runtime of this process. -func ProcessRuntimeName(val string) attribute.KeyValue { - return ProcessRuntimeNameKey.String(val) -} - -// ProcessRuntimeVersion returns an attribute KeyValue conforming to the -// "process.runtime.version" semantic conventions. It represents the version of -// the runtime of this process, as returned by the runtime without modification. -func ProcessRuntimeVersion(val string) attribute.KeyValue { - return ProcessRuntimeVersionKey.String(val) -} - -// ProcessSavedUserID returns an attribute KeyValue conforming to the -// "process.saved_user.id" semantic conventions. It represents the saved user ID -// (SUID) of the process. -func ProcessSavedUserID(val int) attribute.KeyValue { - return ProcessSavedUserIDKey.Int(val) -} - -// ProcessSavedUserName returns an attribute KeyValue conforming to the -// "process.saved_user.name" semantic conventions. It represents the username of -// the saved user. -func ProcessSavedUserName(val string) attribute.KeyValue { - return ProcessSavedUserNameKey.String(val) -} - -// ProcessSessionLeaderPID returns an attribute KeyValue conforming to the -// "process.session_leader.pid" semantic conventions. It represents the PID of -// the process's session leader. This is also the session ID (SID) of the -// process. -func ProcessSessionLeaderPID(val int) attribute.KeyValue { - return ProcessSessionLeaderPIDKey.Int(val) -} - -// ProcessTitle returns an attribute KeyValue conforming to the "process.title" -// semantic conventions. It represents the process title (proctitle). -func ProcessTitle(val string) attribute.KeyValue { - return ProcessTitleKey.String(val) -} - -// ProcessUserID returns an attribute KeyValue conforming to the -// "process.user.id" semantic conventions. It represents the effective user ID -// (EUID) of the process. -func ProcessUserID(val int) attribute.KeyValue { - return ProcessUserIDKey.Int(val) -} - -// ProcessUserName returns an attribute KeyValue conforming to the -// "process.user.name" semantic conventions. It represents the username of the -// effective user of the process. -func ProcessUserName(val string) attribute.KeyValue { - return ProcessUserNameKey.String(val) -} - -// ProcessVpid returns an attribute KeyValue conforming to the "process.vpid" -// semantic conventions. It represents the virtual process identifier. -func ProcessVpid(val int) attribute.KeyValue { - return ProcessVpidKey.Int(val) -} - -// ProcessWorkingDirectory returns an attribute KeyValue conforming to the -// "process.working_directory" semantic conventions. It represents the working -// directory of the process. -func ProcessWorkingDirectory(val string) attribute.KeyValue { - return ProcessWorkingDirectoryKey.String(val) -} - -// Enum values for process.context_switch.type -var ( - // voluntary - // Stability: development - ProcessContextSwitchTypeVoluntary = ProcessContextSwitchTypeKey.String("voluntary") - // involuntary - // Stability: development - ProcessContextSwitchTypeInvoluntary = ProcessContextSwitchTypeKey.String("involuntary") -) - -// Enum values for process.state -var ( - // running - // Stability: development - ProcessStateRunning = ProcessStateKey.String("running") - // sleeping - // Stability: development - ProcessStateSleeping = ProcessStateKey.String("sleeping") - // stopped - // Stability: development - ProcessStateStopped = ProcessStateKey.String("stopped") - // defunct - // Stability: development - ProcessStateDefunct = ProcessStateKey.String("defunct") -) - -// Namespace: profile -const ( - // ProfileFrameTypeKey is the attribute Key conforming to the - // "profile.frame.type" semantic conventions. It represents the describes the - // interpreter or compiler of a single frame. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cpython" - ProfileFrameTypeKey = attribute.Key("profile.frame.type") -) - -// Enum values for profile.frame.type -var ( - // [.NET] - // - // Stability: development - // - // [.NET]: https://wikipedia.org/wiki/.NET - ProfileFrameTypeDotnet = ProfileFrameTypeKey.String("dotnet") - // [JVM] - // - // Stability: development - // - // [JVM]: https://wikipedia.org/wiki/Java_virtual_machine - ProfileFrameTypeJVM = ProfileFrameTypeKey.String("jvm") - // [Kernel] - // - // Stability: development - // - // [Kernel]: https://wikipedia.org/wiki/Kernel_(operating_system) - ProfileFrameTypeKernel = ProfileFrameTypeKey.String("kernel") - // Can be one of but not limited to [C], [C++], [Go] or [Rust]. If possible, a - // more precise value MUST be used. - // - // Stability: development - // - // [C]: https://wikipedia.org/wiki/C_(programming_language) - // [C++]: https://wikipedia.org/wiki/C%2B%2B - // [Go]: https://wikipedia.org/wiki/Go_(programming_language) - // [Rust]: https://wikipedia.org/wiki/Rust_(programming_language) - ProfileFrameTypeNative = ProfileFrameTypeKey.String("native") - // [Perl] - // - // Stability: development - // - // [Perl]: https://wikipedia.org/wiki/Perl - ProfileFrameTypePerl = ProfileFrameTypeKey.String("perl") - // [PHP] - // - // Stability: development - // - // [PHP]: https://wikipedia.org/wiki/PHP - ProfileFrameTypePHP = ProfileFrameTypeKey.String("php") - // [Python] - // - // Stability: development - // - // [Python]: https://wikipedia.org/wiki/Python_(programming_language) - ProfileFrameTypeCpython = ProfileFrameTypeKey.String("cpython") - // [Ruby] - // - // Stability: development - // - // [Ruby]: https://wikipedia.org/wiki/Ruby_(programming_language) - ProfileFrameTypeRuby = ProfileFrameTypeKey.String("ruby") - // [V8JS] - // - // Stability: development - // - // [V8JS]: https://wikipedia.org/wiki/V8_(JavaScript_engine) - ProfileFrameTypeV8JS = ProfileFrameTypeKey.String("v8js") - // [Erlang] - // - // Stability: development - // - // [Erlang]: https://en.wikipedia.org/wiki/BEAM_(Erlang_virtual_machine) - ProfileFrameTypeBeam = ProfileFrameTypeKey.String("beam") - // [Go], - // - // Stability: development - // - // [Go]: https://wikipedia.org/wiki/Go_(programming_language) - ProfileFrameTypeGo = ProfileFrameTypeKey.String("go") - // [Rust] - // - // Stability: development - // - // [Rust]: https://wikipedia.org/wiki/Rust_(programming_language) - ProfileFrameTypeRust = ProfileFrameTypeKey.String("rust") -) - -// Namespace: rpc -const ( - // RPCMessageCompressedSizeKey is the attribute Key conforming to the - // "rpc.message.compressed_size" semantic conventions. It represents the - // compressed size of the message in bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - RPCMessageCompressedSizeKey = attribute.Key("rpc.message.compressed_size") - - // RPCMessageIDKey is the attribute Key conforming to the "rpc.message.id" - // semantic conventions. It MUST be calculated as two different counters - // starting from `1` one for sent messages and one for received message.. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: This way we guarantee that the values will be consistent between - // different implementations. - RPCMessageIDKey = attribute.Key("rpc.message.id") - - // RPCMessageTypeKey is the attribute Key conforming to the "rpc.message.type" - // semantic conventions. It represents the whether this is a received or sent - // message. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - RPCMessageTypeKey = attribute.Key("rpc.message.type") - - // RPCMessageUncompressedSizeKey is the attribute Key conforming to the - // "rpc.message.uncompressed_size" semantic conventions. It represents the - // uncompressed size of the message in bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - RPCMessageUncompressedSizeKey = attribute.Key("rpc.message.uncompressed_size") - - // RPCMethodKey is the attribute Key conforming to the "rpc.method" semantic - // conventions. It represents the fully-qualified logical name of the method - // from the RPC interface perspective. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "com.example.ExampleService/exampleMethod", "EchoService/Echo", - // "_OTHER" - // Note: The method name MAY have unbounded cardinality in edge or error cases. - // - // Some RPC frameworks or libraries provide a fixed set of recognized methods - // for client stubs and server implementations. Instrumentations for such - // frameworks MUST set this attribute to the original method name only - // when the method is recognized by the framework or library. - // - // When the method is not recognized, for example, when the server receives - // a request for a method that is not predefined on the server, or when - // instrumentation is not able to reliably detect if the method is predefined, - // the attribute MUST be set to `_OTHER`. In such cases, tracing - // instrumentations MUST also set `rpc.method_original` attribute to - // the original method value. - // - // If the RPC instrumentation could end up converting valid RPC methods to - // `_OTHER`, then it SHOULD provide a way to configure the list of recognized - // RPC methods. - // - // The `rpc.method` can be different from the name of any implementing - // method/function. - // The `code.function.name` attribute may be used to record the fully-qualified - // method actually executing the call on the server side, or the - // RPC client stub method on the client side. - RPCMethodKey = attribute.Key("rpc.method") - - // RPCMethodOriginalKey is the attribute Key conforming to the - // "rpc.method_original" semantic conventions. It represents the original name - // of the method used by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "com.myservice.EchoService/catchAll", - // "com.myservice.EchoService/unknownMethod", "InvalidMethod" - RPCMethodOriginalKey = attribute.Key("rpc.method_original") - - // RPCResponseStatusCodeKey is the attribute Key conforming to the - // "rpc.response.status_code" semantic conventions. It represents the status - // code of the RPC returned by the RPC server or generated by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "OK", "DEADLINE_EXCEEDED", "-32602" - // Note: Usually it represents an error code, but may also represent partial - // success, warning, or differentiate between various types of successful - // outcomes. - // Semantic conventions for individual RPC frameworks SHOULD document what - // `rpc.response.status_code` means in the context of that system and which - // values are considered to represent errors. - RPCResponseStatusCodeKey = attribute.Key("rpc.response.status_code") - - // RPCSystemNameKey is the attribute Key conforming to the "rpc.system.name" - // semantic conventions. It represents the Remote Procedure Call (RPC) system. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The client and server RPC systems may differ for the same RPC - // interaction. For example, a client may use Apache Dubbo or Connect RPC to - // communicate with a server that uses gRPC since both protocols provide - // compatibility with gRPC. - RPCSystemNameKey = attribute.Key("rpc.system.name") -) - -// RPCMessageCompressedSize returns an attribute KeyValue conforming to the -// "rpc.message.compressed_size" semantic conventions. It represents the -// compressed size of the message in bytes. -func RPCMessageCompressedSize(val int) attribute.KeyValue { - return RPCMessageCompressedSizeKey.Int(val) -} - -// RPCMessageID returns an attribute KeyValue conforming to the "rpc.message.id" -// semantic conventions. It MUST be calculated as two different counters starting -// from `1` one for sent messages and one for received message.. -func RPCMessageID(val int) attribute.KeyValue { - return RPCMessageIDKey.Int(val) -} - -// RPCMessageUncompressedSize returns an attribute KeyValue conforming to the -// "rpc.message.uncompressed_size" semantic conventions. It represents the -// uncompressed size of the message in bytes. -func RPCMessageUncompressedSize(val int) attribute.KeyValue { - return RPCMessageUncompressedSizeKey.Int(val) -} - -// RPCMethod returns an attribute KeyValue conforming to the "rpc.method" -// semantic conventions. It represents the fully-qualified logical name of the -// method from the RPC interface perspective. -func RPCMethod(val string) attribute.KeyValue { - return RPCMethodKey.String(val) -} - -// RPCMethodOriginal returns an attribute KeyValue conforming to the -// "rpc.method_original" semantic conventions. It represents the original name of -// the method used by the client. -func RPCMethodOriginal(val string) attribute.KeyValue { - return RPCMethodOriginalKey.String(val) -} - -// RPCRequestMetadata returns an attribute KeyValue conforming to the -// "rpc.request.metadata" semantic conventions. It represents the RPC request -// metadata, `` being the normalized RPC metadata key (lowercase), the value -// being the metadata values. -func RPCRequestMetadata(key string, val ...string) attribute.KeyValue { - return attribute.StringSlice("rpc.request.metadata."+key, val) -} - -// RPCResponseMetadata returns an attribute KeyValue conforming to the -// "rpc.response.metadata" semantic conventions. It represents the RPC response -// metadata, `` being the normalized RPC metadata key (lowercase), the value -// being the metadata values. -func RPCResponseMetadata(key string, val ...string) attribute.KeyValue { - return attribute.StringSlice("rpc.response.metadata."+key, val) -} - -// RPCResponseStatusCode returns an attribute KeyValue conforming to the -// "rpc.response.status_code" semantic conventions. It represents the status code -// of the RPC returned by the RPC server or generated by the client. -func RPCResponseStatusCode(val string) attribute.KeyValue { - return RPCResponseStatusCodeKey.String(val) -} - -// Enum values for rpc.message.type -var ( - // sent - // Stability: development - RPCMessageTypeSent = RPCMessageTypeKey.String("SENT") - // received - // Stability: development - RPCMessageTypeReceived = RPCMessageTypeKey.String("RECEIVED") -) - -// Enum values for rpc.system.name -var ( - // [gRPC] - // Stability: development - // - // [gRPC]: https://grpc.io/ - RPCSystemNameGRPC = RPCSystemNameKey.String("grpc") - // [Apache Dubbo] - // Stability: development - // - // [Apache Dubbo]: https://dubbo.apache.org/ - RPCSystemNameDubbo = RPCSystemNameKey.String("dubbo") - // [Connect RPC] - // Stability: development - // - // [Connect RPC]: https://connectrpc.com/ - RPCSystemNameConnectrpc = RPCSystemNameKey.String("connectrpc") - // [JSON-RPC] - // Stability: development - // - // [JSON-RPC]: https://www.jsonrpc.org/ - RPCSystemNameJSONRPC = RPCSystemNameKey.String("jsonrpc") -) - -// Namespace: security_rule -const ( - // SecurityRuleCategoryKey is the attribute Key conforming to the - // "security_rule.category" semantic conventions. It represents a categorization - // value keyword used by the entity using the rule for detection of this event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Attempted Information Leak" - SecurityRuleCategoryKey = attribute.Key("security_rule.category") - - // SecurityRuleDescriptionKey is the attribute Key conforming to the - // "security_rule.description" semantic conventions. It represents the - // description of the rule generating the event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Block requests to public DNS over HTTPS / TLS protocols" - SecurityRuleDescriptionKey = attribute.Key("security_rule.description") - - // SecurityRuleLicenseKey is the attribute Key conforming to the - // "security_rule.license" semantic conventions. It represents the name of the - // license under which the rule used to generate this event is made available. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Apache 2.0" - SecurityRuleLicenseKey = attribute.Key("security_rule.license") - - // SecurityRuleNameKey is the attribute Key conforming to the - // "security_rule.name" semantic conventions. It represents the name of the rule - // or signature generating the event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "BLOCK_DNS_over_TLS" - SecurityRuleNameKey = attribute.Key("security_rule.name") - - // SecurityRuleReferenceKey is the attribute Key conforming to the - // "security_rule.reference" semantic conventions. It represents the reference - // URL to additional information about the rule used to generate this event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://en.wikipedia.org/wiki/DNS_over_TLS" - // Note: The URL can point to the vendor’s documentation about the rule. If - // that’s not available, it can also be a link to a more general page - // describing this type of alert. - SecurityRuleReferenceKey = attribute.Key("security_rule.reference") - - // SecurityRuleRulesetNameKey is the attribute Key conforming to the - // "security_rule.ruleset.name" semantic conventions. It represents the name of - // the ruleset, policy, group, or parent category in which the rule used to - // generate this event is a member. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Standard_Protocol_Filters" - SecurityRuleRulesetNameKey = attribute.Key("security_rule.ruleset.name") - - // SecurityRuleUUIDKey is the attribute Key conforming to the - // "security_rule.uuid" semantic conventions. It represents a rule ID that is - // unique within the scope of a set or group of agents, observers, or other - // entities using the rule for detection of this event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "550e8400-e29b-41d4-a716-446655440000", "1100110011" - SecurityRuleUUIDKey = attribute.Key("security_rule.uuid") - - // SecurityRuleVersionKey is the attribute Key conforming to the - // "security_rule.version" semantic conventions. It represents the version / - // revision of the rule being used for analysis. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1.0.0" - SecurityRuleVersionKey = attribute.Key("security_rule.version") -) - -// SecurityRuleCategory returns an attribute KeyValue conforming to the -// "security_rule.category" semantic conventions. It represents a categorization -// value keyword used by the entity using the rule for detection of this event. -func SecurityRuleCategory(val string) attribute.KeyValue { - return SecurityRuleCategoryKey.String(val) -} - -// SecurityRuleDescription returns an attribute KeyValue conforming to the -// "security_rule.description" semantic conventions. It represents the -// description of the rule generating the event. -func SecurityRuleDescription(val string) attribute.KeyValue { - return SecurityRuleDescriptionKey.String(val) -} - -// SecurityRuleLicense returns an attribute KeyValue conforming to the -// "security_rule.license" semantic conventions. It represents the name of the -// license under which the rule used to generate this event is made available. -func SecurityRuleLicense(val string) attribute.KeyValue { - return SecurityRuleLicenseKey.String(val) -} - -// SecurityRuleName returns an attribute KeyValue conforming to the -// "security_rule.name" semantic conventions. It represents the name of the rule -// or signature generating the event. -func SecurityRuleName(val string) attribute.KeyValue { - return SecurityRuleNameKey.String(val) -} - -// SecurityRuleReference returns an attribute KeyValue conforming to the -// "security_rule.reference" semantic conventions. It represents the reference -// URL to additional information about the rule used to generate this event. -func SecurityRuleReference(val string) attribute.KeyValue { - return SecurityRuleReferenceKey.String(val) -} - -// SecurityRuleRulesetName returns an attribute KeyValue conforming to the -// "security_rule.ruleset.name" semantic conventions. It represents the name of -// the ruleset, policy, group, or parent category in which the rule used to -// generate this event is a member. -func SecurityRuleRulesetName(val string) attribute.KeyValue { - return SecurityRuleRulesetNameKey.String(val) -} - -// SecurityRuleUUID returns an attribute KeyValue conforming to the -// "security_rule.uuid" semantic conventions. It represents a rule ID that is -// unique within the scope of a set or group of agents, observers, or other -// entities using the rule for detection of this event. -func SecurityRuleUUID(val string) attribute.KeyValue { - return SecurityRuleUUIDKey.String(val) -} - -// SecurityRuleVersion returns an attribute KeyValue conforming to the -// "security_rule.version" semantic conventions. It represents the version / -// revision of the rule being used for analysis. -func SecurityRuleVersion(val string) attribute.KeyValue { - return SecurityRuleVersionKey.String(val) -} - -// Namespace: server -const ( - // ServerAddressKey is the attribute Key conforming to the "server.address" - // semantic conventions. It represents the server domain name if available - // without reverse DNS lookup; otherwise, IP address or Unix domain socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "example.com", "10.1.2.80", "/tmp/my.sock" - // Note: When observed from the client side, and when communicating through an - // intermediary, `server.address` SHOULD represent the server address behind any - // intermediaries, for example proxies, if it's available. - ServerAddressKey = attribute.Key("server.address") - - // ServerPortKey is the attribute Key conforming to the "server.port" semantic - // conventions. It represents the server port number. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 80, 8080, 443 - // Note: When observed from the client side, and when communicating through an - // intermediary, `server.port` SHOULD represent the server port behind any - // intermediaries, for example proxies, if it's available. - ServerPortKey = attribute.Key("server.port") -) - -// ServerAddress returns an attribute KeyValue conforming to the "server.address" -// semantic conventions. It represents the server domain name if available -// without reverse DNS lookup; otherwise, IP address or Unix domain socket name. -func ServerAddress(val string) attribute.KeyValue { - return ServerAddressKey.String(val) -} - -// ServerPort returns an attribute KeyValue conforming to the "server.port" -// semantic conventions. It represents the server port number. -func ServerPort(val int) attribute.KeyValue { - return ServerPortKey.Int(val) -} - -// Namespace: service -const ( - // ServiceInstanceIDKey is the attribute Key conforming to the - // "service.instance.id" semantic conventions. It represents the string ID of - // the service instance. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "627cc493-f310-47de-96bd-71410b7dec09" - // Note: MUST be unique for each instance of the same - // `service.namespace,service.name` pair (in other words - // `service.namespace,service.name,service.instance.id` triplet MUST be globally - // unique). The ID helps to - // distinguish instances of the same service that exist at the same time (e.g. - // instances of a horizontally scaled - // service). - // - // Implementations, such as SDKs, are recommended to generate a random Version 1 - // or Version 4 [RFC - // 4122] UUID, but are free to use an inherent unique ID as - // the source of - // this value if stability is desirable. In that case, the ID SHOULD be used as - // source of a UUID Version 5 and - // SHOULD use the following UUID as the namespace: - // `4d63009a-8d0f-11ee-aad7-4c796ed8e320`. - // - // UUIDs are typically recommended, as only an opaque value for the purposes of - // identifying a service instance is - // needed. Similar to what can be seen in the man page for the - // [`/etc/machine-id`] file, the underlying - // data, such as pod name and namespace should be treated as confidential, being - // the user's choice to expose it - // or not via another resource attribute. - // - // For applications running behind an application server (like unicorn), we do - // not recommend using one identifier - // for all processes participating in the application. Instead, it's recommended - // each division (e.g. a worker - // thread in unicorn) to have its own instance.id. - // - // It's not recommended for a Collector to set `service.instance.id` if it can't - // unambiguously determine the - // service instance that is generating that telemetry. For instance, creating an - // UUID based on `pod.name` will - // likely be wrong, as the Collector might not know from which container within - // that pod the telemetry originated. - // However, Collectors can set the `service.instance.id` if they can - // unambiguously determine the service instance - // for that telemetry. This is typically the case for scraping receivers, as - // they know the target address and - // port. - // - // [RFC - // 4122]: https://www.ietf.org/rfc/rfc4122.txt - // [`/etc/machine-id`]: https://www.freedesktop.org/software/systemd/man/latest/machine-id.html - ServiceInstanceIDKey = attribute.Key("service.instance.id") - - // ServiceNameKey is the attribute Key conforming to the "service.name" semantic - // conventions. It represents the logical name of the service. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "shoppingcart" - // Note: MUST be the same for all instances of horizontally scaled services. If - // the value was not specified, SDKs MUST fallback to `unknown_service:` - // concatenated with [`process.executable.name`], e.g. `unknown_service:bash`. - // If `process.executable.name` is not available, the value MUST be set to - // `unknown_service`. - // - // [`process.executable.name`]: process.md - ServiceNameKey = attribute.Key("service.name") - - // ServiceNamespaceKey is the attribute Key conforming to the - // "service.namespace" semantic conventions. It represents a namespace for - // `service.name`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Shop" - // Note: A string value having a meaning that helps to distinguish a group of - // services, for example the team name that owns a group of services. - // `service.name` is expected to be unique within the same namespace. If - // `service.namespace` is not specified in the Resource then `service.name` is - // expected to be unique for all services that have no explicit namespace - // defined (so the empty/unspecified namespace is simply one more valid - // namespace). Zero-length namespace string is assumed equal to unspecified - // namespace. - ServiceNamespaceKey = attribute.Key("service.namespace") - - // ServicePeerNameKey is the attribute Key conforming to the "service.peer.name" - // semantic conventions. It represents the logical name of the service on the - // other side of the connection. SHOULD be equal to the actual [`service.name`] - // resource attribute of the remote service if any. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "shoppingcart" - // - // [`service.name`]: /docs/resource/README.md#service - ServicePeerNameKey = attribute.Key("service.peer.name") - - // ServicePeerNamespaceKey is the attribute Key conforming to the - // "service.peer.namespace" semantic conventions. It represents the logical - // namespace of the service on the other side of the connection. SHOULD be equal - // to the actual [`service.namespace`] resource attribute of the remote service - // if any. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Shop" - // - // [`service.namespace`]: /docs/resource/README.md#service - ServicePeerNamespaceKey = attribute.Key("service.peer.namespace") - - // ServiceVersionKey is the attribute Key conforming to the "service.version" - // semantic conventions. It represents the version string of the service - // component. The format is not defined by these conventions. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "2.0.0", "a01dbef8a" - ServiceVersionKey = attribute.Key("service.version") -) - -// ServiceInstanceID returns an attribute KeyValue conforming to the -// "service.instance.id" semantic conventions. It represents the string ID of the -// service instance. -func ServiceInstanceID(val string) attribute.KeyValue { - return ServiceInstanceIDKey.String(val) -} - -// ServiceName returns an attribute KeyValue conforming to the "service.name" -// semantic conventions. It represents the logical name of the service. -func ServiceName(val string) attribute.KeyValue { - return ServiceNameKey.String(val) -} - -// ServiceNamespace returns an attribute KeyValue conforming to the -// "service.namespace" semantic conventions. It represents a namespace for -// `service.name`. -func ServiceNamespace(val string) attribute.KeyValue { - return ServiceNamespaceKey.String(val) -} - -// ServicePeerName returns an attribute KeyValue conforming to the -// "service.peer.name" semantic conventions. It represents the logical name of -// the service on the other side of the connection. SHOULD be equal to the actual -// [`service.name`] resource attribute of the remote service if any. -// -// [`service.name`]: /docs/resource/README.md#service -func ServicePeerName(val string) attribute.KeyValue { - return ServicePeerNameKey.String(val) -} - -// ServicePeerNamespace returns an attribute KeyValue conforming to the -// "service.peer.namespace" semantic conventions. It represents the logical -// namespace of the service on the other side of the connection. SHOULD be equal -// to the actual [`service.namespace`] resource attribute of the remote service -// if any. -// -// [`service.namespace`]: /docs/resource/README.md#service -func ServicePeerNamespace(val string) attribute.KeyValue { - return ServicePeerNamespaceKey.String(val) -} - -// ServiceVersion returns an attribute KeyValue conforming to the -// "service.version" semantic conventions. It represents the version string of -// the service component. The format is not defined by these conventions. -func ServiceVersion(val string) attribute.KeyValue { - return ServiceVersionKey.String(val) -} - -// Namespace: session -const ( - // SessionIDKey is the attribute Key conforming to the "session.id" semantic - // conventions. It represents a unique id to identify a session. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 00112233-4455-6677-8899-aabbccddeeff - SessionIDKey = attribute.Key("session.id") - - // SessionPreviousIDKey is the attribute Key conforming to the - // "session.previous_id" semantic conventions. It represents the previous - // `session.id` for this user, when known. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 00112233-4455-6677-8899-aabbccddeeff - SessionPreviousIDKey = attribute.Key("session.previous_id") -) - -// SessionID returns an attribute KeyValue conforming to the "session.id" -// semantic conventions. It represents a unique id to identify a session. -func SessionID(val string) attribute.KeyValue { - return SessionIDKey.String(val) -} - -// SessionPreviousID returns an attribute KeyValue conforming to the -// "session.previous_id" semantic conventions. It represents the previous -// `session.id` for this user, when known. -func SessionPreviousID(val string) attribute.KeyValue { - return SessionPreviousIDKey.String(val) -} - -// Namespace: signalr -const ( - // SignalRConnectionStatusKey is the attribute Key conforming to the - // "signalr.connection.status" semantic conventions. It represents the signalR - // HTTP connection closure status. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "app_shutdown", "timeout" - SignalRConnectionStatusKey = attribute.Key("signalr.connection.status") - - // SignalRTransportKey is the attribute Key conforming to the - // "signalr.transport" semantic conventions. It represents the - // [SignalR transport type]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "web_sockets", "long_polling" - // - // [SignalR transport type]: https://github.com/dotnet/aspnetcore/blob/main/src/SignalR/docs/specs/TransportProtocols.md - SignalRTransportKey = attribute.Key("signalr.transport") -) - -// Enum values for signalr.connection.status -var ( - // The connection was closed normally. - // Stability: stable - SignalRConnectionStatusNormalClosure = SignalRConnectionStatusKey.String("normal_closure") - // The connection was closed due to a timeout. - // Stability: stable - SignalRConnectionStatusTimeout = SignalRConnectionStatusKey.String("timeout") - // The connection was closed because the app is shutting down. - // Stability: stable - SignalRConnectionStatusAppShutdown = SignalRConnectionStatusKey.String("app_shutdown") -) - -// Enum values for signalr.transport -var ( - // ServerSentEvents protocol - // Stability: stable - SignalRTransportServerSentEvents = SignalRTransportKey.String("server_sent_events") - // LongPolling protocol - // Stability: stable - SignalRTransportLongPolling = SignalRTransportKey.String("long_polling") - // WebSockets protocol - // Stability: stable - SignalRTransportWebSockets = SignalRTransportKey.String("web_sockets") -) - -// Namespace: source -const ( - // SourceAddressKey is the attribute Key conforming to the "source.address" - // semantic conventions. It represents the source address - domain name if - // available without reverse DNS lookup; otherwise, IP address or Unix domain - // socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "source.example.com", "10.1.2.80", "/tmp/my.sock" - // Note: When observed from the destination side, and when communicating through - // an intermediary, `source.address` SHOULD represent the source address behind - // any intermediaries, for example proxies, if it's available. - SourceAddressKey = attribute.Key("source.address") - - // SourcePortKey is the attribute Key conforming to the "source.port" semantic - // conventions. It represents the source port number. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 3389, 2888 - SourcePortKey = attribute.Key("source.port") -) - -// SourceAddress returns an attribute KeyValue conforming to the "source.address" -// semantic conventions. It represents the source address - domain name if -// available without reverse DNS lookup; otherwise, IP address or Unix domain -// socket name. -func SourceAddress(val string) attribute.KeyValue { - return SourceAddressKey.String(val) -} - -// SourcePort returns an attribute KeyValue conforming to the "source.port" -// semantic conventions. It represents the source port number. -func SourcePort(val int) attribute.KeyValue { - return SourcePortKey.Int(val) -} - -// Namespace: system -const ( - // SystemDeviceKey is the attribute Key conforming to the "system.device" - // semantic conventions. It represents the device identifier. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "(identifier)" - SystemDeviceKey = attribute.Key("system.device") - - // SystemFilesystemModeKey is the attribute Key conforming to the - // "system.filesystem.mode" semantic conventions. It represents the filesystem - // mode. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "rw, ro" - SystemFilesystemModeKey = attribute.Key("system.filesystem.mode") - - // SystemFilesystemMountpointKey is the attribute Key conforming to the - // "system.filesystem.mountpoint" semantic conventions. It represents the - // filesystem mount path. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/mnt/data" - SystemFilesystemMountpointKey = attribute.Key("system.filesystem.mountpoint") - - // SystemFilesystemStateKey is the attribute Key conforming to the - // "system.filesystem.state" semantic conventions. It represents the filesystem - // state. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "used" - SystemFilesystemStateKey = attribute.Key("system.filesystem.state") - - // SystemFilesystemTypeKey is the attribute Key conforming to the - // "system.filesystem.type" semantic conventions. It represents the filesystem - // type. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ext4" - SystemFilesystemTypeKey = attribute.Key("system.filesystem.type") - - // SystemMemoryLinuxSlabStateKey is the attribute Key conforming to the - // "system.memory.linux.slab.state" semantic conventions. It represents the - // Linux Slab memory state. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "reclaimable", "unreclaimable" - SystemMemoryLinuxSlabStateKey = attribute.Key("system.memory.linux.slab.state") - - // SystemMemoryStateKey is the attribute Key conforming to the - // "system.memory.state" semantic conventions. It represents the memory state. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "free", "cached" - SystemMemoryStateKey = attribute.Key("system.memory.state") - - // SystemPagingDirectionKey is the attribute Key conforming to the - // "system.paging.direction" semantic conventions. It represents the paging - // access direction. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "in" - SystemPagingDirectionKey = attribute.Key("system.paging.direction") - - // SystemPagingFaultTypeKey is the attribute Key conforming to the - // "system.paging.fault.type" semantic conventions. It represents the paging - // fault type. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "minor" - SystemPagingFaultTypeKey = attribute.Key("system.paging.fault.type") - - // SystemPagingStateKey is the attribute Key conforming to the - // "system.paging.state" semantic conventions. It represents the memory paging - // state. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "free" - SystemPagingStateKey = attribute.Key("system.paging.state") -) - -// SystemDevice returns an attribute KeyValue conforming to the "system.device" -// semantic conventions. It represents the device identifier. -func SystemDevice(val string) attribute.KeyValue { - return SystemDeviceKey.String(val) -} - -// SystemFilesystemMode returns an attribute KeyValue conforming to the -// "system.filesystem.mode" semantic conventions. It represents the filesystem -// mode. -func SystemFilesystemMode(val string) attribute.KeyValue { - return SystemFilesystemModeKey.String(val) -} - -// SystemFilesystemMountpoint returns an attribute KeyValue conforming to the -// "system.filesystem.mountpoint" semantic conventions. It represents the -// filesystem mount path. -func SystemFilesystemMountpoint(val string) attribute.KeyValue { - return SystemFilesystemMountpointKey.String(val) -} - -// Enum values for system.filesystem.state -var ( - // used - // Stability: development - SystemFilesystemStateUsed = SystemFilesystemStateKey.String("used") - // free - // Stability: development - SystemFilesystemStateFree = SystemFilesystemStateKey.String("free") - // reserved - // Stability: development - SystemFilesystemStateReserved = SystemFilesystemStateKey.String("reserved") -) - -// Enum values for system.filesystem.type -var ( - // fat32 - // Stability: development - SystemFilesystemTypeFat32 = SystemFilesystemTypeKey.String("fat32") - // exfat - // Stability: development - SystemFilesystemTypeExfat = SystemFilesystemTypeKey.String("exfat") - // ntfs - // Stability: development - SystemFilesystemTypeNtfs = SystemFilesystemTypeKey.String("ntfs") - // refs - // Stability: development - SystemFilesystemTypeRefs = SystemFilesystemTypeKey.String("refs") - // hfsplus - // Stability: development - SystemFilesystemTypeHfsplus = SystemFilesystemTypeKey.String("hfsplus") - // ext4 - // Stability: development - SystemFilesystemTypeExt4 = SystemFilesystemTypeKey.String("ext4") -) - -// Enum values for system.memory.linux.slab.state -var ( - // reclaimable - // Stability: development - SystemMemoryLinuxSlabStateReclaimable = SystemMemoryLinuxSlabStateKey.String("reclaimable") - // unreclaimable - // Stability: development - SystemMemoryLinuxSlabStateUnreclaimable = SystemMemoryLinuxSlabStateKey.String("unreclaimable") -) - -// Enum values for system.memory.state -var ( - // Actual used virtual memory in bytes. - // Stability: development - SystemMemoryStateUsed = SystemMemoryStateKey.String("used") - // free - // Stability: development - SystemMemoryStateFree = SystemMemoryStateKey.String("free") - // buffers - // Stability: development - SystemMemoryStateBuffers = SystemMemoryStateKey.String("buffers") - // cached - // Stability: development - SystemMemoryStateCached = SystemMemoryStateKey.String("cached") -) - -// Enum values for system.paging.direction -var ( - // in - // Stability: development - SystemPagingDirectionIn = SystemPagingDirectionKey.String("in") - // out - // Stability: development - SystemPagingDirectionOut = SystemPagingDirectionKey.String("out") -) - -// Enum values for system.paging.fault.type -var ( - // major - // Stability: development - SystemPagingFaultTypeMajor = SystemPagingFaultTypeKey.String("major") - // minor - // Stability: development - SystemPagingFaultTypeMinor = SystemPagingFaultTypeKey.String("minor") -) - -// Enum values for system.paging.state -var ( - // used - // Stability: development - SystemPagingStateUsed = SystemPagingStateKey.String("used") - // free - // Stability: development - SystemPagingStateFree = SystemPagingStateKey.String("free") -) - -// Namespace: telemetry -const ( - // TelemetryDistroNameKey is the attribute Key conforming to the - // "telemetry.distro.name" semantic conventions. It represents the name of the - // auto instrumentation agent or distribution, if used. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "parts-unlimited-java" - // Note: Official auto instrumentation agents and distributions SHOULD set the - // `telemetry.distro.name` attribute to - // a string starting with `opentelemetry-`, e.g. - // `opentelemetry-java-instrumentation`. - TelemetryDistroNameKey = attribute.Key("telemetry.distro.name") - - // TelemetryDistroVersionKey is the attribute Key conforming to the - // "telemetry.distro.version" semantic conventions. It represents the version - // string of the auto instrumentation agent or distribution, if used. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1.2.3" - TelemetryDistroVersionKey = attribute.Key("telemetry.distro.version") - - // TelemetrySDKLanguageKey is the attribute Key conforming to the - // "telemetry.sdk.language" semantic conventions. It represents the language of - // the telemetry SDK. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: - TelemetrySDKLanguageKey = attribute.Key("telemetry.sdk.language") - - // TelemetrySDKNameKey is the attribute Key conforming to the - // "telemetry.sdk.name" semantic conventions. It represents the name of the - // telemetry SDK as defined above. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "opentelemetry" - // Note: The OpenTelemetry SDK MUST set the `telemetry.sdk.name` attribute to - // `opentelemetry`. - // If another SDK, like a fork or a vendor-provided implementation, is used, - // this SDK MUST set the - // `telemetry.sdk.name` attribute to the fully-qualified class or module name of - // this SDK's main entry point - // or another suitable identifier depending on the language. - // The identifier `opentelemetry` is reserved and MUST NOT be used in this case. - // All custom identifiers SHOULD be stable across different versions of an - // implementation. - TelemetrySDKNameKey = attribute.Key("telemetry.sdk.name") - - // TelemetrySDKVersionKey is the attribute Key conforming to the - // "telemetry.sdk.version" semantic conventions. It represents the version - // string of the telemetry SDK. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "1.2.3" - TelemetrySDKVersionKey = attribute.Key("telemetry.sdk.version") -) - -// TelemetryDistroName returns an attribute KeyValue conforming to the -// "telemetry.distro.name" semantic conventions. It represents the name of the -// auto instrumentation agent or distribution, if used. -func TelemetryDistroName(val string) attribute.KeyValue { - return TelemetryDistroNameKey.String(val) -} - -// TelemetryDistroVersion returns an attribute KeyValue conforming to the -// "telemetry.distro.version" semantic conventions. It represents the version -// string of the auto instrumentation agent or distribution, if used. -func TelemetryDistroVersion(val string) attribute.KeyValue { - return TelemetryDistroVersionKey.String(val) -} - -// TelemetrySDKName returns an attribute KeyValue conforming to the -// "telemetry.sdk.name" semantic conventions. It represents the name of the -// telemetry SDK as defined above. -func TelemetrySDKName(val string) attribute.KeyValue { - return TelemetrySDKNameKey.String(val) -} - -// TelemetrySDKVersion returns an attribute KeyValue conforming to the -// "telemetry.sdk.version" semantic conventions. It represents the version string -// of the telemetry SDK. -func TelemetrySDKVersion(val string) attribute.KeyValue { - return TelemetrySDKVersionKey.String(val) -} - -// Enum values for telemetry.sdk.language -var ( - // cpp - // Stability: stable - TelemetrySDKLanguageCPP = TelemetrySDKLanguageKey.String("cpp") - // dotnet - // Stability: stable - TelemetrySDKLanguageDotnet = TelemetrySDKLanguageKey.String("dotnet") - // erlang - // Stability: stable - TelemetrySDKLanguageErlang = TelemetrySDKLanguageKey.String("erlang") - // go - // Stability: stable - TelemetrySDKLanguageGo = TelemetrySDKLanguageKey.String("go") - // java - // Stability: stable - TelemetrySDKLanguageJava = TelemetrySDKLanguageKey.String("java") - // nodejs - // Stability: stable - TelemetrySDKLanguageNodejs = TelemetrySDKLanguageKey.String("nodejs") - // php - // Stability: stable - TelemetrySDKLanguagePHP = TelemetrySDKLanguageKey.String("php") - // python - // Stability: stable - TelemetrySDKLanguagePython = TelemetrySDKLanguageKey.String("python") - // ruby - // Stability: stable - TelemetrySDKLanguageRuby = TelemetrySDKLanguageKey.String("ruby") - // rust - // Stability: stable - TelemetrySDKLanguageRust = TelemetrySDKLanguageKey.String("rust") - // swift - // Stability: stable - TelemetrySDKLanguageSwift = TelemetrySDKLanguageKey.String("swift") - // webjs - // Stability: stable - TelemetrySDKLanguageWebJS = TelemetrySDKLanguageKey.String("webjs") -) - -// Namespace: test -const ( - // TestCaseNameKey is the attribute Key conforming to the "test.case.name" - // semantic conventions. It represents the fully qualified human readable name - // of the [test case]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "org.example.TestCase1.test1", "example/tests/TestCase1.test1", - // "ExampleTestCase1_test1" - // - // [test case]: https://wikipedia.org/wiki/Test_case - TestCaseNameKey = attribute.Key("test.case.name") - - // TestCaseResultStatusKey is the attribute Key conforming to the - // "test.case.result.status" semantic conventions. It represents the status of - // the actual test case result from test execution. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "pass", "fail" - TestCaseResultStatusKey = attribute.Key("test.case.result.status") - - // TestSuiteNameKey is the attribute Key conforming to the "test.suite.name" - // semantic conventions. It represents the human readable name of a [test suite] - // . - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "TestSuite1" - // - // [test suite]: https://wikipedia.org/wiki/Test_suite - TestSuiteNameKey = attribute.Key("test.suite.name") - - // TestSuiteRunStatusKey is the attribute Key conforming to the - // "test.suite.run.status" semantic conventions. It represents the status of the - // test suite run. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "success", "failure", "skipped", "aborted", "timed_out", - // "in_progress" - TestSuiteRunStatusKey = attribute.Key("test.suite.run.status") -) - -// TestCaseName returns an attribute KeyValue conforming to the "test.case.name" -// semantic conventions. It represents the fully qualified human readable name of -// the [test case]. -// -// [test case]: https://wikipedia.org/wiki/Test_case -func TestCaseName(val string) attribute.KeyValue { - return TestCaseNameKey.String(val) -} - -// TestSuiteName returns an attribute KeyValue conforming to the -// "test.suite.name" semantic conventions. It represents the human readable name -// of a [test suite]. -// -// [test suite]: https://wikipedia.org/wiki/Test_suite -func TestSuiteName(val string) attribute.KeyValue { - return TestSuiteNameKey.String(val) -} - -// Enum values for test.case.result.status -var ( - // pass - // Stability: development - TestCaseResultStatusPass = TestCaseResultStatusKey.String("pass") - // fail - // Stability: development - TestCaseResultStatusFail = TestCaseResultStatusKey.String("fail") -) - -// Enum values for test.suite.run.status -var ( - // success - // Stability: development - TestSuiteRunStatusSuccess = TestSuiteRunStatusKey.String("success") - // failure - // Stability: development - TestSuiteRunStatusFailure = TestSuiteRunStatusKey.String("failure") - // skipped - // Stability: development - TestSuiteRunStatusSkipped = TestSuiteRunStatusKey.String("skipped") - // aborted - // Stability: development - TestSuiteRunStatusAborted = TestSuiteRunStatusKey.String("aborted") - // timed_out - // Stability: development - TestSuiteRunStatusTimedOut = TestSuiteRunStatusKey.String("timed_out") - // in_progress - // Stability: development - TestSuiteRunStatusInProgress = TestSuiteRunStatusKey.String("in_progress") -) - -// Namespace: thread -const ( - // ThreadIDKey is the attribute Key conforming to the "thread.id" semantic - // conventions. It represents the current "managed" thread ID (as opposed to OS - // thread ID). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Note: - // Examples of where the value can be extracted from: - // - // | Language or platform | Source | - // | --- | --- | - // | JVM | `Thread.currentThread().threadId()` | - // | .NET | `Thread.CurrentThread.ManagedThreadId` | - // | Python | `threading.current_thread().ident` | - // | Ruby | `Thread.current.object_id` | - // | C++ | `std::this_thread::get_id()` | - // | Erlang | `erlang:self()` | - ThreadIDKey = attribute.Key("thread.id") - - // ThreadNameKey is the attribute Key conforming to the "thread.name" semantic - // conventions. It represents the current thread name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: main - // Note: - // Examples of where the value can be extracted from: - // - // | Language or platform | Source | - // | --- | --- | - // | JVM | `Thread.currentThread().getName()` | - // | .NET | `Thread.CurrentThread.Name` | - // | Python | `threading.current_thread().name` | - // | Ruby | `Thread.current.name` | - // | Erlang | `erlang:process_info(self(), registered_name)` | - ThreadNameKey = attribute.Key("thread.name") -) - -// ThreadID returns an attribute KeyValue conforming to the "thread.id" semantic -// conventions. It represents the current "managed" thread ID (as opposed to OS -// thread ID). -func ThreadID(val int) attribute.KeyValue { - return ThreadIDKey.Int(val) -} - -// ThreadName returns an attribute KeyValue conforming to the "thread.name" -// semantic conventions. It represents the current thread name. -func ThreadName(val string) attribute.KeyValue { - return ThreadNameKey.String(val) -} - -// Namespace: tls -const ( - // TLSCipherKey is the attribute Key conforming to the "tls.cipher" semantic - // conventions. It represents the string indicating the [cipher] used during the - // current connection. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "TLS_RSA_WITH_3DES_EDE_CBC_SHA", - // "TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA256" - // Note: The values allowed for `tls.cipher` MUST be one of the `Descriptions` - // of the [registered TLS Cipher Suits]. - // - // [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5 - // [registered TLS Cipher Suits]: https://www.iana.org/assignments/tls-parameters/tls-parameters.xhtml#table-tls-parameters-4 - TLSCipherKey = attribute.Key("tls.cipher") - - // TLSClientCertificateKey is the attribute Key conforming to the - // "tls.client.certificate" semantic conventions. It represents the PEM-encoded - // stand-alone certificate offered by the client. This is usually - // mutually-exclusive of `client.certificate_chain` since this value also exists - // in that list. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MII..." - TLSClientCertificateKey = attribute.Key("tls.client.certificate") - - // TLSClientCertificateChainKey is the attribute Key conforming to the - // "tls.client.certificate_chain" semantic conventions. It represents the array - // of PEM-encoded certificates that make up the certificate chain offered by the - // client. This is usually mutually-exclusive of `client.certificate` since that - // value should be the first certificate in the chain. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MII...", "MI..." - TLSClientCertificateChainKey = attribute.Key("tls.client.certificate_chain") - - // TLSClientHashMd5Key is the attribute Key conforming to the - // "tls.client.hash.md5" semantic conventions. It represents the certificate - // fingerprint using the MD5 digest of DER-encoded version of certificate - // offered by the client. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC" - TLSClientHashMd5Key = attribute.Key("tls.client.hash.md5") - - // TLSClientHashSha1Key is the attribute Key conforming to the - // "tls.client.hash.sha1" semantic conventions. It represents the certificate - // fingerprint using the SHA1 digest of DER-encoded version of certificate - // offered by the client. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A" - TLSClientHashSha1Key = attribute.Key("tls.client.hash.sha1") - - // TLSClientHashSha256Key is the attribute Key conforming to the - // "tls.client.hash.sha256" semantic conventions. It represents the certificate - // fingerprint using the SHA256 digest of DER-encoded version of certificate - // offered by the client. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0" - TLSClientHashSha256Key = attribute.Key("tls.client.hash.sha256") - - // TLSClientIssuerKey is the attribute Key conforming to the "tls.client.issuer" - // semantic conventions. It represents the distinguished name of [subject] of - // the issuer of the x.509 certificate presented by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com" - // - // [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 - TLSClientIssuerKey = attribute.Key("tls.client.issuer") - - // TLSClientJa3Key is the attribute Key conforming to the "tls.client.ja3" - // semantic conventions. It represents a hash that identifies clients based on - // how they perform an SSL/TLS handshake. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "d4e5b18d6b55c71272893221c96ba240" - TLSClientJa3Key = attribute.Key("tls.client.ja3") - - // TLSClientNotAfterKey is the attribute Key conforming to the - // "tls.client.not_after" semantic conventions. It represents the date/Time - // indicating when client certificate is no longer considered valid. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T00:00:00.000Z" - TLSClientNotAfterKey = attribute.Key("tls.client.not_after") - - // TLSClientNotBeforeKey is the attribute Key conforming to the - // "tls.client.not_before" semantic conventions. It represents the date/Time - // indicating when client certificate is first considered valid. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1970-01-01T00:00:00.000Z" - TLSClientNotBeforeKey = attribute.Key("tls.client.not_before") - - // TLSClientSubjectKey is the attribute Key conforming to the - // "tls.client.subject" semantic conventions. It represents the distinguished - // name of subject of the x.509 certificate presented by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CN=myclient, OU=Documentation Team, DC=example, DC=com" - TLSClientSubjectKey = attribute.Key("tls.client.subject") - - // TLSClientSupportedCiphersKey is the attribute Key conforming to the - // "tls.client.supported_ciphers" semantic conventions. It represents the array - // of ciphers offered by the client during the client hello. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384", - // "TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384" - TLSClientSupportedCiphersKey = attribute.Key("tls.client.supported_ciphers") - - // TLSCurveKey is the attribute Key conforming to the "tls.curve" semantic - // conventions. It represents the string indicating the curve used for the given - // cipher, when applicable. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "secp256r1" - TLSCurveKey = attribute.Key("tls.curve") - - // TLSEstablishedKey is the attribute Key conforming to the "tls.established" - // semantic conventions. It represents the boolean flag indicating if the TLS - // negotiation was successful and transitioned to an encrypted tunnel. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: true - TLSEstablishedKey = attribute.Key("tls.established") - - // TLSNextProtocolKey is the attribute Key conforming to the "tls.next_protocol" - // semantic conventions. It represents the string indicating the protocol being - // tunneled. Per the values in the [IANA registry], this string should be lower - // case. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "http/1.1" - // - // [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids - TLSNextProtocolKey = attribute.Key("tls.next_protocol") - - // TLSProtocolNameKey is the attribute Key conforming to the "tls.protocol.name" - // semantic conventions. It represents the normalized lowercase protocol name - // parsed from original string of the negotiated [SSL/TLS protocol version]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values - TLSProtocolNameKey = attribute.Key("tls.protocol.name") - - // TLSProtocolVersionKey is the attribute Key conforming to the - // "tls.protocol.version" semantic conventions. It represents the numeric part - // of the version parsed from the original string of the negotiated - // [SSL/TLS protocol version]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1.2", "3" - // - // [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values - TLSProtocolVersionKey = attribute.Key("tls.protocol.version") - - // TLSResumedKey is the attribute Key conforming to the "tls.resumed" semantic - // conventions. It represents the boolean flag indicating if this TLS connection - // was resumed from an existing TLS negotiation. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: true - TLSResumedKey = attribute.Key("tls.resumed") - - // TLSServerCertificateKey is the attribute Key conforming to the - // "tls.server.certificate" semantic conventions. It represents the PEM-encoded - // stand-alone certificate offered by the server. This is usually - // mutually-exclusive of `server.certificate_chain` since this value also exists - // in that list. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MII..." - TLSServerCertificateKey = attribute.Key("tls.server.certificate") - - // TLSServerCertificateChainKey is the attribute Key conforming to the - // "tls.server.certificate_chain" semantic conventions. It represents the array - // of PEM-encoded certificates that make up the certificate chain offered by the - // server. This is usually mutually-exclusive of `server.certificate` since that - // value should be the first certificate in the chain. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MII...", "MI..." - TLSServerCertificateChainKey = attribute.Key("tls.server.certificate_chain") - - // TLSServerHashMd5Key is the attribute Key conforming to the - // "tls.server.hash.md5" semantic conventions. It represents the certificate - // fingerprint using the MD5 digest of DER-encoded version of certificate - // offered by the server. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC" - TLSServerHashMd5Key = attribute.Key("tls.server.hash.md5") - - // TLSServerHashSha1Key is the attribute Key conforming to the - // "tls.server.hash.sha1" semantic conventions. It represents the certificate - // fingerprint using the SHA1 digest of DER-encoded version of certificate - // offered by the server. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A" - TLSServerHashSha1Key = attribute.Key("tls.server.hash.sha1") - - // TLSServerHashSha256Key is the attribute Key conforming to the - // "tls.server.hash.sha256" semantic conventions. It represents the certificate - // fingerprint using the SHA256 digest of DER-encoded version of certificate - // offered by the server. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0" - TLSServerHashSha256Key = attribute.Key("tls.server.hash.sha256") - - // TLSServerIssuerKey is the attribute Key conforming to the "tls.server.issuer" - // semantic conventions. It represents the distinguished name of [subject] of - // the issuer of the x.509 certificate presented by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com" - // - // [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 - TLSServerIssuerKey = attribute.Key("tls.server.issuer") - - // TLSServerJa3sKey is the attribute Key conforming to the "tls.server.ja3s" - // semantic conventions. It represents a hash that identifies servers based on - // how they perform an SSL/TLS handshake. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "d4e5b18d6b55c71272893221c96ba240" - TLSServerJa3sKey = attribute.Key("tls.server.ja3s") - - // TLSServerNotAfterKey is the attribute Key conforming to the - // "tls.server.not_after" semantic conventions. It represents the date/Time - // indicating when server certificate is no longer considered valid. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T00:00:00.000Z" - TLSServerNotAfterKey = attribute.Key("tls.server.not_after") - - // TLSServerNotBeforeKey is the attribute Key conforming to the - // "tls.server.not_before" semantic conventions. It represents the date/Time - // indicating when server certificate is first considered valid. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1970-01-01T00:00:00.000Z" - TLSServerNotBeforeKey = attribute.Key("tls.server.not_before") - - // TLSServerSubjectKey is the attribute Key conforming to the - // "tls.server.subject" semantic conventions. It represents the distinguished - // name of subject of the x.509 certificate presented by the server. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CN=myserver, OU=Documentation Team, DC=example, DC=com" - TLSServerSubjectKey = attribute.Key("tls.server.subject") -) - -// TLSCipher returns an attribute KeyValue conforming to the "tls.cipher" -// semantic conventions. It represents the string indicating the [cipher] used -// during the current connection. -// -// [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5 -func TLSCipher(val string) attribute.KeyValue { - return TLSCipherKey.String(val) -} - -// TLSClientCertificate returns an attribute KeyValue conforming to the -// "tls.client.certificate" semantic conventions. It represents the PEM-encoded -// stand-alone certificate offered by the client. This is usually -// mutually-exclusive of `client.certificate_chain` since this value also exists -// in that list. -func TLSClientCertificate(val string) attribute.KeyValue { - return TLSClientCertificateKey.String(val) -} - -// TLSClientCertificateChain returns an attribute KeyValue conforming to the -// "tls.client.certificate_chain" semantic conventions. It represents the array -// of PEM-encoded certificates that make up the certificate chain offered by the -// client. This is usually mutually-exclusive of `client.certificate` since that -// value should be the first certificate in the chain. -func TLSClientCertificateChain(val ...string) attribute.KeyValue { - return TLSClientCertificateChainKey.StringSlice(val) -} - -// TLSClientHashMd5 returns an attribute KeyValue conforming to the -// "tls.client.hash.md5" semantic conventions. It represents the certificate -// fingerprint using the MD5 digest of DER-encoded version of certificate offered -// by the client. For consistency with other hash values, this value should be -// formatted as an uppercase hash. -func TLSClientHashMd5(val string) attribute.KeyValue { - return TLSClientHashMd5Key.String(val) -} - -// TLSClientHashSha1 returns an attribute KeyValue conforming to the -// "tls.client.hash.sha1" semantic conventions. It represents the certificate -// fingerprint using the SHA1 digest of DER-encoded version of certificate -// offered by the client. For consistency with other hash values, this value -// should be formatted as an uppercase hash. -func TLSClientHashSha1(val string) attribute.KeyValue { - return TLSClientHashSha1Key.String(val) -} - -// TLSClientHashSha256 returns an attribute KeyValue conforming to the -// "tls.client.hash.sha256" semantic conventions. It represents the certificate -// fingerprint using the SHA256 digest of DER-encoded version of certificate -// offered by the client. For consistency with other hash values, this value -// should be formatted as an uppercase hash. -func TLSClientHashSha256(val string) attribute.KeyValue { - return TLSClientHashSha256Key.String(val) -} - -// TLSClientIssuer returns an attribute KeyValue conforming to the -// "tls.client.issuer" semantic conventions. It represents the distinguished name -// of [subject] of the issuer of the x.509 certificate presented by the client. -// -// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 -func TLSClientIssuer(val string) attribute.KeyValue { - return TLSClientIssuerKey.String(val) -} - -// TLSClientJa3 returns an attribute KeyValue conforming to the "tls.client.ja3" -// semantic conventions. It represents a hash that identifies clients based on -// how they perform an SSL/TLS handshake. -func TLSClientJa3(val string) attribute.KeyValue { - return TLSClientJa3Key.String(val) -} - -// TLSClientNotAfter returns an attribute KeyValue conforming to the -// "tls.client.not_after" semantic conventions. It represents the date/Time -// indicating when client certificate is no longer considered valid. -func TLSClientNotAfter(val string) attribute.KeyValue { - return TLSClientNotAfterKey.String(val) -} - -// TLSClientNotBefore returns an attribute KeyValue conforming to the -// "tls.client.not_before" semantic conventions. It represents the date/Time -// indicating when client certificate is first considered valid. -func TLSClientNotBefore(val string) attribute.KeyValue { - return TLSClientNotBeforeKey.String(val) -} - -// TLSClientSubject returns an attribute KeyValue conforming to the -// "tls.client.subject" semantic conventions. It represents the distinguished -// name of subject of the x.509 certificate presented by the client. -func TLSClientSubject(val string) attribute.KeyValue { - return TLSClientSubjectKey.String(val) -} - -// TLSClientSupportedCiphers returns an attribute KeyValue conforming to the -// "tls.client.supported_ciphers" semantic conventions. It represents the array -// of ciphers offered by the client during the client hello. -func TLSClientSupportedCiphers(val ...string) attribute.KeyValue { - return TLSClientSupportedCiphersKey.StringSlice(val) -} - -// TLSCurve returns an attribute KeyValue conforming to the "tls.curve" semantic -// conventions. It represents the string indicating the curve used for the given -// cipher, when applicable. -func TLSCurve(val string) attribute.KeyValue { - return TLSCurveKey.String(val) -} - -// TLSEstablished returns an attribute KeyValue conforming to the -// "tls.established" semantic conventions. It represents the boolean flag -// indicating if the TLS negotiation was successful and transitioned to an -// encrypted tunnel. -func TLSEstablished(val bool) attribute.KeyValue { - return TLSEstablishedKey.Bool(val) -} - -// TLSNextProtocol returns an attribute KeyValue conforming to the -// "tls.next_protocol" semantic conventions. It represents the string indicating -// the protocol being tunneled. Per the values in the [IANA registry], this -// string should be lower case. -// -// [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids -func TLSNextProtocol(val string) attribute.KeyValue { - return TLSNextProtocolKey.String(val) -} - -// TLSProtocolVersion returns an attribute KeyValue conforming to the -// "tls.protocol.version" semantic conventions. It represents the numeric part of -// the version parsed from the original string of the negotiated -// [SSL/TLS protocol version]. -// -// [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values -func TLSProtocolVersion(val string) attribute.KeyValue { - return TLSProtocolVersionKey.String(val) -} - -// TLSResumed returns an attribute KeyValue conforming to the "tls.resumed" -// semantic conventions. It represents the boolean flag indicating if this TLS -// connection was resumed from an existing TLS negotiation. -func TLSResumed(val bool) attribute.KeyValue { - return TLSResumedKey.Bool(val) -} - -// TLSServerCertificate returns an attribute KeyValue conforming to the -// "tls.server.certificate" semantic conventions. It represents the PEM-encoded -// stand-alone certificate offered by the server. This is usually -// mutually-exclusive of `server.certificate_chain` since this value also exists -// in that list. -func TLSServerCertificate(val string) attribute.KeyValue { - return TLSServerCertificateKey.String(val) -} - -// TLSServerCertificateChain returns an attribute KeyValue conforming to the -// "tls.server.certificate_chain" semantic conventions. It represents the array -// of PEM-encoded certificates that make up the certificate chain offered by the -// server. This is usually mutually-exclusive of `server.certificate` since that -// value should be the first certificate in the chain. -func TLSServerCertificateChain(val ...string) attribute.KeyValue { - return TLSServerCertificateChainKey.StringSlice(val) -} - -// TLSServerHashMd5 returns an attribute KeyValue conforming to the -// "tls.server.hash.md5" semantic conventions. It represents the certificate -// fingerprint using the MD5 digest of DER-encoded version of certificate offered -// by the server. For consistency with other hash values, this value should be -// formatted as an uppercase hash. -func TLSServerHashMd5(val string) attribute.KeyValue { - return TLSServerHashMd5Key.String(val) -} - -// TLSServerHashSha1 returns an attribute KeyValue conforming to the -// "tls.server.hash.sha1" semantic conventions. It represents the certificate -// fingerprint using the SHA1 digest of DER-encoded version of certificate -// offered by the server. For consistency with other hash values, this value -// should be formatted as an uppercase hash. -func TLSServerHashSha1(val string) attribute.KeyValue { - return TLSServerHashSha1Key.String(val) -} - -// TLSServerHashSha256 returns an attribute KeyValue conforming to the -// "tls.server.hash.sha256" semantic conventions. It represents the certificate -// fingerprint using the SHA256 digest of DER-encoded version of certificate -// offered by the server. For consistency with other hash values, this value -// should be formatted as an uppercase hash. -func TLSServerHashSha256(val string) attribute.KeyValue { - return TLSServerHashSha256Key.String(val) -} - -// TLSServerIssuer returns an attribute KeyValue conforming to the -// "tls.server.issuer" semantic conventions. It represents the distinguished name -// of [subject] of the issuer of the x.509 certificate presented by the client. -// -// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 -func TLSServerIssuer(val string) attribute.KeyValue { - return TLSServerIssuerKey.String(val) -} - -// TLSServerJa3s returns an attribute KeyValue conforming to the -// "tls.server.ja3s" semantic conventions. It represents a hash that identifies -// servers based on how they perform an SSL/TLS handshake. -func TLSServerJa3s(val string) attribute.KeyValue { - return TLSServerJa3sKey.String(val) -} - -// TLSServerNotAfter returns an attribute KeyValue conforming to the -// "tls.server.not_after" semantic conventions. It represents the date/Time -// indicating when server certificate is no longer considered valid. -func TLSServerNotAfter(val string) attribute.KeyValue { - return TLSServerNotAfterKey.String(val) -} - -// TLSServerNotBefore returns an attribute KeyValue conforming to the -// "tls.server.not_before" semantic conventions. It represents the date/Time -// indicating when server certificate is first considered valid. -func TLSServerNotBefore(val string) attribute.KeyValue { - return TLSServerNotBeforeKey.String(val) -} - -// TLSServerSubject returns an attribute KeyValue conforming to the -// "tls.server.subject" semantic conventions. It represents the distinguished -// name of subject of the x.509 certificate presented by the server. -func TLSServerSubject(val string) attribute.KeyValue { - return TLSServerSubjectKey.String(val) -} - -// Enum values for tls.protocol.name -var ( - // ssl - // Stability: development - TLSProtocolNameSsl = TLSProtocolNameKey.String("ssl") - // tls - // Stability: development - TLSProtocolNameTLS = TLSProtocolNameKey.String("tls") -) - -// Namespace: url -const ( - // URLDomainKey is the attribute Key conforming to the "url.domain" semantic - // conventions. It represents the domain extracted from the `url.full`, such as - // "opentelemetry.io". - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "www.foo.bar", "opentelemetry.io", "3.12.167.2", - // "[1080:0:0:0:8:800:200C:417A]" - // Note: In some cases a URL may refer to an IP and/or port directly, without a - // domain name. In this case, the IP address would go to the domain field. If - // the URL contains a [literal IPv6 address] enclosed by `[` and `]`, the `[` - // and `]` characters should also be captured in the domain field. - // - // [literal IPv6 address]: https://www.rfc-editor.org/rfc/rfc2732#section-2 - URLDomainKey = attribute.Key("url.domain") - - // URLExtensionKey is the attribute Key conforming to the "url.extension" - // semantic conventions. It represents the file extension extracted from the - // `url.full`, excluding the leading dot. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "png", "gz" - // Note: The file extension is only set if it exists, as not every url has a - // file extension. When the file name has multiple extensions `example.tar.gz`, - // only the last one should be captured `gz`, not `tar.gz`. - URLExtensionKey = attribute.Key("url.extension") - - // URLFragmentKey is the attribute Key conforming to the "url.fragment" semantic - // conventions. It represents the [URI fragment] component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "SemConv" - // - // [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5 - URLFragmentKey = attribute.Key("url.fragment") - - // URLFullKey is the attribute Key conforming to the "url.full" semantic - // conventions. It represents the absolute URL describing a network resource - // according to [RFC3986]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv", "//localhost" - // Note: For network calls, URL usually has - // `scheme://host[:port][path][?query][#fragment]` format, where the fragment - // is not transmitted over HTTP, but if it is known, it SHOULD be included - // nevertheless. - // - // `url.full` MUST NOT contain credentials passed via URL in form of - // `https://username:password@www.example.com/`. - // In such case username and password SHOULD be redacted and attribute's value - // SHOULD be `https://REDACTED:REDACTED@www.example.com/`. - // - // `url.full` SHOULD capture the absolute URL when it is available (or can be - // reconstructed). - // - // Sensitive content provided in `url.full` SHOULD be scrubbed when - // instrumentations can identify it. - // - // - // Query string values for the following keys SHOULD be redacted by default and - // replaced by the - // value `REDACTED`: - // - // - [`AWSAccessKeyId`] - // - [`Signature`] - // - [`sig`] - // - [`X-Goog-Signature`] - // - // This list is subject to change over time. - // - // When a query string value is redacted, the query string key SHOULD still be - // preserved, e.g. - // `https://www.example.com/path?color=blue&sig=REDACTED`. - // - // [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986 - // [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth - // [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth - // [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token - // [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls - URLFullKey = attribute.Key("url.full") - - // URLOriginalKey is the attribute Key conforming to the "url.original" semantic - // conventions. It represents the unmodified original URL as seen in the event - // source. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv", - // "search?q=OpenTelemetry" - // Note: In network monitoring, the observed URL may be a full URL, whereas in - // access logs, the URL is often just represented as a path. This field is meant - // to represent the URL as it was observed, complete or not. - // `url.original` might contain credentials passed via URL in form of - // `https://username:password@www.example.com/`. In such case password and - // username SHOULD NOT be redacted and attribute's value SHOULD remain the same. - URLOriginalKey = attribute.Key("url.original") - - // URLPathKey is the attribute Key conforming to the "url.path" semantic - // conventions. It represents the [URI path] component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "/search" - // Note: Sensitive content provided in `url.path` SHOULD be scrubbed when - // instrumentations can identify it. - // - // [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3 - URLPathKey = attribute.Key("url.path") - - // URLPortKey is the attribute Key conforming to the "url.port" semantic - // conventions. It represents the port extracted from the `url.full`. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 443 - URLPortKey = attribute.Key("url.port") - - // URLQueryKey is the attribute Key conforming to the "url.query" semantic - // conventions. It represents the [URI query] component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "q=OpenTelemetry" - // Note: Sensitive content provided in `url.query` SHOULD be scrubbed when - // instrumentations can identify it. - // - // - // Query string values for the following keys SHOULD be redacted by default and - // replaced by the value `REDACTED`: - // - // - [`AWSAccessKeyId`] - // - [`Signature`] - // - [`sig`] - // - [`X-Goog-Signature`] - // - // This list is subject to change over time. - // - // When a query string value is redacted, the query string key SHOULD still be - // preserved, e.g. - // `q=OpenTelemetry&sig=REDACTED`. - // - // [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4 - // [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth - // [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth - // [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token - // [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls - URLQueryKey = attribute.Key("url.query") - - // URLRegisteredDomainKey is the attribute Key conforming to the - // "url.registered_domain" semantic conventions. It represents the highest - // registered url domain, stripped of the subdomain. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "example.com", "foo.co.uk" - // Note: This value can be determined precisely with the [public suffix list]. - // For example, the registered domain for `foo.example.com` is `example.com`. - // Trying to approximate this by simply taking the last two labels will not work - // well for TLDs such as `co.uk`. - // - // [public suffix list]: https://publicsuffix.org/ - URLRegisteredDomainKey = attribute.Key("url.registered_domain") - - // URLSchemeKey is the attribute Key conforming to the "url.scheme" semantic - // conventions. It represents the [URI scheme] component identifying the used - // protocol. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "https", "ftp", "telnet" - // - // [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 - URLSchemeKey = attribute.Key("url.scheme") - - // URLSubdomainKey is the attribute Key conforming to the "url.subdomain" - // semantic conventions. It represents the subdomain portion of a fully - // qualified domain name includes all of the names except the host name under - // the registered_domain. In a partially qualified domain, or if the - // qualification level of the full name cannot be determined, subdomain contains - // all of the names below the registered domain. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "east", "sub2.sub1" - // Note: The subdomain portion of `www.east.mydomain.co.uk` is `east`. If the - // domain has multiple levels of subdomain, such as `sub2.sub1.example.com`, the - // subdomain field should contain `sub2.sub1`, with no trailing period. - URLSubdomainKey = attribute.Key("url.subdomain") - - // URLTemplateKey is the attribute Key conforming to the "url.template" semantic - // conventions. It represents the low-cardinality template of an - // [absolute path reference]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/users/{id}", "/users/:id", "/users?id={id}" - // - // [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 - URLTemplateKey = attribute.Key("url.template") - - // URLTopLevelDomainKey is the attribute Key conforming to the - // "url.top_level_domain" semantic conventions. It represents the effective top - // level domain (eTLD), also known as the domain suffix, is the last part of the - // domain name. For example, the top level domain for example.com is `com`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "com", "co.uk" - // Note: This value can be determined precisely with the [public suffix list]. - // - // [public suffix list]: https://publicsuffix.org/ - URLTopLevelDomainKey = attribute.Key("url.top_level_domain") -) - -// URLDomain returns an attribute KeyValue conforming to the "url.domain" -// semantic conventions. It represents the domain extracted from the `url.full`, -// such as "opentelemetry.io". -func URLDomain(val string) attribute.KeyValue { - return URLDomainKey.String(val) -} - -// URLExtension returns an attribute KeyValue conforming to the "url.extension" -// semantic conventions. It represents the file extension extracted from the -// `url.full`, excluding the leading dot. -func URLExtension(val string) attribute.KeyValue { - return URLExtensionKey.String(val) -} - -// URLFragment returns an attribute KeyValue conforming to the "url.fragment" -// semantic conventions. It represents the [URI fragment] component. -// -// [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5 -func URLFragment(val string) attribute.KeyValue { - return URLFragmentKey.String(val) -} - -// URLFull returns an attribute KeyValue conforming to the "url.full" semantic -// conventions. It represents the absolute URL describing a network resource -// according to [RFC3986]. -// -// [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986 -func URLFull(val string) attribute.KeyValue { - return URLFullKey.String(val) -} - -// URLOriginal returns an attribute KeyValue conforming to the "url.original" -// semantic conventions. It represents the unmodified original URL as seen in the -// event source. -func URLOriginal(val string) attribute.KeyValue { - return URLOriginalKey.String(val) -} - -// URLPath returns an attribute KeyValue conforming to the "url.path" semantic -// conventions. It represents the [URI path] component. -// -// [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3 -func URLPath(val string) attribute.KeyValue { - return URLPathKey.String(val) -} - -// URLPort returns an attribute KeyValue conforming to the "url.port" semantic -// conventions. It represents the port extracted from the `url.full`. -func URLPort(val int) attribute.KeyValue { - return URLPortKey.Int(val) -} - -// URLQuery returns an attribute KeyValue conforming to the "url.query" semantic -// conventions. It represents the [URI query] component. -// -// [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4 -func URLQuery(val string) attribute.KeyValue { - return URLQueryKey.String(val) -} - -// URLRegisteredDomain returns an attribute KeyValue conforming to the -// "url.registered_domain" semantic conventions. It represents the highest -// registered url domain, stripped of the subdomain. -func URLRegisteredDomain(val string) attribute.KeyValue { - return URLRegisteredDomainKey.String(val) -} - -// URLScheme returns an attribute KeyValue conforming to the "url.scheme" -// semantic conventions. It represents the [URI scheme] component identifying the -// used protocol. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -func URLScheme(val string) attribute.KeyValue { - return URLSchemeKey.String(val) -} - -// URLSubdomain returns an attribute KeyValue conforming to the "url.subdomain" -// semantic conventions. It represents the subdomain portion of a fully qualified -// domain name includes all of the names except the host name under the -// registered_domain. In a partially qualified domain, or if the qualification -// level of the full name cannot be determined, subdomain contains all of the -// names below the registered domain. -func URLSubdomain(val string) attribute.KeyValue { - return URLSubdomainKey.String(val) -} - -// URLTemplate returns an attribute KeyValue conforming to the "url.template" -// semantic conventions. It represents the low-cardinality template of an -// [absolute path reference]. -// -// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 -func URLTemplate(val string) attribute.KeyValue { - return URLTemplateKey.String(val) -} - -// URLTopLevelDomain returns an attribute KeyValue conforming to the -// "url.top_level_domain" semantic conventions. It represents the effective top -// level domain (eTLD), also known as the domain suffix, is the last part of the -// domain name. For example, the top level domain for example.com is `com`. -func URLTopLevelDomain(val string) attribute.KeyValue { - return URLTopLevelDomainKey.String(val) -} - -// Namespace: user -const ( - // UserEmailKey is the attribute Key conforming to the "user.email" semantic - // conventions. It represents the user email address. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "a.einstein@example.com" - UserEmailKey = attribute.Key("user.email") - - // UserFullNameKey is the attribute Key conforming to the "user.full_name" - // semantic conventions. It represents the user's full name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Albert Einstein" - UserFullNameKey = attribute.Key("user.full_name") - - // UserHashKey is the attribute Key conforming to the "user.hash" semantic - // conventions. It represents the unique user hash to correlate information for - // a user in anonymized form. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "364fc68eaf4c8acec74a4e52d7d1feaa" - // Note: Useful if `user.id` or `user.name` contain confidential information and - // cannot be used. - UserHashKey = attribute.Key("user.hash") - - // UserIDKey is the attribute Key conforming to the "user.id" semantic - // conventions. It represents the unique identifier of the user. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "S-1-5-21-202424912787-2692429404-2351956786-1000" - UserIDKey = attribute.Key("user.id") - - // UserNameKey is the attribute Key conforming to the "user.name" semantic - // conventions. It represents the short name or login/username of the user. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "a.einstein" - UserNameKey = attribute.Key("user.name") - - // UserRolesKey is the attribute Key conforming to the "user.roles" semantic - // conventions. It represents the array of user roles at the time of the event. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "admin", "reporting_user" - UserRolesKey = attribute.Key("user.roles") -) - -// UserEmail returns an attribute KeyValue conforming to the "user.email" -// semantic conventions. It represents the user email address. -func UserEmail(val string) attribute.KeyValue { - return UserEmailKey.String(val) -} - -// UserFullName returns an attribute KeyValue conforming to the "user.full_name" -// semantic conventions. It represents the user's full name. -func UserFullName(val string) attribute.KeyValue { - return UserFullNameKey.String(val) -} - -// UserHash returns an attribute KeyValue conforming to the "user.hash" semantic -// conventions. It represents the unique user hash to correlate information for a -// user in anonymized form. -func UserHash(val string) attribute.KeyValue { - return UserHashKey.String(val) -} - -// UserID returns an attribute KeyValue conforming to the "user.id" semantic -// conventions. It represents the unique identifier of the user. -func UserID(val string) attribute.KeyValue { - return UserIDKey.String(val) -} - -// UserName returns an attribute KeyValue conforming to the "user.name" semantic -// conventions. It represents the short name or login/username of the user. -func UserName(val string) attribute.KeyValue { - return UserNameKey.String(val) -} - -// UserRoles returns an attribute KeyValue conforming to the "user.roles" -// semantic conventions. It represents the array of user roles at the time of the -// event. -func UserRoles(val ...string) attribute.KeyValue { - return UserRolesKey.StringSlice(val) -} - -// Namespace: user_agent -const ( - // UserAgentNameKey is the attribute Key conforming to the "user_agent.name" - // semantic conventions. It represents the name of the user-agent extracted from - // original. Usually refers to the browser's name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Safari", "YourApp" - // Note: [Example] of extracting browser's name from original string. In the - // case of using a user-agent for non-browser products, such as microservices - // with multiple names/versions inside the `user_agent.original`, the most - // significant name SHOULD be selected. In such a scenario it should align with - // `user_agent.version` - // - // [Example]: https://uaparser.dev/#demo - UserAgentNameKey = attribute.Key("user_agent.name") - - // UserAgentOriginalKey is the attribute Key conforming to the - // "user_agent.original" semantic conventions. It represents the value of the - // [HTTP User-Agent] header sent by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "CERN-LineMode/2.15 libwww/2.17b3", "Mozilla/5.0 (iPhone; CPU - // iPhone OS 14_7_1 like Mac OS X) AppleWebKit/605.1.15 (KHTML, like Gecko) - // Version/14.1.2 Mobile/15E148 Safari/604.1", "YourApp/1.0.0 - // grpc-java-okhttp/1.27.2" - // - // [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent - UserAgentOriginalKey = attribute.Key("user_agent.original") - - // UserAgentOSNameKey is the attribute Key conforming to the - // "user_agent.os.name" semantic conventions. It represents the human readable - // operating system name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "iOS", "Android", "Ubuntu" - // Note: For mapping user agent strings to OS names, libraries such as - // [ua-parser] can be utilized. - // - // [ua-parser]: https://github.com/ua-parser - UserAgentOSNameKey = attribute.Key("user_agent.os.name") - - // UserAgentOSVersionKey is the attribute Key conforming to the - // "user_agent.os.version" semantic conventions. It represents the version - // string of the operating system as defined in [Version Attributes]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "14.2.1", "18.04.1" - // Note: For mapping user agent strings to OS versions, libraries such as - // [ua-parser] can be utilized. - // - // [Version Attributes]: /docs/resource/README.md#version-attributes - // [ua-parser]: https://github.com/ua-parser - UserAgentOSVersionKey = attribute.Key("user_agent.os.version") - - // UserAgentSyntheticTypeKey is the attribute Key conforming to the - // "user_agent.synthetic.type" semantic conventions. It represents the specifies - // the category of synthetic traffic, such as tests or bots. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: This attribute MAY be derived from the contents of the - // `user_agent.original` attribute. Components that populate the attribute are - // responsible for determining what they consider to be synthetic bot or test - // traffic. This attribute can either be set for self-identification purposes, - // or on telemetry detected to be generated as a result of a synthetic request. - // This attribute is useful for distinguishing between genuine client traffic - // and synthetic traffic generated by bots or tests. - UserAgentSyntheticTypeKey = attribute.Key("user_agent.synthetic.type") - - // UserAgentVersionKey is the attribute Key conforming to the - // "user_agent.version" semantic conventions. It represents the version of the - // user-agent extracted from original. Usually refers to the browser's version. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "14.1.2", "1.0.0" - // Note: [Example] of extracting browser's version from original string. In the - // case of using a user-agent for non-browser products, such as microservices - // with multiple names/versions inside the `user_agent.original`, the most - // significant version SHOULD be selected. In such a scenario it should align - // with `user_agent.name` - // - // [Example]: https://uaparser.dev/#demo - UserAgentVersionKey = attribute.Key("user_agent.version") -) - -// UserAgentName returns an attribute KeyValue conforming to the -// "user_agent.name" semantic conventions. It represents the name of the -// user-agent extracted from original. Usually refers to the browser's name. -func UserAgentName(val string) attribute.KeyValue { - return UserAgentNameKey.String(val) -} - -// UserAgentOriginal returns an attribute KeyValue conforming to the -// "user_agent.original" semantic conventions. It represents the value of the -// [HTTP User-Agent] header sent by the client. -// -// [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent -func UserAgentOriginal(val string) attribute.KeyValue { - return UserAgentOriginalKey.String(val) -} - -// UserAgentOSName returns an attribute KeyValue conforming to the -// "user_agent.os.name" semantic conventions. It represents the human readable -// operating system name. -func UserAgentOSName(val string) attribute.KeyValue { - return UserAgentOSNameKey.String(val) -} - -// UserAgentOSVersion returns an attribute KeyValue conforming to the -// "user_agent.os.version" semantic conventions. It represents the version string -// of the operating system as defined in [Version Attributes]. -// -// [Version Attributes]: /docs/resource/README.md#version-attributes -func UserAgentOSVersion(val string) attribute.KeyValue { - return UserAgentOSVersionKey.String(val) -} - -// UserAgentVersion returns an attribute KeyValue conforming to the -// "user_agent.version" semantic conventions. It represents the version of the -// user-agent extracted from original. Usually refers to the browser's version. -func UserAgentVersion(val string) attribute.KeyValue { - return UserAgentVersionKey.String(val) -} - -// Enum values for user_agent.synthetic.type -var ( - // Bot source. - // Stability: development - UserAgentSyntheticTypeBot = UserAgentSyntheticTypeKey.String("bot") - // Synthetic test source. - // Stability: development - UserAgentSyntheticTypeTest = UserAgentSyntheticTypeKey.String("test") -) - -// Namespace: vcs -const ( - // VCSChangeIDKey is the attribute Key conforming to the "vcs.change.id" - // semantic conventions. It represents the ID of the change (pull request/merge - // request/changelist) if applicable. This is usually a unique (within - // repository) identifier generated by the VCS system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "123" - VCSChangeIDKey = attribute.Key("vcs.change.id") - - // VCSChangeStateKey is the attribute Key conforming to the "vcs.change.state" - // semantic conventions. It represents the state of the change (pull - // request/merge request/changelist). - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "open", "closed", "merged" - VCSChangeStateKey = attribute.Key("vcs.change.state") - - // VCSChangeTitleKey is the attribute Key conforming to the "vcs.change.title" - // semantic conventions. It represents the human readable title of the change - // (pull request/merge request/changelist). This title is often a brief summary - // of the change and may get merged in to a ref as the commit summary. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Fixes broken thing", "feat: add my new feature", "[chore] update - // dependency" - VCSChangeTitleKey = attribute.Key("vcs.change.title") - - // VCSLineChangeTypeKey is the attribute Key conforming to the - // "vcs.line_change.type" semantic conventions. It represents the type of line - // change being measured on a branch or change. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "added", "removed" - VCSLineChangeTypeKey = attribute.Key("vcs.line_change.type") - - // VCSOwnerNameKey is the attribute Key conforming to the "vcs.owner.name" - // semantic conventions. It represents the group owner within the version - // control system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-org", "myteam", "business-unit" - VCSOwnerNameKey = attribute.Key("vcs.owner.name") - - // VCSProviderNameKey is the attribute Key conforming to the "vcs.provider.name" - // semantic conventions. It represents the name of the version control system - // provider. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "github", "gitlab", "gitea", "bitbucket" - VCSProviderNameKey = attribute.Key("vcs.provider.name") - - // VCSRefBaseNameKey is the attribute Key conforming to the "vcs.ref.base.name" - // semantic conventions. It represents the name of the [reference] such as - // **branch** or **tag** in the repository. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-feature-branch", "tag-1-test" - // Note: `base` refers to the starting point of a change. For example, `main` - // would be the base reference of type branch if you've created a new - // reference of type branch from it and created new commits. - // - // [reference]: https://git-scm.com/docs/gitglossary#def_ref - VCSRefBaseNameKey = attribute.Key("vcs.ref.base.name") - - // VCSRefBaseRevisionKey is the attribute Key conforming to the - // "vcs.ref.base.revision" semantic conventions. It represents the revision, - // literally [revised version], The revision most often refers to a commit - // object in Git, or a revision number in SVN. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc", - // "main", "123", "HEAD" - // Note: `base` refers to the starting point of a change. For example, `main` - // would be the base reference of type branch if you've created a new - // reference of type branch from it and created new commits. The - // revision can be a full [hash value (see - // glossary)], - // of the recorded change to a ref within a repository pointing to a - // commit [commit] object. It does - // not necessarily have to be a hash; it can simply define a [revision - // number] - // which is an integer that is monotonically increasing. In cases where - // it is identical to the `ref.base.name`, it SHOULD still be included. - // It is up to the implementer to decide which value to set as the - // revision based on the VCS system and situational context. - // - // [revised version]: https://www.merriam-webster.com/dictionary/revision - // [hash value (see - // glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf - // [commit]: https://git-scm.com/docs/git-commit - // [revision - // number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html - VCSRefBaseRevisionKey = attribute.Key("vcs.ref.base.revision") - - // VCSRefBaseTypeKey is the attribute Key conforming to the "vcs.ref.base.type" - // semantic conventions. It represents the type of the [reference] in the - // repository. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "branch", "tag" - // Note: `base` refers to the starting point of a change. For example, `main` - // would be the base reference of type branch if you've created a new - // reference of type branch from it and created new commits. - // - // [reference]: https://git-scm.com/docs/gitglossary#def_ref - VCSRefBaseTypeKey = attribute.Key("vcs.ref.base.type") - - // VCSRefHeadNameKey is the attribute Key conforming to the "vcs.ref.head.name" - // semantic conventions. It represents the name of the [reference] such as - // **branch** or **tag** in the repository. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-feature-branch", "tag-1-test" - // Note: `head` refers to where you are right now; the current reference at a - // given time. - // - // [reference]: https://git-scm.com/docs/gitglossary#def_ref - VCSRefHeadNameKey = attribute.Key("vcs.ref.head.name") - - // VCSRefHeadRevisionKey is the attribute Key conforming to the - // "vcs.ref.head.revision" semantic conventions. It represents the revision, - // literally [revised version], The revision most often refers to a commit - // object in Git, or a revision number in SVN. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc", - // "main", "123", "HEAD" - // Note: `head` refers to where you are right now; the current reference at a - // given time.The revision can be a full [hash value (see - // glossary)], - // of the recorded change to a ref within a repository pointing to a - // commit [commit] object. It does - // not necessarily have to be a hash; it can simply define a [revision - // number] - // which is an integer that is monotonically increasing. In cases where - // it is identical to the `ref.head.name`, it SHOULD still be included. - // It is up to the implementer to decide which value to set as the - // revision based on the VCS system and situational context. - // - // [revised version]: https://www.merriam-webster.com/dictionary/revision - // [hash value (see - // glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf - // [commit]: https://git-scm.com/docs/git-commit - // [revision - // number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html - VCSRefHeadRevisionKey = attribute.Key("vcs.ref.head.revision") - - // VCSRefHeadTypeKey is the attribute Key conforming to the "vcs.ref.head.type" - // semantic conventions. It represents the type of the [reference] in the - // repository. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "branch", "tag" - // Note: `head` refers to where you are right now; the current reference at a - // given time. - // - // [reference]: https://git-scm.com/docs/gitglossary#def_ref - VCSRefHeadTypeKey = attribute.Key("vcs.ref.head.type") - - // VCSRefTypeKey is the attribute Key conforming to the "vcs.ref.type" semantic - // conventions. It represents the type of the [reference] in the repository. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "branch", "tag" - // - // [reference]: https://git-scm.com/docs/gitglossary#def_ref - VCSRefTypeKey = attribute.Key("vcs.ref.type") - - // VCSRepositoryNameKey is the attribute Key conforming to the - // "vcs.repository.name" semantic conventions. It represents the human readable - // name of the repository. It SHOULD NOT include any additional identifier like - // Group/SubGroup in GitLab or organization in GitHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "semantic-conventions", "my-cool-repo" - // Note: Due to it only being the name, it can clash with forks of the same - // repository if collecting telemetry across multiple orgs or groups in - // the same backends. - VCSRepositoryNameKey = attribute.Key("vcs.repository.name") - - // VCSRepositoryURLFullKey is the attribute Key conforming to the - // "vcs.repository.url.full" semantic conventions. It represents the - // [canonical URL] of the repository providing the complete HTTP(S) address in - // order to locate and identify the repository through a browser. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "https://github.com/opentelemetry/open-telemetry-collector-contrib", - // "https://gitlab.com/my-org/my-project/my-projects-project/repo" - // Note: In Git Version Control Systems, the canonical URL SHOULD NOT include - // the `.git` extension. - // - // [canonical URL]: https://support.google.com/webmasters/answer/10347851 - VCSRepositoryURLFullKey = attribute.Key("vcs.repository.url.full") - - // VCSRevisionDeltaDirectionKey is the attribute Key conforming to the - // "vcs.revision_delta.direction" semantic conventions. It represents the type - // of revision comparison. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ahead", "behind" - VCSRevisionDeltaDirectionKey = attribute.Key("vcs.revision_delta.direction") -) - -// VCSChangeID returns an attribute KeyValue conforming to the "vcs.change.id" -// semantic conventions. It represents the ID of the change (pull request/merge -// request/changelist) if applicable. This is usually a unique (within -// repository) identifier generated by the VCS system. -func VCSChangeID(val string) attribute.KeyValue { - return VCSChangeIDKey.String(val) -} - -// VCSChangeTitle returns an attribute KeyValue conforming to the -// "vcs.change.title" semantic conventions. It represents the human readable -// title of the change (pull request/merge request/changelist). This title is -// often a brief summary of the change and may get merged in to a ref as the -// commit summary. -func VCSChangeTitle(val string) attribute.KeyValue { - return VCSChangeTitleKey.String(val) -} - -// VCSOwnerName returns an attribute KeyValue conforming to the "vcs.owner.name" -// semantic conventions. It represents the group owner within the version control -// system. -func VCSOwnerName(val string) attribute.KeyValue { - return VCSOwnerNameKey.String(val) -} - -// VCSRefBaseName returns an attribute KeyValue conforming to the -// "vcs.ref.base.name" semantic conventions. It represents the name of the -// [reference] such as **branch** or **tag** in the repository. -// -// [reference]: https://git-scm.com/docs/gitglossary#def_ref -func VCSRefBaseName(val string) attribute.KeyValue { - return VCSRefBaseNameKey.String(val) -} - -// VCSRefBaseRevision returns an attribute KeyValue conforming to the -// "vcs.ref.base.revision" semantic conventions. It represents the revision, -// literally [revised version], The revision most often refers to a commit object -// in Git, or a revision number in SVN. -// -// [revised version]: https://www.merriam-webster.com/dictionary/revision -func VCSRefBaseRevision(val string) attribute.KeyValue { - return VCSRefBaseRevisionKey.String(val) -} - -// VCSRefHeadName returns an attribute KeyValue conforming to the -// "vcs.ref.head.name" semantic conventions. It represents the name of the -// [reference] such as **branch** or **tag** in the repository. -// -// [reference]: https://git-scm.com/docs/gitglossary#def_ref -func VCSRefHeadName(val string) attribute.KeyValue { - return VCSRefHeadNameKey.String(val) -} - -// VCSRefHeadRevision returns an attribute KeyValue conforming to the -// "vcs.ref.head.revision" semantic conventions. It represents the revision, -// literally [revised version], The revision most often refers to a commit object -// in Git, or a revision number in SVN. -// -// [revised version]: https://www.merriam-webster.com/dictionary/revision -func VCSRefHeadRevision(val string) attribute.KeyValue { - return VCSRefHeadRevisionKey.String(val) -} - -// VCSRepositoryName returns an attribute KeyValue conforming to the -// "vcs.repository.name" semantic conventions. It represents the human readable -// name of the repository. It SHOULD NOT include any additional identifier like -// Group/SubGroup in GitLab or organization in GitHub. -func VCSRepositoryName(val string) attribute.KeyValue { - return VCSRepositoryNameKey.String(val) -} - -// VCSRepositoryURLFull returns an attribute KeyValue conforming to the -// "vcs.repository.url.full" semantic conventions. It represents the -// [canonical URL] of the repository providing the complete HTTP(S) address in -// order to locate and identify the repository through a browser. -// -// [canonical URL]: https://support.google.com/webmasters/answer/10347851 -func VCSRepositoryURLFull(val string) attribute.KeyValue { - return VCSRepositoryURLFullKey.String(val) -} - -// Enum values for vcs.change.state -var ( - // Open means the change is currently active and under review. It hasn't been - // merged into the target branch yet, and it's still possible to make changes or - // add comments. - // Stability: development - VCSChangeStateOpen = VCSChangeStateKey.String("open") - // WIP (work-in-progress, draft) means the change is still in progress and not - // yet ready for a full review. It might still undergo significant changes. - // Stability: development - VCSChangeStateWip = VCSChangeStateKey.String("wip") - // Closed means the merge request has been closed without merging. This can - // happen for various reasons, such as the changes being deemed unnecessary, the - // issue being resolved in another way, or the author deciding to withdraw the - // request. - // Stability: development - VCSChangeStateClosed = VCSChangeStateKey.String("closed") - // Merged indicates that the change has been successfully integrated into the - // target codebase. - // Stability: development - VCSChangeStateMerged = VCSChangeStateKey.String("merged") -) - -// Enum values for vcs.line_change.type -var ( - // How many lines were added. - // Stability: development - VCSLineChangeTypeAdded = VCSLineChangeTypeKey.String("added") - // How many lines were removed. - // Stability: development - VCSLineChangeTypeRemoved = VCSLineChangeTypeKey.String("removed") -) - -// Enum values for vcs.provider.name -var ( - // [GitHub] - // Stability: development - // - // [GitHub]: https://github.com - VCSProviderNameGithub = VCSProviderNameKey.String("github") - // [GitLab] - // Stability: development - // - // [GitLab]: https://gitlab.com - VCSProviderNameGitlab = VCSProviderNameKey.String("gitlab") - // [Gitea] - // Stability: development - // - // [Gitea]: https://gitea.io - VCSProviderNameGitea = VCSProviderNameKey.String("gitea") - // [Bitbucket] - // Stability: development - // - // [Bitbucket]: https://bitbucket.org - VCSProviderNameBitbucket = VCSProviderNameKey.String("bitbucket") -) - -// Enum values for vcs.ref.base.type -var ( - // [branch] - // Stability: development - // - // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch - VCSRefBaseTypeBranch = VCSRefBaseTypeKey.String("branch") - // [tag] - // Stability: development - // - // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag - VCSRefBaseTypeTag = VCSRefBaseTypeKey.String("tag") -) - -// Enum values for vcs.ref.head.type -var ( - // [branch] - // Stability: development - // - // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch - VCSRefHeadTypeBranch = VCSRefHeadTypeKey.String("branch") - // [tag] - // Stability: development - // - // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag - VCSRefHeadTypeTag = VCSRefHeadTypeKey.String("tag") -) - -// Enum values for vcs.ref.type -var ( - // [branch] - // Stability: development - // - // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch - VCSRefTypeBranch = VCSRefTypeKey.String("branch") - // [tag] - // Stability: development - // - // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag - VCSRefTypeTag = VCSRefTypeKey.String("tag") -) - -// Enum values for vcs.revision_delta.direction -var ( - // How many revisions the change is behind the target ref. - // Stability: development - VCSRevisionDeltaDirectionBehind = VCSRevisionDeltaDirectionKey.String("behind") - // How many revisions the change is ahead of the target ref. - // Stability: development - VCSRevisionDeltaDirectionAhead = VCSRevisionDeltaDirectionKey.String("ahead") -) - -// Namespace: webengine -const ( - // WebEngineDescriptionKey is the attribute Key conforming to the - // "webengine.description" semantic conventions. It represents the additional - // description of the web engine (e.g. detailed version and edition - // information). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "WildFly Full 21.0.0.Final (WildFly Core 13.0.1.Final) - - // 2.2.2.Final" - WebEngineDescriptionKey = attribute.Key("webengine.description") - - // WebEngineNameKey is the attribute Key conforming to the "webengine.name" - // semantic conventions. It represents the name of the web engine. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "WildFly" - WebEngineNameKey = attribute.Key("webengine.name") - - // WebEngineVersionKey is the attribute Key conforming to the - // "webengine.version" semantic conventions. It represents the version of the - // web engine. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "21.0.0" - WebEngineVersionKey = attribute.Key("webengine.version") -) - -// WebEngineDescription returns an attribute KeyValue conforming to the -// "webengine.description" semantic conventions. It represents the additional -// description of the web engine (e.g. detailed version and edition information). -func WebEngineDescription(val string) attribute.KeyValue { - return WebEngineDescriptionKey.String(val) -} - -// WebEngineName returns an attribute KeyValue conforming to the "webengine.name" -// semantic conventions. It represents the name of the web engine. -func WebEngineName(val string) attribute.KeyValue { - return WebEngineNameKey.String(val) -} - -// WebEngineVersion returns an attribute KeyValue conforming to the -// "webengine.version" semantic conventions. It represents the version of the web -// engine. -func WebEngineVersion(val string) attribute.KeyValue { - return WebEngineVersionKey.String(val) -} - -// Namespace: zos -const ( - // ZOSSmfIDKey is the attribute Key conforming to the "zos.smf.id" semantic - // conventions. It represents the System Management Facility (SMF) Identifier - // uniquely identified a z/OS system within a SYSPLEX or mainframe environment - // and is used for system and performance analysis. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "SYS1" - ZOSSmfIDKey = attribute.Key("zos.smf.id") - - // ZOSSysplexNameKey is the attribute Key conforming to the "zos.sysplex.name" - // semantic conventions. It represents the name of the SYSPLEX to which the z/OS - // system belongs too. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "SYSPLEX1" - ZOSSysplexNameKey = attribute.Key("zos.sysplex.name") -) - -// ZOSSmfID returns an attribute KeyValue conforming to the "zos.smf.id" semantic -// conventions. It represents the System Management Facility (SMF) Identifier -// uniquely identified a z/OS system within a SYSPLEX or mainframe environment -// and is used for system and performance analysis. -func ZOSSmfID(val string) attribute.KeyValue { - return ZOSSmfIDKey.String(val) -} - -// ZOSSysplexName returns an attribute KeyValue conforming to the -// "zos.sysplex.name" semantic conventions. It represents the name of the SYSPLEX -// to which the z/OS system belongs too. -func ZOSSysplexName(val string) attribute.KeyValue { - return ZOSSysplexNameKey.String(val) -} \ No newline at end of file diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/doc.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/doc.go deleted file mode 100644 index 852362ef77..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/doc.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -// Package semconv implements OpenTelemetry semantic conventions. -// -// OpenTelemetry semantic conventions are agreed standardized naming -// patterns for OpenTelemetry things. This package represents the v1.39.0 -// version of the OpenTelemetry semantic conventions. -package semconv // import "go.opentelemetry.io/otel/semconv/v1.39.0" diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/error_type.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/error_type.go deleted file mode 100644 index 84cf636a72..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/error_type.go +++ /dev/null @@ -1,56 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -package semconv // import "go.opentelemetry.io/otel/semconv/v1.39.0" - -import ( - "reflect" - - "go.opentelemetry.io/otel/attribute" -) - -// ErrorType returns an [attribute.KeyValue] identifying the error type of err. -// -// If err is nil, the returned attribute has the default value -// [ErrorTypeOther]. -// -// If err's type has the method -// -// ErrorType() string -// -// then the returned attribute has the value of err.ErrorType(). Otherwise, the -// returned attribute has a value derived from the concrete type of err. -// -// The key of the returned attribute is [ErrorTypeKey]. -func ErrorType(err error) attribute.KeyValue { - if err == nil { - return ErrorTypeOther - } - - return ErrorTypeKey.String(errorType(err)) -} - -func errorType(err error) string { - var s string - if et, ok := err.(interface{ ErrorType() string }); ok { - // Prioritize the ErrorType method if available. - s = et.ErrorType() - } - if s == "" { - // Fallback to reflection if the ErrorType method is not supported or - // returns an empty value. - - t := reflect.TypeOf(err) - pkg, name := t.PkgPath(), t.Name() - if pkg != "" && name != "" { - s = pkg + "." + name - } else { - // The type has no package path or name (predeclared, not-defined, - // or alias for a not-defined type). - // - // This is not guaranteed to be unique, but is a best effort. - s = t.String() - } - } - return s -} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/exception.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/exception.go deleted file mode 100644 index 7b688ecc33..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/exception.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -package semconv // import "go.opentelemetry.io/otel/semconv/v1.39.0" - -const ( - // ExceptionEventName is the name of the Span event representing an exception. - ExceptionEventName = "exception" -) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/httpconv/metric.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/httpconv/metric.go deleted file mode 100644 index cb993812a8..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/httpconv/metric.go +++ /dev/null @@ -1,1733 +0,0 @@ -// Code generated from semantic convention specification. DO NOT EDIT. - -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -// Package httpconv provides types and functionality for OpenTelemetry semantic -// conventions in the "http" namespace. -package httpconv - -import ( - "context" - "sync" - - "go.opentelemetry.io/otel/attribute" - "go.opentelemetry.io/otel/metric" - "go.opentelemetry.io/otel/metric/noop" -) - -var ( - addOptPool = &sync.Pool{New: func() any { return &[]metric.AddOption{} }} - recOptPool = &sync.Pool{New: func() any { return &[]metric.RecordOption{} }} -) - -// ErrorTypeAttr is an attribute conforming to the error.type semantic -// conventions. It represents the describes a class of error the operation ended -// with. -type ErrorTypeAttr string - -var ( - // ErrorTypeOther is a fallback error value to be used when the instrumentation - // doesn't define a custom value. - ErrorTypeOther ErrorTypeAttr = "_OTHER" -) - -// ConnectionStateAttr is an attribute conforming to the http.connection.state -// semantic conventions. It represents the state of the HTTP connection in the -// HTTP connection pool. -type ConnectionStateAttr string - -var ( - // ConnectionStateActive is the active state. - ConnectionStateActive ConnectionStateAttr = "active" - // ConnectionStateIdle is the idle state. - ConnectionStateIdle ConnectionStateAttr = "idle" -) - -// RequestMethodAttr is an attribute conforming to the http.request.method -// semantic conventions. It represents the HTTP request method. -type RequestMethodAttr string - -var ( - // RequestMethodConnect is the CONNECT method. - RequestMethodConnect RequestMethodAttr = "CONNECT" - // RequestMethodDelete is the DELETE method. - RequestMethodDelete RequestMethodAttr = "DELETE" - // RequestMethodGet is the GET method. - RequestMethodGet RequestMethodAttr = "GET" - // RequestMethodHead is the HEAD method. - RequestMethodHead RequestMethodAttr = "HEAD" - // RequestMethodOptions is the OPTIONS method. - RequestMethodOptions RequestMethodAttr = "OPTIONS" - // RequestMethodPatch is the PATCH method. - RequestMethodPatch RequestMethodAttr = "PATCH" - // RequestMethodPost is the POST method. - RequestMethodPost RequestMethodAttr = "POST" - // RequestMethodPut is the PUT method. - RequestMethodPut RequestMethodAttr = "PUT" - // RequestMethodTrace is the TRACE method. - RequestMethodTrace RequestMethodAttr = "TRACE" - // RequestMethodQuery is the QUERY method. - RequestMethodQuery RequestMethodAttr = "QUERY" - // RequestMethodOther is the any HTTP method that the instrumentation has no - // prior knowledge of. - RequestMethodOther RequestMethodAttr = "_OTHER" -) - -// UserAgentSyntheticTypeAttr is an attribute conforming to the -// user_agent.synthetic.type semantic conventions. It represents the specifies -// the category of synthetic traffic, such as tests or bots. -type UserAgentSyntheticTypeAttr string - -var ( - // UserAgentSyntheticTypeBot is the bot source. - UserAgentSyntheticTypeBot UserAgentSyntheticTypeAttr = "bot" - // UserAgentSyntheticTypeTest is the synthetic test source. - UserAgentSyntheticTypeTest UserAgentSyntheticTypeAttr = "test" -) - -// ClientActiveRequests is an instrument used to record metric values conforming -// to the "http.client.active_requests" semantic conventions. It represents the -// number of active HTTP requests. -type ClientActiveRequests struct { - metric.Int64UpDownCounter -} - -var newClientActiveRequestsOpts = []metric.Int64UpDownCounterOption{ - metric.WithDescription("Number of active HTTP requests."), - metric.WithUnit("{request}"), -} - -// NewClientActiveRequests returns a new ClientActiveRequests instrument. -func NewClientActiveRequests( - m metric.Meter, - opt ...metric.Int64UpDownCounterOption, -) (ClientActiveRequests, error) { - // Check if the meter is nil. - if m == nil { - return ClientActiveRequests{noop.Int64UpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newClientActiveRequestsOpts - } else { - opt = append(opt, newClientActiveRequestsOpts...) - } - - i, err := m.Int64UpDownCounter( - "http.client.active_requests", - opt..., - ) - if err != nil { - return ClientActiveRequests{noop.Int64UpDownCounter{}}, err - } - return ClientActiveRequests{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m ClientActiveRequests) Inst() metric.Int64UpDownCounter { - return m.Int64UpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (ClientActiveRequests) Name() string { - return "http.client.active_requests" -} - -// Unit returns the semantic convention unit of the instrument -func (ClientActiveRequests) Unit() string { - return "{request}" -} - -// Description returns the semantic convention description of the instrument -func (ClientActiveRequests) Description() string { - return "Number of active HTTP requests." -} - -// Add adds incr to the existing count for attrs. -// -// The serverAddress is the server domain name if available without reverse DNS -// lookup; otherwise, IP address or Unix domain socket name. -// -// The serverPort is the server port number. -// -// All additional attrs passed are included in the recorded value. -func (m ClientActiveRequests) Add( - ctx context.Context, - incr int64, - serverAddress string, - serverPort int, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - append( - attrs, - attribute.String("server.address", serverAddress), - attribute.Int("server.port", serverPort), - )..., - ), - ) - - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -func (m ClientActiveRequests) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AttrURLTemplate returns an optional attribute for the "url.template" semantic -// convention. It represents the low-cardinality template of an -// [absolute path reference]. -// -// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 -func (ClientActiveRequests) AttrURLTemplate(val string) attribute.KeyValue { - return attribute.String("url.template", val) -} - -// AttrRequestMethod returns an optional attribute for the "http.request.method" -// semantic convention. It represents the HTTP request method. -func (ClientActiveRequests) AttrRequestMethod(val RequestMethodAttr) attribute.KeyValue { - return attribute.String("http.request.method", string(val)) -} - -// AttrURLScheme returns an optional attribute for the "url.scheme" semantic -// convention. It represents the [URI scheme] component identifying the used -// protocol. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -func (ClientActiveRequests) AttrURLScheme(val string) attribute.KeyValue { - return attribute.String("url.scheme", val) -} - -// ClientConnectionDuration is an instrument used to record metric values -// conforming to the "http.client.connection.duration" semantic conventions. It -// represents the duration of the successfully established outbound HTTP -// connections. -type ClientConnectionDuration struct { - metric.Float64Histogram -} - -var newClientConnectionDurationOpts = []metric.Float64HistogramOption{ - metric.WithDescription("The duration of the successfully established outbound HTTP connections."), - metric.WithUnit("s"), -} - -// NewClientConnectionDuration returns a new ClientConnectionDuration instrument. -func NewClientConnectionDuration( - m metric.Meter, - opt ...metric.Float64HistogramOption, -) (ClientConnectionDuration, error) { - // Check if the meter is nil. - if m == nil { - return ClientConnectionDuration{noop.Float64Histogram{}}, nil - } - - if len(opt) == 0 { - opt = newClientConnectionDurationOpts - } else { - opt = append(opt, newClientConnectionDurationOpts...) - } - - i, err := m.Float64Histogram( - "http.client.connection.duration", - opt..., - ) - if err != nil { - return ClientConnectionDuration{noop.Float64Histogram{}}, err - } - return ClientConnectionDuration{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m ClientConnectionDuration) Inst() metric.Float64Histogram { - return m.Float64Histogram -} - -// Name returns the semantic convention name of the instrument. -func (ClientConnectionDuration) Name() string { - return "http.client.connection.duration" -} - -// Unit returns the semantic convention unit of the instrument -func (ClientConnectionDuration) Unit() string { - return "s" -} - -// Description returns the semantic convention description of the instrument -func (ClientConnectionDuration) Description() string { - return "The duration of the successfully established outbound HTTP connections." -} - -// Record records val to the current distribution for attrs. -// -// The serverAddress is the server domain name if available without reverse DNS -// lookup; otherwise, IP address or Unix domain socket name. -// -// The serverPort is the server port number. -// -// All additional attrs passed are included in the recorded value. -func (m ClientConnectionDuration) Record( - ctx context.Context, - val float64, - serverAddress string, - serverPort int, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Float64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - append( - attrs, - attribute.String("server.address", serverAddress), - attribute.Int("server.port", serverPort), - )..., - ), - ) - - m.Float64Histogram.Record(ctx, val, *o...) -} - -// RecordSet records val to the current distribution for set. -func (m ClientConnectionDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { - if set.Len() == 0 { - m.Float64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Float64Histogram.Record(ctx, val, *o...) -} - -// AttrNetworkPeerAddress returns an optional attribute for the -// "network.peer.address" semantic convention. It represents the peer address of -// the network connection - IP address or Unix domain socket name. -func (ClientConnectionDuration) AttrNetworkPeerAddress(val string) attribute.KeyValue { - return attribute.String("network.peer.address", val) -} - -// AttrNetworkProtocolVersion returns an optional attribute for the -// "network.protocol.version" semantic convention. It represents the actual -// version of the protocol used for network communication. -func (ClientConnectionDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { - return attribute.String("network.protocol.version", val) -} - -// AttrURLScheme returns an optional attribute for the "url.scheme" semantic -// convention. It represents the [URI scheme] component identifying the used -// protocol. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -func (ClientConnectionDuration) AttrURLScheme(val string) attribute.KeyValue { - return attribute.String("url.scheme", val) -} - -// ClientOpenConnections is an instrument used to record metric values conforming -// to the "http.client.open_connections" semantic conventions. It represents the -// number of outbound HTTP connections that are currently active or idle on the -// client. -type ClientOpenConnections struct { - metric.Int64UpDownCounter -} - -var newClientOpenConnectionsOpts = []metric.Int64UpDownCounterOption{ - metric.WithDescription("Number of outbound HTTP connections that are currently active or idle on the client."), - metric.WithUnit("{connection}"), -} - -// NewClientOpenConnections returns a new ClientOpenConnections instrument. -func NewClientOpenConnections( - m metric.Meter, - opt ...metric.Int64UpDownCounterOption, -) (ClientOpenConnections, error) { - // Check if the meter is nil. - if m == nil { - return ClientOpenConnections{noop.Int64UpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newClientOpenConnectionsOpts - } else { - opt = append(opt, newClientOpenConnectionsOpts...) - } - - i, err := m.Int64UpDownCounter( - "http.client.open_connections", - opt..., - ) - if err != nil { - return ClientOpenConnections{noop.Int64UpDownCounter{}}, err - } - return ClientOpenConnections{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m ClientOpenConnections) Inst() metric.Int64UpDownCounter { - return m.Int64UpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (ClientOpenConnections) Name() string { - return "http.client.open_connections" -} - -// Unit returns the semantic convention unit of the instrument -func (ClientOpenConnections) Unit() string { - return "{connection}" -} - -// Description returns the semantic convention description of the instrument -func (ClientOpenConnections) Description() string { - return "Number of outbound HTTP connections that are currently active or idle on the client." -} - -// Add adds incr to the existing count for attrs. -// -// The connectionState is the state of the HTTP connection in the HTTP connection -// pool. -// -// The serverAddress is the server domain name if available without reverse DNS -// lookup; otherwise, IP address or Unix domain socket name. -// -// The serverPort is the server port number. -// -// All additional attrs passed are included in the recorded value. -func (m ClientOpenConnections) Add( - ctx context.Context, - incr int64, - connectionState ConnectionStateAttr, - serverAddress string, - serverPort int, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - append( - attrs, - attribute.String("http.connection.state", string(connectionState)), - attribute.String("server.address", serverAddress), - attribute.Int("server.port", serverPort), - )..., - ), - ) - - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -func (m ClientOpenConnections) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AttrNetworkPeerAddress returns an optional attribute for the -// "network.peer.address" semantic convention. It represents the peer address of -// the network connection - IP address or Unix domain socket name. -func (ClientOpenConnections) AttrNetworkPeerAddress(val string) attribute.KeyValue { - return attribute.String("network.peer.address", val) -} - -// AttrNetworkProtocolVersion returns an optional attribute for the -// "network.protocol.version" semantic convention. It represents the actual -// version of the protocol used for network communication. -func (ClientOpenConnections) AttrNetworkProtocolVersion(val string) attribute.KeyValue { - return attribute.String("network.protocol.version", val) -} - -// AttrURLScheme returns an optional attribute for the "url.scheme" semantic -// convention. It represents the [URI scheme] component identifying the used -// protocol. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -func (ClientOpenConnections) AttrURLScheme(val string) attribute.KeyValue { - return attribute.String("url.scheme", val) -} - -// ClientRequestBodySize is an instrument used to record metric values conforming -// to the "http.client.request.body.size" semantic conventions. It represents the -// size of HTTP client request bodies. -type ClientRequestBodySize struct { - metric.Int64Histogram -} - -var newClientRequestBodySizeOpts = []metric.Int64HistogramOption{ - metric.WithDescription("Size of HTTP client request bodies."), - metric.WithUnit("By"), -} - -// NewClientRequestBodySize returns a new ClientRequestBodySize instrument. -func NewClientRequestBodySize( - m metric.Meter, - opt ...metric.Int64HistogramOption, -) (ClientRequestBodySize, error) { - // Check if the meter is nil. - if m == nil { - return ClientRequestBodySize{noop.Int64Histogram{}}, nil - } - - if len(opt) == 0 { - opt = newClientRequestBodySizeOpts - } else { - opt = append(opt, newClientRequestBodySizeOpts...) - } - - i, err := m.Int64Histogram( - "http.client.request.body.size", - opt..., - ) - if err != nil { - return ClientRequestBodySize{noop.Int64Histogram{}}, err - } - return ClientRequestBodySize{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m ClientRequestBodySize) Inst() metric.Int64Histogram { - return m.Int64Histogram -} - -// Name returns the semantic convention name of the instrument. -func (ClientRequestBodySize) Name() string { - return "http.client.request.body.size" -} - -// Unit returns the semantic convention unit of the instrument -func (ClientRequestBodySize) Unit() string { - return "By" -} - -// Description returns the semantic convention description of the instrument -func (ClientRequestBodySize) Description() string { - return "Size of HTTP client request bodies." -} - -// Record records val to the current distribution for attrs. -// -// The requestMethod is the HTTP request method. -// -// The serverAddress is the server domain name if available without reverse DNS -// lookup; otherwise, IP address or Unix domain socket name. -// -// The serverPort is the server port number. -// -// All additional attrs passed are included in the recorded value. -// -// The size of the request payload body in bytes. This is the number of bytes -// transferred excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func (m ClientRequestBodySize) Record( - ctx context.Context, - val int64, - requestMethod RequestMethodAttr, - serverAddress string, - serverPort int, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - append( - attrs, - attribute.String("http.request.method", string(requestMethod)), - attribute.String("server.address", serverAddress), - attribute.Int("server.port", serverPort), - )..., - ), - ) - - m.Int64Histogram.Record(ctx, val, *o...) -} - -// RecordSet records val to the current distribution for set. -// -// The size of the request payload body in bytes. This is the number of bytes -// transferred excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func (m ClientRequestBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Histogram.Record(ctx, val, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (ClientRequestBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrResponseStatusCode returns an optional attribute for the -// "http.response.status_code" semantic convention. It represents the -// [HTTP response status code]. -// -// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 -func (ClientRequestBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { - return attribute.Int("http.response.status_code", val) -} - -// AttrNetworkProtocolName returns an optional attribute for the -// "network.protocol.name" semantic convention. It represents the -// [OSI application layer] or non-OSI equivalent. -// -// [OSI application layer]: https://wikipedia.org/wiki/Application_layer -func (ClientRequestBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { - return attribute.String("network.protocol.name", val) -} - -// AttrURLTemplate returns an optional attribute for the "url.template" semantic -// convention. It represents the low-cardinality template of an -// [absolute path reference]. -// -// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 -func (ClientRequestBodySize) AttrURLTemplate(val string) attribute.KeyValue { - return attribute.String("url.template", val) -} - -// AttrNetworkProtocolVersion returns an optional attribute for the -// "network.protocol.version" semantic convention. It represents the actual -// version of the protocol used for network communication. -func (ClientRequestBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { - return attribute.String("network.protocol.version", val) -} - -// AttrURLScheme returns an optional attribute for the "url.scheme" semantic -// convention. It represents the [URI scheme] component identifying the used -// protocol. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -func (ClientRequestBodySize) AttrURLScheme(val string) attribute.KeyValue { - return attribute.String("url.scheme", val) -} - -// ClientRequestDuration is an instrument used to record metric values conforming -// to the "http.client.request.duration" semantic conventions. It represents the -// duration of HTTP client requests. -type ClientRequestDuration struct { - metric.Float64Histogram -} - -var newClientRequestDurationOpts = []metric.Float64HistogramOption{ - metric.WithDescription("Duration of HTTP client requests."), - metric.WithUnit("s"), -} - -// NewClientRequestDuration returns a new ClientRequestDuration instrument. -func NewClientRequestDuration( - m metric.Meter, - opt ...metric.Float64HistogramOption, -) (ClientRequestDuration, error) { - // Check if the meter is nil. - if m == nil { - return ClientRequestDuration{noop.Float64Histogram{}}, nil - } - - if len(opt) == 0 { - opt = newClientRequestDurationOpts - } else { - opt = append(opt, newClientRequestDurationOpts...) - } - - i, err := m.Float64Histogram( - "http.client.request.duration", - opt..., - ) - if err != nil { - return ClientRequestDuration{noop.Float64Histogram{}}, err - } - return ClientRequestDuration{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m ClientRequestDuration) Inst() metric.Float64Histogram { - return m.Float64Histogram -} - -// Name returns the semantic convention name of the instrument. -func (ClientRequestDuration) Name() string { - return "http.client.request.duration" -} - -// Unit returns the semantic convention unit of the instrument -func (ClientRequestDuration) Unit() string { - return "s" -} - -// Description returns the semantic convention description of the instrument -func (ClientRequestDuration) Description() string { - return "Duration of HTTP client requests." -} - -// Record records val to the current distribution for attrs. -// -// The requestMethod is the HTTP request method. -// -// The serverAddress is the server domain name if available without reverse DNS -// lookup; otherwise, IP address or Unix domain socket name. -// -// The serverPort is the server port number. -// -// All additional attrs passed are included in the recorded value. -func (m ClientRequestDuration) Record( - ctx context.Context, - val float64, - requestMethod RequestMethodAttr, - serverAddress string, - serverPort int, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Float64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - append( - attrs, - attribute.String("http.request.method", string(requestMethod)), - attribute.String("server.address", serverAddress), - attribute.Int("server.port", serverPort), - )..., - ), - ) - - m.Float64Histogram.Record(ctx, val, *o...) -} - -// RecordSet records val to the current distribution for set. -func (m ClientRequestDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { - if set.Len() == 0 { - m.Float64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Float64Histogram.Record(ctx, val, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (ClientRequestDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrResponseStatusCode returns an optional attribute for the -// "http.response.status_code" semantic convention. It represents the -// [HTTP response status code]. -// -// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 -func (ClientRequestDuration) AttrResponseStatusCode(val int) attribute.KeyValue { - return attribute.Int("http.response.status_code", val) -} - -// AttrNetworkProtocolName returns an optional attribute for the -// "network.protocol.name" semantic convention. It represents the -// [OSI application layer] or non-OSI equivalent. -// -// [OSI application layer]: https://wikipedia.org/wiki/Application_layer -func (ClientRequestDuration) AttrNetworkProtocolName(val string) attribute.KeyValue { - return attribute.String("network.protocol.name", val) -} - -// AttrNetworkProtocolVersion returns an optional attribute for the -// "network.protocol.version" semantic convention. It represents the actual -// version of the protocol used for network communication. -func (ClientRequestDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { - return attribute.String("network.protocol.version", val) -} - -// AttrURLScheme returns an optional attribute for the "url.scheme" semantic -// convention. It represents the [URI scheme] component identifying the used -// protocol. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -func (ClientRequestDuration) AttrURLScheme(val string) attribute.KeyValue { - return attribute.String("url.scheme", val) -} - -// AttrURLTemplate returns an optional attribute for the "url.template" semantic -// convention. It represents the low-cardinality template of an -// [absolute path reference]. -// -// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 -func (ClientRequestDuration) AttrURLTemplate(val string) attribute.KeyValue { - return attribute.String("url.template", val) -} - -// ClientResponseBodySize is an instrument used to record metric values -// conforming to the "http.client.response.body.size" semantic conventions. It -// represents the size of HTTP client response bodies. -type ClientResponseBodySize struct { - metric.Int64Histogram -} - -var newClientResponseBodySizeOpts = []metric.Int64HistogramOption{ - metric.WithDescription("Size of HTTP client response bodies."), - metric.WithUnit("By"), -} - -// NewClientResponseBodySize returns a new ClientResponseBodySize instrument. -func NewClientResponseBodySize( - m metric.Meter, - opt ...metric.Int64HistogramOption, -) (ClientResponseBodySize, error) { - // Check if the meter is nil. - if m == nil { - return ClientResponseBodySize{noop.Int64Histogram{}}, nil - } - - if len(opt) == 0 { - opt = newClientResponseBodySizeOpts - } else { - opt = append(opt, newClientResponseBodySizeOpts...) - } - - i, err := m.Int64Histogram( - "http.client.response.body.size", - opt..., - ) - if err != nil { - return ClientResponseBodySize{noop.Int64Histogram{}}, err - } - return ClientResponseBodySize{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m ClientResponseBodySize) Inst() metric.Int64Histogram { - return m.Int64Histogram -} - -// Name returns the semantic convention name of the instrument. -func (ClientResponseBodySize) Name() string { - return "http.client.response.body.size" -} - -// Unit returns the semantic convention unit of the instrument -func (ClientResponseBodySize) Unit() string { - return "By" -} - -// Description returns the semantic convention description of the instrument -func (ClientResponseBodySize) Description() string { - return "Size of HTTP client response bodies." -} - -// Record records val to the current distribution for attrs. -// -// The requestMethod is the HTTP request method. -// -// The serverAddress is the server domain name if available without reverse DNS -// lookup; otherwise, IP address or Unix domain socket name. -// -// The serverPort is the server port number. -// -// All additional attrs passed are included in the recorded value. -// -// The size of the response payload body in bytes. This is the number of bytes -// transferred excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func (m ClientResponseBodySize) Record( - ctx context.Context, - val int64, - requestMethod RequestMethodAttr, - serverAddress string, - serverPort int, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - append( - attrs, - attribute.String("http.request.method", string(requestMethod)), - attribute.String("server.address", serverAddress), - attribute.Int("server.port", serverPort), - )..., - ), - ) - - m.Int64Histogram.Record(ctx, val, *o...) -} - -// RecordSet records val to the current distribution for set. -// -// The size of the response payload body in bytes. This is the number of bytes -// transferred excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func (m ClientResponseBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Histogram.Record(ctx, val, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (ClientResponseBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrResponseStatusCode returns an optional attribute for the -// "http.response.status_code" semantic convention. It represents the -// [HTTP response status code]. -// -// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 -func (ClientResponseBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { - return attribute.Int("http.response.status_code", val) -} - -// AttrNetworkProtocolName returns an optional attribute for the -// "network.protocol.name" semantic convention. It represents the -// [OSI application layer] or non-OSI equivalent. -// -// [OSI application layer]: https://wikipedia.org/wiki/Application_layer -func (ClientResponseBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { - return attribute.String("network.protocol.name", val) -} - -// AttrURLTemplate returns an optional attribute for the "url.template" semantic -// convention. It represents the low-cardinality template of an -// [absolute path reference]. -// -// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 -func (ClientResponseBodySize) AttrURLTemplate(val string) attribute.KeyValue { - return attribute.String("url.template", val) -} - -// AttrNetworkProtocolVersion returns an optional attribute for the -// "network.protocol.version" semantic convention. It represents the actual -// version of the protocol used for network communication. -func (ClientResponseBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { - return attribute.String("network.protocol.version", val) -} - -// AttrURLScheme returns an optional attribute for the "url.scheme" semantic -// convention. It represents the [URI scheme] component identifying the used -// protocol. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -func (ClientResponseBodySize) AttrURLScheme(val string) attribute.KeyValue { - return attribute.String("url.scheme", val) -} - -// ServerActiveRequests is an instrument used to record metric values conforming -// to the "http.server.active_requests" semantic conventions. It represents the -// number of active HTTP server requests. -type ServerActiveRequests struct { - metric.Int64UpDownCounter -} - -var newServerActiveRequestsOpts = []metric.Int64UpDownCounterOption{ - metric.WithDescription("Number of active HTTP server requests."), - metric.WithUnit("{request}"), -} - -// NewServerActiveRequests returns a new ServerActiveRequests instrument. -func NewServerActiveRequests( - m metric.Meter, - opt ...metric.Int64UpDownCounterOption, -) (ServerActiveRequests, error) { - // Check if the meter is nil. - if m == nil { - return ServerActiveRequests{noop.Int64UpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newServerActiveRequestsOpts - } else { - opt = append(opt, newServerActiveRequestsOpts...) - } - - i, err := m.Int64UpDownCounter( - "http.server.active_requests", - opt..., - ) - if err != nil { - return ServerActiveRequests{noop.Int64UpDownCounter{}}, err - } - return ServerActiveRequests{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m ServerActiveRequests) Inst() metric.Int64UpDownCounter { - return m.Int64UpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (ServerActiveRequests) Name() string { - return "http.server.active_requests" -} - -// Unit returns the semantic convention unit of the instrument -func (ServerActiveRequests) Unit() string { - return "{request}" -} - -// Description returns the semantic convention description of the instrument -func (ServerActiveRequests) Description() string { - return "Number of active HTTP server requests." -} - -// Add adds incr to the existing count for attrs. -// -// The requestMethod is the HTTP request method. -// -// The urlScheme is the the [URI scheme] component identifying the used protocol. -// -// All additional attrs passed are included in the recorded value. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -func (m ServerActiveRequests) Add( - ctx context.Context, - incr int64, - requestMethod RequestMethodAttr, - urlScheme string, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - append( - attrs, - attribute.String("http.request.method", string(requestMethod)), - attribute.String("url.scheme", urlScheme), - )..., - ), - ) - - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -func (m ServerActiveRequests) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the name of the local HTTP server that -// received the request. -func (ServerActiveRequests) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the port of the local HTTP server that received the -// request. -func (ServerActiveRequests) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// ServerRequestBodySize is an instrument used to record metric values conforming -// to the "http.server.request.body.size" semantic conventions. It represents the -// size of HTTP server request bodies. -type ServerRequestBodySize struct { - metric.Int64Histogram -} - -var newServerRequestBodySizeOpts = []metric.Int64HistogramOption{ - metric.WithDescription("Size of HTTP server request bodies."), - metric.WithUnit("By"), -} - -// NewServerRequestBodySize returns a new ServerRequestBodySize instrument. -func NewServerRequestBodySize( - m metric.Meter, - opt ...metric.Int64HistogramOption, -) (ServerRequestBodySize, error) { - // Check if the meter is nil. - if m == nil { - return ServerRequestBodySize{noop.Int64Histogram{}}, nil - } - - if len(opt) == 0 { - opt = newServerRequestBodySizeOpts - } else { - opt = append(opt, newServerRequestBodySizeOpts...) - } - - i, err := m.Int64Histogram( - "http.server.request.body.size", - opt..., - ) - if err != nil { - return ServerRequestBodySize{noop.Int64Histogram{}}, err - } - return ServerRequestBodySize{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m ServerRequestBodySize) Inst() metric.Int64Histogram { - return m.Int64Histogram -} - -// Name returns the semantic convention name of the instrument. -func (ServerRequestBodySize) Name() string { - return "http.server.request.body.size" -} - -// Unit returns the semantic convention unit of the instrument -func (ServerRequestBodySize) Unit() string { - return "By" -} - -// Description returns the semantic convention description of the instrument -func (ServerRequestBodySize) Description() string { - return "Size of HTTP server request bodies." -} - -// Record records val to the current distribution for attrs. -// -// The requestMethod is the HTTP request method. -// -// The urlScheme is the the [URI scheme] component identifying the used protocol. -// -// All additional attrs passed are included in the recorded value. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -// -// The size of the request payload body in bytes. This is the number of bytes -// transferred excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func (m ServerRequestBodySize) Record( - ctx context.Context, - val int64, - requestMethod RequestMethodAttr, - urlScheme string, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - append( - attrs, - attribute.String("http.request.method", string(requestMethod)), - attribute.String("url.scheme", urlScheme), - )..., - ), - ) - - m.Int64Histogram.Record(ctx, val, *o...) -} - -// RecordSet records val to the current distribution for set. -// -// The size of the request payload body in bytes. This is the number of bytes -// transferred excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func (m ServerRequestBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Histogram.Record(ctx, val, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (ServerRequestBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrResponseStatusCode returns an optional attribute for the -// "http.response.status_code" semantic convention. It represents the -// [HTTP response status code]. -// -// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 -func (ServerRequestBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { - return attribute.Int("http.response.status_code", val) -} - -// AttrRoute returns an optional attribute for the "http.route" semantic -// convention. It represents the matched route template for the request. This -// MUST be low-cardinality and include all static path segments, with dynamic -// path segments represented with placeholders. -func (ServerRequestBodySize) AttrRoute(val string) attribute.KeyValue { - return attribute.String("http.route", val) -} - -// AttrNetworkProtocolName returns an optional attribute for the -// "network.protocol.name" semantic convention. It represents the -// [OSI application layer] or non-OSI equivalent. -// -// [OSI application layer]: https://wikipedia.org/wiki/Application_layer -func (ServerRequestBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { - return attribute.String("network.protocol.name", val) -} - -// AttrNetworkProtocolVersion returns an optional attribute for the -// "network.protocol.version" semantic convention. It represents the actual -// version of the protocol used for network communication. -func (ServerRequestBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { - return attribute.String("network.protocol.version", val) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the name of the local HTTP server that -// received the request. -func (ServerRequestBodySize) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the port of the local HTTP server that received the -// request. -func (ServerRequestBodySize) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// AttrUserAgentSyntheticType returns an optional attribute for the -// "user_agent.synthetic.type" semantic convention. It represents the specifies -// the category of synthetic traffic, such as tests or bots. -func (ServerRequestBodySize) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { - return attribute.String("user_agent.synthetic.type", string(val)) -} - -// ServerRequestDuration is an instrument used to record metric values conforming -// to the "http.server.request.duration" semantic conventions. It represents the -// duration of HTTP server requests. -type ServerRequestDuration struct { - metric.Float64Histogram -} - -var newServerRequestDurationOpts = []metric.Float64HistogramOption{ - metric.WithDescription("Duration of HTTP server requests."), - metric.WithUnit("s"), -} - -// NewServerRequestDuration returns a new ServerRequestDuration instrument. -func NewServerRequestDuration( - m metric.Meter, - opt ...metric.Float64HistogramOption, -) (ServerRequestDuration, error) { - // Check if the meter is nil. - if m == nil { - return ServerRequestDuration{noop.Float64Histogram{}}, nil - } - - if len(opt) == 0 { - opt = newServerRequestDurationOpts - } else { - opt = append(opt, newServerRequestDurationOpts...) - } - - i, err := m.Float64Histogram( - "http.server.request.duration", - opt..., - ) - if err != nil { - return ServerRequestDuration{noop.Float64Histogram{}}, err - } - return ServerRequestDuration{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m ServerRequestDuration) Inst() metric.Float64Histogram { - return m.Float64Histogram -} - -// Name returns the semantic convention name of the instrument. -func (ServerRequestDuration) Name() string { - return "http.server.request.duration" -} - -// Unit returns the semantic convention unit of the instrument -func (ServerRequestDuration) Unit() string { - return "s" -} - -// Description returns the semantic convention description of the instrument -func (ServerRequestDuration) Description() string { - return "Duration of HTTP server requests." -} - -// Record records val to the current distribution for attrs. -// -// The requestMethod is the HTTP request method. -// -// The urlScheme is the the [URI scheme] component identifying the used protocol. -// -// All additional attrs passed are included in the recorded value. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -func (m ServerRequestDuration) Record( - ctx context.Context, - val float64, - requestMethod RequestMethodAttr, - urlScheme string, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Float64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - append( - attrs, - attribute.String("http.request.method", string(requestMethod)), - attribute.String("url.scheme", urlScheme), - )..., - ), - ) - - m.Float64Histogram.Record(ctx, val, *o...) -} - -// RecordSet records val to the current distribution for set. -func (m ServerRequestDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { - if set.Len() == 0 { - m.Float64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Float64Histogram.Record(ctx, val, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (ServerRequestDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrResponseStatusCode returns an optional attribute for the -// "http.response.status_code" semantic convention. It represents the -// [HTTP response status code]. -// -// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 -func (ServerRequestDuration) AttrResponseStatusCode(val int) attribute.KeyValue { - return attribute.Int("http.response.status_code", val) -} - -// AttrRoute returns an optional attribute for the "http.route" semantic -// convention. It represents the matched route template for the request. This -// MUST be low-cardinality and include all static path segments, with dynamic -// path segments represented with placeholders. -func (ServerRequestDuration) AttrRoute(val string) attribute.KeyValue { - return attribute.String("http.route", val) -} - -// AttrNetworkProtocolName returns an optional attribute for the -// "network.protocol.name" semantic convention. It represents the -// [OSI application layer] or non-OSI equivalent. -// -// [OSI application layer]: https://wikipedia.org/wiki/Application_layer -func (ServerRequestDuration) AttrNetworkProtocolName(val string) attribute.KeyValue { - return attribute.String("network.protocol.name", val) -} - -// AttrNetworkProtocolVersion returns an optional attribute for the -// "network.protocol.version" semantic convention. It represents the actual -// version of the protocol used for network communication. -func (ServerRequestDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { - return attribute.String("network.protocol.version", val) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the name of the local HTTP server that -// received the request. -func (ServerRequestDuration) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the port of the local HTTP server that received the -// request. -func (ServerRequestDuration) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// AttrUserAgentSyntheticType returns an optional attribute for the -// "user_agent.synthetic.type" semantic convention. It represents the specifies -// the category of synthetic traffic, such as tests or bots. -func (ServerRequestDuration) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { - return attribute.String("user_agent.synthetic.type", string(val)) -} - -// ServerResponseBodySize is an instrument used to record metric values -// conforming to the "http.server.response.body.size" semantic conventions. It -// represents the size of HTTP server response bodies. -type ServerResponseBodySize struct { - metric.Int64Histogram -} - -var newServerResponseBodySizeOpts = []metric.Int64HistogramOption{ - metric.WithDescription("Size of HTTP server response bodies."), - metric.WithUnit("By"), -} - -// NewServerResponseBodySize returns a new ServerResponseBodySize instrument. -func NewServerResponseBodySize( - m metric.Meter, - opt ...metric.Int64HistogramOption, -) (ServerResponseBodySize, error) { - // Check if the meter is nil. - if m == nil { - return ServerResponseBodySize{noop.Int64Histogram{}}, nil - } - - if len(opt) == 0 { - opt = newServerResponseBodySizeOpts - } else { - opt = append(opt, newServerResponseBodySizeOpts...) - } - - i, err := m.Int64Histogram( - "http.server.response.body.size", - opt..., - ) - if err != nil { - return ServerResponseBodySize{noop.Int64Histogram{}}, err - } - return ServerResponseBodySize{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m ServerResponseBodySize) Inst() metric.Int64Histogram { - return m.Int64Histogram -} - -// Name returns the semantic convention name of the instrument. -func (ServerResponseBodySize) Name() string { - return "http.server.response.body.size" -} - -// Unit returns the semantic convention unit of the instrument -func (ServerResponseBodySize) Unit() string { - return "By" -} - -// Description returns the semantic convention description of the instrument -func (ServerResponseBodySize) Description() string { - return "Size of HTTP server response bodies." -} - -// Record records val to the current distribution for attrs. -// -// The requestMethod is the HTTP request method. -// -// The urlScheme is the the [URI scheme] component identifying the used protocol. -// -// All additional attrs passed are included in the recorded value. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -// -// The size of the response payload body in bytes. This is the number of bytes -// transferred excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func (m ServerResponseBodySize) Record( - ctx context.Context, - val int64, - requestMethod RequestMethodAttr, - urlScheme string, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - append( - attrs, - attribute.String("http.request.method", string(requestMethod)), - attribute.String("url.scheme", urlScheme), - )..., - ), - ) - - m.Int64Histogram.Record(ctx, val, *o...) -} - -// RecordSet records val to the current distribution for set. -// -// The size of the response payload body in bytes. This is the number of bytes -// transferred excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func (m ServerResponseBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Histogram.Record(ctx, val, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (ServerResponseBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrResponseStatusCode returns an optional attribute for the -// "http.response.status_code" semantic convention. It represents the -// [HTTP response status code]. -// -// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 -func (ServerResponseBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { - return attribute.Int("http.response.status_code", val) -} - -// AttrRoute returns an optional attribute for the "http.route" semantic -// convention. It represents the matched route template for the request. This -// MUST be low-cardinality and include all static path segments, with dynamic -// path segments represented with placeholders. -func (ServerResponseBodySize) AttrRoute(val string) attribute.KeyValue { - return attribute.String("http.route", val) -} - -// AttrNetworkProtocolName returns an optional attribute for the -// "network.protocol.name" semantic convention. It represents the -// [OSI application layer] or non-OSI equivalent. -// -// [OSI application layer]: https://wikipedia.org/wiki/Application_layer -func (ServerResponseBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { - return attribute.String("network.protocol.name", val) -} - -// AttrNetworkProtocolVersion returns an optional attribute for the -// "network.protocol.version" semantic convention. It represents the actual -// version of the protocol used for network communication. -func (ServerResponseBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { - return attribute.String("network.protocol.version", val) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the name of the local HTTP server that -// received the request. -func (ServerResponseBodySize) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the port of the local HTTP server that received the -// request. -func (ServerResponseBodySize) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// AttrUserAgentSyntheticType returns an optional attribute for the -// "user_agent.synthetic.type" semantic convention. It represents the specifies -// the category of synthetic traffic, such as tests or bots. -func (ServerResponseBodySize) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { - return attribute.String("user_agent.synthetic.type", string(val)) -} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/otelconv/metric.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/otelconv/metric.go deleted file mode 100644 index 901da86985..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/otelconv/metric.go +++ /dev/null @@ -1,2222 +0,0 @@ -// Code generated from semantic convention specification. DO NOT EDIT. - -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -// Package otelconv provides types and functionality for OpenTelemetry semantic -// conventions in the "otel" namespace. -package otelconv - -import ( - "context" - "sync" - - "go.opentelemetry.io/otel/attribute" - "go.opentelemetry.io/otel/metric" - "go.opentelemetry.io/otel/metric/noop" -) - -var ( - addOptPool = &sync.Pool{New: func() any { return &[]metric.AddOption{} }} - recOptPool = &sync.Pool{New: func() any { return &[]metric.RecordOption{} }} -) - -// ErrorTypeAttr is an attribute conforming to the error.type semantic -// conventions. It represents the describes a class of error the operation ended -// with. -type ErrorTypeAttr string - -var ( - // ErrorTypeOther is a fallback error value to be used when the instrumentation - // doesn't define a custom value. - ErrorTypeOther ErrorTypeAttr = "_OTHER" -) - -// ComponentTypeAttr is an attribute conforming to the otel.component.type -// semantic conventions. It represents a name identifying the type of the -// OpenTelemetry component. -type ComponentTypeAttr string - -var ( - // ComponentTypeBatchingSpanProcessor is the builtin SDK batching span - // processor. - ComponentTypeBatchingSpanProcessor ComponentTypeAttr = "batching_span_processor" - // ComponentTypeSimpleSpanProcessor is the builtin SDK simple span processor. - ComponentTypeSimpleSpanProcessor ComponentTypeAttr = "simple_span_processor" - // ComponentTypeBatchingLogProcessor is the builtin SDK batching log record - // processor. - ComponentTypeBatchingLogProcessor ComponentTypeAttr = "batching_log_processor" - // ComponentTypeSimpleLogProcessor is the builtin SDK simple log record - // processor. - ComponentTypeSimpleLogProcessor ComponentTypeAttr = "simple_log_processor" - // ComponentTypeOtlpGRPCSpanExporter is the OTLP span exporter over gRPC with - // protobuf serialization. - ComponentTypeOtlpGRPCSpanExporter ComponentTypeAttr = "otlp_grpc_span_exporter" - // ComponentTypeOtlpHTTPSpanExporter is the OTLP span exporter over HTTP with - // protobuf serialization. - ComponentTypeOtlpHTTPSpanExporter ComponentTypeAttr = "otlp_http_span_exporter" - // ComponentTypeOtlpHTTPJSONSpanExporter is the OTLP span exporter over HTTP - // with JSON serialization. - ComponentTypeOtlpHTTPJSONSpanExporter ComponentTypeAttr = "otlp_http_json_span_exporter" - // ComponentTypeZipkinHTTPSpanExporter is the zipkin span exporter over HTTP. - ComponentTypeZipkinHTTPSpanExporter ComponentTypeAttr = "zipkin_http_span_exporter" - // ComponentTypeOtlpGRPCLogExporter is the OTLP log record exporter over gRPC - // with protobuf serialization. - ComponentTypeOtlpGRPCLogExporter ComponentTypeAttr = "otlp_grpc_log_exporter" - // ComponentTypeOtlpHTTPLogExporter is the OTLP log record exporter over HTTP - // with protobuf serialization. - ComponentTypeOtlpHTTPLogExporter ComponentTypeAttr = "otlp_http_log_exporter" - // ComponentTypeOtlpHTTPJSONLogExporter is the OTLP log record exporter over - // HTTP with JSON serialization. - ComponentTypeOtlpHTTPJSONLogExporter ComponentTypeAttr = "otlp_http_json_log_exporter" - // ComponentTypePeriodicMetricReader is the builtin SDK periodically exporting - // metric reader. - ComponentTypePeriodicMetricReader ComponentTypeAttr = "periodic_metric_reader" - // ComponentTypeOtlpGRPCMetricExporter is the OTLP metric exporter over gRPC - // with protobuf serialization. - ComponentTypeOtlpGRPCMetricExporter ComponentTypeAttr = "otlp_grpc_metric_exporter" - // ComponentTypeOtlpHTTPMetricExporter is the OTLP metric exporter over HTTP - // with protobuf serialization. - ComponentTypeOtlpHTTPMetricExporter ComponentTypeAttr = "otlp_http_metric_exporter" - // ComponentTypeOtlpHTTPJSONMetricExporter is the OTLP metric exporter over HTTP - // with JSON serialization. - ComponentTypeOtlpHTTPJSONMetricExporter ComponentTypeAttr = "otlp_http_json_metric_exporter" - // ComponentTypePrometheusHTTPTextMetricExporter is the prometheus metric - // exporter over HTTP with the default text-based format. - ComponentTypePrometheusHTTPTextMetricExporter ComponentTypeAttr = "prometheus_http_text_metric_exporter" -) - -// SpanParentOriginAttr is an attribute conforming to the otel.span.parent.origin -// semantic conventions. It represents the determines whether the span has a -// parent span, and if so, [whether it is a remote parent]. -// -// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote -type SpanParentOriginAttr string - -var ( - // SpanParentOriginNone is the span does not have a parent, it is a root span. - SpanParentOriginNone SpanParentOriginAttr = "none" - // SpanParentOriginLocal is the span has a parent and the parent's span context - // [isRemote()] is false. - // - // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote - SpanParentOriginLocal SpanParentOriginAttr = "local" - // SpanParentOriginRemote is the span has a parent and the parent's span context - // [isRemote()] is true. - // - // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote - SpanParentOriginRemote SpanParentOriginAttr = "remote" -) - -// SpanSamplingResultAttr is an attribute conforming to the -// otel.span.sampling_result semantic conventions. It represents the result value -// of the sampler for this span. -type SpanSamplingResultAttr string - -var ( - // SpanSamplingResultDrop is the span is not sampled and not recording. - SpanSamplingResultDrop SpanSamplingResultAttr = "DROP" - // SpanSamplingResultRecordOnly is the span is not sampled, but recording. - SpanSamplingResultRecordOnly SpanSamplingResultAttr = "RECORD_ONLY" - // SpanSamplingResultRecordAndSample is the span is sampled and recording. - SpanSamplingResultRecordAndSample SpanSamplingResultAttr = "RECORD_AND_SAMPLE" -) - -// SDKExporterLogExported is an instrument used to record metric values -// conforming to the "otel.sdk.exporter.log.exported" semantic conventions. It -// represents the number of log records for which the export has finished, either -// successful or failed. -type SDKExporterLogExported struct { - metric.Int64Counter -} - -var newSDKExporterLogExportedOpts = []metric.Int64CounterOption{ - metric.WithDescription("The number of log records for which the export has finished, either successful or failed."), - metric.WithUnit("{log_record}"), -} - -// NewSDKExporterLogExported returns a new SDKExporterLogExported instrument. -func NewSDKExporterLogExported( - m metric.Meter, - opt ...metric.Int64CounterOption, -) (SDKExporterLogExported, error) { - // Check if the meter is nil. - if m == nil { - return SDKExporterLogExported{noop.Int64Counter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKExporterLogExportedOpts - } else { - opt = append(opt, newSDKExporterLogExportedOpts...) - } - - i, err := m.Int64Counter( - "otel.sdk.exporter.log.exported", - opt..., - ) - if err != nil { - return SDKExporterLogExported{noop.Int64Counter{}}, err - } - return SDKExporterLogExported{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKExporterLogExported) Inst() metric.Int64Counter { - return m.Int64Counter -} - -// Name returns the semantic convention name of the instrument. -func (SDKExporterLogExported) Name() string { - return "otel.sdk.exporter.log.exported" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKExporterLogExported) Unit() string { - return "{log_record}" -} - -// Description returns the semantic convention description of the instrument -func (SDKExporterLogExported) Description() string { - return "The number of log records for which the export has finished, either successful or failed." -} - -// Add adds incr to the existing count for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -// For exporters with partial success semantics (e.g. OTLP with -// `rejected_log_records`), rejected log records MUST count as failed and only -// non-rejected log records count as success. -// If no rejection reason is available, `rejected` SHOULD be used as value for -// `error.type`. -func (m SDKExporterLogExported) Add( - ctx context.Context, - incr int64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -// For exporters with partial success semantics (e.g. OTLP with -// `rejected_log_records`), rejected log records MUST count as failed and only -// non-rejected log records count as success. -// If no rejection reason is available, `rejected` SHOULD be used as value for -// `error.type`. -func (m SDKExporterLogExported) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (SDKExporterLogExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKExporterLogExported) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKExporterLogExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the server domain name if available without -// reverse DNS lookup; otherwise, IP address or Unix domain socket name. -func (SDKExporterLogExported) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the server port number. -func (SDKExporterLogExported) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// SDKExporterLogInflight is an instrument used to record metric values -// conforming to the "otel.sdk.exporter.log.inflight" semantic conventions. It -// represents the number of log records which were passed to the exporter, but -// that have not been exported yet (neither successful, nor failed). -type SDKExporterLogInflight struct { - metric.Int64UpDownCounter -} - -var newSDKExporterLogInflightOpts = []metric.Int64UpDownCounterOption{ - metric.WithDescription("The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), - metric.WithUnit("{log_record}"), -} - -// NewSDKExporterLogInflight returns a new SDKExporterLogInflight instrument. -func NewSDKExporterLogInflight( - m metric.Meter, - opt ...metric.Int64UpDownCounterOption, -) (SDKExporterLogInflight, error) { - // Check if the meter is nil. - if m == nil { - return SDKExporterLogInflight{noop.Int64UpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKExporterLogInflightOpts - } else { - opt = append(opt, newSDKExporterLogInflightOpts...) - } - - i, err := m.Int64UpDownCounter( - "otel.sdk.exporter.log.inflight", - opt..., - ) - if err != nil { - return SDKExporterLogInflight{noop.Int64UpDownCounter{}}, err - } - return SDKExporterLogInflight{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKExporterLogInflight) Inst() metric.Int64UpDownCounter { - return m.Int64UpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (SDKExporterLogInflight) Name() string { - return "otel.sdk.exporter.log.inflight" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKExporterLogInflight) Unit() string { - return "{log_record}" -} - -// Description returns the semantic convention description of the instrument -func (SDKExporterLogInflight) Description() string { - return "The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." -} - -// Add adds incr to the existing count for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -func (m SDKExporterLogInflight) Add( - ctx context.Context, - incr int64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -func (m SDKExporterLogInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKExporterLogInflight) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKExporterLogInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the server domain name if available without -// reverse DNS lookup; otherwise, IP address or Unix domain socket name. -func (SDKExporterLogInflight) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the server port number. -func (SDKExporterLogInflight) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// SDKExporterMetricDataPointExported is an instrument used to record metric -// values conforming to the "otel.sdk.exporter.metric_data_point.exported" -// semantic conventions. It represents the number of metric data points for which -// the export has finished, either successful or failed. -type SDKExporterMetricDataPointExported struct { - metric.Int64Counter -} - -var newSDKExporterMetricDataPointExportedOpts = []metric.Int64CounterOption{ - metric.WithDescription("The number of metric data points for which the export has finished, either successful or failed."), - metric.WithUnit("{data_point}"), -} - -// NewSDKExporterMetricDataPointExported returns a new -// SDKExporterMetricDataPointExported instrument. -func NewSDKExporterMetricDataPointExported( - m metric.Meter, - opt ...metric.Int64CounterOption, -) (SDKExporterMetricDataPointExported, error) { - // Check if the meter is nil. - if m == nil { - return SDKExporterMetricDataPointExported{noop.Int64Counter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKExporterMetricDataPointExportedOpts - } else { - opt = append(opt, newSDKExporterMetricDataPointExportedOpts...) - } - - i, err := m.Int64Counter( - "otel.sdk.exporter.metric_data_point.exported", - opt..., - ) - if err != nil { - return SDKExporterMetricDataPointExported{noop.Int64Counter{}}, err - } - return SDKExporterMetricDataPointExported{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKExporterMetricDataPointExported) Inst() metric.Int64Counter { - return m.Int64Counter -} - -// Name returns the semantic convention name of the instrument. -func (SDKExporterMetricDataPointExported) Name() string { - return "otel.sdk.exporter.metric_data_point.exported" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKExporterMetricDataPointExported) Unit() string { - return "{data_point}" -} - -// Description returns the semantic convention description of the instrument -func (SDKExporterMetricDataPointExported) Description() string { - return "The number of metric data points for which the export has finished, either successful or failed." -} - -// Add adds incr to the existing count for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -// For exporters with partial success semantics (e.g. OTLP with -// `rejected_data_points`), rejected data points MUST count as failed and only -// non-rejected data points count as success. -// If no rejection reason is available, `rejected` SHOULD be used as value for -// `error.type`. -func (m SDKExporterMetricDataPointExported) Add( - ctx context.Context, - incr int64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -// For exporters with partial success semantics (e.g. OTLP with -// `rejected_data_points`), rejected data points MUST count as failed and only -// non-rejected data points count as success. -// If no rejection reason is available, `rejected` SHOULD be used as value for -// `error.type`. -func (m SDKExporterMetricDataPointExported) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (SDKExporterMetricDataPointExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKExporterMetricDataPointExported) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKExporterMetricDataPointExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the server domain name if available without -// reverse DNS lookup; otherwise, IP address or Unix domain socket name. -func (SDKExporterMetricDataPointExported) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the server port number. -func (SDKExporterMetricDataPointExported) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// SDKExporterMetricDataPointInflight is an instrument used to record metric -// values conforming to the "otel.sdk.exporter.metric_data_point.inflight" -// semantic conventions. It represents the number of metric data points which -// were passed to the exporter, but that have not been exported yet (neither -// successful, nor failed). -type SDKExporterMetricDataPointInflight struct { - metric.Int64UpDownCounter -} - -var newSDKExporterMetricDataPointInflightOpts = []metric.Int64UpDownCounterOption{ - metric.WithDescription("The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), - metric.WithUnit("{data_point}"), -} - -// NewSDKExporterMetricDataPointInflight returns a new -// SDKExporterMetricDataPointInflight instrument. -func NewSDKExporterMetricDataPointInflight( - m metric.Meter, - opt ...metric.Int64UpDownCounterOption, -) (SDKExporterMetricDataPointInflight, error) { - // Check if the meter is nil. - if m == nil { - return SDKExporterMetricDataPointInflight{noop.Int64UpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKExporterMetricDataPointInflightOpts - } else { - opt = append(opt, newSDKExporterMetricDataPointInflightOpts...) - } - - i, err := m.Int64UpDownCounter( - "otel.sdk.exporter.metric_data_point.inflight", - opt..., - ) - if err != nil { - return SDKExporterMetricDataPointInflight{noop.Int64UpDownCounter{}}, err - } - return SDKExporterMetricDataPointInflight{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKExporterMetricDataPointInflight) Inst() metric.Int64UpDownCounter { - return m.Int64UpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (SDKExporterMetricDataPointInflight) Name() string { - return "otel.sdk.exporter.metric_data_point.inflight" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKExporterMetricDataPointInflight) Unit() string { - return "{data_point}" -} - -// Description returns the semantic convention description of the instrument -func (SDKExporterMetricDataPointInflight) Description() string { - return "The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." -} - -// Add adds incr to the existing count for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -func (m SDKExporterMetricDataPointInflight) Add( - ctx context.Context, - incr int64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -func (m SDKExporterMetricDataPointInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKExporterMetricDataPointInflight) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKExporterMetricDataPointInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the server domain name if available without -// reverse DNS lookup; otherwise, IP address or Unix domain socket name. -func (SDKExporterMetricDataPointInflight) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the server port number. -func (SDKExporterMetricDataPointInflight) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// SDKExporterOperationDuration is an instrument used to record metric values -// conforming to the "otel.sdk.exporter.operation.duration" semantic conventions. -// It represents the duration of exporting a batch of telemetry records. -type SDKExporterOperationDuration struct { - metric.Float64Histogram -} - -var newSDKExporterOperationDurationOpts = []metric.Float64HistogramOption{ - metric.WithDescription("The duration of exporting a batch of telemetry records."), - metric.WithUnit("s"), -} - -// NewSDKExporterOperationDuration returns a new SDKExporterOperationDuration -// instrument. -func NewSDKExporterOperationDuration( - m metric.Meter, - opt ...metric.Float64HistogramOption, -) (SDKExporterOperationDuration, error) { - // Check if the meter is nil. - if m == nil { - return SDKExporterOperationDuration{noop.Float64Histogram{}}, nil - } - - if len(opt) == 0 { - opt = newSDKExporterOperationDurationOpts - } else { - opt = append(opt, newSDKExporterOperationDurationOpts...) - } - - i, err := m.Float64Histogram( - "otel.sdk.exporter.operation.duration", - opt..., - ) - if err != nil { - return SDKExporterOperationDuration{noop.Float64Histogram{}}, err - } - return SDKExporterOperationDuration{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKExporterOperationDuration) Inst() metric.Float64Histogram { - return m.Float64Histogram -} - -// Name returns the semantic convention name of the instrument. -func (SDKExporterOperationDuration) Name() string { - return "otel.sdk.exporter.operation.duration" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKExporterOperationDuration) Unit() string { - return "s" -} - -// Description returns the semantic convention description of the instrument -func (SDKExporterOperationDuration) Description() string { - return "The duration of exporting a batch of telemetry records." -} - -// Record records val to the current distribution for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// This metric defines successful operations using the full success definitions -// for [http] -// and [grpc]. Anything else is defined as an unsuccessful operation. For -// successful -// operations, `error.type` MUST NOT be set. For unsuccessful export operations, -// `error.type` MUST contain a relevant failure cause. -// -// [http]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success-1 -// [grpc]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success -func (m SDKExporterOperationDuration) Record( - ctx context.Context, - val float64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Float64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Float64Histogram.Record(ctx, val, *o...) -} - -// RecordSet records val to the current distribution for set. -// -// This metric defines successful operations using the full success definitions -// for [http] -// and [grpc]. Anything else is defined as an unsuccessful operation. For -// successful -// operations, `error.type` MUST NOT be set. For unsuccessful export operations, -// `error.type` MUST contain a relevant failure cause. -// -// [http]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success-1 -// [grpc]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success -func (m SDKExporterOperationDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { - if set.Len() == 0 { - m.Float64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Float64Histogram.Record(ctx, val, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (SDKExporterOperationDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrHTTPResponseStatusCode returns an optional attribute for the -// "http.response.status_code" semantic convention. It represents the HTTP status -// code of the last HTTP request performed in scope of this export call. -func (SDKExporterOperationDuration) AttrHTTPResponseStatusCode(val int) attribute.KeyValue { - return attribute.Int("http.response.status_code", val) -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKExporterOperationDuration) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKExporterOperationDuration) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// AttrRPCResponseStatusCode returns an optional attribute for the -// "rpc.response.status_code" semantic convention. It represents the gRPC status -// code of the last gRPC request performed in scope of this export call. -func (SDKExporterOperationDuration) AttrRPCResponseStatusCode(val string) attribute.KeyValue { - return attribute.String("rpc.response.status_code", val) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the server domain name if available without -// reverse DNS lookup; otherwise, IP address or Unix domain socket name. -func (SDKExporterOperationDuration) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the server port number. -func (SDKExporterOperationDuration) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// SDKExporterSpanExported is an instrument used to record metric values -// conforming to the "otel.sdk.exporter.span.exported" semantic conventions. It -// represents the number of spans for which the export has finished, either -// successful or failed. -type SDKExporterSpanExported struct { - metric.Int64Counter -} - -var newSDKExporterSpanExportedOpts = []metric.Int64CounterOption{ - metric.WithDescription("The number of spans for which the export has finished, either successful or failed."), - metric.WithUnit("{span}"), -} - -// NewSDKExporterSpanExported returns a new SDKExporterSpanExported instrument. -func NewSDKExporterSpanExported( - m metric.Meter, - opt ...metric.Int64CounterOption, -) (SDKExporterSpanExported, error) { - // Check if the meter is nil. - if m == nil { - return SDKExporterSpanExported{noop.Int64Counter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKExporterSpanExportedOpts - } else { - opt = append(opt, newSDKExporterSpanExportedOpts...) - } - - i, err := m.Int64Counter( - "otel.sdk.exporter.span.exported", - opt..., - ) - if err != nil { - return SDKExporterSpanExported{noop.Int64Counter{}}, err - } - return SDKExporterSpanExported{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKExporterSpanExported) Inst() metric.Int64Counter { - return m.Int64Counter -} - -// Name returns the semantic convention name of the instrument. -func (SDKExporterSpanExported) Name() string { - return "otel.sdk.exporter.span.exported" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKExporterSpanExported) Unit() string { - return "{span}" -} - -// Description returns the semantic convention description of the instrument -func (SDKExporterSpanExported) Description() string { - return "The number of spans for which the export has finished, either successful or failed." -} - -// Add adds incr to the existing count for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -// For exporters with partial success semantics (e.g. OTLP with `rejected_spans` -// ), rejected spans MUST count as failed and only non-rejected spans count as -// success. -// If no rejection reason is available, `rejected` SHOULD be used as value for -// `error.type`. -func (m SDKExporterSpanExported) Add( - ctx context.Context, - incr int64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -// For exporters with partial success semantics (e.g. OTLP with `rejected_spans` -// ), rejected spans MUST count as failed and only non-rejected spans count as -// success. -// If no rejection reason is available, `rejected` SHOULD be used as value for -// `error.type`. -func (m SDKExporterSpanExported) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (SDKExporterSpanExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKExporterSpanExported) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKExporterSpanExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the server domain name if available without -// reverse DNS lookup; otherwise, IP address or Unix domain socket name. -func (SDKExporterSpanExported) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the server port number. -func (SDKExporterSpanExported) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// SDKExporterSpanInflight is an instrument used to record metric values -// conforming to the "otel.sdk.exporter.span.inflight" semantic conventions. It -// represents the number of spans which were passed to the exporter, but that -// have not been exported yet (neither successful, nor failed). -type SDKExporterSpanInflight struct { - metric.Int64UpDownCounter -} - -var newSDKExporterSpanInflightOpts = []metric.Int64UpDownCounterOption{ - metric.WithDescription("The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), - metric.WithUnit("{span}"), -} - -// NewSDKExporterSpanInflight returns a new SDKExporterSpanInflight instrument. -func NewSDKExporterSpanInflight( - m metric.Meter, - opt ...metric.Int64UpDownCounterOption, -) (SDKExporterSpanInflight, error) { - // Check if the meter is nil. - if m == nil { - return SDKExporterSpanInflight{noop.Int64UpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKExporterSpanInflightOpts - } else { - opt = append(opt, newSDKExporterSpanInflightOpts...) - } - - i, err := m.Int64UpDownCounter( - "otel.sdk.exporter.span.inflight", - opt..., - ) - if err != nil { - return SDKExporterSpanInflight{noop.Int64UpDownCounter{}}, err - } - return SDKExporterSpanInflight{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKExporterSpanInflight) Inst() metric.Int64UpDownCounter { - return m.Int64UpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (SDKExporterSpanInflight) Name() string { - return "otel.sdk.exporter.span.inflight" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKExporterSpanInflight) Unit() string { - return "{span}" -} - -// Description returns the semantic convention description of the instrument -func (SDKExporterSpanInflight) Description() string { - return "The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." -} - -// Add adds incr to the existing count for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -func (m SDKExporterSpanInflight) Add( - ctx context.Context, - incr int64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -// -// For successful exports, `error.type` MUST NOT be set. For failed exports, -// `error.type` MUST contain the failure cause. -func (m SDKExporterSpanInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKExporterSpanInflight) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKExporterSpanInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// AttrServerAddress returns an optional attribute for the "server.address" -// semantic convention. It represents the server domain name if available without -// reverse DNS lookup; otherwise, IP address or Unix domain socket name. -func (SDKExporterSpanInflight) AttrServerAddress(val string) attribute.KeyValue { - return attribute.String("server.address", val) -} - -// AttrServerPort returns an optional attribute for the "server.port" semantic -// convention. It represents the server port number. -func (SDKExporterSpanInflight) AttrServerPort(val int) attribute.KeyValue { - return attribute.Int("server.port", val) -} - -// SDKLogCreated is an instrument used to record metric values conforming to the -// "otel.sdk.log.created" semantic conventions. It represents the number of logs -// submitted to enabled SDK Loggers. -type SDKLogCreated struct { - metric.Int64Counter -} - -var newSDKLogCreatedOpts = []metric.Int64CounterOption{ - metric.WithDescription("The number of logs submitted to enabled SDK Loggers."), - metric.WithUnit("{log_record}"), -} - -// NewSDKLogCreated returns a new SDKLogCreated instrument. -func NewSDKLogCreated( - m metric.Meter, - opt ...metric.Int64CounterOption, -) (SDKLogCreated, error) { - // Check if the meter is nil. - if m == nil { - return SDKLogCreated{noop.Int64Counter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKLogCreatedOpts - } else { - opt = append(opt, newSDKLogCreatedOpts...) - } - - i, err := m.Int64Counter( - "otel.sdk.log.created", - opt..., - ) - if err != nil { - return SDKLogCreated{noop.Int64Counter{}}, err - } - return SDKLogCreated{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKLogCreated) Inst() metric.Int64Counter { - return m.Int64Counter -} - -// Name returns the semantic convention name of the instrument. -func (SDKLogCreated) Name() string { - return "otel.sdk.log.created" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKLogCreated) Unit() string { - return "{log_record}" -} - -// Description returns the semantic convention description of the instrument -func (SDKLogCreated) Description() string { - return "The number of logs submitted to enabled SDK Loggers." -} - -// Add adds incr to the existing count for attrs. -func (m SDKLogCreated) Add(ctx context.Context, incr int64, attrs ...attribute.KeyValue) { - if len(attrs) == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributes(attrs...)) - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -func (m SDKLogCreated) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Counter.Add(ctx, incr, *o...) -} - -// SDKMetricReaderCollectionDuration is an instrument used to record metric -// values conforming to the "otel.sdk.metric_reader.collection.duration" semantic -// conventions. It represents the duration of the collect operation of the metric -// reader. -type SDKMetricReaderCollectionDuration struct { - metric.Float64Histogram -} - -var newSDKMetricReaderCollectionDurationOpts = []metric.Float64HistogramOption{ - metric.WithDescription("The duration of the collect operation of the metric reader."), - metric.WithUnit("s"), -} - -// NewSDKMetricReaderCollectionDuration returns a new -// SDKMetricReaderCollectionDuration instrument. -func NewSDKMetricReaderCollectionDuration( - m metric.Meter, - opt ...metric.Float64HistogramOption, -) (SDKMetricReaderCollectionDuration, error) { - // Check if the meter is nil. - if m == nil { - return SDKMetricReaderCollectionDuration{noop.Float64Histogram{}}, nil - } - - if len(opt) == 0 { - opt = newSDKMetricReaderCollectionDurationOpts - } else { - opt = append(opt, newSDKMetricReaderCollectionDurationOpts...) - } - - i, err := m.Float64Histogram( - "otel.sdk.metric_reader.collection.duration", - opt..., - ) - if err != nil { - return SDKMetricReaderCollectionDuration{noop.Float64Histogram{}}, err - } - return SDKMetricReaderCollectionDuration{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKMetricReaderCollectionDuration) Inst() metric.Float64Histogram { - return m.Float64Histogram -} - -// Name returns the semantic convention name of the instrument. -func (SDKMetricReaderCollectionDuration) Name() string { - return "otel.sdk.metric_reader.collection.duration" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKMetricReaderCollectionDuration) Unit() string { - return "s" -} - -// Description returns the semantic convention description of the instrument -func (SDKMetricReaderCollectionDuration) Description() string { - return "The duration of the collect operation of the metric reader." -} - -// Record records val to the current distribution for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// For successful collections, `error.type` MUST NOT be set. For failed -// collections, `error.type` SHOULD contain the failure cause. -// It can happen that metrics collection is successful for some MetricProducers, -// while others fail. In that case `error.type` SHOULD be set to any of the -// failure causes. -func (m SDKMetricReaderCollectionDuration) Record( - ctx context.Context, - val float64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Float64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Float64Histogram.Record(ctx, val, *o...) -} - -// RecordSet records val to the current distribution for set. -// -// For successful collections, `error.type` MUST NOT be set. For failed -// collections, `error.type` SHOULD contain the failure cause. -// It can happen that metrics collection is successful for some MetricProducers, -// while others fail. In that case `error.type` SHOULD be set to any of the -// failure causes. -func (m SDKMetricReaderCollectionDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { - if set.Len() == 0 { - m.Float64Histogram.Record(ctx, val) - return - } - - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Float64Histogram.Record(ctx, val, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents the describes a class of error the operation ended -// with. -func (SDKMetricReaderCollectionDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKMetricReaderCollectionDuration) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKMetricReaderCollectionDuration) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// SDKProcessorLogProcessed is an instrument used to record metric values -// conforming to the "otel.sdk.processor.log.processed" semantic conventions. It -// represents the number of log records for which the processing has finished, -// either successful or failed. -type SDKProcessorLogProcessed struct { - metric.Int64Counter -} - -var newSDKProcessorLogProcessedOpts = []metric.Int64CounterOption{ - metric.WithDescription("The number of log records for which the processing has finished, either successful or failed."), - metric.WithUnit("{log_record}"), -} - -// NewSDKProcessorLogProcessed returns a new SDKProcessorLogProcessed instrument. -func NewSDKProcessorLogProcessed( - m metric.Meter, - opt ...metric.Int64CounterOption, -) (SDKProcessorLogProcessed, error) { - // Check if the meter is nil. - if m == nil { - return SDKProcessorLogProcessed{noop.Int64Counter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKProcessorLogProcessedOpts - } else { - opt = append(opt, newSDKProcessorLogProcessedOpts...) - } - - i, err := m.Int64Counter( - "otel.sdk.processor.log.processed", - opt..., - ) - if err != nil { - return SDKProcessorLogProcessed{noop.Int64Counter{}}, err - } - return SDKProcessorLogProcessed{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKProcessorLogProcessed) Inst() metric.Int64Counter { - return m.Int64Counter -} - -// Name returns the semantic convention name of the instrument. -func (SDKProcessorLogProcessed) Name() string { - return "otel.sdk.processor.log.processed" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKProcessorLogProcessed) Unit() string { - return "{log_record}" -} - -// Description returns the semantic convention description of the instrument -func (SDKProcessorLogProcessed) Description() string { - return "The number of log records for which the processing has finished, either successful or failed." -} - -// Add adds incr to the existing count for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// For successful processing, `error.type` MUST NOT be set. For failed -// processing, `error.type` MUST contain the failure cause. -// For the SDK Simple and Batching Log Record Processor a log record is -// considered to be processed already when it has been submitted to the exporter, -// not when the corresponding export call has finished. -func (m SDKProcessorLogProcessed) Add( - ctx context.Context, - incr int64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -// -// For successful processing, `error.type` MUST NOT be set. For failed -// processing, `error.type` MUST contain the failure cause. -// For the SDK Simple and Batching Log Record Processor a log record is -// considered to be processed already when it has been submitted to the exporter, -// not when the corresponding export call has finished. -func (m SDKProcessorLogProcessed) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents a low-cardinality description of the failure reason. -// SDK Batching Log Record Processors MUST use `queue_full` for log records -// dropped due to a full queue. -func (SDKProcessorLogProcessed) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKProcessorLogProcessed) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKProcessorLogProcessed) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// SDKProcessorLogQueueCapacity is an instrument used to record metric values -// conforming to the "otel.sdk.processor.log.queue.capacity" semantic -// conventions. It represents the maximum number of log records the queue of a -// given instance of an SDK Log Record processor can hold. -type SDKProcessorLogQueueCapacity struct { - metric.Int64ObservableUpDownCounter -} - -var newSDKProcessorLogQueueCapacityOpts = []metric.Int64ObservableUpDownCounterOption{ - metric.WithDescription("The maximum number of log records the queue of a given instance of an SDK Log Record processor can hold."), - metric.WithUnit("{log_record}"), -} - -// NewSDKProcessorLogQueueCapacity returns a new SDKProcessorLogQueueCapacity -// instrument. -func NewSDKProcessorLogQueueCapacity( - m metric.Meter, - opt ...metric.Int64ObservableUpDownCounterOption, -) (SDKProcessorLogQueueCapacity, error) { - // Check if the meter is nil. - if m == nil { - return SDKProcessorLogQueueCapacity{noop.Int64ObservableUpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKProcessorLogQueueCapacityOpts - } else { - opt = append(opt, newSDKProcessorLogQueueCapacityOpts...) - } - - i, err := m.Int64ObservableUpDownCounter( - "otel.sdk.processor.log.queue.capacity", - opt..., - ) - if err != nil { - return SDKProcessorLogQueueCapacity{noop.Int64ObservableUpDownCounter{}}, err - } - return SDKProcessorLogQueueCapacity{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKProcessorLogQueueCapacity) Inst() metric.Int64ObservableUpDownCounter { - return m.Int64ObservableUpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (SDKProcessorLogQueueCapacity) Name() string { - return "otel.sdk.processor.log.queue.capacity" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKProcessorLogQueueCapacity) Unit() string { - return "{log_record}" -} - -// Description returns the semantic convention description of the instrument -func (SDKProcessorLogQueueCapacity) Description() string { - return "The maximum number of log records the queue of a given instance of an SDK Log Record processor can hold." -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKProcessorLogQueueCapacity) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKProcessorLogQueueCapacity) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// SDKProcessorLogQueueSize is an instrument used to record metric values -// conforming to the "otel.sdk.processor.log.queue.size" semantic conventions. It -// represents the number of log records in the queue of a given instance of an -// SDK log processor. -type SDKProcessorLogQueueSize struct { - metric.Int64ObservableUpDownCounter -} - -var newSDKProcessorLogQueueSizeOpts = []metric.Int64ObservableUpDownCounterOption{ - metric.WithDescription("The number of log records in the queue of a given instance of an SDK log processor."), - metric.WithUnit("{log_record}"), -} - -// NewSDKProcessorLogQueueSize returns a new SDKProcessorLogQueueSize instrument. -func NewSDKProcessorLogQueueSize( - m metric.Meter, - opt ...metric.Int64ObservableUpDownCounterOption, -) (SDKProcessorLogQueueSize, error) { - // Check if the meter is nil. - if m == nil { - return SDKProcessorLogQueueSize{noop.Int64ObservableUpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKProcessorLogQueueSizeOpts - } else { - opt = append(opt, newSDKProcessorLogQueueSizeOpts...) - } - - i, err := m.Int64ObservableUpDownCounter( - "otel.sdk.processor.log.queue.size", - opt..., - ) - if err != nil { - return SDKProcessorLogQueueSize{noop.Int64ObservableUpDownCounter{}}, err - } - return SDKProcessorLogQueueSize{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKProcessorLogQueueSize) Inst() metric.Int64ObservableUpDownCounter { - return m.Int64ObservableUpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (SDKProcessorLogQueueSize) Name() string { - return "otel.sdk.processor.log.queue.size" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKProcessorLogQueueSize) Unit() string { - return "{log_record}" -} - -// Description returns the semantic convention description of the instrument -func (SDKProcessorLogQueueSize) Description() string { - return "The number of log records in the queue of a given instance of an SDK log processor." -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKProcessorLogQueueSize) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKProcessorLogQueueSize) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// SDKProcessorSpanProcessed is an instrument used to record metric values -// conforming to the "otel.sdk.processor.span.processed" semantic conventions. It -// represents the number of spans for which the processing has finished, either -// successful or failed. -type SDKProcessorSpanProcessed struct { - metric.Int64Counter -} - -var newSDKProcessorSpanProcessedOpts = []metric.Int64CounterOption{ - metric.WithDescription("The number of spans for which the processing has finished, either successful or failed."), - metric.WithUnit("{span}"), -} - -// NewSDKProcessorSpanProcessed returns a new SDKProcessorSpanProcessed -// instrument. -func NewSDKProcessorSpanProcessed( - m metric.Meter, - opt ...metric.Int64CounterOption, -) (SDKProcessorSpanProcessed, error) { - // Check if the meter is nil. - if m == nil { - return SDKProcessorSpanProcessed{noop.Int64Counter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKProcessorSpanProcessedOpts - } else { - opt = append(opt, newSDKProcessorSpanProcessedOpts...) - } - - i, err := m.Int64Counter( - "otel.sdk.processor.span.processed", - opt..., - ) - if err != nil { - return SDKProcessorSpanProcessed{noop.Int64Counter{}}, err - } - return SDKProcessorSpanProcessed{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKProcessorSpanProcessed) Inst() metric.Int64Counter { - return m.Int64Counter -} - -// Name returns the semantic convention name of the instrument. -func (SDKProcessorSpanProcessed) Name() string { - return "otel.sdk.processor.span.processed" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKProcessorSpanProcessed) Unit() string { - return "{span}" -} - -// Description returns the semantic convention description of the instrument -func (SDKProcessorSpanProcessed) Description() string { - return "The number of spans for which the processing has finished, either successful or failed." -} - -// Add adds incr to the existing count for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// For successful processing, `error.type` MUST NOT be set. For failed -// processing, `error.type` MUST contain the failure cause. -// For the SDK Simple and Batching Span Processor a span is considered to be -// processed already when it has been submitted to the exporter, not when the -// corresponding export call has finished. -func (m SDKProcessorSpanProcessed) Add( - ctx context.Context, - incr int64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -// -// For successful processing, `error.type` MUST NOT be set. For failed -// processing, `error.type` MUST contain the failure cause. -// For the SDK Simple and Batching Span Processor a span is considered to be -// processed already when it has been submitted to the exporter, not when the -// corresponding export call has finished. -func (m SDKProcessorSpanProcessed) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AttrErrorType returns an optional attribute for the "error.type" semantic -// convention. It represents a low-cardinality description of the failure reason. -// SDK Batching Span Processors MUST use `queue_full` for spans dropped due to a -// full queue. -func (SDKProcessorSpanProcessed) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { - return attribute.String("error.type", string(val)) -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKProcessorSpanProcessed) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKProcessorSpanProcessed) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// SDKProcessorSpanQueueCapacity is an instrument used to record metric values -// conforming to the "otel.sdk.processor.span.queue.capacity" semantic -// conventions. It represents the maximum number of spans the queue of a given -// instance of an SDK span processor can hold. -type SDKProcessorSpanQueueCapacity struct { - metric.Int64ObservableUpDownCounter -} - -var newSDKProcessorSpanQueueCapacityOpts = []metric.Int64ObservableUpDownCounterOption{ - metric.WithDescription("The maximum number of spans the queue of a given instance of an SDK span processor can hold."), - metric.WithUnit("{span}"), -} - -// NewSDKProcessorSpanQueueCapacity returns a new SDKProcessorSpanQueueCapacity -// instrument. -func NewSDKProcessorSpanQueueCapacity( - m metric.Meter, - opt ...metric.Int64ObservableUpDownCounterOption, -) (SDKProcessorSpanQueueCapacity, error) { - // Check if the meter is nil. - if m == nil { - return SDKProcessorSpanQueueCapacity{noop.Int64ObservableUpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKProcessorSpanQueueCapacityOpts - } else { - opt = append(opt, newSDKProcessorSpanQueueCapacityOpts...) - } - - i, err := m.Int64ObservableUpDownCounter( - "otel.sdk.processor.span.queue.capacity", - opt..., - ) - if err != nil { - return SDKProcessorSpanQueueCapacity{noop.Int64ObservableUpDownCounter{}}, err - } - return SDKProcessorSpanQueueCapacity{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKProcessorSpanQueueCapacity) Inst() metric.Int64ObservableUpDownCounter { - return m.Int64ObservableUpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (SDKProcessorSpanQueueCapacity) Name() string { - return "otel.sdk.processor.span.queue.capacity" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKProcessorSpanQueueCapacity) Unit() string { - return "{span}" -} - -// Description returns the semantic convention description of the instrument -func (SDKProcessorSpanQueueCapacity) Description() string { - return "The maximum number of spans the queue of a given instance of an SDK span processor can hold." -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKProcessorSpanQueueCapacity) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKProcessorSpanQueueCapacity) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// SDKProcessorSpanQueueSize is an instrument used to record metric values -// conforming to the "otel.sdk.processor.span.queue.size" semantic conventions. -// It represents the number of spans in the queue of a given instance of an SDK -// span processor. -type SDKProcessorSpanQueueSize struct { - metric.Int64ObservableUpDownCounter -} - -var newSDKProcessorSpanQueueSizeOpts = []metric.Int64ObservableUpDownCounterOption{ - metric.WithDescription("The number of spans in the queue of a given instance of an SDK span processor."), - metric.WithUnit("{span}"), -} - -// NewSDKProcessorSpanQueueSize returns a new SDKProcessorSpanQueueSize -// instrument. -func NewSDKProcessorSpanQueueSize( - m metric.Meter, - opt ...metric.Int64ObservableUpDownCounterOption, -) (SDKProcessorSpanQueueSize, error) { - // Check if the meter is nil. - if m == nil { - return SDKProcessorSpanQueueSize{noop.Int64ObservableUpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKProcessorSpanQueueSizeOpts - } else { - opt = append(opt, newSDKProcessorSpanQueueSizeOpts...) - } - - i, err := m.Int64ObservableUpDownCounter( - "otel.sdk.processor.span.queue.size", - opt..., - ) - if err != nil { - return SDKProcessorSpanQueueSize{noop.Int64ObservableUpDownCounter{}}, err - } - return SDKProcessorSpanQueueSize{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKProcessorSpanQueueSize) Inst() metric.Int64ObservableUpDownCounter { - return m.Int64ObservableUpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (SDKProcessorSpanQueueSize) Name() string { - return "otel.sdk.processor.span.queue.size" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKProcessorSpanQueueSize) Unit() string { - return "{span}" -} - -// Description returns the semantic convention description of the instrument -func (SDKProcessorSpanQueueSize) Description() string { - return "The number of spans in the queue of a given instance of an SDK span processor." -} - -// AttrComponentName returns an optional attribute for the "otel.component.name" -// semantic convention. It represents a name uniquely identifying the instance of -// the OpenTelemetry component within its containing SDK instance. -func (SDKProcessorSpanQueueSize) AttrComponentName(val string) attribute.KeyValue { - return attribute.String("otel.component.name", val) -} - -// AttrComponentType returns an optional attribute for the "otel.component.type" -// semantic convention. It represents a name identifying the type of the -// OpenTelemetry component. -func (SDKProcessorSpanQueueSize) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { - return attribute.String("otel.component.type", string(val)) -} - -// SDKSpanLive is an instrument used to record metric values conforming to the -// "otel.sdk.span.live" semantic conventions. It represents the number of created -// spans with `recording=true` for which the end operation has not been called -// yet. -type SDKSpanLive struct { - metric.Int64UpDownCounter -} - -var newSDKSpanLiveOpts = []metric.Int64UpDownCounterOption{ - metric.WithDescription("The number of created spans with `recording=true` for which the end operation has not been called yet."), - metric.WithUnit("{span}"), -} - -// NewSDKSpanLive returns a new SDKSpanLive instrument. -func NewSDKSpanLive( - m metric.Meter, - opt ...metric.Int64UpDownCounterOption, -) (SDKSpanLive, error) { - // Check if the meter is nil. - if m == nil { - return SDKSpanLive{noop.Int64UpDownCounter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKSpanLiveOpts - } else { - opt = append(opt, newSDKSpanLiveOpts...) - } - - i, err := m.Int64UpDownCounter( - "otel.sdk.span.live", - opt..., - ) - if err != nil { - return SDKSpanLive{noop.Int64UpDownCounter{}}, err - } - return SDKSpanLive{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKSpanLive) Inst() metric.Int64UpDownCounter { - return m.Int64UpDownCounter -} - -// Name returns the semantic convention name of the instrument. -func (SDKSpanLive) Name() string { - return "otel.sdk.span.live" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKSpanLive) Unit() string { - return "{span}" -} - -// Description returns the semantic convention description of the instrument -func (SDKSpanLive) Description() string { - return "The number of created spans with `recording=true` for which the end operation has not been called yet." -} - -// Add adds incr to the existing count for attrs. -// -// All additional attrs passed are included in the recorded value. -func (m SDKSpanLive) Add( - ctx context.Context, - incr int64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -func (m SDKSpanLive) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64UpDownCounter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64UpDownCounter.Add(ctx, incr, *o...) -} - -// AttrSpanSamplingResult returns an optional attribute for the -// "otel.span.sampling_result" semantic convention. It represents the result -// value of the sampler for this span. -func (SDKSpanLive) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue { - return attribute.String("otel.span.sampling_result", string(val)) -} - -// SDKSpanStarted is an instrument used to record metric values conforming to the -// "otel.sdk.span.started" semantic conventions. It represents the number of -// created spans. -type SDKSpanStarted struct { - metric.Int64Counter -} - -var newSDKSpanStartedOpts = []metric.Int64CounterOption{ - metric.WithDescription("The number of created spans."), - metric.WithUnit("{span}"), -} - -// NewSDKSpanStarted returns a new SDKSpanStarted instrument. -func NewSDKSpanStarted( - m metric.Meter, - opt ...metric.Int64CounterOption, -) (SDKSpanStarted, error) { - // Check if the meter is nil. - if m == nil { - return SDKSpanStarted{noop.Int64Counter{}}, nil - } - - if len(opt) == 0 { - opt = newSDKSpanStartedOpts - } else { - opt = append(opt, newSDKSpanStartedOpts...) - } - - i, err := m.Int64Counter( - "otel.sdk.span.started", - opt..., - ) - if err != nil { - return SDKSpanStarted{noop.Int64Counter{}}, err - } - return SDKSpanStarted{i}, nil -} - -// Inst returns the underlying metric instrument. -func (m SDKSpanStarted) Inst() metric.Int64Counter { - return m.Int64Counter -} - -// Name returns the semantic convention name of the instrument. -func (SDKSpanStarted) Name() string { - return "otel.sdk.span.started" -} - -// Unit returns the semantic convention unit of the instrument -func (SDKSpanStarted) Unit() string { - return "{span}" -} - -// Description returns the semantic convention description of the instrument -func (SDKSpanStarted) Description() string { - return "The number of created spans." -} - -// Add adds incr to the existing count for attrs. -// -// All additional attrs passed are included in the recorded value. -// -// Implementations MUST record this metric for all spans, even for non-recording -// ones. -func (m SDKSpanStarted) Add( - ctx context.Context, - incr int64, - attrs ...attribute.KeyValue, -) { - if len(attrs) == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append( - *o, - metric.WithAttributes( - attrs..., - ), - ) - - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AddSet adds incr to the existing count for set. -// -// Implementations MUST record this metric for all spans, even for non-recording -// ones. -func (m SDKSpanStarted) AddSet(ctx context.Context, incr int64, set attribute.Set) { - if set.Len() == 0 { - m.Int64Counter.Add(ctx, incr) - return - } - - o := addOptPool.Get().(*[]metric.AddOption) - defer func() { - *o = (*o)[:0] - addOptPool.Put(o) - }() - - *o = append(*o, metric.WithAttributeSet(set)) - m.Int64Counter.Add(ctx, incr, *o...) -} - -// AttrSpanParentOrigin returns an optional attribute for the -// "otel.span.parent.origin" semantic convention. It represents the determines -// whether the span has a parent span, and if so, [whether it is a remote parent] -// . -// -// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote -func (SDKSpanStarted) AttrSpanParentOrigin(val SpanParentOriginAttr) attribute.KeyValue { - return attribute.String("otel.span.parent.origin", string(val)) -} - -// AttrSpanSamplingResult returns an optional attribute for the -// "otel.span.sampling_result" semantic convention. It represents the result -// value of the sampler for this span. -func (SDKSpanStarted) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue { - return attribute.String("otel.span.sampling_result", string(val)) -} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/schema.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/schema.go deleted file mode 100644 index e1a199d89b..0000000000 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/schema.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -package semconv // import "go.opentelemetry.io/otel/semconv/v1.39.0" - -// SchemaURL is the schema URL that matches the version of the semantic conventions -// that this package defines. Semconv packages starting from v1.4.0 must declare -// non-empty schema URL in the form https://opentelemetry.io/schemas/ -const SchemaURL = "https://opentelemetry.io/schemas/1.39.0" diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/MIGRATION.md b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/MIGRATION.md new file mode 100644 index 0000000000..ba52cadf71 --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/MIGRATION.md @@ -0,0 +1,17 @@ + +# Migration from v1.40.0 to v1.41.0 + +The `go.opentelemetry.io/otel/semconv/v1.41.0` package should be a drop-in replacement for `go.opentelemetry.io/otel/semconv/v1.40.0` with the following exceptions. + +## Removed + +The following declarations have been removed. +Refer to the [OpenTelemetry Semantic Conventions documentation] for deprecation instructions. + +If the type is not listed in the documentation as deprecated, it has been removed in this version due to lack of applicability or use. +If you use any of these non-deprecated declarations in your Go application, please [open an issue] describing your use-case. + +- `DeploymentEnvironmentName` + +[OpenTelemetry Semantic Conventions documentation]: https://github.com/open-telemetry/semantic-conventions +[open an issue]: https://github.com/open-telemetry/opentelemetry-go/issues/new?template=Blank+issue diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/README.md b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/README.md new file mode 100644 index 0000000000..8353bb7152 --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/README.md @@ -0,0 +1,3 @@ +# Semconv v1.41.0 + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/semconv/v1.41.0)](https://pkg.go.dev/go.opentelemetry.io/otel/semconv/v1.41.0) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/attribute_group.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/attribute_group.go new file mode 100644 index 0000000000..7cee086802 --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/attribute_group.go @@ -0,0 +1,17285 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Code generated from semantic convention specification. DO NOT EDIT. + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.41.0" + +import "go.opentelemetry.io/otel/attribute" + +// Namespace: android +const ( + // AndroidAppStateKey is the attribute Key conforming to the "android.app.state" + // semantic conventions. It represents the this attribute represents the state + // of the application. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "created" + // Note: The Android lifecycle states are defined in + // [Activity lifecycle callbacks], and from which the `OS identifiers` are + // derived. + // + // [Activity lifecycle callbacks]: https://developer.android.com/guide/components/activities/activity-lifecycle#lc + AndroidAppStateKey = attribute.Key("android.app.state") + + // AndroidOSAPILevelKey is the attribute Key conforming to the + // "android.os.api_level" semantic conventions. It represents the uniquely + // identifies the framework API revision offered by a version (`os.version`) of + // the android operating system. More information can be found in the + // [Android API levels documentation]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "33", "32" + // + // [Android API levels documentation]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels + AndroidOSAPILevelKey = attribute.Key("android.os.api_level") +) + +// AndroidOSAPILevel returns an attribute KeyValue conforming to the +// "android.os.api_level" semantic conventions. It represents the uniquely +// identifies the framework API revision offered by a version (`os.version`) of +// the android operating system. More information can be found in the +// [Android API levels documentation]. +// +// [Android API levels documentation]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels +func AndroidOSAPILevel(val string) attribute.KeyValue { + return AndroidOSAPILevelKey.String(val) +} + +// Enum values for android.app.state +var ( + // Any time before Activity.onResume() or, if the app has no Activity, + // Context.startService() has been called in the app for the first time. + // + // Stability: development + AndroidAppStateCreated = AndroidAppStateKey.String("created") + // Any time after Activity.onPause() or, if the app has no Activity, + // Context.stopService() has been called when the app was in the foreground + // state. + // + // Stability: development + AndroidAppStateBackground = AndroidAppStateKey.String("background") + // Any time after Activity.onResume() or, if the app has no Activity, + // Context.startService() has been called when the app was in either the created + // or background states. + // + // Stability: development + AndroidAppStateForeground = AndroidAppStateKey.String("foreground") +) + +// Namespace: app +const ( + // AppBuildIDKey is the attribute Key conforming to the "app.build_id" semantic + // conventions. It represents the unique identifier for a particular build or + // compilation of the application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "6cff0a7e-cefc-4668-96f5-1273d8b334d0", + // "9f2b833506aa6973a92fde9733e6271f", "my-app-1.0.0-code-123" + AppBuildIDKey = attribute.Key("app.build_id") + + // AppInstallationIDKey is the attribute Key conforming to the + // "app.installation.id" semantic conventions. It represents a unique identifier + // representing the installation of an application on a specific device. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2ab2916d-a51f-4ac8-80ee-45ac31a28092" + // Note: Its value SHOULD persist across launches of the same application + // installation, including through application upgrades. + // It SHOULD change if the application is uninstalled or if all applications of + // the vendor are uninstalled. + // Additionally, users might be able to reset this value (e.g. by clearing + // application data). + // If an app is installed multiple times on the same device (e.g. in different + // accounts on Android), each `app.installation.id` SHOULD have a different + // value. + // If multiple OpenTelemetry SDKs are used within the same application, they + // SHOULD use the same value for `app.installation.id`. + // Hardware IDs (e.g. serial number, IMEI, MAC address) MUST NOT be used as the + // `app.installation.id`. + // + // For iOS, this value SHOULD be equal to the [vendor identifier]. + // + // For Android, examples of `app.installation.id` implementations include: + // + // - [Firebase Installation ID]. + // - A globally unique UUID which is persisted across sessions in your + // application. + // - [App set ID]. + // - [`Settings.getString(Settings.Secure.ANDROID_ID)`]. + // + // More information about Android identifier best practices can be found in the + // [Android user data IDs guide]. + // + // [vendor identifier]: https://developer.apple.com/documentation/uikit/uidevice/identifierforvendor + // [Firebase Installation ID]: https://firebase.google.com/docs/projects/manage-installations + // [App set ID]: https://developer.android.com/identity/app-set-id + // [`Settings.getString(Settings.Secure.ANDROID_ID)`]: https://developer.android.com/reference/android/provider/Settings.Secure#ANDROID_ID + // [Android user data IDs guide]: https://developer.android.com/training/articles/user-data-ids + AppInstallationIDKey = attribute.Key("app.installation.id") + + // AppJankFrameCountKey is the attribute Key conforming to the + // "app.jank.frame_count" semantic conventions. It represents a number of frame + // renders that experienced jank. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 9, 42 + // Note: Depending on platform limitations, the value provided MAY be + // approximation. + AppJankFrameCountKey = attribute.Key("app.jank.frame_count") + + // AppJankPeriodKey is the attribute Key conforming to the "app.jank.period" + // semantic conventions. It represents the time period, in seconds, for which + // this jank is being reported. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0, 5.0, 10.24 + AppJankPeriodKey = attribute.Key("app.jank.period") + + // AppJankThresholdKey is the attribute Key conforming to the + // "app.jank.threshold" semantic conventions. It represents the minimum + // rendering threshold for this jank, in seconds. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0.016, 0.7, 1.024 + AppJankThresholdKey = attribute.Key("app.jank.threshold") + + // AppScreenCoordinateXKey is the attribute Key conforming to the + // "app.screen.coordinate.x" semantic conventions. It represents the x + // (horizontal) coordinate of a screen coordinate, in screen pixels. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0, 131 + AppScreenCoordinateXKey = attribute.Key("app.screen.coordinate.x") + + // AppScreenCoordinateYKey is the attribute Key conforming to the + // "app.screen.coordinate.y" semantic conventions. It represents the y + // (vertical) component of a screen coordinate, in screen pixels. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 12, 99 + AppScreenCoordinateYKey = attribute.Key("app.screen.coordinate.y") + + // AppScreenIDKey is the attribute Key conforming to the "app.screen.id" + // semantic conventions. It represents an identifier that uniquely + // differentiates this screen from other screens in the same application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3", + // "com.example.app.MainActivity", "com.example.shop.ProductDetailFragment", + // "MyApp.ProfileView", "MyApp.ProfileViewController" + // Note: A screen represents only the part of the device display drawn by the + // app. It typically contains multiple widgets or UI components and is larger in + // scope than individual widgets. Multiple screens can coexist on the same + // display simultaneously (e.g., split view on tablets). + AppScreenIDKey = attribute.Key("app.screen.id") + + // AppScreenNameKey is the attribute Key conforming to the "app.screen.name" + // semantic conventions. It represents the name of an application screen. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MainActivity", "ProductDetailFragment", "ProfileView", + // "ProfileViewController" + // Note: A screen represents only the part of the device display drawn by the + // app. It typically contains multiple widgets or UI components and is larger in + // scope than individual widgets. Multiple screens can coexist on the same + // display simultaneously (e.g., split view on tablets). + AppScreenNameKey = attribute.Key("app.screen.name") + + // AppWidgetIDKey is the attribute Key conforming to the "app.widget.id" + // semantic conventions. It represents an identifier that uniquely + // differentiates this widget from other widgets in the same application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3", "submit_order_1829" + // Note: A widget is an application component, typically an on-screen visual GUI + // element. + AppWidgetIDKey = attribute.Key("app.widget.id") + + // AppWidgetNameKey is the attribute Key conforming to the "app.widget.name" + // semantic conventions. It represents the name of an application widget. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "submit", "attack", "Clear Cart" + // Note: A widget is an application component, typically an on-screen visual GUI + // element. + AppWidgetNameKey = attribute.Key("app.widget.name") +) + +// AppBuildID returns an attribute KeyValue conforming to the "app.build_id" +// semantic conventions. It represents the unique identifier for a particular +// build or compilation of the application. +func AppBuildID(val string) attribute.KeyValue { + return AppBuildIDKey.String(val) +} + +// AppInstallationID returns an attribute KeyValue conforming to the +// "app.installation.id" semantic conventions. It represents a unique identifier +// representing the installation of an application on a specific device. +func AppInstallationID(val string) attribute.KeyValue { + return AppInstallationIDKey.String(val) +} + +// AppJankFrameCount returns an attribute KeyValue conforming to the +// "app.jank.frame_count" semantic conventions. It represents a number of frame +// renders that experienced jank. +func AppJankFrameCount(val int) attribute.KeyValue { + return AppJankFrameCountKey.Int(val) +} + +// AppJankPeriod returns an attribute KeyValue conforming to the +// "app.jank.period" semantic conventions. It represents the time period, in +// seconds, for which this jank is being reported. +func AppJankPeriod(val float64) attribute.KeyValue { + return AppJankPeriodKey.Float64(val) +} + +// AppJankThreshold returns an attribute KeyValue conforming to the +// "app.jank.threshold" semantic conventions. It represents the minimum rendering +// threshold for this jank, in seconds. +func AppJankThreshold(val float64) attribute.KeyValue { + return AppJankThresholdKey.Float64(val) +} + +// AppScreenCoordinateX returns an attribute KeyValue conforming to the +// "app.screen.coordinate.x" semantic conventions. It represents the x +// (horizontal) coordinate of a screen coordinate, in screen pixels. +func AppScreenCoordinateX(val int) attribute.KeyValue { + return AppScreenCoordinateXKey.Int(val) +} + +// AppScreenCoordinateY returns an attribute KeyValue conforming to the +// "app.screen.coordinate.y" semantic conventions. It represents the y (vertical) +// component of a screen coordinate, in screen pixels. +func AppScreenCoordinateY(val int) attribute.KeyValue { + return AppScreenCoordinateYKey.Int(val) +} + +// AppScreenID returns an attribute KeyValue conforming to the "app.screen.id" +// semantic conventions. It represents an identifier that uniquely differentiates +// this screen from other screens in the same application. +func AppScreenID(val string) attribute.KeyValue { + return AppScreenIDKey.String(val) +} + +// AppScreenName returns an attribute KeyValue conforming to the +// "app.screen.name" semantic conventions. It represents the name of an +// application screen. +func AppScreenName(val string) attribute.KeyValue { + return AppScreenNameKey.String(val) +} + +// AppWidgetID returns an attribute KeyValue conforming to the "app.widget.id" +// semantic conventions. It represents an identifier that uniquely differentiates +// this widget from other widgets in the same application. +func AppWidgetID(val string) attribute.KeyValue { + return AppWidgetIDKey.String(val) +} + +// AppWidgetName returns an attribute KeyValue conforming to the +// "app.widget.name" semantic conventions. It represents the name of an +// application widget. +func AppWidgetName(val string) attribute.KeyValue { + return AppWidgetNameKey.String(val) +} + +// Namespace: artifact +const ( + // ArtifactAttestationFilenameKey is the attribute Key conforming to the + // "artifact.attestation.filename" semantic conventions. It represents the + // provenance filename of the built attestation which directly relates to the + // build artifact filename. This filename SHOULD accompany the artifact at + // publish time. See the [SLSA Relationship] specification for more information. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "golang-binary-amd64-v0.1.0.attestation", + // "docker-image-amd64-v0.1.0.intoto.json1", "release-1.tar.gz.attestation", + // "file-name-package.tar.gz.intoto.json1" + // + // [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations + ArtifactAttestationFilenameKey = attribute.Key("artifact.attestation.filename") + + // ArtifactAttestationHashKey is the attribute Key conforming to the + // "artifact.attestation.hash" semantic conventions. It represents the full + // [hash value (see glossary)], of the built attestation. Some envelopes in the + // [software attestation space] also refer to this as the **digest**. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1b31dfcd5b7f9267bf2ff47651df1cfb9147b9e4df1f335accf65b4cda498408" + // + // [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf + // [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec + ArtifactAttestationHashKey = attribute.Key("artifact.attestation.hash") + + // ArtifactAttestationIDKey is the attribute Key conforming to the + // "artifact.attestation.id" semantic conventions. It represents the id of the + // build [software attestation]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "123" + // + // [software attestation]: https://slsa.dev/attestation-model + ArtifactAttestationIDKey = attribute.Key("artifact.attestation.id") + + // ArtifactFilenameKey is the attribute Key conforming to the + // "artifact.filename" semantic conventions. It represents the human readable + // file name of the artifact, typically generated during build and release + // processes. Often includes the package name and version in the file name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "golang-binary-amd64-v0.1.0", "docker-image-amd64-v0.1.0", + // "release-1.tar.gz", "file-name-package.tar.gz" + // Note: This file name can also act as the [Package Name] + // in cases where the package ecosystem maps accordingly. + // Additionally, the artifact [can be published] + // for others, but that is not a guarantee. + // + // [Package Name]: https://slsa.dev/spec/v1.0/terminology#package-model + // [can be published]: https://slsa.dev/spec/v1.0/terminology#software-supply-chain + ArtifactFilenameKey = attribute.Key("artifact.filename") + + // ArtifactHashKey is the attribute Key conforming to the "artifact.hash" + // semantic conventions. It represents the full [hash value (see glossary)], + // often found in checksum.txt on a release of the artifact and used to verify + // package integrity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9ff4c52759e2c4ac70b7d517bc7fcdc1cda631ca0045271ddd1b192544f8a3e9" + // Note: The specific algorithm used to create the cryptographic hash value is + // not defined. In situations where an artifact has multiple + // cryptographic hashes, it is up to the implementer to choose which + // hash value to set here; this should be the most secure hash algorithm + // that is suitable for the situation and consistent with the + // corresponding attestation. The implementer can then provide the other + // hash values through an additional set of attribute extensions as they + // deem necessary. + // + // [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf + ArtifactHashKey = attribute.Key("artifact.hash") + + // ArtifactPurlKey is the attribute Key conforming to the "artifact.purl" + // semantic conventions. It represents the [Package URL] of the + // [package artifact] provides a standard way to identify and locate the + // packaged artifact. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "pkg:github/package-url/purl-spec@1209109710924", + // "pkg:npm/foo@12.12.3" + // + // [Package URL]: https://github.com/package-url/purl-spec + // [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model + ArtifactPurlKey = attribute.Key("artifact.purl") + + // ArtifactVersionKey is the attribute Key conforming to the "artifact.version" + // semantic conventions. It represents the version of the artifact. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "v0.1.0", "1.2.1", "122691-build" + ArtifactVersionKey = attribute.Key("artifact.version") +) + +// ArtifactAttestationFilename returns an attribute KeyValue conforming to the +// "artifact.attestation.filename" semantic conventions. It represents the +// provenance filename of the built attestation which directly relates to the +// build artifact filename. This filename SHOULD accompany the artifact at +// publish time. See the [SLSA Relationship] specification for more information. +// +// [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations +func ArtifactAttestationFilename(val string) attribute.KeyValue { + return ArtifactAttestationFilenameKey.String(val) +} + +// ArtifactAttestationHash returns an attribute KeyValue conforming to the +// "artifact.attestation.hash" semantic conventions. It represents the full +// [hash value (see glossary)], of the built attestation. Some envelopes in the +// [software attestation space] also refer to this as the **digest**. +// +// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf +// [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec +func ArtifactAttestationHash(val string) attribute.KeyValue { + return ArtifactAttestationHashKey.String(val) +} + +// ArtifactAttestationID returns an attribute KeyValue conforming to the +// "artifact.attestation.id" semantic conventions. It represents the id of the +// build [software attestation]. +// +// [software attestation]: https://slsa.dev/attestation-model +func ArtifactAttestationID(val string) attribute.KeyValue { + return ArtifactAttestationIDKey.String(val) +} + +// ArtifactFilename returns an attribute KeyValue conforming to the +// "artifact.filename" semantic conventions. It represents the human readable +// file name of the artifact, typically generated during build and release +// processes. Often includes the package name and version in the file name. +func ArtifactFilename(val string) attribute.KeyValue { + return ArtifactFilenameKey.String(val) +} + +// ArtifactHash returns an attribute KeyValue conforming to the "artifact.hash" +// semantic conventions. It represents the full [hash value (see glossary)], +// often found in checksum.txt on a release of the artifact and used to verify +// package integrity. +// +// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf +func ArtifactHash(val string) attribute.KeyValue { + return ArtifactHashKey.String(val) +} + +// ArtifactPurl returns an attribute KeyValue conforming to the "artifact.purl" +// semantic conventions. It represents the [Package URL] of the +// [package artifact] provides a standard way to identify and locate the packaged +// artifact. +// +// [Package URL]: https://github.com/package-url/purl-spec +// [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model +func ArtifactPurl(val string) attribute.KeyValue { + return ArtifactPurlKey.String(val) +} + +// ArtifactVersion returns an attribute KeyValue conforming to the +// "artifact.version" semantic conventions. It represents the version of the +// artifact. +func ArtifactVersion(val string) attribute.KeyValue { + return ArtifactVersionKey.String(val) +} + +// Namespace: aws +const ( + // AWSBedrockGuardrailIDKey is the attribute Key conforming to the + // "aws.bedrock.guardrail.id" semantic conventions. It represents the unique + // identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and + // prevent unwanted behavior from model responses or user messages. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "sgi5gkybzqak" + // + // [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html + AWSBedrockGuardrailIDKey = attribute.Key("aws.bedrock.guardrail.id") + + // AWSBedrockKnowledgeBaseIDKey is the attribute Key conforming to the + // "aws.bedrock.knowledge_base.id" semantic conventions. It represents the + // unique identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a + // bank of information that can be queried by models to generate more relevant + // responses and augment prompts. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "XFWUPB9PAW" + // + // [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html + AWSBedrockKnowledgeBaseIDKey = attribute.Key("aws.bedrock.knowledge_base.id") + + // AWSDynamoDBAttributeDefinitionsKey is the attribute Key conforming to the + // "aws.dynamodb.attribute_definitions" semantic conventions. It represents the + // JSON-serialized value of each item in the `AttributeDefinitions` request + // field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "AttributeName": "string", "AttributeType": "string" }" + AWSDynamoDBAttributeDefinitionsKey = attribute.Key("aws.dynamodb.attribute_definitions") + + // AWSDynamoDBAttributesToGetKey is the attribute Key conforming to the + // "aws.dynamodb.attributes_to_get" semantic conventions. It represents the + // value of the `AttributesToGet` request parameter. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "lives", "id" + AWSDynamoDBAttributesToGetKey = attribute.Key("aws.dynamodb.attributes_to_get") + + // AWSDynamoDBConsistentReadKey is the attribute Key conforming to the + // "aws.dynamodb.consistent_read" semantic conventions. It represents the value + // of the `ConsistentRead` request parameter. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + AWSDynamoDBConsistentReadKey = attribute.Key("aws.dynamodb.consistent_read") + + // AWSDynamoDBConsumedCapacityKey is the attribute Key conforming to the + // "aws.dynamodb.consumed_capacity" semantic conventions. It represents the + // JSON-serialized value of each item in the `ConsumedCapacity` response field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "CapacityUnits": number, "GlobalSecondaryIndexes": { "string" : + // { "CapacityUnits": number, "ReadCapacityUnits": number, "WriteCapacityUnits": + // number } }, "LocalSecondaryIndexes": { "string" : { "CapacityUnits": number, + // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }, + // "ReadCapacityUnits": number, "Table": { "CapacityUnits": number, + // "ReadCapacityUnits": number, "WriteCapacityUnits": number }, "TableName": + // "string", "WriteCapacityUnits": number }" + AWSDynamoDBConsumedCapacityKey = attribute.Key("aws.dynamodb.consumed_capacity") + + // AWSDynamoDBCountKey is the attribute Key conforming to the + // "aws.dynamodb.count" semantic conventions. It represents the value of the + // `Count` response parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 10 + AWSDynamoDBCountKey = attribute.Key("aws.dynamodb.count") + + // AWSDynamoDBExclusiveStartTableKey is the attribute Key conforming to the + // "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the + // value of the `ExclusiveStartTableName` request parameter. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Users", "CatsTable" + AWSDynamoDBExclusiveStartTableKey = attribute.Key("aws.dynamodb.exclusive_start_table") + + // AWSDynamoDBGlobalSecondaryIndexUpdatesKey is the attribute Key conforming to + // the "aws.dynamodb.global_secondary_index_updates" semantic conventions. It + // represents the JSON-serialized value of each item in the + // `GlobalSecondaryIndexUpdates` request field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "Create": { "IndexName": "string", "KeySchema": [ { + // "AttributeName": "string", "KeyType": "string" } ], "Projection": { + // "NonKeyAttributes": [ "string" ], "ProjectionType": "string" }, + // "ProvisionedThroughput": { "ReadCapacityUnits": number, "WriteCapacityUnits": + // number } }" + AWSDynamoDBGlobalSecondaryIndexUpdatesKey = attribute.Key("aws.dynamodb.global_secondary_index_updates") + + // AWSDynamoDBGlobalSecondaryIndexesKey is the attribute Key conforming to the + // "aws.dynamodb.global_secondary_indexes" semantic conventions. It represents + // the JSON-serialized value of each item of the `GlobalSecondaryIndexes` + // request field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "IndexName": "string", "KeySchema": [ { "AttributeName": + // "string", "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ + // "string" ], "ProjectionType": "string" }, "ProvisionedThroughput": { + // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }" + AWSDynamoDBGlobalSecondaryIndexesKey = attribute.Key("aws.dynamodb.global_secondary_indexes") + + // AWSDynamoDBIndexNameKey is the attribute Key conforming to the + // "aws.dynamodb.index_name" semantic conventions. It represents the value of + // the `IndexName` request parameter. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "name_to_group" + AWSDynamoDBIndexNameKey = attribute.Key("aws.dynamodb.index_name") + + // AWSDynamoDBItemCollectionMetricsKey is the attribute Key conforming to the + // "aws.dynamodb.item_collection_metrics" semantic conventions. It represents + // the JSON-serialized value of the `ItemCollectionMetrics` response field. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "string" : [ { "ItemCollectionKey": { "string" : { "B": blob, + // "BOOL": boolean, "BS": [ blob ], "L": [ "AttributeValue" ], "M": { "string" : + // "AttributeValue" }, "N": "string", "NS": [ "string" ], "NULL": boolean, "S": + // "string", "SS": [ "string" ] } }, "SizeEstimateRangeGB": [ number ] } ] }" + AWSDynamoDBItemCollectionMetricsKey = attribute.Key("aws.dynamodb.item_collection_metrics") + + // AWSDynamoDBLimitKey is the attribute Key conforming to the + // "aws.dynamodb.limit" semantic conventions. It represents the value of the + // `Limit` request parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 10 + AWSDynamoDBLimitKey = attribute.Key("aws.dynamodb.limit") + + // AWSDynamoDBLocalSecondaryIndexesKey is the attribute Key conforming to the + // "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents + // the JSON-serialized value of each item of the `LocalSecondaryIndexes` request + // field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "IndexArn": "string", "IndexName": "string", "IndexSizeBytes": + // number, "ItemCount": number, "KeySchema": [ { "AttributeName": "string", + // "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ "string" ], + // "ProjectionType": "string" } }" + AWSDynamoDBLocalSecondaryIndexesKey = attribute.Key("aws.dynamodb.local_secondary_indexes") + + // AWSDynamoDBProjectionKey is the attribute Key conforming to the + // "aws.dynamodb.projection" semantic conventions. It represents the value of + // the `ProjectionExpression` request parameter. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Title", "Title, Price, Color", "Title, Description, RelatedItems, + // ProductReviews" + AWSDynamoDBProjectionKey = attribute.Key("aws.dynamodb.projection") + + // AWSDynamoDBProvisionedReadCapacityKey is the attribute Key conforming to the + // "aws.dynamodb.provisioned_read_capacity" semantic conventions. It represents + // the value of the `ProvisionedThroughput.ReadCapacityUnits` request parameter. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0, 2.0 + AWSDynamoDBProvisionedReadCapacityKey = attribute.Key("aws.dynamodb.provisioned_read_capacity") + + // AWSDynamoDBProvisionedWriteCapacityKey is the attribute Key conforming to the + // "aws.dynamodb.provisioned_write_capacity" semantic conventions. It represents + // the value of the `ProvisionedThroughput.WriteCapacityUnits` request + // parameter. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0, 2.0 + AWSDynamoDBProvisionedWriteCapacityKey = attribute.Key("aws.dynamodb.provisioned_write_capacity") + + // AWSDynamoDBScanForwardKey is the attribute Key conforming to the + // "aws.dynamodb.scan_forward" semantic conventions. It represents the value of + // the `ScanIndexForward` request parameter. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + AWSDynamoDBScanForwardKey = attribute.Key("aws.dynamodb.scan_forward") + + // AWSDynamoDBScannedCountKey is the attribute Key conforming to the + // "aws.dynamodb.scanned_count" semantic conventions. It represents the value of + // the `ScannedCount` response parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 50 + AWSDynamoDBScannedCountKey = attribute.Key("aws.dynamodb.scanned_count") + + // AWSDynamoDBSegmentKey is the attribute Key conforming to the + // "aws.dynamodb.segment" semantic conventions. It represents the value of the + // `Segment` request parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 10 + AWSDynamoDBSegmentKey = attribute.Key("aws.dynamodb.segment") + + // AWSDynamoDBSelectKey is the attribute Key conforming to the + // "aws.dynamodb.select" semantic conventions. It represents the value of the + // `Select` request parameter. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ALL_ATTRIBUTES", "COUNT" + AWSDynamoDBSelectKey = attribute.Key("aws.dynamodb.select") + + // AWSDynamoDBTableCountKey is the attribute Key conforming to the + // "aws.dynamodb.table_count" semantic conventions. It represents the number of + // items in the `TableNames` response parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 20 + AWSDynamoDBTableCountKey = attribute.Key("aws.dynamodb.table_count") + + // AWSDynamoDBTableNamesKey is the attribute Key conforming to the + // "aws.dynamodb.table_names" semantic conventions. It represents the keys in + // the `RequestItems` object field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Users", "Cats" + AWSDynamoDBTableNamesKey = attribute.Key("aws.dynamodb.table_names") + + // AWSDynamoDBTotalSegmentsKey is the attribute Key conforming to the + // "aws.dynamodb.total_segments" semantic conventions. It represents the value + // of the `TotalSegments` request parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 100 + AWSDynamoDBTotalSegmentsKey = attribute.Key("aws.dynamodb.total_segments") + + // AWSECSClusterARNKey is the attribute Key conforming to the + // "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an + // [ECS cluster]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster" + // + // [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html + AWSECSClusterARNKey = attribute.Key("aws.ecs.cluster.arn") + + // AWSECSContainerARNKey is the attribute Key conforming to the + // "aws.ecs.container.arn" semantic conventions. It represents the Amazon + // Resource Name (ARN) of an [ECS container instance]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "arn:aws:ecs:us-west-1:123456789123:container/32624152-9086-4f0e-acae-1a75b14fe4d9" + // + // [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html + AWSECSContainerARNKey = attribute.Key("aws.ecs.container.arn") + + // AWSECSLaunchtypeKey is the attribute Key conforming to the + // "aws.ecs.launchtype" semantic conventions. It represents the [launch type] + // for an ECS task. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [launch type]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/launch_types.html + AWSECSLaunchtypeKey = attribute.Key("aws.ecs.launchtype") + + // AWSECSTaskARNKey is the attribute Key conforming to the "aws.ecs.task.arn" + // semantic conventions. It represents the ARN of a running [ECS task]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "arn:aws:ecs:us-west-1:123456789123:task/10838bed-421f-43ef-870a-f43feacbbb5b", + // "arn:aws:ecs:us-west-1:123456789123:task/my-cluster/task-id/23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd" + // + // [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids + AWSECSTaskARNKey = attribute.Key("aws.ecs.task.arn") + + // AWSECSTaskFamilyKey is the attribute Key conforming to the + // "aws.ecs.task.family" semantic conventions. It represents the family name of + // the [ECS task definition] used to create the ECS task. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry-family" + // + // [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html + AWSECSTaskFamilyKey = attribute.Key("aws.ecs.task.family") + + // AWSECSTaskIDKey is the attribute Key conforming to the "aws.ecs.task.id" + // semantic conventions. It represents the ID of a running ECS task. The ID MUST + // be extracted from `task.arn`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "10838bed-421f-43ef-870a-f43feacbbb5b", + // "23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd" + AWSECSTaskIDKey = attribute.Key("aws.ecs.task.id") + + // AWSECSTaskRevisionKey is the attribute Key conforming to the + // "aws.ecs.task.revision" semantic conventions. It represents the revision for + // the task definition used to create the ECS task. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "8", "26" + AWSECSTaskRevisionKey = attribute.Key("aws.ecs.task.revision") + + // AWSEKSClusterARNKey is the attribute Key conforming to the + // "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS + // cluster. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster" + AWSEKSClusterARNKey = attribute.Key("aws.eks.cluster.arn") + + // AWSExtendedRequestIDKey is the attribute Key conforming to the + // "aws.extended_request_id" semantic conventions. It represents the AWS + // extended request ID as returned in the response header `x-amz-id-2`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "wzHcyEWfmOGDIE5QOhTAqFDoDWP3y8IUvpNINCwL9N4TEHbUw0/gZJ+VZTmCNCWR7fezEN3eCiQ=" + AWSExtendedRequestIDKey = attribute.Key("aws.extended_request_id") + + // AWSKinesisStreamNameKey is the attribute Key conforming to the + // "aws.kinesis.stream_name" semantic conventions. It represents the name of the + // AWS Kinesis [stream] the request refers to. Corresponds to the + // `--stream-name` parameter of the Kinesis [describe-stream] operation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "some-stream-name" + // + // [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html + // [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html + AWSKinesisStreamNameKey = attribute.Key("aws.kinesis.stream_name") + + // AWSLambdaInvokedARNKey is the attribute Key conforming to the + // "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked + // ARN as provided on the `Context` passed to the function ( + // `Lambda-Runtime-Invoked-Function-Arn` header on the + // `/runtime/invocation/next` applicable). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:lambda:us-east-1:123456:function:myfunction:myalias" + // Note: This may be different from `cloud.resource_id` if an alias is involved. + AWSLambdaInvokedARNKey = attribute.Key("aws.lambda.invoked_arn") + + // AWSLambdaResourceMappingIDKey is the attribute Key conforming to the + // "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID + // of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda + // function. It's contents are read by Lambda and used to trigger a function. + // This isn't available in the lambda execution context or the lambda runtime + // environment. This is going to be populated by the AWS SDK for each language + // when that UUID is present. Some of these operations are + // Create/Delete/Get/List/Update EventSourceMapping. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "587ad24b-03b9-4413-8202-bbd56b36e5b7" + // + // [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html + AWSLambdaResourceMappingIDKey = attribute.Key("aws.lambda.resource_mapping.id") + + // AWSLogGroupARNsKey is the attribute Key conforming to the + // "aws.log.group.arns" semantic conventions. It represents the Amazon Resource + // Name(s) (ARN) of the AWS log group(s). + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:*" + // Note: See the [log group ARN format documentation]. + // + // [log group ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format + AWSLogGroupARNsKey = attribute.Key("aws.log.group.arns") + + // AWSLogGroupNamesKey is the attribute Key conforming to the + // "aws.log.group.names" semantic conventions. It represents the name(s) of the + // AWS log group(s) an application is writing to. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/aws/lambda/my-function", "opentelemetry-service" + // Note: Multiple log groups must be supported for cases like multi-container + // applications, where a single application has sidecar containers, and each + // write to their own log group. + AWSLogGroupNamesKey = attribute.Key("aws.log.group.names") + + // AWSLogStreamARNsKey is the attribute Key conforming to the + // "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the + // AWS log stream(s). + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:log-stream:logs/main/10838bed-421f-43ef-870a-f43feacbbb5b" + // Note: See the [log stream ARN format documentation]. One log group can + // contain several log streams, so these ARNs necessarily identify both a log + // group and a log stream. + // + // [log stream ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format + AWSLogStreamARNsKey = attribute.Key("aws.log.stream.arns") + + // AWSLogStreamNamesKey is the attribute Key conforming to the + // "aws.log.stream.names" semantic conventions. It represents the name(s) of the + // AWS log stream(s) an application is writing to. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "logs/main/10838bed-421f-43ef-870a-f43feacbbb5b" + AWSLogStreamNamesKey = attribute.Key("aws.log.stream.names") + + // AWSRequestIDKey is the attribute Key conforming to the "aws.request_id" + // semantic conventions. It represents the AWS request ID as returned in the + // response headers `x-amzn-requestid`, `x-amzn-request-id` or + // `x-amz-request-id`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "79b9da39-b7ae-508a-a6bc-864b2829c622", "C9ER4AJX75574TDJ" + AWSRequestIDKey = attribute.Key("aws.request_id") + + // AWSS3BucketKey is the attribute Key conforming to the "aws.s3.bucket" + // semantic conventions. It represents the S3 bucket name the request refers to. + // Corresponds to the `--bucket` parameter of the [S3 API] operations. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "some-bucket-name" + // Note: The `bucket` attribute is applicable to all S3 operations that + // reference a bucket, i.e. that require the bucket name as a mandatory + // parameter. + // This applies to almost all S3 operations except `list-buckets`. + // + // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html + AWSS3BucketKey = attribute.Key("aws.s3.bucket") + + // AWSS3CopySourceKey is the attribute Key conforming to the + // "aws.s3.copy_source" semantic conventions. It represents the source object + // (in the form `bucket`/`key`) for the copy operation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "someFile.yml" + // Note: The `copy_source` attribute applies to S3 copy operations and + // corresponds to the `--copy-source` parameter + // of the [copy-object operation within the S3 API]. + // This applies in particular to the following operations: + // + // - [copy-object] + // - [upload-part-copy] + // + // + // [copy-object operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html + // [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html + // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html + AWSS3CopySourceKey = attribute.Key("aws.s3.copy_source") + + // AWSS3DeleteKey is the attribute Key conforming to the "aws.s3.delete" + // semantic conventions. It represents the delete request container that + // specifies the objects to be deleted. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "Objects=[{Key=string,VersionId=string},{Key=string,VersionId=string}],Quiet=boolean" + // Note: The `delete` attribute is only applicable to the [delete-object] + // operation. + // The `delete` attribute corresponds to the `--delete` parameter of the + // [delete-objects operation within the S3 API]. + // + // [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html + // [delete-objects operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-objects.html + AWSS3DeleteKey = attribute.Key("aws.s3.delete") + + // AWSS3KeyKey is the attribute Key conforming to the "aws.s3.key" semantic + // conventions. It represents the S3 object key the request refers to. + // Corresponds to the `--key` parameter of the [S3 API] operations. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "someFile.yml" + // Note: The `key` attribute is applicable to all object-related S3 operations, + // i.e. that require the object key as a mandatory parameter. + // This applies in particular to the following operations: + // + // - [copy-object] + // - [delete-object] + // - [get-object] + // - [head-object] + // - [put-object] + // - [restore-object] + // - [select-object-content] + // - [abort-multipart-upload] + // - [complete-multipart-upload] + // - [create-multipart-upload] + // - [list-parts] + // - [upload-part] + // - [upload-part-copy] + // + // + // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html + // [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html + // [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html + // [get-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/get-object.html + // [head-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/head-object.html + // [put-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/put-object.html + // [restore-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/restore-object.html + // [select-object-content]: https://docs.aws.amazon.com/cli/latest/reference/s3api/select-object-content.html + // [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html + // [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html + // [create-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/create-multipart-upload.html + // [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html + // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html + // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html + AWSS3KeyKey = attribute.Key("aws.s3.key") + + // AWSS3PartNumberKey is the attribute Key conforming to the + // "aws.s3.part_number" semantic conventions. It represents the part number of + // the part being uploaded in a multipart-upload operation. This is a positive + // integer between 1 and 10,000. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 3456 + // Note: The `part_number` attribute is only applicable to the [upload-part] + // and [upload-part-copy] operations. + // The `part_number` attribute corresponds to the `--part-number` parameter of + // the + // [upload-part operation within the S3 API]. + // + // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html + // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html + // [upload-part operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html + AWSS3PartNumberKey = attribute.Key("aws.s3.part_number") + + // AWSS3UploadIDKey is the attribute Key conforming to the "aws.s3.upload_id" + // semantic conventions. It represents the upload ID that identifies the + // multipart upload. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "dfRtDYWFbkRONycy.Yxwh66Yjlx.cph0gtNBtJ" + // Note: The `upload_id` attribute applies to S3 multipart-upload operations and + // corresponds to the `--upload-id` parameter + // of the [S3 API] multipart operations. + // This applies in particular to the following operations: + // + // - [abort-multipart-upload] + // - [complete-multipart-upload] + // - [list-parts] + // - [upload-part] + // - [upload-part-copy] + // + // + // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html + // [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html + // [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html + // [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html + // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html + // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html + AWSS3UploadIDKey = attribute.Key("aws.s3.upload_id") + + // AWSSecretsmanagerSecretARNKey is the attribute Key conforming to the + // "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN + // of the Secret stored in the Secrets Manager. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "arn:aws:secretsmanager:us-east-1:123456789012:secret:SecretName-6RandomCharacters" + AWSSecretsmanagerSecretARNKey = attribute.Key("aws.secretsmanager.secret.arn") + + // AWSSNSTopicARNKey is the attribute Key conforming to the "aws.sns.topic.arn" + // semantic conventions. It represents the ARN of the AWS SNS Topic. An Amazon + // SNS [topic] is a logical access point that acts as a communication channel. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:sns:us-east-1:123456789012:mystack-mytopic-NZJ5JSMVGFIE" + // + // [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html + AWSSNSTopicARNKey = attribute.Key("aws.sns.topic.arn") + + // AWSSQSQueueURLKey is the attribute Key conforming to the "aws.sqs.queue.url" + // semantic conventions. It represents the URL of the AWS SQS Queue. It's a + // unique identifier for a queue in Amazon Simple Queue Service (SQS) and is + // used to access the queue and perform actions on it. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://sqs.us-east-1.amazonaws.com/123456789012/MyQueue" + AWSSQSQueueURLKey = attribute.Key("aws.sqs.queue.url") + + // AWSStepFunctionsActivityARNKey is the attribute Key conforming to the + // "aws.step_functions.activity.arn" semantic conventions. It represents the ARN + // of the AWS Step Functions Activity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:states:us-east-1:123456789012:activity:get-greeting" + AWSStepFunctionsActivityARNKey = attribute.Key("aws.step_functions.activity.arn") + + // AWSStepFunctionsStateMachineARNKey is the attribute Key conforming to the + // "aws.step_functions.state_machine.arn" semantic conventions. It represents + // the ARN of the AWS Step Functions State Machine. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "arn:aws:states:us-east-1:123456789012:stateMachine:myStateMachine:1" + AWSStepFunctionsStateMachineARNKey = attribute.Key("aws.step_functions.state_machine.arn") +) + +// AWSBedrockGuardrailID returns an attribute KeyValue conforming to the +// "aws.bedrock.guardrail.id" semantic conventions. It represents the unique +// identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and +// prevent unwanted behavior from model responses or user messages. +// +// [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html +func AWSBedrockGuardrailID(val string) attribute.KeyValue { + return AWSBedrockGuardrailIDKey.String(val) +} + +// AWSBedrockKnowledgeBaseID returns an attribute KeyValue conforming to the +// "aws.bedrock.knowledge_base.id" semantic conventions. It represents the unique +// identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a bank of +// information that can be queried by models to generate more relevant responses +// and augment prompts. +// +// [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html +func AWSBedrockKnowledgeBaseID(val string) attribute.KeyValue { + return AWSBedrockKnowledgeBaseIDKey.String(val) +} + +// AWSDynamoDBAttributeDefinitions returns an attribute KeyValue conforming to +// the "aws.dynamodb.attribute_definitions" semantic conventions. It represents +// the JSON-serialized value of each item in the `AttributeDefinitions` request +// field. +func AWSDynamoDBAttributeDefinitions(val ...string) attribute.KeyValue { + return AWSDynamoDBAttributeDefinitionsKey.StringSlice(val) +} + +// AWSDynamoDBAttributesToGet returns an attribute KeyValue conforming to the +// "aws.dynamodb.attributes_to_get" semantic conventions. It represents the value +// of the `AttributesToGet` request parameter. +func AWSDynamoDBAttributesToGet(val ...string) attribute.KeyValue { + return AWSDynamoDBAttributesToGetKey.StringSlice(val) +} + +// AWSDynamoDBConsistentRead returns an attribute KeyValue conforming to the +// "aws.dynamodb.consistent_read" semantic conventions. It represents the value +// of the `ConsistentRead` request parameter. +func AWSDynamoDBConsistentRead(val bool) attribute.KeyValue { + return AWSDynamoDBConsistentReadKey.Bool(val) +} + +// AWSDynamoDBConsumedCapacity returns an attribute KeyValue conforming to the +// "aws.dynamodb.consumed_capacity" semantic conventions. It represents the +// JSON-serialized value of each item in the `ConsumedCapacity` response field. +func AWSDynamoDBConsumedCapacity(val ...string) attribute.KeyValue { + return AWSDynamoDBConsumedCapacityKey.StringSlice(val) +} + +// AWSDynamoDBCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.count" semantic conventions. It represents the value of the +// `Count` response parameter. +func AWSDynamoDBCount(val int) attribute.KeyValue { + return AWSDynamoDBCountKey.Int(val) +} + +// AWSDynamoDBExclusiveStartTable returns an attribute KeyValue conforming to the +// "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the +// value of the `ExclusiveStartTableName` request parameter. +func AWSDynamoDBExclusiveStartTable(val string) attribute.KeyValue { + return AWSDynamoDBExclusiveStartTableKey.String(val) +} + +// AWSDynamoDBGlobalSecondaryIndexUpdates returns an attribute KeyValue +// conforming to the "aws.dynamodb.global_secondary_index_updates" semantic +// conventions. It represents the JSON-serialized value of each item in the +// `GlobalSecondaryIndexUpdates` request field. +func AWSDynamoDBGlobalSecondaryIndexUpdates(val ...string) attribute.KeyValue { + return AWSDynamoDBGlobalSecondaryIndexUpdatesKey.StringSlice(val) +} + +// AWSDynamoDBGlobalSecondaryIndexes returns an attribute KeyValue conforming to +// the "aws.dynamodb.global_secondary_indexes" semantic conventions. It +// represents the JSON-serialized value of each item of the +// `GlobalSecondaryIndexes` request field. +func AWSDynamoDBGlobalSecondaryIndexes(val ...string) attribute.KeyValue { + return AWSDynamoDBGlobalSecondaryIndexesKey.StringSlice(val) +} + +// AWSDynamoDBIndexName returns an attribute KeyValue conforming to the +// "aws.dynamodb.index_name" semantic conventions. It represents the value of the +// `IndexName` request parameter. +func AWSDynamoDBIndexName(val string) attribute.KeyValue { + return AWSDynamoDBIndexNameKey.String(val) +} + +// AWSDynamoDBItemCollectionMetrics returns an attribute KeyValue conforming to +// the "aws.dynamodb.item_collection_metrics" semantic conventions. It represents +// the JSON-serialized value of the `ItemCollectionMetrics` response field. +func AWSDynamoDBItemCollectionMetrics(val string) attribute.KeyValue { + return AWSDynamoDBItemCollectionMetricsKey.String(val) +} + +// AWSDynamoDBLimit returns an attribute KeyValue conforming to the +// "aws.dynamodb.limit" semantic conventions. It represents the value of the +// `Limit` request parameter. +func AWSDynamoDBLimit(val int) attribute.KeyValue { + return AWSDynamoDBLimitKey.Int(val) +} + +// AWSDynamoDBLocalSecondaryIndexes returns an attribute KeyValue conforming to +// the "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents +// the JSON-serialized value of each item of the `LocalSecondaryIndexes` request +// field. +func AWSDynamoDBLocalSecondaryIndexes(val ...string) attribute.KeyValue { + return AWSDynamoDBLocalSecondaryIndexesKey.StringSlice(val) +} + +// AWSDynamoDBProjection returns an attribute KeyValue conforming to the +// "aws.dynamodb.projection" semantic conventions. It represents the value of the +// `ProjectionExpression` request parameter. +func AWSDynamoDBProjection(val string) attribute.KeyValue { + return AWSDynamoDBProjectionKey.String(val) +} + +// AWSDynamoDBProvisionedReadCapacity returns an attribute KeyValue conforming to +// the "aws.dynamodb.provisioned_read_capacity" semantic conventions. It +// represents the value of the `ProvisionedThroughput.ReadCapacityUnits` request +// parameter. +func AWSDynamoDBProvisionedReadCapacity(val float64) attribute.KeyValue { + return AWSDynamoDBProvisionedReadCapacityKey.Float64(val) +} + +// AWSDynamoDBProvisionedWriteCapacity returns an attribute KeyValue conforming +// to the "aws.dynamodb.provisioned_write_capacity" semantic conventions. It +// represents the value of the `ProvisionedThroughput.WriteCapacityUnits` request +// parameter. +func AWSDynamoDBProvisionedWriteCapacity(val float64) attribute.KeyValue { + return AWSDynamoDBProvisionedWriteCapacityKey.Float64(val) +} + +// AWSDynamoDBScanForward returns an attribute KeyValue conforming to the +// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of +// the `ScanIndexForward` request parameter. +func AWSDynamoDBScanForward(val bool) attribute.KeyValue { + return AWSDynamoDBScanForwardKey.Bool(val) +} + +// AWSDynamoDBScannedCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.scanned_count" semantic conventions. It represents the value of +// the `ScannedCount` response parameter. +func AWSDynamoDBScannedCount(val int) attribute.KeyValue { + return AWSDynamoDBScannedCountKey.Int(val) +} + +// AWSDynamoDBSegment returns an attribute KeyValue conforming to the +// "aws.dynamodb.segment" semantic conventions. It represents the value of the +// `Segment` request parameter. +func AWSDynamoDBSegment(val int) attribute.KeyValue { + return AWSDynamoDBSegmentKey.Int(val) +} + +// AWSDynamoDBSelect returns an attribute KeyValue conforming to the +// "aws.dynamodb.select" semantic conventions. It represents the value of the +// `Select` request parameter. +func AWSDynamoDBSelect(val string) attribute.KeyValue { + return AWSDynamoDBSelectKey.String(val) +} + +// AWSDynamoDBTableCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.table_count" semantic conventions. It represents the number of +// items in the `TableNames` response parameter. +func AWSDynamoDBTableCount(val int) attribute.KeyValue { + return AWSDynamoDBTableCountKey.Int(val) +} + +// AWSDynamoDBTableNames returns an attribute KeyValue conforming to the +// "aws.dynamodb.table_names" semantic conventions. It represents the keys in the +// `RequestItems` object field. +func AWSDynamoDBTableNames(val ...string) attribute.KeyValue { + return AWSDynamoDBTableNamesKey.StringSlice(val) +} + +// AWSDynamoDBTotalSegments returns an attribute KeyValue conforming to the +// "aws.dynamodb.total_segments" semantic conventions. It represents the value of +// the `TotalSegments` request parameter. +func AWSDynamoDBTotalSegments(val int) attribute.KeyValue { + return AWSDynamoDBTotalSegmentsKey.Int(val) +} + +// AWSECSClusterARN returns an attribute KeyValue conforming to the +// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an +// [ECS cluster]. +// +// [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html +func AWSECSClusterARN(val string) attribute.KeyValue { + return AWSECSClusterARNKey.String(val) +} + +// AWSECSContainerARN returns an attribute KeyValue conforming to the +// "aws.ecs.container.arn" semantic conventions. It represents the Amazon +// Resource Name (ARN) of an [ECS container instance]. +// +// [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html +func AWSECSContainerARN(val string) attribute.KeyValue { + return AWSECSContainerARNKey.String(val) +} + +// AWSECSTaskARN returns an attribute KeyValue conforming to the +// "aws.ecs.task.arn" semantic conventions. It represents the ARN of a running +// [ECS task]. +// +// [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids +func AWSECSTaskARN(val string) attribute.KeyValue { + return AWSECSTaskARNKey.String(val) +} + +// AWSECSTaskFamily returns an attribute KeyValue conforming to the +// "aws.ecs.task.family" semantic conventions. It represents the family name of +// the [ECS task definition] used to create the ECS task. +// +// [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html +func AWSECSTaskFamily(val string) attribute.KeyValue { + return AWSECSTaskFamilyKey.String(val) +} + +// AWSECSTaskID returns an attribute KeyValue conforming to the "aws.ecs.task.id" +// semantic conventions. It represents the ID of a running ECS task. The ID MUST +// be extracted from `task.arn`. +func AWSECSTaskID(val string) attribute.KeyValue { + return AWSECSTaskIDKey.String(val) +} + +// AWSECSTaskRevision returns an attribute KeyValue conforming to the +// "aws.ecs.task.revision" semantic conventions. It represents the revision for +// the task definition used to create the ECS task. +func AWSECSTaskRevision(val string) attribute.KeyValue { + return AWSECSTaskRevisionKey.String(val) +} + +// AWSEKSClusterARN returns an attribute KeyValue conforming to the +// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS +// cluster. +func AWSEKSClusterARN(val string) attribute.KeyValue { + return AWSEKSClusterARNKey.String(val) +} + +// AWSExtendedRequestID returns an attribute KeyValue conforming to the +// "aws.extended_request_id" semantic conventions. It represents the AWS extended +// request ID as returned in the response header `x-amz-id-2`. +func AWSExtendedRequestID(val string) attribute.KeyValue { + return AWSExtendedRequestIDKey.String(val) +} + +// AWSKinesisStreamName returns an attribute KeyValue conforming to the +// "aws.kinesis.stream_name" semantic conventions. It represents the name of the +// AWS Kinesis [stream] the request refers to. Corresponds to the `--stream-name` +// parameter of the Kinesis [describe-stream] operation. +// +// [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html +// [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html +func AWSKinesisStreamName(val string) attribute.KeyValue { + return AWSKinesisStreamNameKey.String(val) +} + +// AWSLambdaInvokedARN returns an attribute KeyValue conforming to the +// "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked +// ARN as provided on the `Context` passed to the function ( +// `Lambda-Runtime-Invoked-Function-Arn` header on the `/runtime/invocation/next` +// applicable). +func AWSLambdaInvokedARN(val string) attribute.KeyValue { + return AWSLambdaInvokedARNKey.String(val) +} + +// AWSLambdaResourceMappingID returns an attribute KeyValue conforming to the +// "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID +// of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda +// function. It's contents are read by Lambda and used to trigger a function. +// This isn't available in the lambda execution context or the lambda runtime +// environment. This is going to be populated by the AWS SDK for each language +// when that UUID is present. Some of these operations are +// Create/Delete/Get/List/Update EventSourceMapping. +// +// [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html +func AWSLambdaResourceMappingID(val string) attribute.KeyValue { + return AWSLambdaResourceMappingIDKey.String(val) +} + +// AWSLogGroupARNs returns an attribute KeyValue conforming to the +// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource +// Name(s) (ARN) of the AWS log group(s). +func AWSLogGroupARNs(val ...string) attribute.KeyValue { + return AWSLogGroupARNsKey.StringSlice(val) +} + +// AWSLogGroupNames returns an attribute KeyValue conforming to the +// "aws.log.group.names" semantic conventions. It represents the name(s) of the +// AWS log group(s) an application is writing to. +func AWSLogGroupNames(val ...string) attribute.KeyValue { + return AWSLogGroupNamesKey.StringSlice(val) +} + +// AWSLogStreamARNs returns an attribute KeyValue conforming to the +// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the +// AWS log stream(s). +func AWSLogStreamARNs(val ...string) attribute.KeyValue { + return AWSLogStreamARNsKey.StringSlice(val) +} + +// AWSLogStreamNames returns an attribute KeyValue conforming to the +// "aws.log.stream.names" semantic conventions. It represents the name(s) of the +// AWS log stream(s) an application is writing to. +func AWSLogStreamNames(val ...string) attribute.KeyValue { + return AWSLogStreamNamesKey.StringSlice(val) +} + +// AWSRequestID returns an attribute KeyValue conforming to the "aws.request_id" +// semantic conventions. It represents the AWS request ID as returned in the +// response headers `x-amzn-requestid`, `x-amzn-request-id` or `x-amz-request-id` +// . +func AWSRequestID(val string) attribute.KeyValue { + return AWSRequestIDKey.String(val) +} + +// AWSS3Bucket returns an attribute KeyValue conforming to the "aws.s3.bucket" +// semantic conventions. It represents the S3 bucket name the request refers to. +// Corresponds to the `--bucket` parameter of the [S3 API] operations. +// +// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html +func AWSS3Bucket(val string) attribute.KeyValue { + return AWSS3BucketKey.String(val) +} + +// AWSS3CopySource returns an attribute KeyValue conforming to the +// "aws.s3.copy_source" semantic conventions. It represents the source object (in +// the form `bucket`/`key`) for the copy operation. +func AWSS3CopySource(val string) attribute.KeyValue { + return AWSS3CopySourceKey.String(val) +} + +// AWSS3Delete returns an attribute KeyValue conforming to the "aws.s3.delete" +// semantic conventions. It represents the delete request container that +// specifies the objects to be deleted. +func AWSS3Delete(val string) attribute.KeyValue { + return AWSS3DeleteKey.String(val) +} + +// AWSS3Key returns an attribute KeyValue conforming to the "aws.s3.key" semantic +// conventions. It represents the S3 object key the request refers to. +// Corresponds to the `--key` parameter of the [S3 API] operations. +// +// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html +func AWSS3Key(val string) attribute.KeyValue { + return AWSS3KeyKey.String(val) +} + +// AWSS3PartNumber returns an attribute KeyValue conforming to the +// "aws.s3.part_number" semantic conventions. It represents the part number of +// the part being uploaded in a multipart-upload operation. This is a positive +// integer between 1 and 10,000. +func AWSS3PartNumber(val int) attribute.KeyValue { + return AWSS3PartNumberKey.Int(val) +} + +// AWSS3UploadID returns an attribute KeyValue conforming to the +// "aws.s3.upload_id" semantic conventions. It represents the upload ID that +// identifies the multipart upload. +func AWSS3UploadID(val string) attribute.KeyValue { + return AWSS3UploadIDKey.String(val) +} + +// AWSSecretsmanagerSecretARN returns an attribute KeyValue conforming to the +// "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN of +// the Secret stored in the Secrets Manager. +func AWSSecretsmanagerSecretARN(val string) attribute.KeyValue { + return AWSSecretsmanagerSecretARNKey.String(val) +} + +// AWSSNSTopicARN returns an attribute KeyValue conforming to the +// "aws.sns.topic.arn" semantic conventions. It represents the ARN of the AWS SNS +// Topic. An Amazon SNS [topic] is a logical access point that acts as a +// communication channel. +// +// [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html +func AWSSNSTopicARN(val string) attribute.KeyValue { + return AWSSNSTopicARNKey.String(val) +} + +// AWSSQSQueueURL returns an attribute KeyValue conforming to the +// "aws.sqs.queue.url" semantic conventions. It represents the URL of the AWS SQS +// Queue. It's a unique identifier for a queue in Amazon Simple Queue Service +// (SQS) and is used to access the queue and perform actions on it. +func AWSSQSQueueURL(val string) attribute.KeyValue { + return AWSSQSQueueURLKey.String(val) +} + +// AWSStepFunctionsActivityARN returns an attribute KeyValue conforming to the +// "aws.step_functions.activity.arn" semantic conventions. It represents the ARN +// of the AWS Step Functions Activity. +func AWSStepFunctionsActivityARN(val string) attribute.KeyValue { + return AWSStepFunctionsActivityARNKey.String(val) +} + +// AWSStepFunctionsStateMachineARN returns an attribute KeyValue conforming to +// the "aws.step_functions.state_machine.arn" semantic conventions. It represents +// the ARN of the AWS Step Functions State Machine. +func AWSStepFunctionsStateMachineARN(val string) attribute.KeyValue { + return AWSStepFunctionsStateMachineARNKey.String(val) +} + +// Enum values for aws.ecs.launchtype +var ( + // Amazon EC2 + // Stability: development + AWSECSLaunchtypeEC2 = AWSECSLaunchtypeKey.String("ec2") + // Amazon Fargate + // Stability: development + AWSECSLaunchtypeFargate = AWSECSLaunchtypeKey.String("fargate") +) + +// Namespace: azure +const ( + // AzureClientIDKey is the attribute Key conforming to the "azure.client.id" + // semantic conventions. It represents the unique identifier of the client + // instance. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "3ba4827d-4422-483f-b59f-85b74211c11d", "storage-client-1" + AzureClientIDKey = attribute.Key("azure.client.id") + + // AzureCosmosDBConnectionModeKey is the attribute Key conforming to the + // "azure.cosmosdb.connection.mode" semantic conventions. It represents the + // cosmos client connection mode. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + AzureCosmosDBConnectionModeKey = attribute.Key("azure.cosmosdb.connection.mode") + + // AzureCosmosDBConsistencyLevelKey is the attribute Key conforming to the + // "azure.cosmosdb.consistency.level" semantic conventions. It represents the + // account or request [consistency level]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Eventual", "ConsistentPrefix", "BoundedStaleness", "Strong", + // "Session" + // + // [consistency level]: https://learn.microsoft.com/azure/cosmos-db/consistency-levels + AzureCosmosDBConsistencyLevelKey = attribute.Key("azure.cosmosdb.consistency.level") + + // AzureCosmosDBOperationContactedRegionsKey is the attribute Key conforming to + // the "azure.cosmosdb.operation.contacted_regions" semantic conventions. It + // represents the list of regions contacted during operation in the order that + // they were contacted. If there is more than one region listed, it indicates + // that the operation was performed on multiple regions i.e. cross-regional + // call. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "North Central US", "Australia East", "Australia Southeast" + // Note: Region name matches the format of `displayName` in [Azure Location API] + // + // [Azure Location API]: https://learn.microsoft.com/rest/api/resources/subscriptions/list-locations + AzureCosmosDBOperationContactedRegionsKey = attribute.Key("azure.cosmosdb.operation.contacted_regions") + + // AzureCosmosDBOperationRequestChargeKey is the attribute Key conforming to the + // "azure.cosmosdb.operation.request_charge" semantic conventions. It represents + // the number of request units consumed by the operation. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 46.18, 1.0 + AzureCosmosDBOperationRequestChargeKey = attribute.Key("azure.cosmosdb.operation.request_charge") + + // AzureCosmosDBRequestBodySizeKey is the attribute Key conforming to the + // "azure.cosmosdb.request.body.size" semantic conventions. It represents the + // request payload size in bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + AzureCosmosDBRequestBodySizeKey = attribute.Key("azure.cosmosdb.request.body.size") + + // AzureCosmosDBResponseSubStatusCodeKey is the attribute Key conforming to the + // "azure.cosmosdb.response.sub_status_code" semantic conventions. It represents + // the cosmos DB sub status code. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1000, 1002 + AzureCosmosDBResponseSubStatusCodeKey = attribute.Key("azure.cosmosdb.response.sub_status_code") + + // AzureResourceProviderNamespaceKey is the attribute Key conforming to the + // "azure.resource_provider.namespace" semantic conventions. It represents the + // [Azure Resource Provider Namespace] as recognized by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Microsoft.Storage", "Microsoft.KeyVault", "Microsoft.ServiceBus" + // + // [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers + AzureResourceProviderNamespaceKey = attribute.Key("azure.resource_provider.namespace") + + // AzureServiceRequestIDKey is the attribute Key conforming to the + // "azure.service.request.id" semantic conventions. It represents the unique + // identifier of the service request. It's generated by the Azure service and + // returned with the response. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "00000000-0000-0000-0000-000000000000" + AzureServiceRequestIDKey = attribute.Key("azure.service.request.id") +) + +// AzureClientID returns an attribute KeyValue conforming to the +// "azure.client.id" semantic conventions. It represents the unique identifier of +// the client instance. +func AzureClientID(val string) attribute.KeyValue { + return AzureClientIDKey.String(val) +} + +// AzureCosmosDBOperationContactedRegions returns an attribute KeyValue +// conforming to the "azure.cosmosdb.operation.contacted_regions" semantic +// conventions. It represents the list of regions contacted during operation in +// the order that they were contacted. If there is more than one region listed, +// it indicates that the operation was performed on multiple regions i.e. +// cross-regional call. +func AzureCosmosDBOperationContactedRegions(val ...string) attribute.KeyValue { + return AzureCosmosDBOperationContactedRegionsKey.StringSlice(val) +} + +// AzureCosmosDBOperationRequestCharge returns an attribute KeyValue conforming +// to the "azure.cosmosdb.operation.request_charge" semantic conventions. It +// represents the number of request units consumed by the operation. +func AzureCosmosDBOperationRequestCharge(val float64) attribute.KeyValue { + return AzureCosmosDBOperationRequestChargeKey.Float64(val) +} + +// AzureCosmosDBRequestBodySize returns an attribute KeyValue conforming to the +// "azure.cosmosdb.request.body.size" semantic conventions. It represents the +// request payload size in bytes. +func AzureCosmosDBRequestBodySize(val int) attribute.KeyValue { + return AzureCosmosDBRequestBodySizeKey.Int(val) +} + +// AzureCosmosDBResponseSubStatusCode returns an attribute KeyValue conforming to +// the "azure.cosmosdb.response.sub_status_code" semantic conventions. It +// represents the cosmos DB sub status code. +func AzureCosmosDBResponseSubStatusCode(val int) attribute.KeyValue { + return AzureCosmosDBResponseSubStatusCodeKey.Int(val) +} + +// AzureResourceProviderNamespace returns an attribute KeyValue conforming to the +// "azure.resource_provider.namespace" semantic conventions. It represents the +// [Azure Resource Provider Namespace] as recognized by the client. +// +// [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers +func AzureResourceProviderNamespace(val string) attribute.KeyValue { + return AzureResourceProviderNamespaceKey.String(val) +} + +// AzureServiceRequestID returns an attribute KeyValue conforming to the +// "azure.service.request.id" semantic conventions. It represents the unique +// identifier of the service request. It's generated by the Azure service and +// returned with the response. +func AzureServiceRequestID(val string) attribute.KeyValue { + return AzureServiceRequestIDKey.String(val) +} + +// Enum values for azure.cosmosdb.connection.mode +var ( + // Gateway (HTTP) connection. + // Stability: development + AzureCosmosDBConnectionModeGateway = AzureCosmosDBConnectionModeKey.String("gateway") + // Direct connection. + // Stability: development + AzureCosmosDBConnectionModeDirect = AzureCosmosDBConnectionModeKey.String("direct") +) + +// Enum values for azure.cosmosdb.consistency.level +var ( + // Strong + // Stability: development + AzureCosmosDBConsistencyLevelStrong = AzureCosmosDBConsistencyLevelKey.String("Strong") + // Bounded Staleness + // Stability: development + AzureCosmosDBConsistencyLevelBoundedStaleness = AzureCosmosDBConsistencyLevelKey.String("BoundedStaleness") + // Session + // Stability: development + AzureCosmosDBConsistencyLevelSession = AzureCosmosDBConsistencyLevelKey.String("Session") + // Eventual + // Stability: development + AzureCosmosDBConsistencyLevelEventual = AzureCosmosDBConsistencyLevelKey.String("Eventual") + // Consistent Prefix + // Stability: development + AzureCosmosDBConsistencyLevelConsistentPrefix = AzureCosmosDBConsistencyLevelKey.String("ConsistentPrefix") +) + +// Namespace: browser +const ( + // BrowserBrandsKey is the attribute Key conforming to the "browser.brands" + // semantic conventions. It represents the array of brand name and version + // separated by a space. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: " Not A;Brand 99", "Chromium 99", "Chrome 99" + // Note: This value is intended to be taken from the [UA client hints API] ( + // `navigator.userAgentData.brands`). + // + // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface + BrowserBrandsKey = attribute.Key("browser.brands") + + // BrowserLanguageKey is the attribute Key conforming to the "browser.language" + // semantic conventions. It represents the preferred language of the user using + // the browser. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "en", "en-US", "fr", "fr-FR" + // Note: This value is intended to be taken from the Navigator API + // `navigator.language`. + BrowserLanguageKey = attribute.Key("browser.language") + + // BrowserMobileKey is the attribute Key conforming to the "browser.mobile" + // semantic conventions. It represents a boolean that is true if the browser is + // running on a mobile device. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: This value is intended to be taken from the [UA client hints API] ( + // `navigator.userAgentData.mobile`). If unavailable, this attribute SHOULD be + // left unset. + // + // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface + BrowserMobileKey = attribute.Key("browser.mobile") + + // BrowserPlatformKey is the attribute Key conforming to the "browser.platform" + // semantic conventions. It represents the platform on which the browser is + // running. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Windows", "macOS", "Android" + // Note: This value is intended to be taken from the [UA client hints API] ( + // `navigator.userAgentData.platform`). If unavailable, the legacy + // `navigator.platform` API SHOULD NOT be used instead and this attribute SHOULD + // be left unset in order for the values to be consistent. + // The list of possible values is defined in the + // [W3C User-Agent Client Hints specification]. Note that some (but not all) of + // these values can overlap with values in the + // [`os.type` and `os.name` attributes]. However, for consistency, the values in + // the `browser.platform` attribute should capture the exact value that the user + // agent provides. + // + // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface + // [W3C User-Agent Client Hints specification]: https://wicg.github.io/ua-client-hints/#sec-ch-ua-platform + // [`os.type` and `os.name` attributes]: ./os.md + BrowserPlatformKey = attribute.Key("browser.platform") +) + +// BrowserBrands returns an attribute KeyValue conforming to the "browser.brands" +// semantic conventions. It represents the array of brand name and version +// separated by a space. +func BrowserBrands(val ...string) attribute.KeyValue { + return BrowserBrandsKey.StringSlice(val) +} + +// BrowserLanguage returns an attribute KeyValue conforming to the +// "browser.language" semantic conventions. It represents the preferred language +// of the user using the browser. +func BrowserLanguage(val string) attribute.KeyValue { + return BrowserLanguageKey.String(val) +} + +// BrowserMobile returns an attribute KeyValue conforming to the "browser.mobile" +// semantic conventions. It represents a boolean that is true if the browser is +// running on a mobile device. +func BrowserMobile(val bool) attribute.KeyValue { + return BrowserMobileKey.Bool(val) +} + +// BrowserPlatform returns an attribute KeyValue conforming to the +// "browser.platform" semantic conventions. It represents the platform on which +// the browser is running. +func BrowserPlatform(val string) attribute.KeyValue { + return BrowserPlatformKey.String(val) +} + +// Namespace: cassandra +const ( + // CassandraConsistencyLevelKey is the attribute Key conforming to the + // "cassandra.consistency.level" semantic conventions. It represents the + // consistency level of the query. Based on consistency values from [CQL]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [CQL]: https://docs.datastax.com/en/cassandra-oss/3.0/cassandra/dml/dmlConfigConsistency.html + CassandraConsistencyLevelKey = attribute.Key("cassandra.consistency.level") + + // CassandraCoordinatorDCKey is the attribute Key conforming to the + // "cassandra.coordinator.dc" semantic conventions. It represents the data + // center of the coordinating node for a query. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: us-west-2 + CassandraCoordinatorDCKey = attribute.Key("cassandra.coordinator.dc") + + // CassandraCoordinatorIDKey is the attribute Key conforming to the + // "cassandra.coordinator.id" semantic conventions. It represents the ID of the + // coordinating node for a query. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: be13faa2-8574-4d71-926d-27f16cf8a7af + CassandraCoordinatorIDKey = attribute.Key("cassandra.coordinator.id") + + // CassandraPageSizeKey is the attribute Key conforming to the + // "cassandra.page.size" semantic conventions. It represents the fetch size used + // for paging, i.e. how many rows will be returned at once. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 5000 + CassandraPageSizeKey = attribute.Key("cassandra.page.size") + + // CassandraQueryIdempotentKey is the attribute Key conforming to the + // "cassandra.query.idempotent" semantic conventions. It represents the whether + // or not the query is idempotent. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + CassandraQueryIdempotentKey = attribute.Key("cassandra.query.idempotent") + + // CassandraSpeculativeExecutionCountKey is the attribute Key conforming to the + // "cassandra.speculative_execution.count" semantic conventions. It represents + // the number of times a query was speculatively executed. Not set or `0` if the + // query was not executed speculatively. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0, 2 + CassandraSpeculativeExecutionCountKey = attribute.Key("cassandra.speculative_execution.count") +) + +// CassandraCoordinatorDC returns an attribute KeyValue conforming to the +// "cassandra.coordinator.dc" semantic conventions. It represents the data center +// of the coordinating node for a query. +func CassandraCoordinatorDC(val string) attribute.KeyValue { + return CassandraCoordinatorDCKey.String(val) +} + +// CassandraCoordinatorID returns an attribute KeyValue conforming to the +// "cassandra.coordinator.id" semantic conventions. It represents the ID of the +// coordinating node for a query. +func CassandraCoordinatorID(val string) attribute.KeyValue { + return CassandraCoordinatorIDKey.String(val) +} + +// CassandraPageSize returns an attribute KeyValue conforming to the +// "cassandra.page.size" semantic conventions. It represents the fetch size used +// for paging, i.e. how many rows will be returned at once. +func CassandraPageSize(val int) attribute.KeyValue { + return CassandraPageSizeKey.Int(val) +} + +// CassandraQueryIdempotent returns an attribute KeyValue conforming to the +// "cassandra.query.idempotent" semantic conventions. It represents the whether +// or not the query is idempotent. +func CassandraQueryIdempotent(val bool) attribute.KeyValue { + return CassandraQueryIdempotentKey.Bool(val) +} + +// CassandraSpeculativeExecutionCount returns an attribute KeyValue conforming to +// the "cassandra.speculative_execution.count" semantic conventions. It +// represents the number of times a query was speculatively executed. Not set or +// `0` if the query was not executed speculatively. +func CassandraSpeculativeExecutionCount(val int) attribute.KeyValue { + return CassandraSpeculativeExecutionCountKey.Int(val) +} + +// Enum values for cassandra.consistency.level +var ( + // All + // Stability: development + CassandraConsistencyLevelAll = CassandraConsistencyLevelKey.String("all") + // Each Quorum + // Stability: development + CassandraConsistencyLevelEachQuorum = CassandraConsistencyLevelKey.String("each_quorum") + // Quorum + // Stability: development + CassandraConsistencyLevelQuorum = CassandraConsistencyLevelKey.String("quorum") + // Local Quorum + // Stability: development + CassandraConsistencyLevelLocalQuorum = CassandraConsistencyLevelKey.String("local_quorum") + // One + // Stability: development + CassandraConsistencyLevelOne = CassandraConsistencyLevelKey.String("one") + // Two + // Stability: development + CassandraConsistencyLevelTwo = CassandraConsistencyLevelKey.String("two") + // Three + // Stability: development + CassandraConsistencyLevelThree = CassandraConsistencyLevelKey.String("three") + // Local One + // Stability: development + CassandraConsistencyLevelLocalOne = CassandraConsistencyLevelKey.String("local_one") + // Any + // Stability: development + CassandraConsistencyLevelAny = CassandraConsistencyLevelKey.String("any") + // Serial + // Stability: development + CassandraConsistencyLevelSerial = CassandraConsistencyLevelKey.String("serial") + // Local Serial + // Stability: development + CassandraConsistencyLevelLocalSerial = CassandraConsistencyLevelKey.String("local_serial") +) + +// Namespace: cicd +const ( + // CICDPipelineActionNameKey is the attribute Key conforming to the + // "cicd.pipeline.action.name" semantic conventions. It represents the kind of + // action a pipeline run is performing. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "BUILD", "RUN", "SYNC" + CICDPipelineActionNameKey = attribute.Key("cicd.pipeline.action.name") + + // CICDPipelineNameKey is the attribute Key conforming to the + // "cicd.pipeline.name" semantic conventions. It represents the human readable + // name of the pipeline within a CI/CD system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Build and Test", "Lint", "Deploy Go Project", + // "deploy_to_environment" + CICDPipelineNameKey = attribute.Key("cicd.pipeline.name") + + // CICDPipelineResultKey is the attribute Key conforming to the + // "cicd.pipeline.result" semantic conventions. It represents the result of a + // pipeline run. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "success", "failure", "timeout", "skipped" + CICDPipelineResultKey = attribute.Key("cicd.pipeline.result") + + // CICDPipelineRunIDKey is the attribute Key conforming to the + // "cicd.pipeline.run.id" semantic conventions. It represents the unique + // identifier of a pipeline run within a CI/CD system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "120912" + CICDPipelineRunIDKey = attribute.Key("cicd.pipeline.run.id") + + // CICDPipelineRunStateKey is the attribute Key conforming to the + // "cicd.pipeline.run.state" semantic conventions. It represents the pipeline + // run goes through these states during its lifecycle. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "pending", "executing", "finalizing" + CICDPipelineRunStateKey = attribute.Key("cicd.pipeline.run.state") + + // CICDPipelineRunURLFullKey is the attribute Key conforming to the + // "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of + // the pipeline run, providing the complete address in order to locate and + // identify the pipeline run. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763?pr=1075" + // + // [URL]: https://wikipedia.org/wiki/URL + CICDPipelineRunURLFullKey = attribute.Key("cicd.pipeline.run.url.full") + + // CICDPipelineTaskNameKey is the attribute Key conforming to the + // "cicd.pipeline.task.name" semantic conventions. It represents the human + // readable name of a task within a pipeline. Task here most closely aligns with + // a [computing process] in a pipeline. Other terms for tasks include commands, + // steps, and procedures. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Run GoLang Linter", "Go Build", "go-test", "deploy_binary" + // + // [computing process]: https://wikipedia.org/wiki/Pipeline_(computing) + CICDPipelineTaskNameKey = attribute.Key("cicd.pipeline.task.name") + + // CICDPipelineTaskRunIDKey is the attribute Key conforming to the + // "cicd.pipeline.task.run.id" semantic conventions. It represents the unique + // identifier of a task run within a pipeline. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "12097" + // Note: For a given pipeline run and task, the `cicd.pipeline.task.run.id` MUST + // be unique within that run. For the same task across different runs of the + // same pipeline, the `cicd.pipeline.task.run.id` MAY remain the same, enabling + // correlation of `cicd.pipeline.task.run.result` values across multiple + // pipeline runs. + CICDPipelineTaskRunIDKey = attribute.Key("cicd.pipeline.task.run.id") + + // CICDPipelineTaskRunResultKey is the attribute Key conforming to the + // "cicd.pipeline.task.run.result" semantic conventions. It represents the + // result of a task run. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "success", "failure", "timeout", "skipped" + CICDPipelineTaskRunResultKey = attribute.Key("cicd.pipeline.task.run.result") + + // CICDPipelineTaskRunURLFullKey is the attribute Key conforming to the + // "cicd.pipeline.task.run.url.full" semantic conventions. It represents the + // [URL] of the pipeline task run, providing the complete address in order to + // locate and identify the pipeline task run. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763/job/26920038674?pr=1075" + // + // [URL]: https://wikipedia.org/wiki/URL + CICDPipelineTaskRunURLFullKey = attribute.Key("cicd.pipeline.task.run.url.full") + + // CICDPipelineTaskTypeKey is the attribute Key conforming to the + // "cicd.pipeline.task.type" semantic conventions. It represents the type of the + // task within a pipeline. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "build", "test", "deploy" + CICDPipelineTaskTypeKey = attribute.Key("cicd.pipeline.task.type") + + // CICDSystemComponentKey is the attribute Key conforming to the + // "cicd.system.component" semantic conventions. It represents the name of a + // component of the CICD system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "controller", "scheduler", "agent" + CICDSystemComponentKey = attribute.Key("cicd.system.component") + + // CICDWorkerIDKey is the attribute Key conforming to the "cicd.worker.id" + // semantic conventions. It represents the unique identifier of a worker within + // a CICD system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "abc123", "10.0.1.2", "controller" + CICDWorkerIDKey = attribute.Key("cicd.worker.id") + + // CICDWorkerNameKey is the attribute Key conforming to the "cicd.worker.name" + // semantic conventions. It represents the name of a worker within a CICD + // system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "agent-abc", "controller", "Ubuntu LTS" + CICDWorkerNameKey = attribute.Key("cicd.worker.name") + + // CICDWorkerStateKey is the attribute Key conforming to the "cicd.worker.state" + // semantic conventions. It represents the state of a CICD worker / agent. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "idle", "busy", "down" + CICDWorkerStateKey = attribute.Key("cicd.worker.state") + + // CICDWorkerURLFullKey is the attribute Key conforming to the + // "cicd.worker.url.full" semantic conventions. It represents the [URL] of the + // worker, providing the complete address in order to locate and identify the + // worker. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://cicd.example.org/worker/abc123" + // + // [URL]: https://wikipedia.org/wiki/URL + CICDWorkerURLFullKey = attribute.Key("cicd.worker.url.full") +) + +// CICDPipelineName returns an attribute KeyValue conforming to the +// "cicd.pipeline.name" semantic conventions. It represents the human readable +// name of the pipeline within a CI/CD system. +func CICDPipelineName(val string) attribute.KeyValue { + return CICDPipelineNameKey.String(val) +} + +// CICDPipelineRunID returns an attribute KeyValue conforming to the +// "cicd.pipeline.run.id" semantic conventions. It represents the unique +// identifier of a pipeline run within a CI/CD system. +func CICDPipelineRunID(val string) attribute.KeyValue { + return CICDPipelineRunIDKey.String(val) +} + +// CICDPipelineRunURLFull returns an attribute KeyValue conforming to the +// "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of +// the pipeline run, providing the complete address in order to locate and +// identify the pipeline run. +// +// [URL]: https://wikipedia.org/wiki/URL +func CICDPipelineRunURLFull(val string) attribute.KeyValue { + return CICDPipelineRunURLFullKey.String(val) +} + +// CICDPipelineTaskName returns an attribute KeyValue conforming to the +// "cicd.pipeline.task.name" semantic conventions. It represents the human +// readable name of a task within a pipeline. Task here most closely aligns with +// a [computing process] in a pipeline. Other terms for tasks include commands, +// steps, and procedures. +// +// [computing process]: https://wikipedia.org/wiki/Pipeline_(computing) +func CICDPipelineTaskName(val string) attribute.KeyValue { + return CICDPipelineTaskNameKey.String(val) +} + +// CICDPipelineTaskRunID returns an attribute KeyValue conforming to the +// "cicd.pipeline.task.run.id" semantic conventions. It represents the unique +// identifier of a task run within a pipeline. +func CICDPipelineTaskRunID(val string) attribute.KeyValue { + return CICDPipelineTaskRunIDKey.String(val) +} + +// CICDPipelineTaskRunURLFull returns an attribute KeyValue conforming to the +// "cicd.pipeline.task.run.url.full" semantic conventions. It represents the +// [URL] of the pipeline task run, providing the complete address in order to +// locate and identify the pipeline task run. +// +// [URL]: https://wikipedia.org/wiki/URL +func CICDPipelineTaskRunURLFull(val string) attribute.KeyValue { + return CICDPipelineTaskRunURLFullKey.String(val) +} + +// CICDSystemComponent returns an attribute KeyValue conforming to the +// "cicd.system.component" semantic conventions. It represents the name of a +// component of the CICD system. +func CICDSystemComponent(val string) attribute.KeyValue { + return CICDSystemComponentKey.String(val) +} + +// CICDWorkerID returns an attribute KeyValue conforming to the "cicd.worker.id" +// semantic conventions. It represents the unique identifier of a worker within a +// CICD system. +func CICDWorkerID(val string) attribute.KeyValue { + return CICDWorkerIDKey.String(val) +} + +// CICDWorkerName returns an attribute KeyValue conforming to the +// "cicd.worker.name" semantic conventions. It represents the name of a worker +// within a CICD system. +func CICDWorkerName(val string) attribute.KeyValue { + return CICDWorkerNameKey.String(val) +} + +// CICDWorkerURLFull returns an attribute KeyValue conforming to the +// "cicd.worker.url.full" semantic conventions. It represents the [URL] of the +// worker, providing the complete address in order to locate and identify the +// worker. +// +// [URL]: https://wikipedia.org/wiki/URL +func CICDWorkerURLFull(val string) attribute.KeyValue { + return CICDWorkerURLFullKey.String(val) +} + +// Enum values for cicd.pipeline.action.name +var ( + // The pipeline run is executing a build. + // Stability: development + CICDPipelineActionNameBuild = CICDPipelineActionNameKey.String("BUILD") + // The pipeline run is executing. + // Stability: development + CICDPipelineActionNameRun = CICDPipelineActionNameKey.String("RUN") + // The pipeline run is executing a sync. + // Stability: development + CICDPipelineActionNameSync = CICDPipelineActionNameKey.String("SYNC") +) + +// Enum values for cicd.pipeline.result +var ( + // The pipeline run finished successfully. + // Stability: development + CICDPipelineResultSuccess = CICDPipelineResultKey.String("success") + // The pipeline run did not finish successfully, eg. due to a compile error or a + // failing test. Such failures are usually detected by non-zero exit codes of + // the tools executed in the pipeline run. + // Stability: development + CICDPipelineResultFailure = CICDPipelineResultKey.String("failure") + // The pipeline run failed due to an error in the CICD system, eg. due to the + // worker being killed. + // Stability: development + CICDPipelineResultError = CICDPipelineResultKey.String("error") + // A timeout caused the pipeline run to be interrupted. + // Stability: development + CICDPipelineResultTimeout = CICDPipelineResultKey.String("timeout") + // The pipeline run was cancelled, eg. by a user manually cancelling the + // pipeline run. + // Stability: development + CICDPipelineResultCancellation = CICDPipelineResultKey.String("cancellation") + // The pipeline run was skipped, eg. due to a precondition not being met. + // Stability: development + CICDPipelineResultSkip = CICDPipelineResultKey.String("skip") +) + +// Enum values for cicd.pipeline.run.state +var ( + // The run pending state spans from the event triggering the pipeline run until + // the execution of the run starts (eg. time spent in a queue, provisioning + // agents, creating run resources). + // + // Stability: development + CICDPipelineRunStatePending = CICDPipelineRunStateKey.String("pending") + // The executing state spans the execution of any run tasks (eg. build, test). + // Stability: development + CICDPipelineRunStateExecuting = CICDPipelineRunStateKey.String("executing") + // The finalizing state spans from when the run has finished executing (eg. + // cleanup of run resources). + // Stability: development + CICDPipelineRunStateFinalizing = CICDPipelineRunStateKey.String("finalizing") +) + +// Enum values for cicd.pipeline.task.run.result +var ( + // The task run finished successfully. + // Stability: development + CICDPipelineTaskRunResultSuccess = CICDPipelineTaskRunResultKey.String("success") + // The task run did not finish successfully, eg. due to a compile error or a + // failing test. Such failures are usually detected by non-zero exit codes of + // the tools executed in the task run. + // Stability: development + CICDPipelineTaskRunResultFailure = CICDPipelineTaskRunResultKey.String("failure") + // The task run failed due to an error in the CICD system, eg. due to the worker + // being killed. + // Stability: development + CICDPipelineTaskRunResultError = CICDPipelineTaskRunResultKey.String("error") + // A timeout caused the task run to be interrupted. + // Stability: development + CICDPipelineTaskRunResultTimeout = CICDPipelineTaskRunResultKey.String("timeout") + // The task run was cancelled, eg. by a user manually cancelling the task run. + // Stability: development + CICDPipelineTaskRunResultCancellation = CICDPipelineTaskRunResultKey.String("cancellation") + // The task run was skipped, eg. due to a precondition not being met. + // Stability: development + CICDPipelineTaskRunResultSkip = CICDPipelineTaskRunResultKey.String("skip") +) + +// Enum values for cicd.pipeline.task.type +var ( + // build + // Stability: development + CICDPipelineTaskTypeBuild = CICDPipelineTaskTypeKey.String("build") + // test + // Stability: development + CICDPipelineTaskTypeTest = CICDPipelineTaskTypeKey.String("test") + // deploy + // Stability: development + CICDPipelineTaskTypeDeploy = CICDPipelineTaskTypeKey.String("deploy") +) + +// Enum values for cicd.worker.state +var ( + // The worker is not performing work for the CICD system. It is available to the + // CICD system to perform work on (online / idle). + // Stability: development + CICDWorkerStateAvailable = CICDWorkerStateKey.String("available") + // The worker is performing work for the CICD system. + // Stability: development + CICDWorkerStateBusy = CICDWorkerStateKey.String("busy") + // The worker is not available to the CICD system (disconnected / down). + // Stability: development + CICDWorkerStateOffline = CICDWorkerStateKey.String("offline") +) + +// Namespace: client +const ( + // ClientAddressKey is the attribute Key conforming to the "client.address" + // semantic conventions. It represents the client address - domain name if + // available without reverse DNS lookup; otherwise, IP address or Unix domain + // socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "client.example.com", "10.1.2.80", "/tmp/my.sock" + // Note: When observed from the server side, and when communicating through an + // intermediary, `client.address` SHOULD represent the client address behind any + // intermediaries, for example proxies, if it's available. + ClientAddressKey = attribute.Key("client.address") + + // ClientPortKey is the attribute Key conforming to the "client.port" semantic + // conventions. It represents the client port number. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 65123 + // Note: When observed from the server side, and when communicating through an + // intermediary, `client.port` SHOULD represent the client port behind any + // intermediaries, for example proxies, if it's available. + ClientPortKey = attribute.Key("client.port") +) + +// ClientAddress returns an attribute KeyValue conforming to the "client.address" +// semantic conventions. It represents the client address - domain name if +// available without reverse DNS lookup; otherwise, IP address or Unix domain +// socket name. +func ClientAddress(val string) attribute.KeyValue { + return ClientAddressKey.String(val) +} + +// ClientPort returns an attribute KeyValue conforming to the "client.port" +// semantic conventions. It represents the client port number. +func ClientPort(val int) attribute.KeyValue { + return ClientPortKey.Int(val) +} + +// Namespace: cloud +const ( + // CloudAccountIDKey is the attribute Key conforming to the "cloud.account.id" + // semantic conventions. It represents the cloud account ID the resource is + // assigned to. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "111111111111", "opentelemetry" + CloudAccountIDKey = attribute.Key("cloud.account.id") + + // CloudAvailabilityZoneKey is the attribute Key conforming to the + // "cloud.availability_zone" semantic conventions. It represents the cloud + // regions often have multiple, isolated locations known as zones to increase + // availability. Availability zone represents the zone where the resource is + // running. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "us-east-1c" + // Note: Availability zones are called "zones" on Alibaba Cloud and Google + // Cloud. + CloudAvailabilityZoneKey = attribute.Key("cloud.availability_zone") + + // CloudPlatformKey is the attribute Key conforming to the "cloud.platform" + // semantic conventions. It represents the cloud platform in use. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: The prefix of the service SHOULD match the one specified in + // `cloud.provider`. + CloudPlatformKey = attribute.Key("cloud.platform") + + // CloudProviderKey is the attribute Key conforming to the "cloud.provider" + // semantic conventions. It represents the name of the cloud provider. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + CloudProviderKey = attribute.Key("cloud.provider") + + // CloudRegionKey is the attribute Key conforming to the "cloud.region" semantic + // conventions. It represents the geographical region within a cloud provider. + // When associated with a resource, this attribute specifies the region where + // the resource operates. When calling services or APIs deployed on a cloud, + // this attribute identifies the region where the called destination is + // deployed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "us-central1", "us-east-1" + // Note: Refer to your provider's docs to see the available regions, for example + // [Alibaba Cloud regions], [AWS regions], [Azure regions], + // [Google Cloud regions], or [Tencent Cloud regions]. + // + // [Alibaba Cloud regions]: https://www.alibabacloud.com/help/doc-detail/40654.htm + // [AWS regions]: https://aws.amazon.com/about-aws/global-infrastructure/regions_az/ + // [Azure regions]: https://azure.microsoft.com/global-infrastructure/geographies/ + // [Google Cloud regions]: https://cloud.google.com/about/locations + // [Tencent Cloud regions]: https://www.tencentcloud.com/document/product/213/6091 + CloudRegionKey = attribute.Key("cloud.region") + + // CloudResourceIDKey is the attribute Key conforming to the "cloud.resource_id" + // semantic conventions. It represents the cloud provider-specific native + // identifier of the monitored cloud resource (e.g. an [ARN] on AWS, a + // [fully qualified resource ID] on Azure, a [full resource name] on GCP). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:lambda:REGION:ACCOUNT_ID:function:my-function", + // "//run.googleapis.com/projects/PROJECT_ID/locations/LOCATION_ID/services/SERVICE_ID", + // "/subscriptions//resourceGroups/ + // /providers/Microsoft.Web/sites//functions/" + // Note: On some cloud providers, it may not be possible to determine the full + // ID at startup, + // so it may be necessary to set `cloud.resource_id` as a span attribute + // instead. + // + // The exact value to use for `cloud.resource_id` depends on the cloud provider. + // The following well-known definitions MUST be used if you set this attribute + // and they apply: + // + // - **AWS Lambda:** The function [ARN]. + // Take care not to use the "invoked ARN" directly but replace any + // [alias suffix] + // with the resolved function version, as the same runtime instance may be + // invocable with + // multiple different aliases. + // - **GCP:** The [URI of the resource] + // - **Azure:** The [Fully Qualified Resource ID] of the invoked function, + // *not* the function app, having the form + // + // `/subscriptions//resourceGroups//providers/Microsoft.Web/sites//functions/` + // . + // This means that a span attribute MUST be used, as an Azure function app + // can host multiple functions that would usually share + // a TracerProvider. + // + // + // [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html + // [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id + // [full resource name]: https://google.aip.dev/122#full-resource-names + // [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html + // [alias suffix]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-aliases.html + // [URI of the resource]: https://cloud.google.com/iam/docs/full-resource-names + // [Fully Qualified Resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id + CloudResourceIDKey = attribute.Key("cloud.resource_id") +) + +// CloudAccountID returns an attribute KeyValue conforming to the +// "cloud.account.id" semantic conventions. It represents the cloud account ID +// the resource is assigned to. +func CloudAccountID(val string) attribute.KeyValue { + return CloudAccountIDKey.String(val) +} + +// CloudAvailabilityZone returns an attribute KeyValue conforming to the +// "cloud.availability_zone" semantic conventions. It represents the cloud +// regions often have multiple, isolated locations known as zones to increase +// availability. Availability zone represents the zone where the resource is +// running. +func CloudAvailabilityZone(val string) attribute.KeyValue { + return CloudAvailabilityZoneKey.String(val) +} + +// CloudRegion returns an attribute KeyValue conforming to the "cloud.region" +// semantic conventions. It represents the geographical region within a cloud +// provider. When associated with a resource, this attribute specifies the region +// where the resource operates. When calling services or APIs deployed on a +// cloud, this attribute identifies the region where the called destination is +// deployed. +func CloudRegion(val string) attribute.KeyValue { + return CloudRegionKey.String(val) +} + +// CloudResourceID returns an attribute KeyValue conforming to the +// "cloud.resource_id" semantic conventions. It represents the cloud +// provider-specific native identifier of the monitored cloud resource (e.g. an +// [ARN] on AWS, a [fully qualified resource ID] on Azure, a [full resource name] +// on GCP). +// +// [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html +// [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id +// [full resource name]: https://google.aip.dev/122#full-resource-names +func CloudResourceID(val string) attribute.KeyValue { + return CloudResourceIDKey.String(val) +} + +// Enum values for cloud.platform +var ( + // Akamai Cloud Compute + // Stability: development + CloudPlatformAkamaiCloudCompute = CloudPlatformKey.String("akamai_cloud.compute") + // Alibaba Cloud Elastic Compute Service + // Stability: development + CloudPlatformAlibabaCloudECS = CloudPlatformKey.String("alibaba_cloud_ecs") + // Alibaba Cloud Function Compute + // Stability: development + CloudPlatformAlibabaCloudFC = CloudPlatformKey.String("alibaba_cloud_fc") + // Red Hat OpenShift on Alibaba Cloud + // Stability: development + CloudPlatformAlibabaCloudOpenShift = CloudPlatformKey.String("alibaba_cloud_openshift") + // AWS Elastic Compute Cloud + // Stability: development + CloudPlatformAWSEC2 = CloudPlatformKey.String("aws_ec2") + // AWS Elastic Container Service + // Stability: development + CloudPlatformAWSECS = CloudPlatformKey.String("aws_ecs") + // AWS Elastic Kubernetes Service + // Stability: development + CloudPlatformAWSEKS = CloudPlatformKey.String("aws_eks") + // AWS Lambda + // Stability: development + CloudPlatformAWSLambda = CloudPlatformKey.String("aws_lambda") + // AWS Elastic Beanstalk + // Stability: development + CloudPlatformAWSElasticBeanstalk = CloudPlatformKey.String("aws_elastic_beanstalk") + // AWS App Runner + // Stability: development + CloudPlatformAWSAppRunner = CloudPlatformKey.String("aws_app_runner") + // Red Hat OpenShift on AWS (ROSA) + // Stability: development + CloudPlatformAWSOpenShift = CloudPlatformKey.String("aws_openshift") + // Azure Virtual Machines + // Stability: development + CloudPlatformAzureVM = CloudPlatformKey.String("azure.vm") + // Azure Container Apps + // Stability: development + CloudPlatformAzureContainerApps = CloudPlatformKey.String("azure.container_apps") + // Azure Container Instances + // Stability: development + CloudPlatformAzureContainerInstances = CloudPlatformKey.String("azure.container_instances") + // Azure Kubernetes Service + // Stability: development + CloudPlatformAzureAKS = CloudPlatformKey.String("azure.aks") + // Azure Functions + // Stability: development + CloudPlatformAzureFunctions = CloudPlatformKey.String("azure.functions") + // Azure App Service + // Stability: development + CloudPlatformAzureAppService = CloudPlatformKey.String("azure.app_service") + // Azure Red Hat OpenShift + // Stability: development + CloudPlatformAzureOpenShift = CloudPlatformKey.String("azure.openshift") + // Google Vertex AI Agent Engine + // Stability: development + CloudPlatformGCPAgentEngine = CloudPlatformKey.String("gcp.agent_engine") + // Google Bare Metal Solution (BMS) + // Stability: development + CloudPlatformGCPBareMetalSolution = CloudPlatformKey.String("gcp_bare_metal_solution") + // Google Cloud Compute Engine (GCE) + // Stability: development + CloudPlatformGCPComputeEngine = CloudPlatformKey.String("gcp_compute_engine") + // Google Cloud Run + // Stability: development + CloudPlatformGCPCloudRun = CloudPlatformKey.String("gcp_cloud_run") + // Google Cloud Kubernetes Engine (GKE) + // Stability: development + CloudPlatformGCPKubernetesEngine = CloudPlatformKey.String("gcp_kubernetes_engine") + // Google Cloud Functions (GCF) + // Stability: development + CloudPlatformGCPCloudFunctions = CloudPlatformKey.String("gcp_cloud_functions") + // Google Cloud App Engine (GAE) + // Stability: development + CloudPlatformGCPAppEngine = CloudPlatformKey.String("gcp_app_engine") + // Red Hat OpenShift on Google Cloud + // Stability: development + CloudPlatformGCPOpenShift = CloudPlatformKey.String("gcp_openshift") + // Server on Hetzner Cloud + // Stability: development + CloudPlatformHetznerCloudServer = CloudPlatformKey.String("hetzner.cloud_server") + // Red Hat OpenShift on IBM Cloud + // Stability: development + CloudPlatformIBMCloudOpenShift = CloudPlatformKey.String("ibm_cloud_openshift") + // Compute on Oracle Cloud Infrastructure (OCI) + // Stability: development + CloudPlatformOracleCloudCompute = CloudPlatformKey.String("oracle_cloud_compute") + // Kubernetes Engine (OKE) on Oracle Cloud Infrastructure (OCI) + // Stability: development + CloudPlatformOracleCloudOKE = CloudPlatformKey.String("oracle_cloud_oke") + // Tencent Cloud Cloud Virtual Machine (CVM) + // Stability: development + CloudPlatformTencentCloudCVM = CloudPlatformKey.String("tencent_cloud_cvm") + // Tencent Cloud Elastic Kubernetes Service (EKS) + // Stability: development + CloudPlatformTencentCloudEKS = CloudPlatformKey.String("tencent_cloud_eks") + // Tencent Cloud Serverless Cloud Function (SCF) + // Stability: development + CloudPlatformTencentCloudSCF = CloudPlatformKey.String("tencent_cloud_scf") + // Vultr Cloud Compute + // Stability: development + CloudPlatformVultrCloudCompute = CloudPlatformKey.String("vultr.cloud_compute") +) + +// Enum values for cloud.provider +var ( + // Akamai Cloud + // Stability: development + CloudProviderAkamaiCloud = CloudProviderKey.String("akamai_cloud") + // Alibaba Cloud + // Stability: development + CloudProviderAlibabaCloud = CloudProviderKey.String("alibaba_cloud") + // Amazon Web Services + // Stability: development + CloudProviderAWS = CloudProviderKey.String("aws") + // Microsoft Azure + // Stability: development + CloudProviderAzure = CloudProviderKey.String("azure") + // Google Cloud Platform + // Stability: development + CloudProviderGCP = CloudProviderKey.String("gcp") + // Heroku Platform as a Service + // Stability: development + CloudProviderHeroku = CloudProviderKey.String("heroku") + // Hetzner + // Stability: development + CloudProviderHetzner = CloudProviderKey.String("hetzner") + // IBM Cloud + // Stability: development + CloudProviderIBMCloud = CloudProviderKey.String("ibm_cloud") + // Oracle Cloud Infrastructure (OCI) + // Stability: development + CloudProviderOracleCloud = CloudProviderKey.String("oracle_cloud") + // Tencent Cloud + // Stability: development + CloudProviderTencentCloud = CloudProviderKey.String("tencent_cloud") + // Vultr + // Stability: development + CloudProviderVultr = CloudProviderKey.String("vultr") +) + +// Namespace: cloudevents +const ( + // CloudEventsEventIDKey is the attribute Key conforming to the + // "cloudevents.event_id" semantic conventions. It represents the [event_id] + // uniquely identifies the event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "123e4567-e89b-12d3-a456-426614174000", "0001" + // + // [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id + CloudEventsEventIDKey = attribute.Key("cloudevents.event_id") + + // CloudEventsEventSourceKey is the attribute Key conforming to the + // "cloudevents.event_source" semantic conventions. It represents the [source] + // identifies the context in which an event happened. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://github.com/cloudevents", "/cloudevents/spec/pull/123", + // "my-service" + // + // [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1 + CloudEventsEventSourceKey = attribute.Key("cloudevents.event_source") + + // CloudEventsEventSpecVersionKey is the attribute Key conforming to the + // "cloudevents.event_spec_version" semantic conventions. It represents the + // [version of the CloudEvents specification] which the event uses. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0 + // + // [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion + CloudEventsEventSpecVersionKey = attribute.Key("cloudevents.event_spec_version") + + // CloudEventsEventSubjectKey is the attribute Key conforming to the + // "cloudevents.event_subject" semantic conventions. It represents the [subject] + // of the event in the context of the event producer (identified by source). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: mynewfile.jpg + // + // [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject + CloudEventsEventSubjectKey = attribute.Key("cloudevents.event_subject") + + // CloudEventsEventTypeKey is the attribute Key conforming to the + // "cloudevents.event_type" semantic conventions. It represents the [event_type] + // contains a value describing the type of event related to the originating + // occurrence. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "com.github.pull_request.opened", "com.example.object.deleted.v2" + // + // [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type + CloudEventsEventTypeKey = attribute.Key("cloudevents.event_type") +) + +// CloudEventsEventID returns an attribute KeyValue conforming to the +// "cloudevents.event_id" semantic conventions. It represents the [event_id] +// uniquely identifies the event. +// +// [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id +func CloudEventsEventID(val string) attribute.KeyValue { + return CloudEventsEventIDKey.String(val) +} + +// CloudEventsEventSource returns an attribute KeyValue conforming to the +// "cloudevents.event_source" semantic conventions. It represents the [source] +// identifies the context in which an event happened. +// +// [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1 +func CloudEventsEventSource(val string) attribute.KeyValue { + return CloudEventsEventSourceKey.String(val) +} + +// CloudEventsEventSpecVersion returns an attribute KeyValue conforming to the +// "cloudevents.event_spec_version" semantic conventions. It represents the +// [version of the CloudEvents specification] which the event uses. +// +// [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion +func CloudEventsEventSpecVersion(val string) attribute.KeyValue { + return CloudEventsEventSpecVersionKey.String(val) +} + +// CloudEventsEventSubject returns an attribute KeyValue conforming to the +// "cloudevents.event_subject" semantic conventions. It represents the [subject] +// of the event in the context of the event producer (identified by source). +// +// [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject +func CloudEventsEventSubject(val string) attribute.KeyValue { + return CloudEventsEventSubjectKey.String(val) +} + +// CloudEventsEventType returns an attribute KeyValue conforming to the +// "cloudevents.event_type" semantic conventions. It represents the [event_type] +// contains a value describing the type of event related to the originating +// occurrence. +// +// [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type +func CloudEventsEventType(val string) attribute.KeyValue { + return CloudEventsEventTypeKey.String(val) +} + +// Namespace: cloudfoundry +const ( + // CloudFoundryAppIDKey is the attribute Key conforming to the + // "cloudfoundry.app.id" semantic conventions. It represents the guid of the + // application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.application_id`. This is the same value as + // reported by `cf app --guid`. + CloudFoundryAppIDKey = attribute.Key("cloudfoundry.app.id") + + // CloudFoundryAppInstanceIDKey is the attribute Key conforming to the + // "cloudfoundry.app.instance.id" semantic conventions. It represents the index + // of the application instance. 0 when just one instance is active. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0", "1" + // Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope] + // . + // It is used for logs and metrics emitted by CloudFoundry. It is + // supposed to contain the application instance index for applications + // deployed on the runtime. + // + // Application instrumentation should use the value from environment + // variable `CF_INSTANCE_INDEX`. + // + // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope + CloudFoundryAppInstanceIDKey = attribute.Key("cloudfoundry.app.instance.id") + + // CloudFoundryAppNameKey is the attribute Key conforming to the + // "cloudfoundry.app.name" semantic conventions. It represents the name of the + // application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-app-name" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.application_name`. This is the same value + // as reported by `cf apps`. + CloudFoundryAppNameKey = attribute.Key("cloudfoundry.app.name") + + // CloudFoundryOrgIDKey is the attribute Key conforming to the + // "cloudfoundry.org.id" semantic conventions. It represents the guid of the + // CloudFoundry org the application is running in. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.org_id`. This is the same value as + // reported by `cf org --guid`. + CloudFoundryOrgIDKey = attribute.Key("cloudfoundry.org.id") + + // CloudFoundryOrgNameKey is the attribute Key conforming to the + // "cloudfoundry.org.name" semantic conventions. It represents the name of the + // CloudFoundry organization the app is running in. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-org-name" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.org_name`. This is the same value as + // reported by `cf orgs`. + CloudFoundryOrgNameKey = attribute.Key("cloudfoundry.org.name") + + // CloudFoundryProcessIDKey is the attribute Key conforming to the + // "cloudfoundry.process.id" semantic conventions. It represents the UID + // identifying the process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.process_id`. It is supposed to be equal to + // `VCAP_APPLICATION.app_id` for applications deployed to the runtime. + // For system components, this could be the actual PID. + CloudFoundryProcessIDKey = attribute.Key("cloudfoundry.process.id") + + // CloudFoundryProcessTypeKey is the attribute Key conforming to the + // "cloudfoundry.process.type" semantic conventions. It represents the type of + // process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "web" + // Note: CloudFoundry applications can consist of multiple jobs. Usually the + // main process will be of type `web`. There can be additional background + // tasks or side-cars with different process types. + CloudFoundryProcessTypeKey = attribute.Key("cloudfoundry.process.type") + + // CloudFoundrySpaceIDKey is the attribute Key conforming to the + // "cloudfoundry.space.id" semantic conventions. It represents the guid of the + // CloudFoundry space the application is running in. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.space_id`. This is the same value as + // reported by `cf space --guid`. + CloudFoundrySpaceIDKey = attribute.Key("cloudfoundry.space.id") + + // CloudFoundrySpaceNameKey is the attribute Key conforming to the + // "cloudfoundry.space.name" semantic conventions. It represents the name of the + // CloudFoundry space the application is running in. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-space-name" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.space_name`. This is the same value as + // reported by `cf spaces`. + CloudFoundrySpaceNameKey = attribute.Key("cloudfoundry.space.name") + + // CloudFoundrySystemIDKey is the attribute Key conforming to the + // "cloudfoundry.system.id" semantic conventions. It represents a guid or + // another name describing the event source. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cf/gorouter" + // Note: CloudFoundry defines the `source_id` in the [Loggregator v2 envelope]. + // It is used for logs and metrics emitted by CloudFoundry. It is + // supposed to contain the component name, e.g. "gorouter", for + // CloudFoundry components. + // + // When system components are instrumented, values from the + // [Bosh spec] + // should be used. The `system.id` should be set to + // `spec.deployment/spec.name`. + // + // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope + // [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec + CloudFoundrySystemIDKey = attribute.Key("cloudfoundry.system.id") + + // CloudFoundrySystemInstanceIDKey is the attribute Key conforming to the + // "cloudfoundry.system.instance.id" semantic conventions. It represents a guid + // describing the concrete instance of the event source. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope] + // . + // It is used for logs and metrics emitted by CloudFoundry. It is + // supposed to contain the vm id for CloudFoundry components. + // + // When system components are instrumented, values from the + // [Bosh spec] + // should be used. The `system.instance.id` should be set to `spec.id`. + // + // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope + // [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec + CloudFoundrySystemInstanceIDKey = attribute.Key("cloudfoundry.system.instance.id") +) + +// CloudFoundryAppID returns an attribute KeyValue conforming to the +// "cloudfoundry.app.id" semantic conventions. It represents the guid of the +// application. +func CloudFoundryAppID(val string) attribute.KeyValue { + return CloudFoundryAppIDKey.String(val) +} + +// CloudFoundryAppInstanceID returns an attribute KeyValue conforming to the +// "cloudfoundry.app.instance.id" semantic conventions. It represents the index +// of the application instance. 0 when just one instance is active. +func CloudFoundryAppInstanceID(val string) attribute.KeyValue { + return CloudFoundryAppInstanceIDKey.String(val) +} + +// CloudFoundryAppName returns an attribute KeyValue conforming to the +// "cloudfoundry.app.name" semantic conventions. It represents the name of the +// application. +func CloudFoundryAppName(val string) attribute.KeyValue { + return CloudFoundryAppNameKey.String(val) +} + +// CloudFoundryOrgID returns an attribute KeyValue conforming to the +// "cloudfoundry.org.id" semantic conventions. It represents the guid of the +// CloudFoundry org the application is running in. +func CloudFoundryOrgID(val string) attribute.KeyValue { + return CloudFoundryOrgIDKey.String(val) +} + +// CloudFoundryOrgName returns an attribute KeyValue conforming to the +// "cloudfoundry.org.name" semantic conventions. It represents the name of the +// CloudFoundry organization the app is running in. +func CloudFoundryOrgName(val string) attribute.KeyValue { + return CloudFoundryOrgNameKey.String(val) +} + +// CloudFoundryProcessID returns an attribute KeyValue conforming to the +// "cloudfoundry.process.id" semantic conventions. It represents the UID +// identifying the process. +func CloudFoundryProcessID(val string) attribute.KeyValue { + return CloudFoundryProcessIDKey.String(val) +} + +// CloudFoundryProcessType returns an attribute KeyValue conforming to the +// "cloudfoundry.process.type" semantic conventions. It represents the type of +// process. +func CloudFoundryProcessType(val string) attribute.KeyValue { + return CloudFoundryProcessTypeKey.String(val) +} + +// CloudFoundrySpaceID returns an attribute KeyValue conforming to the +// "cloudfoundry.space.id" semantic conventions. It represents the guid of the +// CloudFoundry space the application is running in. +func CloudFoundrySpaceID(val string) attribute.KeyValue { + return CloudFoundrySpaceIDKey.String(val) +} + +// CloudFoundrySpaceName returns an attribute KeyValue conforming to the +// "cloudfoundry.space.name" semantic conventions. It represents the name of the +// CloudFoundry space the application is running in. +func CloudFoundrySpaceName(val string) attribute.KeyValue { + return CloudFoundrySpaceNameKey.String(val) +} + +// CloudFoundrySystemID returns an attribute KeyValue conforming to the +// "cloudfoundry.system.id" semantic conventions. It represents a guid or another +// name describing the event source. +func CloudFoundrySystemID(val string) attribute.KeyValue { + return CloudFoundrySystemIDKey.String(val) +} + +// CloudFoundrySystemInstanceID returns an attribute KeyValue conforming to the +// "cloudfoundry.system.instance.id" semantic conventions. It represents a guid +// describing the concrete instance of the event source. +func CloudFoundrySystemInstanceID(val string) attribute.KeyValue { + return CloudFoundrySystemInstanceIDKey.String(val) +} + +// Namespace: code +const ( + // CodeColumnNumberKey is the attribute Key conforming to the + // "code.column.number" semantic conventions. It represents the column number in + // `code.file.path` best representing the operation. It SHOULD point within the + // code unit named in `code.function.name`. This attribute MUST NOT be used on + // the Profile signal since the data is already captured in 'message Line'. This + // constraint is imposed to prevent redundancy and maintain data integrity. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + CodeColumnNumberKey = attribute.Key("code.column.number") + + // CodeFilePathKey is the attribute Key conforming to the "code.file.path" + // semantic conventions. It represents the source code file name that identifies + // the code unit as uniquely as possible (preferably an absolute file path). + // This attribute MUST NOT be used on the Profile signal since the data is + // already captured in 'message Function'. This constraint is imposed to prevent + // redundancy and maintain data integrity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: /usr/local/MyApplication/content_root/app/index.php + CodeFilePathKey = attribute.Key("code.file.path") + + // CodeFunctionNameKey is the attribute Key conforming to the + // "code.function.name" semantic conventions. It represents the method or + // function fully-qualified name without arguments. The value should fit the + // natural representation of the language runtime, which is also likely the same + // used within `code.stacktrace` attribute value. This attribute MUST NOT be + // used on the Profile signal since the data is already captured in 'message + // Function'. This constraint is imposed to prevent redundancy and maintain data + // integrity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "com.example.MyHttpService.serveRequest", + // "GuzzleHttp\Client::transfer", "fopen" + // Note: Values and format depends on each language runtime, thus it is + // impossible to provide an exhaustive list of examples. + // The values are usually the same (or prefixes of) the ones found in native + // stack trace representation stored in + // `code.stacktrace` without information on arguments. + // + // Examples: + // + // - Java method: `com.example.MyHttpService.serveRequest` + // - Java anonymous class method: `com.mycompany.Main$1.myMethod` + // - Java lambda method: + // `com.mycompany.Main$$Lambda/0x0000748ae4149c00.myMethod` + // - PHP function: `GuzzleHttp\Client::transfer` + // - Go function: `github.com/my/repo/pkg.foo.func5` + // - Elixir: `OpenTelemetry.Ctx.new` + // - Erlang: `opentelemetry_ctx:new` + // - Rust: `playground::my_module::my_cool_func` + // - C function: `fopen` + CodeFunctionNameKey = attribute.Key("code.function.name") + + // CodeLineNumberKey is the attribute Key conforming to the "code.line.number" + // semantic conventions. It represents the line number in `code.file.path` best + // representing the operation. It SHOULD point within the code unit named in + // `code.function.name`. This attribute MUST NOT be used on the Profile signal + // since the data is already captured in 'message Line'. This constraint is + // imposed to prevent redundancy and maintain data integrity. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + CodeLineNumberKey = attribute.Key("code.line.number") + + // CodeStacktraceKey is the attribute Key conforming to the "code.stacktrace" + // semantic conventions. It represents a stacktrace as a string in the natural + // representation for the language runtime. The representation is identical to + // [`exception.stacktrace`]. This attribute MUST NOT be used on the Profile + // signal since the data is already captured in 'message Location'. This + // constraint is imposed to prevent redundancy and maintain data integrity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at + // com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at + // com.example.GenerateTrace.main(GenerateTrace.java:5) + // + // [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation + CodeStacktraceKey = attribute.Key("code.stacktrace") +) + +// CodeColumnNumber returns an attribute KeyValue conforming to the +// "code.column.number" semantic conventions. It represents the column number in +// `code.file.path` best representing the operation. It SHOULD point within the +// code unit named in `code.function.name`. This attribute MUST NOT be used on +// the Profile signal since the data is already captured in 'message Line'. This +// constraint is imposed to prevent redundancy and maintain data integrity. +func CodeColumnNumber(val int) attribute.KeyValue { + return CodeColumnNumberKey.Int(val) +} + +// CodeFilePath returns an attribute KeyValue conforming to the "code.file.path" +// semantic conventions. It represents the source code file name that identifies +// the code unit as uniquely as possible (preferably an absolute file path). This +// attribute MUST NOT be used on the Profile signal since the data is already +// captured in 'message Function'. This constraint is imposed to prevent +// redundancy and maintain data integrity. +func CodeFilePath(val string) attribute.KeyValue { + return CodeFilePathKey.String(val) +} + +// CodeFunctionName returns an attribute KeyValue conforming to the +// "code.function.name" semantic conventions. It represents the method or +// function fully-qualified name without arguments. The value should fit the +// natural representation of the language runtime, which is also likely the same +// used within `code.stacktrace` attribute value. This attribute MUST NOT be used +// on the Profile signal since the data is already captured in 'message +// Function'. This constraint is imposed to prevent redundancy and maintain data +// integrity. +func CodeFunctionName(val string) attribute.KeyValue { + return CodeFunctionNameKey.String(val) +} + +// CodeLineNumber returns an attribute KeyValue conforming to the +// "code.line.number" semantic conventions. It represents the line number in +// `code.file.path` best representing the operation. It SHOULD point within the +// code unit named in `code.function.name`. This attribute MUST NOT be used on +// the Profile signal since the data is already captured in 'message Line'. This +// constraint is imposed to prevent redundancy and maintain data integrity. +func CodeLineNumber(val int) attribute.KeyValue { + return CodeLineNumberKey.Int(val) +} + +// CodeStacktrace returns an attribute KeyValue conforming to the +// "code.stacktrace" semantic conventions. It represents a stacktrace as a string +// in the natural representation for the language runtime. The representation is +// identical to [`exception.stacktrace`]. This attribute MUST NOT be used on the +// Profile signal since the data is already captured in 'message Location'. This +// constraint is imposed to prevent redundancy and maintain data integrity. +// +// [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation +func CodeStacktrace(val string) attribute.KeyValue { + return CodeStacktraceKey.String(val) +} + +// Namespace: container +const ( + // ContainerCommandKey is the attribute Key conforming to the + // "container.command" semantic conventions. It represents the command used to + // run the container (i.e. the command name). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "otelcontribcol" + // Note: If using embedded credentials or sensitive data, it is recommended to + // remove them to prevent potential leakage. + ContainerCommandKey = attribute.Key("container.command") + + // ContainerCommandArgsKey is the attribute Key conforming to the + // "container.command_args" semantic conventions. It represents the all the + // command arguments (including the command/executable itself) run by the + // container. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "otelcontribcol", "--config", "config.yaml" + ContainerCommandArgsKey = attribute.Key("container.command_args") + + // ContainerCommandLineKey is the attribute Key conforming to the + // "container.command_line" semantic conventions. It represents the full command + // run by the container as a single string representing the full command. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "otelcontribcol --config config.yaml" + ContainerCommandLineKey = attribute.Key("container.command_line") + + // ContainerCSIPluginNameKey is the attribute Key conforming to the + // "container.csi.plugin.name" semantic conventions. It represents the name of + // the CSI ([Container Storage Interface]) plugin used by the volume. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "pd.csi.storage.gke.io" + // Note: This can sometimes be referred to as a "driver" in CSI implementations. + // This should represent the `name` field of the GetPluginInfo RPC. + // + // [Container Storage Interface]: https://github.com/container-storage-interface/spec + ContainerCSIPluginNameKey = attribute.Key("container.csi.plugin.name") + + // ContainerCSIVolumeIDKey is the attribute Key conforming to the + // "container.csi.volume.id" semantic conventions. It represents the unique + // volume ID returned by the CSI ([Container Storage Interface]) plugin. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "projects/my-gcp-project/zones/my-gcp-zone/disks/my-gcp-disk" + // Note: This can sometimes be referred to as a "volume handle" in CSI + // implementations. This should represent the `Volume.volume_id` field in CSI + // spec. + // + // [Container Storage Interface]: https://github.com/container-storage-interface/spec + ContainerCSIVolumeIDKey = attribute.Key("container.csi.volume.id") + + // ContainerIDKey is the attribute Key conforming to the "container.id" semantic + // conventions. It represents the container ID. Usually a UUID, as for example + // used to [identify Docker containers]. The UUID might be abbreviated. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "a3bf90e006b2" + // + // [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification + ContainerIDKey = attribute.Key("container.id") + + // ContainerImageIDKey is the attribute Key conforming to the + // "container.image.id" semantic conventions. It represents the runtime specific + // image identifier. Usually a hash algorithm followed by a UUID. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "sha256:19c92d0a00d1b66d897bceaa7319bee0dd38a10a851c60bcec9474aa3f01e50f" + // Note: Docker defines a sha256 of the image id; `container.image.id` + // corresponds to the `Image` field from the Docker container inspect [API] + // endpoint. + // K8s defines a link to the container registry repository with digest + // `"imageID": "registry.azurecr.io /namespace/service/dockerfile@sha256:bdeabd40c3a8a492eaf9e8e44d0ebbb84bac7ee25ac0cf8a7159d25f62555625"` + // . + // The ID is assigned by the container runtime and can vary in different + // environments. Consider using `oci.manifest.digest` if it is important to + // identify the same image in different environments/runtimes. + // + // [API]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Container/operation/ContainerInspect + ContainerImageIDKey = attribute.Key("container.image.id") + + // ContainerImageNameKey is the attribute Key conforming to the + // "container.image.name" semantic conventions. It represents the name of the + // image the container was built on. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "gcr.io/opentelemetry/operator" + ContainerImageNameKey = attribute.Key("container.image.name") + + // ContainerImageRepoDigestsKey is the attribute Key conforming to the + // "container.image.repo_digests" semantic conventions. It represents the repo + // digests of the container image as provided by the container runtime. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: + // "example@sha256:afcc7f1ac1b49db317a7196c902e61c6c3c4607d63599ee1a82d702d249a0ccb", + // "internal.registry.example.com:5000/example@sha256:b69959407d21e8a062e0416bf13405bb2b71ed7a84dde4158ebafacfa06f5578" + // Note: [Docker] and [CRI] report those under the `RepoDigests` field. + // + // [Docker]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect + // [CRI]: https://github.com/kubernetes/cri-api/blob/c75ef5b473bbe2d0a4fc92f82235efd665ea8e9f/pkg/apis/runtime/v1/api.proto#L1237-L1238 + ContainerImageRepoDigestsKey = attribute.Key("container.image.repo_digests") + + // ContainerImageTagsKey is the attribute Key conforming to the + // "container.image.tags" semantic conventions. It represents the container + // image tags. An example can be found in [Docker Image Inspect]. Should be only + // the `` section of the full name for example from + // `registry.example.com/my-org/my-image:`. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "v1.27.1", "3.5.7-0" + // + // [Docker Image Inspect]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect + ContainerImageTagsKey = attribute.Key("container.image.tags") + + // ContainerNameKey is the attribute Key conforming to the "container.name" + // semantic conventions. It represents the container name used by container + // runtime. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry-autoconf" + ContainerNameKey = attribute.Key("container.name") + + // ContainerRuntimeDescriptionKey is the attribute Key conforming to the + // "container.runtime.description" semantic conventions. It represents a + // description about the runtime which could include, for example details about + // the CRI/API version being used or other customizations. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "docker://19.3.1 - CRI: 1.22.0" + ContainerRuntimeDescriptionKey = attribute.Key("container.runtime.description") + + // ContainerRuntimeNameKey is the attribute Key conforming to the + // "container.runtime.name" semantic conventions. It represents the container + // runtime managing this container. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "docker", "containerd", "rkt" + ContainerRuntimeNameKey = attribute.Key("container.runtime.name") + + // ContainerRuntimeVersionKey is the attribute Key conforming to the + // "container.runtime.version" semantic conventions. It represents the version + // of the runtime of this process, as returned by the runtime without + // modification. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0.0 + ContainerRuntimeVersionKey = attribute.Key("container.runtime.version") +) + +// ContainerCommand returns an attribute KeyValue conforming to the +// "container.command" semantic conventions. It represents the command used to +// run the container (i.e. the command name). +func ContainerCommand(val string) attribute.KeyValue { + return ContainerCommandKey.String(val) +} + +// ContainerCommandArgs returns an attribute KeyValue conforming to the +// "container.command_args" semantic conventions. It represents the all the +// command arguments (including the command/executable itself) run by the +// container. +func ContainerCommandArgs(val ...string) attribute.KeyValue { + return ContainerCommandArgsKey.StringSlice(val) +} + +// ContainerCommandLine returns an attribute KeyValue conforming to the +// "container.command_line" semantic conventions. It represents the full command +// run by the container as a single string representing the full command. +func ContainerCommandLine(val string) attribute.KeyValue { + return ContainerCommandLineKey.String(val) +} + +// ContainerCSIPluginName returns an attribute KeyValue conforming to the +// "container.csi.plugin.name" semantic conventions. It represents the name of +// the CSI ([Container Storage Interface]) plugin used by the volume. +// +// [Container Storage Interface]: https://github.com/container-storage-interface/spec +func ContainerCSIPluginName(val string) attribute.KeyValue { + return ContainerCSIPluginNameKey.String(val) +} + +// ContainerCSIVolumeID returns an attribute KeyValue conforming to the +// "container.csi.volume.id" semantic conventions. It represents the unique +// volume ID returned by the CSI ([Container Storage Interface]) plugin. +// +// [Container Storage Interface]: https://github.com/container-storage-interface/spec +func ContainerCSIVolumeID(val string) attribute.KeyValue { + return ContainerCSIVolumeIDKey.String(val) +} + +// ContainerID returns an attribute KeyValue conforming to the "container.id" +// semantic conventions. It represents the container ID. Usually a UUID, as for +// example used to [identify Docker containers]. The UUID might be abbreviated. +// +// [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification +func ContainerID(val string) attribute.KeyValue { + return ContainerIDKey.String(val) +} + +// ContainerImageID returns an attribute KeyValue conforming to the +// "container.image.id" semantic conventions. It represents the runtime specific +// image identifier. Usually a hash algorithm followed by a UUID. +func ContainerImageID(val string) attribute.KeyValue { + return ContainerImageIDKey.String(val) +} + +// ContainerImageName returns an attribute KeyValue conforming to the +// "container.image.name" semantic conventions. It represents the name of the +// image the container was built on. +func ContainerImageName(val string) attribute.KeyValue { + return ContainerImageNameKey.String(val) +} + +// ContainerImageRepoDigests returns an attribute KeyValue conforming to the +// "container.image.repo_digests" semantic conventions. It represents the repo +// digests of the container image as provided by the container runtime. +func ContainerImageRepoDigests(val ...string) attribute.KeyValue { + return ContainerImageRepoDigestsKey.StringSlice(val) +} + +// ContainerImageTags returns an attribute KeyValue conforming to the +// "container.image.tags" semantic conventions. It represents the container image +// tags. An example can be found in [Docker Image Inspect]. Should be only the +// `` section of the full name for example from +// `registry.example.com/my-org/my-image:`. +// +// [Docker Image Inspect]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect +func ContainerImageTags(val ...string) attribute.KeyValue { + return ContainerImageTagsKey.StringSlice(val) +} + +// ContainerLabel returns an attribute KeyValue conforming to the +// "container.label" semantic conventions. It represents the container labels, +// `` being the label name, the value being the label value. +func ContainerLabel(key string, val string) attribute.KeyValue { + return attribute.String("container.label."+key, val) +} + +// ContainerName returns an attribute KeyValue conforming to the "container.name" +// semantic conventions. It represents the container name used by container +// runtime. +func ContainerName(val string) attribute.KeyValue { + return ContainerNameKey.String(val) +} + +// ContainerRuntimeDescription returns an attribute KeyValue conforming to the +// "container.runtime.description" semantic conventions. It represents a +// description about the runtime which could include, for example details about +// the CRI/API version being used or other customizations. +func ContainerRuntimeDescription(val string) attribute.KeyValue { + return ContainerRuntimeDescriptionKey.String(val) +} + +// ContainerRuntimeName returns an attribute KeyValue conforming to the +// "container.runtime.name" semantic conventions. It represents the container +// runtime managing this container. +func ContainerRuntimeName(val string) attribute.KeyValue { + return ContainerRuntimeNameKey.String(val) +} + +// ContainerRuntimeVersion returns an attribute KeyValue conforming to the +// "container.runtime.version" semantic conventions. It represents the version of +// the runtime of this process, as returned by the runtime without modification. +func ContainerRuntimeVersion(val string) attribute.KeyValue { + return ContainerRuntimeVersionKey.String(val) +} + +// Namespace: cpu +const ( + // CPULogicalNumberKey is the attribute Key conforming to the + // "cpu.logical_number" semantic conventions. It represents the logical CPU + // number [0..n-1]. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1 + CPULogicalNumberKey = attribute.Key("cpu.logical_number") + + // CPUModeKey is the attribute Key conforming to the "cpu.mode" semantic + // conventions. It represents the mode of the CPU. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "user", "system" + CPUModeKey = attribute.Key("cpu.mode") +) + +// CPULogicalNumber returns an attribute KeyValue conforming to the +// "cpu.logical_number" semantic conventions. It represents the logical CPU +// number [0..n-1]. +func CPULogicalNumber(val int) attribute.KeyValue { + return CPULogicalNumberKey.Int(val) +} + +// Enum values for cpu.mode +var ( + // User + // Stability: development + CPUModeUser = CPUModeKey.String("user") + // System + // Stability: development + CPUModeSystem = CPUModeKey.String("system") + // Nice + // Stability: development + CPUModeNice = CPUModeKey.String("nice") + // Idle + // Stability: development + CPUModeIdle = CPUModeKey.String("idle") + // IO Wait + // Stability: development + CPUModeIOWait = CPUModeKey.String("iowait") + // Interrupt + // Stability: development + CPUModeInterrupt = CPUModeKey.String("interrupt") + // Steal + // Stability: development + CPUModeSteal = CPUModeKey.String("steal") + // Kernel + // Stability: development + CPUModeKernel = CPUModeKey.String("kernel") +) + +// Namespace: db +const ( + // DBClientConnectionPoolNameKey is the attribute Key conforming to the + // "db.client.connection.pool.name" semantic conventions. It represents the name + // of the connection pool; unique within the instrumented application. In case + // the connection pool implementation doesn't provide a name, instrumentation + // SHOULD use a combination of parameters that would make the name unique, for + // example, combining attributes `server.address`, `server.port`, and + // `db.namespace`, formatted as `server.address:server.port/db.namespace`. + // Instrumentations that generate connection pool name following different + // patterns SHOULD document it. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "myDataSource" + DBClientConnectionPoolNameKey = attribute.Key("db.client.connection.pool.name") + + // DBClientConnectionStateKey is the attribute Key conforming to the + // "db.client.connection.state" semantic conventions. It represents the state of + // a connection in the pool. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "idle" + DBClientConnectionStateKey = attribute.Key("db.client.connection.state") + + // DBCollectionNameKey is the attribute Key conforming to the + // "db.collection.name" semantic conventions. It represents the name of a + // collection (table, container) within the database. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "public.users", "customers" + // Note: It is RECOMMENDED to capture the value as provided by the application + // without attempting to do any case normalization. + // + // The collection name SHOULD NOT be extracted from `db.query.text`, + // when the database system supports query text with multiple collections + // in non-batch operations. + // + // For batch operations, if the individual operations are known to have the same + // collection name then that collection name SHOULD be used. + DBCollectionNameKey = attribute.Key("db.collection.name") + + // DBNamespaceKey is the attribute Key conforming to the "db.namespace" semantic + // conventions. It represents the name of the database, fully qualified within + // the server address and port. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "customers", "test.users" + // Note: If a database system has multiple namespace components, they SHOULD be + // concatenated from the most general to the most specific namespace component, + // using `|` as a separator between the components. Any missing components (and + // their associated separators) SHOULD be omitted. + // Semantic conventions for individual database systems SHOULD document what + // `db.namespace` means in the context of that system. + // It is RECOMMENDED to capture the value as provided by the application without + // attempting to do any case normalization. + DBNamespaceKey = attribute.Key("db.namespace") + + // DBOperationBatchSizeKey is the attribute Key conforming to the + // "db.operation.batch.size" semantic conventions. It represents the number of + // queries included in a batch operation. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 2, 3, 4 + // Note: Operations are only considered batches when they contain two or more + // operations, and so `db.operation.batch.size` SHOULD never be `1`. + DBOperationBatchSizeKey = attribute.Key("db.operation.batch.size") + + // DBOperationNameKey is the attribute Key conforming to the "db.operation.name" + // semantic conventions. It represents the name of the operation or command + // being executed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "findAndModify", "HMSET", "SELECT" + // Note: It is RECOMMENDED to capture the value as provided by the application + // without attempting to do any case normalization. + // + // The operation name SHOULD NOT be extracted from `db.query.text`, + // when the database system supports query text with multiple operations + // in non-batch operations. + // + // If spaces can occur in the operation name, multiple consecutive spaces + // SHOULD be normalized to a single space. + // + // For batch operations, if the individual operations are known to have the same + // operation name + // then that operation name SHOULD be used prepended by `BATCH `, + // otherwise `db.operation.name` SHOULD be `BATCH` or some other database + // system specific term if more applicable. + DBOperationNameKey = attribute.Key("db.operation.name") + + // DBQuerySummaryKey is the attribute Key conforming to the "db.query.summary" + // semantic conventions. It represents the low cardinality summary of a database + // query. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "SELECT wuser_table", "INSERT shipping_details SELECT orders", "get + // user by id" + // Note: The query summary describes a class of database queries and is useful + // as a grouping key, especially when analyzing telemetry for database + // calls involving complex queries. + // + // Summary may be available to the instrumentation through + // instrumentation hooks or other means. If it is not available, + // instrumentations + // that support query parsing SHOULD generate a summary following + // [Generating query summary] + // section. + // + // For batch operations, if the individual operations are known to have the same + // query summary + // then that query summary SHOULD be used prepended by `BATCH `, + // otherwise `db.query.summary` SHOULD be `BATCH` or some other database + // system specific term if more applicable. + // + // [Generating query summary]: /docs/db/database-spans.md#generating-a-summary-of-the-query + DBQuerySummaryKey = attribute.Key("db.query.summary") + + // DBQueryTextKey is the attribute Key conforming to the "db.query.text" + // semantic conventions. It represents the database query being executed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "SELECT * FROM wuser_table where username = ?", "SET mykey ?" + // Note: For sanitization see [Sanitization of `db.query.text`]. + // For batch operations, if the individual operations are known to have the same + // query text then that query text SHOULD be used, otherwise all of the + // individual query texts SHOULD be concatenated with separator `; ` or some + // other database system specific separator if more applicable. + // Parameterized query text SHOULD NOT be sanitized. Even though parameterized + // query text can potentially have sensitive data, by using a parameterized + // query the user is giving a strong signal that any sensitive data will be + // passed as parameter values, and the benefit to observability of capturing the + // static part of the query text by default outweighs the risk. + // + // [Sanitization of `db.query.text`]: /docs/db/database-spans.md#sanitization-of-dbquerytext + DBQueryTextKey = attribute.Key("db.query.text") + + // DBResponseReturnedRowsKey is the attribute Key conforming to the + // "db.response.returned_rows" semantic conventions. It represents the number of + // rows returned by the operation. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 10, 30, 1000 + DBResponseReturnedRowsKey = attribute.Key("db.response.returned_rows") + + // DBResponseStatusCodeKey is the attribute Key conforming to the + // "db.response.status_code" semantic conventions. It represents the database + // response status code. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "102", "ORA-17002", "08P01", "404" + // Note: The status code returned by the database. Usually it represents an + // error code, but may also represent partial success, warning, or differentiate + // between various types of successful outcomes. + // Semantic conventions for individual database systems SHOULD document what + // `db.response.status_code` means in the context of that system. + DBResponseStatusCodeKey = attribute.Key("db.response.status_code") + + // DBStoredProcedureNameKey is the attribute Key conforming to the + // "db.stored_procedure.name" semantic conventions. It represents the name of a + // stored procedure within the database. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "GetCustomer" + // Note: It is RECOMMENDED to capture the value as provided by the application + // without attempting to do any case normalization. + // + // For batch operations, if the individual operations are known to have the same + // stored procedure name then that stored procedure name SHOULD be used. + DBStoredProcedureNameKey = attribute.Key("db.stored_procedure.name") + + // DBSystemNameKey is the attribute Key conforming to the "db.system.name" + // semantic conventions. It represents the database management system (DBMS) + // product as identified by the client instrumentation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: + // Note: The actual DBMS may differ from the one identified by the client. For + // example, when using PostgreSQL client libraries to connect to a CockroachDB, + // the `db.system.name` is set to `postgresql` based on the instrumentation's + // best knowledge. + DBSystemNameKey = attribute.Key("db.system.name") +) + +// DBClientConnectionPoolName returns an attribute KeyValue conforming to the +// "db.client.connection.pool.name" semantic conventions. It represents the name +// of the connection pool; unique within the instrumented application. In case +// the connection pool implementation doesn't provide a name, instrumentation +// SHOULD use a combination of parameters that would make the name unique, for +// example, combining attributes `server.address`, `server.port`, and +// `db.namespace`, formatted as `server.address:server.port/db.namespace`. +// Instrumentations that generate connection pool name following different +// patterns SHOULD document it. +func DBClientConnectionPoolName(val string) attribute.KeyValue { + return DBClientConnectionPoolNameKey.String(val) +} + +// DBCollectionName returns an attribute KeyValue conforming to the +// "db.collection.name" semantic conventions. It represents the name of a +// collection (table, container) within the database. +func DBCollectionName(val string) attribute.KeyValue { + return DBCollectionNameKey.String(val) +} + +// DBNamespace returns an attribute KeyValue conforming to the "db.namespace" +// semantic conventions. It represents the name of the database, fully qualified +// within the server address and port. +func DBNamespace(val string) attribute.KeyValue { + return DBNamespaceKey.String(val) +} + +// DBOperationBatchSize returns an attribute KeyValue conforming to the +// "db.operation.batch.size" semantic conventions. It represents the number of +// queries included in a batch operation. +func DBOperationBatchSize(val int) attribute.KeyValue { + return DBOperationBatchSizeKey.Int(val) +} + +// DBOperationName returns an attribute KeyValue conforming to the +// "db.operation.name" semantic conventions. It represents the name of the +// operation or command being executed. +func DBOperationName(val string) attribute.KeyValue { + return DBOperationNameKey.String(val) +} + +// DBOperationParameter returns an attribute KeyValue conforming to the +// "db.operation.parameter" semantic conventions. It represents a database +// operation parameter, with `` being the parameter name, and the attribute +// value being a string representation of the parameter value. +func DBOperationParameter(key string, val string) attribute.KeyValue { + return attribute.String("db.operation.parameter."+key, val) +} + +// DBQueryParameter returns an attribute KeyValue conforming to the +// "db.query.parameter" semantic conventions. It represents a database query +// parameter, with `` being the parameter name, and the attribute value +// being a string representation of the parameter value. +func DBQueryParameter(key string, val string) attribute.KeyValue { + return attribute.String("db.query.parameter."+key, val) +} + +// DBQuerySummary returns an attribute KeyValue conforming to the +// "db.query.summary" semantic conventions. It represents the low cardinality +// summary of a database query. +func DBQuerySummary(val string) attribute.KeyValue { + return DBQuerySummaryKey.String(val) +} + +// DBQueryText returns an attribute KeyValue conforming to the "db.query.text" +// semantic conventions. It represents the database query being executed. +func DBQueryText(val string) attribute.KeyValue { + return DBQueryTextKey.String(val) +} + +// DBResponseReturnedRows returns an attribute KeyValue conforming to the +// "db.response.returned_rows" semantic conventions. It represents the number of +// rows returned by the operation. +func DBResponseReturnedRows(val int) attribute.KeyValue { + return DBResponseReturnedRowsKey.Int(val) +} + +// DBResponseStatusCode returns an attribute KeyValue conforming to the +// "db.response.status_code" semantic conventions. It represents the database +// response status code. +func DBResponseStatusCode(val string) attribute.KeyValue { + return DBResponseStatusCodeKey.String(val) +} + +// DBStoredProcedureName returns an attribute KeyValue conforming to the +// "db.stored_procedure.name" semantic conventions. It represents the name of a +// stored procedure within the database. +func DBStoredProcedureName(val string) attribute.KeyValue { + return DBStoredProcedureNameKey.String(val) +} + +// Enum values for db.client.connection.state +var ( + // idle + // Stability: development + DBClientConnectionStateIdle = DBClientConnectionStateKey.String("idle") + // used + // Stability: development + DBClientConnectionStateUsed = DBClientConnectionStateKey.String("used") +) + +// Enum values for db.system.name +var ( + // Some other SQL database. Fallback only. + // Stability: development + DBSystemNameOtherSQL = DBSystemNameKey.String("other_sql") + // [Adabas (Adaptable Database System)] + // Stability: development + // + // [Adabas (Adaptable Database System)]: https://documentation.softwareag.com/?pf=adabas + DBSystemNameSoftwareagAdabas = DBSystemNameKey.String("softwareag.adabas") + // [Actian Ingres] + // Stability: development + // + // [Actian Ingres]: https://www.actian.com/databases/ingres/ + DBSystemNameActianIngres = DBSystemNameKey.String("actian.ingres") + // [Amazon DynamoDB] + // Stability: development + // + // [Amazon DynamoDB]: https://aws.amazon.com/pm/dynamodb/ + DBSystemNameAWSDynamoDB = DBSystemNameKey.String("aws.dynamodb") + // [Amazon Redshift] + // Stability: development + // + // [Amazon Redshift]: https://aws.amazon.com/redshift/ + DBSystemNameAWSRedshift = DBSystemNameKey.String("aws.redshift") + // [Azure Cosmos DB] + // Stability: development + // + // [Azure Cosmos DB]: https://learn.microsoft.com/azure/cosmos-db + DBSystemNameAzureCosmosDB = DBSystemNameKey.String("azure.cosmosdb") + // [InterSystems Caché] + // Stability: development + // + // [InterSystems Caché]: https://www.intersystems.com/products/cache/ + DBSystemNameIntersystemsCache = DBSystemNameKey.String("intersystems.cache") + // [Apache Cassandra] + // Stability: development + // + // [Apache Cassandra]: https://cassandra.apache.org/ + DBSystemNameCassandra = DBSystemNameKey.String("cassandra") + // [ClickHouse] + // Stability: development + // + // [ClickHouse]: https://clickhouse.com/ + DBSystemNameClickHouse = DBSystemNameKey.String("clickhouse") + // [CockroachDB] + // Stability: development + // + // [CockroachDB]: https://www.cockroachlabs.com/ + DBSystemNameCockroachDB = DBSystemNameKey.String("cockroachdb") + // [Couchbase] + // Stability: development + // + // [Couchbase]: https://www.couchbase.com/ + DBSystemNameCouchbase = DBSystemNameKey.String("couchbase") + // [Apache CouchDB] + // Stability: development + // + // [Apache CouchDB]: https://couchdb.apache.org/ + DBSystemNameCouchDB = DBSystemNameKey.String("couchdb") + // [Apache Derby] + // Stability: development + // + // [Apache Derby]: https://db.apache.org/derby/ + DBSystemNameDerby = DBSystemNameKey.String("derby") + // [Elasticsearch] + // Stability: development + // + // [Elasticsearch]: https://www.elastic.co/elasticsearch + DBSystemNameElasticsearch = DBSystemNameKey.String("elasticsearch") + // [Firebird] + // Stability: development + // + // [Firebird]: https://www.firebirdsql.org/ + DBSystemNameFirebirdSQL = DBSystemNameKey.String("firebirdsql") + // [Google Cloud Spanner] + // Stability: development + // + // [Google Cloud Spanner]: https://cloud.google.com/spanner + DBSystemNameGCPSpanner = DBSystemNameKey.String("gcp.spanner") + // [Apache Geode] + // Stability: development + // + // [Apache Geode]: https://geode.apache.org/ + DBSystemNameGeode = DBSystemNameKey.String("geode") + // [H2 Database] + // Stability: development + // + // [H2 Database]: https://h2database.com/ + DBSystemNameH2database = DBSystemNameKey.String("h2database") + // [Apache HBase] + // Stability: development + // + // [Apache HBase]: https://hbase.apache.org/ + DBSystemNameHBase = DBSystemNameKey.String("hbase") + // [Apache Hive] + // Stability: development + // + // [Apache Hive]: https://hive.apache.org/ + DBSystemNameHive = DBSystemNameKey.String("hive") + // [HyperSQL Database] + // Stability: development + // + // [HyperSQL Database]: https://hsqldb.org/ + DBSystemNameHSQLDB = DBSystemNameKey.String("hsqldb") + // [IBM Db2] + // Stability: development + // + // [IBM Db2]: https://www.ibm.com/db2 + DBSystemNameIBMDB2 = DBSystemNameKey.String("ibm.db2") + // [IBM Informix] + // Stability: development + // + // [IBM Informix]: https://www.ibm.com/products/informix + DBSystemNameIBMInformix = DBSystemNameKey.String("ibm.informix") + // [IBM Netezza] + // Stability: development + // + // [IBM Netezza]: https://www.ibm.com/products/netezza + DBSystemNameIBMNetezza = DBSystemNameKey.String("ibm.netezza") + // [InfluxDB] + // Stability: development + // + // [InfluxDB]: https://www.influxdata.com/ + DBSystemNameInfluxDB = DBSystemNameKey.String("influxdb") + // [Instant] + // Stability: development + // + // [Instant]: https://www.instantdb.com/ + DBSystemNameInstantDB = DBSystemNameKey.String("instantdb") + // [MariaDB] + // Stability: stable + // + // [MariaDB]: https://mariadb.org/ + DBSystemNameMariaDB = DBSystemNameKey.String("mariadb") + // [Memcached] + // Stability: development + // + // [Memcached]: https://memcached.org/ + DBSystemNameMemcached = DBSystemNameKey.String("memcached") + // [MongoDB] + // Stability: development + // + // [MongoDB]: https://www.mongodb.com/ + DBSystemNameMongoDB = DBSystemNameKey.String("mongodb") + // [Microsoft SQL Server] + // Stability: stable + // + // [Microsoft SQL Server]: https://www.microsoft.com/sql-server + DBSystemNameMicrosoftSQLServer = DBSystemNameKey.String("microsoft.sql_server") + // [MySQL] + // Stability: stable + // + // [MySQL]: https://www.mysql.com/ + DBSystemNameMySQL = DBSystemNameKey.String("mysql") + // [Neo4j] + // Stability: development + // + // [Neo4j]: https://neo4j.com/ + DBSystemNameNeo4j = DBSystemNameKey.String("neo4j") + // [OpenSearch] + // Stability: development + // + // [OpenSearch]: https://opensearch.org/ + DBSystemNameOpenSearch = DBSystemNameKey.String("opensearch") + // [Oracle Database] + // Stability: development + // + // [Oracle Database]: https://www.oracle.com/database/ + DBSystemNameOracleDB = DBSystemNameKey.String("oracle.db") + // [PostgreSQL] + // Stability: stable + // + // [PostgreSQL]: https://www.postgresql.org/ + DBSystemNamePostgreSQL = DBSystemNameKey.String("postgresql") + // [Redis] + // Stability: development + // + // [Redis]: https://redis.io/ + DBSystemNameRedis = DBSystemNameKey.String("redis") + // [SAP HANA] + // Stability: development + // + // [SAP HANA]: https://www.sap.com/products/technology-platform/hana/what-is-sap-hana.html + DBSystemNameSAPHANA = DBSystemNameKey.String("sap.hana") + // [SAP MaxDB] + // Stability: development + // + // [SAP MaxDB]: https://maxdb.sap.com/ + DBSystemNameSAPMaxDB = DBSystemNameKey.String("sap.maxdb") + // [SQLite] + // Stability: development + // + // [SQLite]: https://www.sqlite.org/ + DBSystemNameSQLite = DBSystemNameKey.String("sqlite") + // [Teradata] + // Stability: development + // + // [Teradata]: https://www.teradata.com/ + DBSystemNameTeradata = DBSystemNameKey.String("teradata") + // [Trino] + // Stability: development + // + // [Trino]: https://trino.io/ + DBSystemNameTrino = DBSystemNameKey.String("trino") +) + +// Namespace: deployment +const ( + // DeploymentEnvironmentNameKey is the attribute Key conforming to the + // "deployment.environment.name" semantic conventions. It represents the name of + // the [deployment environment] (aka deployment tier). + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "staging", "production" + // Note: `deployment.environment.name` does not affect the uniqueness + // constraints defined through + // the `service.namespace`, `service.name` and `service.instance.id` resource + // attributes. + // This implies that resources carrying the following attribute combinations + // MUST be + // considered to be identifying the same service: + // + // - `service.name=frontend`, `deployment.environment.name=production` + // - `service.name=frontend`, `deployment.environment.name=staging`. + // + // + // [deployment environment]: https://wikipedia.org/wiki/Deployment_environment + DeploymentEnvironmentNameKey = attribute.Key("deployment.environment.name") + + // DeploymentIDKey is the attribute Key conforming to the "deployment.id" + // semantic conventions. It represents the id of the deployment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1208" + DeploymentIDKey = attribute.Key("deployment.id") + + // DeploymentNameKey is the attribute Key conforming to the "deployment.name" + // semantic conventions. It represents the name of the deployment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "deploy my app", "deploy-frontend" + DeploymentNameKey = attribute.Key("deployment.name") + + // DeploymentStatusKey is the attribute Key conforming to the + // "deployment.status" semantic conventions. It represents the status of the + // deployment. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + DeploymentStatusKey = attribute.Key("deployment.status") +) + +// DeploymentID returns an attribute KeyValue conforming to the "deployment.id" +// semantic conventions. It represents the id of the deployment. +func DeploymentID(val string) attribute.KeyValue { + return DeploymentIDKey.String(val) +} + +// DeploymentName returns an attribute KeyValue conforming to the +// "deployment.name" semantic conventions. It represents the name of the +// deployment. +func DeploymentName(val string) attribute.KeyValue { + return DeploymentNameKey.String(val) +} + +// Enum values for deployment.environment.name +var ( + // Production environment + // Stability: stable + DeploymentEnvironmentNameProduction = DeploymentEnvironmentNameKey.String("production") + // Staging environment + // Stability: stable + DeploymentEnvironmentNameStaging = DeploymentEnvironmentNameKey.String("staging") + // Testing environment + // Stability: stable + DeploymentEnvironmentNameTest = DeploymentEnvironmentNameKey.String("test") + // Development environment + // Stability: stable + DeploymentEnvironmentNameDevelopment = DeploymentEnvironmentNameKey.String("development") +) + +// Enum values for deployment.status +var ( + // failed + // Stability: development + DeploymentStatusFailed = DeploymentStatusKey.String("failed") + // succeeded + // Stability: development + DeploymentStatusSucceeded = DeploymentStatusKey.String("succeeded") +) + +// Namespace: destination +const ( + // DestinationAddressKey is the attribute Key conforming to the + // "destination.address" semantic conventions. It represents the destination + // address - domain name if available without reverse DNS lookup; otherwise, IP + // address or Unix domain socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "destination.example.com", "10.1.2.80", "/tmp/my.sock" + // Note: When observed from the source side, and when communicating through an + // intermediary, `destination.address` SHOULD represent the destination address + // behind any intermediaries, for example proxies, if it's available. + DestinationAddressKey = attribute.Key("destination.address") + + // DestinationPortKey is the attribute Key conforming to the "destination.port" + // semantic conventions. It represents the destination port number. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 3389, 2888 + DestinationPortKey = attribute.Key("destination.port") +) + +// DestinationAddress returns an attribute KeyValue conforming to the +// "destination.address" semantic conventions. It represents the destination +// address - domain name if available without reverse DNS lookup; otherwise, IP +// address or Unix domain socket name. +func DestinationAddress(val string) attribute.KeyValue { + return DestinationAddressKey.String(val) +} + +// DestinationPort returns an attribute KeyValue conforming to the +// "destination.port" semantic conventions. It represents the destination port +// number. +func DestinationPort(val int) attribute.KeyValue { + return DestinationPortKey.Int(val) +} + +// Namespace: device +const ( + // DeviceIDKey is the attribute Key conforming to the "device.id" semantic + // conventions. It represents a unique identifier representing the device. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "123456789012345", "01:23:45:67:89:AB" + // Note: Its value SHOULD be identical for all apps on a device and it SHOULD + // NOT change if an app is uninstalled and re-installed. + // However, it might be resettable by the user for all apps on a device. + // Hardware IDs (e.g. vendor-specific serial number, IMEI or MAC address) MAY be + // used as values. + // + // More information about Android identifier best practices can be found in the + // [Android user data IDs guide]. + // + // > [!WARNING]> This attribute may contain sensitive (PII) information. Caution + // > should be taken when storing personal data or anything which can identify a + // > user. GDPR and data protection laws may apply, + // > ensure you do your own due diligence.> Due to these reasons, this + // > identifier is not recommended for consumer applications and will likely + // > result in rejection from both Google Play and App Store. + // > However, it may be appropriate for specific enterprise scenarios, such as + // > kiosk devices or enterprise-managed devices, with appropriate compliance + // > clearance. + // > Any instrumentation providing this identifier MUST implement it as an + // > opt-in feature.> See [`app.installation.id`]> for a more + // > privacy-preserving alternative. + // + // [Android user data IDs guide]: https://developer.android.com/training/articles/user-data-ids + // [`app.installation.id`]: /docs/registry/attributes/app.md#app-installation-id + DeviceIDKey = attribute.Key("device.id") + + // DeviceManufacturerKey is the attribute Key conforming to the + // "device.manufacturer" semantic conventions. It represents the name of the + // device manufacturer. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Apple", "Samsung" + // Note: The Android OS provides this field via [Build]. iOS apps SHOULD + // hardcode the value `Apple`. + // + // [Build]: https://developer.android.com/reference/android/os/Build#MANUFACTURER + DeviceManufacturerKey = attribute.Key("device.manufacturer") + + // DeviceModelIdentifierKey is the attribute Key conforming to the + // "device.model.identifier" semantic conventions. It represents the model + // identifier for the device. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "iPhone3,4", "SM-G920F" + // Note: It's recommended this value represents a machine-readable version of + // the model identifier rather than the market or consumer-friendly name of the + // device. + DeviceModelIdentifierKey = attribute.Key("device.model.identifier") + + // DeviceModelNameKey is the attribute Key conforming to the "device.model.name" + // semantic conventions. It represents the marketing name for the device model. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "iPhone 6s Plus", "Samsung Galaxy S6" + // Note: It's recommended this value represents a human-readable version of the + // device model rather than a machine-readable alternative. + DeviceModelNameKey = attribute.Key("device.model.name") +) + +// DeviceID returns an attribute KeyValue conforming to the "device.id" semantic +// conventions. It represents a unique identifier representing the device. +func DeviceID(val string) attribute.KeyValue { + return DeviceIDKey.String(val) +} + +// DeviceManufacturer returns an attribute KeyValue conforming to the +// "device.manufacturer" semantic conventions. It represents the name of the +// device manufacturer. +func DeviceManufacturer(val string) attribute.KeyValue { + return DeviceManufacturerKey.String(val) +} + +// DeviceModelIdentifier returns an attribute KeyValue conforming to the +// "device.model.identifier" semantic conventions. It represents the model +// identifier for the device. +func DeviceModelIdentifier(val string) attribute.KeyValue { + return DeviceModelIdentifierKey.String(val) +} + +// DeviceModelName returns an attribute KeyValue conforming to the +// "device.model.name" semantic conventions. It represents the marketing name for +// the device model. +func DeviceModelName(val string) attribute.KeyValue { + return DeviceModelNameKey.String(val) +} + +// Namespace: disk +const ( + // DiskIODirectionKey is the attribute Key conforming to the "disk.io.direction" + // semantic conventions. It represents the disk IO operation direction. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "read" + DiskIODirectionKey = attribute.Key("disk.io.direction") +) + +// Enum values for disk.io.direction +var ( + // read + // Stability: development + DiskIODirectionRead = DiskIODirectionKey.String("read") + // write + // Stability: development + DiskIODirectionWrite = DiskIODirectionKey.String("write") +) + +// Namespace: dns +const ( + // DNSAnswersKey is the attribute Key conforming to the "dns.answers" semantic + // conventions. It represents the list of IPv4 or IPv6 addresses resolved during + // DNS lookup. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "10.0.0.1", "2001:0db8:85a3:0000:0000:8a2e:0370:7334" + DNSAnswersKey = attribute.Key("dns.answers") + + // DNSQuestionNameKey is the attribute Key conforming to the "dns.question.name" + // semantic conventions. It represents the name being queried. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "www.example.com", "opentelemetry.io" + // Note: The name represents the queried domain name as it appears in the DNS + // query without any additional normalization. + DNSQuestionNameKey = attribute.Key("dns.question.name") +) + +// DNSAnswers returns an attribute KeyValue conforming to the "dns.answers" +// semantic conventions. It represents the list of IPv4 or IPv6 addresses +// resolved during DNS lookup. +func DNSAnswers(val ...string) attribute.KeyValue { + return DNSAnswersKey.StringSlice(val) +} + +// DNSQuestionName returns an attribute KeyValue conforming to the +// "dns.question.name" semantic conventions. It represents the name being +// queried. +func DNSQuestionName(val string) attribute.KeyValue { + return DNSQuestionNameKey.String(val) +} + +// Namespace: elasticsearch +const ( + // ElasticsearchNodeNameKey is the attribute Key conforming to the + // "elasticsearch.node.name" semantic conventions. It represents the represents + // the human-readable identifier of the node/instance to which a request was + // routed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "instance-0000000001" + ElasticsearchNodeNameKey = attribute.Key("elasticsearch.node.name") +) + +// ElasticsearchNodeName returns an attribute KeyValue conforming to the +// "elasticsearch.node.name" semantic conventions. It represents the represents +// the human-readable identifier of the node/instance to which a request was +// routed. +func ElasticsearchNodeName(val string) attribute.KeyValue { + return ElasticsearchNodeNameKey.String(val) +} + +// Namespace: enduser +const ( + // EnduserIDKey is the attribute Key conforming to the "enduser.id" semantic + // conventions. It represents the unique identifier of an end user in the + // system. It maybe a username, email address, or other identifier. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "username" + // Note: Unique identifier of an end user in the system. + // + // > [!Warning] + // > This field contains sensitive (PII) information. + EnduserIDKey = attribute.Key("enduser.id") + + // EnduserPseudoIDKey is the attribute Key conforming to the "enduser.pseudo.id" + // semantic conventions. It represents the pseudonymous identifier of an end + // user. This identifier should be a random value that is not directly linked or + // associated with the end user's actual identity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "QdH5CAWJgqVT4rOr0qtumf" + // Note: Pseudonymous identifier of an end user. + // + // > [!Warning] + // > This field contains sensitive (linkable PII) information. + EnduserPseudoIDKey = attribute.Key("enduser.pseudo.id") +) + +// EnduserID returns an attribute KeyValue conforming to the "enduser.id" +// semantic conventions. It represents the unique identifier of an end user in +// the system. It maybe a username, email address, or other identifier. +func EnduserID(val string) attribute.KeyValue { + return EnduserIDKey.String(val) +} + +// EnduserPseudoID returns an attribute KeyValue conforming to the +// "enduser.pseudo.id" semantic conventions. It represents the pseudonymous +// identifier of an end user. This identifier should be a random value that is +// not directly linked or associated with the end user's actual identity. +func EnduserPseudoID(val string) attribute.KeyValue { + return EnduserPseudoIDKey.String(val) +} + +// Namespace: error +const ( + // ErrorTypeKey is the attribute Key conforming to the "error.type" semantic + // conventions. It represents the describes a class of error the operation ended + // with. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "timeout", "java.net.UnknownHostException", + // "server_certificate_invalid", "500" + // Note: The `error.type` SHOULD be predictable, and SHOULD have low + // cardinality. + // + // When `error.type` is set to a type (e.g., an exception type), its + // canonical class name identifying the type within the artifact SHOULD be used. + // + // If the recorded error type is a wrapper that is not meaningful for + // failure classification, instrumentation MAY use the type of the inner + // error instead. For example, in Go, errors created with `fmt.Errorf` + // using `%w` MAY be unwrapped when the wrapper type does not help + // classify the failure. + // + // Instrumentations SHOULD document the list of errors they report. + // + // The cardinality of `error.type` within one instrumentation library SHOULD be + // low. + // Telemetry consumers that aggregate data from multiple instrumentation + // libraries and applications + // should be prepared for `error.type` to have high cardinality at query time + // when no + // additional filters are applied. + // + // If the operation has completed successfully, instrumentations SHOULD NOT set + // `error.type`. + // + // If a specific domain defines its own set of error identifiers (such as HTTP + // or RPC status codes), + // it's RECOMMENDED to: + // + // - Use a domain-specific attribute + // - Set `error.type` to capture all errors, regardless of whether they are + // defined within the domain-specific set or not. + ErrorTypeKey = attribute.Key("error.type") +) + +// Enum values for error.type +var ( + // A fallback error value to be used when the instrumentation doesn't define a + // custom value. + // + // Stability: stable + ErrorTypeOther = ErrorTypeKey.String("_OTHER") +) + +// Namespace: exception +const ( + // ExceptionMessageKey is the attribute Key conforming to the + // "exception.message" semantic conventions. It represents the exception + // message. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "Division by zero", "Can't convert 'int' object to str implicitly" + // Note: > [!WARNING] + // + // > This attribute may contain sensitive information. + ExceptionMessageKey = attribute.Key("exception.message") + + // ExceptionStacktraceKey is the attribute Key conforming to the + // "exception.stacktrace" semantic conventions. It represents a stacktrace as a + // string in the natural representation for the language runtime. The + // representation is to be determined and documented by each language SIG. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: Exception in thread "main" java.lang.RuntimeException: Test + // exception\n at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at + // com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at + // com.example.GenerateTrace.main(GenerateTrace.java:5) + ExceptionStacktraceKey = attribute.Key("exception.stacktrace") + + // ExceptionTypeKey is the attribute Key conforming to the "exception.type" + // semantic conventions. It represents the type of the exception (its + // fully-qualified class name, if applicable). The dynamic type of the exception + // should be preferred over the static type in languages that support it. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "java.net.ConnectException", "OSError" + // Note: If the recorded exception type is a wrapper that is not meaningful for + // failure classification, instrumentation MAY use the type of the inner + // exception instead. For example, in Go, errors created with `fmt.Errorf` + // using `%w` MAY be unwrapped when the wrapper type does not help + // classify the failure. + ExceptionTypeKey = attribute.Key("exception.type") +) + +// ExceptionMessage returns an attribute KeyValue conforming to the +// "exception.message" semantic conventions. It represents the exception message. +func ExceptionMessage(val string) attribute.KeyValue { + return ExceptionMessageKey.String(val) +} + +// ExceptionStacktrace returns an attribute KeyValue conforming to the +// "exception.stacktrace" semantic conventions. It represents a stacktrace as a +// string in the natural representation for the language runtime. The +// representation is to be determined and documented by each language SIG. +func ExceptionStacktrace(val string) attribute.KeyValue { + return ExceptionStacktraceKey.String(val) +} + +// ExceptionType returns an attribute KeyValue conforming to the "exception.type" +// semantic conventions. It represents the type of the exception (its +// fully-qualified class name, if applicable). The dynamic type of the exception +// should be preferred over the static type in languages that support it. +func ExceptionType(val string) attribute.KeyValue { + return ExceptionTypeKey.String(val) +} + +// Namespace: faas +const ( + // FaaSColdstartKey is the attribute Key conforming to the "faas.coldstart" + // semantic conventions. It represents a boolean that is true if the serverless + // function is executed for the first time (aka cold-start). + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + FaaSColdstartKey = attribute.Key("faas.coldstart") + + // FaaSCronKey is the attribute Key conforming to the "faas.cron" semantic + // conventions. It represents a string containing the schedule period as + // [Cron Expression]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0/5 * * * ? * + // + // [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm + FaaSCronKey = attribute.Key("faas.cron") + + // FaaSDocumentCollectionKey is the attribute Key conforming to the + // "faas.document.collection" semantic conventions. It represents the name of + // the source on which the triggering operation was performed. For example, in + // Cloud Storage or S3 corresponds to the bucket name, and in Cosmos DB to the + // database name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "myBucketName", "myDbName" + FaaSDocumentCollectionKey = attribute.Key("faas.document.collection") + + // FaaSDocumentNameKey is the attribute Key conforming to the + // "faas.document.name" semantic conventions. It represents the document + // name/table subjected to the operation. For example, in Cloud Storage or S3 is + // the name of the file, and in Cosmos DB the table name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "myFile.txt", "myTableName" + FaaSDocumentNameKey = attribute.Key("faas.document.name") + + // FaaSDocumentOperationKey is the attribute Key conforming to the + // "faas.document.operation" semantic conventions. It represents the describes + // the type of the operation that was performed on the data. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + FaaSDocumentOperationKey = attribute.Key("faas.document.operation") + + // FaaSDocumentTimeKey is the attribute Key conforming to the + // "faas.document.time" semantic conventions. It represents a string containing + // the time when the data was accessed in the [ISO 8601] format expressed in + // [UTC]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 2020-01-23T13:47:06Z + // + // [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html + // [UTC]: https://www.w3.org/TR/NOTE-datetime + FaaSDocumentTimeKey = attribute.Key("faas.document.time") + + // FaaSInstanceKey is the attribute Key conforming to the "faas.instance" + // semantic conventions. It represents the execution environment ID as a string, + // that will be potentially reused for other invocations to the same + // function/function version. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021/06/28/[$LATEST]2f399eb14537447da05ab2a2e39309de" + // Note: - **AWS Lambda:** Use the (full) log stream name. + FaaSInstanceKey = attribute.Key("faas.instance") + + // FaaSInvocationIDKey is the attribute Key conforming to the + // "faas.invocation_id" semantic conventions. It represents the invocation ID of + // the current function invocation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: af9d5aa4-a685-4c5f-a22b-444f80b3cc28 + FaaSInvocationIDKey = attribute.Key("faas.invocation_id") + + // FaaSInvokedNameKey is the attribute Key conforming to the "faas.invoked_name" + // semantic conventions. It represents the name of the invoked function. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: my-function + // Note: SHOULD be equal to the `faas.name` resource attribute of the invoked + // function. + FaaSInvokedNameKey = attribute.Key("faas.invoked_name") + + // FaaSInvokedProviderKey is the attribute Key conforming to the + // "faas.invoked_provider" semantic conventions. It represents the cloud + // provider of the invoked function. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: SHOULD be equal to the `cloud.provider` resource attribute of the + // invoked function. + FaaSInvokedProviderKey = attribute.Key("faas.invoked_provider") + + // FaaSInvokedRegionKey is the attribute Key conforming to the + // "faas.invoked_region" semantic conventions. It represents the cloud region of + // the invoked function. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: eu-central-1 + // Note: SHOULD be equal to the `cloud.region` resource attribute of the invoked + // function. + FaaSInvokedRegionKey = attribute.Key("faas.invoked_region") + + // FaaSMaxMemoryKey is the attribute Key conforming to the "faas.max_memory" + // semantic conventions. It represents the amount of memory available to the + // serverless function converted to Bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Note: It's recommended to set this attribute since e.g. too little memory can + // easily stop a Java AWS Lambda function from working correctly. On AWS Lambda, + // the environment variable `AWS_LAMBDA_FUNCTION_MEMORY_SIZE` provides this + // information (which must be multiplied by 1,048,576). + FaaSMaxMemoryKey = attribute.Key("faas.max_memory") + + // FaaSNameKey is the attribute Key conforming to the "faas.name" semantic + // conventions. It represents the name of the single function that this runtime + // instance executes. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-function", "myazurefunctionapp/some-function-name" + // Note: This is the name of the function as configured/deployed on the FaaS + // platform and is usually different from the name of the callback + // function (which may be stored in the + // [`code.namespace`/`code.function.name`] + // span attributes). + // + // For some cloud providers, the above definition is ambiguous. The following + // definition of function name MUST be used for this attribute + // (and consequently the span name) for the listed cloud providers/products: + // + // - **Azure:** The full name `/`, i.e., function app name + // followed by a forward slash followed by the function name (this form + // can also be seen in the resource JSON for the function). + // This means that a span attribute MUST be used, as an Azure function + // app can host multiple functions that would usually share + // a TracerProvider (see also the `cloud.resource_id` attribute). + // + // + // [`code.namespace`/`code.function.name`]: /docs/general/attributes.md#source-code-attributes + FaaSNameKey = attribute.Key("faas.name") + + // FaaSTimeKey is the attribute Key conforming to the "faas.time" semantic + // conventions. It represents a string containing the function invocation time + // in the [ISO 8601] format expressed in [UTC]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 2020-01-23T13:47:06Z + // + // [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html + // [UTC]: https://www.w3.org/TR/NOTE-datetime + FaaSTimeKey = attribute.Key("faas.time") + + // FaaSTriggerKey is the attribute Key conforming to the "faas.trigger" semantic + // conventions. It represents the type of the trigger which caused this function + // invocation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + FaaSTriggerKey = attribute.Key("faas.trigger") + + // FaaSVersionKey is the attribute Key conforming to the "faas.version" semantic + // conventions. It represents the immutable version of the function being + // executed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "26", "pinkfroid-00002" + // Note: Depending on the cloud provider and platform, use: + // + // - **AWS Lambda:** The [function version] + // (an integer represented as a decimal string). + // - **Google Cloud Run (Services):** The [revision] + // (i.e., the function name plus the revision suffix). + // - **Google Cloud Functions:** The value of the + // [`K_REVISION` environment variable]. + // - **Azure Functions:** Not applicable. Do not set this attribute. + // + // + // [function version]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-versions.html + // [revision]: https://cloud.google.com/run/docs/managing/revisions + // [`K_REVISION` environment variable]: https://cloud.google.com/run/docs/container-contract#services-env-vars + FaaSVersionKey = attribute.Key("faas.version") +) + +// FaaSColdstart returns an attribute KeyValue conforming to the "faas.coldstart" +// semantic conventions. It represents a boolean that is true if the serverless +// function is executed for the first time (aka cold-start). +func FaaSColdstart(val bool) attribute.KeyValue { + return FaaSColdstartKey.Bool(val) +} + +// FaaSCron returns an attribute KeyValue conforming to the "faas.cron" semantic +// conventions. It represents a string containing the schedule period as +// [Cron Expression]. +// +// [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm +func FaaSCron(val string) attribute.KeyValue { + return FaaSCronKey.String(val) +} + +// FaaSDocumentCollection returns an attribute KeyValue conforming to the +// "faas.document.collection" semantic conventions. It represents the name of the +// source on which the triggering operation was performed. For example, in Cloud +// Storage or S3 corresponds to the bucket name, and in Cosmos DB to the database +// name. +func FaaSDocumentCollection(val string) attribute.KeyValue { + return FaaSDocumentCollectionKey.String(val) +} + +// FaaSDocumentName returns an attribute KeyValue conforming to the +// "faas.document.name" semantic conventions. It represents the document +// name/table subjected to the operation. For example, in Cloud Storage or S3 is +// the name of the file, and in Cosmos DB the table name. +func FaaSDocumentName(val string) attribute.KeyValue { + return FaaSDocumentNameKey.String(val) +} + +// FaaSDocumentTime returns an attribute KeyValue conforming to the +// "faas.document.time" semantic conventions. It represents a string containing +// the time when the data was accessed in the [ISO 8601] format expressed in +// [UTC]. +// +// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html +// [UTC]: https://www.w3.org/TR/NOTE-datetime +func FaaSDocumentTime(val string) attribute.KeyValue { + return FaaSDocumentTimeKey.String(val) +} + +// FaaSInstance returns an attribute KeyValue conforming to the "faas.instance" +// semantic conventions. It represents the execution environment ID as a string, +// that will be potentially reused for other invocations to the same +// function/function version. +func FaaSInstance(val string) attribute.KeyValue { + return FaaSInstanceKey.String(val) +} + +// FaaSInvocationID returns an attribute KeyValue conforming to the +// "faas.invocation_id" semantic conventions. It represents the invocation ID of +// the current function invocation. +func FaaSInvocationID(val string) attribute.KeyValue { + return FaaSInvocationIDKey.String(val) +} + +// FaaSInvokedName returns an attribute KeyValue conforming to the +// "faas.invoked_name" semantic conventions. It represents the name of the +// invoked function. +func FaaSInvokedName(val string) attribute.KeyValue { + return FaaSInvokedNameKey.String(val) +} + +// FaaSInvokedRegion returns an attribute KeyValue conforming to the +// "faas.invoked_region" semantic conventions. It represents the cloud region of +// the invoked function. +func FaaSInvokedRegion(val string) attribute.KeyValue { + return FaaSInvokedRegionKey.String(val) +} + +// FaaSMaxMemory returns an attribute KeyValue conforming to the +// "faas.max_memory" semantic conventions. It represents the amount of memory +// available to the serverless function converted to Bytes. +func FaaSMaxMemory(val int) attribute.KeyValue { + return FaaSMaxMemoryKey.Int(val) +} + +// FaaSName returns an attribute KeyValue conforming to the "faas.name" semantic +// conventions. It represents the name of the single function that this runtime +// instance executes. +func FaaSName(val string) attribute.KeyValue { + return FaaSNameKey.String(val) +} + +// FaaSTime returns an attribute KeyValue conforming to the "faas.time" semantic +// conventions. It represents a string containing the function invocation time in +// the [ISO 8601] format expressed in [UTC]. +// +// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html +// [UTC]: https://www.w3.org/TR/NOTE-datetime +func FaaSTime(val string) attribute.KeyValue { + return FaaSTimeKey.String(val) +} + +// FaaSVersion returns an attribute KeyValue conforming to the "faas.version" +// semantic conventions. It represents the immutable version of the function +// being executed. +func FaaSVersion(val string) attribute.KeyValue { + return FaaSVersionKey.String(val) +} + +// Enum values for faas.document.operation +var ( + // When a new object is created. + // Stability: development + FaaSDocumentOperationInsert = FaaSDocumentOperationKey.String("insert") + // When an object is modified. + // Stability: development + FaaSDocumentOperationEdit = FaaSDocumentOperationKey.String("edit") + // When an object is deleted. + // Stability: development + FaaSDocumentOperationDelete = FaaSDocumentOperationKey.String("delete") +) + +// Enum values for faas.invoked_provider +var ( + // Alibaba Cloud + // Stability: development + FaaSInvokedProviderAlibabaCloud = FaaSInvokedProviderKey.String("alibaba_cloud") + // Amazon Web Services + // Stability: development + FaaSInvokedProviderAWS = FaaSInvokedProviderKey.String("aws") + // Microsoft Azure + // Stability: development + FaaSInvokedProviderAzure = FaaSInvokedProviderKey.String("azure") + // Google Cloud Platform + // Stability: development + FaaSInvokedProviderGCP = FaaSInvokedProviderKey.String("gcp") + // Tencent Cloud + // Stability: development + FaaSInvokedProviderTencentCloud = FaaSInvokedProviderKey.String("tencent_cloud") +) + +// Enum values for faas.trigger +var ( + // A response to some data source operation such as a database or filesystem + // read/write + // Stability: development + FaaSTriggerDatasource = FaaSTriggerKey.String("datasource") + // To provide an answer to an inbound HTTP request + // Stability: development + FaaSTriggerHTTP = FaaSTriggerKey.String("http") + // A function is set to be executed when messages are sent to a messaging system + // Stability: development + FaaSTriggerPubSub = FaaSTriggerKey.String("pubsub") + // A function is scheduled to be executed regularly + // Stability: development + FaaSTriggerTimer = FaaSTriggerKey.String("timer") + // If none of the others apply + // Stability: development + FaaSTriggerOther = FaaSTriggerKey.String("other") +) + +// Namespace: feature_flag +const ( + // FeatureFlagContextIDKey is the attribute Key conforming to the + // "feature_flag.context.id" semantic conventions. It represents the unique + // identifier for the flag evaluation context. For example, the targeting key. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "5157782b-2203-4c80-a857-dbbd5e7761db" + FeatureFlagContextIDKey = attribute.Key("feature_flag.context.id") + + // FeatureFlagErrorMessageKey is the attribute Key conforming to the + // "feature_flag.error.message" semantic conventions. It represents a message + // providing more detail about an error that occurred during feature flag + // evaluation in human-readable form. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "Unexpected input type: string", "The user has exceeded their + // storage quota" + FeatureFlagErrorMessageKey = attribute.Key("feature_flag.error.message") + + // FeatureFlagKeyKey is the attribute Key conforming to the "feature_flag.key" + // semantic conventions. It represents the lookup key of the feature flag. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "logo-color" + FeatureFlagKeyKey = attribute.Key("feature_flag.key") + + // FeatureFlagProviderNameKey is the attribute Key conforming to the + // "feature_flag.provider.name" semantic conventions. It represents the + // identifies the feature flag provider. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "Flag Manager" + FeatureFlagProviderNameKey = attribute.Key("feature_flag.provider.name") + + // FeatureFlagResultReasonKey is the attribute Key conforming to the + // "feature_flag.result.reason" semantic conventions. It represents the reason + // code which shows how a feature flag value was determined. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "static", "targeting_match", "error", "default" + FeatureFlagResultReasonKey = attribute.Key("feature_flag.result.reason") + + // FeatureFlagResultValueKey is the attribute Key conforming to the + // "feature_flag.result.value" semantic conventions. It represents the evaluated + // value of the feature flag. + // + // Type: any + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "#ff0000", true, 3 + // Note: With some feature flag providers, feature flag results can be quite + // large or contain private or sensitive details. + // Because of this, `feature_flag.result.variant` is often the preferred + // attribute if it is available. + // + // It may be desirable to redact or otherwise limit the size and scope of + // `feature_flag.result.value` if possible. + // Because the evaluated flag value is unstructured and may be any type, it is + // left to the instrumentation author to determine how best to achieve this. + FeatureFlagResultValueKey = attribute.Key("feature_flag.result.value") + + // FeatureFlagResultVariantKey is the attribute Key conforming to the + // "feature_flag.result.variant" semantic conventions. It represents a semantic + // identifier for an evaluated flag value. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "red", "true", "on" + // Note: A semantic identifier, commonly referred to as a variant, provides a + // means + // for referring to a value without including the value itself. This can + // provide additional context for understanding the meaning behind a value. + // For example, the variant `red` maybe be used for the value `#c05543`. + FeatureFlagResultVariantKey = attribute.Key("feature_flag.result.variant") + + // FeatureFlagSetIDKey is the attribute Key conforming to the + // "feature_flag.set.id" semantic conventions. It represents the identifier of + // the [flag set] to which the feature flag belongs. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "proj-1", "ab98sgs", "service1/dev" + // + // [flag set]: https://openfeature.dev/specification/glossary/#flag-set + FeatureFlagSetIDKey = attribute.Key("feature_flag.set.id") + + // FeatureFlagVersionKey is the attribute Key conforming to the + // "feature_flag.version" semantic conventions. It represents the version of the + // ruleset used during the evaluation. This may be any stable value which + // uniquely identifies the ruleset. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "1", "01ABCDEF" + FeatureFlagVersionKey = attribute.Key("feature_flag.version") +) + +// FeatureFlagContextID returns an attribute KeyValue conforming to the +// "feature_flag.context.id" semantic conventions. It represents the unique +// identifier for the flag evaluation context. For example, the targeting key. +func FeatureFlagContextID(val string) attribute.KeyValue { + return FeatureFlagContextIDKey.String(val) +} + +// FeatureFlagErrorMessage returns an attribute KeyValue conforming to the +// "feature_flag.error.message" semantic conventions. It represents a message +// providing more detail about an error that occurred during feature flag +// evaluation in human-readable form. +func FeatureFlagErrorMessage(val string) attribute.KeyValue { + return FeatureFlagErrorMessageKey.String(val) +} + +// FeatureFlagKey returns an attribute KeyValue conforming to the +// "feature_flag.key" semantic conventions. It represents the lookup key of the +// feature flag. +func FeatureFlagKey(val string) attribute.KeyValue { + return FeatureFlagKeyKey.String(val) +} + +// FeatureFlagProviderName returns an attribute KeyValue conforming to the +// "feature_flag.provider.name" semantic conventions. It represents the +// identifies the feature flag provider. +func FeatureFlagProviderName(val string) attribute.KeyValue { + return FeatureFlagProviderNameKey.String(val) +} + +// FeatureFlagResultVariant returns an attribute KeyValue conforming to the +// "feature_flag.result.variant" semantic conventions. It represents a semantic +// identifier for an evaluated flag value. +func FeatureFlagResultVariant(val string) attribute.KeyValue { + return FeatureFlagResultVariantKey.String(val) +} + +// FeatureFlagSetID returns an attribute KeyValue conforming to the +// "feature_flag.set.id" semantic conventions. It represents the identifier of +// the [flag set] to which the feature flag belongs. +// +// [flag set]: https://openfeature.dev/specification/glossary/#flag-set +func FeatureFlagSetID(val string) attribute.KeyValue { + return FeatureFlagSetIDKey.String(val) +} + +// FeatureFlagVersion returns an attribute KeyValue conforming to the +// "feature_flag.version" semantic conventions. It represents the version of the +// ruleset used during the evaluation. This may be any stable value which +// uniquely identifies the ruleset. +func FeatureFlagVersion(val string) attribute.KeyValue { + return FeatureFlagVersionKey.String(val) +} + +// Enum values for feature_flag.result.reason +var ( + // The resolved value is static (no dynamic evaluation). + // Stability: release_candidate + FeatureFlagResultReasonStatic = FeatureFlagResultReasonKey.String("static") + // The resolved value fell back to a pre-configured value (no dynamic evaluation + // occurred or dynamic evaluation yielded no result). + // Stability: release_candidate + FeatureFlagResultReasonDefault = FeatureFlagResultReasonKey.String("default") + // The resolved value was the result of a dynamic evaluation, such as a rule or + // specific user-targeting. + // Stability: release_candidate + FeatureFlagResultReasonTargetingMatch = FeatureFlagResultReasonKey.String("targeting_match") + // The resolved value was the result of pseudorandom assignment. + // Stability: release_candidate + FeatureFlagResultReasonSplit = FeatureFlagResultReasonKey.String("split") + // The resolved value was retrieved from cache. + // Stability: release_candidate + FeatureFlagResultReasonCached = FeatureFlagResultReasonKey.String("cached") + // The resolved value was the result of the flag being disabled in the + // management system. + // Stability: release_candidate + FeatureFlagResultReasonDisabled = FeatureFlagResultReasonKey.String("disabled") + // The reason for the resolved value could not be determined. + // Stability: release_candidate + FeatureFlagResultReasonUnknown = FeatureFlagResultReasonKey.String("unknown") + // The resolved value is non-authoritative or possibly out of date + // Stability: release_candidate + FeatureFlagResultReasonStale = FeatureFlagResultReasonKey.String("stale") + // The resolved value was the result of an error. + // Stability: release_candidate + FeatureFlagResultReasonError = FeatureFlagResultReasonKey.String("error") +) + +// Namespace: file +const ( + // FileAccessedKey is the attribute Key conforming to the "file.accessed" + // semantic conventions. It represents the time when the file was last accessed, + // in ISO 8601 format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T12:00:00Z" + // Note: This attribute might not be supported by some file systems — NFS, + // FAT32, in embedded OS, etc. + FileAccessedKey = attribute.Key("file.accessed") + + // FileAttributesKey is the attribute Key conforming to the "file.attributes" + // semantic conventions. It represents the array of file attributes. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "readonly", "hidden" + // Note: Attributes names depend on the OS or file system. Here’s a + // non-exhaustive list of values expected for this attribute: `archive`, + // `compressed`, `directory`, `encrypted`, `execute`, `hidden`, `immutable`, + // `journaled`, `read`, `readonly`, `symbolic link`, `system`, `temporary`, + // `write`. + FileAttributesKey = attribute.Key("file.attributes") + + // FileChangedKey is the attribute Key conforming to the "file.changed" semantic + // conventions. It represents the time when the file attributes or metadata was + // last changed, in ISO 8601 format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T12:00:00Z" + // Note: `file.changed` captures the time when any of the file's properties or + // attributes (including the content) are changed, while `file.modified` + // captures the timestamp when the file content is modified. + FileChangedKey = attribute.Key("file.changed") + + // FileCreatedKey is the attribute Key conforming to the "file.created" semantic + // conventions. It represents the time when the file was created, in ISO 8601 + // format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T12:00:00Z" + // Note: This attribute might not be supported by some file systems — NFS, + // FAT32, in embedded OS, etc. + FileCreatedKey = attribute.Key("file.created") + + // FileDirectoryKey is the attribute Key conforming to the "file.directory" + // semantic conventions. It represents the directory where the file is located. + // It should include the drive letter, when appropriate. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/home/user", "C:\Program Files\MyApp" + FileDirectoryKey = attribute.Key("file.directory") + + // FileExtensionKey is the attribute Key conforming to the "file.extension" + // semantic conventions. It represents the file extension, excluding the leading + // dot. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "png", "gz" + // Note: When the file name has multiple extensions (example.tar.gz), only the + // last one should be captured ("gz", not "tar.gz"). + FileExtensionKey = attribute.Key("file.extension") + + // FileForkNameKey is the attribute Key conforming to the "file.fork_name" + // semantic conventions. It represents the name of the fork. A fork is + // additional data associated with a filesystem object. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Zone.Identifier" + // Note: On Linux, a resource fork is used to store additional data with a + // filesystem object. A file always has at least one fork for the data portion, + // and additional forks may exist. + // On NTFS, this is analogous to an Alternate Data Stream (ADS), and the default + // data stream for a file is just called $DATA. Zone.Identifier is commonly used + // by Windows to track contents downloaded from the Internet. An ADS is + // typically of the form: C:\path\to\filename.extension:some_fork_name, and + // some_fork_name is the value that should populate `fork_name`. + // `filename.extension` should populate `file.name`, and `extension` should + // populate `file.extension`. The full path, `file.path`, will include the fork + // name. + FileForkNameKey = attribute.Key("file.fork_name") + + // FileGroupIDKey is the attribute Key conforming to the "file.group.id" + // semantic conventions. It represents the primary Group ID (GID) of the file. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1000" + FileGroupIDKey = attribute.Key("file.group.id") + + // FileGroupNameKey is the attribute Key conforming to the "file.group.name" + // semantic conventions. It represents the primary group name of the file. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "users" + FileGroupNameKey = attribute.Key("file.group.name") + + // FileInodeKey is the attribute Key conforming to the "file.inode" semantic + // conventions. It represents the inode representing the file in the filesystem. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "256383" + FileInodeKey = attribute.Key("file.inode") + + // FileModeKey is the attribute Key conforming to the "file.mode" semantic + // conventions. It represents the mode of the file in octal representation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0640" + FileModeKey = attribute.Key("file.mode") + + // FileModifiedKey is the attribute Key conforming to the "file.modified" + // semantic conventions. It represents the time when the file content was last + // modified, in ISO 8601 format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T12:00:00Z" + FileModifiedKey = attribute.Key("file.modified") + + // FileNameKey is the attribute Key conforming to the "file.name" semantic + // conventions. It represents the name of the file including the extension, + // without the directory. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "example.png" + FileNameKey = attribute.Key("file.name") + + // FileOwnerIDKey is the attribute Key conforming to the "file.owner.id" + // semantic conventions. It represents the user ID (UID) or security identifier + // (SID) of the file owner. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1000" + FileOwnerIDKey = attribute.Key("file.owner.id") + + // FileOwnerNameKey is the attribute Key conforming to the "file.owner.name" + // semantic conventions. It represents the username of the file owner. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "root" + FileOwnerNameKey = attribute.Key("file.owner.name") + + // FilePathKey is the attribute Key conforming to the "file.path" semantic + // conventions. It represents the full path to the file, including the file + // name. It should include the drive letter, when appropriate. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/home/alice/example.png", "C:\Program Files\MyApp\myapp.exe" + FilePathKey = attribute.Key("file.path") + + // FileSizeKey is the attribute Key conforming to the "file.size" semantic + // conventions. It represents the file size in bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + FileSizeKey = attribute.Key("file.size") + + // FileSymbolicLinkTargetPathKey is the attribute Key conforming to the + // "file.symbolic_link.target_path" semantic conventions. It represents the path + // to the target of a symbolic link. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/usr/bin/python3" + // Note: This attribute is only applicable to symbolic links. + FileSymbolicLinkTargetPathKey = attribute.Key("file.symbolic_link.target_path") +) + +// FileAccessed returns an attribute KeyValue conforming to the "file.accessed" +// semantic conventions. It represents the time when the file was last accessed, +// in ISO 8601 format. +func FileAccessed(val string) attribute.KeyValue { + return FileAccessedKey.String(val) +} + +// FileAttributes returns an attribute KeyValue conforming to the +// "file.attributes" semantic conventions. It represents the array of file +// attributes. +func FileAttributes(val ...string) attribute.KeyValue { + return FileAttributesKey.StringSlice(val) +} + +// FileChanged returns an attribute KeyValue conforming to the "file.changed" +// semantic conventions. It represents the time when the file attributes or +// metadata was last changed, in ISO 8601 format. +func FileChanged(val string) attribute.KeyValue { + return FileChangedKey.String(val) +} + +// FileCreated returns an attribute KeyValue conforming to the "file.created" +// semantic conventions. It represents the time when the file was created, in ISO +// 8601 format. +func FileCreated(val string) attribute.KeyValue { + return FileCreatedKey.String(val) +} + +// FileDirectory returns an attribute KeyValue conforming to the "file.directory" +// semantic conventions. It represents the directory where the file is located. +// It should include the drive letter, when appropriate. +func FileDirectory(val string) attribute.KeyValue { + return FileDirectoryKey.String(val) +} + +// FileExtension returns an attribute KeyValue conforming to the "file.extension" +// semantic conventions. It represents the file extension, excluding the leading +// dot. +func FileExtension(val string) attribute.KeyValue { + return FileExtensionKey.String(val) +} + +// FileForkName returns an attribute KeyValue conforming to the "file.fork_name" +// semantic conventions. It represents the name of the fork. A fork is additional +// data associated with a filesystem object. +func FileForkName(val string) attribute.KeyValue { + return FileForkNameKey.String(val) +} + +// FileGroupID returns an attribute KeyValue conforming to the "file.group.id" +// semantic conventions. It represents the primary Group ID (GID) of the file. +func FileGroupID(val string) attribute.KeyValue { + return FileGroupIDKey.String(val) +} + +// FileGroupName returns an attribute KeyValue conforming to the +// "file.group.name" semantic conventions. It represents the primary group name +// of the file. +func FileGroupName(val string) attribute.KeyValue { + return FileGroupNameKey.String(val) +} + +// FileInode returns an attribute KeyValue conforming to the "file.inode" +// semantic conventions. It represents the inode representing the file in the +// filesystem. +func FileInode(val string) attribute.KeyValue { + return FileInodeKey.String(val) +} + +// FileMode returns an attribute KeyValue conforming to the "file.mode" semantic +// conventions. It represents the mode of the file in octal representation. +func FileMode(val string) attribute.KeyValue { + return FileModeKey.String(val) +} + +// FileModified returns an attribute KeyValue conforming to the "file.modified" +// semantic conventions. It represents the time when the file content was last +// modified, in ISO 8601 format. +func FileModified(val string) attribute.KeyValue { + return FileModifiedKey.String(val) +} + +// FileName returns an attribute KeyValue conforming to the "file.name" semantic +// conventions. It represents the name of the file including the extension, +// without the directory. +func FileName(val string) attribute.KeyValue { + return FileNameKey.String(val) +} + +// FileOwnerID returns an attribute KeyValue conforming to the "file.owner.id" +// semantic conventions. It represents the user ID (UID) or security identifier +// (SID) of the file owner. +func FileOwnerID(val string) attribute.KeyValue { + return FileOwnerIDKey.String(val) +} + +// FileOwnerName returns an attribute KeyValue conforming to the +// "file.owner.name" semantic conventions. It represents the username of the file +// owner. +func FileOwnerName(val string) attribute.KeyValue { + return FileOwnerNameKey.String(val) +} + +// FilePath returns an attribute KeyValue conforming to the "file.path" semantic +// conventions. It represents the full path to the file, including the file name. +// It should include the drive letter, when appropriate. +func FilePath(val string) attribute.KeyValue { + return FilePathKey.String(val) +} + +// FileSize returns an attribute KeyValue conforming to the "file.size" semantic +// conventions. It represents the file size in bytes. +func FileSize(val int) attribute.KeyValue { + return FileSizeKey.Int(val) +} + +// FileSymbolicLinkTargetPath returns an attribute KeyValue conforming to the +// "file.symbolic_link.target_path" semantic conventions. It represents the path +// to the target of a symbolic link. +func FileSymbolicLinkTargetPath(val string) attribute.KeyValue { + return FileSymbolicLinkTargetPathKey.String(val) +} + +// Namespace: gcp +const ( + // GCPAppHubApplicationContainerKey is the attribute Key conforming to the + // "gcp.apphub.application.container" semantic conventions. It represents the + // container within GCP where the AppHub application is defined. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "projects/my-container-project" + GCPAppHubApplicationContainerKey = attribute.Key("gcp.apphub.application.container") + + // GCPAppHubApplicationIDKey is the attribute Key conforming to the + // "gcp.apphub.application.id" semantic conventions. It represents the name of + // the application as configured in AppHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-application" + GCPAppHubApplicationIDKey = attribute.Key("gcp.apphub.application.id") + + // GCPAppHubApplicationLocationKey is the attribute Key conforming to the + // "gcp.apphub.application.location" semantic conventions. It represents the GCP + // zone or region where the application is defined. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "us-central1" + GCPAppHubApplicationLocationKey = attribute.Key("gcp.apphub.application.location") + + // GCPAppHubServiceCriticalityTypeKey is the attribute Key conforming to the + // "gcp.apphub.service.criticality_type" semantic conventions. It represents the + // criticality of a service indicates its importance to the business. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: [See AppHub type enum] + // + // [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type + GCPAppHubServiceCriticalityTypeKey = attribute.Key("gcp.apphub.service.criticality_type") + + // GCPAppHubServiceEnvironmentTypeKey is the attribute Key conforming to the + // "gcp.apphub.service.environment_type" semantic conventions. It represents the + // environment of a service is the stage of a software lifecycle. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: [See AppHub environment type] + // + // [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 + GCPAppHubServiceEnvironmentTypeKey = attribute.Key("gcp.apphub.service.environment_type") + + // GCPAppHubServiceIDKey is the attribute Key conforming to the + // "gcp.apphub.service.id" semantic conventions. It represents the name of the + // service as configured in AppHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-service" + GCPAppHubServiceIDKey = attribute.Key("gcp.apphub.service.id") + + // GCPAppHubWorkloadCriticalityTypeKey is the attribute Key conforming to the + // "gcp.apphub.workload.criticality_type" semantic conventions. It represents + // the criticality of a workload indicates its importance to the business. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: [See AppHub type enum] + // + // [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type + GCPAppHubWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub.workload.criticality_type") + + // GCPAppHubWorkloadEnvironmentTypeKey is the attribute Key conforming to the + // "gcp.apphub.workload.environment_type" semantic conventions. It represents + // the environment of a workload is the stage of a software lifecycle. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: [See AppHub environment type] + // + // [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 + GCPAppHubWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub.workload.environment_type") + + // GCPAppHubWorkloadIDKey is the attribute Key conforming to the + // "gcp.apphub.workload.id" semantic conventions. It represents the name of the + // workload as configured in AppHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-workload" + GCPAppHubWorkloadIDKey = attribute.Key("gcp.apphub.workload.id") + + // GCPAppHubDestinationApplicationContainerKey is the attribute Key conforming + // to the "gcp.apphub_destination.application.container" semantic conventions. + // It represents the container within GCP where the AppHub destination + // application is defined. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "projects/my-container-project" + GCPAppHubDestinationApplicationContainerKey = attribute.Key("gcp.apphub_destination.application.container") + + // GCPAppHubDestinationApplicationIDKey is the attribute Key conforming to the + // "gcp.apphub_destination.application.id" semantic conventions. It represents + // the name of the destination application as configured in AppHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-application" + GCPAppHubDestinationApplicationIDKey = attribute.Key("gcp.apphub_destination.application.id") + + // GCPAppHubDestinationApplicationLocationKey is the attribute Key conforming to + // the "gcp.apphub_destination.application.location" semantic conventions. It + // represents the GCP zone or region where the destination application is + // defined. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "us-central1" + GCPAppHubDestinationApplicationLocationKey = attribute.Key("gcp.apphub_destination.application.location") + + // GCPAppHubDestinationServiceCriticalityTypeKey is the attribute Key conforming + // to the "gcp.apphub_destination.service.criticality_type" semantic + // conventions. It represents the criticality of a destination workload + // indicates its importance to the business as specified in [AppHub type enum]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type + GCPAppHubDestinationServiceCriticalityTypeKey = attribute.Key("gcp.apphub_destination.service.criticality_type") + + // GCPAppHubDestinationServiceEnvironmentTypeKey is the attribute Key conforming + // to the "gcp.apphub_destination.service.environment_type" semantic + // conventions. It represents the software lifecycle stage of a destination + // service as defined [AppHub environment type]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 + GCPAppHubDestinationServiceEnvironmentTypeKey = attribute.Key("gcp.apphub_destination.service.environment_type") + + // GCPAppHubDestinationServiceIDKey is the attribute Key conforming to the + // "gcp.apphub_destination.service.id" semantic conventions. It represents the + // name of the destination service as configured in AppHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-service" + GCPAppHubDestinationServiceIDKey = attribute.Key("gcp.apphub_destination.service.id") + + // GCPAppHubDestinationWorkloadCriticalityTypeKey is the attribute Key + // conforming to the "gcp.apphub_destination.workload.criticality_type" semantic + // conventions. It represents the criticality of a destination workload + // indicates its importance to the business as specified in [AppHub type enum]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type + GCPAppHubDestinationWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub_destination.workload.criticality_type") + + // GCPAppHubDestinationWorkloadEnvironmentTypeKey is the attribute Key + // conforming to the "gcp.apphub_destination.workload.environment_type" semantic + // conventions. It represents the environment of a destination workload is the + // stage of a software lifecycle as provided in the [AppHub environment type]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 + GCPAppHubDestinationWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub_destination.workload.environment_type") + + // GCPAppHubDestinationWorkloadIDKey is the attribute Key conforming to the + // "gcp.apphub_destination.workload.id" semantic conventions. It represents the + // name of the destination workload as configured in AppHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-workload" + GCPAppHubDestinationWorkloadIDKey = attribute.Key("gcp.apphub_destination.workload.id") + + // GCPClientServiceKey is the attribute Key conforming to the + // "gcp.client.service" semantic conventions. It represents the identifies the + // Google Cloud service for which the official client library is intended. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "appengine", "run", "firestore", "alloydb", "spanner" + // Note: Intended to be a stable identifier for Google Cloud client libraries + // that is uniform across implementation languages. The value should be derived + // from the canonical service domain for the service; for example, + // 'foo.googleapis.com' should result in a value of 'foo'. + GCPClientServiceKey = attribute.Key("gcp.client.service") + + // GCPCloudRunJobExecutionKey is the attribute Key conforming to the + // "gcp.cloud_run.job.execution" semantic conventions. It represents the name of + // the Cloud Run [execution] being run for the Job, as set by the + // [`CLOUD_RUN_EXECUTION`] environment variable. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "job-name-xxxx", "sample-job-mdw84" + // + // [execution]: https://cloud.google.com/run/docs/managing/job-executions + // [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars + GCPCloudRunJobExecutionKey = attribute.Key("gcp.cloud_run.job.execution") + + // GCPCloudRunJobTaskIndexKey is the attribute Key conforming to the + // "gcp.cloud_run.job.task_index" semantic conventions. It represents the index + // for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`] + // environment variable. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0, 1 + // + // [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars + GCPCloudRunJobTaskIndexKey = attribute.Key("gcp.cloud_run.job.task_index") + + // GCPGCEInstanceHostnameKey is the attribute Key conforming to the + // "gcp.gce.instance.hostname" semantic conventions. It represents the hostname + // of a GCE instance. This is the full value of the default or [custom hostname] + // . + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-host1234.example.com", + // "sample-vm.us-west1-b.c.my-project.internal" + // + // [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm + GCPGCEInstanceHostnameKey = attribute.Key("gcp.gce.instance.hostname") + + // GCPGCEInstanceNameKey is the attribute Key conforming to the + // "gcp.gce.instance.name" semantic conventions. It represents the instance name + // of a GCE instance. This is the value provided by `host.name`, the visible + // name of the instance in the Cloud Console UI, and the prefix for the default + // hostname of the instance as defined by the [default internal DNS name]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "instance-1", "my-vm-name" + // + // [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names + GCPGCEInstanceNameKey = attribute.Key("gcp.gce.instance.name") + + // GCPGCEInstanceGroupManagerNameKey is the attribute Key conforming to the + // "gcp.gce.instance_group_manager.name" semantic conventions. It represents the + // name of the Instance Group Manager (IGM) that manages this VM, if any. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "web-igm", "my-managed-group" + GCPGCEInstanceGroupManagerNameKey = attribute.Key("gcp.gce.instance_group_manager.name") + + // GCPGCEInstanceGroupManagerRegionKey is the attribute Key conforming to the + // "gcp.gce.instance_group_manager.region" semantic conventions. It represents + // the region of a **regional** Instance Group Manager (e.g., `us-central1`). + // Set this **only** when the IGM is regional. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "us-central1", "europe-west1" + GCPGCEInstanceGroupManagerRegionKey = attribute.Key("gcp.gce.instance_group_manager.region") + + // GCPGCEInstanceGroupManagerZoneKey is the attribute Key conforming to the + // "gcp.gce.instance_group_manager.zone" semantic conventions. It represents the + // zone of a **zonal** Instance Group Manager (e.g., `us-central1-a`). Set this + // **only** when the IGM is zonal. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "us-central1-a", "europe-west1-b" + GCPGCEInstanceGroupManagerZoneKey = attribute.Key("gcp.gce.instance_group_manager.zone") +) + +// GCPAppHubApplicationContainer returns an attribute KeyValue conforming to the +// "gcp.apphub.application.container" semantic conventions. It represents the +// container within GCP where the AppHub application is defined. +func GCPAppHubApplicationContainer(val string) attribute.KeyValue { + return GCPAppHubApplicationContainerKey.String(val) +} + +// GCPAppHubApplicationID returns an attribute KeyValue conforming to the +// "gcp.apphub.application.id" semantic conventions. It represents the name of +// the application as configured in AppHub. +func GCPAppHubApplicationID(val string) attribute.KeyValue { + return GCPAppHubApplicationIDKey.String(val) +} + +// GCPAppHubApplicationLocation returns an attribute KeyValue conforming to the +// "gcp.apphub.application.location" semantic conventions. It represents the GCP +// zone or region where the application is defined. +func GCPAppHubApplicationLocation(val string) attribute.KeyValue { + return GCPAppHubApplicationLocationKey.String(val) +} + +// GCPAppHubServiceID returns an attribute KeyValue conforming to the +// "gcp.apphub.service.id" semantic conventions. It represents the name of the +// service as configured in AppHub. +func GCPAppHubServiceID(val string) attribute.KeyValue { + return GCPAppHubServiceIDKey.String(val) +} + +// GCPAppHubWorkloadID returns an attribute KeyValue conforming to the +// "gcp.apphub.workload.id" semantic conventions. It represents the name of the +// workload as configured in AppHub. +func GCPAppHubWorkloadID(val string) attribute.KeyValue { + return GCPAppHubWorkloadIDKey.String(val) +} + +// GCPAppHubDestinationApplicationContainer returns an attribute KeyValue +// conforming to the "gcp.apphub_destination.application.container" semantic +// conventions. It represents the container within GCP where the AppHub +// destination application is defined. +func GCPAppHubDestinationApplicationContainer(val string) attribute.KeyValue { + return GCPAppHubDestinationApplicationContainerKey.String(val) +} + +// GCPAppHubDestinationApplicationID returns an attribute KeyValue conforming to +// the "gcp.apphub_destination.application.id" semantic conventions. It +// represents the name of the destination application as configured in AppHub. +func GCPAppHubDestinationApplicationID(val string) attribute.KeyValue { + return GCPAppHubDestinationApplicationIDKey.String(val) +} + +// GCPAppHubDestinationApplicationLocation returns an attribute KeyValue +// conforming to the "gcp.apphub_destination.application.location" semantic +// conventions. It represents the GCP zone or region where the destination +// application is defined. +func GCPAppHubDestinationApplicationLocation(val string) attribute.KeyValue { + return GCPAppHubDestinationApplicationLocationKey.String(val) +} + +// GCPAppHubDestinationServiceID returns an attribute KeyValue conforming to the +// "gcp.apphub_destination.service.id" semantic conventions. It represents the +// name of the destination service as configured in AppHub. +func GCPAppHubDestinationServiceID(val string) attribute.KeyValue { + return GCPAppHubDestinationServiceIDKey.String(val) +} + +// GCPAppHubDestinationWorkloadID returns an attribute KeyValue conforming to the +// "gcp.apphub_destination.workload.id" semantic conventions. It represents the +// name of the destination workload as configured in AppHub. +func GCPAppHubDestinationWorkloadID(val string) attribute.KeyValue { + return GCPAppHubDestinationWorkloadIDKey.String(val) +} + +// GCPClientService returns an attribute KeyValue conforming to the +// "gcp.client.service" semantic conventions. It represents the identifies the +// Google Cloud service for which the official client library is intended. +func GCPClientService(val string) attribute.KeyValue { + return GCPClientServiceKey.String(val) +} + +// GCPCloudRunJobExecution returns an attribute KeyValue conforming to the +// "gcp.cloud_run.job.execution" semantic conventions. It represents the name of +// the Cloud Run [execution] being run for the Job, as set by the +// [`CLOUD_RUN_EXECUTION`] environment variable. +// +// [execution]: https://cloud.google.com/run/docs/managing/job-executions +// [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars +func GCPCloudRunJobExecution(val string) attribute.KeyValue { + return GCPCloudRunJobExecutionKey.String(val) +} + +// GCPCloudRunJobTaskIndex returns an attribute KeyValue conforming to the +// "gcp.cloud_run.job.task_index" semantic conventions. It represents the index +// for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`] +// environment variable. +// +// [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars +func GCPCloudRunJobTaskIndex(val int) attribute.KeyValue { + return GCPCloudRunJobTaskIndexKey.Int(val) +} + +// GCPGCEInstanceHostname returns an attribute KeyValue conforming to the +// "gcp.gce.instance.hostname" semantic conventions. It represents the hostname +// of a GCE instance. This is the full value of the default or [custom hostname] +// . +// +// [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm +func GCPGCEInstanceHostname(val string) attribute.KeyValue { + return GCPGCEInstanceHostnameKey.String(val) +} + +// GCPGCEInstanceName returns an attribute KeyValue conforming to the +// "gcp.gce.instance.name" semantic conventions. It represents the instance name +// of a GCE instance. This is the value provided by `host.name`, the visible name +// of the instance in the Cloud Console UI, and the prefix for the default +// hostname of the instance as defined by the [default internal DNS name]. +// +// [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names +func GCPGCEInstanceName(val string) attribute.KeyValue { + return GCPGCEInstanceNameKey.String(val) +} + +// GCPGCEInstanceGroupManagerName returns an attribute KeyValue conforming to the +// "gcp.gce.instance_group_manager.name" semantic conventions. It represents the +// name of the Instance Group Manager (IGM) that manages this VM, if any. +func GCPGCEInstanceGroupManagerName(val string) attribute.KeyValue { + return GCPGCEInstanceGroupManagerNameKey.String(val) +} + +// GCPGCEInstanceGroupManagerRegion returns an attribute KeyValue conforming to +// the "gcp.gce.instance_group_manager.region" semantic conventions. It +// represents the region of a **regional** Instance Group Manager (e.g., +// `us-central1`). Set this **only** when the IGM is regional. +func GCPGCEInstanceGroupManagerRegion(val string) attribute.KeyValue { + return GCPGCEInstanceGroupManagerRegionKey.String(val) +} + +// GCPGCEInstanceGroupManagerZone returns an attribute KeyValue conforming to the +// "gcp.gce.instance_group_manager.zone" semantic conventions. It represents the +// zone of a **zonal** Instance Group Manager (e.g., `us-central1-a`). Set this +// **only** when the IGM is zonal. +func GCPGCEInstanceGroupManagerZone(val string) attribute.KeyValue { + return GCPGCEInstanceGroupManagerZoneKey.String(val) +} + +// Enum values for gcp.apphub.service.criticality_type +var ( + // Mission critical service. + // Stability: development + GCPAppHubServiceCriticalityTypeMissionCritical = GCPAppHubServiceCriticalityTypeKey.String("MISSION_CRITICAL") + // High impact. + // Stability: development + GCPAppHubServiceCriticalityTypeHigh = GCPAppHubServiceCriticalityTypeKey.String("HIGH") + // Medium impact. + // Stability: development + GCPAppHubServiceCriticalityTypeMedium = GCPAppHubServiceCriticalityTypeKey.String("MEDIUM") + // Low impact. + // Stability: development + GCPAppHubServiceCriticalityTypeLow = GCPAppHubServiceCriticalityTypeKey.String("LOW") +) + +// Enum values for gcp.apphub.service.environment_type +var ( + // Production environment. + // Stability: development + GCPAppHubServiceEnvironmentTypeProduction = GCPAppHubServiceEnvironmentTypeKey.String("PRODUCTION") + // Staging environment. + // Stability: development + GCPAppHubServiceEnvironmentTypeStaging = GCPAppHubServiceEnvironmentTypeKey.String("STAGING") + // Test environment. + // Stability: development + GCPAppHubServiceEnvironmentTypeTest = GCPAppHubServiceEnvironmentTypeKey.String("TEST") + // Development environment. + // Stability: development + GCPAppHubServiceEnvironmentTypeDevelopment = GCPAppHubServiceEnvironmentTypeKey.String("DEVELOPMENT") +) + +// Enum values for gcp.apphub.workload.criticality_type +var ( + // Mission critical service. + // Stability: development + GCPAppHubWorkloadCriticalityTypeMissionCritical = GCPAppHubWorkloadCriticalityTypeKey.String("MISSION_CRITICAL") + // High impact. + // Stability: development + GCPAppHubWorkloadCriticalityTypeHigh = GCPAppHubWorkloadCriticalityTypeKey.String("HIGH") + // Medium impact. + // Stability: development + GCPAppHubWorkloadCriticalityTypeMedium = GCPAppHubWorkloadCriticalityTypeKey.String("MEDIUM") + // Low impact. + // Stability: development + GCPAppHubWorkloadCriticalityTypeLow = GCPAppHubWorkloadCriticalityTypeKey.String("LOW") +) + +// Enum values for gcp.apphub.workload.environment_type +var ( + // Production environment. + // Stability: development + GCPAppHubWorkloadEnvironmentTypeProduction = GCPAppHubWorkloadEnvironmentTypeKey.String("PRODUCTION") + // Staging environment. + // Stability: development + GCPAppHubWorkloadEnvironmentTypeStaging = GCPAppHubWorkloadEnvironmentTypeKey.String("STAGING") + // Test environment. + // Stability: development + GCPAppHubWorkloadEnvironmentTypeTest = GCPAppHubWorkloadEnvironmentTypeKey.String("TEST") + // Development environment. + // Stability: development + GCPAppHubWorkloadEnvironmentTypeDevelopment = GCPAppHubWorkloadEnvironmentTypeKey.String("DEVELOPMENT") +) + +// Enum values for gcp.apphub_destination.service.criticality_type +var ( + // Mission critical service. + // Stability: development + GCPAppHubDestinationServiceCriticalityTypeMissionCritical = GCPAppHubDestinationServiceCriticalityTypeKey.String("MISSION_CRITICAL") + // High impact. + // Stability: development + GCPAppHubDestinationServiceCriticalityTypeHigh = GCPAppHubDestinationServiceCriticalityTypeKey.String("HIGH") + // Medium impact. + // Stability: development + GCPAppHubDestinationServiceCriticalityTypeMedium = GCPAppHubDestinationServiceCriticalityTypeKey.String("MEDIUM") + // Low impact. + // Stability: development + GCPAppHubDestinationServiceCriticalityTypeLow = GCPAppHubDestinationServiceCriticalityTypeKey.String("LOW") +) + +// Enum values for gcp.apphub_destination.service.environment_type +var ( + // Production environment. + // Stability: development + GCPAppHubDestinationServiceEnvironmentTypeProduction = GCPAppHubDestinationServiceEnvironmentTypeKey.String("PRODUCTION") + // Staging environment. + // Stability: development + GCPAppHubDestinationServiceEnvironmentTypeStaging = GCPAppHubDestinationServiceEnvironmentTypeKey.String("STAGING") + // Test environment. + // Stability: development + GCPAppHubDestinationServiceEnvironmentTypeTest = GCPAppHubDestinationServiceEnvironmentTypeKey.String("TEST") + // Development environment. + // Stability: development + GCPAppHubDestinationServiceEnvironmentTypeDevelopment = GCPAppHubDestinationServiceEnvironmentTypeKey.String("DEVELOPMENT") +) + +// Enum values for gcp.apphub_destination.workload.criticality_type +var ( + // Mission critical service. + // Stability: development + GCPAppHubDestinationWorkloadCriticalityTypeMissionCritical = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("MISSION_CRITICAL") + // High impact. + // Stability: development + GCPAppHubDestinationWorkloadCriticalityTypeHigh = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("HIGH") + // Medium impact. + // Stability: development + GCPAppHubDestinationWorkloadCriticalityTypeMedium = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("MEDIUM") + // Low impact. + // Stability: development + GCPAppHubDestinationWorkloadCriticalityTypeLow = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("LOW") +) + +// Enum values for gcp.apphub_destination.workload.environment_type +var ( + // Production environment. + // Stability: development + GCPAppHubDestinationWorkloadEnvironmentTypeProduction = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("PRODUCTION") + // Staging environment. + // Stability: development + GCPAppHubDestinationWorkloadEnvironmentTypeStaging = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("STAGING") + // Test environment. + // Stability: development + GCPAppHubDestinationWorkloadEnvironmentTypeTest = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("TEST") + // Development environment. + // Stability: development + GCPAppHubDestinationWorkloadEnvironmentTypeDevelopment = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("DEVELOPMENT") +) + +// Namespace: gen_ai +const ( + // GenAIAgentDescriptionKey is the attribute Key conforming to the + // "gen_ai.agent.description" semantic conventions. It represents the free-form + // description of the GenAI agent provided by the application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Helps with math problems", "Generates fiction stories" + GenAIAgentDescriptionKey = attribute.Key("gen_ai.agent.description") + + // GenAIAgentIDKey is the attribute Key conforming to the "gen_ai.agent.id" + // semantic conventions. It represents the unique identifier of the GenAI agent. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "asst_5j66UpCpwteGg4YSxUnt7lPY" + GenAIAgentIDKey = attribute.Key("gen_ai.agent.id") + + // GenAIAgentNameKey is the attribute Key conforming to the "gen_ai.agent.name" + // semantic conventions. It represents the human-readable name of the GenAI + // agent provided by the application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Math Tutor", "Fiction Writer" + GenAIAgentNameKey = attribute.Key("gen_ai.agent.name") + + // GenAIAgentVersionKey is the attribute Key conforming to the + // "gen_ai.agent.version" semantic conventions. It represents the version of the + // GenAI agent. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1.0.0", "2025-05-01" + GenAIAgentVersionKey = attribute.Key("gen_ai.agent.version") + + // GenAIConversationIDKey is the attribute Key conforming to the + // "gen_ai.conversation.id" semantic conventions. It represents the unique + // identifier for a conversation (session, thread), used to store and correlate + // messages within this conversation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "conv_5j66UpCpwteGg4YSxUnt7lPY" + GenAIConversationIDKey = attribute.Key("gen_ai.conversation.id") + + // GenAIDataSourceIDKey is the attribute Key conforming to the + // "gen_ai.data_source.id" semantic conventions. It represents the data source + // identifier. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "H7STPQYOND" + // Note: Data sources are used by AI agents and RAG applications to store + // grounding data. A data source may be an external database, object store, + // document collection, website, or any other storage system used by the GenAI + // agent or application. The `gen_ai.data_source.id` SHOULD match the identifier + // used by the GenAI system rather than a name specific to the external storage, + // such as a database or object store. Semantic conventions referencing + // `gen_ai.data_source.id` MAY also leverage additional attributes, such as + // `db.*`, to further identify and describe the data source. + GenAIDataSourceIDKey = attribute.Key("gen_ai.data_source.id") + + // GenAIEmbeddingsDimensionCountKey is the attribute Key conforming to the + // "gen_ai.embeddings.dimension.count" semantic conventions. It represents the + // number of dimensions the resulting output embeddings should have. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 512, 1024 + GenAIEmbeddingsDimensionCountKey = attribute.Key("gen_ai.embeddings.dimension.count") + + // GenAIEvaluationExplanationKey is the attribute Key conforming to the + // "gen_ai.evaluation.explanation" semantic conventions. It represents a + // free-form explanation for the assigned score provided by the evaluator. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "The response is factually accurate but lacks sufficient detail to + // fully address the question." + GenAIEvaluationExplanationKey = attribute.Key("gen_ai.evaluation.explanation") + + // GenAIEvaluationNameKey is the attribute Key conforming to the + // "gen_ai.evaluation.name" semantic conventions. It represents the name of the + // evaluation metric used for the GenAI response. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Relevance", "IntentResolution" + GenAIEvaluationNameKey = attribute.Key("gen_ai.evaluation.name") + + // GenAIEvaluationScoreLabelKey is the attribute Key conforming to the + // "gen_ai.evaluation.score.label" semantic conventions. It represents the human + // readable label for evaluation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "relevant", "not_relevant", "correct", "incorrect", "pass", "fail" + // Note: This attribute provides a human-readable interpretation of the + // evaluation score produced by an evaluator. For example, a score value of 1 + // could mean "relevant" in one evaluation system and "not relevant" in another, + // depending on the scoring range and evaluator. The label SHOULD have low + // cardinality. Possible values depend on the evaluation metric and evaluator + // used; implementations SHOULD document the possible values. + GenAIEvaluationScoreLabelKey = attribute.Key("gen_ai.evaluation.score.label") + + // GenAIEvaluationScoreValueKey is the attribute Key conforming to the + // "gen_ai.evaluation.score.value" semantic conventions. It represents the + // evaluation score returned by the evaluator. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 4.0 + GenAIEvaluationScoreValueKey = attribute.Key("gen_ai.evaluation.score.value") + + // GenAIInputMessagesKey is the attribute Key conforming to the + // "gen_ai.input.messages" semantic conventions. It represents the chat history + // provided to the model as an input. + // + // Type: any + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "[\n {\n "role": "user",\n "parts": [\n {\n "type": "text",\n + // "content": "Weather in Paris?"\n }\n ]\n },\n {\n "role": "assistant",\n + // "parts": [\n {\n "type": "tool_call",\n "id": + // "call_VSPygqKTWdrhaFErNvMV18Yl",\n "name": "get_weather",\n "arguments": {\n + // "location": "Paris"\n }\n }\n ]\n },\n {\n "role": "tool",\n "parts": [\n {\n + // "type": "tool_call_response",\n "id": " call_VSPygqKTWdrhaFErNvMV18Yl",\n + // "result": "rainy, 57°F"\n }\n ]\n }\n]\n" + // Note: Instrumentations MUST follow [Input messages JSON schema]. + // When the attribute is recorded on events, it MUST be recorded in structured + // form. When recorded on spans, it MAY be recorded as a JSON string if + // structured + // format is not supported and SHOULD be recorded in structured form otherwise. + // + // Messages MUST be provided in the order they were sent to the model. + // Instrumentations MAY provide a way for users to filter or truncate + // input messages. + // + // > [!Warning] + // > This attribute is likely to contain sensitive information including + // > user/PII data. + // + // See [Recording content on attributes] + // section for more details. + // + // [Input messages JSON schema]: /docs/gen-ai/gen-ai-input-messages.json + // [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes + GenAIInputMessagesKey = attribute.Key("gen_ai.input.messages") + + // GenAIOperationNameKey is the attribute Key conforming to the + // "gen_ai.operation.name" semantic conventions. It represents the name of the + // operation being performed. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: If one of the predefined values applies, but specific system uses a + // different name it's RECOMMENDED to document it in the semantic conventions + // for specific GenAI system and use system-specific name in the + // instrumentation. If a different name is not documented, instrumentation + // libraries SHOULD use applicable predefined value. + GenAIOperationNameKey = attribute.Key("gen_ai.operation.name") + + // GenAIOutputMessagesKey is the attribute Key conforming to the + // "gen_ai.output.messages" semantic conventions. It represents the messages + // returned by the model where each message represents a specific model response + // (choice, candidate). + // + // Type: any + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "[\n {\n "role": "assistant",\n "parts": [\n {\n "type": "text",\n + // "content": "The weather in Paris is currently rainy with a temperature of + // 57°F."\n }\n ],\n "finish_reason": "stop"\n }\n]\n" + // Note: Instrumentations MUST follow [Output messages JSON schema] + // + // Each message represents a single output choice/candidate generated by + // the model. Each message corresponds to exactly one generation + // (choice/candidate) and vice versa - one choice cannot be split across + // multiple messages or one message cannot contain parts from multiple choices. + // + // When the attribute is recorded on events, it MUST be recorded in structured + // form. When recorded on spans, it MAY be recorded as a JSON string if + // structured + // format is not supported and SHOULD be recorded in structured form otherwise. + // + // Instrumentations MAY provide a way for users to filter or truncate + // output messages. + // + // > [!Warning] + // > This attribute is likely to contain sensitive information including + // > user/PII data. + // + // See [Recording content on attributes] + // section for more details. + // + // [Output messages JSON schema]: /docs/gen-ai/gen-ai-output-messages.json + // [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes + GenAIOutputMessagesKey = attribute.Key("gen_ai.output.messages") + + // GenAIOutputTypeKey is the attribute Key conforming to the + // "gen_ai.output.type" semantic conventions. It represents the represents the + // content type requested by the client. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: This attribute SHOULD be used when the client requests output of a + // specific type. The model may return zero or more outputs of this type. + // This attribute specifies the output modality and not the actual output + // format. For example, if an image is requested, the actual output could be a + // URL pointing to an image file. + // Additional output format details may be recorded in the future in the + // `gen_ai.output.{type}.*` attributes. + GenAIOutputTypeKey = attribute.Key("gen_ai.output.type") + + // GenAIPromptNameKey is the attribute Key conforming to the + // "gen_ai.prompt.name" semantic conventions. It represents the name of the + // prompt that uniquely identifies it. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "analyze-code" + GenAIPromptNameKey = attribute.Key("gen_ai.prompt.name") + + // GenAIProviderNameKey is the attribute Key conforming to the + // "gen_ai.provider.name" semantic conventions. It represents the Generative AI + // provider as identified by the client or server instrumentation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: The attribute SHOULD be set based on the instrumentation's best + // knowledge and may differ from the actual model provider. + // + // Multiple providers, including Azure OpenAI, Gemini, and AI hosting platforms + // are accessible using the OpenAI REST API and corresponding client libraries, + // but may proxy or host models from different providers. + // + // The `gen_ai.request.model`, `gen_ai.response.model`, and `server.address` + // attributes may help identify the actual system in use. + // + // The `gen_ai.provider.name` attribute acts as a discriminator that + // identifies the GenAI telemetry format flavor specific to that provider + // within GenAI semantic conventions. + // It SHOULD be set consistently with provider-specific attributes and signals. + // For example, GenAI spans, metrics, and events related to AWS Bedrock + // should have the `gen_ai.provider.name` set to `aws.bedrock` and include + // applicable `aws.bedrock.*` attributes and are not expected to include + // `openai.*` attributes. + GenAIProviderNameKey = attribute.Key("gen_ai.provider.name") + + // GenAIRequestChoiceCountKey is the attribute Key conforming to the + // "gen_ai.request.choice.count" semantic conventions. It represents the target + // number of candidate completions to return. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 3 + GenAIRequestChoiceCountKey = attribute.Key("gen_ai.request.choice.count") + + // GenAIRequestEncodingFormatsKey is the attribute Key conforming to the + // "gen_ai.request.encoding_formats" semantic conventions. It represents the + // encoding formats requested in an embeddings operation, if specified. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "base64"], ["float", "binary" + // Note: In some GenAI systems the encoding formats are called embedding types. + // Also, some GenAI systems only accept a single format per request. + GenAIRequestEncodingFormatsKey = attribute.Key("gen_ai.request.encoding_formats") + + // GenAIRequestFrequencyPenaltyKey is the attribute Key conforming to the + // "gen_ai.request.frequency_penalty" semantic conventions. It represents the + // frequency penalty setting for the GenAI request. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0.1 + GenAIRequestFrequencyPenaltyKey = attribute.Key("gen_ai.request.frequency_penalty") + + // GenAIRequestMaxTokensKey is the attribute Key conforming to the + // "gen_ai.request.max_tokens" semantic conventions. It represents the maximum + // number of tokens the model generates for a request. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 100 + GenAIRequestMaxTokensKey = attribute.Key("gen_ai.request.max_tokens") + + // GenAIRequestModelKey is the attribute Key conforming to the + // "gen_ai.request.model" semantic conventions. It represents the name of the + // GenAI model a request is being made to. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: gpt-4 + GenAIRequestModelKey = attribute.Key("gen_ai.request.model") + + // GenAIRequestPresencePenaltyKey is the attribute Key conforming to the + // "gen_ai.request.presence_penalty" semantic conventions. It represents the + // presence penalty setting for the GenAI request. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0.1 + GenAIRequestPresencePenaltyKey = attribute.Key("gen_ai.request.presence_penalty") + + // GenAIRequestSeedKey is the attribute Key conforming to the + // "gen_ai.request.seed" semantic conventions. It represents the requests with + // same seed value more likely to return same result. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 100 + GenAIRequestSeedKey = attribute.Key("gen_ai.request.seed") + + // GenAIRequestStopSequencesKey is the attribute Key conforming to the + // "gen_ai.request.stop_sequences" semantic conventions. It represents the list + // of sequences that the model will use to stop generating further tokens. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "forest", "lived" + GenAIRequestStopSequencesKey = attribute.Key("gen_ai.request.stop_sequences") + + // GenAIRequestStreamKey is the attribute Key conforming to the + // "gen_ai.request.stream" semantic conventions. It represents the indicates + // whether the GenAI request was made in streaming mode. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + GenAIRequestStreamKey = attribute.Key("gen_ai.request.stream") + + // GenAIRequestTemperatureKey is the attribute Key conforming to the + // "gen_ai.request.temperature" semantic conventions. It represents the + // temperature setting for the GenAI request. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0.0 + GenAIRequestTemperatureKey = attribute.Key("gen_ai.request.temperature") + + // GenAIRequestTopKKey is the attribute Key conforming to the + // "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling + // setting for the GenAI request. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0 + GenAIRequestTopKKey = attribute.Key("gen_ai.request.top_k") + + // GenAIRequestTopPKey is the attribute Key conforming to the + // "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling + // setting for the GenAI request. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0 + GenAIRequestTopPKey = attribute.Key("gen_ai.request.top_p") + + // GenAIResponseFinishReasonsKey is the attribute Key conforming to the + // "gen_ai.response.finish_reasons" semantic conventions. It represents the + // array of reasons the model stopped generating tokens, corresponding to each + // generation received. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "stop"], ["stop", "length" + GenAIResponseFinishReasonsKey = attribute.Key("gen_ai.response.finish_reasons") + + // GenAIResponseIDKey is the attribute Key conforming to the + // "gen_ai.response.id" semantic conventions. It represents the unique + // identifier for the completion. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "chatcmpl-123" + GenAIResponseIDKey = attribute.Key("gen_ai.response.id") + + // GenAIResponseModelKey is the attribute Key conforming to the + // "gen_ai.response.model" semantic conventions. It represents the name of the + // model that generated the response. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "gpt-4-0613" + GenAIResponseModelKey = attribute.Key("gen_ai.response.model") + + // GenAIResponseTimeToFirstChunkKey is the attribute Key conforming to the + // "gen_ai.response.time_to_first_chunk" semantic conventions. It represents the + // time to first chunk in a streaming response, measured from request issuance, + // in seconds. The value is measured from when the client issues the generation + // request to when the first chunk is received in the response stream. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0.5, 1.2 + GenAIResponseTimeToFirstChunkKey = attribute.Key("gen_ai.response.time_to_first_chunk") + + // GenAIRetrievalDocumentsKey is the attribute Key conforming to the + // "gen_ai.retrieval.documents" semantic conventions. It represents the + // documents retrieved. + // + // Type: any + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "[\n {\n "id": "doc_123",\n "score": 0.95\n },\n {\n "id": + // "doc_456",\n "score": 0.87\n },\n {\n "id": "doc_789",\n "score": 0.82\n + // }\n]\n" + // Note: Instrumentations MUST follow [Retrieval documents JSON schema]. + // When the attribute is recorded on events, it MUST be recorded in structured + // form. When recorded on spans, it MAY be recorded as a JSON string if + // structured + // format is not supported and SHOULD be recorded in structured form otherwise. + // + // Each document object SHOULD contain at least the following properties: + // `id` (string): A unique identifier for the document, `score` (double): The + // relevance score of the document + // + // [Retrieval documents JSON schema]: /docs/gen-ai/gen-ai-retrieval-documents.json + GenAIRetrievalDocumentsKey = attribute.Key("gen_ai.retrieval.documents") + + // GenAIRetrievalQueryTextKey is the attribute Key conforming to the + // "gen_ai.retrieval.query.text" semantic conventions. It represents the query + // text used for retrieval. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "What is the capital of France?", "weather in Paris" + // Note: > [!Warning] + // + // > This attribute may contain sensitive information. + GenAIRetrievalQueryTextKey = attribute.Key("gen_ai.retrieval.query.text") + + // GenAISystemInstructionsKey is the attribute Key conforming to the + // "gen_ai.system_instructions" semantic conventions. It represents the system + // message or instructions provided to the GenAI model separately from the chat + // history. + // + // Type: any + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "[\n {\n "type": "text",\n "content": "You are an Agent that greet + // users, always use greetings tool to respond"\n }\n]\n", "[\n {\n "type": + // "text",\n "content": "You are a language translator."\n },\n {\n "type": + // "text",\n "content": "Your mission is to translate text in English to + // French."\n }\n]\n" + // Note: This attribute SHOULD be used when the corresponding provider or API + // allows to provide system instructions or messages separately from the + // chat history. + // + // Instructions that are part of the chat history SHOULD be recorded in + // `gen_ai.input.messages` attribute instead. + // + // Instrumentations MUST follow [System instructions JSON schema]. + // + // When recorded on spans, it MAY be recorded as a JSON string if structured + // format is not supported and SHOULD be recorded in structured form otherwise. + // + // Instrumentations MAY provide a way for users to filter or truncate + // system instructions. + // + // > [!Warning] + // > This attribute may contain sensitive information. + // + // See [Recording content on attributes] + // section for more details. + // + // [System instructions JSON schema]: /docs/gen-ai/gen-ai-system-instructions.json + // [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes + GenAISystemInstructionsKey = attribute.Key("gen_ai.system_instructions") + + // GenAITokenTypeKey is the attribute Key conforming to the "gen_ai.token.type" + // semantic conventions. It represents the type of token being counted. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "input", "output" + GenAITokenTypeKey = attribute.Key("gen_ai.token.type") + + // GenAIToolCallArgumentsKey is the attribute Key conforming to the + // "gen_ai.tool.call.arguments" semantic conventions. It represents the + // parameters passed to the tool call. + // + // Type: any + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{\n "location": "San Francisco?",\n "date": "2025-10-01"\n}\n" + // Note: > [!WARNING] + // + // > This attribute may contain sensitive information. + // + // It's expected to be an object - in case a serialized string is available + // to the instrumentation, the instrumentation SHOULD do the best effort to + // deserialize it to an object. When recorded on spans, it MAY be recorded as a + // JSON string if structured format is not supported and SHOULD be recorded in + // structured form otherwise. + GenAIToolCallArgumentsKey = attribute.Key("gen_ai.tool.call.arguments") + + // GenAIToolCallIDKey is the attribute Key conforming to the + // "gen_ai.tool.call.id" semantic conventions. It represents the tool call + // identifier. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "call_mszuSIzqtI65i1wAUOE8w5H4" + GenAIToolCallIDKey = attribute.Key("gen_ai.tool.call.id") + + // GenAIToolCallResultKey is the attribute Key conforming to the + // "gen_ai.tool.call.result" semantic conventions. It represents the result + // returned by the tool call (if any and if execution was successful). + // + // Type: any + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{\n "temperature_range": {\n "high": 75,\n "low": 60\n },\n + // "conditions": "sunny"\n}\n" + // Note: > [!WARNING] + // + // > This attribute may contain sensitive information. + // + // It's expected to be an object - in case a serialized string is available + // to the instrumentation, the instrumentation SHOULD do the best effort to + // deserialize it to an object. When recorded on spans, it MAY be recorded as a + // JSON string if structured format is not supported and SHOULD be recorded in + // structured form otherwise. + GenAIToolCallResultKey = attribute.Key("gen_ai.tool.call.result") + + // GenAIToolDefinitionsKey is the attribute Key conforming to the + // "gen_ai.tool.definitions" semantic conventions. It represents the list of + // tool definitions available to the GenAI agent or model. + // + // Type: any + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "[\n {\n "type": "function",\n "name": "get_current_weather",\n + // "description": "Get the current weather in a given location",\n "parameters": + // {\n "type": "object",\n "properties": {\n "location": {\n "type": "string",\n + // "description": "The city and state, e.g. San Francisco, CA"\n },\n "unit": + // {\n "type": "string",\n "enum": [\n "celsius",\n "fahrenheit"\n ]\n }\n },\n + // "required": [\n "location",\n "unit"\n ]\n }\n }\n]\n" + // Note: Instrumentations MUST follow [Tool Definitions JSON Schema]. + // + // When the attribute is recorded on events, it MUST be recorded in structured + // form. When recorded on spans, it MAY be recorded as a JSON string if + // structured + // format is not supported and SHOULD be recorded in structured form otherwise. + // + // Since this attribute could be large, it's NOT RECOMMENDED to populate + // non-required properties by default. Instrumentations MAY provide a way + // to enable populating optional properties. + // + // [Tool Definitions JSON Schema]: /docs/gen-ai/gen-ai-tool-definitions.json + GenAIToolDefinitionsKey = attribute.Key("gen_ai.tool.definitions") + + // GenAIToolDescriptionKey is the attribute Key conforming to the + // "gen_ai.tool.description" semantic conventions. It represents the tool + // description. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Multiply two numbers" + GenAIToolDescriptionKey = attribute.Key("gen_ai.tool.description") + + // GenAIToolNameKey is the attribute Key conforming to the "gen_ai.tool.name" + // semantic conventions. It represents the name of the tool utilized by the + // agent. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Flights" + GenAIToolNameKey = attribute.Key("gen_ai.tool.name") + + // GenAIToolTypeKey is the attribute Key conforming to the "gen_ai.tool.type" + // semantic conventions. It represents the type of the tool utilized by the + // agent. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "function", "extension", "datastore" + // Note: Extension: A tool executed on the agent-side to directly call external + // APIs, bridging the gap between the agent and real-world systems. + // Agent-side operations involve actions that are performed by the agent on the + // server or within the agent's controlled environment. + // Function: A tool executed on the client-side, where the agent generates + // parameters for a predefined function, and the client executes the logic. + // Client-side operations are actions taken on the user's end or within the + // client application. + // Datastore: A tool used by the agent to access and query structured or + // unstructured external data for retrieval-augmented tasks or knowledge + // updates. + GenAIToolTypeKey = attribute.Key("gen_ai.tool.type") + + // GenAIUsageCacheCreationInputTokensKey is the attribute Key conforming to the + // "gen_ai.usage.cache_creation.input_tokens" semantic conventions. It + // represents the number of input tokens written to a provider-managed cache. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 25 + // Note: The value SHOULD be included in `gen_ai.usage.input_tokens`. + GenAIUsageCacheCreationInputTokensKey = attribute.Key("gen_ai.usage.cache_creation.input_tokens") + + // GenAIUsageCacheReadInputTokensKey is the attribute Key conforming to the + // "gen_ai.usage.cache_read.input_tokens" semantic conventions. It represents + // the number of input tokens served from a provider-managed cache. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 50 + // Note: The value SHOULD be included in `gen_ai.usage.input_tokens`. + GenAIUsageCacheReadInputTokensKey = attribute.Key("gen_ai.usage.cache_read.input_tokens") + + // GenAIUsageInputTokensKey is the attribute Key conforming to the + // "gen_ai.usage.input_tokens" semantic conventions. It represents the number of + // tokens used in the GenAI input (prompt). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 100 + // Note: This value SHOULD include all types of input tokens, including cached + // tokens. + // Instrumentations SHOULD make a best effort to populate this value, using a + // total + // provided by the provider when available or, depending on the provider API, + // by summing different token types parsed from the provider output. + GenAIUsageInputTokensKey = attribute.Key("gen_ai.usage.input_tokens") + + // GenAIUsageOutputTokensKey is the attribute Key conforming to the + // "gen_ai.usage.output_tokens" semantic conventions. It represents the number + // of tokens used in the GenAI response (completion). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 180 + GenAIUsageOutputTokensKey = attribute.Key("gen_ai.usage.output_tokens") + + // GenAIUsageReasoningOutputTokensKey is the attribute Key conforming to the + // "gen_ai.usage.reasoning.output_tokens" semantic conventions. It represents + // the number of output tokens used for reasoning (e.g. chain-of-thought, + // extended thinking). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 50 + // Note: The value SHOULD be included in `gen_ai.usage.output_tokens`. + GenAIUsageReasoningOutputTokensKey = attribute.Key("gen_ai.usage.reasoning.output_tokens") + + // GenAIWorkflowNameKey is the attribute Key conforming to the + // "gen_ai.workflow.name" semantic conventions. It represents the human-readable + // name of the GenAI workflow provided by the application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "multi_agent_rag", "customer_support_pipeline" + // Note: This attribute can be populated in different frameworks eg: name of the + // first chain in LangChain OR name of the crew in CrewAI. + GenAIWorkflowNameKey = attribute.Key("gen_ai.workflow.name") +) + +// GenAIAgentDescription returns an attribute KeyValue conforming to the +// "gen_ai.agent.description" semantic conventions. It represents the free-form +// description of the GenAI agent provided by the application. +func GenAIAgentDescription(val string) attribute.KeyValue { + return GenAIAgentDescriptionKey.String(val) +} + +// GenAIAgentID returns an attribute KeyValue conforming to the "gen_ai.agent.id" +// semantic conventions. It represents the unique identifier of the GenAI agent. +func GenAIAgentID(val string) attribute.KeyValue { + return GenAIAgentIDKey.String(val) +} + +// GenAIAgentName returns an attribute KeyValue conforming to the +// "gen_ai.agent.name" semantic conventions. It represents the human-readable +// name of the GenAI agent provided by the application. +func GenAIAgentName(val string) attribute.KeyValue { + return GenAIAgentNameKey.String(val) +} + +// GenAIAgentVersion returns an attribute KeyValue conforming to the +// "gen_ai.agent.version" semantic conventions. It represents the version of the +// GenAI agent. +func GenAIAgentVersion(val string) attribute.KeyValue { + return GenAIAgentVersionKey.String(val) +} + +// GenAIConversationID returns an attribute KeyValue conforming to the +// "gen_ai.conversation.id" semantic conventions. It represents the unique +// identifier for a conversation (session, thread), used to store and correlate +// messages within this conversation. +func GenAIConversationID(val string) attribute.KeyValue { + return GenAIConversationIDKey.String(val) +} + +// GenAIDataSourceID returns an attribute KeyValue conforming to the +// "gen_ai.data_source.id" semantic conventions. It represents the data source +// identifier. +func GenAIDataSourceID(val string) attribute.KeyValue { + return GenAIDataSourceIDKey.String(val) +} + +// GenAIEmbeddingsDimensionCount returns an attribute KeyValue conforming to the +// "gen_ai.embeddings.dimension.count" semantic conventions. It represents the +// number of dimensions the resulting output embeddings should have. +func GenAIEmbeddingsDimensionCount(val int) attribute.KeyValue { + return GenAIEmbeddingsDimensionCountKey.Int(val) +} + +// GenAIEvaluationExplanation returns an attribute KeyValue conforming to the +// "gen_ai.evaluation.explanation" semantic conventions. It represents a +// free-form explanation for the assigned score provided by the evaluator. +func GenAIEvaluationExplanation(val string) attribute.KeyValue { + return GenAIEvaluationExplanationKey.String(val) +} + +// GenAIEvaluationName returns an attribute KeyValue conforming to the +// "gen_ai.evaluation.name" semantic conventions. It represents the name of the +// evaluation metric used for the GenAI response. +func GenAIEvaluationName(val string) attribute.KeyValue { + return GenAIEvaluationNameKey.String(val) +} + +// GenAIEvaluationScoreLabel returns an attribute KeyValue conforming to the +// "gen_ai.evaluation.score.label" semantic conventions. It represents the human +// readable label for evaluation. +func GenAIEvaluationScoreLabel(val string) attribute.KeyValue { + return GenAIEvaluationScoreLabelKey.String(val) +} + +// GenAIEvaluationScoreValue returns an attribute KeyValue conforming to the +// "gen_ai.evaluation.score.value" semantic conventions. It represents the +// evaluation score returned by the evaluator. +func GenAIEvaluationScoreValue(val float64) attribute.KeyValue { + return GenAIEvaluationScoreValueKey.Float64(val) +} + +// GenAIPromptName returns an attribute KeyValue conforming to the +// "gen_ai.prompt.name" semantic conventions. It represents the name of the +// prompt that uniquely identifies it. +func GenAIPromptName(val string) attribute.KeyValue { + return GenAIPromptNameKey.String(val) +} + +// GenAIRequestChoiceCount returns an attribute KeyValue conforming to the +// "gen_ai.request.choice.count" semantic conventions. It represents the target +// number of candidate completions to return. +func GenAIRequestChoiceCount(val int) attribute.KeyValue { + return GenAIRequestChoiceCountKey.Int(val) +} + +// GenAIRequestEncodingFormats returns an attribute KeyValue conforming to the +// "gen_ai.request.encoding_formats" semantic conventions. It represents the +// encoding formats requested in an embeddings operation, if specified. +func GenAIRequestEncodingFormats(val ...string) attribute.KeyValue { + return GenAIRequestEncodingFormatsKey.StringSlice(val) +} + +// GenAIRequestFrequencyPenalty returns an attribute KeyValue conforming to the +// "gen_ai.request.frequency_penalty" semantic conventions. It represents the +// frequency penalty setting for the GenAI request. +func GenAIRequestFrequencyPenalty(val float64) attribute.KeyValue { + return GenAIRequestFrequencyPenaltyKey.Float64(val) +} + +// GenAIRequestMaxTokens returns an attribute KeyValue conforming to the +// "gen_ai.request.max_tokens" semantic conventions. It represents the maximum +// number of tokens the model generates for a request. +func GenAIRequestMaxTokens(val int) attribute.KeyValue { + return GenAIRequestMaxTokensKey.Int(val) +} + +// GenAIRequestModel returns an attribute KeyValue conforming to the +// "gen_ai.request.model" semantic conventions. It represents the name of the +// GenAI model a request is being made to. +func GenAIRequestModel(val string) attribute.KeyValue { + return GenAIRequestModelKey.String(val) +} + +// GenAIRequestPresencePenalty returns an attribute KeyValue conforming to the +// "gen_ai.request.presence_penalty" semantic conventions. It represents the +// presence penalty setting for the GenAI request. +func GenAIRequestPresencePenalty(val float64) attribute.KeyValue { + return GenAIRequestPresencePenaltyKey.Float64(val) +} + +// GenAIRequestSeed returns an attribute KeyValue conforming to the +// "gen_ai.request.seed" semantic conventions. It represents the requests with +// same seed value more likely to return same result. +func GenAIRequestSeed(val int) attribute.KeyValue { + return GenAIRequestSeedKey.Int(val) +} + +// GenAIRequestStopSequences returns an attribute KeyValue conforming to the +// "gen_ai.request.stop_sequences" semantic conventions. It represents the list +// of sequences that the model will use to stop generating further tokens. +func GenAIRequestStopSequences(val ...string) attribute.KeyValue { + return GenAIRequestStopSequencesKey.StringSlice(val) +} + +// GenAIRequestStream returns an attribute KeyValue conforming to the +// "gen_ai.request.stream" semantic conventions. It represents the indicates +// whether the GenAI request was made in streaming mode. +func GenAIRequestStream(val bool) attribute.KeyValue { + return GenAIRequestStreamKey.Bool(val) +} + +// GenAIRequestTemperature returns an attribute KeyValue conforming to the +// "gen_ai.request.temperature" semantic conventions. It represents the +// temperature setting for the GenAI request. +func GenAIRequestTemperature(val float64) attribute.KeyValue { + return GenAIRequestTemperatureKey.Float64(val) +} + +// GenAIRequestTopK returns an attribute KeyValue conforming to the +// "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling +// setting for the GenAI request. +func GenAIRequestTopK(val float64) attribute.KeyValue { + return GenAIRequestTopKKey.Float64(val) +} + +// GenAIRequestTopP returns an attribute KeyValue conforming to the +// "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling +// setting for the GenAI request. +func GenAIRequestTopP(val float64) attribute.KeyValue { + return GenAIRequestTopPKey.Float64(val) +} + +// GenAIResponseFinishReasons returns an attribute KeyValue conforming to the +// "gen_ai.response.finish_reasons" semantic conventions. It represents the array +// of reasons the model stopped generating tokens, corresponding to each +// generation received. +func GenAIResponseFinishReasons(val ...string) attribute.KeyValue { + return GenAIResponseFinishReasonsKey.StringSlice(val) +} + +// GenAIResponseID returns an attribute KeyValue conforming to the +// "gen_ai.response.id" semantic conventions. It represents the unique identifier +// for the completion. +func GenAIResponseID(val string) attribute.KeyValue { + return GenAIResponseIDKey.String(val) +} + +// GenAIResponseModel returns an attribute KeyValue conforming to the +// "gen_ai.response.model" semantic conventions. It represents the name of the +// model that generated the response. +func GenAIResponseModel(val string) attribute.KeyValue { + return GenAIResponseModelKey.String(val) +} + +// GenAIResponseTimeToFirstChunk returns an attribute KeyValue conforming to the +// "gen_ai.response.time_to_first_chunk" semantic conventions. It represents the +// time to first chunk in a streaming response, measured from request issuance, +// in seconds. The value is measured from when the client issues the generation +// request to when the first chunk is received in the response stream. +func GenAIResponseTimeToFirstChunk(val float64) attribute.KeyValue { + return GenAIResponseTimeToFirstChunkKey.Float64(val) +} + +// GenAIRetrievalQueryText returns an attribute KeyValue conforming to the +// "gen_ai.retrieval.query.text" semantic conventions. It represents the query +// text used for retrieval. +func GenAIRetrievalQueryText(val string) attribute.KeyValue { + return GenAIRetrievalQueryTextKey.String(val) +} + +// GenAIToolCallID returns an attribute KeyValue conforming to the +// "gen_ai.tool.call.id" semantic conventions. It represents the tool call +// identifier. +func GenAIToolCallID(val string) attribute.KeyValue { + return GenAIToolCallIDKey.String(val) +} + +// GenAIToolDescription returns an attribute KeyValue conforming to the +// "gen_ai.tool.description" semantic conventions. It represents the tool +// description. +func GenAIToolDescription(val string) attribute.KeyValue { + return GenAIToolDescriptionKey.String(val) +} + +// GenAIToolName returns an attribute KeyValue conforming to the +// "gen_ai.tool.name" semantic conventions. It represents the name of the tool +// utilized by the agent. +func GenAIToolName(val string) attribute.KeyValue { + return GenAIToolNameKey.String(val) +} + +// GenAIToolType returns an attribute KeyValue conforming to the +// "gen_ai.tool.type" semantic conventions. It represents the type of the tool +// utilized by the agent. +func GenAIToolType(val string) attribute.KeyValue { + return GenAIToolTypeKey.String(val) +} + +// GenAIUsageCacheCreationInputTokens returns an attribute KeyValue conforming to +// the "gen_ai.usage.cache_creation.input_tokens" semantic conventions. It +// represents the number of input tokens written to a provider-managed cache. +func GenAIUsageCacheCreationInputTokens(val int) attribute.KeyValue { + return GenAIUsageCacheCreationInputTokensKey.Int(val) +} + +// GenAIUsageCacheReadInputTokens returns an attribute KeyValue conforming to the +// "gen_ai.usage.cache_read.input_tokens" semantic conventions. It represents the +// number of input tokens served from a provider-managed cache. +func GenAIUsageCacheReadInputTokens(val int) attribute.KeyValue { + return GenAIUsageCacheReadInputTokensKey.Int(val) +} + +// GenAIUsageInputTokens returns an attribute KeyValue conforming to the +// "gen_ai.usage.input_tokens" semantic conventions. It represents the number of +// tokens used in the GenAI input (prompt). +func GenAIUsageInputTokens(val int) attribute.KeyValue { + return GenAIUsageInputTokensKey.Int(val) +} + +// GenAIUsageOutputTokens returns an attribute KeyValue conforming to the +// "gen_ai.usage.output_tokens" semantic conventions. It represents the number of +// tokens used in the GenAI response (completion). +func GenAIUsageOutputTokens(val int) attribute.KeyValue { + return GenAIUsageOutputTokensKey.Int(val) +} + +// GenAIUsageReasoningOutputTokens returns an attribute KeyValue conforming to +// the "gen_ai.usage.reasoning.output_tokens" semantic conventions. It represents +// the number of output tokens used for reasoning (e.g. chain-of-thought, +// extended thinking). +func GenAIUsageReasoningOutputTokens(val int) attribute.KeyValue { + return GenAIUsageReasoningOutputTokensKey.Int(val) +} + +// GenAIWorkflowName returns an attribute KeyValue conforming to the +// "gen_ai.workflow.name" semantic conventions. It represents the human-readable +// name of the GenAI workflow provided by the application. +func GenAIWorkflowName(val string) attribute.KeyValue { + return GenAIWorkflowNameKey.String(val) +} + +// Enum values for gen_ai.operation.name +var ( + // Chat completion operation such as [OpenAI Chat API] + // Stability: development + // + // [OpenAI Chat API]: https://platform.openai.com/docs/api-reference/chat + GenAIOperationNameChat = GenAIOperationNameKey.String("chat") + // Multimodal content generation operation such as [Gemini Generate Content] + // Stability: development + // + // [Gemini Generate Content]: https://ai.google.dev/api/generate-content + GenAIOperationNameGenerateContent = GenAIOperationNameKey.String("generate_content") + // Text completions operation such as [OpenAI Completions API (Legacy)] + // Stability: development + // + // [OpenAI Completions API (Legacy)]: https://platform.openai.com/docs/api-reference/completions + GenAIOperationNameTextCompletion = GenAIOperationNameKey.String("text_completion") + // Embeddings operation such as [OpenAI Create embeddings API] + // Stability: development + // + // [OpenAI Create embeddings API]: https://platform.openai.com/docs/api-reference/embeddings/create + GenAIOperationNameEmbeddings = GenAIOperationNameKey.String("embeddings") + // Retrieval operation such as [OpenAI Search Vector Store API] + // Stability: development + // + // [OpenAI Search Vector Store API]: https://platform.openai.com/docs/api-reference/vector-stores/search + GenAIOperationNameRetrieval = GenAIOperationNameKey.String("retrieval") + // Create GenAI agent + // Stability: development + GenAIOperationNameCreateAgent = GenAIOperationNameKey.String("create_agent") + // Invoke GenAI agent + // Stability: development + GenAIOperationNameInvokeAgent = GenAIOperationNameKey.String("invoke_agent") + // Execute a tool + // Stability: development + GenAIOperationNameExecuteTool = GenAIOperationNameKey.String("execute_tool") + // Invoke GenAI workflow + // Stability: development + GenAIOperationNameInvokeWorkflow = GenAIOperationNameKey.String("invoke_workflow") +) + +// Enum values for gen_ai.output.type +var ( + // Plain text + // Stability: development + GenAIOutputTypeText = GenAIOutputTypeKey.String("text") + // JSON object with known or unknown schema + // Stability: development + GenAIOutputTypeJSON = GenAIOutputTypeKey.String("json") + // Image + // Stability: development + GenAIOutputTypeImage = GenAIOutputTypeKey.String("image") + // Speech + // Stability: development + GenAIOutputTypeSpeech = GenAIOutputTypeKey.String("speech") +) + +// Enum values for gen_ai.provider.name +var ( + // [OpenAI] + // Stability: development + // + // [OpenAI]: https://openai.com/ + GenAIProviderNameOpenAI = GenAIProviderNameKey.String("openai") + // Any Google generative AI endpoint + // Stability: development + GenAIProviderNameGCPGenAI = GenAIProviderNameKey.String("gcp.gen_ai") + // [Vertex AI] + // Stability: development + // + // [Vertex AI]: https://cloud.google.com/vertex-ai + GenAIProviderNameGCPVertexAI = GenAIProviderNameKey.String("gcp.vertex_ai") + // [Gemini] + // Stability: development + // + // [Gemini]: https://cloud.google.com/products/gemini + GenAIProviderNameGCPGemini = GenAIProviderNameKey.String("gcp.gemini") + // [Anthropic] + // Stability: development + // + // [Anthropic]: https://www.anthropic.com/ + GenAIProviderNameAnthropic = GenAIProviderNameKey.String("anthropic") + // [Cohere] + // Stability: development + // + // [Cohere]: https://cohere.com/ + GenAIProviderNameCohere = GenAIProviderNameKey.String("cohere") + // Azure AI Inference + // Stability: development + GenAIProviderNameAzureAIInference = GenAIProviderNameKey.String("azure.ai.inference") + // [Azure OpenAI] + // Stability: development + // + // [Azure OpenAI]: https://learn.microsoft.com/en-us/azure/ai-services/openai/overview + GenAIProviderNameAzureAIOpenAI = GenAIProviderNameKey.String("azure.ai.openai") + // [IBM Watsonx AI] + // Stability: development + // + // [IBM Watsonx AI]: https://www.ibm.com/products/watsonx-ai + GenAIProviderNameIBMWatsonxAI = GenAIProviderNameKey.String("ibm.watsonx.ai") + // [AWS Bedrock] + // Stability: development + // + // [AWS Bedrock]: https://aws.amazon.com/bedrock + GenAIProviderNameAWSBedrock = GenAIProviderNameKey.String("aws.bedrock") + // [Perplexity] + // Stability: development + // + // [Perplexity]: https://www.perplexity.ai/ + GenAIProviderNamePerplexity = GenAIProviderNameKey.String("perplexity") + // [xAI] + // Stability: development + // + // [xAI]: https://x.ai/ + GenAIProviderNameXAI = GenAIProviderNameKey.String("x_ai") + // [DeepSeek] + // Stability: development + // + // [DeepSeek]: https://www.deepseek.com/ + GenAIProviderNameDeepseek = GenAIProviderNameKey.String("deepseek") + // [Groq] + // Stability: development + // + // [Groq]: https://groq.com/ + GenAIProviderNameGroq = GenAIProviderNameKey.String("groq") + // [Mistral AI] + // Stability: development + // + // [Mistral AI]: https://mistral.ai/ + GenAIProviderNameMistralAI = GenAIProviderNameKey.String("mistral_ai") +) + +// Enum values for gen_ai.token.type +var ( + // Input tokens (prompt, input, etc.) + // Stability: development + GenAITokenTypeInput = GenAITokenTypeKey.String("input") + // Output tokens (completion, response, etc.) + // Stability: development + GenAITokenTypeOutput = GenAITokenTypeKey.String("output") +) + +// Namespace: geo +const ( + // GeoContinentCodeKey is the attribute Key conforming to the + // "geo.continent.code" semantic conventions. It represents the two-letter code + // representing continent’s name. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + GeoContinentCodeKey = attribute.Key("geo.continent.code") + + // GeoCountryISOCodeKey is the attribute Key conforming to the + // "geo.country.iso_code" semantic conventions. It represents the two-letter ISO + // Country Code ([ISO 3166-1 alpha2]). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CA" + // + // [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes + GeoCountryISOCodeKey = attribute.Key("geo.country.iso_code") + + // GeoLocalityNameKey is the attribute Key conforming to the "geo.locality.name" + // semantic conventions. It represents the locality name. Represents the name of + // a city, town, village, or similar populated place. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Montreal", "Berlin" + GeoLocalityNameKey = attribute.Key("geo.locality.name") + + // GeoLocationLatKey is the attribute Key conforming to the "geo.location.lat" + // semantic conventions. It represents the latitude of the geo location in + // [WGS84]. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 45.505918 + // + // [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 + GeoLocationLatKey = attribute.Key("geo.location.lat") + + // GeoLocationLonKey is the attribute Key conforming to the "geo.location.lon" + // semantic conventions. It represents the longitude of the geo location in + // [WGS84]. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: -73.61483 + // + // [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 + GeoLocationLonKey = attribute.Key("geo.location.lon") + + // GeoPostalCodeKey is the attribute Key conforming to the "geo.postal_code" + // semantic conventions. It represents the postal code associated with the + // location. Values appropriate for this field may also be known as a postcode + // or ZIP code and will vary widely from country to country. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "94040" + GeoPostalCodeKey = attribute.Key("geo.postal_code") + + // GeoRegionISOCodeKey is the attribute Key conforming to the + // "geo.region.iso_code" semantic conventions. It represents the region ISO code + // ([ISO 3166-2]). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CA-QC" + // + // [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2 + GeoRegionISOCodeKey = attribute.Key("geo.region.iso_code") +) + +// GeoCountryISOCode returns an attribute KeyValue conforming to the +// "geo.country.iso_code" semantic conventions. It represents the two-letter ISO +// Country Code ([ISO 3166-1 alpha2]). +// +// [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes +func GeoCountryISOCode(val string) attribute.KeyValue { + return GeoCountryISOCodeKey.String(val) +} + +// GeoLocalityName returns an attribute KeyValue conforming to the +// "geo.locality.name" semantic conventions. It represents the locality name. +// Represents the name of a city, town, village, or similar populated place. +func GeoLocalityName(val string) attribute.KeyValue { + return GeoLocalityNameKey.String(val) +} + +// GeoLocationLat returns an attribute KeyValue conforming to the +// "geo.location.lat" semantic conventions. It represents the latitude of the geo +// location in [WGS84]. +// +// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 +func GeoLocationLat(val float64) attribute.KeyValue { + return GeoLocationLatKey.Float64(val) +} + +// GeoLocationLon returns an attribute KeyValue conforming to the +// "geo.location.lon" semantic conventions. It represents the longitude of the +// geo location in [WGS84]. +// +// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 +func GeoLocationLon(val float64) attribute.KeyValue { + return GeoLocationLonKey.Float64(val) +} + +// GeoPostalCode returns an attribute KeyValue conforming to the +// "geo.postal_code" semantic conventions. It represents the postal code +// associated with the location. Values appropriate for this field may also be +// known as a postcode or ZIP code and will vary widely from country to country. +func GeoPostalCode(val string) attribute.KeyValue { + return GeoPostalCodeKey.String(val) +} + +// GeoRegionISOCode returns an attribute KeyValue conforming to the +// "geo.region.iso_code" semantic conventions. It represents the region ISO code +// ([ISO 3166-2]). +// +// [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2 +func GeoRegionISOCode(val string) attribute.KeyValue { + return GeoRegionISOCodeKey.String(val) +} + +// Enum values for geo.continent.code +var ( + // Africa + // Stability: development + GeoContinentCodeAf = GeoContinentCodeKey.String("AF") + // Antarctica + // Stability: development + GeoContinentCodeAn = GeoContinentCodeKey.String("AN") + // Asia + // Stability: development + GeoContinentCodeAs = GeoContinentCodeKey.String("AS") + // Europe + // Stability: development + GeoContinentCodeEu = GeoContinentCodeKey.String("EU") + // North America + // Stability: development + GeoContinentCodeNa = GeoContinentCodeKey.String("NA") + // Oceania + // Stability: development + GeoContinentCodeOc = GeoContinentCodeKey.String("OC") + // South America + // Stability: development + GeoContinentCodeSa = GeoContinentCodeKey.String("SA") +) + +// Namespace: go +const ( + // GoCPUDetailedStateKey is the attribute Key conforming to the + // "go.cpu.detailed_state" semantic conventions. It represents the detailed + // state of the CPU. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "gc/pause", "gc/mark/assist" + // Note: Value SHOULD match the specific CPU class reported by the Go runtime + // under `/cpu/classes/...`. The list of possible values is subject to change + // with the Go version used. + GoCPUDetailedStateKey = attribute.Key("go.cpu.detailed_state") + + // GoCPUStateKey is the attribute Key conforming to the "go.cpu.state" semantic + // conventions. It represents the state of the CPU. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "user", "gc" + GoCPUStateKey = attribute.Key("go.cpu.state") + + // GoMemoryDetailedTypeKey is the attribute Key conforming to the + // "go.memory.detailed_type" semantic conventions. It represents the detailed + // type of memory. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "heap/objects", "heap/free" + // Note: Value SHOULD match the specific memory class reported by the Go runtime + // under `/memory/classes/...`. The list of possible values is subject to change + // with the Go version used. + GoMemoryDetailedTypeKey = attribute.Key("go.memory.detailed_type") + + // GoMemoryTypeKey is the attribute Key conforming to the "go.memory.type" + // semantic conventions. It represents the type of memory. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "other", "stack" + GoMemoryTypeKey = attribute.Key("go.memory.type") +) + +// GoCPUDetailedState returns an attribute KeyValue conforming to the +// "go.cpu.detailed_state" semantic conventions. It represents the detailed state +// of the CPU. +func GoCPUDetailedState(val string) attribute.KeyValue { + return GoCPUDetailedStateKey.String(val) +} + +// GoMemoryDetailedType returns an attribute KeyValue conforming to the +// "go.memory.detailed_type" semantic conventions. It represents the detailed +// type of memory. +func GoMemoryDetailedType(val string) attribute.KeyValue { + return GoMemoryDetailedTypeKey.String(val) +} + +// Enum values for go.cpu.state +var ( + // CPU time spent running user Go code. + // Stability: development + GoCPUStateUser = GoCPUStateKey.String("user") + // CPU time spent performing garbage collection tasks. + // Stability: development + GoCPUStateGC = GoCPUStateKey.String("gc") + // CPU time spent returning unused memory to the underlying platform. + // Stability: development + GoCPUStateScavenge = GoCPUStateKey.String("scavenge") + // Available CPU time not spent executing any Go or Go runtime code. + // Stability: development + GoCPUStateIdle = GoCPUStateKey.String("idle") +) + +// Enum values for go.memory.type +var ( + // Memory allocated from the heap that is reserved for stack space, whether or + // not it is currently in-use. + // Stability: development + GoMemoryTypeStack = GoMemoryTypeKey.String("stack") + // Memory used by the Go runtime, excluding other categories of memory usage + // described in this enumeration. + // Stability: development + GoMemoryTypeOther = GoMemoryTypeKey.String("other") +) + +// Namespace: graphql +const ( + // GraphQLDocumentKey is the attribute Key conforming to the "graphql.document" + // semantic conventions. It represents the GraphQL document being executed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: query findBookById { bookById(id: ?) { name } } + // Note: If instrumentation can reliably identify and redact sensitive + // information it SHOULD do it. + GraphQLDocumentKey = attribute.Key("graphql.document") + + // GraphQLOperationNameKey is the attribute Key conforming to the + // "graphql.operation.name" semantic conventions. It represents the name of the + // operation being executed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: findBookById + GraphQLOperationNameKey = attribute.Key("graphql.operation.name") + + // GraphQLOperationTypeKey is the attribute Key conforming to the + // "graphql.operation.type" semantic conventions. It represents the type of the + // operation being executed. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "query", "mutation", "subscription" + GraphQLOperationTypeKey = attribute.Key("graphql.operation.type") +) + +// GraphQLDocument returns an attribute KeyValue conforming to the +// "graphql.document" semantic conventions. It represents the GraphQL document +// being executed. +func GraphQLDocument(val string) attribute.KeyValue { + return GraphQLDocumentKey.String(val) +} + +// GraphQLOperationName returns an attribute KeyValue conforming to the +// "graphql.operation.name" semantic conventions. It represents the name of the +// operation being executed. +func GraphQLOperationName(val string) attribute.KeyValue { + return GraphQLOperationNameKey.String(val) +} + +// Enum values for graphql.operation.type +var ( + // GraphQL query + // Stability: development + GraphQLOperationTypeQuery = GraphQLOperationTypeKey.String("query") + // GraphQL mutation + // Stability: development + GraphQLOperationTypeMutation = GraphQLOperationTypeKey.String("mutation") + // GraphQL subscription + // Stability: development + GraphQLOperationTypeSubscription = GraphQLOperationTypeKey.String("subscription") +) + +// Namespace: heroku +const ( + // HerokuAppIDKey is the attribute Key conforming to the "heroku.app.id" + // semantic conventions. It represents the unique identifier for the + // application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2daa2797-e42b-4624-9322-ec3f968df4da" + HerokuAppIDKey = attribute.Key("heroku.app.id") + + // HerokuReleaseCommitKey is the attribute Key conforming to the + // "heroku.release.commit" semantic conventions. It represents the commit hash + // for the current release. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "e6134959463efd8966b20e75b913cafe3f5ec" + HerokuReleaseCommitKey = attribute.Key("heroku.release.commit") + + // HerokuReleaseCreationTimestampKey is the attribute Key conforming to the + // "heroku.release.creation_timestamp" semantic conventions. It represents the + // time and date the release was created. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2022-10-23T18:00:42Z" + HerokuReleaseCreationTimestampKey = attribute.Key("heroku.release.creation_timestamp") +) + +// HerokuAppID returns an attribute KeyValue conforming to the "heroku.app.id" +// semantic conventions. It represents the unique identifier for the application. +func HerokuAppID(val string) attribute.KeyValue { + return HerokuAppIDKey.String(val) +} + +// HerokuReleaseCommit returns an attribute KeyValue conforming to the +// "heroku.release.commit" semantic conventions. It represents the commit hash +// for the current release. +func HerokuReleaseCommit(val string) attribute.KeyValue { + return HerokuReleaseCommitKey.String(val) +} + +// HerokuReleaseCreationTimestamp returns an attribute KeyValue conforming to the +// "heroku.release.creation_timestamp" semantic conventions. It represents the +// time and date the release was created. +func HerokuReleaseCreationTimestamp(val string) attribute.KeyValue { + return HerokuReleaseCreationTimestampKey.String(val) +} + +// Namespace: host +const ( + // HostArchKey is the attribute Key conforming to the "host.arch" semantic + // conventions. It represents the CPU architecture the host system is running + // on. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + HostArchKey = attribute.Key("host.arch") + + // HostCPUCacheL2SizeKey is the attribute Key conforming to the + // "host.cpu.cache.l2.size" semantic conventions. It represents the amount of + // level 2 memory cache available to the processor (in Bytes). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 12288000 + HostCPUCacheL2SizeKey = attribute.Key("host.cpu.cache.l2.size") + + // HostCPUFamilyKey is the attribute Key conforming to the "host.cpu.family" + // semantic conventions. It represents the family or generation of the CPU. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "6", "PA-RISC 1.1e" + HostCPUFamilyKey = attribute.Key("host.cpu.family") + + // HostCPUModelIDKey is the attribute Key conforming to the "host.cpu.model.id" + // semantic conventions. It represents the model identifier. It provides more + // granular information about the CPU, distinguishing it from other CPUs within + // the same family. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "6", "9000/778/B180L" + HostCPUModelIDKey = attribute.Key("host.cpu.model.id") + + // HostCPUModelNameKey is the attribute Key conforming to the + // "host.cpu.model.name" semantic conventions. It represents the model + // designation of the processor. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "11th Gen Intel(R) Core(TM) i7-1185G7 @ 3.00GHz" + HostCPUModelNameKey = attribute.Key("host.cpu.model.name") + + // HostCPUSteppingKey is the attribute Key conforming to the "host.cpu.stepping" + // semantic conventions. It represents the stepping or core revisions. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1", "r1p1" + HostCPUSteppingKey = attribute.Key("host.cpu.stepping") + + // HostCPUVendorIDKey is the attribute Key conforming to the + // "host.cpu.vendor.id" semantic conventions. It represents the processor + // manufacturer identifier. A maximum 12-character string. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "GenuineIntel" + // Note: [CPUID] command returns the vendor ID string in EBX, EDX and ECX + // registers. Writing these to memory in this order results in a 12-character + // string. + // + // [CPUID]: https://wiki.osdev.org/CPUID + HostCPUVendorIDKey = attribute.Key("host.cpu.vendor.id") + + // HostIDKey is the attribute Key conforming to the "host.id" semantic + // conventions. It represents the unique host ID. For Cloud, this must be the + // instance_id assigned by the cloud provider. For non-containerized systems, + // this should be the `machine-id`. See the table below for the sources to use + // to determine the `machine-id` based on operating system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "fdbf79e8af94cb7f9e8df36789187052" + HostIDKey = attribute.Key("host.id") + + // HostImageIDKey is the attribute Key conforming to the "host.image.id" + // semantic conventions. It represents the VM image ID or host OS image ID. For + // Cloud, this value is from the provider. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ami-07b06b442921831e5" + HostImageIDKey = attribute.Key("host.image.id") + + // HostImageNameKey is the attribute Key conforming to the "host.image.name" + // semantic conventions. It represents the name of the VM image or OS install + // the host was instantiated from. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "infra-ami-eks-worker-node-7d4ec78312", "CentOS-8-x86_64-1905" + HostImageNameKey = attribute.Key("host.image.name") + + // HostImageVersionKey is the attribute Key conforming to the + // "host.image.version" semantic conventions. It represents the version string + // of the VM image or host OS as defined in [Version Attributes]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0.1" + // + // [Version Attributes]: /docs/resource/README.md#version-attributes + HostImageVersionKey = attribute.Key("host.image.version") + + // HostIPKey is the attribute Key conforming to the "host.ip" semantic + // conventions. It represents the available IP addresses of the host, excluding + // loopback interfaces. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "192.168.1.140", "fe80::abc2:4a28:737a:609e" + // Note: IPv4 Addresses MUST be specified in dotted-quad notation. IPv6 + // addresses MUST be specified in the [RFC 5952] format. + // + // [RFC 5952]: https://www.rfc-editor.org/rfc/rfc5952.html + HostIPKey = attribute.Key("host.ip") + + // HostMacKey is the attribute Key conforming to the "host.mac" semantic + // conventions. It represents the available MAC addresses of the host, excluding + // loopback interfaces. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "AC-DE-48-23-45-67", "AC-DE-48-23-45-67-01-9F" + // Note: MAC Addresses MUST be represented in [IEEE RA hexadecimal form]: as + // hyphen-separated octets in uppercase hexadecimal form from most to least + // significant. + // + // [IEEE RA hexadecimal form]: https://standards.ieee.org/wp-content/uploads/import/documents/tutorials/eui.pdf + HostMacKey = attribute.Key("host.mac") + + // HostNameKey is the attribute Key conforming to the "host.name" semantic + // conventions. It represents the name of the host. On Unix systems, it may + // contain what the hostname command returns, or the fully qualified hostname, + // or another name specified by the user. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry-test" + HostNameKey = attribute.Key("host.name") + + // HostTypeKey is the attribute Key conforming to the "host.type" semantic + // conventions. It represents the type of host. For Cloud, this must be the + // machine type. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "n1-standard-1" + HostTypeKey = attribute.Key("host.type") +) + +// HostCPUCacheL2Size returns an attribute KeyValue conforming to the +// "host.cpu.cache.l2.size" semantic conventions. It represents the amount of +// level 2 memory cache available to the processor (in Bytes). +func HostCPUCacheL2Size(val int) attribute.KeyValue { + return HostCPUCacheL2SizeKey.Int(val) +} + +// HostCPUFamily returns an attribute KeyValue conforming to the +// "host.cpu.family" semantic conventions. It represents the family or generation +// of the CPU. +func HostCPUFamily(val string) attribute.KeyValue { + return HostCPUFamilyKey.String(val) +} + +// HostCPUModelID returns an attribute KeyValue conforming to the +// "host.cpu.model.id" semantic conventions. It represents the model identifier. +// It provides more granular information about the CPU, distinguishing it from +// other CPUs within the same family. +func HostCPUModelID(val string) attribute.KeyValue { + return HostCPUModelIDKey.String(val) +} + +// HostCPUModelName returns an attribute KeyValue conforming to the +// "host.cpu.model.name" semantic conventions. It represents the model +// designation of the processor. +func HostCPUModelName(val string) attribute.KeyValue { + return HostCPUModelNameKey.String(val) +} + +// HostCPUStepping returns an attribute KeyValue conforming to the +// "host.cpu.stepping" semantic conventions. It represents the stepping or core +// revisions. +func HostCPUStepping(val string) attribute.KeyValue { + return HostCPUSteppingKey.String(val) +} + +// HostCPUVendorID returns an attribute KeyValue conforming to the +// "host.cpu.vendor.id" semantic conventions. It represents the processor +// manufacturer identifier. A maximum 12-character string. +func HostCPUVendorID(val string) attribute.KeyValue { + return HostCPUVendorIDKey.String(val) +} + +// HostID returns an attribute KeyValue conforming to the "host.id" semantic +// conventions. It represents the unique host ID. For Cloud, this must be the +// instance_id assigned by the cloud provider. For non-containerized systems, +// this should be the `machine-id`. See the table below for the sources to use to +// determine the `machine-id` based on operating system. +func HostID(val string) attribute.KeyValue { + return HostIDKey.String(val) +} + +// HostImageID returns an attribute KeyValue conforming to the "host.image.id" +// semantic conventions. It represents the VM image ID or host OS image ID. For +// Cloud, this value is from the provider. +func HostImageID(val string) attribute.KeyValue { + return HostImageIDKey.String(val) +} + +// HostImageName returns an attribute KeyValue conforming to the +// "host.image.name" semantic conventions. It represents the name of the VM image +// or OS install the host was instantiated from. +func HostImageName(val string) attribute.KeyValue { + return HostImageNameKey.String(val) +} + +// HostImageVersion returns an attribute KeyValue conforming to the +// "host.image.version" semantic conventions. It represents the version string of +// the VM image or host OS as defined in [Version Attributes]. +// +// [Version Attributes]: /docs/resource/README.md#version-attributes +func HostImageVersion(val string) attribute.KeyValue { + return HostImageVersionKey.String(val) +} + +// HostIP returns an attribute KeyValue conforming to the "host.ip" semantic +// conventions. It represents the available IP addresses of the host, excluding +// loopback interfaces. +func HostIP(val ...string) attribute.KeyValue { + return HostIPKey.StringSlice(val) +} + +// HostMac returns an attribute KeyValue conforming to the "host.mac" semantic +// conventions. It represents the available MAC addresses of the host, excluding +// loopback interfaces. +func HostMac(val ...string) attribute.KeyValue { + return HostMacKey.StringSlice(val) +} + +// HostName returns an attribute KeyValue conforming to the "host.name" semantic +// conventions. It represents the name of the host. On Unix systems, it may +// contain what the hostname command returns, or the fully qualified hostname, or +// another name specified by the user. +func HostName(val string) attribute.KeyValue { + return HostNameKey.String(val) +} + +// HostType returns an attribute KeyValue conforming to the "host.type" semantic +// conventions. It represents the type of host. For Cloud, this must be the +// machine type. +func HostType(val string) attribute.KeyValue { + return HostTypeKey.String(val) +} + +// Enum values for host.arch +var ( + // AMD64 + // Stability: development + HostArchAMD64 = HostArchKey.String("amd64") + // ARM32 + // Stability: development + HostArchARM32 = HostArchKey.String("arm32") + // ARM64 + // Stability: development + HostArchARM64 = HostArchKey.String("arm64") + // Itanium + // Stability: development + HostArchIA64 = HostArchKey.String("ia64") + // 32-bit PowerPC + // Stability: development + HostArchPPC32 = HostArchKey.String("ppc32") + // 64-bit PowerPC + // Stability: development + HostArchPPC64 = HostArchKey.String("ppc64") + // IBM z/Architecture + // Stability: development + HostArchS390x = HostArchKey.String("s390x") + // 32-bit x86 + // Stability: development + HostArchX86 = HostArchKey.String("x86") +) + +// Namespace: http +const ( + // HTTPConnectionStateKey is the attribute Key conforming to the + // "http.connection.state" semantic conventions. It represents the state of the + // HTTP connection in the HTTP connection pool. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "active", "idle" + HTTPConnectionStateKey = attribute.Key("http.connection.state") + + // HTTPRequestBodySizeKey is the attribute Key conforming to the + // "http.request.body.size" semantic conventions. It represents the size of the + // request payload body in bytes. This is the number of bytes transferred + // excluding headers and is often, but not always, present as the + // [Content-Length] header. For requests using transport encoding, this should + // be the compressed size. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length + HTTPRequestBodySizeKey = attribute.Key("http.request.body.size") + + // HTTPRequestMethodKey is the attribute Key conforming to the + // "http.request.method" semantic conventions. It represents the HTTP request + // method. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "GET", "POST", "HEAD" + // Note: HTTP request method value SHOULD be "known" to the instrumentation. + // By default, this convention defines "known" methods as the ones listed in + // [RFC9110], + // the PATCH method defined in [RFC5789] + // and the QUERY method defined in [httpbis-safe-method-w-body]. + // + // If the HTTP request method is not known to instrumentation, it MUST set the + // `http.request.method` attribute to `_OTHER`. + // + // If the HTTP instrumentation could end up converting valid HTTP request + // methods to `_OTHER`, then it MUST provide a way to override + // the list of known HTTP methods. If this override is done via environment + // variable, then the environment variable MUST be named + // OTEL_INSTRUMENTATION_HTTP_KNOWN_METHODS and support a comma-separated list of + // case-sensitive known HTTP methods. + // + // + // If this override is done via declarative configuration, then the list MUST be + // configurable via the `known_methods` property + // (an array of case-sensitive strings with minimum items 0) under + // `.instrumentation/development.general.http.client` and/or + // `.instrumentation/development.general.http.server`. + // + // In either case, this list MUST be a full override of the default known + // methods, + // it is not a list of known methods in addition to the defaults. + // + // HTTP method names are case-sensitive and `http.request.method` attribute + // value MUST match a known HTTP method name exactly. + // Instrumentations for specific web frameworks that consider HTTP methods to be + // case insensitive, SHOULD populate a canonical equivalent. + // Tracing instrumentations that do so, MUST also set + // `http.request.method_original` to the original value. + // + // [RFC9110]: https://www.rfc-editor.org/rfc/rfc9110.html#name-methods + // [RFC5789]: https://www.rfc-editor.org/rfc/rfc5789.html + // [httpbis-safe-method-w-body]: https://datatracker.ietf.org/doc/draft-ietf-httpbis-safe-method-w-body/?include_text=1 + HTTPRequestMethodKey = attribute.Key("http.request.method") + + // HTTPRequestMethodOriginalKey is the attribute Key conforming to the + // "http.request.method_original" semantic conventions. It represents the + // original HTTP method sent by the client in the request line. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "GeT", "ACL", "foo" + HTTPRequestMethodOriginalKey = attribute.Key("http.request.method_original") + + // HTTPRequestResendCountKey is the attribute Key conforming to the + // "http.request.resend_count" semantic conventions. It represents the ordinal + // number of request resending attempt (for any reason, including redirects). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Note: The resend count SHOULD be updated each time an HTTP request gets + // resent by the client, regardless of what was the cause of the resending (e.g. + // redirection, authorization failure, 503 Server Unavailable, network issues, + // or any other). + HTTPRequestResendCountKey = attribute.Key("http.request.resend_count") + + // HTTPRequestSizeKey is the attribute Key conforming to the "http.request.size" + // semantic conventions. It represents the total size of the request in bytes. + // This should be the total number of bytes sent over the wire, including the + // request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers, and request + // body if any. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + HTTPRequestSizeKey = attribute.Key("http.request.size") + + // HTTPResponseBodySizeKey is the attribute Key conforming to the + // "http.response.body.size" semantic conventions. It represents the size of the + // response payload body in bytes. This is the number of bytes transferred + // excluding headers and is often, but not always, present as the + // [Content-Length] header. For requests using transport encoding, this should + // be the compressed size. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length + HTTPResponseBodySizeKey = attribute.Key("http.response.body.size") + + // HTTPResponseSizeKey is the attribute Key conforming to the + // "http.response.size" semantic conventions. It represents the total size of + // the response in bytes. This should be the total number of bytes sent over the + // wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3), + // headers, and response body and trailers if any. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + HTTPResponseSizeKey = attribute.Key("http.response.size") + + // HTTPResponseStatusCodeKey is the attribute Key conforming to the + // "http.response.status_code" semantic conventions. It represents the + // [HTTP response status code]. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 200 + // + // [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 + HTTPResponseStatusCodeKey = attribute.Key("http.response.status_code") + + // HTTPRouteKey is the attribute Key conforming to the "http.route" semantic + // conventions. It represents the matched route template for the request. This + // MUST be low-cardinality and include all static path segments, with dynamic + // path segments represented with placeholders. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "/users/:userID?", "my-controller/my-action/{id?}" + // Note: MUST NOT be populated when this is not supported by the HTTP server + // framework as the route attribute should have low-cardinality and the URI path + // can NOT substitute it. + // SHOULD include the [application root] if there is one. + // + // A static path segment is a part of the route template with a fixed, + // low-cardinality value. This includes literal strings like `/users/` and + // placeholders that + // are constrained to a finite, predefined set of values, e.g. `{controller}` or + // `{action}`. + // + // A dynamic path segment is a placeholder for a value that can have high + // cardinality and is not constrained to a predefined list like static path + // segments. + // + // Instrumentations SHOULD use routing information provided by the corresponding + // web framework. They SHOULD pick the most precise source of routing + // information and MAY + // support custom route formatting. Instrumentations SHOULD document the format + // and the API used to obtain the route string. + // + // [application root]: /docs/http/http-spans.md#http-server-definitions + HTTPRouteKey = attribute.Key("http.route") +) + +// HTTPRequestBodySize returns an attribute KeyValue conforming to the +// "http.request.body.size" semantic conventions. It represents the size of the +// request payload body in bytes. This is the number of bytes transferred +// excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func HTTPRequestBodySize(val int) attribute.KeyValue { + return HTTPRequestBodySizeKey.Int(val) +} + +// HTTPRequestHeader returns an attribute KeyValue conforming to the +// "http.request.header" semantic conventions. It represents the HTTP request +// headers, `` being the normalized HTTP Header name (lowercase), the value +// being the header values. +func HTTPRequestHeader(key string, val ...string) attribute.KeyValue { + return attribute.StringSlice("http.request.header."+key, val) +} + +// HTTPRequestMethodOriginal returns an attribute KeyValue conforming to the +// "http.request.method_original" semantic conventions. It represents the +// original HTTP method sent by the client in the request line. +func HTTPRequestMethodOriginal(val string) attribute.KeyValue { + return HTTPRequestMethodOriginalKey.String(val) +} + +// HTTPRequestResendCount returns an attribute KeyValue conforming to the +// "http.request.resend_count" semantic conventions. It represents the ordinal +// number of request resending attempt (for any reason, including redirects). +func HTTPRequestResendCount(val int) attribute.KeyValue { + return HTTPRequestResendCountKey.Int(val) +} + +// HTTPRequestSize returns an attribute KeyValue conforming to the +// "http.request.size" semantic conventions. It represents the total size of the +// request in bytes. This should be the total number of bytes sent over the wire, +// including the request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers, +// and request body if any. +func HTTPRequestSize(val int) attribute.KeyValue { + return HTTPRequestSizeKey.Int(val) +} + +// HTTPResponseBodySize returns an attribute KeyValue conforming to the +// "http.response.body.size" semantic conventions. It represents the size of the +// response payload body in bytes. This is the number of bytes transferred +// excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func HTTPResponseBodySize(val int) attribute.KeyValue { + return HTTPResponseBodySizeKey.Int(val) +} + +// HTTPResponseHeader returns an attribute KeyValue conforming to the +// "http.response.header" semantic conventions. It represents the HTTP response +// headers, `` being the normalized HTTP Header name (lowercase), the value +// being the header values. +func HTTPResponseHeader(key string, val ...string) attribute.KeyValue { + return attribute.StringSlice("http.response.header."+key, val) +} + +// HTTPResponseSize returns an attribute KeyValue conforming to the +// "http.response.size" semantic conventions. It represents the total size of the +// response in bytes. This should be the total number of bytes sent over the +// wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3), +// headers, and response body and trailers if any. +func HTTPResponseSize(val int) attribute.KeyValue { + return HTTPResponseSizeKey.Int(val) +} + +// HTTPResponseStatusCode returns an attribute KeyValue conforming to the +// "http.response.status_code" semantic conventions. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func HTTPResponseStatusCode(val int) attribute.KeyValue { + return HTTPResponseStatusCodeKey.Int(val) +} + +// HTTPRoute returns an attribute KeyValue conforming to the "http.route" +// semantic conventions. It represents the matched route template for the +// request. This MUST be low-cardinality and include all static path segments, +// with dynamic path segments represented with placeholders. +func HTTPRoute(val string) attribute.KeyValue { + return HTTPRouteKey.String(val) +} + +// Enum values for http.connection.state +var ( + // active state. + // Stability: development + HTTPConnectionStateActive = HTTPConnectionStateKey.String("active") + // idle state. + // Stability: development + HTTPConnectionStateIdle = HTTPConnectionStateKey.String("idle") +) + +// Enum values for http.request.method +var ( + // CONNECT method. + // Stability: stable + HTTPRequestMethodConnect = HTTPRequestMethodKey.String("CONNECT") + // DELETE method. + // Stability: stable + HTTPRequestMethodDelete = HTTPRequestMethodKey.String("DELETE") + // GET method. + // Stability: stable + HTTPRequestMethodGet = HTTPRequestMethodKey.String("GET") + // HEAD method. + // Stability: stable + HTTPRequestMethodHead = HTTPRequestMethodKey.String("HEAD") + // OPTIONS method. + // Stability: stable + HTTPRequestMethodOptions = HTTPRequestMethodKey.String("OPTIONS") + // PATCH method. + // Stability: stable + HTTPRequestMethodPatch = HTTPRequestMethodKey.String("PATCH") + // POST method. + // Stability: stable + HTTPRequestMethodPost = HTTPRequestMethodKey.String("POST") + // PUT method. + // Stability: stable + HTTPRequestMethodPut = HTTPRequestMethodKey.String("PUT") + // TRACE method. + // Stability: stable + HTTPRequestMethodTrace = HTTPRequestMethodKey.String("TRACE") + // QUERY method. + // Stability: development + HTTPRequestMethodQuery = HTTPRequestMethodKey.String("QUERY") + // Any HTTP method that the instrumentation has no prior knowledge of. + // Stability: stable + HTTPRequestMethodOther = HTTPRequestMethodKey.String("_OTHER") +) + +// Namespace: hw +const ( + // HwBatteryCapacityKey is the attribute Key conforming to the + // "hw.battery.capacity" semantic conventions. It represents the design capacity + // in Watts-hours or Ampere-hours. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9.3Ah", "50Wh" + HwBatteryCapacityKey = attribute.Key("hw.battery.capacity") + + // HwBatteryChemistryKey is the attribute Key conforming to the + // "hw.battery.chemistry" semantic conventions. It represents the battery + // [chemistry], e.g. Lithium-Ion, Nickel-Cadmium, etc. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Li-ion", "NiMH" + // + // [chemistry]: https://schemas.dmtf.org/wbem/cim-html/2.31.0/CIM_Battery.html + HwBatteryChemistryKey = attribute.Key("hw.battery.chemistry") + + // HwBatteryStateKey is the attribute Key conforming to the "hw.battery.state" + // semantic conventions. It represents the current state of the battery. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + HwBatteryStateKey = attribute.Key("hw.battery.state") + + // HwBiosVersionKey is the attribute Key conforming to the "hw.bios_version" + // semantic conventions. It represents the BIOS version of the hardware + // component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1.2.3" + HwBiosVersionKey = attribute.Key("hw.bios_version") + + // HwDriverVersionKey is the attribute Key conforming to the "hw.driver_version" + // semantic conventions. It represents the driver version for the hardware + // component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "10.2.1-3" + HwDriverVersionKey = attribute.Key("hw.driver_version") + + // HwEnclosureTypeKey is the attribute Key conforming to the "hw.enclosure.type" + // semantic conventions. It represents the type of the enclosure (useful for + // modular systems). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Computer", "Storage", "Switch" + HwEnclosureTypeKey = attribute.Key("hw.enclosure.type") + + // HwFirmwareVersionKey is the attribute Key conforming to the + // "hw.firmware_version" semantic conventions. It represents the firmware + // version of the hardware component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2.0.1" + HwFirmwareVersionKey = attribute.Key("hw.firmware_version") + + // HwGpuTaskKey is the attribute Key conforming to the "hw.gpu.task" semantic + // conventions. It represents the type of task the GPU is performing. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + HwGpuTaskKey = attribute.Key("hw.gpu.task") + + // HwIDKey is the attribute Key conforming to the "hw.id" semantic conventions. + // It represents an identifier for the hardware component, unique within the + // monitored host. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "win32battery_battery_testsysa33_1" + HwIDKey = attribute.Key("hw.id") + + // HwLimitTypeKey is the attribute Key conforming to the "hw.limit_type" + // semantic conventions. It represents the type of limit for hardware + // components. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + HwLimitTypeKey = attribute.Key("hw.limit_type") + + // HwLogicalDiskRaidLevelKey is the attribute Key conforming to the + // "hw.logical_disk.raid_level" semantic conventions. It represents the RAID + // Level of the logical disk. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "RAID0+1", "RAID5", "RAID10" + HwLogicalDiskRaidLevelKey = attribute.Key("hw.logical_disk.raid_level") + + // HwLogicalDiskStateKey is the attribute Key conforming to the + // "hw.logical_disk.state" semantic conventions. It represents the state of the + // logical disk space usage. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + HwLogicalDiskStateKey = attribute.Key("hw.logical_disk.state") + + // HwMemoryTypeKey is the attribute Key conforming to the "hw.memory.type" + // semantic conventions. It represents the type of the memory module. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "DDR4", "DDR5", "LPDDR5" + HwMemoryTypeKey = attribute.Key("hw.memory.type") + + // HwModelKey is the attribute Key conforming to the "hw.model" semantic + // conventions. It represents the descriptive model name of the hardware + // component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "PERC H740P", "Intel(R) Core(TM) i7-10700K", "Dell XPS 15 Battery" + HwModelKey = attribute.Key("hw.model") + + // HwNameKey is the attribute Key conforming to the "hw.name" semantic + // conventions. It represents an easily-recognizable name for the hardware + // component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "eth0" + HwNameKey = attribute.Key("hw.name") + + // HwNetworkLogicalAddressesKey is the attribute Key conforming to the + // "hw.network.logical_addresses" semantic conventions. It represents the + // logical addresses of the adapter (e.g. IP address, or WWPN). + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "172.16.8.21", "57.11.193.42" + HwNetworkLogicalAddressesKey = attribute.Key("hw.network.logical_addresses") + + // HwNetworkPhysicalAddressKey is the attribute Key conforming to the + // "hw.network.physical_address" semantic conventions. It represents the + // physical address of the adapter (e.g. MAC address, or WWNN). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "00-90-F5-E9-7B-36" + HwNetworkPhysicalAddressKey = attribute.Key("hw.network.physical_address") + + // HwParentKey is the attribute Key conforming to the "hw.parent" semantic + // conventions. It represents the unique identifier of the parent component + // (typically the `hw.id` attribute of the enclosure, or disk controller). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "dellStorage_perc_0" + HwParentKey = attribute.Key("hw.parent") + + // HwPhysicalDiskSmartAttributeKey is the attribute Key conforming to the + // "hw.physical_disk.smart_attribute" semantic conventions. It represents the + // [S.M.A.R.T.] (Self-Monitoring, Analysis, and Reporting Technology) attribute + // of the physical disk. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Spin Retry Count", "Seek Error Rate", "Raw Read Error Rate" + // + // [S.M.A.R.T.]: https://wikipedia.org/wiki/S.M.A.R.T. + HwPhysicalDiskSmartAttributeKey = attribute.Key("hw.physical_disk.smart_attribute") + + // HwPhysicalDiskStateKey is the attribute Key conforming to the + // "hw.physical_disk.state" semantic conventions. It represents the state of the + // physical disk endurance utilization. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + HwPhysicalDiskStateKey = attribute.Key("hw.physical_disk.state") + + // HwPhysicalDiskTypeKey is the attribute Key conforming to the + // "hw.physical_disk.type" semantic conventions. It represents the type of the + // physical disk. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "HDD", "SSD", "10K" + HwPhysicalDiskTypeKey = attribute.Key("hw.physical_disk.type") + + // HwSensorLocationKey is the attribute Key conforming to the + // "hw.sensor_location" semantic conventions. It represents the location of the + // sensor. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cpu0", "ps1", "INLET", "CPU0_DIE", "AMBIENT", "MOTHERBOARD", "PS0 + // V3_3", "MAIN_12V", "CPU_VCORE" + HwSensorLocationKey = attribute.Key("hw.sensor_location") + + // HwSerialNumberKey is the attribute Key conforming to the "hw.serial_number" + // semantic conventions. It represents the serial number of the hardware + // component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CNFCP0123456789" + HwSerialNumberKey = attribute.Key("hw.serial_number") + + // HwStateKey is the attribute Key conforming to the "hw.state" semantic + // conventions. It represents the current state of the component. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + HwStateKey = attribute.Key("hw.state") + + // HwTapeDriveOperationTypeKey is the attribute Key conforming to the + // "hw.tape_drive.operation_type" semantic conventions. It represents the type + // of tape drive operation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + HwTapeDriveOperationTypeKey = attribute.Key("hw.tape_drive.operation_type") + + // HwTypeKey is the attribute Key conforming to the "hw.type" semantic + // conventions. It represents the type of the component. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: Describes the category of the hardware component for which `hw.state` + // is being reported. For example, `hw.type=temperature` along with + // `hw.state=degraded` would indicate that the temperature of the hardware + // component has been reported as `degraded`. + HwTypeKey = attribute.Key("hw.type") + + // HwVendorKey is the attribute Key conforming to the "hw.vendor" semantic + // conventions. It represents the vendor name of the hardware component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Dell", "HP", "Intel", "AMD", "LSI", "Lenovo" + HwVendorKey = attribute.Key("hw.vendor") +) + +// HwBatteryCapacity returns an attribute KeyValue conforming to the +// "hw.battery.capacity" semantic conventions. It represents the design capacity +// in Watts-hours or Ampere-hours. +func HwBatteryCapacity(val string) attribute.KeyValue { + return HwBatteryCapacityKey.String(val) +} + +// HwBatteryChemistry returns an attribute KeyValue conforming to the +// "hw.battery.chemistry" semantic conventions. It represents the battery +// [chemistry], e.g. Lithium-Ion, Nickel-Cadmium, etc. +// +// [chemistry]: https://schemas.dmtf.org/wbem/cim-html/2.31.0/CIM_Battery.html +func HwBatteryChemistry(val string) attribute.KeyValue { + return HwBatteryChemistryKey.String(val) +} + +// HwBiosVersion returns an attribute KeyValue conforming to the +// "hw.bios_version" semantic conventions. It represents the BIOS version of the +// hardware component. +func HwBiosVersion(val string) attribute.KeyValue { + return HwBiosVersionKey.String(val) +} + +// HwDriverVersion returns an attribute KeyValue conforming to the +// "hw.driver_version" semantic conventions. It represents the driver version for +// the hardware component. +func HwDriverVersion(val string) attribute.KeyValue { + return HwDriverVersionKey.String(val) +} + +// HwEnclosureType returns an attribute KeyValue conforming to the +// "hw.enclosure.type" semantic conventions. It represents the type of the +// enclosure (useful for modular systems). +func HwEnclosureType(val string) attribute.KeyValue { + return HwEnclosureTypeKey.String(val) +} + +// HwFirmwareVersion returns an attribute KeyValue conforming to the +// "hw.firmware_version" semantic conventions. It represents the firmware version +// of the hardware component. +func HwFirmwareVersion(val string) attribute.KeyValue { + return HwFirmwareVersionKey.String(val) +} + +// HwID returns an attribute KeyValue conforming to the "hw.id" semantic +// conventions. It represents an identifier for the hardware component, unique +// within the monitored host. +func HwID(val string) attribute.KeyValue { + return HwIDKey.String(val) +} + +// HwLogicalDiskRaidLevel returns an attribute KeyValue conforming to the +// "hw.logical_disk.raid_level" semantic conventions. It represents the RAID +// Level of the logical disk. +func HwLogicalDiskRaidLevel(val string) attribute.KeyValue { + return HwLogicalDiskRaidLevelKey.String(val) +} + +// HwMemoryType returns an attribute KeyValue conforming to the "hw.memory.type" +// semantic conventions. It represents the type of the memory module. +func HwMemoryType(val string) attribute.KeyValue { + return HwMemoryTypeKey.String(val) +} + +// HwModel returns an attribute KeyValue conforming to the "hw.model" semantic +// conventions. It represents the descriptive model name of the hardware +// component. +func HwModel(val string) attribute.KeyValue { + return HwModelKey.String(val) +} + +// HwName returns an attribute KeyValue conforming to the "hw.name" semantic +// conventions. It represents an easily-recognizable name for the hardware +// component. +func HwName(val string) attribute.KeyValue { + return HwNameKey.String(val) +} + +// HwNetworkLogicalAddresses returns an attribute KeyValue conforming to the +// "hw.network.logical_addresses" semantic conventions. It represents the logical +// addresses of the adapter (e.g. IP address, or WWPN). +func HwNetworkLogicalAddresses(val ...string) attribute.KeyValue { + return HwNetworkLogicalAddressesKey.StringSlice(val) +} + +// HwNetworkPhysicalAddress returns an attribute KeyValue conforming to the +// "hw.network.physical_address" semantic conventions. It represents the physical +// address of the adapter (e.g. MAC address, or WWNN). +func HwNetworkPhysicalAddress(val string) attribute.KeyValue { + return HwNetworkPhysicalAddressKey.String(val) +} + +// HwParent returns an attribute KeyValue conforming to the "hw.parent" semantic +// conventions. It represents the unique identifier of the parent component +// (typically the `hw.id` attribute of the enclosure, or disk controller). +func HwParent(val string) attribute.KeyValue { + return HwParentKey.String(val) +} + +// HwPhysicalDiskSmartAttribute returns an attribute KeyValue conforming to the +// "hw.physical_disk.smart_attribute" semantic conventions. It represents the +// [S.M.A.R.T.] (Self-Monitoring, Analysis, and Reporting Technology) attribute +// of the physical disk. +// +// [S.M.A.R.T.]: https://wikipedia.org/wiki/S.M.A.R.T. +func HwPhysicalDiskSmartAttribute(val string) attribute.KeyValue { + return HwPhysicalDiskSmartAttributeKey.String(val) +} + +// HwPhysicalDiskType returns an attribute KeyValue conforming to the +// "hw.physical_disk.type" semantic conventions. It represents the type of the +// physical disk. +func HwPhysicalDiskType(val string) attribute.KeyValue { + return HwPhysicalDiskTypeKey.String(val) +} + +// HwSensorLocation returns an attribute KeyValue conforming to the +// "hw.sensor_location" semantic conventions. It represents the location of the +// sensor. +func HwSensorLocation(val string) attribute.KeyValue { + return HwSensorLocationKey.String(val) +} + +// HwSerialNumber returns an attribute KeyValue conforming to the +// "hw.serial_number" semantic conventions. It represents the serial number of +// the hardware component. +func HwSerialNumber(val string) attribute.KeyValue { + return HwSerialNumberKey.String(val) +} + +// HwVendor returns an attribute KeyValue conforming to the "hw.vendor" semantic +// conventions. It represents the vendor name of the hardware component. +func HwVendor(val string) attribute.KeyValue { + return HwVendorKey.String(val) +} + +// Enum values for hw.battery.state +var ( + // Charging + // Stability: development + HwBatteryStateCharging = HwBatteryStateKey.String("charging") + // Discharging + // Stability: development + HwBatteryStateDischarging = HwBatteryStateKey.String("discharging") +) + +// Enum values for hw.gpu.task +var ( + // Decoder + // Stability: development + HwGpuTaskDecoder = HwGpuTaskKey.String("decoder") + // Encoder + // Stability: development + HwGpuTaskEncoder = HwGpuTaskKey.String("encoder") + // General + // Stability: development + HwGpuTaskGeneral = HwGpuTaskKey.String("general") +) + +// Enum values for hw.limit_type +var ( + // Critical + // Stability: development + HwLimitTypeCritical = HwLimitTypeKey.String("critical") + // Degraded + // Stability: development + HwLimitTypeDegraded = HwLimitTypeKey.String("degraded") + // High Critical + // Stability: development + HwLimitTypeHighCritical = HwLimitTypeKey.String("high.critical") + // High Degraded + // Stability: development + HwLimitTypeHighDegraded = HwLimitTypeKey.String("high.degraded") + // Low Critical + // Stability: development + HwLimitTypeLowCritical = HwLimitTypeKey.String("low.critical") + // Low Degraded + // Stability: development + HwLimitTypeLowDegraded = HwLimitTypeKey.String("low.degraded") + // Maximum + // Stability: development + HwLimitTypeMax = HwLimitTypeKey.String("max") + // Throttled + // Stability: development + HwLimitTypeThrottled = HwLimitTypeKey.String("throttled") + // Turbo + // Stability: development + HwLimitTypeTurbo = HwLimitTypeKey.String("turbo") +) + +// Enum values for hw.logical_disk.state +var ( + // Used + // Stability: development + HwLogicalDiskStateUsed = HwLogicalDiskStateKey.String("used") + // Free + // Stability: development + HwLogicalDiskStateFree = HwLogicalDiskStateKey.String("free") +) + +// Enum values for hw.physical_disk.state +var ( + // Remaining + // Stability: development + HwPhysicalDiskStateRemaining = HwPhysicalDiskStateKey.String("remaining") +) + +// Enum values for hw.state +var ( + // Degraded + // Stability: development + HwStateDegraded = HwStateKey.String("degraded") + // Failed + // Stability: development + HwStateFailed = HwStateKey.String("failed") + // Needs Cleaning + // Stability: development + HwStateNeedsCleaning = HwStateKey.String("needs_cleaning") + // OK + // Stability: development + HwStateOk = HwStateKey.String("ok") + // Predicted Failure + // Stability: development + HwStatePredictedFailure = HwStateKey.String("predicted_failure") +) + +// Enum values for hw.tape_drive.operation_type +var ( + // Mount + // Stability: development + HwTapeDriveOperationTypeMount = HwTapeDriveOperationTypeKey.String("mount") + // Unmount + // Stability: development + HwTapeDriveOperationTypeUnmount = HwTapeDriveOperationTypeKey.String("unmount") + // Clean + // Stability: development + HwTapeDriveOperationTypeClean = HwTapeDriveOperationTypeKey.String("clean") +) + +// Enum values for hw.type +var ( + // Battery + // Stability: development + HwTypeBattery = HwTypeKey.String("battery") + // CPU + // Stability: development + HwTypeCPU = HwTypeKey.String("cpu") + // Disk controller + // Stability: development + HwTypeDiskController = HwTypeKey.String("disk_controller") + // Enclosure + // Stability: development + HwTypeEnclosure = HwTypeKey.String("enclosure") + // Fan + // Stability: development + HwTypeFan = HwTypeKey.String("fan") + // GPU + // Stability: development + HwTypeGpu = HwTypeKey.String("gpu") + // Logical disk + // Stability: development + HwTypeLogicalDisk = HwTypeKey.String("logical_disk") + // Memory + // Stability: development + HwTypeMemory = HwTypeKey.String("memory") + // Network + // Stability: development + HwTypeNetwork = HwTypeKey.String("network") + // Physical disk + // Stability: development + HwTypePhysicalDisk = HwTypeKey.String("physical_disk") + // Power supply + // Stability: development + HwTypePowerSupply = HwTypeKey.String("power_supply") + // Tape drive + // Stability: development + HwTypeTapeDrive = HwTypeKey.String("tape_drive") + // Temperature + // Stability: development + HwTypeTemperature = HwTypeKey.String("temperature") + // Voltage + // Stability: development + HwTypeVoltage = HwTypeKey.String("voltage") +) + +// Namespace: ios +const ( + // IOSAppStateKey is the attribute Key conforming to the "ios.app.state" + // semantic conventions. It represents the this attribute represents the state + // of the application. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: The iOS lifecycle states are defined in the + // [UIApplicationDelegate documentation], and from which the `OS terminology` + // column values are derived. + // + // [UIApplicationDelegate documentation]: https://developer.apple.com/documentation/uikit/uiapplicationdelegate + IOSAppStateKey = attribute.Key("ios.app.state") +) + +// Enum values for ios.app.state +var ( + // The app has become `active`. Associated with UIKit notification + // `applicationDidBecomeActive`. + // + // Stability: development + IOSAppStateActive = IOSAppStateKey.String("active") + // The app is now `inactive`. Associated with UIKit notification + // `applicationWillResignActive`. + // + // Stability: development + IOSAppStateInactive = IOSAppStateKey.String("inactive") + // The app is now in the background. This value is associated with UIKit + // notification `applicationDidEnterBackground`. + // + // Stability: development + IOSAppStateBackground = IOSAppStateKey.String("background") + // The app is now in the foreground. This value is associated with UIKit + // notification `applicationWillEnterForeground`. + // + // Stability: development + IOSAppStateForeground = IOSAppStateKey.String("foreground") + // The app is about to terminate. Associated with UIKit notification + // `applicationWillTerminate`. + // + // Stability: development + IOSAppStateTerminate = IOSAppStateKey.String("terminate") +) + +// Namespace: jsonrpc +const ( + // JSONRPCProtocolVersionKey is the attribute Key conforming to the + // "jsonrpc.protocol.version" semantic conventions. It represents the protocol + // version, as specified in the `jsonrpc` property of the request and its + // corresponding response. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2.0", "1.0" + JSONRPCProtocolVersionKey = attribute.Key("jsonrpc.protocol.version") + + // JSONRPCRequestIDKey is the attribute Key conforming to the + // "jsonrpc.request.id" semantic conventions. It represents a string + // representation of the `id` property of the request and its corresponding + // response. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "10", "request-7" + // Note: Under the [JSON-RPC specification], the `id` property may be a string, + // number, null, or omitted entirely. When omitted, the request is treated as a + // notification. Using `null` is not equivalent to omitting the `id`, but it is + // discouraged. + // Instrumentations SHOULD NOT capture this attribute when the `id` is `null` or + // omitted. + // + // [JSON-RPC specification]: https://www.jsonrpc.org/specification + JSONRPCRequestIDKey = attribute.Key("jsonrpc.request.id") +) + +// JSONRPCProtocolVersion returns an attribute KeyValue conforming to the +// "jsonrpc.protocol.version" semantic conventions. It represents the protocol +// version, as specified in the `jsonrpc` property of the request and its +// corresponding response. +func JSONRPCProtocolVersion(val string) attribute.KeyValue { + return JSONRPCProtocolVersionKey.String(val) +} + +// JSONRPCRequestID returns an attribute KeyValue conforming to the +// "jsonrpc.request.id" semantic conventions. It represents a string +// representation of the `id` property of the request and its corresponding +// response. +func JSONRPCRequestID(val string) attribute.KeyValue { + return JSONRPCRequestIDKey.String(val) +} + +// Namespace: k8s +const ( + // K8SClusterNameKey is the attribute Key conforming to the "k8s.cluster.name" + // semantic conventions. It represents the name of the cluster. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "opentelemetry-cluster" + K8SClusterNameKey = attribute.Key("k8s.cluster.name") + + // K8SClusterUIDKey is the attribute Key conforming to the "k8s.cluster.uid" + // semantic conventions. It represents a pseudo-ID for the cluster, set to the + // UID of the `kube-system` namespace. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: K8s doesn't have support for obtaining a cluster ID. If this is ever + // added, we will recommend collecting the `k8s.cluster.uid` through the + // official APIs. In the meantime, we are able to use the `uid` of the + // `kube-system` namespace as a proxy for cluster ID. Read on for the + // rationale. + // + // Every object created in a K8s cluster is assigned a distinct UID. The + // `kube-system` namespace is used by Kubernetes itself and will exist + // for the lifetime of the cluster. Using the `uid` of the `kube-system` + // namespace is a reasonable proxy for the K8s ClusterID as it will only + // change if the cluster is rebuilt. Furthermore, Kubernetes UIDs are + // UUIDs as standardized by + // [ISO/IEC 9834-8 and ITU-T X.667]. + // Which states: + // + // > If generated according to one of the mechanisms defined in Rec. + // > ITU-T X.667 | ISO/IEC 9834-8, a UUID is either guaranteed to be + // > different from all other UUIDs generated before 3603 A.D., or is + // > extremely likely to be different (depending on the mechanism chosen). + // + // Therefore, UIDs between clusters should be extremely unlikely to + // conflict. + // + // [ISO/IEC 9834-8 and ITU-T X.667]: https://www.itu.int/ITU-T/studygroups/com17/oid.html + K8SClusterUIDKey = attribute.Key("k8s.cluster.uid") + + // K8SContainerNameKey is the attribute Key conforming to the + // "k8s.container.name" semantic conventions. It represents the name of the + // Container from Pod specification, must be unique within a Pod. Container + // runtime usually uses different globally unique name (`container.name`). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "redis" + K8SContainerNameKey = attribute.Key("k8s.container.name") + + // K8SContainerRestartCountKey is the attribute Key conforming to the + // "k8s.container.restart_count" semantic conventions. It represents the number + // of times the container was restarted. This attribute can be used to identify + // a particular container (running or stopped) within a container spec. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: + K8SContainerRestartCountKey = attribute.Key("k8s.container.restart_count") + + // K8SContainerStatusLastTerminatedReasonKey is the attribute Key conforming to + // the "k8s.container.status.last_terminated_reason" semantic conventions. It + // represents the last terminated reason of the Container. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Evicted", "Error" + K8SContainerStatusLastTerminatedReasonKey = attribute.Key("k8s.container.status.last_terminated_reason") + + // K8SContainerStatusReasonKey is the attribute Key conforming to the + // "k8s.container.status.reason" semantic conventions. It represents the reason + // for the container state. Corresponds to the `reason` field of the: + // [K8s ContainerStateWaiting] or [K8s ContainerStateTerminated]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ContainerCreating", "CrashLoopBackOff", + // "CreateContainerConfigError", "ErrImagePull", "ImagePullBackOff", + // "OOMKilled", "Completed", "Error", "ContainerCannotRun" + // + // [K8s ContainerStateWaiting]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstatewaiting-v1-core + // [K8s ContainerStateTerminated]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstateterminated-v1-core + K8SContainerStatusReasonKey = attribute.Key("k8s.container.status.reason") + + // K8SContainerStatusStateKey is the attribute Key conforming to the + // "k8s.container.status.state" semantic conventions. It represents the state of + // the container. [K8s ContainerState]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "terminated", "running", "waiting" + // + // [K8s ContainerState]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstate-v1-core + K8SContainerStatusStateKey = attribute.Key("k8s.container.status.state") + + // K8SCronJobNameKey is the attribute Key conforming to the "k8s.cronjob.name" + // semantic conventions. It represents the name of the CronJob. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "opentelemetry" + K8SCronJobNameKey = attribute.Key("k8s.cronjob.name") + + // K8SCronJobUIDKey is the attribute Key conforming to the "k8s.cronjob.uid" + // semantic conventions. It represents the UID of the CronJob. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SCronJobUIDKey = attribute.Key("k8s.cronjob.uid") + + // K8SDaemonSetNameKey is the attribute Key conforming to the + // "k8s.daemonset.name" semantic conventions. It represents the name of the + // DaemonSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "opentelemetry" + K8SDaemonSetNameKey = attribute.Key("k8s.daemonset.name") + + // K8SDaemonSetUIDKey is the attribute Key conforming to the "k8s.daemonset.uid" + // semantic conventions. It represents the UID of the DaemonSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SDaemonSetUIDKey = attribute.Key("k8s.daemonset.uid") + + // K8SDeploymentNameKey is the attribute Key conforming to the + // "k8s.deployment.name" semantic conventions. It represents the name of the + // Deployment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "opentelemetry" + K8SDeploymentNameKey = attribute.Key("k8s.deployment.name") + + // K8SDeploymentUIDKey is the attribute Key conforming to the + // "k8s.deployment.uid" semantic conventions. It represents the UID of the + // Deployment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SDeploymentUIDKey = attribute.Key("k8s.deployment.uid") + + // K8SHPAMetricTypeKey is the attribute Key conforming to the + // "k8s.hpa.metric.type" semantic conventions. It represents the type of metric + // source for the horizontal pod autoscaler. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Resource", "ContainerResource" + // Note: This attribute reflects the `type` field of spec.metrics[] in the HPA. + K8SHPAMetricTypeKey = attribute.Key("k8s.hpa.metric.type") + + // K8SHPANameKey is the attribute Key conforming to the "k8s.hpa.name" semantic + // conventions. It represents the name of the horizontal pod autoscaler. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SHPANameKey = attribute.Key("k8s.hpa.name") + + // K8SHPAScaletargetrefAPIVersionKey is the attribute Key conforming to the + // "k8s.hpa.scaletargetref.api_version" semantic conventions. It represents the + // API version of the target resource to scale for the HorizontalPodAutoscaler. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "apps/v1", "autoscaling/v2" + // Note: This maps to the `apiVersion` field in the `scaleTargetRef` of the HPA + // spec. + K8SHPAScaletargetrefAPIVersionKey = attribute.Key("k8s.hpa.scaletargetref.api_version") + + // K8SHPAScaletargetrefKindKey is the attribute Key conforming to the + // "k8s.hpa.scaletargetref.kind" semantic conventions. It represents the kind of + // the target resource to scale for the HorizontalPodAutoscaler. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Deployment", "StatefulSet" + // Note: This maps to the `kind` field in the `scaleTargetRef` of the HPA spec. + K8SHPAScaletargetrefKindKey = attribute.Key("k8s.hpa.scaletargetref.kind") + + // K8SHPAScaletargetrefNameKey is the attribute Key conforming to the + // "k8s.hpa.scaletargetref.name" semantic conventions. It represents the name of + // the target resource to scale for the HorizontalPodAutoscaler. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-deployment", "my-statefulset" + // Note: This maps to the `name` field in the `scaleTargetRef` of the HPA spec. + K8SHPAScaletargetrefNameKey = attribute.Key("k8s.hpa.scaletargetref.name") + + // K8SHPAUIDKey is the attribute Key conforming to the "k8s.hpa.uid" semantic + // conventions. It represents the UID of the horizontal pod autoscaler. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SHPAUIDKey = attribute.Key("k8s.hpa.uid") + + // K8SHugepageSizeKey is the attribute Key conforming to the "k8s.hugepage.size" + // semantic conventions. It represents the size (identifier) of the K8s huge + // page. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2Mi" + K8SHugepageSizeKey = attribute.Key("k8s.hugepage.size") + + // K8SJobNameKey is the attribute Key conforming to the "k8s.job.name" semantic + // conventions. It represents the name of the Job. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "opentelemetry" + K8SJobNameKey = attribute.Key("k8s.job.name") + + // K8SJobUIDKey is the attribute Key conforming to the "k8s.job.uid" semantic + // conventions. It represents the UID of the Job. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SJobUIDKey = attribute.Key("k8s.job.uid") + + // K8SNamespaceNameKey is the attribute Key conforming to the + // "k8s.namespace.name" semantic conventions. It represents the name of the + // namespace that the pod is running in. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "default" + K8SNamespaceNameKey = attribute.Key("k8s.namespace.name") + + // K8SNamespacePhaseKey is the attribute Key conforming to the + // "k8s.namespace.phase" semantic conventions. It represents the phase of the + // K8s namespace. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "active", "terminating" + // Note: This attribute aligns with the `phase` field of the + // [K8s NamespaceStatus] + // + // [K8s NamespaceStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#namespacestatus-v1-core + K8SNamespacePhaseKey = attribute.Key("k8s.namespace.phase") + + // K8SNodeConditionStatusKey is the attribute Key conforming to the + // "k8s.node.condition.status" semantic conventions. It represents the status of + // the condition, one of True, False, Unknown. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "true", "false", "unknown" + // Note: This attribute aligns with the `status` field of the + // [NodeCondition] + // + // [NodeCondition]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#nodecondition-v1-core + K8SNodeConditionStatusKey = attribute.Key("k8s.node.condition.status") + + // K8SNodeConditionTypeKey is the attribute Key conforming to the + // "k8s.node.condition.type" semantic conventions. It represents the condition + // type of a K8s Node. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Ready", "DiskPressure" + // Note: K8s Node conditions as described + // by [K8s documentation]. + // + // This attribute aligns with the `type` field of the + // [NodeCondition] + // + // The set of possible values is not limited to those listed here. Managed + // Kubernetes environments, + // or custom controllers MAY introduce additional node condition types. + // When this occurs, the exact value as reported by the Kubernetes API SHOULD be + // used. + // + // [K8s documentation]: https://v1-32.docs.kubernetes.io/docs/reference/node/node-status/#condition + // [NodeCondition]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#nodecondition-v1-core + K8SNodeConditionTypeKey = attribute.Key("k8s.node.condition.type") + + // K8SNodeNameKey is the attribute Key conforming to the "k8s.node.name" + // semantic conventions. It represents the name of the Node. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "node-1" + K8SNodeNameKey = attribute.Key("k8s.node.name") + + // K8SNodeSystemContainerNameKey is the attribute Key conforming to the + // "k8s.node.system_container.name" semantic conventions. It represents the name + // of the system container running on the K8s Node. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "kubelet", "runtime", "pods", "misc" + K8SNodeSystemContainerNameKey = attribute.Key("k8s.node.system_container.name") + + // K8SNodeUIDKey is the attribute Key conforming to the "k8s.node.uid" semantic + // conventions. It represents the UID of the Node. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "1eb3a0c6-0477-4080-a9cb-0cb7db65c6a2" + K8SNodeUIDKey = attribute.Key("k8s.node.uid") + + // K8SPersistentvolumeNameKey is the attribute Key conforming to the + // "k8s.persistentvolume.name" semantic conventions. It represents the name of + // the PersistentVolume. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "pv-data-01" + K8SPersistentvolumeNameKey = attribute.Key("k8s.persistentvolume.name") + + // K8SPersistentvolumeReclaimPolicyKey is the attribute Key conforming to the + // "k8s.persistentvolume.reclaim_policy" semantic conventions. It represents the + // reclaim policy of the PersistentVolume. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Delete", "Retain", "Recycle" + // Note: This attribute aligns with the `persistentVolumeReclaimPolicy` field of + // the + // [K8s PersistentVolumeSpec]. + // + // [K8s PersistentVolumeSpec]: https://kubernetes.io/docs/reference/kubernetes-api/config-and-storage-resources/persistent-volume-v1/#PersistentVolumeSpec + K8SPersistentvolumeReclaimPolicyKey = attribute.Key("k8s.persistentvolume.reclaim_policy") + + // K8SPersistentvolumeStatusPhaseKey is the attribute Key conforming to the + // "k8s.persistentvolume.status.phase" semantic conventions. It represents the + // phase of the PersistentVolume. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Pending", "Available", "Bound", "Released", "Failed" + // Note: This attribute aligns with the `phase` field of the + // [K8s PersistentVolumeStatus]. + // + // [K8s PersistentVolumeStatus]: https://kubernetes.io/docs/reference/kubernetes-api/config-and-storage-resources/persistent-volume-v1/#PersistentVolumeStatus + K8SPersistentvolumeStatusPhaseKey = attribute.Key("k8s.persistentvolume.status.phase") + + // K8SPersistentvolumeUIDKey is the attribute Key conforming to the + // "k8s.persistentvolume.uid" semantic conventions. It represents the UID of the + // PersistentVolume. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SPersistentvolumeUIDKey = attribute.Key("k8s.persistentvolume.uid") + + // K8SPersistentvolumeclaimNameKey is the attribute Key conforming to the + // "k8s.persistentvolumeclaim.name" semantic conventions. It represents the name + // of the PersistentVolumeClaim. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "pvc-data-01" + K8SPersistentvolumeclaimNameKey = attribute.Key("k8s.persistentvolumeclaim.name") + + // K8SPersistentvolumeclaimStatusPhaseKey is the attribute Key conforming to the + // "k8s.persistentvolumeclaim.status.phase" semantic conventions. It represents + // the phase of the PersistentVolumeClaim. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Pending", "Bound", "Lost" + // Note: This attribute aligns with the `phase` field of the + // [K8s PersistentVolumeClaimStatus]. + // + // [K8s PersistentVolumeClaimStatus]: https://kubernetes.io/docs/reference/kubernetes-api/config-and-storage-resources/persistent-volume-claim-v1/#PersistentVolumeClaimStatus + K8SPersistentvolumeclaimStatusPhaseKey = attribute.Key("k8s.persistentvolumeclaim.status.phase") + + // K8SPersistentvolumeclaimUIDKey is the attribute Key conforming to the + // "k8s.persistentvolumeclaim.uid" semantic conventions. It represents the UID + // of the PersistentVolumeClaim. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SPersistentvolumeclaimUIDKey = attribute.Key("k8s.persistentvolumeclaim.uid") + + // K8SPodHostnameKey is the attribute Key conforming to the "k8s.pod.hostname" + // semantic conventions. It represents the specifies the hostname of the Pod. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "collector-gateway" + // Note: The K8s Pod spec has an optional hostname field, which can be used to + // specify a hostname. + // Refer to [K8s docs] + // for more information about this field. + // + // This attribute aligns with the `hostname` field of the + // [K8s PodSpec]. + // + // [K8s docs]: https://kubernetes.io/docs/concepts/services-networking/dns-pod-service/#pod-hostname-and-subdomain-field + // [K8s PodSpec]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podspec-v1-core + K8SPodHostnameKey = attribute.Key("k8s.pod.hostname") + + // K8SPodIPKey is the attribute Key conforming to the "k8s.pod.ip" semantic + // conventions. It represents the IP address allocated to the Pod. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "172.18.0.2" + // Note: This attribute aligns with the `podIP` field of the + // [K8s PodStatus]. + // + // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podstatus-v1-core + K8SPodIPKey = attribute.Key("k8s.pod.ip") + + // K8SPodNameKey is the attribute Key conforming to the "k8s.pod.name" semantic + // conventions. It represents the name of the Pod. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "opentelemetry-pod-autoconf" + K8SPodNameKey = attribute.Key("k8s.pod.name") + + // K8SPodStartTimeKey is the attribute Key conforming to the + // "k8s.pod.start_time" semantic conventions. It represents the start timestamp + // of the Pod. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "2025-12-04T08:41:03Z" + // Note: Date and time at which the object was acknowledged by the Kubelet. + // This is before the Kubelet pulled the container image(s) for the pod. + // + // This attribute aligns with the `startTime` field of the + // [K8s PodStatus], + // in ISO 8601 (RFC 3339 compatible) format. + // + // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podstatus-v1-core + K8SPodStartTimeKey = attribute.Key("k8s.pod.start_time") + + // K8SPodStatusPhaseKey is the attribute Key conforming to the + // "k8s.pod.status.phase" semantic conventions. It represents the phase for the + // pod. Corresponds to the `phase` field of the: [K8s PodStatus]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Pending", "Running" + // + // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.33/#podstatus-v1-core + K8SPodStatusPhaseKey = attribute.Key("k8s.pod.status.phase") + + // K8SPodStatusReasonKey is the attribute Key conforming to the + // "k8s.pod.status.reason" semantic conventions. It represents the reason for + // the pod state. Corresponds to the `reason` field of the: [K8s PodStatus]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Evicted", "NodeAffinity" + // + // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.33/#podstatus-v1-core + K8SPodStatusReasonKey = attribute.Key("k8s.pod.status.reason") + + // K8SPodUIDKey is the attribute Key conforming to the "k8s.pod.uid" semantic + // conventions. It represents the UID of the Pod. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SPodUIDKey = attribute.Key("k8s.pod.uid") + + // K8SReplicaSetNameKey is the attribute Key conforming to the + // "k8s.replicaset.name" semantic conventions. It represents the name of the + // ReplicaSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "opentelemetry" + K8SReplicaSetNameKey = attribute.Key("k8s.replicaset.name") + + // K8SReplicaSetUIDKey is the attribute Key conforming to the + // "k8s.replicaset.uid" semantic conventions. It represents the UID of the + // ReplicaSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SReplicaSetUIDKey = attribute.Key("k8s.replicaset.uid") + + // K8SReplicationControllerNameKey is the attribute Key conforming to the + // "k8s.replicationcontroller.name" semantic conventions. It represents the name + // of the replication controller. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SReplicationControllerNameKey = attribute.Key("k8s.replicationcontroller.name") + + // K8SReplicationControllerUIDKey is the attribute Key conforming to the + // "k8s.replicationcontroller.uid" semantic conventions. It represents the UID + // of the replication controller. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SReplicationControllerUIDKey = attribute.Key("k8s.replicationcontroller.uid") + + // K8SResourceQuotaNameKey is the attribute Key conforming to the + // "k8s.resourcequota.name" semantic conventions. It represents the name of the + // resource quota. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SResourceQuotaNameKey = attribute.Key("k8s.resourcequota.name") + + // K8SResourceQuotaResourceNameKey is the attribute Key conforming to the + // "k8s.resourcequota.resource_name" semantic conventions. It represents the + // name of the K8s resource a resource quota defines. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "count/replicationcontrollers" + // Note: The value for this attribute can be either the full + // `count/[.]` string (e.g., count/deployments.apps, + // count/pods), or, for certain core Kubernetes resources, just the resource + // name (e.g., pods, services, configmaps). Both forms are supported by + // Kubernetes for object count quotas. See + // [Kubernetes Resource Quotas documentation] for more details. + // + // [Kubernetes Resource Quotas documentation]: https://kubernetes.io/docs/concepts/policy/resource-quotas/#quota-on-object-count + K8SResourceQuotaResourceNameKey = attribute.Key("k8s.resourcequota.resource_name") + + // K8SResourceQuotaUIDKey is the attribute Key conforming to the + // "k8s.resourcequota.uid" semantic conventions. It represents the UID of the + // resource quota. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SResourceQuotaUIDKey = attribute.Key("k8s.resourcequota.uid") + + // K8SServiceEndpointAddressTypeKey is the attribute Key conforming to the + // "k8s.service.endpoint.address_type" semantic conventions. It represents the + // address type of the service endpoint. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "IPv4", "IPv6" + // Note: The network address family or type of the endpoint. + // This attribute aligns with the `addressType` field of the + // [K8s EndpointSlice]. + // It is used to differentiate metrics when a Service is backed by multiple + // address types + // (e.g., in dual-stack clusters). + // + // [K8s EndpointSlice]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/endpoint-slice-v1/ + K8SServiceEndpointAddressTypeKey = attribute.Key("k8s.service.endpoint.address_type") + + // K8SServiceEndpointConditionKey is the attribute Key conforming to the + // "k8s.service.endpoint.condition" semantic conventions. It represents the + // condition of the service endpoint. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ready", "serving", "terminating" + // Note: The current operational condition of the service endpoint. + // An endpoint can have multiple conditions set at once (e.g., both `serving` + // and `terminating` during rollout). + // This attribute aligns with the condition fields in the [K8s EndpointSlice]. + // + // [K8s EndpointSlice]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/endpoint-slice-v1/ + K8SServiceEndpointConditionKey = attribute.Key("k8s.service.endpoint.condition") + + // K8SServiceEndpointZoneKey is the attribute Key conforming to the + // "k8s.service.endpoint.zone" semantic conventions. It represents the zone of + // the service endpoint. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "us-east-1a", "us-west-2b", "zone-a", "" + // Note: The zone where the endpoint is located, typically corresponding to a + // failure domain. + // This attribute aligns with the `zone` field of endpoints in the + // [K8s EndpointSlice]. + // It enables zone-aware monitoring of service endpoint distribution and + // supports + // features like [Topology Aware Routing]. + // + // If the zone is not populated (e.g., nodes without the + // `topology.kubernetes.io/zone` label), + // the attribute value will be an empty string. + // + // [K8s EndpointSlice]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/endpoint-slice-v1/ + // [Topology Aware Routing]: https://kubernetes.io/docs/concepts/services-networking/topology-aware-routing/ + K8SServiceEndpointZoneKey = attribute.Key("k8s.service.endpoint.zone") + + // K8SServiceNameKey is the attribute Key conforming to the "k8s.service.name" + // semantic conventions. It represents the name of the Service. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-service" + K8SServiceNameKey = attribute.Key("k8s.service.name") + + // K8SServicePublishNotReadyAddressesKey is the attribute Key conforming to the + // "k8s.service.publish_not_ready_addresses" semantic conventions. It represents + // the whether the Service publishes not-ready endpoints. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: true, false + // Note: Whether the Service is configured to publish endpoints before the pods + // are ready. + // This attribute is typically used to indicate that a Service (such as a + // headless + // Service for a StatefulSet) allows peer discovery before pods pass their + // readiness probes. + // It aligns with the `publishNotReadyAddresses` field of the + // [K8s ServiceSpec]. + // + // [K8s ServiceSpec]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/service-v1/#ServiceSpec + K8SServicePublishNotReadyAddressesKey = attribute.Key("k8s.service.publish_not_ready_addresses") + + // K8SServiceTrafficDistributionKey is the attribute Key conforming to the + // "k8s.service.traffic_distribution" semantic conventions. It represents the + // traffic distribution policy for the Service. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "PreferSameZone", "PreferSameNode" + // Note: Specifies how traffic is distributed to endpoints for this Service. + // This attribute aligns with the `trafficDistribution` field of the + // [K8s ServiceSpec]. + // Known values include `PreferSameZone` (prefer endpoints in the same zone as + // the client) and + // `PreferSameNode` (prefer endpoints on the same node, fallback to same zone, + // then cluster-wide). + // If this field is not set on the Service, the attribute SHOULD NOT be emitted. + // When not set, Kubernetes distributes traffic evenly across all endpoints + // cluster-wide. + // + // [K8s ServiceSpec]: https://kubernetes.io/docs/reference/networking/virtual-ips/#traffic-distribution + K8SServiceTrafficDistributionKey = attribute.Key("k8s.service.traffic_distribution") + + // K8SServiceTypeKey is the attribute Key conforming to the "k8s.service.type" + // semantic conventions. It represents the type of the Kubernetes Service. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ClusterIP", "NodePort", "LoadBalancer" + // Note: This attribute aligns with the `type` field of the + // [K8s ServiceSpec]. + // + // [K8s ServiceSpec]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/service-v1/#ServiceSpec + K8SServiceTypeKey = attribute.Key("k8s.service.type") + + // K8SServiceUIDKey is the attribute Key conforming to the "k8s.service.uid" + // semantic conventions. It represents the UID of the Service. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SServiceUIDKey = attribute.Key("k8s.service.uid") + + // K8SStatefulSetNameKey is the attribute Key conforming to the + // "k8s.statefulset.name" semantic conventions. It represents the name of the + // StatefulSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "opentelemetry" + K8SStatefulSetNameKey = attribute.Key("k8s.statefulset.name") + + // K8SStatefulSetUIDKey is the attribute Key conforming to the + // "k8s.statefulset.uid" semantic conventions. It represents the UID of the + // StatefulSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SStatefulSetUIDKey = attribute.Key("k8s.statefulset.uid") + + // K8SStorageclassNameKey is the attribute Key conforming to the + // "k8s.storageclass.name" semantic conventions. It represents the name of K8s + // [StorageClass] object. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "gold.storageclass.storage.k8s.io" + // + // [StorageClass]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#storageclass-v1-storage-k8s-io + K8SStorageclassNameKey = attribute.Key("k8s.storageclass.name") + + // K8SVolumeNameKey is the attribute Key conforming to the "k8s.volume.name" + // semantic conventions. It represents the name of the K8s volume. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "volume0" + K8SVolumeNameKey = attribute.Key("k8s.volume.name") + + // K8SVolumeTypeKey is the attribute Key conforming to the "k8s.volume.type" + // semantic conventions. It represents the type of the K8s volume. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "emptyDir", "persistentVolumeClaim" + K8SVolumeTypeKey = attribute.Key("k8s.volume.type") +) + +// K8SClusterName returns an attribute KeyValue conforming to the +// "k8s.cluster.name" semantic conventions. It represents the name of the +// cluster. +func K8SClusterName(val string) attribute.KeyValue { + return K8SClusterNameKey.String(val) +} + +// K8SClusterUID returns an attribute KeyValue conforming to the +// "k8s.cluster.uid" semantic conventions. It represents a pseudo-ID for the +// cluster, set to the UID of the `kube-system` namespace. +func K8SClusterUID(val string) attribute.KeyValue { + return K8SClusterUIDKey.String(val) +} + +// K8SContainerName returns an attribute KeyValue conforming to the +// "k8s.container.name" semantic conventions. It represents the name of the +// Container from Pod specification, must be unique within a Pod. Container +// runtime usually uses different globally unique name (`container.name`). +func K8SContainerName(val string) attribute.KeyValue { + return K8SContainerNameKey.String(val) +} + +// K8SContainerRestartCount returns an attribute KeyValue conforming to the +// "k8s.container.restart_count" semantic conventions. It represents the number +// of times the container was restarted. This attribute can be used to identify a +// particular container (running or stopped) within a container spec. +func K8SContainerRestartCount(val int) attribute.KeyValue { + return K8SContainerRestartCountKey.Int(val) +} + +// K8SContainerStatusLastTerminatedReason returns an attribute KeyValue +// conforming to the "k8s.container.status.last_terminated_reason" semantic +// conventions. It represents the last terminated reason of the Container. +func K8SContainerStatusLastTerminatedReason(val string) attribute.KeyValue { + return K8SContainerStatusLastTerminatedReasonKey.String(val) +} + +// K8SCronJobAnnotation returns an attribute KeyValue conforming to the +// "k8s.cronjob.annotation" semantic conventions. It represents the cronjob +// annotation placed on the CronJob, the `` being the annotation name, the +// value being the annotation value. +func K8SCronJobAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.cronjob.annotation."+key, val) +} + +// K8SCronJobLabel returns an attribute KeyValue conforming to the +// "k8s.cronjob.label" semantic conventions. It represents the label placed on +// the CronJob, the `` being the label name, the value being the label +// value. +func K8SCronJobLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.cronjob.label."+key, val) +} + +// K8SCronJobName returns an attribute KeyValue conforming to the +// "k8s.cronjob.name" semantic conventions. It represents the name of the +// CronJob. +func K8SCronJobName(val string) attribute.KeyValue { + return K8SCronJobNameKey.String(val) +} + +// K8SCronJobUID returns an attribute KeyValue conforming to the +// "k8s.cronjob.uid" semantic conventions. It represents the UID of the CronJob. +func K8SCronJobUID(val string) attribute.KeyValue { + return K8SCronJobUIDKey.String(val) +} + +// K8SDaemonSetAnnotation returns an attribute KeyValue conforming to the +// "k8s.daemonset.annotation" semantic conventions. It represents the annotation +// placed on the DaemonSet, the `` being the annotation name, the value +// being the annotation value, even if the value is empty. +func K8SDaemonSetAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.daemonset.annotation."+key, val) +} + +// K8SDaemonSetLabel returns an attribute KeyValue conforming to the +// "k8s.daemonset.label" semantic conventions. It represents the label placed on +// the DaemonSet, the `` being the label name, the value being the label +// value, even if the value is empty. +func K8SDaemonSetLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.daemonset.label."+key, val) +} + +// K8SDaemonSetName returns an attribute KeyValue conforming to the +// "k8s.daemonset.name" semantic conventions. It represents the name of the +// DaemonSet. +func K8SDaemonSetName(val string) attribute.KeyValue { + return K8SDaemonSetNameKey.String(val) +} + +// K8SDaemonSetUID returns an attribute KeyValue conforming to the +// "k8s.daemonset.uid" semantic conventions. It represents the UID of the +// DaemonSet. +func K8SDaemonSetUID(val string) attribute.KeyValue { + return K8SDaemonSetUIDKey.String(val) +} + +// K8SDeploymentAnnotation returns an attribute KeyValue conforming to the +// "k8s.deployment.annotation" semantic conventions. It represents the annotation +// placed on the Deployment, the `` being the annotation name, the value +// being the annotation value, even if the value is empty. +func K8SDeploymentAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.deployment.annotation."+key, val) +} + +// K8SDeploymentLabel returns an attribute KeyValue conforming to the +// "k8s.deployment.label" semantic conventions. It represents the label placed on +// the Deployment, the `` being the label name, the value being the label +// value, even if the value is empty. +func K8SDeploymentLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.deployment.label."+key, val) +} + +// K8SDeploymentName returns an attribute KeyValue conforming to the +// "k8s.deployment.name" semantic conventions. It represents the name of the +// Deployment. +func K8SDeploymentName(val string) attribute.KeyValue { + return K8SDeploymentNameKey.String(val) +} + +// K8SDeploymentUID returns an attribute KeyValue conforming to the +// "k8s.deployment.uid" semantic conventions. It represents the UID of the +// Deployment. +func K8SDeploymentUID(val string) attribute.KeyValue { + return K8SDeploymentUIDKey.String(val) +} + +// K8SHPAMetricType returns an attribute KeyValue conforming to the +// "k8s.hpa.metric.type" semantic conventions. It represents the type of metric +// source for the horizontal pod autoscaler. +func K8SHPAMetricType(val string) attribute.KeyValue { + return K8SHPAMetricTypeKey.String(val) +} + +// K8SHPAName returns an attribute KeyValue conforming to the "k8s.hpa.name" +// semantic conventions. It represents the name of the horizontal pod autoscaler. +func K8SHPAName(val string) attribute.KeyValue { + return K8SHPANameKey.String(val) +} + +// K8SHPAScaletargetrefAPIVersion returns an attribute KeyValue conforming to the +// "k8s.hpa.scaletargetref.api_version" semantic conventions. It represents the +// API version of the target resource to scale for the HorizontalPodAutoscaler. +func K8SHPAScaletargetrefAPIVersion(val string) attribute.KeyValue { + return K8SHPAScaletargetrefAPIVersionKey.String(val) +} + +// K8SHPAScaletargetrefKind returns an attribute KeyValue conforming to the +// "k8s.hpa.scaletargetref.kind" semantic conventions. It represents the kind of +// the target resource to scale for the HorizontalPodAutoscaler. +func K8SHPAScaletargetrefKind(val string) attribute.KeyValue { + return K8SHPAScaletargetrefKindKey.String(val) +} + +// K8SHPAScaletargetrefName returns an attribute KeyValue conforming to the +// "k8s.hpa.scaletargetref.name" semantic conventions. It represents the name of +// the target resource to scale for the HorizontalPodAutoscaler. +func K8SHPAScaletargetrefName(val string) attribute.KeyValue { + return K8SHPAScaletargetrefNameKey.String(val) +} + +// K8SHPAUID returns an attribute KeyValue conforming to the "k8s.hpa.uid" +// semantic conventions. It represents the UID of the horizontal pod autoscaler. +func K8SHPAUID(val string) attribute.KeyValue { + return K8SHPAUIDKey.String(val) +} + +// K8SHugepageSize returns an attribute KeyValue conforming to the +// "k8s.hugepage.size" semantic conventions. It represents the size (identifier) +// of the K8s huge page. +func K8SHugepageSize(val string) attribute.KeyValue { + return K8SHugepageSizeKey.String(val) +} + +// K8SJobAnnotation returns an attribute KeyValue conforming to the +// "k8s.job.annotation" semantic conventions. It represents the annotation placed +// on the Job, the `` being the annotation name, the value being the +// annotation value, even if the value is empty. +func K8SJobAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.job.annotation."+key, val) +} + +// K8SJobLabel returns an attribute KeyValue conforming to the "k8s.job.label" +// semantic conventions. It represents the label placed on the Job, the `` +// being the label name, the value being the label value, even if the value is +// empty. +func K8SJobLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.job.label."+key, val) +} + +// K8SJobName returns an attribute KeyValue conforming to the "k8s.job.name" +// semantic conventions. It represents the name of the Job. +func K8SJobName(val string) attribute.KeyValue { + return K8SJobNameKey.String(val) +} + +// K8SJobUID returns an attribute KeyValue conforming to the "k8s.job.uid" +// semantic conventions. It represents the UID of the Job. +func K8SJobUID(val string) attribute.KeyValue { + return K8SJobUIDKey.String(val) +} + +// K8SNamespaceAnnotation returns an attribute KeyValue conforming to the +// "k8s.namespace.annotation" semantic conventions. It represents the annotation +// placed on the Namespace, the `` being the annotation name, the value +// being the annotation value, even if the value is empty. +func K8SNamespaceAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.namespace.annotation."+key, val) +} + +// K8SNamespaceLabel returns an attribute KeyValue conforming to the +// "k8s.namespace.label" semantic conventions. It represents the label placed on +// the Namespace, the `` being the label name, the value being the label +// value, even if the value is empty. +func K8SNamespaceLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.namespace.label."+key, val) +} + +// K8SNamespaceName returns an attribute KeyValue conforming to the +// "k8s.namespace.name" semantic conventions. It represents the name of the +// namespace that the pod is running in. +func K8SNamespaceName(val string) attribute.KeyValue { + return K8SNamespaceNameKey.String(val) +} + +// K8SNodeAnnotation returns an attribute KeyValue conforming to the +// "k8s.node.annotation" semantic conventions. It represents the annotation +// placed on the Node, the `` being the annotation name, the value being the +// annotation value, even if the value is empty. +func K8SNodeAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.node.annotation."+key, val) +} + +// K8SNodeLabel returns an attribute KeyValue conforming to the "k8s.node.label" +// semantic conventions. It represents the label placed on the Node, the `` +// being the label name, the value being the label value, even if the value is +// empty. +func K8SNodeLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.node.label."+key, val) +} + +// K8SNodeName returns an attribute KeyValue conforming to the "k8s.node.name" +// semantic conventions. It represents the name of the Node. +func K8SNodeName(val string) attribute.KeyValue { + return K8SNodeNameKey.String(val) +} + +// K8SNodeSystemContainerName returns an attribute KeyValue conforming to the +// "k8s.node.system_container.name" semantic conventions. It represents the name +// of the system container running on the K8s Node. +func K8SNodeSystemContainerName(val string) attribute.KeyValue { + return K8SNodeSystemContainerNameKey.String(val) +} + +// K8SNodeUID returns an attribute KeyValue conforming to the "k8s.node.uid" +// semantic conventions. It represents the UID of the Node. +func K8SNodeUID(val string) attribute.KeyValue { + return K8SNodeUIDKey.String(val) +} + +// K8SPersistentvolumeAnnotation returns an attribute KeyValue conforming to the +// "k8s.persistentvolume.annotation" semantic conventions. It represents the +// annotation placed on the PersistentVolume, the `` being the annotation +// name, the value being the annotation value, even if the value is empty. +func K8SPersistentvolumeAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.persistentvolume.annotation."+key, val) +} + +// K8SPersistentvolumeLabel returns an attribute KeyValue conforming to the +// "k8s.persistentvolume.label" semantic conventions. It represents the label +// placed on the PersistentVolume, the `` being the label name, the value +// being the label value, even if the value is empty. +func K8SPersistentvolumeLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.persistentvolume.label."+key, val) +} + +// K8SPersistentvolumeName returns an attribute KeyValue conforming to the +// "k8s.persistentvolume.name" semantic conventions. It represents the name of +// the PersistentVolume. +func K8SPersistentvolumeName(val string) attribute.KeyValue { + return K8SPersistentvolumeNameKey.String(val) +} + +// K8SPersistentvolumeUID returns an attribute KeyValue conforming to the +// "k8s.persistentvolume.uid" semantic conventions. It represents the UID of the +// PersistentVolume. +func K8SPersistentvolumeUID(val string) attribute.KeyValue { + return K8SPersistentvolumeUIDKey.String(val) +} + +// K8SPersistentvolumeclaimAnnotation returns an attribute KeyValue conforming to +// the "k8s.persistentvolumeclaim.annotation" semantic conventions. It represents +// the annotation placed on the PersistentVolumeClaim, the `` being the +// annotation name, the value being the annotation value, even if the value is +// empty. +func K8SPersistentvolumeclaimAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.persistentvolumeclaim.annotation."+key, val) +} + +// K8SPersistentvolumeclaimLabel returns an attribute KeyValue conforming to the +// "k8s.persistentvolumeclaim.label" semantic conventions. It represents the +// label placed on the PersistentVolumeClaim, the `` being the label name, +// the value being the label value, even if the value is empty. +func K8SPersistentvolumeclaimLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.persistentvolumeclaim.label."+key, val) +} + +// K8SPersistentvolumeclaimName returns an attribute KeyValue conforming to the +// "k8s.persistentvolumeclaim.name" semantic conventions. It represents the name +// of the PersistentVolumeClaim. +func K8SPersistentvolumeclaimName(val string) attribute.KeyValue { + return K8SPersistentvolumeclaimNameKey.String(val) +} + +// K8SPersistentvolumeclaimUID returns an attribute KeyValue conforming to the +// "k8s.persistentvolumeclaim.uid" semantic conventions. It represents the UID of +// the PersistentVolumeClaim. +func K8SPersistentvolumeclaimUID(val string) attribute.KeyValue { + return K8SPersistentvolumeclaimUIDKey.String(val) +} + +// K8SPodAnnotation returns an attribute KeyValue conforming to the +// "k8s.pod.annotation" semantic conventions. It represents the annotation placed +// on the Pod, the `` being the annotation name, the value being the +// annotation value. +func K8SPodAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.pod.annotation."+key, val) +} + +// K8SPodHostname returns an attribute KeyValue conforming to the +// "k8s.pod.hostname" semantic conventions. It represents the specifies the +// hostname of the Pod. +func K8SPodHostname(val string) attribute.KeyValue { + return K8SPodHostnameKey.String(val) +} + +// K8SPodIP returns an attribute KeyValue conforming to the "k8s.pod.ip" semantic +// conventions. It represents the IP address allocated to the Pod. +func K8SPodIP(val string) attribute.KeyValue { + return K8SPodIPKey.String(val) +} + +// K8SPodLabel returns an attribute KeyValue conforming to the "k8s.pod.label" +// semantic conventions. It represents the label placed on the Pod, the `` +// being the label name, the value being the label value. +func K8SPodLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.pod.label."+key, val) +} + +// K8SPodName returns an attribute KeyValue conforming to the "k8s.pod.name" +// semantic conventions. It represents the name of the Pod. +func K8SPodName(val string) attribute.KeyValue { + return K8SPodNameKey.String(val) +} + +// K8SPodStartTime returns an attribute KeyValue conforming to the +// "k8s.pod.start_time" semantic conventions. It represents the start timestamp +// of the Pod. +func K8SPodStartTime(val string) attribute.KeyValue { + return K8SPodStartTimeKey.String(val) +} + +// K8SPodUID returns an attribute KeyValue conforming to the "k8s.pod.uid" +// semantic conventions. It represents the UID of the Pod. +func K8SPodUID(val string) attribute.KeyValue { + return K8SPodUIDKey.String(val) +} + +// K8SReplicaSetAnnotation returns an attribute KeyValue conforming to the +// "k8s.replicaset.annotation" semantic conventions. It represents the annotation +// placed on the ReplicaSet, the `` being the annotation name, the value +// being the annotation value, even if the value is empty. +func K8SReplicaSetAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.replicaset.annotation."+key, val) +} + +// K8SReplicaSetLabel returns an attribute KeyValue conforming to the +// "k8s.replicaset.label" semantic conventions. It represents the label placed on +// the ReplicaSet, the `` being the label name, the value being the label +// value, even if the value is empty. +func K8SReplicaSetLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.replicaset.label."+key, val) +} + +// K8SReplicaSetName returns an attribute KeyValue conforming to the +// "k8s.replicaset.name" semantic conventions. It represents the name of the +// ReplicaSet. +func K8SReplicaSetName(val string) attribute.KeyValue { + return K8SReplicaSetNameKey.String(val) +} + +// K8SReplicaSetUID returns an attribute KeyValue conforming to the +// "k8s.replicaset.uid" semantic conventions. It represents the UID of the +// ReplicaSet. +func K8SReplicaSetUID(val string) attribute.KeyValue { + return K8SReplicaSetUIDKey.String(val) +} + +// K8SReplicationControllerName returns an attribute KeyValue conforming to the +// "k8s.replicationcontroller.name" semantic conventions. It represents the name +// of the replication controller. +func K8SReplicationControllerName(val string) attribute.KeyValue { + return K8SReplicationControllerNameKey.String(val) +} + +// K8SReplicationControllerUID returns an attribute KeyValue conforming to the +// "k8s.replicationcontroller.uid" semantic conventions. It represents the UID of +// the replication controller. +func K8SReplicationControllerUID(val string) attribute.KeyValue { + return K8SReplicationControllerUIDKey.String(val) +} + +// K8SResourceQuotaName returns an attribute KeyValue conforming to the +// "k8s.resourcequota.name" semantic conventions. It represents the name of the +// resource quota. +func K8SResourceQuotaName(val string) attribute.KeyValue { + return K8SResourceQuotaNameKey.String(val) +} + +// K8SResourceQuotaResourceName returns an attribute KeyValue conforming to the +// "k8s.resourcequota.resource_name" semantic conventions. It represents the name +// of the K8s resource a resource quota defines. +func K8SResourceQuotaResourceName(val string) attribute.KeyValue { + return K8SResourceQuotaResourceNameKey.String(val) +} + +// K8SResourceQuotaUID returns an attribute KeyValue conforming to the +// "k8s.resourcequota.uid" semantic conventions. It represents the UID of the +// resource quota. +func K8SResourceQuotaUID(val string) attribute.KeyValue { + return K8SResourceQuotaUIDKey.String(val) +} + +// K8SServiceAnnotation returns an attribute KeyValue conforming to the +// "k8s.service.annotation" semantic conventions. It represents the annotation +// placed on the Service, the `` being the annotation name, the value being +// the annotation value, even if the value is empty. +func K8SServiceAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.service.annotation."+key, val) +} + +// K8SServiceEndpointZone returns an attribute KeyValue conforming to the +// "k8s.service.endpoint.zone" semantic conventions. It represents the zone of +// the service endpoint. +func K8SServiceEndpointZone(val string) attribute.KeyValue { + return K8SServiceEndpointZoneKey.String(val) +} + +// K8SServiceLabel returns an attribute KeyValue conforming to the +// "k8s.service.label" semantic conventions. It represents the label placed on +// the Service, the `` being the label name, the value being the label +// value, even if the value is empty. +func K8SServiceLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.service.label."+key, val) +} + +// K8SServiceName returns an attribute KeyValue conforming to the +// "k8s.service.name" semantic conventions. It represents the name of the +// Service. +func K8SServiceName(val string) attribute.KeyValue { + return K8SServiceNameKey.String(val) +} + +// K8SServicePublishNotReadyAddresses returns an attribute KeyValue conforming to +// the "k8s.service.publish_not_ready_addresses" semantic conventions. It +// represents the whether the Service publishes not-ready endpoints. +func K8SServicePublishNotReadyAddresses(val bool) attribute.KeyValue { + return K8SServicePublishNotReadyAddressesKey.Bool(val) +} + +// K8SServiceSelector returns an attribute KeyValue conforming to the +// "k8s.service.selector" semantic conventions. It represents the selector +// key-value pair placed on the Service, the `` being the selector key, the +// value being the selector value. +func K8SServiceSelector(key string, val string) attribute.KeyValue { + return attribute.String("k8s.service.selector."+key, val) +} + +// K8SServiceTrafficDistribution returns an attribute KeyValue conforming to the +// "k8s.service.traffic_distribution" semantic conventions. It represents the +// traffic distribution policy for the Service. +func K8SServiceTrafficDistribution(val string) attribute.KeyValue { + return K8SServiceTrafficDistributionKey.String(val) +} + +// K8SServiceUID returns an attribute KeyValue conforming to the +// "k8s.service.uid" semantic conventions. It represents the UID of the Service. +func K8SServiceUID(val string) attribute.KeyValue { + return K8SServiceUIDKey.String(val) +} + +// K8SStatefulSetAnnotation returns an attribute KeyValue conforming to the +// "k8s.statefulset.annotation" semantic conventions. It represents the +// annotation placed on the StatefulSet, the `` being the annotation name, +// the value being the annotation value, even if the value is empty. +func K8SStatefulSetAnnotation(key string, val string) attribute.KeyValue { + return attribute.String("k8s.statefulset.annotation."+key, val) +} + +// K8SStatefulSetLabel returns an attribute KeyValue conforming to the +// "k8s.statefulset.label" semantic conventions. It represents the label placed +// on the StatefulSet, the `` being the label name, the value being the +// label value, even if the value is empty. +func K8SStatefulSetLabel(key string, val string) attribute.KeyValue { + return attribute.String("k8s.statefulset.label."+key, val) +} + +// K8SStatefulSetName returns an attribute KeyValue conforming to the +// "k8s.statefulset.name" semantic conventions. It represents the name of the +// StatefulSet. +func K8SStatefulSetName(val string) attribute.KeyValue { + return K8SStatefulSetNameKey.String(val) +} + +// K8SStatefulSetUID returns an attribute KeyValue conforming to the +// "k8s.statefulset.uid" semantic conventions. It represents the UID of the +// StatefulSet. +func K8SStatefulSetUID(val string) attribute.KeyValue { + return K8SStatefulSetUIDKey.String(val) +} + +// K8SStorageclassName returns an attribute KeyValue conforming to the +// "k8s.storageclass.name" semantic conventions. It represents the name of K8s +// [StorageClass] object. +// +// [StorageClass]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#storageclass-v1-storage-k8s-io +func K8SStorageclassName(val string) attribute.KeyValue { + return K8SStorageclassNameKey.String(val) +} + +// K8SVolumeName returns an attribute KeyValue conforming to the +// "k8s.volume.name" semantic conventions. It represents the name of the K8s +// volume. +func K8SVolumeName(val string) attribute.KeyValue { + return K8SVolumeNameKey.String(val) +} + +// Enum values for k8s.container.status.reason +var ( + // The container is being created. + // Stability: development + K8SContainerStatusReasonContainerCreating = K8SContainerStatusReasonKey.String("ContainerCreating") + // The container is in a crash loop back off state. + // Stability: development + K8SContainerStatusReasonCrashLoopBackOff = K8SContainerStatusReasonKey.String("CrashLoopBackOff") + // There was an error creating the container configuration. + // Stability: development + K8SContainerStatusReasonCreateContainerConfigError = K8SContainerStatusReasonKey.String("CreateContainerConfigError") + // There was an error pulling the container image. + // Stability: development + K8SContainerStatusReasonErrImagePull = K8SContainerStatusReasonKey.String("ErrImagePull") + // The container image pull is in back off state. + // Stability: development + K8SContainerStatusReasonImagePullBackOff = K8SContainerStatusReasonKey.String("ImagePullBackOff") + // The container was killed due to out of memory. + // Stability: development + K8SContainerStatusReasonOomKilled = K8SContainerStatusReasonKey.String("OOMKilled") + // The container has completed execution. + // Stability: development + K8SContainerStatusReasonCompleted = K8SContainerStatusReasonKey.String("Completed") + // There was an error with the container. + // Stability: development + K8SContainerStatusReasonError = K8SContainerStatusReasonKey.String("Error") + // The container cannot run. + // Stability: development + K8SContainerStatusReasonContainerCannotRun = K8SContainerStatusReasonKey.String("ContainerCannotRun") +) + +// Enum values for k8s.container.status.state +var ( + // The container has terminated. + // Stability: development + K8SContainerStatusStateTerminated = K8SContainerStatusStateKey.String("terminated") + // The container is running. + // Stability: development + K8SContainerStatusStateRunning = K8SContainerStatusStateKey.String("running") + // The container is waiting. + // Stability: development + K8SContainerStatusStateWaiting = K8SContainerStatusStateKey.String("waiting") +) + +// Enum values for k8s.namespace.phase +var ( + // Active namespace phase as described by [K8s API] + // Stability: development + // + // [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase + K8SNamespacePhaseActive = K8SNamespacePhaseKey.String("active") + // Terminating namespace phase as described by [K8s API] + // Stability: development + // + // [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase + K8SNamespacePhaseTerminating = K8SNamespacePhaseKey.String("terminating") +) + +// Enum values for k8s.node.condition.status +var ( + // condition_true + // Stability: development + K8SNodeConditionStatusConditionTrue = K8SNodeConditionStatusKey.String("true") + // condition_false + // Stability: development + K8SNodeConditionStatusConditionFalse = K8SNodeConditionStatusKey.String("false") + // condition_unknown + // Stability: development + K8SNodeConditionStatusConditionUnknown = K8SNodeConditionStatusKey.String("unknown") +) + +// Enum values for k8s.node.condition.type +var ( + // The node is healthy and ready to accept pods + // Stability: development + K8SNodeConditionTypeReady = K8SNodeConditionTypeKey.String("Ready") + // Pressure exists on the disk size—that is, if the disk capacity is low + // Stability: development + K8SNodeConditionTypeDiskPressure = K8SNodeConditionTypeKey.String("DiskPressure") + // Pressure exists on the node memory—that is, if the node memory is low + // Stability: development + K8SNodeConditionTypeMemoryPressure = K8SNodeConditionTypeKey.String("MemoryPressure") + // Pressure exists on the processes—that is, if there are too many processes + // on the node + // Stability: development + K8SNodeConditionTypePIDPressure = K8SNodeConditionTypeKey.String("PIDPressure") + // The network for the node is not correctly configured + // Stability: development + K8SNodeConditionTypeNetworkUnavailable = K8SNodeConditionTypeKey.String("NetworkUnavailable") +) + +// Enum values for k8s.persistentvolume.reclaim_policy +var ( + // The volume will be deleted when released from its claim. + // Stability: development + K8SPersistentvolumeReclaimPolicyDelete = K8SPersistentvolumeReclaimPolicyKey.String("Delete") + // The volume will be recycled (basic scrub) when released from its claim. + // Stability: development + K8SPersistentvolumeReclaimPolicyRecycle = K8SPersistentvolumeReclaimPolicyKey.String("Recycle") + // The volume will be retained when released from its claim. + // Stability: development + K8SPersistentvolumeReclaimPolicyRetain = K8SPersistentvolumeReclaimPolicyKey.String("Retain") +) + +// Enum values for k8s.persistentvolume.status.phase +var ( + // The volume is available and not yet bound to a claim. + // Stability: development + K8SPersistentvolumeStatusPhaseAvailable = K8SPersistentvolumeStatusPhaseKey.String("Available") + // The volume is bound to a claim. + // Stability: development + K8SPersistentvolumeStatusPhaseBound = K8SPersistentvolumeStatusPhaseKey.String("Bound") + // The volume has failed its automatic reclamation. + // Stability: development + K8SPersistentvolumeStatusPhaseFailed = K8SPersistentvolumeStatusPhaseKey.String("Failed") + // The volume is being provisioned. + // Stability: development + K8SPersistentvolumeStatusPhasePending = K8SPersistentvolumeStatusPhaseKey.String("Pending") + // The claim has been deleted but the volume is not yet available. + // Stability: development + K8SPersistentvolumeStatusPhaseReleased = K8SPersistentvolumeStatusPhaseKey.String("Released") +) + +// Enum values for k8s.persistentvolumeclaim.status.phase +var ( + // The claim is bound to a volume. + // Stability: development + K8SPersistentvolumeclaimStatusPhaseBound = K8SPersistentvolumeclaimStatusPhaseKey.String("Bound") + // The claim has lost its underlying volume (the volume does not exist anymore). + // Stability: development + K8SPersistentvolumeclaimStatusPhaseLost = K8SPersistentvolumeclaimStatusPhaseKey.String("Lost") + // The claim has not yet been bound to a volume. + // Stability: development + K8SPersistentvolumeclaimStatusPhasePending = K8SPersistentvolumeclaimStatusPhaseKey.String("Pending") +) + +// Enum values for k8s.pod.status.phase +var ( + // The pod has been accepted by the system, but one or more of the containers + // has not been started. This includes time before being bound to a node, as + // well as time spent pulling images onto the host. + // + // Stability: development + K8SPodStatusPhasePending = K8SPodStatusPhaseKey.String("Pending") + // The pod has been bound to a node and all of the containers have been started. + // At least one container is still running or is in the process of being + // restarted. + // + // Stability: development + K8SPodStatusPhaseRunning = K8SPodStatusPhaseKey.String("Running") + // All containers in the pod have voluntarily terminated with a container exit + // code of 0, and the system is not going to restart any of these containers. + // + // Stability: development + K8SPodStatusPhaseSucceeded = K8SPodStatusPhaseKey.String("Succeeded") + // All containers in the pod have terminated, and at least one container has + // terminated in a failure (exited with a non-zero exit code or was stopped by + // the system). + // + // Stability: development + K8SPodStatusPhaseFailed = K8SPodStatusPhaseKey.String("Failed") + // For some reason the state of the pod could not be obtained, typically due to + // an error in communicating with the host of the pod. + // + // Stability: development + K8SPodStatusPhaseUnknown = K8SPodStatusPhaseKey.String("Unknown") +) + +// Enum values for k8s.pod.status.reason +var ( + // The pod is evicted. + // Stability: development + K8SPodStatusReasonEvicted = K8SPodStatusReasonKey.String("Evicted") + // The pod is in a status because of its node affinity + // Stability: development + K8SPodStatusReasonNodeAffinity = K8SPodStatusReasonKey.String("NodeAffinity") + // The reason on a pod when its state cannot be confirmed as kubelet is + // unresponsive on the node it is (was) running. + // + // Stability: development + K8SPodStatusReasonNodeLost = K8SPodStatusReasonKey.String("NodeLost") + // The node is shutdown + // Stability: development + K8SPodStatusReasonShutdown = K8SPodStatusReasonKey.String("Shutdown") + // The pod was rejected admission to the node because of an error during + // admission that could not be categorized. + // + // Stability: development + K8SPodStatusReasonUnexpectedAdmissionError = K8SPodStatusReasonKey.String("UnexpectedAdmissionError") +) + +// Enum values for k8s.service.endpoint.address_type +var ( + // IPv4 address type + // Stability: development + K8SServiceEndpointAddressTypeIPv4 = K8SServiceEndpointAddressTypeKey.String("IPv4") + // IPv6 address type + // Stability: development + K8SServiceEndpointAddressTypeIPv6 = K8SServiceEndpointAddressTypeKey.String("IPv6") + // FQDN address type + // Stability: development + K8SServiceEndpointAddressTypeFqdn = K8SServiceEndpointAddressTypeKey.String("FQDN") +) + +// Enum values for k8s.service.endpoint.condition +var ( + // The endpoint is ready to receive new connections. + // Stability: development + K8SServiceEndpointConditionReady = K8SServiceEndpointConditionKey.String("ready") + // The endpoint is currently handling traffic. + // Stability: development + K8SServiceEndpointConditionServing = K8SServiceEndpointConditionKey.String("serving") + // The endpoint is in the process of shutting down. + // Stability: development + K8SServiceEndpointConditionTerminating = K8SServiceEndpointConditionKey.String("terminating") +) + +// Enum values for k8s.service.type +var ( + // ClusterIP service type + // Stability: development + K8SServiceTypeClusterIP = K8SServiceTypeKey.String("ClusterIP") + // NodePort service type + // Stability: development + K8SServiceTypeNodePort = K8SServiceTypeKey.String("NodePort") + // LoadBalancer service type + // Stability: development + K8SServiceTypeLoadBalancer = K8SServiceTypeKey.String("LoadBalancer") + // ExternalName service type + // Stability: development + K8SServiceTypeExternalName = K8SServiceTypeKey.String("ExternalName") +) + +// Enum values for k8s.volume.type +var ( + // A [persistentVolumeClaim] volume + // Stability: development + // + // [persistentVolumeClaim]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#persistentvolumeclaim + K8SVolumeTypePersistentVolumeClaim = K8SVolumeTypeKey.String("persistentVolumeClaim") + // A [configMap] volume + // Stability: development + // + // [configMap]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#configmap + K8SVolumeTypeConfigMap = K8SVolumeTypeKey.String("configMap") + // A [downwardAPI] volume + // Stability: development + // + // [downwardAPI]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#downwardapi + K8SVolumeTypeDownwardAPI = K8SVolumeTypeKey.String("downwardAPI") + // An [emptyDir] volume + // Stability: development + // + // [emptyDir]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#emptydir + K8SVolumeTypeEmptyDir = K8SVolumeTypeKey.String("emptyDir") + // A [secret] volume + // Stability: development + // + // [secret]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#secret + K8SVolumeTypeSecret = K8SVolumeTypeKey.String("secret") + // A [local] volume + // Stability: development + // + // [local]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#local + K8SVolumeTypeLocal = K8SVolumeTypeKey.String("local") +) + +// Namespace: log +const ( + // LogFileNameKey is the attribute Key conforming to the "log.file.name" + // semantic conventions. It represents the basename of the file. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "audit.log" + LogFileNameKey = attribute.Key("log.file.name") + + // LogFileNameResolvedKey is the attribute Key conforming to the + // "log.file.name_resolved" semantic conventions. It represents the basename of + // the file, with symlinks resolved. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "uuid.log" + LogFileNameResolvedKey = attribute.Key("log.file.name_resolved") + + // LogFilePathKey is the attribute Key conforming to the "log.file.path" + // semantic conventions. It represents the full path to the file. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/var/log/mysql/audit.log" + LogFilePathKey = attribute.Key("log.file.path") + + // LogFilePathResolvedKey is the attribute Key conforming to the + // "log.file.path_resolved" semantic conventions. It represents the full path to + // the file, with symlinks resolved. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/var/lib/docker/uuid.log" + LogFilePathResolvedKey = attribute.Key("log.file.path_resolved") + + // LogIostreamKey is the attribute Key conforming to the "log.iostream" semantic + // conventions. It represents the stream associated with the log. See below for + // a list of well-known values. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + LogIostreamKey = attribute.Key("log.iostream") + + // LogRecordOriginalKey is the attribute Key conforming to the + // "log.record.original" semantic conventions. It represents the complete + // original Log Record. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "77 <86>1 2015-08-06T21:58:59.694Z 192.168.2.133 inactive - - - + // Something happened", "[INFO] 8/3/24 12:34:56 Something happened" + // Note: This value MAY be added when processing a Log Record which was + // originally transmitted as a string or equivalent data type AND the Body field + // of the Log Record does not contain the same value. (e.g. a syslog or a log + // record read from a file.) + LogRecordOriginalKey = attribute.Key("log.record.original") + + // LogRecordUIDKey is the attribute Key conforming to the "log.record.uid" + // semantic conventions. It represents a unique identifier for the Log Record. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "01ARZ3NDEKTSV4RRFFQ69G5FAV" + // Note: If an id is provided, other log records with the same id will be + // considered duplicates and can be removed safely. This means, that two + // distinguishable log records MUST have different values. + // The id MAY be an + // [Universally Unique Lexicographically Sortable Identifier (ULID)], but other + // identifiers (e.g. UUID) may be used as needed. + // + // [Universally Unique Lexicographically Sortable Identifier (ULID)]: https://github.com/ulid/spec + LogRecordUIDKey = attribute.Key("log.record.uid") +) + +// LogFileName returns an attribute KeyValue conforming to the "log.file.name" +// semantic conventions. It represents the basename of the file. +func LogFileName(val string) attribute.KeyValue { + return LogFileNameKey.String(val) +} + +// LogFileNameResolved returns an attribute KeyValue conforming to the +// "log.file.name_resolved" semantic conventions. It represents the basename of +// the file, with symlinks resolved. +func LogFileNameResolved(val string) attribute.KeyValue { + return LogFileNameResolvedKey.String(val) +} + +// LogFilePath returns an attribute KeyValue conforming to the "log.file.path" +// semantic conventions. It represents the full path to the file. +func LogFilePath(val string) attribute.KeyValue { + return LogFilePathKey.String(val) +} + +// LogFilePathResolved returns an attribute KeyValue conforming to the +// "log.file.path_resolved" semantic conventions. It represents the full path to +// the file, with symlinks resolved. +func LogFilePathResolved(val string) attribute.KeyValue { + return LogFilePathResolvedKey.String(val) +} + +// LogRecordOriginal returns an attribute KeyValue conforming to the +// "log.record.original" semantic conventions. It represents the complete +// original Log Record. +func LogRecordOriginal(val string) attribute.KeyValue { + return LogRecordOriginalKey.String(val) +} + +// LogRecordUID returns an attribute KeyValue conforming to the "log.record.uid" +// semantic conventions. It represents a unique identifier for the Log Record. +func LogRecordUID(val string) attribute.KeyValue { + return LogRecordUIDKey.String(val) +} + +// Enum values for log.iostream +var ( + // Logs from stdout stream + // Stability: development + LogIostreamStdout = LogIostreamKey.String("stdout") + // Events from stderr stream + // Stability: development + LogIostreamStderr = LogIostreamKey.String("stderr") +) + +// Namespace: mainframe +const ( + // MainframeLparNameKey is the attribute Key conforming to the + // "mainframe.lpar.name" semantic conventions. It represents the name of the + // logical partition that hosts a systems with a mainframe operating system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "LPAR01" + MainframeLparNameKey = attribute.Key("mainframe.lpar.name") +) + +// MainframeLparName returns an attribute KeyValue conforming to the +// "mainframe.lpar.name" semantic conventions. It represents the name of the +// logical partition that hosts a systems with a mainframe operating system. +func MainframeLparName(val string) attribute.KeyValue { + return MainframeLparNameKey.String(val) +} + +// Namespace: mcp +const ( + // McpMethodNameKey is the attribute Key conforming to the "mcp.method.name" + // semantic conventions. It represents the name of the request or notification + // method. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + McpMethodNameKey = attribute.Key("mcp.method.name") + + // McpProtocolVersionKey is the attribute Key conforming to the + // "mcp.protocol.version" semantic conventions. It represents the [version] of + // the Model Context Protocol used. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2025-06-18" + // + // [version]: https://modelcontextprotocol.io/specification/versioning + McpProtocolVersionKey = attribute.Key("mcp.protocol.version") + + // McpResourceURIKey is the attribute Key conforming to the "mcp.resource.uri" + // semantic conventions. It represents the value of the resource uri. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "postgres://database/customers/schema", + // "file:///home/user/documents/report.pdf" + // Note: This is a URI of the resource provided in the following requests or + // notifications: `resources/read`, `resources/subscribe`, + // `resources/unsubscribe`, or `notifications/resources/updated`. + McpResourceURIKey = attribute.Key("mcp.resource.uri") + + // McpSessionIDKey is the attribute Key conforming to the "mcp.session.id" + // semantic conventions. It represents the identifies [MCP session]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "191c4850af6c49e08843a3f6c80e5046" + // + // [MCP session]: https://modelcontextprotocol.io/specification/2025-06-18/basic/transports#session-management + McpSessionIDKey = attribute.Key("mcp.session.id") +) + +// McpProtocolVersion returns an attribute KeyValue conforming to the +// "mcp.protocol.version" semantic conventions. It represents the [version] of +// the Model Context Protocol used. +// +// [version]: https://modelcontextprotocol.io/specification/versioning +func McpProtocolVersion(val string) attribute.KeyValue { + return McpProtocolVersionKey.String(val) +} + +// McpResourceURI returns an attribute KeyValue conforming to the +// "mcp.resource.uri" semantic conventions. It represents the value of the +// resource uri. +func McpResourceURI(val string) attribute.KeyValue { + return McpResourceURIKey.String(val) +} + +// McpSessionID returns an attribute KeyValue conforming to the "mcp.session.id" +// semantic conventions. It represents the identifies [MCP session]. +// +// [MCP session]: https://modelcontextprotocol.io/specification/2025-06-18/basic/transports#session-management +func McpSessionID(val string) attribute.KeyValue { + return McpSessionIDKey.String(val) +} + +// Enum values for mcp.method.name +var ( + // Notification cancelling a previously-issued request. + // + // Stability: development + McpMethodNameNotificationsCancelled = McpMethodNameKey.String("notifications/cancelled") + // Request to initialize the MCP client. + // + // Stability: development + McpMethodNameInitialize = McpMethodNameKey.String("initialize") + // Notification indicating that the MCP client has been initialized. + // + // Stability: development + McpMethodNameNotificationsInitialized = McpMethodNameKey.String("notifications/initialized") + // Notification indicating the progress for a long-running operation. + // + // Stability: development + McpMethodNameNotificationsProgress = McpMethodNameKey.String("notifications/progress") + // Request to check that the other party is still alive. + // + // Stability: development + McpMethodNamePing = McpMethodNameKey.String("ping") + // Request to list resources available on server. + // + // Stability: development + McpMethodNameResourcesList = McpMethodNameKey.String("resources/list") + // Request to list resource templates available on server. + // + // Stability: development + McpMethodNameResourcesTemplatesList = McpMethodNameKey.String("resources/templates/list") + // Request to read a resource. + // + // Stability: development + McpMethodNameResourcesRead = McpMethodNameKey.String("resources/read") + // Notification indicating that the list of resources has changed. + // + // Stability: development + McpMethodNameNotificationsResourcesListChanged = McpMethodNameKey.String("notifications/resources/list_changed") + // Request to subscribe to a resource. + // + // Stability: development + McpMethodNameResourcesSubscribe = McpMethodNameKey.String("resources/subscribe") + // Request to unsubscribe from resource updates. + // + // Stability: development + McpMethodNameResourcesUnsubscribe = McpMethodNameKey.String("resources/unsubscribe") + // Notification indicating that a resource has been updated. + // + // Stability: development + McpMethodNameNotificationsResourcesUpdated = McpMethodNameKey.String("notifications/resources/updated") + // Request to list prompts available on server. + // + // Stability: development + McpMethodNamePromptsList = McpMethodNameKey.String("prompts/list") + // Request to get a prompt. + // + // Stability: development + McpMethodNamePromptsGet = McpMethodNameKey.String("prompts/get") + // Notification indicating that the list of prompts has changed. + // + // Stability: development + McpMethodNameNotificationsPromptsListChanged = McpMethodNameKey.String("notifications/prompts/list_changed") + // Request to list tools available on server. + // + // Stability: development + McpMethodNameToolsList = McpMethodNameKey.String("tools/list") + // Request to call a tool. + // + // Stability: development + McpMethodNameToolsCall = McpMethodNameKey.String("tools/call") + // Notification indicating that the list of tools has changed. + // + // Stability: development + McpMethodNameNotificationsToolsListChanged = McpMethodNameKey.String("notifications/tools/list_changed") + // Request to set the logging level. + // + // Stability: development + McpMethodNameLoggingSetLevel = McpMethodNameKey.String("logging/setLevel") + // Notification indicating that a message has been received. + // + // Stability: development + McpMethodNameNotificationsMessage = McpMethodNameKey.String("notifications/message") + // Request to create a sampling message. + // + // Stability: development + McpMethodNameSamplingCreateMessage = McpMethodNameKey.String("sampling/createMessage") + // Request to complete a prompt. + // + // Stability: development + McpMethodNameCompletionComplete = McpMethodNameKey.String("completion/complete") + // Request to list roots available on server. + // + // Stability: development + McpMethodNameRootsList = McpMethodNameKey.String("roots/list") + // Notification indicating that the list of roots has changed. + // + // Stability: development + McpMethodNameNotificationsRootsListChanged = McpMethodNameKey.String("notifications/roots/list_changed") + // Request from the server to elicit additional information from the user via + // the client + // + // Stability: development + McpMethodNameElicitationCreate = McpMethodNameKey.String("elicitation/create") +) + +// Namespace: messaging +const ( + // MessagingBatchMessageCountKey is the attribute Key conforming to the + // "messaging.batch.message_count" semantic conventions. It represents the + // number of messages sent, received, or processed in the scope of the batching + // operation. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0, 1, 2 + // Note: Instrumentations SHOULD NOT set `messaging.batch.message_count` on + // spans that operate with a single message. When a messaging client library + // supports both batch and single-message API for the same operation, + // instrumentations SHOULD use `messaging.batch.message_count` for batching APIs + // and SHOULD NOT use it for single-message APIs. + MessagingBatchMessageCountKey = attribute.Key("messaging.batch.message_count") + + // MessagingClientIDKey is the attribute Key conforming to the + // "messaging.client.id" semantic conventions. It represents a unique identifier + // for the client that consumes or produces a message. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "client-5", "myhost@8742@s8083jm" + MessagingClientIDKey = attribute.Key("messaging.client.id") + + // MessagingConsumerGroupNameKey is the attribute Key conforming to the + // "messaging.consumer.group.name" semantic conventions. It represents the name + // of the consumer group with which a consumer is associated. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-group", "indexer" + // Note: Semantic conventions for individual messaging systems SHOULD document + // whether `messaging.consumer.group.name` is applicable and what it means in + // the context of that system. + MessagingConsumerGroupNameKey = attribute.Key("messaging.consumer.group.name") + + // MessagingDestinationAnonymousKey is the attribute Key conforming to the + // "messaging.destination.anonymous" semantic conventions. It represents a + // boolean that is true if the message destination is anonymous (could be + // unnamed or have auto-generated name). + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + MessagingDestinationAnonymousKey = attribute.Key("messaging.destination.anonymous") + + // MessagingDestinationNameKey is the attribute Key conforming to the + // "messaging.destination.name" semantic conventions. It represents the message + // destination name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MyQueue", "MyTopic" + // Note: Destination name SHOULD uniquely identify a specific queue, topic or + // other entity within the broker. If + // the broker doesn't have such notion, the destination name SHOULD uniquely + // identify the broker. + MessagingDestinationNameKey = attribute.Key("messaging.destination.name") + + // MessagingDestinationPartitionIDKey is the attribute Key conforming to the + // "messaging.destination.partition.id" semantic conventions. It represents the + // identifier of the partition messages are sent to or received from, unique + // within the `messaging.destination.name`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1 + MessagingDestinationPartitionIDKey = attribute.Key("messaging.destination.partition.id") + + // MessagingDestinationSubscriptionNameKey is the attribute Key conforming to + // the "messaging.destination.subscription.name" semantic conventions. It + // represents the name of the destination subscription from which a message is + // consumed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "subscription-a" + // Note: Semantic conventions for individual messaging systems SHOULD document + // whether `messaging.destination.subscription.name` is applicable and what it + // means in the context of that system. + MessagingDestinationSubscriptionNameKey = attribute.Key("messaging.destination.subscription.name") + + // MessagingDestinationTemplateKey is the attribute Key conforming to the + // "messaging.destination.template" semantic conventions. It represents the low + // cardinality representation of the messaging destination name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/customers/{customerId}" + // Note: Destination names could be constructed from templates. An example would + // be a destination name involving a user name or product id. Although the + // destination name in this case is of high cardinality, the underlying template + // is of low cardinality and can be effectively used for grouping and + // aggregation. + MessagingDestinationTemplateKey = attribute.Key("messaging.destination.template") + + // MessagingDestinationTemporaryKey is the attribute Key conforming to the + // "messaging.destination.temporary" semantic conventions. It represents a + // boolean that is true if the message destination is temporary and might not + // exist anymore after messages are processed. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + MessagingDestinationTemporaryKey = attribute.Key("messaging.destination.temporary") + + // MessagingEventHubsMessageEnqueuedTimeKey is the attribute Key conforming to + // the "messaging.eventhubs.message.enqueued_time" semantic conventions. It + // represents the UTC epoch seconds at which the message has been accepted and + // stored in the entity. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingEventHubsMessageEnqueuedTimeKey = attribute.Key("messaging.eventhubs.message.enqueued_time") + + // MessagingGCPPubSubMessageAckDeadlineKey is the attribute Key conforming to + // the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It + // represents the ack deadline in seconds set for the modify ack deadline + // request. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingGCPPubSubMessageAckDeadlineKey = attribute.Key("messaging.gcp_pubsub.message.ack_deadline") + + // MessagingGCPPubSubMessageAckIDKey is the attribute Key conforming to the + // "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the + // ack id for a given message. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: ack_id + MessagingGCPPubSubMessageAckIDKey = attribute.Key("messaging.gcp_pubsub.message.ack_id") + + // MessagingGCPPubSubMessageDeliveryAttemptKey is the attribute Key conforming + // to the "messaging.gcp_pubsub.message.delivery_attempt" semantic conventions. + // It represents the delivery attempt for a given message. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingGCPPubSubMessageDeliveryAttemptKey = attribute.Key("messaging.gcp_pubsub.message.delivery_attempt") + + // MessagingGCPPubSubMessageOrderingKeyKey is the attribute Key conforming to + // the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It + // represents the ordering key for a given message. If the attribute is not + // present, the message does not have an ordering key. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: ordering_key + MessagingGCPPubSubMessageOrderingKeyKey = attribute.Key("messaging.gcp_pubsub.message.ordering_key") + + // MessagingKafkaMessageKeyKey is the attribute Key conforming to the + // "messaging.kafka.message.key" semantic conventions. It represents the message + // keys in Kafka are used for grouping alike messages to ensure they're + // processed on the same partition. They differ from `messaging.message.id` in + // that they're not unique. If the key is `null`, the attribute MUST NOT be set. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: myKey + // Note: If the key type is not string, it's string representation has to be + // supplied for the attribute. If the key has no unambiguous, canonical string + // form, don't include its value. + MessagingKafkaMessageKeyKey = attribute.Key("messaging.kafka.message.key") + + // MessagingKafkaMessageTombstoneKey is the attribute Key conforming to the + // "messaging.kafka.message.tombstone" semantic conventions. It represents a + // boolean that is true if the message is a tombstone. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + MessagingKafkaMessageTombstoneKey = attribute.Key("messaging.kafka.message.tombstone") + + // MessagingKafkaOffsetKey is the attribute Key conforming to the + // "messaging.kafka.offset" semantic conventions. It represents the offset of a + // record in the corresponding Kafka partition. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingKafkaOffsetKey = attribute.Key("messaging.kafka.offset") + + // MessagingMessageBodySizeKey is the attribute Key conforming to the + // "messaging.message.body.size" semantic conventions. It represents the size of + // the message body in bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Note: This can refer to both the compressed or uncompressed body size. If + // both sizes are known, the uncompressed + // body size should be used. + MessagingMessageBodySizeKey = attribute.Key("messaging.message.body.size") + + // MessagingMessageConversationIDKey is the attribute Key conforming to the + // "messaging.message.conversation_id" semantic conventions. It represents the + // conversation ID identifying the conversation to which the message belongs, + // represented as a string. Sometimes called "Correlation ID". + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: MyConversationId + MessagingMessageConversationIDKey = attribute.Key("messaging.message.conversation_id") + + // MessagingMessageEnvelopeSizeKey is the attribute Key conforming to the + // "messaging.message.envelope.size" semantic conventions. It represents the + // size of the message body and metadata in bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Note: This can refer to both the compressed or uncompressed size. If both + // sizes are known, the uncompressed + // size should be used. + MessagingMessageEnvelopeSizeKey = attribute.Key("messaging.message.envelope.size") + + // MessagingMessageIDKey is the attribute Key conforming to the + // "messaging.message.id" semantic conventions. It represents a value used by + // the messaging system as an identifier for the message, represented as a + // string. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 452a7c7c7c7048c2f887f61572b18fc2 + MessagingMessageIDKey = attribute.Key("messaging.message.id") + + // MessagingOperationNameKey is the attribute Key conforming to the + // "messaging.operation.name" semantic conventions. It represents the + // system-specific name of the messaging operation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ack", "nack", "send" + MessagingOperationNameKey = attribute.Key("messaging.operation.name") + + // MessagingOperationTypeKey is the attribute Key conforming to the + // "messaging.operation.type" semantic conventions. It represents a string + // identifying the type of the messaging operation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: If a custom value is used, it MUST be of low cardinality. + MessagingOperationTypeKey = attribute.Key("messaging.operation.type") + + // MessagingRabbitMQDestinationRoutingKeyKey is the attribute Key conforming to + // the "messaging.rabbitmq.destination.routing_key" semantic conventions. It + // represents the rabbitMQ message routing key. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: myKey + MessagingRabbitMQDestinationRoutingKeyKey = attribute.Key("messaging.rabbitmq.destination.routing_key") + + // MessagingRabbitMQMessageDeliveryTagKey is the attribute Key conforming to the + // "messaging.rabbitmq.message.delivery_tag" semantic conventions. It represents + // the rabbitMQ message delivery tag. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingRabbitMQMessageDeliveryTagKey = attribute.Key("messaging.rabbitmq.message.delivery_tag") + + // MessagingRocketMQConsumptionModelKey is the attribute Key conforming to the + // "messaging.rocketmq.consumption_model" semantic conventions. It represents + // the model of message consumption. This only applies to consumer spans. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + MessagingRocketMQConsumptionModelKey = attribute.Key("messaging.rocketmq.consumption_model") + + // MessagingRocketMQMessageDelayTimeLevelKey is the attribute Key conforming to + // the "messaging.rocketmq.message.delay_time_level" semantic conventions. It + // represents the delay time level for delay message, which determines the + // message delay time. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingRocketMQMessageDelayTimeLevelKey = attribute.Key("messaging.rocketmq.message.delay_time_level") + + // MessagingRocketMQMessageDeliveryTimestampKey is the attribute Key conforming + // to the "messaging.rocketmq.message.delivery_timestamp" semantic conventions. + // It represents the timestamp in milliseconds that the delay message is + // expected to be delivered to consumer. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingRocketMQMessageDeliveryTimestampKey = attribute.Key("messaging.rocketmq.message.delivery_timestamp") + + // MessagingRocketMQMessageGroupKey is the attribute Key conforming to the + // "messaging.rocketmq.message.group" semantic conventions. It represents the it + // is essential for FIFO message. Messages that belong to the same message group + // are always processed one by one within the same consumer group. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: myMessageGroup + MessagingRocketMQMessageGroupKey = attribute.Key("messaging.rocketmq.message.group") + + // MessagingRocketMQMessageKeysKey is the attribute Key conforming to the + // "messaging.rocketmq.message.keys" semantic conventions. It represents the + // key(s) of message, another way to mark message besides message id. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "keyA", "keyB" + MessagingRocketMQMessageKeysKey = attribute.Key("messaging.rocketmq.message.keys") + + // MessagingRocketMQMessageTagKey is the attribute Key conforming to the + // "messaging.rocketmq.message.tag" semantic conventions. It represents the + // secondary classifier of message besides topic. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: tagA + MessagingRocketMQMessageTagKey = attribute.Key("messaging.rocketmq.message.tag") + + // MessagingRocketMQMessageTypeKey is the attribute Key conforming to the + // "messaging.rocketmq.message.type" semantic conventions. It represents the + // type of message. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + MessagingRocketMQMessageTypeKey = attribute.Key("messaging.rocketmq.message.type") + + // MessagingRocketMQNamespaceKey is the attribute Key conforming to the + // "messaging.rocketmq.namespace" semantic conventions. It represents the + // namespace of RocketMQ resources, resources in different namespaces are + // individual. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: myNamespace + MessagingRocketMQNamespaceKey = attribute.Key("messaging.rocketmq.namespace") + + // MessagingServiceBusDispositionStatusKey is the attribute Key conforming to + // the "messaging.servicebus.disposition_status" semantic conventions. It + // represents the describes the [settlement type]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [settlement type]: https://learn.microsoft.com/azure/service-bus-messaging/message-transfers-locks-settlement#peeklock + MessagingServiceBusDispositionStatusKey = attribute.Key("messaging.servicebus.disposition_status") + + // MessagingServiceBusMessageDeliveryCountKey is the attribute Key conforming to + // the "messaging.servicebus.message.delivery_count" semantic conventions. It + // represents the number of deliveries that have been attempted for this + // message. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingServiceBusMessageDeliveryCountKey = attribute.Key("messaging.servicebus.message.delivery_count") + + // MessagingServiceBusMessageEnqueuedTimeKey is the attribute Key conforming to + // the "messaging.servicebus.message.enqueued_time" semantic conventions. It + // represents the UTC epoch seconds at which the message has been accepted and + // stored in the entity. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingServiceBusMessageEnqueuedTimeKey = attribute.Key("messaging.servicebus.message.enqueued_time") + + // MessagingSystemKey is the attribute Key conforming to the "messaging.system" + // semantic conventions. It represents the messaging system as identified by the + // client instrumentation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: The actual messaging system may differ from the one known by the + // client. For example, when using Kafka client libraries to communicate with + // Azure Event Hubs, the `messaging.system` is set to `kafka` based on the + // instrumentation's best knowledge. + MessagingSystemKey = attribute.Key("messaging.system") +) + +// MessagingBatchMessageCount returns an attribute KeyValue conforming to the +// "messaging.batch.message_count" semantic conventions. It represents the number +// of messages sent, received, or processed in the scope of the batching +// operation. +func MessagingBatchMessageCount(val int) attribute.KeyValue { + return MessagingBatchMessageCountKey.Int(val) +} + +// MessagingClientID returns an attribute KeyValue conforming to the +// "messaging.client.id" semantic conventions. It represents a unique identifier +// for the client that consumes or produces a message. +func MessagingClientID(val string) attribute.KeyValue { + return MessagingClientIDKey.String(val) +} + +// MessagingConsumerGroupName returns an attribute KeyValue conforming to the +// "messaging.consumer.group.name" semantic conventions. It represents the name +// of the consumer group with which a consumer is associated. +func MessagingConsumerGroupName(val string) attribute.KeyValue { + return MessagingConsumerGroupNameKey.String(val) +} + +// MessagingDestinationAnonymous returns an attribute KeyValue conforming to the +// "messaging.destination.anonymous" semantic conventions. It represents a +// boolean that is true if the message destination is anonymous (could be unnamed +// or have auto-generated name). +func MessagingDestinationAnonymous(val bool) attribute.KeyValue { + return MessagingDestinationAnonymousKey.Bool(val) +} + +// MessagingDestinationName returns an attribute KeyValue conforming to the +// "messaging.destination.name" semantic conventions. It represents the message +// destination name. +func MessagingDestinationName(val string) attribute.KeyValue { + return MessagingDestinationNameKey.String(val) +} + +// MessagingDestinationPartitionID returns an attribute KeyValue conforming to +// the "messaging.destination.partition.id" semantic conventions. It represents +// the identifier of the partition messages are sent to or received from, unique +// within the `messaging.destination.name`. +func MessagingDestinationPartitionID(val string) attribute.KeyValue { + return MessagingDestinationPartitionIDKey.String(val) +} + +// MessagingDestinationSubscriptionName returns an attribute KeyValue conforming +// to the "messaging.destination.subscription.name" semantic conventions. It +// represents the name of the destination subscription from which a message is +// consumed. +func MessagingDestinationSubscriptionName(val string) attribute.KeyValue { + return MessagingDestinationSubscriptionNameKey.String(val) +} + +// MessagingDestinationTemplate returns an attribute KeyValue conforming to the +// "messaging.destination.template" semantic conventions. It represents the low +// cardinality representation of the messaging destination name. +func MessagingDestinationTemplate(val string) attribute.KeyValue { + return MessagingDestinationTemplateKey.String(val) +} + +// MessagingDestinationTemporary returns an attribute KeyValue conforming to the +// "messaging.destination.temporary" semantic conventions. It represents a +// boolean that is true if the message destination is temporary and might not +// exist anymore after messages are processed. +func MessagingDestinationTemporary(val bool) attribute.KeyValue { + return MessagingDestinationTemporaryKey.Bool(val) +} + +// MessagingEventHubsMessageEnqueuedTime returns an attribute KeyValue conforming +// to the "messaging.eventhubs.message.enqueued_time" semantic conventions. It +// represents the UTC epoch seconds at which the message has been accepted and +// stored in the entity. +func MessagingEventHubsMessageEnqueuedTime(val int) attribute.KeyValue { + return MessagingEventHubsMessageEnqueuedTimeKey.Int(val) +} + +// MessagingGCPPubSubMessageAckDeadline returns an attribute KeyValue conforming +// to the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It +// represents the ack deadline in seconds set for the modify ack deadline +// request. +func MessagingGCPPubSubMessageAckDeadline(val int) attribute.KeyValue { + return MessagingGCPPubSubMessageAckDeadlineKey.Int(val) +} + +// MessagingGCPPubSubMessageAckID returns an attribute KeyValue conforming to the +// "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the +// ack id for a given message. +func MessagingGCPPubSubMessageAckID(val string) attribute.KeyValue { + return MessagingGCPPubSubMessageAckIDKey.String(val) +} + +// MessagingGCPPubSubMessageDeliveryAttempt returns an attribute KeyValue +// conforming to the "messaging.gcp_pubsub.message.delivery_attempt" semantic +// conventions. It represents the delivery attempt for a given message. +func MessagingGCPPubSubMessageDeliveryAttempt(val int) attribute.KeyValue { + return MessagingGCPPubSubMessageDeliveryAttemptKey.Int(val) +} + +// MessagingGCPPubSubMessageOrderingKey returns an attribute KeyValue conforming +// to the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It +// represents the ordering key for a given message. If the attribute is not +// present, the message does not have an ordering key. +func MessagingGCPPubSubMessageOrderingKey(val string) attribute.KeyValue { + return MessagingGCPPubSubMessageOrderingKeyKey.String(val) +} + +// MessagingKafkaMessageKey returns an attribute KeyValue conforming to the +// "messaging.kafka.message.key" semantic conventions. It represents the message +// keys in Kafka are used for grouping alike messages to ensure they're processed +// on the same partition. They differ from `messaging.message.id` in that they're +// not unique. If the key is `null`, the attribute MUST NOT be set. +func MessagingKafkaMessageKey(val string) attribute.KeyValue { + return MessagingKafkaMessageKeyKey.String(val) +} + +// MessagingKafkaMessageTombstone returns an attribute KeyValue conforming to the +// "messaging.kafka.message.tombstone" semantic conventions. It represents a +// boolean that is true if the message is a tombstone. +func MessagingKafkaMessageTombstone(val bool) attribute.KeyValue { + return MessagingKafkaMessageTombstoneKey.Bool(val) +} + +// MessagingKafkaOffset returns an attribute KeyValue conforming to the +// "messaging.kafka.offset" semantic conventions. It represents the offset of a +// record in the corresponding Kafka partition. +func MessagingKafkaOffset(val int) attribute.KeyValue { + return MessagingKafkaOffsetKey.Int(val) +} + +// MessagingMessageBodySize returns an attribute KeyValue conforming to the +// "messaging.message.body.size" semantic conventions. It represents the size of +// the message body in bytes. +func MessagingMessageBodySize(val int) attribute.KeyValue { + return MessagingMessageBodySizeKey.Int(val) +} + +// MessagingMessageConversationID returns an attribute KeyValue conforming to the +// "messaging.message.conversation_id" semantic conventions. It represents the +// conversation ID identifying the conversation to which the message belongs, +// represented as a string. Sometimes called "Correlation ID". +func MessagingMessageConversationID(val string) attribute.KeyValue { + return MessagingMessageConversationIDKey.String(val) +} + +// MessagingMessageEnvelopeSize returns an attribute KeyValue conforming to the +// "messaging.message.envelope.size" semantic conventions. It represents the size +// of the message body and metadata in bytes. +func MessagingMessageEnvelopeSize(val int) attribute.KeyValue { + return MessagingMessageEnvelopeSizeKey.Int(val) +} + +// MessagingMessageID returns an attribute KeyValue conforming to the +// "messaging.message.id" semantic conventions. It represents a value used by the +// messaging system as an identifier for the message, represented as a string. +func MessagingMessageID(val string) attribute.KeyValue { + return MessagingMessageIDKey.String(val) +} + +// MessagingOperationName returns an attribute KeyValue conforming to the +// "messaging.operation.name" semantic conventions. It represents the +// system-specific name of the messaging operation. +func MessagingOperationName(val string) attribute.KeyValue { + return MessagingOperationNameKey.String(val) +} + +// MessagingRabbitMQDestinationRoutingKey returns an attribute KeyValue +// conforming to the "messaging.rabbitmq.destination.routing_key" semantic +// conventions. It represents the rabbitMQ message routing key. +func MessagingRabbitMQDestinationRoutingKey(val string) attribute.KeyValue { + return MessagingRabbitMQDestinationRoutingKeyKey.String(val) +} + +// MessagingRabbitMQMessageDeliveryTag returns an attribute KeyValue conforming +// to the "messaging.rabbitmq.message.delivery_tag" semantic conventions. It +// represents the rabbitMQ message delivery tag. +func MessagingRabbitMQMessageDeliveryTag(val int) attribute.KeyValue { + return MessagingRabbitMQMessageDeliveryTagKey.Int(val) +} + +// MessagingRocketMQMessageDelayTimeLevel returns an attribute KeyValue +// conforming to the "messaging.rocketmq.message.delay_time_level" semantic +// conventions. It represents the delay time level for delay message, which +// determines the message delay time. +func MessagingRocketMQMessageDelayTimeLevel(val int) attribute.KeyValue { + return MessagingRocketMQMessageDelayTimeLevelKey.Int(val) +} + +// MessagingRocketMQMessageDeliveryTimestamp returns an attribute KeyValue +// conforming to the "messaging.rocketmq.message.delivery_timestamp" semantic +// conventions. It represents the timestamp in milliseconds that the delay +// message is expected to be delivered to consumer. +func MessagingRocketMQMessageDeliveryTimestamp(val int) attribute.KeyValue { + return MessagingRocketMQMessageDeliveryTimestampKey.Int(val) +} + +// MessagingRocketMQMessageGroup returns an attribute KeyValue conforming to the +// "messaging.rocketmq.message.group" semantic conventions. It represents the it +// is essential for FIFO message. Messages that belong to the same message group +// are always processed one by one within the same consumer group. +func MessagingRocketMQMessageGroup(val string) attribute.KeyValue { + return MessagingRocketMQMessageGroupKey.String(val) +} + +// MessagingRocketMQMessageKeys returns an attribute KeyValue conforming to the +// "messaging.rocketmq.message.keys" semantic conventions. It represents the +// key(s) of message, another way to mark message besides message id. +func MessagingRocketMQMessageKeys(val ...string) attribute.KeyValue { + return MessagingRocketMQMessageKeysKey.StringSlice(val) +} + +// MessagingRocketMQMessageTag returns an attribute KeyValue conforming to the +// "messaging.rocketmq.message.tag" semantic conventions. It represents the +// secondary classifier of message besides topic. +func MessagingRocketMQMessageTag(val string) attribute.KeyValue { + return MessagingRocketMQMessageTagKey.String(val) +} + +// MessagingRocketMQNamespace returns an attribute KeyValue conforming to the +// "messaging.rocketmq.namespace" semantic conventions. It represents the +// namespace of RocketMQ resources, resources in different namespaces are +// individual. +func MessagingRocketMQNamespace(val string) attribute.KeyValue { + return MessagingRocketMQNamespaceKey.String(val) +} + +// MessagingServiceBusMessageDeliveryCount returns an attribute KeyValue +// conforming to the "messaging.servicebus.message.delivery_count" semantic +// conventions. It represents the number of deliveries that have been attempted +// for this message. +func MessagingServiceBusMessageDeliveryCount(val int) attribute.KeyValue { + return MessagingServiceBusMessageDeliveryCountKey.Int(val) +} + +// MessagingServiceBusMessageEnqueuedTime returns an attribute KeyValue +// conforming to the "messaging.servicebus.message.enqueued_time" semantic +// conventions. It represents the UTC epoch seconds at which the message has been +// accepted and stored in the entity. +func MessagingServiceBusMessageEnqueuedTime(val int) attribute.KeyValue { + return MessagingServiceBusMessageEnqueuedTimeKey.Int(val) +} + +// Enum values for messaging.operation.type +var ( + // A message is created. "Create" spans always refer to a single message and are + // used to provide a unique creation context for messages in batch sending + // scenarios. + // + // Stability: development + MessagingOperationTypeCreate = MessagingOperationTypeKey.String("create") + // One or more messages are provided for sending to an intermediary. If a single + // message is sent, the context of the "Send" span can be used as the creation + // context and no "Create" span needs to be created. + // + // Stability: development + MessagingOperationTypeSend = MessagingOperationTypeKey.String("send") + // One or more messages are requested by a consumer. This operation refers to + // pull-based scenarios, where consumers explicitly call methods of messaging + // SDKs to receive messages. + // + // Stability: development + MessagingOperationTypeReceive = MessagingOperationTypeKey.String("receive") + // One or more messages are processed by a consumer. + // + // Stability: development + MessagingOperationTypeProcess = MessagingOperationTypeKey.String("process") + // One or more messages are settled. + // + // Stability: development + MessagingOperationTypeSettle = MessagingOperationTypeKey.String("settle") +) + +// Enum values for messaging.rocketmq.consumption_model +var ( + // Clustering consumption model + // Stability: development + MessagingRocketMQConsumptionModelClustering = MessagingRocketMQConsumptionModelKey.String("clustering") + // Broadcasting consumption model + // Stability: development + MessagingRocketMQConsumptionModelBroadcasting = MessagingRocketMQConsumptionModelKey.String("broadcasting") +) + +// Enum values for messaging.rocketmq.message.type +var ( + // Normal message + // Stability: development + MessagingRocketMQMessageTypeNormal = MessagingRocketMQMessageTypeKey.String("normal") + // FIFO message + // Stability: development + MessagingRocketMQMessageTypeFifo = MessagingRocketMQMessageTypeKey.String("fifo") + // Delay message + // Stability: development + MessagingRocketMQMessageTypeDelay = MessagingRocketMQMessageTypeKey.String("delay") + // Transaction message + // Stability: development + MessagingRocketMQMessageTypeTransaction = MessagingRocketMQMessageTypeKey.String("transaction") +) + +// Enum values for messaging.servicebus.disposition_status +var ( + // Message is completed + // Stability: development + MessagingServiceBusDispositionStatusComplete = MessagingServiceBusDispositionStatusKey.String("complete") + // Message is abandoned + // Stability: development + MessagingServiceBusDispositionStatusAbandon = MessagingServiceBusDispositionStatusKey.String("abandon") + // Message is sent to dead letter queue + // Stability: development + MessagingServiceBusDispositionStatusDeadLetter = MessagingServiceBusDispositionStatusKey.String("dead_letter") + // Message is deferred + // Stability: development + MessagingServiceBusDispositionStatusDefer = MessagingServiceBusDispositionStatusKey.String("defer") +) + +// Enum values for messaging.system +var ( + // Apache ActiveMQ + // Stability: development + MessagingSystemActiveMQ = MessagingSystemKey.String("activemq") + // Amazon Simple Notification Service (SNS) + // Stability: development + MessagingSystemAWSSNS = MessagingSystemKey.String("aws.sns") + // Amazon Simple Queue Service (SQS) + // Stability: development + MessagingSystemAWSSQS = MessagingSystemKey.String("aws_sqs") + // Azure Event Grid + // Stability: development + MessagingSystemEventGrid = MessagingSystemKey.String("eventgrid") + // Azure Event Hubs + // Stability: development + MessagingSystemEventHubs = MessagingSystemKey.String("eventhubs") + // Azure Service Bus + // Stability: development + MessagingSystemServiceBus = MessagingSystemKey.String("servicebus") + // Google Cloud Pub/Sub + // Stability: development + MessagingSystemGCPPubSub = MessagingSystemKey.String("gcp_pubsub") + // Java Message Service + // Stability: development + MessagingSystemJMS = MessagingSystemKey.String("jms") + // Apache Kafka + // Stability: development + MessagingSystemKafka = MessagingSystemKey.String("kafka") + // RabbitMQ + // Stability: development + MessagingSystemRabbitMQ = MessagingSystemKey.String("rabbitmq") + // Apache RocketMQ + // Stability: development + MessagingSystemRocketMQ = MessagingSystemKey.String("rocketmq") + // Apache Pulsar + // Stability: development + MessagingSystemPulsar = MessagingSystemKey.String("pulsar") +) + +// Namespace: network +const ( + // NetworkCarrierICCKey is the attribute Key conforming to the + // "network.carrier.icc" semantic conventions. It represents the ISO 3166-1 + // alpha-2 2-character country code associated with the mobile carrier network. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: DE + NetworkCarrierICCKey = attribute.Key("network.carrier.icc") + + // NetworkCarrierMCCKey is the attribute Key conforming to the + // "network.carrier.mcc" semantic conventions. It represents the mobile carrier + // country code. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 310 + NetworkCarrierMCCKey = attribute.Key("network.carrier.mcc") + + // NetworkCarrierMNCKey is the attribute Key conforming to the + // "network.carrier.mnc" semantic conventions. It represents the mobile carrier + // network code. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 001 + NetworkCarrierMNCKey = attribute.Key("network.carrier.mnc") + + // NetworkCarrierNameKey is the attribute Key conforming to the + // "network.carrier.name" semantic conventions. It represents the name of the + // mobile carrier. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: sprint + NetworkCarrierNameKey = attribute.Key("network.carrier.name") + + // NetworkConnectionStateKey is the attribute Key conforming to the + // "network.connection.state" semantic conventions. It represents the state of + // network connection. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "close_wait" + // Note: Connection states are defined as part of the [rfc9293] + // + // [rfc9293]: https://datatracker.ietf.org/doc/html/rfc9293#section-3.3.2 + NetworkConnectionStateKey = attribute.Key("network.connection.state") + + // NetworkConnectionSubtypeKey is the attribute Key conforming to the + // "network.connection.subtype" semantic conventions. It represents the this + // describes more details regarding the connection.type. It may be the type of + // cell technology connection, but it could be used for describing details about + // a wifi connection. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: LTE + NetworkConnectionSubtypeKey = attribute.Key("network.connection.subtype") + + // NetworkConnectionTypeKey is the attribute Key conforming to the + // "network.connection.type" semantic conventions. It represents the internet + // connection type. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: wifi + NetworkConnectionTypeKey = attribute.Key("network.connection.type") + + // NetworkInterfaceNameKey is the attribute Key conforming to the + // "network.interface.name" semantic conventions. It represents the network + // interface name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "lo", "eth0" + NetworkInterfaceNameKey = attribute.Key("network.interface.name") + + // NetworkIODirectionKey is the attribute Key conforming to the + // "network.io.direction" semantic conventions. It represents the network IO + // operation direction. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "transmit" + NetworkIODirectionKey = attribute.Key("network.io.direction") + + // NetworkLocalAddressKey is the attribute Key conforming to the + // "network.local.address" semantic conventions. It represents the local address + // of the network connection - IP address or Unix domain socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "10.1.2.80", "/tmp/my.sock" + NetworkLocalAddressKey = attribute.Key("network.local.address") + + // NetworkLocalPortKey is the attribute Key conforming to the + // "network.local.port" semantic conventions. It represents the local port + // number of the network connection. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 65123 + NetworkLocalPortKey = attribute.Key("network.local.port") + + // NetworkPeerAddressKey is the attribute Key conforming to the + // "network.peer.address" semantic conventions. It represents the peer address + // of the network connection - IP address or Unix domain socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "10.1.2.80", "/tmp/my.sock" + NetworkPeerAddressKey = attribute.Key("network.peer.address") + + // NetworkPeerPortKey is the attribute Key conforming to the "network.peer.port" + // semantic conventions. It represents the peer port number of the network + // connection. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 65123 + NetworkPeerPortKey = attribute.Key("network.peer.port") + + // NetworkProtocolNameKey is the attribute Key conforming to the + // "network.protocol.name" semantic conventions. It represents the + // [OSI application layer] or non-OSI equivalent. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "amqp", "http", "mqtt" + // Note: The value SHOULD be normalized to lowercase. + // + // [OSI application layer]: https://wikipedia.org/wiki/Application_layer + NetworkProtocolNameKey = attribute.Key("network.protocol.name") + + // NetworkProtocolVersionKey is the attribute Key conforming to the + // "network.protocol.version" semantic conventions. It represents the actual + // version of the protocol used for network communication. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "1.1", "2" + // Note: If protocol version is subject to negotiation (for example using [ALPN] + // ), this attribute SHOULD be set to the negotiated version. If the actual + // protocol version is not known, this attribute SHOULD NOT be set. + // + // [ALPN]: https://www.rfc-editor.org/rfc/rfc7301.html + NetworkProtocolVersionKey = attribute.Key("network.protocol.version") + + // NetworkTransportKey is the attribute Key conforming to the + // "network.transport" semantic conventions. It represents the + // [OSI transport layer] or [inter-process communication method]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "tcp", "udp" + // Note: The value SHOULD be normalized to lowercase. + // + // Consider always setting the transport when setting a port number, since + // a port number is ambiguous without knowing the transport. For example + // different processes could be listening on TCP port 12345 and UDP port 12345. + // + // [OSI transport layer]: https://wikipedia.org/wiki/Transport_layer + // [inter-process communication method]: https://wikipedia.org/wiki/Inter-process_communication + NetworkTransportKey = attribute.Key("network.transport") + + // NetworkTypeKey is the attribute Key conforming to the "network.type" semantic + // conventions. It represents the [OSI network layer] or non-OSI equivalent. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "ipv4", "ipv6" + // Note: The value SHOULD be normalized to lowercase. + // + // [OSI network layer]: https://wikipedia.org/wiki/Network_layer + NetworkTypeKey = attribute.Key("network.type") +) + +// NetworkCarrierICC returns an attribute KeyValue conforming to the +// "network.carrier.icc" semantic conventions. It represents the ISO 3166-1 +// alpha-2 2-character country code associated with the mobile carrier network. +func NetworkCarrierICC(val string) attribute.KeyValue { + return NetworkCarrierICCKey.String(val) +} + +// NetworkCarrierMCC returns an attribute KeyValue conforming to the +// "network.carrier.mcc" semantic conventions. It represents the mobile carrier +// country code. +func NetworkCarrierMCC(val string) attribute.KeyValue { + return NetworkCarrierMCCKey.String(val) +} + +// NetworkCarrierMNC returns an attribute KeyValue conforming to the +// "network.carrier.mnc" semantic conventions. It represents the mobile carrier +// network code. +func NetworkCarrierMNC(val string) attribute.KeyValue { + return NetworkCarrierMNCKey.String(val) +} + +// NetworkCarrierName returns an attribute KeyValue conforming to the +// "network.carrier.name" semantic conventions. It represents the name of the +// mobile carrier. +func NetworkCarrierName(val string) attribute.KeyValue { + return NetworkCarrierNameKey.String(val) +} + +// NetworkInterfaceName returns an attribute KeyValue conforming to the +// "network.interface.name" semantic conventions. It represents the network +// interface name. +func NetworkInterfaceName(val string) attribute.KeyValue { + return NetworkInterfaceNameKey.String(val) +} + +// NetworkLocalAddress returns an attribute KeyValue conforming to the +// "network.local.address" semantic conventions. It represents the local address +// of the network connection - IP address or Unix domain socket name. +func NetworkLocalAddress(val string) attribute.KeyValue { + return NetworkLocalAddressKey.String(val) +} + +// NetworkLocalPort returns an attribute KeyValue conforming to the +// "network.local.port" semantic conventions. It represents the local port number +// of the network connection. +func NetworkLocalPort(val int) attribute.KeyValue { + return NetworkLocalPortKey.Int(val) +} + +// NetworkPeerAddress returns an attribute KeyValue conforming to the +// "network.peer.address" semantic conventions. It represents the peer address of +// the network connection - IP address or Unix domain socket name. +func NetworkPeerAddress(val string) attribute.KeyValue { + return NetworkPeerAddressKey.String(val) +} + +// NetworkPeerPort returns an attribute KeyValue conforming to the +// "network.peer.port" semantic conventions. It represents the peer port number +// of the network connection. +func NetworkPeerPort(val int) attribute.KeyValue { + return NetworkPeerPortKey.Int(val) +} + +// NetworkProtocolName returns an attribute KeyValue conforming to the +// "network.protocol.name" semantic conventions. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func NetworkProtocolName(val string) attribute.KeyValue { + return NetworkProtocolNameKey.String(val) +} + +// NetworkProtocolVersion returns an attribute KeyValue conforming to the +// "network.protocol.version" semantic conventions. It represents the actual +// version of the protocol used for network communication. +func NetworkProtocolVersion(val string) attribute.KeyValue { + return NetworkProtocolVersionKey.String(val) +} + +// Enum values for network.connection.state +var ( + // closed + // Stability: development + NetworkConnectionStateClosed = NetworkConnectionStateKey.String("closed") + // close_wait + // Stability: development + NetworkConnectionStateCloseWait = NetworkConnectionStateKey.String("close_wait") + // closing + // Stability: development + NetworkConnectionStateClosing = NetworkConnectionStateKey.String("closing") + // established + // Stability: development + NetworkConnectionStateEstablished = NetworkConnectionStateKey.String("established") + // fin_wait_1 + // Stability: development + NetworkConnectionStateFinWait1 = NetworkConnectionStateKey.String("fin_wait_1") + // fin_wait_2 + // Stability: development + NetworkConnectionStateFinWait2 = NetworkConnectionStateKey.String("fin_wait_2") + // last_ack + // Stability: development + NetworkConnectionStateLastAck = NetworkConnectionStateKey.String("last_ack") + // listen + // Stability: development + NetworkConnectionStateListen = NetworkConnectionStateKey.String("listen") + // syn_received + // Stability: development + NetworkConnectionStateSynReceived = NetworkConnectionStateKey.String("syn_received") + // syn_sent + // Stability: development + NetworkConnectionStateSynSent = NetworkConnectionStateKey.String("syn_sent") + // time_wait + // Stability: development + NetworkConnectionStateTimeWait = NetworkConnectionStateKey.String("time_wait") +) + +// Enum values for network.connection.subtype +var ( + // GPRS + // Stability: development + NetworkConnectionSubtypeGprs = NetworkConnectionSubtypeKey.String("gprs") + // EDGE + // Stability: development + NetworkConnectionSubtypeEdge = NetworkConnectionSubtypeKey.String("edge") + // UMTS + // Stability: development + NetworkConnectionSubtypeUmts = NetworkConnectionSubtypeKey.String("umts") + // CDMA + // Stability: development + NetworkConnectionSubtypeCdma = NetworkConnectionSubtypeKey.String("cdma") + // EVDO Rel. 0 + // Stability: development + NetworkConnectionSubtypeEvdo0 = NetworkConnectionSubtypeKey.String("evdo_0") + // EVDO Rev. A + // Stability: development + NetworkConnectionSubtypeEvdoA = NetworkConnectionSubtypeKey.String("evdo_a") + // CDMA2000 1XRTT + // Stability: development + NetworkConnectionSubtypeCdma20001xrtt = NetworkConnectionSubtypeKey.String("cdma2000_1xrtt") + // HSDPA + // Stability: development + NetworkConnectionSubtypeHsdpa = NetworkConnectionSubtypeKey.String("hsdpa") + // HSUPA + // Stability: development + NetworkConnectionSubtypeHsupa = NetworkConnectionSubtypeKey.String("hsupa") + // HSPA + // Stability: development + NetworkConnectionSubtypeHspa = NetworkConnectionSubtypeKey.String("hspa") + // IDEN + // Stability: development + NetworkConnectionSubtypeIden = NetworkConnectionSubtypeKey.String("iden") + // EVDO Rev. B + // Stability: development + NetworkConnectionSubtypeEvdoB = NetworkConnectionSubtypeKey.String("evdo_b") + // LTE + // Stability: development + NetworkConnectionSubtypeLte = NetworkConnectionSubtypeKey.String("lte") + // EHRPD + // Stability: development + NetworkConnectionSubtypeEhrpd = NetworkConnectionSubtypeKey.String("ehrpd") + // HSPAP + // Stability: development + NetworkConnectionSubtypeHspap = NetworkConnectionSubtypeKey.String("hspap") + // GSM + // Stability: development + NetworkConnectionSubtypeGsm = NetworkConnectionSubtypeKey.String("gsm") + // TD-SCDMA + // Stability: development + NetworkConnectionSubtypeTdScdma = NetworkConnectionSubtypeKey.String("td_scdma") + // IWLAN + // Stability: development + NetworkConnectionSubtypeIwlan = NetworkConnectionSubtypeKey.String("iwlan") + // 5G NR (New Radio) + // Stability: development + NetworkConnectionSubtypeNr = NetworkConnectionSubtypeKey.String("nr") + // 5G NRNSA (New Radio Non-Standalone) + // Stability: development + NetworkConnectionSubtypeNrnsa = NetworkConnectionSubtypeKey.String("nrnsa") + // LTE CA + // Stability: development + NetworkConnectionSubtypeLteCa = NetworkConnectionSubtypeKey.String("lte_ca") +) + +// Enum values for network.connection.type +var ( + // wifi + // Stability: development + NetworkConnectionTypeWifi = NetworkConnectionTypeKey.String("wifi") + // wired + // Stability: development + NetworkConnectionTypeWired = NetworkConnectionTypeKey.String("wired") + // cell + // Stability: development + NetworkConnectionTypeCell = NetworkConnectionTypeKey.String("cell") + // unavailable + // Stability: development + NetworkConnectionTypeUnavailable = NetworkConnectionTypeKey.String("unavailable") + // unknown + // Stability: development + NetworkConnectionTypeUnknown = NetworkConnectionTypeKey.String("unknown") +) + +// Enum values for network.io.direction +var ( + // transmit + // Stability: development + NetworkIODirectionTransmit = NetworkIODirectionKey.String("transmit") + // receive + // Stability: development + NetworkIODirectionReceive = NetworkIODirectionKey.String("receive") +) + +// Enum values for network.transport +var ( + // TCP + // Stability: stable + NetworkTransportTCP = NetworkTransportKey.String("tcp") + // UDP + // Stability: stable + NetworkTransportUDP = NetworkTransportKey.String("udp") + // Named or anonymous pipe. + // Stability: stable + NetworkTransportPipe = NetworkTransportKey.String("pipe") + // Unix domain socket + // Stability: stable + NetworkTransportUnix = NetworkTransportKey.String("unix") + // QUIC + // Stability: stable + NetworkTransportQUIC = NetworkTransportKey.String("quic") +) + +// Enum values for network.type +var ( + // IPv4 + // Stability: stable + NetworkTypeIPv4 = NetworkTypeKey.String("ipv4") + // IPv6 + // Stability: stable + NetworkTypeIPv6 = NetworkTypeKey.String("ipv6") +) + +// Namespace: nfs +const ( + // NfsOperationNameKey is the attribute Key conforming to the + // "nfs.operation.name" semantic conventions. It represents the NFSv4+ operation + // name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "OPEN", "READ", "GETATTR" + NfsOperationNameKey = attribute.Key("nfs.operation.name") + + // NfsServerRepcacheStatusKey is the attribute Key conforming to the + // "nfs.server.repcache.status" semantic conventions. It represents the linux: + // one of "hit" (NFSD_STATS_RC_HITS), "miss" (NFSD_STATS_RC_MISSES), or + // "nocache" (NFSD_STATS_RC_NOCACHE -- uncacheable). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: hit + NfsServerRepcacheStatusKey = attribute.Key("nfs.server.repcache.status") +) + +// NfsOperationName returns an attribute KeyValue conforming to the +// "nfs.operation.name" semantic conventions. It represents the NFSv4+ operation +// name. +func NfsOperationName(val string) attribute.KeyValue { + return NfsOperationNameKey.String(val) +} + +// NfsServerRepcacheStatus returns an attribute KeyValue conforming to the +// "nfs.server.repcache.status" semantic conventions. It represents the linux: +// one of "hit" (NFSD_STATS_RC_HITS), "miss" (NFSD_STATS_RC_MISSES), or "nocache" +// (NFSD_STATS_RC_NOCACHE -- uncacheable). +func NfsServerRepcacheStatus(val string) attribute.KeyValue { + return NfsServerRepcacheStatusKey.String(val) +} + +// Namespace: oci +const ( + // OCIManifestDigestKey is the attribute Key conforming to the + // "oci.manifest.digest" semantic conventions. It represents the digest of the + // OCI image manifest. For container images specifically is the digest by which + // the container image is known. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "sha256:e4ca62c0d62f3e886e684806dfe9d4e0cda60d54986898173c1083856cfda0f4" + // Note: Follows [OCI Image Manifest Specification], and specifically the + // [Digest property]. + // An example can be found in [Example Image Manifest]. + // + // [OCI Image Manifest Specification]: https://github.com/opencontainers/image-spec/blob/main/manifest.md + // [Digest property]: https://github.com/opencontainers/image-spec/blob/main/descriptor.md#digests + // [Example Image Manifest]: https://github.com/opencontainers/image-spec/blob/main/manifest.md#example-image-manifest + OCIManifestDigestKey = attribute.Key("oci.manifest.digest") +) + +// OCIManifestDigest returns an attribute KeyValue conforming to the +// "oci.manifest.digest" semantic conventions. It represents the digest of the +// OCI image manifest. For container images specifically is the digest by which +// the container image is known. +func OCIManifestDigest(val string) attribute.KeyValue { + return OCIManifestDigestKey.String(val) +} + +// Namespace: onc_rpc +const ( + // OncRPCProcedureNameKey is the attribute Key conforming to the + // "onc_rpc.procedure.name" semantic conventions. It represents the ONC/Sun RPC + // procedure name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "OPEN", "READ", "GETATTR" + OncRPCProcedureNameKey = attribute.Key("onc_rpc.procedure.name") + + // OncRPCProcedureNumberKey is the attribute Key conforming to the + // "onc_rpc.procedure.number" semantic conventions. It represents the ONC/Sun + // RPC procedure number. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + OncRPCProcedureNumberKey = attribute.Key("onc_rpc.procedure.number") + + // OncRPCProgramNameKey is the attribute Key conforming to the + // "onc_rpc.program.name" semantic conventions. It represents the ONC/Sun RPC + // program name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "portmapper", "nfs" + OncRPCProgramNameKey = attribute.Key("onc_rpc.program.name") + + // OncRPCVersionKey is the attribute Key conforming to the "onc_rpc.version" + // semantic conventions. It represents the ONC/Sun RPC program version. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + OncRPCVersionKey = attribute.Key("onc_rpc.version") +) + +// OncRPCProcedureName returns an attribute KeyValue conforming to the +// "onc_rpc.procedure.name" semantic conventions. It represents the ONC/Sun RPC +// procedure name. +func OncRPCProcedureName(val string) attribute.KeyValue { + return OncRPCProcedureNameKey.String(val) +} + +// OncRPCProcedureNumber returns an attribute KeyValue conforming to the +// "onc_rpc.procedure.number" semantic conventions. It represents the ONC/Sun RPC +// procedure number. +func OncRPCProcedureNumber(val int) attribute.KeyValue { + return OncRPCProcedureNumberKey.Int(val) +} + +// OncRPCProgramName returns an attribute KeyValue conforming to the +// "onc_rpc.program.name" semantic conventions. It represents the ONC/Sun RPC +// program name. +func OncRPCProgramName(val string) attribute.KeyValue { + return OncRPCProgramNameKey.String(val) +} + +// OncRPCVersion returns an attribute KeyValue conforming to the +// "onc_rpc.version" semantic conventions. It represents the ONC/Sun RPC program +// version. +func OncRPCVersion(val int) attribute.KeyValue { + return OncRPCVersionKey.Int(val) +} + +// Namespace: openai +const ( + // OpenAIAPITypeKey is the attribute Key conforming to the "openai.api.type" + // semantic conventions. It represents the type of OpenAI API being used. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + OpenAIAPITypeKey = attribute.Key("openai.api.type") + + // OpenAIRequestServiceTierKey is the attribute Key conforming to the + // "openai.request.service_tier" semantic conventions. It represents the service + // tier requested. May be a specific tier, default, or auto. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "auto", "default" + OpenAIRequestServiceTierKey = attribute.Key("openai.request.service_tier") + + // OpenAIResponseServiceTierKey is the attribute Key conforming to the + // "openai.response.service_tier" semantic conventions. It represents the + // service tier used for the response. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "scale", "default" + OpenAIResponseServiceTierKey = attribute.Key("openai.response.service_tier") + + // OpenAIResponseSystemFingerprintKey is the attribute Key conforming to the + // "openai.response.system_fingerprint" semantic conventions. It represents a + // fingerprint to track any eventual change in the Generative AI environment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "fp_44709d6fcb" + OpenAIResponseSystemFingerprintKey = attribute.Key("openai.response.system_fingerprint") +) + +// OpenAIResponseServiceTier returns an attribute KeyValue conforming to the +// "openai.response.service_tier" semantic conventions. It represents the service +// tier used for the response. +func OpenAIResponseServiceTier(val string) attribute.KeyValue { + return OpenAIResponseServiceTierKey.String(val) +} + +// OpenAIResponseSystemFingerprint returns an attribute KeyValue conforming to +// the "openai.response.system_fingerprint" semantic conventions. It represents a +// fingerprint to track any eventual change in the Generative AI environment. +func OpenAIResponseSystemFingerprint(val string) attribute.KeyValue { + return OpenAIResponseSystemFingerprintKey.String(val) +} + +// Enum values for openai.api.type +var ( + // The OpenAI [Chat Completions API]. + // Stability: development + // + // [Chat Completions API]: https://developers.openai.com/api/reference/chat-completions/overview + OpenAIAPITypeChatCompletions = OpenAIAPITypeKey.String("chat_completions") + // The OpenAI [Responses API]. + // Stability: development + // + // [Responses API]: https://developers.openai.com/api/reference/responses/overview + OpenAIAPITypeResponses = OpenAIAPITypeKey.String("responses") +) + +// Enum values for openai.request.service_tier +var ( + // The system will utilize scale tier credits until they are exhausted. + // Stability: development + OpenAIRequestServiceTierAuto = OpenAIRequestServiceTierKey.String("auto") + // The system will utilize the default scale tier. + // Stability: development + OpenAIRequestServiceTierDefault = OpenAIRequestServiceTierKey.String("default") +) + +// Namespace: openshift +const ( + // OpenShiftClusterquotaNameKey is the attribute Key conforming to the + // "openshift.clusterquota.name" semantic conventions. It represents the name of + // the cluster quota. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + OpenShiftClusterquotaNameKey = attribute.Key("openshift.clusterquota.name") + + // OpenShiftClusterquotaUIDKey is the attribute Key conforming to the + // "openshift.clusterquota.uid" semantic conventions. It represents the UID of + // the cluster quota. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + OpenShiftClusterquotaUIDKey = attribute.Key("openshift.clusterquota.uid") +) + +// OpenShiftClusterquotaName returns an attribute KeyValue conforming to the +// "openshift.clusterquota.name" semantic conventions. It represents the name of +// the cluster quota. +func OpenShiftClusterquotaName(val string) attribute.KeyValue { + return OpenShiftClusterquotaNameKey.String(val) +} + +// OpenShiftClusterquotaUID returns an attribute KeyValue conforming to the +// "openshift.clusterquota.uid" semantic conventions. It represents the UID of +// the cluster quota. +func OpenShiftClusterquotaUID(val string) attribute.KeyValue { + return OpenShiftClusterquotaUIDKey.String(val) +} + +// Namespace: opentracing +const ( + // OpenTracingRefTypeKey is the attribute Key conforming to the + // "opentracing.ref_type" semantic conventions. It represents the parent-child + // Reference type. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: The causal relationship between a child Span and a parent Span. + OpenTracingRefTypeKey = attribute.Key("opentracing.ref_type") +) + +// Enum values for opentracing.ref_type +var ( + // The parent Span depends on the child Span in some capacity + // Stability: development + OpenTracingRefTypeChildOf = OpenTracingRefTypeKey.String("child_of") + // The parent Span doesn't depend in any way on the result of the child Span + // Stability: development + OpenTracingRefTypeFollowsFrom = OpenTracingRefTypeKey.String("follows_from") +) + +// Namespace: oracle +const ( + // OracleDBDomainKey is the attribute Key conforming to the "oracle.db.domain" + // semantic conventions. It represents the database domain associated with the + // connection. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "example.com", "corp.internal", "prod.db.local" + // Note: This attribute SHOULD be set to the value of the `DB_DOMAIN` + // initialization parameter, + // as exposed in `v$parameter`. `DB_DOMAIN` defines the domain portion of the + // global + // database name and SHOULD be configured when a database is, or may become, + // part of a + // distributed environment. Its value consists of one or more valid identifiers + // (alphanumeric ASCII characters) separated by periods. + OracleDBDomainKey = attribute.Key("oracle.db.domain") + + // OracleDBInstanceNameKey is the attribute Key conforming to the + // "oracle.db.instance.name" semantic conventions. It represents the instance + // name associated with the connection in an Oracle Real Application Clusters + // environment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ORCL1", "ORCL2", "ORCL3" + // Note: There can be multiple instances associated with a single database + // service. It indicates the + // unique instance name to which the connection is currently bound. For non-RAC + // databases, this value + // defaults to the `oracle.db.name`. + OracleDBInstanceNameKey = attribute.Key("oracle.db.instance.name") + + // OracleDBNameKey is the attribute Key conforming to the "oracle.db.name" + // semantic conventions. It represents the database name associated with the + // connection. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ORCL1", "FREE" + // Note: This attribute SHOULD be set to the value of the parameter `DB_NAME` + // exposed in `v$parameter`. + OracleDBNameKey = attribute.Key("oracle.db.name") + + // OracleDBPdbKey is the attribute Key conforming to the "oracle.db.pdb" + // semantic conventions. It represents the pluggable database (PDB) name + // associated with the connection. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "PDB1", "FREEPDB" + // Note: This attribute SHOULD reflect the PDB that the session is currently + // connected to. + // If instrumentation cannot reliably obtain the active PDB name for each + // operation + // without issuing an additional query (such as `SELECT SYS_CONTEXT`), it is + // RECOMMENDED to fall back to the PDB name specified at connection + // establishment. + OracleDBPdbKey = attribute.Key("oracle.db.pdb") + + // OracleDBServiceKey is the attribute Key conforming to the "oracle.db.service" + // semantic conventions. It represents the service name currently associated + // with the database connection. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "order-processing-service", "db_low.adb.oraclecloud.com", + // "db_high.adb.oraclecloud.com" + // Note: The effective service name for a connection can change during its + // lifetime, + // for example after executing sql, `ALTER SESSION`. If an instrumentation + // cannot reliably + // obtain the current service name for each operation without issuing an + // additional + // query (such as `SELECT SYS_CONTEXT`), it is RECOMMENDED to fall back to the + // service name originally provided at connection establishment. + OracleDBServiceKey = attribute.Key("oracle.db.service") +) + +// OracleDBDomain returns an attribute KeyValue conforming to the +// "oracle.db.domain" semantic conventions. It represents the database domain +// associated with the connection. +func OracleDBDomain(val string) attribute.KeyValue { + return OracleDBDomainKey.String(val) +} + +// OracleDBInstanceName returns an attribute KeyValue conforming to the +// "oracle.db.instance.name" semantic conventions. It represents the instance +// name associated with the connection in an Oracle Real Application Clusters +// environment. +func OracleDBInstanceName(val string) attribute.KeyValue { + return OracleDBInstanceNameKey.String(val) +} + +// OracleDBName returns an attribute KeyValue conforming to the "oracle.db.name" +// semantic conventions. It represents the database name associated with the +// connection. +func OracleDBName(val string) attribute.KeyValue { + return OracleDBNameKey.String(val) +} + +// OracleDBPdb returns an attribute KeyValue conforming to the "oracle.db.pdb" +// semantic conventions. It represents the pluggable database (PDB) name +// associated with the connection. +func OracleDBPdb(val string) attribute.KeyValue { + return OracleDBPdbKey.String(val) +} + +// OracleDBService returns an attribute KeyValue conforming to the +// "oracle.db.service" semantic conventions. It represents the service name +// currently associated with the database connection. +func OracleDBService(val string) attribute.KeyValue { + return OracleDBServiceKey.String(val) +} + +// Namespace: oracle_cloud +const ( + // OracleCloudRealmKey is the attribute Key conforming to the + // "oracle_cloud.realm" semantic conventions. It represents the OCI realm + // identifier that indicates the isolated partition in which the tenancy and its + // resources reside. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "oc1", "oc2" + // Note: See [OCI documentation on realms] + // + // [OCI documentation on realms]: https://docs.oracle.com/iaas/Content/General/Concepts/regions.htm + OracleCloudRealmKey = attribute.Key("oracle_cloud.realm") +) + +// OracleCloudRealm returns an attribute KeyValue conforming to the +// "oracle_cloud.realm" semantic conventions. It represents the OCI realm +// identifier that indicates the isolated partition in which the tenancy and its +// resources reside. +func OracleCloudRealm(val string) attribute.KeyValue { + return OracleCloudRealmKey.String(val) +} + +// Namespace: os +const ( + // OSBuildIDKey is the attribute Key conforming to the "os.build_id" semantic + // conventions. It represents the unique identifier for a particular build or + // compilation of the operating system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "TQ3C.230805.001.B2", "20E247", "22621" + OSBuildIDKey = attribute.Key("os.build_id") + + // OSDescriptionKey is the attribute Key conforming to the "os.description" + // semantic conventions. It represents the human readable (not intended to be + // parsed) OS version information, like e.g. reported by `ver` or + // `lsb_release -a` commands. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Microsoft Windows [Version 10.0.18363.778]", "Ubuntu 18.04.1 LTS" + OSDescriptionKey = attribute.Key("os.description") + + // OSNameKey is the attribute Key conforming to the "os.name" semantic + // conventions. It represents the human readable operating system name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "iOS", "Android", "Ubuntu" + OSNameKey = attribute.Key("os.name") + + // OSTypeKey is the attribute Key conforming to the "os.type" semantic + // conventions. It represents the operating system type. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + OSTypeKey = attribute.Key("os.type") + + // OSVersionKey is the attribute Key conforming to the "os.version" semantic + // conventions. It represents the version string of the operating system as + // defined in [Version Attributes]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "14.2.1", "18.04.1" + // + // [Version Attributes]: /docs/resource/README.md#version-attributes + OSVersionKey = attribute.Key("os.version") +) + +// OSBuildID returns an attribute KeyValue conforming to the "os.build_id" +// semantic conventions. It represents the unique identifier for a particular +// build or compilation of the operating system. +func OSBuildID(val string) attribute.KeyValue { + return OSBuildIDKey.String(val) +} + +// OSDescription returns an attribute KeyValue conforming to the "os.description" +// semantic conventions. It represents the human readable (not intended to be +// parsed) OS version information, like e.g. reported by `ver` or +// `lsb_release -a` commands. +func OSDescription(val string) attribute.KeyValue { + return OSDescriptionKey.String(val) +} + +// OSName returns an attribute KeyValue conforming to the "os.name" semantic +// conventions. It represents the human readable operating system name. +func OSName(val string) attribute.KeyValue { + return OSNameKey.String(val) +} + +// OSVersion returns an attribute KeyValue conforming to the "os.version" +// semantic conventions. It represents the version string of the operating system +// as defined in [Version Attributes]. +// +// [Version Attributes]: /docs/resource/README.md#version-attributes +func OSVersion(val string) attribute.KeyValue { + return OSVersionKey.String(val) +} + +// Enum values for os.type +var ( + // Microsoft Windows + // Stability: development + OSTypeWindows = OSTypeKey.String("windows") + // Linux + // Stability: development + OSTypeLinux = OSTypeKey.String("linux") + // Apple Darwin + // Stability: development + OSTypeDarwin = OSTypeKey.String("darwin") + // FreeBSD + // Stability: development + OSTypeFreeBSD = OSTypeKey.String("freebsd") + // NetBSD + // Stability: development + OSTypeNetBSD = OSTypeKey.String("netbsd") + // OpenBSD + // Stability: development + OSTypeOpenBSD = OSTypeKey.String("openbsd") + // DragonFly BSD + // Stability: development + OSTypeDragonflyBSD = OSTypeKey.String("dragonflybsd") + // HP-UX (Hewlett Packard Unix) + // Stability: development + OSTypeHPUX = OSTypeKey.String("hpux") + // AIX (Advanced Interactive eXecutive) + // Stability: development + OSTypeAIX = OSTypeKey.String("aix") + // SunOS, Oracle Solaris + // Stability: development + OSTypeSolaris = OSTypeKey.String("solaris") + // IBM z/OS + // Stability: development + OSTypeZOS = OSTypeKey.String("zos") +) + +// Namespace: otel +const ( + // OTelComponentNameKey is the attribute Key conforming to the + // "otel.component.name" semantic conventions. It represents a name uniquely + // identifying the instance of the OpenTelemetry component within its containing + // SDK instance. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "otlp_grpc_span_exporter/0", "custom-name" + // Note: Implementations SHOULD ensure a low cardinality for this attribute, + // even across application or SDK restarts. + // E.g. implementations MUST NOT use UUIDs as values for this attribute. + // + // Implementations MAY achieve these goals by following a + // `/` pattern, e.g. + // `batching_span_processor/0`. + // Hereby `otel.component.type` refers to the corresponding attribute value of + // the component. + // + // The value of `instance-counter` MAY be automatically assigned by the + // component and uniqueness within the enclosing SDK instance MUST be + // guaranteed. + // For example, `` MAY be implemented by using a monotonically + // increasing counter (starting with `0`), which is incremented every time an + // instance of the given component type is started. + // + // With this implementation, for example the first Batching Span Processor would + // have `batching_span_processor/0` + // as `otel.component.name`, the second one `batching_span_processor/1` and so + // on. + // These values will therefore be reused in the case of an application restart. + OTelComponentNameKey = attribute.Key("otel.component.name") + + // OTelComponentTypeKey is the attribute Key conforming to the + // "otel.component.type" semantic conventions. It represents a name identifying + // the type of the OpenTelemetry component. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "batching_span_processor", "com.example.MySpanExporter" + // Note: If none of the standardized values apply, implementations SHOULD use + // the language-defined name of the type. + // E.g. for Java the fully qualified classname SHOULD be used in this case. + OTelComponentTypeKey = attribute.Key("otel.component.type") + + // OTelEventNameKey is the attribute Key conforming to the "otel.event.name" + // semantic conventions. It represents the identifies the class / type of event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "browser.mouse.click", "device.app.lifecycle" + // Note: This attribute SHOULD be used by non-OTLP exporters when destination + // does not support `EventName` or equivalent field. This attribute MAY be used + // by applications using existing logging libraries so that it can be used to + // set the `EventName` field by Collector or SDK components. + OTelEventNameKey = attribute.Key("otel.event.name") + + // OTelScopeNameKey is the attribute Key conforming to the "otel.scope.name" + // semantic conventions. It represents the name of the instrumentation scope - ( + // `InstrumentationScope.Name` in OTLP). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "io.opentelemetry.contrib.mongodb" + OTelScopeNameKey = attribute.Key("otel.scope.name") + + // OTelScopeSchemaURLKey is the attribute Key conforming to the + // "otel.scope.schema_url" semantic conventions. It represents the schema URL of + // the instrumentation scope. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://opentelemetry.io/schemas/1.31.0" + OTelScopeSchemaURLKey = attribute.Key("otel.scope.schema_url") + + // OTelScopeVersionKey is the attribute Key conforming to the + // "otel.scope.version" semantic conventions. It represents the version of the + // instrumentation scope - (`InstrumentationScope.Version` in OTLP). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "1.0.0" + OTelScopeVersionKey = attribute.Key("otel.scope.version") + + // OTelSpanParentOriginKey is the attribute Key conforming to the + // "otel.span.parent.origin" semantic conventions. It represents the determines + // whether the span has a parent span, and if so, + // [whether it is a remote parent]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote + OTelSpanParentOriginKey = attribute.Key("otel.span.parent.origin") + + // OTelSpanSamplingResultKey is the attribute Key conforming to the + // "otel.span.sampling_result" semantic conventions. It represents the result + // value of the sampler for this span. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + OTelSpanSamplingResultKey = attribute.Key("otel.span.sampling_result") + + // OTelStatusCodeKey is the attribute Key conforming to the "otel.status_code" + // semantic conventions. It represents the name of the code, either "OK" or + // "ERROR". MUST NOT be set if the status code is UNSET. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: + OTelStatusCodeKey = attribute.Key("otel.status_code") + + // OTelStatusDescriptionKey is the attribute Key conforming to the + // "otel.status_description" semantic conventions. It represents the description + // of the Status if it has a value, otherwise not set. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "resource not found" + OTelStatusDescriptionKey = attribute.Key("otel.status_description") +) + +// OTelComponentName returns an attribute KeyValue conforming to the +// "otel.component.name" semantic conventions. It represents a name uniquely +// identifying the instance of the OpenTelemetry component within its containing +// SDK instance. +func OTelComponentName(val string) attribute.KeyValue { + return OTelComponentNameKey.String(val) +} + +// OTelEventName returns an attribute KeyValue conforming to the +// "otel.event.name" semantic conventions. It represents the identifies the class +// / type of event. +func OTelEventName(val string) attribute.KeyValue { + return OTelEventNameKey.String(val) +} + +// OTelScopeName returns an attribute KeyValue conforming to the +// "otel.scope.name" semantic conventions. It represents the name of the +// instrumentation scope - (`InstrumentationScope.Name` in OTLP). +func OTelScopeName(val string) attribute.KeyValue { + return OTelScopeNameKey.String(val) +} + +// OTelScopeSchemaURL returns an attribute KeyValue conforming to the +// "otel.scope.schema_url" semantic conventions. It represents the schema URL of +// the instrumentation scope. +func OTelScopeSchemaURL(val string) attribute.KeyValue { + return OTelScopeSchemaURLKey.String(val) +} + +// OTelScopeVersion returns an attribute KeyValue conforming to the +// "otel.scope.version" semantic conventions. It represents the version of the +// instrumentation scope - (`InstrumentationScope.Version` in OTLP). +func OTelScopeVersion(val string) attribute.KeyValue { + return OTelScopeVersionKey.String(val) +} + +// OTelStatusDescription returns an attribute KeyValue conforming to the +// "otel.status_description" semantic conventions. It represents the description +// of the Status if it has a value, otherwise not set. +func OTelStatusDescription(val string) attribute.KeyValue { + return OTelStatusDescriptionKey.String(val) +} + +// Enum values for otel.component.type +var ( + // The builtin SDK batching span processor + // + // Stability: development + OTelComponentTypeBatchingSpanProcessor = OTelComponentTypeKey.String("batching_span_processor") + // The builtin SDK simple span processor + // + // Stability: development + OTelComponentTypeSimpleSpanProcessor = OTelComponentTypeKey.String("simple_span_processor") + // The builtin SDK batching log record processor + // + // Stability: development + OTelComponentTypeBatchingLogProcessor = OTelComponentTypeKey.String("batching_log_processor") + // The builtin SDK simple log record processor + // + // Stability: development + OTelComponentTypeSimpleLogProcessor = OTelComponentTypeKey.String("simple_log_processor") + // OTLP span exporter over gRPC with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpGRPCSpanExporter = OTelComponentTypeKey.String("otlp_grpc_span_exporter") + // OTLP span exporter over HTTP with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPSpanExporter = OTelComponentTypeKey.String("otlp_http_span_exporter") + // OTLP span exporter over HTTP with JSON serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPJSONSpanExporter = OTelComponentTypeKey.String("otlp_http_json_span_exporter") + // Zipkin span exporter over HTTP + // + // Stability: development + OTelComponentTypeZipkinHTTPSpanExporter = OTelComponentTypeKey.String("zipkin_http_span_exporter") + // OTLP log record exporter over gRPC with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpGRPCLogExporter = OTelComponentTypeKey.String("otlp_grpc_log_exporter") + // OTLP log record exporter over HTTP with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPLogExporter = OTelComponentTypeKey.String("otlp_http_log_exporter") + // OTLP log record exporter over HTTP with JSON serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPJSONLogExporter = OTelComponentTypeKey.String("otlp_http_json_log_exporter") + // The builtin SDK periodically exporting metric reader + // + // Stability: development + OTelComponentTypePeriodicMetricReader = OTelComponentTypeKey.String("periodic_metric_reader") + // OTLP metric exporter over gRPC with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpGRPCMetricExporter = OTelComponentTypeKey.String("otlp_grpc_metric_exporter") + // OTLP metric exporter over HTTP with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPMetricExporter = OTelComponentTypeKey.String("otlp_http_metric_exporter") + // OTLP metric exporter over HTTP with JSON serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPJSONMetricExporter = OTelComponentTypeKey.String("otlp_http_json_metric_exporter") + // Prometheus metric exporter over HTTP with the default text-based format + // + // Stability: development + OTelComponentTypePrometheusHTTPTextMetricExporter = OTelComponentTypeKey.String("prometheus_http_text_metric_exporter") +) + +// Enum values for otel.span.parent.origin +var ( + // The span does not have a parent, it is a root span + // Stability: development + OTelSpanParentOriginNone = OTelSpanParentOriginKey.String("none") + // The span has a parent and the parent's span context [isRemote()] is false + // Stability: development + // + // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote + OTelSpanParentOriginLocal = OTelSpanParentOriginKey.String("local") + // The span has a parent and the parent's span context [isRemote()] is true + // Stability: development + // + // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote + OTelSpanParentOriginRemote = OTelSpanParentOriginKey.String("remote") +) + +// Enum values for otel.span.sampling_result +var ( + // The span is not sampled and not recording + // Stability: development + OTelSpanSamplingResultDrop = OTelSpanSamplingResultKey.String("DROP") + // The span is not sampled, but recording + // Stability: development + OTelSpanSamplingResultRecordOnly = OTelSpanSamplingResultKey.String("RECORD_ONLY") + // The span is sampled and recording + // Stability: development + OTelSpanSamplingResultRecordAndSample = OTelSpanSamplingResultKey.String("RECORD_AND_SAMPLE") +) + +// Enum values for otel.status_code +var ( + // The operation has been validated by an Application developer or Operator to + // have completed successfully. + // Stability: stable + OTelStatusCodeOk = OTelStatusCodeKey.String("OK") + // The operation contains an error. + // Stability: stable + OTelStatusCodeError = OTelStatusCodeKey.String("ERROR") +) + +// Namespace: pprof +const ( + // PprofLocationIsFoldedKey is the attribute Key conforming to the + // "pprof.location.is_folded" semantic conventions. It represents the provides + // an indication that multiple symbols map to this location's address, for + // example due to identical code folding by the linker. In that case the line + // information represents one of the multiple symbols. This field must be + // recomputed when the symbolization state of the profile changes. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + PprofLocationIsFoldedKey = attribute.Key("pprof.location.is_folded") + + // PprofMappingHasFilenamesKey is the attribute Key conforming to the + // "pprof.mapping.has_filenames" semantic conventions. It represents the + // indicates that there are filenames related to this mapping. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + PprofMappingHasFilenamesKey = attribute.Key("pprof.mapping.has_filenames") + + // PprofMappingHasFunctionsKey is the attribute Key conforming to the + // "pprof.mapping.has_functions" semantic conventions. It represents the + // indicates that there are functions related to this mapping. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + PprofMappingHasFunctionsKey = attribute.Key("pprof.mapping.has_functions") + + // PprofMappingHasInlineFramesKey is the attribute Key conforming to the + // "pprof.mapping.has_inline_frames" semantic conventions. It represents the + // indicates that there are inline frames related to this mapping. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + PprofMappingHasInlineFramesKey = attribute.Key("pprof.mapping.has_inline_frames") + + // PprofMappingHasLineNumbersKey is the attribute Key conforming to the + // "pprof.mapping.has_line_numbers" semantic conventions. It represents the + // indicates that there are line numbers related to this mapping. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + PprofMappingHasLineNumbersKey = attribute.Key("pprof.mapping.has_line_numbers") + + // PprofProfileCommentKey is the attribute Key conforming to the + // "pprof.profile.comment" semantic conventions. It represents the free-form + // text associated with the profile. This field should not be used to store any + // machine-readable information, it is only for human-friendly content. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "hello world", "bazinga" + PprofProfileCommentKey = attribute.Key("pprof.profile.comment") + + // PprofProfileDocURLKey is the attribute Key conforming to the + // "pprof.profile.doc_url" semantic conventions. It represents the documentation + // link for this profile type. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "http://pprof.example.com/cpu-profile.html" + // Note: The URL must be absolute and may be missing if the profile was + // generated by code that did not supply a link + PprofProfileDocURLKey = attribute.Key("pprof.profile.doc_url") + + // PprofProfileDropFramesKey is the attribute Key conforming to the + // "pprof.profile.drop_frames" semantic conventions. It represents the frames + // with Function.function_name fully matching the regexp will be dropped from + // the samples, along with their successors. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/foobar/" + PprofProfileDropFramesKey = attribute.Key("pprof.profile.drop_frames") + + // PprofProfileKeepFramesKey is the attribute Key conforming to the + // "pprof.profile.keep_frames" semantic conventions. It represents the frames + // with Function.function_name fully matching the regexp will be kept, even if + // it matches drop_frames. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/bazinga/" + PprofProfileKeepFramesKey = attribute.Key("pprof.profile.keep_frames") + + // PprofScopeDefaultSampleTypeKey is the attribute Key conforming to the + // "pprof.scope.default_sample_type" semantic conventions. It represents the + // records the pprof's default_sample_type in the original profile. Not set if + // the default sample type was missing. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cpu" + // Note: This attribute, if present, MUST be set at the scope level + // (resource_profiles[].scope_profiles[].scope.attributes[]). + PprofScopeDefaultSampleTypeKey = attribute.Key("pprof.scope.default_sample_type") + + // PprofScopeSampleTypeOrderKey is the attribute Key conforming to the + // "pprof.scope.sample_type_order" semantic conventions. It represents the + // records the indexes of the sample types in the original profile. + // + // Type: int[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 3, 0, 1, 2 + // Note: This attribute, if present, MUST be set at the scope level + // (resource_profiles[].scope_profiles[].scope.attributes[]). + PprofScopeSampleTypeOrderKey = attribute.Key("pprof.scope.sample_type_order") +) + +// PprofLocationIsFolded returns an attribute KeyValue conforming to the +// "pprof.location.is_folded" semantic conventions. It represents the provides an +// indication that multiple symbols map to this location's address, for example +// due to identical code folding by the linker. In that case the line information +// represents one of the multiple symbols. This field must be recomputed when the +// symbolization state of the profile changes. +func PprofLocationIsFolded(val bool) attribute.KeyValue { + return PprofLocationIsFoldedKey.Bool(val) +} + +// PprofMappingHasFilenames returns an attribute KeyValue conforming to the +// "pprof.mapping.has_filenames" semantic conventions. It represents the +// indicates that there are filenames related to this mapping. +func PprofMappingHasFilenames(val bool) attribute.KeyValue { + return PprofMappingHasFilenamesKey.Bool(val) +} + +// PprofMappingHasFunctions returns an attribute KeyValue conforming to the +// "pprof.mapping.has_functions" semantic conventions. It represents the +// indicates that there are functions related to this mapping. +func PprofMappingHasFunctions(val bool) attribute.KeyValue { + return PprofMappingHasFunctionsKey.Bool(val) +} + +// PprofMappingHasInlineFrames returns an attribute KeyValue conforming to the +// "pprof.mapping.has_inline_frames" semantic conventions. It represents the +// indicates that there are inline frames related to this mapping. +func PprofMappingHasInlineFrames(val bool) attribute.KeyValue { + return PprofMappingHasInlineFramesKey.Bool(val) +} + +// PprofMappingHasLineNumbers returns an attribute KeyValue conforming to the +// "pprof.mapping.has_line_numbers" semantic conventions. It represents the +// indicates that there are line numbers related to this mapping. +func PprofMappingHasLineNumbers(val bool) attribute.KeyValue { + return PprofMappingHasLineNumbersKey.Bool(val) +} + +// PprofProfileComment returns an attribute KeyValue conforming to the +// "pprof.profile.comment" semantic conventions. It represents the free-form text +// associated with the profile. This field should not be used to store any +// machine-readable information, it is only for human-friendly content. +func PprofProfileComment(val ...string) attribute.KeyValue { + return PprofProfileCommentKey.StringSlice(val) +} + +// PprofProfileDocURL returns an attribute KeyValue conforming to the +// "pprof.profile.doc_url" semantic conventions. It represents the documentation +// link for this profile type. +func PprofProfileDocURL(val string) attribute.KeyValue { + return PprofProfileDocURLKey.String(val) +} + +// PprofProfileDropFrames returns an attribute KeyValue conforming to the +// "pprof.profile.drop_frames" semantic conventions. It represents the frames +// with Function.function_name fully matching the regexp will be dropped from the +// samples, along with their successors. +func PprofProfileDropFrames(val string) attribute.KeyValue { + return PprofProfileDropFramesKey.String(val) +} + +// PprofProfileKeepFrames returns an attribute KeyValue conforming to the +// "pprof.profile.keep_frames" semantic conventions. It represents the frames +// with Function.function_name fully matching the regexp will be kept, even if it +// matches drop_frames. +func PprofProfileKeepFrames(val string) attribute.KeyValue { + return PprofProfileKeepFramesKey.String(val) +} + +// PprofScopeDefaultSampleType returns an attribute KeyValue conforming to the +// "pprof.scope.default_sample_type" semantic conventions. It represents the +// records the pprof's default_sample_type in the original profile. Not set if +// the default sample type was missing. +func PprofScopeDefaultSampleType(val string) attribute.KeyValue { + return PprofScopeDefaultSampleTypeKey.String(val) +} + +// PprofScopeSampleTypeOrder returns an attribute KeyValue conforming to the +// "pprof.scope.sample_type_order" semantic conventions. It represents the +// records the indexes of the sample types in the original profile. +func PprofScopeSampleTypeOrder(val ...int) attribute.KeyValue { + return PprofScopeSampleTypeOrderKey.IntSlice(val) +} + +// Namespace: process +const ( + // ProcessArgsCountKey is the attribute Key conforming to the + // "process.args_count" semantic conventions. It represents the length of the + // process.command_args array. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 4 + // Note: This field can be useful for querying or performing bucket analysis on + // how many arguments were provided to start a process. More arguments may be an + // indication of suspicious activity. + ProcessArgsCountKey = attribute.Key("process.args_count") + + // ProcessCommandKey is the attribute Key conforming to the "process.command" + // semantic conventions. It represents the command used to launch the process + // (i.e. the command name). On Linux based systems, can be set to the zeroth + // string in `proc/[pid]/cmdline`. On Windows, can be set to the first parameter + // extracted from `GetCommandLineW`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cmd/otelcol" + ProcessCommandKey = attribute.Key("process.command") + + // ProcessCommandArgsKey is the attribute Key conforming to the + // "process.command_args" semantic conventions. It represents the all the + // command arguments (including the command/executable itself) as received by + // the process. On Linux-based systems (and some other Unixoid systems + // supporting procfs), can be set according to the list of null-delimited + // strings extracted from `proc/[pid]/cmdline`. For libc-based executables, this + // would be the full argv vector passed to `main`. SHOULD NOT be collected by + // default unless there is sanitization that excludes sensitive data. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cmd/otecol", "--config=config.yaml" + ProcessCommandArgsKey = attribute.Key("process.command_args") + + // ProcessCommandLineKey is the attribute Key conforming to the + // "process.command_line" semantic conventions. It represents the full command + // used to launch the process as a single string representing the full command. + // On Windows, can be set to the result of `GetCommandLineW`. Do not set this if + // you have to assemble it just for monitoring; use `process.command_args` + // instead. SHOULD NOT be collected by default unless there is sanitization that + // excludes sensitive data. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "C:\cmd\otecol --config="my directory\config.yaml"" + ProcessCommandLineKey = attribute.Key("process.command_line") + + // ProcessContextSwitchTypeKey is the attribute Key conforming to the + // "process.context_switch.type" semantic conventions. It represents the + // specifies whether the context switches for this data point were voluntary or + // involuntary. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + ProcessContextSwitchTypeKey = attribute.Key("process.context_switch.type") + + // ProcessCreationTimeKey is the attribute Key conforming to the + // "process.creation.time" semantic conventions. It represents the date and time + // the process was created, in ISO 8601 format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2023-11-21T09:25:34.853Z" + ProcessCreationTimeKey = attribute.Key("process.creation.time") + + // ProcessExecutableBuildIDGNUKey is the attribute Key conforming to the + // "process.executable.build_id.gnu" semantic conventions. It represents the GNU + // build ID as found in the `.note.gnu.build-id` ELF section (hex string). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "c89b11207f6479603b0d49bf291c092c2b719293" + ProcessExecutableBuildIDGNUKey = attribute.Key("process.executable.build_id.gnu") + + // ProcessExecutableBuildIDGoKey is the attribute Key conforming to the + // "process.executable.build_id.go" semantic conventions. It represents the Go + // build ID as retrieved by `go tool buildid `. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "foh3mEXu7BLZjsN9pOwG/kATcXlYVCDEFouRMQed_/WwRFB1hPo9LBkekthSPG/x8hMC8emW2cCjXD0_1aY" + ProcessExecutableBuildIDGoKey = attribute.Key("process.executable.build_id.go") + + // ProcessExecutableBuildIDHtlhashKey is the attribute Key conforming to the + // "process.executable.build_id.htlhash" semantic conventions. It represents the + // deterministic build ID for executables. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "600DCAFE4A110000F2BF38C493F5FB92" + // Note: GNU and Go build IDs may be stripped or unavailable in some + // environments + // (e.g., Alpine Linux, Docker images). This attribute provides a deterministic + // build ID computed by hashing the first and last 4096 bytes of the file + // along with its length: + // + // ``` + // Input ↠Concat(File[:4096], File[-4096:], BigEndianUInt64(Len(File))) + // Digest ↠SHA256(Input) + // BuildID ↠Digest[:16] + // ``` + // + // The result is the first 16 bytes (128 bits) of the SHA256 digest, + // represented as a hex string. + ProcessExecutableBuildIDHtlhashKey = attribute.Key("process.executable.build_id.htlhash") + + // ProcessExecutableNameKey is the attribute Key conforming to the + // "process.executable.name" semantic conventions. It represents the name of the + // process executable. On Linux based systems, this SHOULD be set to the base + // name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to + // the base name of `GetProcessImageFileNameW`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "otelcol" + ProcessExecutableNameKey = attribute.Key("process.executable.name") + + // ProcessExecutablePathKey is the attribute Key conforming to the + // "process.executable.path" semantic conventions. It represents the full path + // to the process executable. On Linux based systems, can be set to the target + // of `proc/[pid]/exe`. On Windows, can be set to the result of + // `GetProcessImageFileNameW`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/usr/bin/cmd/otelcol" + ProcessExecutablePathKey = attribute.Key("process.executable.path") + + // ProcessExitCodeKey is the attribute Key conforming to the "process.exit.code" + // semantic conventions. It represents the exit code of the process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 127 + ProcessExitCodeKey = attribute.Key("process.exit.code") + + // ProcessExitTimeKey is the attribute Key conforming to the "process.exit.time" + // semantic conventions. It represents the date and time the process exited, in + // ISO 8601 format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2023-11-21T09:26:12.315Z" + ProcessExitTimeKey = attribute.Key("process.exit.time") + + // ProcessGroupLeaderPIDKey is the attribute Key conforming to the + // "process.group_leader.pid" semantic conventions. It represents the PID of the + // process's group leader. This is also the process group ID (PGID) of the + // process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 23 + ProcessGroupLeaderPIDKey = attribute.Key("process.group_leader.pid") + + // ProcessInteractiveKey is the attribute Key conforming to the + // "process.interactive" semantic conventions. It represents the whether the + // process is connected to an interactive shell. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + ProcessInteractiveKey = attribute.Key("process.interactive") + + // ProcessLinuxCgroupKey is the attribute Key conforming to the + // "process.linux.cgroup" semantic conventions. It represents the control group + // associated with the process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1:name=systemd:/user.slice/user-1000.slice/session-3.scope", + // "0::/user.slice/user-1000.slice/user@1000.service/tmux-spawn-0267755b-4639-4a27-90ed-f19f88e53748.scope" + // Note: Control groups (cgroups) are a kernel feature used to organize and + // manage process resources. This attribute provides the path(s) to the + // cgroup(s) associated with the process, which should match the contents of the + // [/proc/[PID]/cgroup] file. + // + // [/proc/[PID]/cgroup]: https://man7.org/linux/man-pages/man7/cgroups.7.html + ProcessLinuxCgroupKey = attribute.Key("process.linux.cgroup") + + // ProcessOwnerKey is the attribute Key conforming to the "process.owner" + // semantic conventions. It represents the username of the user that owns the + // process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "root" + ProcessOwnerKey = attribute.Key("process.owner") + + // ProcessParentPIDKey is the attribute Key conforming to the + // "process.parent_pid" semantic conventions. It represents the parent Process + // identifier (PPID). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 111 + ProcessParentPIDKey = attribute.Key("process.parent_pid") + + // ProcessPIDKey is the attribute Key conforming to the "process.pid" semantic + // conventions. It represents the process identifier (PID). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1234 + ProcessPIDKey = attribute.Key("process.pid") + + // ProcessRealUserIDKey is the attribute Key conforming to the + // "process.real_user.id" semantic conventions. It represents the real user ID + // (RUID) of the process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1000 + ProcessRealUserIDKey = attribute.Key("process.real_user.id") + + // ProcessRealUserNameKey is the attribute Key conforming to the + // "process.real_user.name" semantic conventions. It represents the username of + // the real user of the process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "operator" + ProcessRealUserNameKey = attribute.Key("process.real_user.name") + + // ProcessRuntimeDescriptionKey is the attribute Key conforming to the + // "process.runtime.description" semantic conventions. It represents an + // additional description about the runtime of the process, for example a + // specific vendor customization of the runtime environment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: Eclipse OpenJ9 Eclipse OpenJ9 VM openj9-0.21.0 + ProcessRuntimeDescriptionKey = attribute.Key("process.runtime.description") + + // ProcessRuntimeNameKey is the attribute Key conforming to the + // "process.runtime.name" semantic conventions. It represents the name of the + // runtime of this process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "OpenJDK Runtime Environment" + ProcessRuntimeNameKey = attribute.Key("process.runtime.name") + + // ProcessRuntimeVersionKey is the attribute Key conforming to the + // "process.runtime.version" semantic conventions. It represents the version of + // the runtime of this process, as returned by the runtime without modification. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 14.0.2 + ProcessRuntimeVersionKey = attribute.Key("process.runtime.version") + + // ProcessSavedUserIDKey is the attribute Key conforming to the + // "process.saved_user.id" semantic conventions. It represents the saved user ID + // (SUID) of the process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1002 + ProcessSavedUserIDKey = attribute.Key("process.saved_user.id") + + // ProcessSavedUserNameKey is the attribute Key conforming to the + // "process.saved_user.name" semantic conventions. It represents the username of + // the saved user. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "operator" + ProcessSavedUserNameKey = attribute.Key("process.saved_user.name") + + // ProcessSessionLeaderPIDKey is the attribute Key conforming to the + // "process.session_leader.pid" semantic conventions. It represents the PID of + // the process's session leader. This is also the session ID (SID) of the + // process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 14 + ProcessSessionLeaderPIDKey = attribute.Key("process.session_leader.pid") + + // ProcessStateKey is the attribute Key conforming to the "process.state" + // semantic conventions. It represents the process state, e.g., + // [Linux Process State Codes]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "running" + // + // [Linux Process State Codes]: https://man7.org/linux/man-pages/man1/ps.1.html#PROCESS_STATE_CODES + ProcessStateKey = attribute.Key("process.state") + + // ProcessTitleKey is the attribute Key conforming to the "process.title" + // semantic conventions. It represents the process title (proctitle). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cat /etc/hostname", "xfce4-session", "bash" + // Note: In many Unix-like systems, process title (proctitle), is the string + // that represents the name or command line of a running process, displayed by + // system monitoring tools like ps, top, and htop. + ProcessTitleKey = attribute.Key("process.title") + + // ProcessUserIDKey is the attribute Key conforming to the "process.user.id" + // semantic conventions. It represents the effective user ID (EUID) of the + // process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1001 + ProcessUserIDKey = attribute.Key("process.user.id") + + // ProcessUserNameKey is the attribute Key conforming to the "process.user.name" + // semantic conventions. It represents the username of the effective user of the + // process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "root" + ProcessUserNameKey = attribute.Key("process.user.name") + + // ProcessVpidKey is the attribute Key conforming to the "process.vpid" semantic + // conventions. It represents the virtual process identifier. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 12 + // Note: The process ID within a PID namespace. This is not necessarily unique + // across all processes on the host but it is unique within the process + // namespace that the process exists within. + ProcessVpidKey = attribute.Key("process.vpid") + + // ProcessWorkingDirectoryKey is the attribute Key conforming to the + // "process.working_directory" semantic conventions. It represents the working + // directory of the process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/root" + ProcessWorkingDirectoryKey = attribute.Key("process.working_directory") +) + +// ProcessArgsCount returns an attribute KeyValue conforming to the +// "process.args_count" semantic conventions. It represents the length of the +// process.command_args array. +func ProcessArgsCount(val int) attribute.KeyValue { + return ProcessArgsCountKey.Int(val) +} + +// ProcessCommand returns an attribute KeyValue conforming to the +// "process.command" semantic conventions. It represents the command used to +// launch the process (i.e. the command name). On Linux based systems, can be set +// to the zeroth string in `proc/[pid]/cmdline`. On Windows, can be set to the +// first parameter extracted from `GetCommandLineW`. +func ProcessCommand(val string) attribute.KeyValue { + return ProcessCommandKey.String(val) +} + +// ProcessCommandArgs returns an attribute KeyValue conforming to the +// "process.command_args" semantic conventions. It represents the all the command +// arguments (including the command/executable itself) as received by the +// process. On Linux-based systems (and some other Unixoid systems supporting +// procfs), can be set according to the list of null-delimited strings extracted +// from `proc/[pid]/cmdline`. For libc-based executables, this would be the full +// argv vector passed to `main`. SHOULD NOT be collected by default unless there +// is sanitization that excludes sensitive data. +func ProcessCommandArgs(val ...string) attribute.KeyValue { + return ProcessCommandArgsKey.StringSlice(val) +} + +// ProcessCommandLine returns an attribute KeyValue conforming to the +// "process.command_line" semantic conventions. It represents the full command +// used to launch the process as a single string representing the full command. +// On Windows, can be set to the result of `GetCommandLineW`. Do not set this if +// you have to assemble it just for monitoring; use `process.command_args` +// instead. SHOULD NOT be collected by default unless there is sanitization that +// excludes sensitive data. +func ProcessCommandLine(val string) attribute.KeyValue { + return ProcessCommandLineKey.String(val) +} + +// ProcessCreationTime returns an attribute KeyValue conforming to the +// "process.creation.time" semantic conventions. It represents the date and time +// the process was created, in ISO 8601 format. +func ProcessCreationTime(val string) attribute.KeyValue { + return ProcessCreationTimeKey.String(val) +} + +// ProcessEnvironmentVariable returns an attribute KeyValue conforming to the +// "process.environment_variable" semantic conventions. It represents the process +// environment variables, `` being the environment variable name, the value +// being the environment variable value. +func ProcessEnvironmentVariable(key string, val string) attribute.KeyValue { + return attribute.String("process.environment_variable."+key, val) +} + +// ProcessExecutableBuildIDGNU returns an attribute KeyValue conforming to the +// "process.executable.build_id.gnu" semantic conventions. It represents the GNU +// build ID as found in the `.note.gnu.build-id` ELF section (hex string). +func ProcessExecutableBuildIDGNU(val string) attribute.KeyValue { + return ProcessExecutableBuildIDGNUKey.String(val) +} + +// ProcessExecutableBuildIDGo returns an attribute KeyValue conforming to the +// "process.executable.build_id.go" semantic conventions. It represents the Go +// build ID as retrieved by `go tool buildid `. +func ProcessExecutableBuildIDGo(val string) attribute.KeyValue { + return ProcessExecutableBuildIDGoKey.String(val) +} + +// ProcessExecutableBuildIDHtlhash returns an attribute KeyValue conforming to +// the "process.executable.build_id.htlhash" semantic conventions. It represents +// the deterministic build ID for executables. +func ProcessExecutableBuildIDHtlhash(val string) attribute.KeyValue { + return ProcessExecutableBuildIDHtlhashKey.String(val) +} + +// ProcessExecutableName returns an attribute KeyValue conforming to the +// "process.executable.name" semantic conventions. It represents the name of the +// process executable. On Linux based systems, this SHOULD be set to the base +// name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to the +// base name of `GetProcessImageFileNameW`. +func ProcessExecutableName(val string) attribute.KeyValue { + return ProcessExecutableNameKey.String(val) +} + +// ProcessExecutablePath returns an attribute KeyValue conforming to the +// "process.executable.path" semantic conventions. It represents the full path to +// the process executable. On Linux based systems, can be set to the target of +// `proc/[pid]/exe`. On Windows, can be set to the result of +// `GetProcessImageFileNameW`. +func ProcessExecutablePath(val string) attribute.KeyValue { + return ProcessExecutablePathKey.String(val) +} + +// ProcessExitCode returns an attribute KeyValue conforming to the +// "process.exit.code" semantic conventions. It represents the exit code of the +// process. +func ProcessExitCode(val int) attribute.KeyValue { + return ProcessExitCodeKey.Int(val) +} + +// ProcessExitTime returns an attribute KeyValue conforming to the +// "process.exit.time" semantic conventions. It represents the date and time the +// process exited, in ISO 8601 format. +func ProcessExitTime(val string) attribute.KeyValue { + return ProcessExitTimeKey.String(val) +} + +// ProcessGroupLeaderPID returns an attribute KeyValue conforming to the +// "process.group_leader.pid" semantic conventions. It represents the PID of the +// process's group leader. This is also the process group ID (PGID) of the +// process. +func ProcessGroupLeaderPID(val int) attribute.KeyValue { + return ProcessGroupLeaderPIDKey.Int(val) +} + +// ProcessInteractive returns an attribute KeyValue conforming to the +// "process.interactive" semantic conventions. It represents the whether the +// process is connected to an interactive shell. +func ProcessInteractive(val bool) attribute.KeyValue { + return ProcessInteractiveKey.Bool(val) +} + +// ProcessLinuxCgroup returns an attribute KeyValue conforming to the +// "process.linux.cgroup" semantic conventions. It represents the control group +// associated with the process. +func ProcessLinuxCgroup(val string) attribute.KeyValue { + return ProcessLinuxCgroupKey.String(val) +} + +// ProcessOwner returns an attribute KeyValue conforming to the "process.owner" +// semantic conventions. It represents the username of the user that owns the +// process. +func ProcessOwner(val string) attribute.KeyValue { + return ProcessOwnerKey.String(val) +} + +// ProcessParentPID returns an attribute KeyValue conforming to the +// "process.parent_pid" semantic conventions. It represents the parent Process +// identifier (PPID). +func ProcessParentPID(val int) attribute.KeyValue { + return ProcessParentPIDKey.Int(val) +} + +// ProcessPID returns an attribute KeyValue conforming to the "process.pid" +// semantic conventions. It represents the process identifier (PID). +func ProcessPID(val int) attribute.KeyValue { + return ProcessPIDKey.Int(val) +} + +// ProcessRealUserID returns an attribute KeyValue conforming to the +// "process.real_user.id" semantic conventions. It represents the real user ID +// (RUID) of the process. +func ProcessRealUserID(val int) attribute.KeyValue { + return ProcessRealUserIDKey.Int(val) +} + +// ProcessRealUserName returns an attribute KeyValue conforming to the +// "process.real_user.name" semantic conventions. It represents the username of +// the real user of the process. +func ProcessRealUserName(val string) attribute.KeyValue { + return ProcessRealUserNameKey.String(val) +} + +// ProcessRuntimeDescription returns an attribute KeyValue conforming to the +// "process.runtime.description" semantic conventions. It represents an +// additional description about the runtime of the process, for example a +// specific vendor customization of the runtime environment. +func ProcessRuntimeDescription(val string) attribute.KeyValue { + return ProcessRuntimeDescriptionKey.String(val) +} + +// ProcessRuntimeName returns an attribute KeyValue conforming to the +// "process.runtime.name" semantic conventions. It represents the name of the +// runtime of this process. +func ProcessRuntimeName(val string) attribute.KeyValue { + return ProcessRuntimeNameKey.String(val) +} + +// ProcessRuntimeVersion returns an attribute KeyValue conforming to the +// "process.runtime.version" semantic conventions. It represents the version of +// the runtime of this process, as returned by the runtime without modification. +func ProcessRuntimeVersion(val string) attribute.KeyValue { + return ProcessRuntimeVersionKey.String(val) +} + +// ProcessSavedUserID returns an attribute KeyValue conforming to the +// "process.saved_user.id" semantic conventions. It represents the saved user ID +// (SUID) of the process. +func ProcessSavedUserID(val int) attribute.KeyValue { + return ProcessSavedUserIDKey.Int(val) +} + +// ProcessSavedUserName returns an attribute KeyValue conforming to the +// "process.saved_user.name" semantic conventions. It represents the username of +// the saved user. +func ProcessSavedUserName(val string) attribute.KeyValue { + return ProcessSavedUserNameKey.String(val) +} + +// ProcessSessionLeaderPID returns an attribute KeyValue conforming to the +// "process.session_leader.pid" semantic conventions. It represents the PID of +// the process's session leader. This is also the session ID (SID) of the +// process. +func ProcessSessionLeaderPID(val int) attribute.KeyValue { + return ProcessSessionLeaderPIDKey.Int(val) +} + +// ProcessTitle returns an attribute KeyValue conforming to the "process.title" +// semantic conventions. It represents the process title (proctitle). +func ProcessTitle(val string) attribute.KeyValue { + return ProcessTitleKey.String(val) +} + +// ProcessUserID returns an attribute KeyValue conforming to the +// "process.user.id" semantic conventions. It represents the effective user ID +// (EUID) of the process. +func ProcessUserID(val int) attribute.KeyValue { + return ProcessUserIDKey.Int(val) +} + +// ProcessUserName returns an attribute KeyValue conforming to the +// "process.user.name" semantic conventions. It represents the username of the +// effective user of the process. +func ProcessUserName(val string) attribute.KeyValue { + return ProcessUserNameKey.String(val) +} + +// ProcessVpid returns an attribute KeyValue conforming to the "process.vpid" +// semantic conventions. It represents the virtual process identifier. +func ProcessVpid(val int) attribute.KeyValue { + return ProcessVpidKey.Int(val) +} + +// ProcessWorkingDirectory returns an attribute KeyValue conforming to the +// "process.working_directory" semantic conventions. It represents the working +// directory of the process. +func ProcessWorkingDirectory(val string) attribute.KeyValue { + return ProcessWorkingDirectoryKey.String(val) +} + +// Enum values for process.context_switch.type +var ( + // voluntary + // Stability: development + ProcessContextSwitchTypeVoluntary = ProcessContextSwitchTypeKey.String("voluntary") + // involuntary + // Stability: development + ProcessContextSwitchTypeInvoluntary = ProcessContextSwitchTypeKey.String("involuntary") +) + +// Enum values for process.state +var ( + // running + // Stability: development + ProcessStateRunning = ProcessStateKey.String("running") + // sleeping + // Stability: development + ProcessStateSleeping = ProcessStateKey.String("sleeping") + // stopped + // Stability: development + ProcessStateStopped = ProcessStateKey.String("stopped") + // defunct + // Stability: development + ProcessStateDefunct = ProcessStateKey.String("defunct") +) + +// Namespace: profile +const ( + // ProfileFrameTypeKey is the attribute Key conforming to the + // "profile.frame.type" semantic conventions. It represents the describes the + // interpreter or compiler of a single frame. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cpython" + ProfileFrameTypeKey = attribute.Key("profile.frame.type") +) + +// Enum values for profile.frame.type +var ( + // [.NET] + // + // Stability: development + // + // [.NET]: https://wikipedia.org/wiki/.NET + ProfileFrameTypeDotnet = ProfileFrameTypeKey.String("dotnet") + // [JVM] + // + // Stability: development + // + // [JVM]: https://wikipedia.org/wiki/Java_virtual_machine + ProfileFrameTypeJVM = ProfileFrameTypeKey.String("jvm") + // [Kernel] + // + // Stability: development + // + // [Kernel]: https://wikipedia.org/wiki/Kernel_(operating_system) + ProfileFrameTypeKernel = ProfileFrameTypeKey.String("kernel") + // Can be one of but not limited to [C], [C++], [Go] or [Rust]. If possible, a + // more precise value MUST be used. + // + // Stability: development + // + // [C]: https://wikipedia.org/wiki/C_(programming_language) + // [C++]: https://wikipedia.org/wiki/C%2B%2B + // [Go]: https://wikipedia.org/wiki/Go_(programming_language) + // [Rust]: https://wikipedia.org/wiki/Rust_(programming_language) + ProfileFrameTypeNative = ProfileFrameTypeKey.String("native") + // [Perl] + // + // Stability: development + // + // [Perl]: https://wikipedia.org/wiki/Perl + ProfileFrameTypePerl = ProfileFrameTypeKey.String("perl") + // [PHP] + // + // Stability: development + // + // [PHP]: https://wikipedia.org/wiki/PHP + ProfileFrameTypePHP = ProfileFrameTypeKey.String("php") + // [Python] + // + // Stability: development + // + // [Python]: https://wikipedia.org/wiki/Python_(programming_language) + ProfileFrameTypeCpython = ProfileFrameTypeKey.String("cpython") + // [Ruby] + // + // Stability: development + // + // [Ruby]: https://wikipedia.org/wiki/Ruby_(programming_language) + ProfileFrameTypeRuby = ProfileFrameTypeKey.String("ruby") + // [V8JS] + // + // Stability: development + // + // [V8JS]: https://wikipedia.org/wiki/V8_(JavaScript_engine) + ProfileFrameTypeV8JS = ProfileFrameTypeKey.String("v8js") + // [Erlang] + // + // Stability: development + // + // [Erlang]: https://en.wikipedia.org/wiki/BEAM_(Erlang_virtual_machine) + ProfileFrameTypeBeam = ProfileFrameTypeKey.String("beam") + // [Go], + // + // Stability: development + // + // [Go]: https://wikipedia.org/wiki/Go_(programming_language) + ProfileFrameTypeGo = ProfileFrameTypeKey.String("go") + // [Rust] + // + // Stability: development + // + // [Rust]: https://wikipedia.org/wiki/Rust_(programming_language) + ProfileFrameTypeRust = ProfileFrameTypeKey.String("rust") +) + +// Namespace: rpc +const ( + // RPCMethodKey is the attribute Key conforming to the "rpc.method" semantic + // conventions. It represents the fully-qualified logical name of the method + // from the RPC interface perspective. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "com.example.ExampleService/exampleMethod", "EchoService/Echo", + // "_OTHER" + // Note: The method name MAY have unbounded cardinality in edge or error cases. + // + // Some RPC frameworks or libraries provide a fixed set of recognized methods + // for client stubs and server implementations. Instrumentations for such + // frameworks MUST set this attribute to the original method name only + // when the method is recognized by the framework or library. + // + // When the method is not recognized, for example, when the server receives + // a request for a method that is not predefined on the server, or when + // instrumentation is not able to reliably detect if the method is predefined, + // the attribute MUST be set to `_OTHER`. In such cases, tracing + // instrumentations MUST also set `rpc.method_original` attribute to + // the original method value. + // + // If the RPC instrumentation could end up converting valid RPC methods to + // `_OTHER`, then it SHOULD provide a way to configure the list of recognized + // RPC methods. + // + // The `rpc.method` can be different from the name of any implementing + // method/function. + // The `code.function.name` attribute may be used to record the fully-qualified + // method actually executing the call on the server side, or the + // RPC client stub method on the client side. + RPCMethodKey = attribute.Key("rpc.method") + + // RPCMethodOriginalKey is the attribute Key conforming to the + // "rpc.method_original" semantic conventions. It represents the original name + // of the method used by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "com.myservice.EchoService/catchAll", + // "com.myservice.EchoService/unknownMethod", "InvalidMethod" + RPCMethodOriginalKey = attribute.Key("rpc.method_original") + + // RPCResponseStatusCodeKey is the attribute Key conforming to the + // "rpc.response.status_code" semantic conventions. It represents the status + // code of the RPC returned by the RPC server or generated by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: "OK", "DEADLINE_EXCEEDED", "-32602" + // Note: Usually it represents an error code, but may also represent partial + // success, warning, or differentiate between various types of successful + // outcomes. + // Semantic conventions for individual RPC frameworks SHOULD document what + // `rpc.response.status_code` means in the context of that system and which + // values are considered to represent errors. + RPCResponseStatusCodeKey = attribute.Key("rpc.response.status_code") + + // RPCSystemNameKey is the attribute Key conforming to the "rpc.system.name" + // semantic conventions. It represents the Remote Procedure Call (RPC) system. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Release_Candidate + // + // Examples: + // Note: The client and server RPC systems may differ for the same RPC + // interaction. For example, a client may use Apache Dubbo or Connect RPC to + // communicate with a server that uses gRPC since both protocols provide + // compatibility with gRPC. + RPCSystemNameKey = attribute.Key("rpc.system.name") +) + +// RPCMethod returns an attribute KeyValue conforming to the "rpc.method" +// semantic conventions. It represents the fully-qualified logical name of the +// method from the RPC interface perspective. +func RPCMethod(val string) attribute.KeyValue { + return RPCMethodKey.String(val) +} + +// RPCMethodOriginal returns an attribute KeyValue conforming to the +// "rpc.method_original" semantic conventions. It represents the original name of +// the method used by the client. +func RPCMethodOriginal(val string) attribute.KeyValue { + return RPCMethodOriginalKey.String(val) +} + +// RPCRequestMetadata returns an attribute KeyValue conforming to the +// "rpc.request.metadata" semantic conventions. It represents the RPC request +// metadata, `` being the normalized RPC metadata key (lowercase), the value +// being the metadata values. +func RPCRequestMetadata(key string, val ...string) attribute.KeyValue { + return attribute.StringSlice("rpc.request.metadata."+key, val) +} + +// RPCResponseMetadata returns an attribute KeyValue conforming to the +// "rpc.response.metadata" semantic conventions. It represents the RPC response +// metadata, `` being the normalized RPC metadata key (lowercase), the value +// being the metadata values. +func RPCResponseMetadata(key string, val ...string) attribute.KeyValue { + return attribute.StringSlice("rpc.response.metadata."+key, val) +} + +// RPCResponseStatusCode returns an attribute KeyValue conforming to the +// "rpc.response.status_code" semantic conventions. It represents the status code +// of the RPC returned by the RPC server or generated by the client. +func RPCResponseStatusCode(val string) attribute.KeyValue { + return RPCResponseStatusCodeKey.String(val) +} + +// Enum values for rpc.system.name +var ( + // [gRPC] + // Stability: release_candidate + // + // [gRPC]: https://grpc.io/ + RPCSystemNameGRPC = RPCSystemNameKey.String("grpc") + // [Apache Dubbo] + // Stability: release_candidate + // + // [Apache Dubbo]: https://dubbo.apache.org/ + RPCSystemNameDubbo = RPCSystemNameKey.String("dubbo") + // [Connect RPC] + // Stability: development + // + // [Connect RPC]: https://connectrpc.com/ + RPCSystemNameConnectrpc = RPCSystemNameKey.String("connectrpc") + // [JSON-RPC] + // Stability: development + // + // [JSON-RPC]: https://www.jsonrpc.org/ + RPCSystemNameJSONRPC = RPCSystemNameKey.String("jsonrpc") +) + +// Namespace: security_rule +const ( + // SecurityRuleCategoryKey is the attribute Key conforming to the + // "security_rule.category" semantic conventions. It represents a categorization + // value keyword used by the entity using the rule for detection of this event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Attempted Information Leak" + SecurityRuleCategoryKey = attribute.Key("security_rule.category") + + // SecurityRuleDescriptionKey is the attribute Key conforming to the + // "security_rule.description" semantic conventions. It represents the + // description of the rule generating the event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Block requests to public DNS over HTTPS / TLS protocols" + SecurityRuleDescriptionKey = attribute.Key("security_rule.description") + + // SecurityRuleLicenseKey is the attribute Key conforming to the + // "security_rule.license" semantic conventions. It represents the name of the + // license under which the rule used to generate this event is made available. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Apache 2.0" + SecurityRuleLicenseKey = attribute.Key("security_rule.license") + + // SecurityRuleNameKey is the attribute Key conforming to the + // "security_rule.name" semantic conventions. It represents the name of the rule + // or signature generating the event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "BLOCK_DNS_over_TLS" + SecurityRuleNameKey = attribute.Key("security_rule.name") + + // SecurityRuleReferenceKey is the attribute Key conforming to the + // "security_rule.reference" semantic conventions. It represents the reference + // URL to additional information about the rule used to generate this event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://en.wikipedia.org/wiki/DNS_over_TLS" + // Note: The URL can point to the vendor’s documentation about the rule. If + // that’s not available, it can also be a link to a more general page + // describing this type of alert. + SecurityRuleReferenceKey = attribute.Key("security_rule.reference") + + // SecurityRuleRulesetNameKey is the attribute Key conforming to the + // "security_rule.ruleset.name" semantic conventions. It represents the name of + // the ruleset, policy, group, or parent category in which the rule used to + // generate this event is a member. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Standard_Protocol_Filters" + SecurityRuleRulesetNameKey = attribute.Key("security_rule.ruleset.name") + + // SecurityRuleUUIDKey is the attribute Key conforming to the + // "security_rule.uuid" semantic conventions. It represents a rule ID that is + // unique within the scope of a set or group of agents, observers, or other + // entities using the rule for detection of this event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "550e8400-e29b-41d4-a716-446655440000", "1100110011" + SecurityRuleUUIDKey = attribute.Key("security_rule.uuid") + + // SecurityRuleVersionKey is the attribute Key conforming to the + // "security_rule.version" semantic conventions. It represents the version / + // revision of the rule being used for analysis. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1.0.0" + SecurityRuleVersionKey = attribute.Key("security_rule.version") +) + +// SecurityRuleCategory returns an attribute KeyValue conforming to the +// "security_rule.category" semantic conventions. It represents a categorization +// value keyword used by the entity using the rule for detection of this event. +func SecurityRuleCategory(val string) attribute.KeyValue { + return SecurityRuleCategoryKey.String(val) +} + +// SecurityRuleDescription returns an attribute KeyValue conforming to the +// "security_rule.description" semantic conventions. It represents the +// description of the rule generating the event. +func SecurityRuleDescription(val string) attribute.KeyValue { + return SecurityRuleDescriptionKey.String(val) +} + +// SecurityRuleLicense returns an attribute KeyValue conforming to the +// "security_rule.license" semantic conventions. It represents the name of the +// license under which the rule used to generate this event is made available. +func SecurityRuleLicense(val string) attribute.KeyValue { + return SecurityRuleLicenseKey.String(val) +} + +// SecurityRuleName returns an attribute KeyValue conforming to the +// "security_rule.name" semantic conventions. It represents the name of the rule +// or signature generating the event. +func SecurityRuleName(val string) attribute.KeyValue { + return SecurityRuleNameKey.String(val) +} + +// SecurityRuleReference returns an attribute KeyValue conforming to the +// "security_rule.reference" semantic conventions. It represents the reference +// URL to additional information about the rule used to generate this event. +func SecurityRuleReference(val string) attribute.KeyValue { + return SecurityRuleReferenceKey.String(val) +} + +// SecurityRuleRulesetName returns an attribute KeyValue conforming to the +// "security_rule.ruleset.name" semantic conventions. It represents the name of +// the ruleset, policy, group, or parent category in which the rule used to +// generate this event is a member. +func SecurityRuleRulesetName(val string) attribute.KeyValue { + return SecurityRuleRulesetNameKey.String(val) +} + +// SecurityRuleUUID returns an attribute KeyValue conforming to the +// "security_rule.uuid" semantic conventions. It represents a rule ID that is +// unique within the scope of a set or group of agents, observers, or other +// entities using the rule for detection of this event. +func SecurityRuleUUID(val string) attribute.KeyValue { + return SecurityRuleUUIDKey.String(val) +} + +// SecurityRuleVersion returns an attribute KeyValue conforming to the +// "security_rule.version" semantic conventions. It represents the version / +// revision of the rule being used for analysis. +func SecurityRuleVersion(val string) attribute.KeyValue { + return SecurityRuleVersionKey.String(val) +} + +// Namespace: server +const ( + // ServerAddressKey is the attribute Key conforming to the "server.address" + // semantic conventions. It represents the server domain name if available + // without reverse DNS lookup; otherwise, IP address or Unix domain socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "example.com", "10.1.2.80", "/tmp/my.sock" + // Note: When observed from the client side, and when communicating through an + // intermediary, `server.address` SHOULD represent the server address behind any + // intermediaries, for example proxies, if it's available. + ServerAddressKey = attribute.Key("server.address") + + // ServerPortKey is the attribute Key conforming to the "server.port" semantic + // conventions. It represents the server port number. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 80, 8080, 443 + // Note: When observed from the client side, and when communicating through an + // intermediary, `server.port` SHOULD represent the server port behind any + // intermediaries, for example proxies, if it's available. + ServerPortKey = attribute.Key("server.port") +) + +// ServerAddress returns an attribute KeyValue conforming to the "server.address" +// semantic conventions. It represents the server domain name if available +// without reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func ServerAddress(val string) attribute.KeyValue { + return ServerAddressKey.String(val) +} + +// ServerPort returns an attribute KeyValue conforming to the "server.port" +// semantic conventions. It represents the server port number. +func ServerPort(val int) attribute.KeyValue { + return ServerPortKey.Int(val) +} + +// Namespace: service +const ( + // ServiceCriticalityKey is the attribute Key conforming to the + // "service.criticality" semantic conventions. It represents the operational + // criticality of the service. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "critical", "high", "medium", "low" + // Note: Application developers are encouraged to set `service.criticality` to + // express the operational importance of their services. Telemetry consumers MAY + // use this attribute to optimize telemetry collection or improve user + // experience. + ServiceCriticalityKey = attribute.Key("service.criticality") + + // ServiceInstanceIDKey is the attribute Key conforming to the + // "service.instance.id" semantic conventions. It represents the string ID of + // the service instance. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "627cc493-f310-47de-96bd-71410b7dec09" + // Note: MUST be unique for each instance of the same + // `service.namespace,service.name` pair (in other words + // `service.namespace,service.name,service.instance.id` triplet MUST be globally + // unique). The ID helps to + // distinguish instances of the same service that exist at the same time (e.g. + // instances of a horizontally scaled + // service). + // + // Implementations, such as SDKs, are recommended to generate a random Version 1 + // or Version 4 [RFC + // 4122] UUID, but are free to use an inherent unique ID as + // the source of + // this value if stability is desirable. In that case, the ID SHOULD be used as + // source of a UUID Version 5 and + // SHOULD use the following UUID as the namespace: + // `4d63009a-8d0f-11ee-aad7-4c796ed8e320`. + // + // UUIDs are typically recommended, as only an opaque value for the purposes of + // identifying a service instance is + // needed. Similar to what can be seen in the man page for the + // [`/etc/machine-id`] file, the underlying + // data, such as pod name and namespace should be treated as confidential, being + // the user's choice to expose it + // or not via another resource attribute. + // + // For applications running behind an application server (like unicorn), we do + // not recommend using one identifier + // for all processes participating in the application. Instead, it's recommended + // each division (e.g. a worker + // thread in unicorn) to have its own instance.id. + // + // It's not recommended for a Collector to set `service.instance.id` if it can't + // unambiguously determine the + // service instance that is generating that telemetry. For instance, creating an + // UUID based on `pod.name` will + // likely be wrong, as the Collector might not know from which container within + // that pod the telemetry originated. + // However, Collectors can set the `service.instance.id` if they can + // unambiguously determine the service instance + // for that telemetry. This is typically the case for scraping receivers, as + // they know the target address and + // port. + // + // [RFC + // 4122]: https://www.ietf.org/rfc/rfc4122.txt + // [`/etc/machine-id`]: https://www.freedesktop.org/software/systemd/man/latest/machine-id.html + ServiceInstanceIDKey = attribute.Key("service.instance.id") + + // ServiceNameKey is the attribute Key conforming to the "service.name" semantic + // conventions. It represents the logical name of the service. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "shoppingcart" + // Note: MUST be the same for all instances of horizontally scaled services. If + // the value was not specified, SDKs MUST fallback to `unknown_service:` + // concatenated with the process executable name, e.g. `unknown_service:bash`. + // If the process executable name is not available, the value MUST be set to + // `unknown_service`. + // The process executable name is the name of the process executable, the same + // value as described by the [`process.executable.name`] resource attribute. + // + // [`process.executable.name`]: process.md + ServiceNameKey = attribute.Key("service.name") + + // ServiceNamespaceKey is the attribute Key conforming to the + // "service.namespace" semantic conventions. It represents a namespace for + // `service.name`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "Shop" + // Note: A string value having a meaning that helps to distinguish a group of + // services, for example the team name that owns a group of services. + // `service.name` is expected to be unique within the same namespace. If + // `service.namespace` is not specified in the Resource then `service.name` is + // expected to be unique for all services that have no explicit namespace + // defined (so the empty/unspecified namespace is simply one more valid + // namespace). Zero-length namespace string is assumed equal to unspecified + // namespace. + ServiceNamespaceKey = attribute.Key("service.namespace") + + // ServicePeerNameKey is the attribute Key conforming to the "service.peer.name" + // semantic conventions. It represents the logical name of the service on the + // other side of the connection. SHOULD be equal to the actual [`service.name`] + // resource attribute of the remote service if any. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "shoppingcart" + // + // [`service.name`]: /docs/resource/README.md#service + ServicePeerNameKey = attribute.Key("service.peer.name") + + // ServicePeerNamespaceKey is the attribute Key conforming to the + // "service.peer.namespace" semantic conventions. It represents the logical + // namespace of the service on the other side of the connection. SHOULD be equal + // to the actual [`service.namespace`] resource attribute of the remote service + // if any. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Shop" + // + // [`service.namespace`]: /docs/resource/README.md#service + ServicePeerNamespaceKey = attribute.Key("service.peer.namespace") + + // ServiceVersionKey is the attribute Key conforming to the "service.version" + // semantic conventions. It represents the version string of the service + // component. The format is not defined by these conventions. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "2.0.0", "a01dbef8a" + ServiceVersionKey = attribute.Key("service.version") +) + +// ServiceInstanceID returns an attribute KeyValue conforming to the +// "service.instance.id" semantic conventions. It represents the string ID of the +// service instance. +func ServiceInstanceID(val string) attribute.KeyValue { + return ServiceInstanceIDKey.String(val) +} + +// ServiceName returns an attribute KeyValue conforming to the "service.name" +// semantic conventions. It represents the logical name of the service. +func ServiceName(val string) attribute.KeyValue { + return ServiceNameKey.String(val) +} + +// ServiceNamespace returns an attribute KeyValue conforming to the +// "service.namespace" semantic conventions. It represents a namespace for +// `service.name`. +func ServiceNamespace(val string) attribute.KeyValue { + return ServiceNamespaceKey.String(val) +} + +// ServicePeerName returns an attribute KeyValue conforming to the +// "service.peer.name" semantic conventions. It represents the logical name of +// the service on the other side of the connection. SHOULD be equal to the actual +// [`service.name`] resource attribute of the remote service if any. +// +// [`service.name`]: /docs/resource/README.md#service +func ServicePeerName(val string) attribute.KeyValue { + return ServicePeerNameKey.String(val) +} + +// ServicePeerNamespace returns an attribute KeyValue conforming to the +// "service.peer.namespace" semantic conventions. It represents the logical +// namespace of the service on the other side of the connection. SHOULD be equal +// to the actual [`service.namespace`] resource attribute of the remote service +// if any. +// +// [`service.namespace`]: /docs/resource/README.md#service +func ServicePeerNamespace(val string) attribute.KeyValue { + return ServicePeerNamespaceKey.String(val) +} + +// ServiceVersion returns an attribute KeyValue conforming to the +// "service.version" semantic conventions. It represents the version string of +// the service component. The format is not defined by these conventions. +func ServiceVersion(val string) attribute.KeyValue { + return ServiceVersionKey.String(val) +} + +// Enum values for service.criticality +var ( + // Service is business-critical; downtime directly impacts revenue, user + // experience, or core functionality. + // + // Stability: development + ServiceCriticalityCritical = ServiceCriticalityKey.String("critical") + // Service is important but has degradation tolerance or fallback mechanisms. + // + // Stability: development + ServiceCriticalityHigh = ServiceCriticalityKey.String("high") + // Service provides supplementary functionality; degradation has limited user + // impact. + // + // Stability: development + ServiceCriticalityMedium = ServiceCriticalityKey.String("medium") + // Service is non-essential to core operations; used for background tasks or + // internal tools. + // + // Stability: development + ServiceCriticalityLow = ServiceCriticalityKey.String("low") +) + +// Namespace: session +const ( + // SessionIDKey is the attribute Key conforming to the "session.id" semantic + // conventions. It represents a unique id to identify a session. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 00112233-4455-6677-8899-aabbccddeeff + SessionIDKey = attribute.Key("session.id") + + // SessionPreviousIDKey is the attribute Key conforming to the + // "session.previous_id" semantic conventions. It represents the previous + // `session.id` for this user, when known. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 00112233-4455-6677-8899-aabbccddeeff + SessionPreviousIDKey = attribute.Key("session.previous_id") +) + +// SessionID returns an attribute KeyValue conforming to the "session.id" +// semantic conventions. It represents a unique id to identify a session. +func SessionID(val string) attribute.KeyValue { + return SessionIDKey.String(val) +} + +// SessionPreviousID returns an attribute KeyValue conforming to the +// "session.previous_id" semantic conventions. It represents the previous +// `session.id` for this user, when known. +func SessionPreviousID(val string) attribute.KeyValue { + return SessionPreviousIDKey.String(val) +} + +// Namespace: signalr +const ( + // SignalRConnectionStatusKey is the attribute Key conforming to the + // "signalr.connection.status" semantic conventions. It represents the signalR + // HTTP connection closure status. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "app_shutdown", "timeout" + SignalRConnectionStatusKey = attribute.Key("signalr.connection.status") + + // SignalRTransportKey is the attribute Key conforming to the + // "signalr.transport" semantic conventions. It represents the + // [SignalR transport type]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "web_sockets", "long_polling" + // + // [SignalR transport type]: https://github.com/dotnet/aspnetcore/blob/main/src/SignalR/docs/specs/TransportProtocols.md + SignalRTransportKey = attribute.Key("signalr.transport") +) + +// Enum values for signalr.connection.status +var ( + // The connection was closed normally. + // Stability: stable + SignalRConnectionStatusNormalClosure = SignalRConnectionStatusKey.String("normal_closure") + // The connection was closed due to a timeout. + // Stability: stable + SignalRConnectionStatusTimeout = SignalRConnectionStatusKey.String("timeout") + // The connection was closed because the app is shutting down. + // Stability: stable + SignalRConnectionStatusAppShutdown = SignalRConnectionStatusKey.String("app_shutdown") +) + +// Enum values for signalr.transport +var ( + // ServerSentEvents protocol + // Stability: stable + SignalRTransportServerSentEvents = SignalRTransportKey.String("server_sent_events") + // LongPolling protocol + // Stability: stable + SignalRTransportLongPolling = SignalRTransportKey.String("long_polling") + // WebSockets protocol + // Stability: stable + SignalRTransportWebSockets = SignalRTransportKey.String("web_sockets") +) + +// Namespace: source +const ( + // SourceAddressKey is the attribute Key conforming to the "source.address" + // semantic conventions. It represents the source address - domain name if + // available without reverse DNS lookup; otherwise, IP address or Unix domain + // socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "source.example.com", "10.1.2.80", "/tmp/my.sock" + // Note: When observed from the destination side, and when communicating through + // an intermediary, `source.address` SHOULD represent the source address behind + // any intermediaries, for example proxies, if it's available. + SourceAddressKey = attribute.Key("source.address") + + // SourcePortKey is the attribute Key conforming to the "source.port" semantic + // conventions. It represents the source port number. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 3389, 2888 + SourcePortKey = attribute.Key("source.port") +) + +// SourceAddress returns an attribute KeyValue conforming to the "source.address" +// semantic conventions. It represents the source address - domain name if +// available without reverse DNS lookup; otherwise, IP address or Unix domain +// socket name. +func SourceAddress(val string) attribute.KeyValue { + return SourceAddressKey.String(val) +} + +// SourcePort returns an attribute KeyValue conforming to the "source.port" +// semantic conventions. It represents the source port number. +func SourcePort(val int) attribute.KeyValue { + return SourcePortKey.Int(val) +} + +// Namespace: system +const ( + // SystemDeviceKey is the attribute Key conforming to the "system.device" + // semantic conventions. It represents the device identifier. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "(identifier)" + SystemDeviceKey = attribute.Key("system.device") + + // SystemFilesystemModeKey is the attribute Key conforming to the + // "system.filesystem.mode" semantic conventions. It represents the filesystem + // mode. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "rw, ro" + SystemFilesystemModeKey = attribute.Key("system.filesystem.mode") + + // SystemFilesystemMountpointKey is the attribute Key conforming to the + // "system.filesystem.mountpoint" semantic conventions. It represents the + // filesystem mount path. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/mnt/data" + SystemFilesystemMountpointKey = attribute.Key("system.filesystem.mountpoint") + + // SystemFilesystemStateKey is the attribute Key conforming to the + // "system.filesystem.state" semantic conventions. It represents the filesystem + // state. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "used" + SystemFilesystemStateKey = attribute.Key("system.filesystem.state") + + // SystemFilesystemTypeKey is the attribute Key conforming to the + // "system.filesystem.type" semantic conventions. It represents the filesystem + // type. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ext4" + SystemFilesystemTypeKey = attribute.Key("system.filesystem.type") + + // SystemMemoryLinuxHugepagesStateKey is the attribute Key conforming to the + // "system.memory.linux.hugepages.state" semantic conventions. It represents the + // Linux HugePages memory state. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "free", "used" + SystemMemoryLinuxHugepagesStateKey = attribute.Key("system.memory.linux.hugepages.state") + + // SystemMemoryLinuxSlabStateKey is the attribute Key conforming to the + // "system.memory.linux.slab.state" semantic conventions. It represents the + // Linux Slab memory state. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "reclaimable", "unreclaimable" + SystemMemoryLinuxSlabStateKey = attribute.Key("system.memory.linux.slab.state") + + // SystemMemoryStateKey is the attribute Key conforming to the + // "system.memory.state" semantic conventions. It represents the memory state. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "free", "cached" + SystemMemoryStateKey = attribute.Key("system.memory.state") + + // SystemPagingDirectionKey is the attribute Key conforming to the + // "system.paging.direction" semantic conventions. It represents the paging + // access direction. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "in" + SystemPagingDirectionKey = attribute.Key("system.paging.direction") + + // SystemPagingFaultTypeKey is the attribute Key conforming to the + // "system.paging.fault.type" semantic conventions. It represents the paging + // fault type. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "minor" + SystemPagingFaultTypeKey = attribute.Key("system.paging.fault.type") + + // SystemPagingStateKey is the attribute Key conforming to the + // "system.paging.state" semantic conventions. It represents the memory paging + // state. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "free" + SystemPagingStateKey = attribute.Key("system.paging.state") +) + +// SystemDevice returns an attribute KeyValue conforming to the "system.device" +// semantic conventions. It represents the device identifier. +func SystemDevice(val string) attribute.KeyValue { + return SystemDeviceKey.String(val) +} + +// SystemFilesystemMode returns an attribute KeyValue conforming to the +// "system.filesystem.mode" semantic conventions. It represents the filesystem +// mode. +func SystemFilesystemMode(val string) attribute.KeyValue { + return SystemFilesystemModeKey.String(val) +} + +// SystemFilesystemMountpoint returns an attribute KeyValue conforming to the +// "system.filesystem.mountpoint" semantic conventions. It represents the +// filesystem mount path. +func SystemFilesystemMountpoint(val string) attribute.KeyValue { + return SystemFilesystemMountpointKey.String(val) +} + +// Enum values for system.filesystem.state +var ( + // used + // Stability: development + SystemFilesystemStateUsed = SystemFilesystemStateKey.String("used") + // free + // Stability: development + SystemFilesystemStateFree = SystemFilesystemStateKey.String("free") + // reserved + // Stability: development + SystemFilesystemStateReserved = SystemFilesystemStateKey.String("reserved") +) + +// Enum values for system.filesystem.type +var ( + // fat32 + // Stability: development + SystemFilesystemTypeFat32 = SystemFilesystemTypeKey.String("fat32") + // exfat + // Stability: development + SystemFilesystemTypeExfat = SystemFilesystemTypeKey.String("exfat") + // ntfs + // Stability: development + SystemFilesystemTypeNtfs = SystemFilesystemTypeKey.String("ntfs") + // refs + // Stability: development + SystemFilesystemTypeRefs = SystemFilesystemTypeKey.String("refs") + // hfsplus + // Stability: development + SystemFilesystemTypeHfsplus = SystemFilesystemTypeKey.String("hfsplus") + // ext4 + // Stability: development + SystemFilesystemTypeExt4 = SystemFilesystemTypeKey.String("ext4") +) + +// Enum values for system.memory.linux.hugepages.state +var ( + // free + // Stability: development + SystemMemoryLinuxHugepagesStateFree = SystemMemoryLinuxHugepagesStateKey.String("free") + // used + // Stability: development + SystemMemoryLinuxHugepagesStateUsed = SystemMemoryLinuxHugepagesStateKey.String("used") +) + +// Enum values for system.memory.linux.slab.state +var ( + // reclaimable + // Stability: development + SystemMemoryLinuxSlabStateReclaimable = SystemMemoryLinuxSlabStateKey.String("reclaimable") + // unreclaimable + // Stability: development + SystemMemoryLinuxSlabStateUnreclaimable = SystemMemoryLinuxSlabStateKey.String("unreclaimable") +) + +// Enum values for system.memory.state +var ( + // Actual used virtual memory in bytes. + // Stability: development + SystemMemoryStateUsed = SystemMemoryStateKey.String("used") + // free + // Stability: development + SystemMemoryStateFree = SystemMemoryStateKey.String("free") + // buffers + // Stability: development + SystemMemoryStateBuffers = SystemMemoryStateKey.String("buffers") + // cached + // Stability: development + SystemMemoryStateCached = SystemMemoryStateKey.String("cached") +) + +// Enum values for system.paging.direction +var ( + // in + // Stability: development + SystemPagingDirectionIn = SystemPagingDirectionKey.String("in") + // out + // Stability: development + SystemPagingDirectionOut = SystemPagingDirectionKey.String("out") +) + +// Enum values for system.paging.fault.type +var ( + // major + // Stability: development + SystemPagingFaultTypeMajor = SystemPagingFaultTypeKey.String("major") + // minor + // Stability: development + SystemPagingFaultTypeMinor = SystemPagingFaultTypeKey.String("minor") +) + +// Enum values for system.paging.state +var ( + // used + // Stability: development + SystemPagingStateUsed = SystemPagingStateKey.String("used") + // free + // Stability: development + SystemPagingStateFree = SystemPagingStateKey.String("free") +) + +// Namespace: telemetry +const ( + // TelemetryDistroNameKey is the attribute Key conforming to the + // "telemetry.distro.name" semantic conventions. It represents the name of the + // auto instrumentation agent or distribution, if used. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "parts-unlimited-java" + // Note: Official auto instrumentation agents and distributions SHOULD set the + // `telemetry.distro.name` attribute to + // a string starting with `opentelemetry-`, e.g. + // `opentelemetry-java-instrumentation`. + TelemetryDistroNameKey = attribute.Key("telemetry.distro.name") + + // TelemetryDistroVersionKey is the attribute Key conforming to the + // "telemetry.distro.version" semantic conventions. It represents the version + // string of the auto instrumentation agent or distribution, if used. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "1.2.3" + TelemetryDistroVersionKey = attribute.Key("telemetry.distro.version") + + // TelemetrySDKLanguageKey is the attribute Key conforming to the + // "telemetry.sdk.language" semantic conventions. It represents the language of + // the telemetry SDK. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: + TelemetrySDKLanguageKey = attribute.Key("telemetry.sdk.language") + + // TelemetrySDKNameKey is the attribute Key conforming to the + // "telemetry.sdk.name" semantic conventions. It represents the name of the + // telemetry SDK as defined above. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "opentelemetry" + // Note: The OpenTelemetry SDK MUST set the `telemetry.sdk.name` attribute to + // `opentelemetry`. + // If another SDK, like a fork or a vendor-provided implementation, is used, + // this SDK MUST set the + // `telemetry.sdk.name` attribute to the fully-qualified class or module name of + // this SDK's main entry point + // or another suitable identifier depending on the language. + // The identifier `opentelemetry` is reserved and MUST NOT be used in this case. + // All custom identifiers SHOULD be stable across different versions of an + // implementation. + TelemetrySDKNameKey = attribute.Key("telemetry.sdk.name") + + // TelemetrySDKVersionKey is the attribute Key conforming to the + // "telemetry.sdk.version" semantic conventions. It represents the version + // string of the telemetry SDK. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "1.2.3" + TelemetrySDKVersionKey = attribute.Key("telemetry.sdk.version") +) + +// TelemetryDistroName returns an attribute KeyValue conforming to the +// "telemetry.distro.name" semantic conventions. It represents the name of the +// auto instrumentation agent or distribution, if used. +func TelemetryDistroName(val string) attribute.KeyValue { + return TelemetryDistroNameKey.String(val) +} + +// TelemetryDistroVersion returns an attribute KeyValue conforming to the +// "telemetry.distro.version" semantic conventions. It represents the version +// string of the auto instrumentation agent or distribution, if used. +func TelemetryDistroVersion(val string) attribute.KeyValue { + return TelemetryDistroVersionKey.String(val) +} + +// TelemetrySDKName returns an attribute KeyValue conforming to the +// "telemetry.sdk.name" semantic conventions. It represents the name of the +// telemetry SDK as defined above. +func TelemetrySDKName(val string) attribute.KeyValue { + return TelemetrySDKNameKey.String(val) +} + +// TelemetrySDKVersion returns an attribute KeyValue conforming to the +// "telemetry.sdk.version" semantic conventions. It represents the version string +// of the telemetry SDK. +func TelemetrySDKVersion(val string) attribute.KeyValue { + return TelemetrySDKVersionKey.String(val) +} + +// Enum values for telemetry.sdk.language +var ( + // cpp + // Stability: stable + TelemetrySDKLanguageCPP = TelemetrySDKLanguageKey.String("cpp") + // dotnet + // Stability: stable + TelemetrySDKLanguageDotnet = TelemetrySDKLanguageKey.String("dotnet") + // erlang + // Stability: stable + TelemetrySDKLanguageErlang = TelemetrySDKLanguageKey.String("erlang") + // go + // Stability: stable + TelemetrySDKLanguageGo = TelemetrySDKLanguageKey.String("go") + // java + // Stability: stable + TelemetrySDKLanguageJava = TelemetrySDKLanguageKey.String("java") + // nodejs + // Stability: stable + TelemetrySDKLanguageNodejs = TelemetrySDKLanguageKey.String("nodejs") + // php + // Stability: stable + TelemetrySDKLanguagePHP = TelemetrySDKLanguageKey.String("php") + // python + // Stability: stable + TelemetrySDKLanguagePython = TelemetrySDKLanguageKey.String("python") + // ruby + // Stability: stable + TelemetrySDKLanguageRuby = TelemetrySDKLanguageKey.String("ruby") + // rust + // Stability: stable + TelemetrySDKLanguageRust = TelemetrySDKLanguageKey.String("rust") + // swift + // Stability: stable + TelemetrySDKLanguageSwift = TelemetrySDKLanguageKey.String("swift") + // webjs + // Stability: stable + TelemetrySDKLanguageWebJS = TelemetrySDKLanguageKey.String("webjs") +) + +// Namespace: test +const ( + // TestCaseNameKey is the attribute Key conforming to the "test.case.name" + // semantic conventions. It represents the fully qualified human readable name + // of the [test case]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "org.example.TestCase1.test1", "example/tests/TestCase1.test1", + // "ExampleTestCase1_test1" + // + // [test case]: https://wikipedia.org/wiki/Test_case + TestCaseNameKey = attribute.Key("test.case.name") + + // TestCaseResultStatusKey is the attribute Key conforming to the + // "test.case.result.status" semantic conventions. It represents the status of + // the actual test case result from test execution. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "pass", "fail" + TestCaseResultStatusKey = attribute.Key("test.case.result.status") + + // TestSuiteNameKey is the attribute Key conforming to the "test.suite.name" + // semantic conventions. It represents the human readable name of a [test suite] + // . + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "TestSuite1" + // + // [test suite]: https://wikipedia.org/wiki/Test_suite + TestSuiteNameKey = attribute.Key("test.suite.name") + + // TestSuiteRunStatusKey is the attribute Key conforming to the + // "test.suite.run.status" semantic conventions. It represents the status of the + // test suite run. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "success", "failure", "skipped", "aborted", "timed_out", + // "in_progress" + TestSuiteRunStatusKey = attribute.Key("test.suite.run.status") +) + +// TestCaseName returns an attribute KeyValue conforming to the "test.case.name" +// semantic conventions. It represents the fully qualified human readable name of +// the [test case]. +// +// [test case]: https://wikipedia.org/wiki/Test_case +func TestCaseName(val string) attribute.KeyValue { + return TestCaseNameKey.String(val) +} + +// TestSuiteName returns an attribute KeyValue conforming to the +// "test.suite.name" semantic conventions. It represents the human readable name +// of a [test suite]. +// +// [test suite]: https://wikipedia.org/wiki/Test_suite +func TestSuiteName(val string) attribute.KeyValue { + return TestSuiteNameKey.String(val) +} + +// Enum values for test.case.result.status +var ( + // pass + // Stability: development + TestCaseResultStatusPass = TestCaseResultStatusKey.String("pass") + // fail + // Stability: development + TestCaseResultStatusFail = TestCaseResultStatusKey.String("fail") +) + +// Enum values for test.suite.run.status +var ( + // success + // Stability: development + TestSuiteRunStatusSuccess = TestSuiteRunStatusKey.String("success") + // failure + // Stability: development + TestSuiteRunStatusFailure = TestSuiteRunStatusKey.String("failure") + // skipped + // Stability: development + TestSuiteRunStatusSkipped = TestSuiteRunStatusKey.String("skipped") + // aborted + // Stability: development + TestSuiteRunStatusAborted = TestSuiteRunStatusKey.String("aborted") + // timed_out + // Stability: development + TestSuiteRunStatusTimedOut = TestSuiteRunStatusKey.String("timed_out") + // in_progress + // Stability: development + TestSuiteRunStatusInProgress = TestSuiteRunStatusKey.String("in_progress") +) + +// Namespace: thread +const ( + // ThreadIDKey is the attribute Key conforming to the "thread.id" semantic + // conventions. It represents the current "managed" thread ID (as opposed to OS + // thread ID). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Note: + // Examples of where the value can be extracted from: + // + // | Language or platform | Source | + // | --- | --- | + // | JVM | `Thread.currentThread().threadId()` | + // | .NET | `Thread.CurrentThread.ManagedThreadId` | + // | Python | `threading.current_thread().ident` | + // | Ruby | `Thread.current.object_id` | + // | C++ | `std::this_thread::get_id()` | + // | Erlang | `erlang:self()` | + ThreadIDKey = attribute.Key("thread.id") + + // ThreadNameKey is the attribute Key conforming to the "thread.name" semantic + // conventions. It represents the current thread name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: main + // Note: + // Examples of where the value can be extracted from: + // + // | Language or platform | Source | + // | --- | --- | + // | JVM | `Thread.currentThread().getName()` | + // | .NET | `Thread.CurrentThread.Name` | + // | Python | `threading.current_thread().name` | + // | Ruby | `Thread.current.name` | + // | Erlang | `erlang:process_info(self(), registered_name)` | + ThreadNameKey = attribute.Key("thread.name") +) + +// ThreadID returns an attribute KeyValue conforming to the "thread.id" semantic +// conventions. It represents the current "managed" thread ID (as opposed to OS +// thread ID). +func ThreadID(val int) attribute.KeyValue { + return ThreadIDKey.Int(val) +} + +// ThreadName returns an attribute KeyValue conforming to the "thread.name" +// semantic conventions. It represents the current thread name. +func ThreadName(val string) attribute.KeyValue { + return ThreadNameKey.String(val) +} + +// Namespace: tls +const ( + // TLSCipherKey is the attribute Key conforming to the "tls.cipher" semantic + // conventions. It represents the string indicating the [cipher] used during the + // current connection. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "TLS_RSA_WITH_3DES_EDE_CBC_SHA", + // "TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA256" + // Note: The values allowed for `tls.cipher` MUST be one of the `Descriptions` + // of the [registered TLS Cipher Suits]. + // + // [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5 + // [registered TLS Cipher Suits]: https://www.iana.org/assignments/tls-parameters/tls-parameters.xhtml#table-tls-parameters-4 + TLSCipherKey = attribute.Key("tls.cipher") + + // TLSClientCertificateKey is the attribute Key conforming to the + // "tls.client.certificate" semantic conventions. It represents the PEM-encoded + // stand-alone certificate offered by the client. This is usually + // mutually-exclusive of `client.certificate_chain` since this value also exists + // in that list. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MII..." + TLSClientCertificateKey = attribute.Key("tls.client.certificate") + + // TLSClientCertificateChainKey is the attribute Key conforming to the + // "tls.client.certificate_chain" semantic conventions. It represents the array + // of PEM-encoded certificates that make up the certificate chain offered by the + // client. This is usually mutually-exclusive of `client.certificate` since that + // value should be the first certificate in the chain. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MII...", "MI..." + TLSClientCertificateChainKey = attribute.Key("tls.client.certificate_chain") + + // TLSClientHashMd5Key is the attribute Key conforming to the + // "tls.client.hash.md5" semantic conventions. It represents the certificate + // fingerprint using the MD5 digest of DER-encoded version of certificate + // offered by the client. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC" + TLSClientHashMd5Key = attribute.Key("tls.client.hash.md5") + + // TLSClientHashSha1Key is the attribute Key conforming to the + // "tls.client.hash.sha1" semantic conventions. It represents the certificate + // fingerprint using the SHA1 digest of DER-encoded version of certificate + // offered by the client. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A" + TLSClientHashSha1Key = attribute.Key("tls.client.hash.sha1") + + // TLSClientHashSha256Key is the attribute Key conforming to the + // "tls.client.hash.sha256" semantic conventions. It represents the certificate + // fingerprint using the SHA256 digest of DER-encoded version of certificate + // offered by the client. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0" + TLSClientHashSha256Key = attribute.Key("tls.client.hash.sha256") + + // TLSClientIssuerKey is the attribute Key conforming to the "tls.client.issuer" + // semantic conventions. It represents the distinguished name of [subject] of + // the issuer of the x.509 certificate presented by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com" + // + // [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 + TLSClientIssuerKey = attribute.Key("tls.client.issuer") + + // TLSClientJa3Key is the attribute Key conforming to the "tls.client.ja3" + // semantic conventions. It represents a hash that identifies clients based on + // how they perform an SSL/TLS handshake. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "d4e5b18d6b55c71272893221c96ba240" + TLSClientJa3Key = attribute.Key("tls.client.ja3") + + // TLSClientNotAfterKey is the attribute Key conforming to the + // "tls.client.not_after" semantic conventions. It represents the date/Time + // indicating when client certificate is no longer considered valid. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T00:00:00.000Z" + TLSClientNotAfterKey = attribute.Key("tls.client.not_after") + + // TLSClientNotBeforeKey is the attribute Key conforming to the + // "tls.client.not_before" semantic conventions. It represents the date/Time + // indicating when client certificate is first considered valid. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1970-01-01T00:00:00.000Z" + TLSClientNotBeforeKey = attribute.Key("tls.client.not_before") + + // TLSClientSubjectKey is the attribute Key conforming to the + // "tls.client.subject" semantic conventions. It represents the distinguished + // name of subject of the x.509 certificate presented by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CN=myclient, OU=Documentation Team, DC=example, DC=com" + TLSClientSubjectKey = attribute.Key("tls.client.subject") + + // TLSClientSupportedCiphersKey is the attribute Key conforming to the + // "tls.client.supported_ciphers" semantic conventions. It represents the array + // of ciphers offered by the client during the client hello. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384", + // "TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384" + TLSClientSupportedCiphersKey = attribute.Key("tls.client.supported_ciphers") + + // TLSCurveKey is the attribute Key conforming to the "tls.curve" semantic + // conventions. It represents the string indicating the curve used for the given + // cipher, when applicable. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "secp256r1" + TLSCurveKey = attribute.Key("tls.curve") + + // TLSEstablishedKey is the attribute Key conforming to the "tls.established" + // semantic conventions. It represents the boolean flag indicating if the TLS + // negotiation was successful and transitioned to an encrypted tunnel. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: true + TLSEstablishedKey = attribute.Key("tls.established") + + // TLSNextProtocolKey is the attribute Key conforming to the "tls.next_protocol" + // semantic conventions. It represents the string indicating the protocol being + // tunneled. Per the values in the [IANA registry], this string should be lower + // case. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "http/1.1" + // + // [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids + TLSNextProtocolKey = attribute.Key("tls.next_protocol") + + // TLSProtocolNameKey is the attribute Key conforming to the "tls.protocol.name" + // semantic conventions. It represents the normalized lowercase protocol name + // parsed from original string of the negotiated [SSL/TLS protocol version]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values + TLSProtocolNameKey = attribute.Key("tls.protocol.name") + + // TLSProtocolVersionKey is the attribute Key conforming to the + // "tls.protocol.version" semantic conventions. It represents the numeric part + // of the version parsed from the original string of the negotiated + // [SSL/TLS protocol version]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1.2", "3" + // + // [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values + TLSProtocolVersionKey = attribute.Key("tls.protocol.version") + + // TLSResumedKey is the attribute Key conforming to the "tls.resumed" semantic + // conventions. It represents the boolean flag indicating if this TLS connection + // was resumed from an existing TLS negotiation. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: true + TLSResumedKey = attribute.Key("tls.resumed") + + // TLSServerCertificateKey is the attribute Key conforming to the + // "tls.server.certificate" semantic conventions. It represents the PEM-encoded + // stand-alone certificate offered by the server. This is usually + // mutually-exclusive of `server.certificate_chain` since this value also exists + // in that list. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MII..." + TLSServerCertificateKey = attribute.Key("tls.server.certificate") + + // TLSServerCertificateChainKey is the attribute Key conforming to the + // "tls.server.certificate_chain" semantic conventions. It represents the array + // of PEM-encoded certificates that make up the certificate chain offered by the + // server. This is usually mutually-exclusive of `server.certificate` since that + // value should be the first certificate in the chain. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MII...", "MI..." + TLSServerCertificateChainKey = attribute.Key("tls.server.certificate_chain") + + // TLSServerHashMd5Key is the attribute Key conforming to the + // "tls.server.hash.md5" semantic conventions. It represents the certificate + // fingerprint using the MD5 digest of DER-encoded version of certificate + // offered by the server. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC" + TLSServerHashMd5Key = attribute.Key("tls.server.hash.md5") + + // TLSServerHashSha1Key is the attribute Key conforming to the + // "tls.server.hash.sha1" semantic conventions. It represents the certificate + // fingerprint using the SHA1 digest of DER-encoded version of certificate + // offered by the server. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A" + TLSServerHashSha1Key = attribute.Key("tls.server.hash.sha1") + + // TLSServerHashSha256Key is the attribute Key conforming to the + // "tls.server.hash.sha256" semantic conventions. It represents the certificate + // fingerprint using the SHA256 digest of DER-encoded version of certificate + // offered by the server. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0" + TLSServerHashSha256Key = attribute.Key("tls.server.hash.sha256") + + // TLSServerIssuerKey is the attribute Key conforming to the "tls.server.issuer" + // semantic conventions. It represents the distinguished name of [subject] of + // the issuer of the x.509 certificate presented by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com" + // + // [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 + TLSServerIssuerKey = attribute.Key("tls.server.issuer") + + // TLSServerJa3sKey is the attribute Key conforming to the "tls.server.ja3s" + // semantic conventions. It represents a hash that identifies servers based on + // how they perform an SSL/TLS handshake. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "d4e5b18d6b55c71272893221c96ba240" + TLSServerJa3sKey = attribute.Key("tls.server.ja3s") + + // TLSServerNotAfterKey is the attribute Key conforming to the + // "tls.server.not_after" semantic conventions. It represents the date/Time + // indicating when server certificate is no longer considered valid. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T00:00:00.000Z" + TLSServerNotAfterKey = attribute.Key("tls.server.not_after") + + // TLSServerNotBeforeKey is the attribute Key conforming to the + // "tls.server.not_before" semantic conventions. It represents the date/Time + // indicating when server certificate is first considered valid. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1970-01-01T00:00:00.000Z" + TLSServerNotBeforeKey = attribute.Key("tls.server.not_before") + + // TLSServerSubjectKey is the attribute Key conforming to the + // "tls.server.subject" semantic conventions. It represents the distinguished + // name of subject of the x.509 certificate presented by the server. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CN=myserver, OU=Documentation Team, DC=example, DC=com" + TLSServerSubjectKey = attribute.Key("tls.server.subject") +) + +// TLSCipher returns an attribute KeyValue conforming to the "tls.cipher" +// semantic conventions. It represents the string indicating the [cipher] used +// during the current connection. +// +// [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5 +func TLSCipher(val string) attribute.KeyValue { + return TLSCipherKey.String(val) +} + +// TLSClientCertificate returns an attribute KeyValue conforming to the +// "tls.client.certificate" semantic conventions. It represents the PEM-encoded +// stand-alone certificate offered by the client. This is usually +// mutually-exclusive of `client.certificate_chain` since this value also exists +// in that list. +func TLSClientCertificate(val string) attribute.KeyValue { + return TLSClientCertificateKey.String(val) +} + +// TLSClientCertificateChain returns an attribute KeyValue conforming to the +// "tls.client.certificate_chain" semantic conventions. It represents the array +// of PEM-encoded certificates that make up the certificate chain offered by the +// client. This is usually mutually-exclusive of `client.certificate` since that +// value should be the first certificate in the chain. +func TLSClientCertificateChain(val ...string) attribute.KeyValue { + return TLSClientCertificateChainKey.StringSlice(val) +} + +// TLSClientHashMd5 returns an attribute KeyValue conforming to the +// "tls.client.hash.md5" semantic conventions. It represents the certificate +// fingerprint using the MD5 digest of DER-encoded version of certificate offered +// by the client. For consistency with other hash values, this value should be +// formatted as an uppercase hash. +func TLSClientHashMd5(val string) attribute.KeyValue { + return TLSClientHashMd5Key.String(val) +} + +// TLSClientHashSha1 returns an attribute KeyValue conforming to the +// "tls.client.hash.sha1" semantic conventions. It represents the certificate +// fingerprint using the SHA1 digest of DER-encoded version of certificate +// offered by the client. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSClientHashSha1(val string) attribute.KeyValue { + return TLSClientHashSha1Key.String(val) +} + +// TLSClientHashSha256 returns an attribute KeyValue conforming to the +// "tls.client.hash.sha256" semantic conventions. It represents the certificate +// fingerprint using the SHA256 digest of DER-encoded version of certificate +// offered by the client. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSClientHashSha256(val string) attribute.KeyValue { + return TLSClientHashSha256Key.String(val) +} + +// TLSClientIssuer returns an attribute KeyValue conforming to the +// "tls.client.issuer" semantic conventions. It represents the distinguished name +// of [subject] of the issuer of the x.509 certificate presented by the client. +// +// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 +func TLSClientIssuer(val string) attribute.KeyValue { + return TLSClientIssuerKey.String(val) +} + +// TLSClientJa3 returns an attribute KeyValue conforming to the "tls.client.ja3" +// semantic conventions. It represents a hash that identifies clients based on +// how they perform an SSL/TLS handshake. +func TLSClientJa3(val string) attribute.KeyValue { + return TLSClientJa3Key.String(val) +} + +// TLSClientNotAfter returns an attribute KeyValue conforming to the +// "tls.client.not_after" semantic conventions. It represents the date/Time +// indicating when client certificate is no longer considered valid. +func TLSClientNotAfter(val string) attribute.KeyValue { + return TLSClientNotAfterKey.String(val) +} + +// TLSClientNotBefore returns an attribute KeyValue conforming to the +// "tls.client.not_before" semantic conventions. It represents the date/Time +// indicating when client certificate is first considered valid. +func TLSClientNotBefore(val string) attribute.KeyValue { + return TLSClientNotBeforeKey.String(val) +} + +// TLSClientSubject returns an attribute KeyValue conforming to the +// "tls.client.subject" semantic conventions. It represents the distinguished +// name of subject of the x.509 certificate presented by the client. +func TLSClientSubject(val string) attribute.KeyValue { + return TLSClientSubjectKey.String(val) +} + +// TLSClientSupportedCiphers returns an attribute KeyValue conforming to the +// "tls.client.supported_ciphers" semantic conventions. It represents the array +// of ciphers offered by the client during the client hello. +func TLSClientSupportedCiphers(val ...string) attribute.KeyValue { + return TLSClientSupportedCiphersKey.StringSlice(val) +} + +// TLSCurve returns an attribute KeyValue conforming to the "tls.curve" semantic +// conventions. It represents the string indicating the curve used for the given +// cipher, when applicable. +func TLSCurve(val string) attribute.KeyValue { + return TLSCurveKey.String(val) +} + +// TLSEstablished returns an attribute KeyValue conforming to the +// "tls.established" semantic conventions. It represents the boolean flag +// indicating if the TLS negotiation was successful and transitioned to an +// encrypted tunnel. +func TLSEstablished(val bool) attribute.KeyValue { + return TLSEstablishedKey.Bool(val) +} + +// TLSNextProtocol returns an attribute KeyValue conforming to the +// "tls.next_protocol" semantic conventions. It represents the string indicating +// the protocol being tunneled. Per the values in the [IANA registry], this +// string should be lower case. +// +// [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids +func TLSNextProtocol(val string) attribute.KeyValue { + return TLSNextProtocolKey.String(val) +} + +// TLSProtocolVersion returns an attribute KeyValue conforming to the +// "tls.protocol.version" semantic conventions. It represents the numeric part of +// the version parsed from the original string of the negotiated +// [SSL/TLS protocol version]. +// +// [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values +func TLSProtocolVersion(val string) attribute.KeyValue { + return TLSProtocolVersionKey.String(val) +} + +// TLSResumed returns an attribute KeyValue conforming to the "tls.resumed" +// semantic conventions. It represents the boolean flag indicating if this TLS +// connection was resumed from an existing TLS negotiation. +func TLSResumed(val bool) attribute.KeyValue { + return TLSResumedKey.Bool(val) +} + +// TLSServerCertificate returns an attribute KeyValue conforming to the +// "tls.server.certificate" semantic conventions. It represents the PEM-encoded +// stand-alone certificate offered by the server. This is usually +// mutually-exclusive of `server.certificate_chain` since this value also exists +// in that list. +func TLSServerCertificate(val string) attribute.KeyValue { + return TLSServerCertificateKey.String(val) +} + +// TLSServerCertificateChain returns an attribute KeyValue conforming to the +// "tls.server.certificate_chain" semantic conventions. It represents the array +// of PEM-encoded certificates that make up the certificate chain offered by the +// server. This is usually mutually-exclusive of `server.certificate` since that +// value should be the first certificate in the chain. +func TLSServerCertificateChain(val ...string) attribute.KeyValue { + return TLSServerCertificateChainKey.StringSlice(val) +} + +// TLSServerHashMd5 returns an attribute KeyValue conforming to the +// "tls.server.hash.md5" semantic conventions. It represents the certificate +// fingerprint using the MD5 digest of DER-encoded version of certificate offered +// by the server. For consistency with other hash values, this value should be +// formatted as an uppercase hash. +func TLSServerHashMd5(val string) attribute.KeyValue { + return TLSServerHashMd5Key.String(val) +} + +// TLSServerHashSha1 returns an attribute KeyValue conforming to the +// "tls.server.hash.sha1" semantic conventions. It represents the certificate +// fingerprint using the SHA1 digest of DER-encoded version of certificate +// offered by the server. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSServerHashSha1(val string) attribute.KeyValue { + return TLSServerHashSha1Key.String(val) +} + +// TLSServerHashSha256 returns an attribute KeyValue conforming to the +// "tls.server.hash.sha256" semantic conventions. It represents the certificate +// fingerprint using the SHA256 digest of DER-encoded version of certificate +// offered by the server. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSServerHashSha256(val string) attribute.KeyValue { + return TLSServerHashSha256Key.String(val) +} + +// TLSServerIssuer returns an attribute KeyValue conforming to the +// "tls.server.issuer" semantic conventions. It represents the distinguished name +// of [subject] of the issuer of the x.509 certificate presented by the client. +// +// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 +func TLSServerIssuer(val string) attribute.KeyValue { + return TLSServerIssuerKey.String(val) +} + +// TLSServerJa3s returns an attribute KeyValue conforming to the +// "tls.server.ja3s" semantic conventions. It represents a hash that identifies +// servers based on how they perform an SSL/TLS handshake. +func TLSServerJa3s(val string) attribute.KeyValue { + return TLSServerJa3sKey.String(val) +} + +// TLSServerNotAfter returns an attribute KeyValue conforming to the +// "tls.server.not_after" semantic conventions. It represents the date/Time +// indicating when server certificate is no longer considered valid. +func TLSServerNotAfter(val string) attribute.KeyValue { + return TLSServerNotAfterKey.String(val) +} + +// TLSServerNotBefore returns an attribute KeyValue conforming to the +// "tls.server.not_before" semantic conventions. It represents the date/Time +// indicating when server certificate is first considered valid. +func TLSServerNotBefore(val string) attribute.KeyValue { + return TLSServerNotBeforeKey.String(val) +} + +// TLSServerSubject returns an attribute KeyValue conforming to the +// "tls.server.subject" semantic conventions. It represents the distinguished +// name of subject of the x.509 certificate presented by the server. +func TLSServerSubject(val string) attribute.KeyValue { + return TLSServerSubjectKey.String(val) +} + +// Enum values for tls.protocol.name +var ( + // ssl + // Stability: development + TLSProtocolNameSsl = TLSProtocolNameKey.String("ssl") + // tls + // Stability: development + TLSProtocolNameTLS = TLSProtocolNameKey.String("tls") +) + +// Namespace: url +const ( + // URLDomainKey is the attribute Key conforming to the "url.domain" semantic + // conventions. It represents the domain extracted from the `url.full`, such as + // "opentelemetry.io". + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "www.foo.bar", "opentelemetry.io", "3.12.167.2", + // "[1080:0:0:0:8:800:200C:417A]" + // Note: In some cases a URL may refer to an IP and/or port directly, without a + // domain name. In this case, the IP address would go to the domain field. If + // the URL contains a [literal IPv6 address] enclosed by `[` and `]`, the `[` + // and `]` characters should also be captured in the domain field. + // + // [literal IPv6 address]: https://www.rfc-editor.org/rfc/rfc2732#section-2 + URLDomainKey = attribute.Key("url.domain") + + // URLExtensionKey is the attribute Key conforming to the "url.extension" + // semantic conventions. It represents the file extension extracted from the + // `url.full`, excluding the leading dot. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "png", "gz" + // Note: The file extension is only set if it exists, as not every url has a + // file extension. When the file name has multiple extensions `example.tar.gz`, + // only the last one should be captured `gz`, not `tar.gz`. + URLExtensionKey = attribute.Key("url.extension") + + // URLFragmentKey is the attribute Key conforming to the "url.fragment" semantic + // conventions. It represents the [URI fragment] component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "SemConv" + // + // [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5 + URLFragmentKey = attribute.Key("url.fragment") + + // URLFullKey is the attribute Key conforming to the "url.full" semantic + // conventions. It represents the absolute URL describing a network resource + // according to [RFC3986]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv", "//localhost" + // Note: For network calls, URL usually has + // `scheme://host[:port][path][?query][#fragment]` format, where the fragment + // is not transmitted over HTTP, but if it is known, it SHOULD be included + // nevertheless. + // + // `url.full` MUST NOT contain credentials passed via URL in form of + // `https://username:password@www.example.com/`. + // In such case username and password SHOULD be redacted and attribute's value + // SHOULD be `https://REDACTED:REDACTED@www.example.com/`. + // + // `url.full` SHOULD capture the absolute URL when it is available (or can be + // reconstructed). + // + // Sensitive content provided in `url.full` SHOULD be scrubbed when + // instrumentations can identify it. + // + // + // Query string values for the following keys SHOULD be redacted by default and + // replaced by the + // value `REDACTED`: + // + // - [`AWSAccessKeyId`] + // - [`Signature`] + // - [`sig`] + // - [`X-Goog-Signature`] + // + // This list is subject to change over time. + // + // Matching of query parameter keys against the sensitive list SHOULD be + // case-sensitive. + // + // + // Instrumentation MAY provide a way to override this list via declarative + // configuration. + // If so, it SHOULD use the `sensitive_query_parameters` property + // (an array of case-sensitive strings with minimum items 0) under + // `.instrumentation/development.general.sanitization.url`. + // This list is a full override of the default sensitive query parameter keys, + // it is not a list of keys in addition to the defaults. + // + // When a query string value is redacted, the query string key SHOULD still be + // preserved, e.g. + // `https://www.example.com/path?color=blue&sig=REDACTED`. + // + // [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986 + // [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth + // [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth + // [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token + // [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls + URLFullKey = attribute.Key("url.full") + + // URLOriginalKey is the attribute Key conforming to the "url.original" semantic + // conventions. It represents the unmodified original URL as seen in the event + // source. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv", + // "search?q=OpenTelemetry" + // Note: In network monitoring, the observed URL may be a full URL, whereas in + // access logs, the URL is often just represented as a path. This field is meant + // to represent the URL as it was observed, complete or not. + // `url.original` might contain credentials passed via URL in form of + // `https://username:password@www.example.com/`. In such case password and + // username SHOULD NOT be redacted and attribute's value SHOULD remain the same. + URLOriginalKey = attribute.Key("url.original") + + // URLPathKey is the attribute Key conforming to the "url.path" semantic + // conventions. It represents the [URI path] component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "/search" + // Note: Sensitive content provided in `url.path` SHOULD be scrubbed when + // instrumentations can identify it. + // + // [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3 + URLPathKey = attribute.Key("url.path") + + // URLPortKey is the attribute Key conforming to the "url.port" semantic + // conventions. It represents the port extracted from the `url.full`. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 443 + URLPortKey = attribute.Key("url.port") + + // URLQueryKey is the attribute Key conforming to the "url.query" semantic + // conventions. It represents the [URI query] component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "q=OpenTelemetry" + // Note: Sensitive content provided in `url.query` SHOULD be scrubbed when + // instrumentations can identify it. + // + // + // Query string values for the following keys SHOULD be redacted by default and + // replaced by the value `REDACTED`: + // + // - [`AWSAccessKeyId`] + // - [`Signature`] + // - [`sig`] + // - [`X-Goog-Signature`] + // + // This list is subject to change over time. + // + // Matching of query parameter keys against the sensitive list SHOULD be + // case-sensitive. + // + // Instrumentation MAY provide a way to override this list via declarative + // configuration. + // If so, it SHOULD use the `sensitive_query_parameters` property + // (an array of case-sensitive strings with minimum items 0) under + // `.instrumentation/development.general.sanitization.url`. + // This list is a full override of the default sensitive query parameter keys, + // it is not a list of keys in addition to the defaults. + // + // When a query string value is redacted, the query string key SHOULD still be + // preserved, e.g. + // `q=OpenTelemetry&sig=REDACTED`. + // + // [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4 + // [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth + // [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth + // [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token + // [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls + URLQueryKey = attribute.Key("url.query") + + // URLRegisteredDomainKey is the attribute Key conforming to the + // "url.registered_domain" semantic conventions. It represents the highest + // registered url domain, stripped of the subdomain. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "example.com", "foo.co.uk" + // Note: This value can be determined precisely with the [public suffix list]. + // For example, the registered domain for `foo.example.com` is `example.com`. + // Trying to approximate this by simply taking the last two labels will not work + // well for TLDs such as `co.uk`. + // + // [public suffix list]: https://publicsuffix.org/ + URLRegisteredDomainKey = attribute.Key("url.registered_domain") + + // URLSchemeKey is the attribute Key conforming to the "url.scheme" semantic + // conventions. It represents the [URI scheme] component identifying the used + // protocol. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "https", "ftp", "telnet" + // + // [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 + URLSchemeKey = attribute.Key("url.scheme") + + // URLSubdomainKey is the attribute Key conforming to the "url.subdomain" + // semantic conventions. It represents the subdomain portion of a fully + // qualified domain name includes all of the names except the host name under + // the registered_domain. In a partially qualified domain, or if the + // qualification level of the full name cannot be determined, subdomain contains + // all of the names below the registered domain. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "east", "sub2.sub1" + // Note: The subdomain portion of `www.east.mydomain.co.uk` is `east`. If the + // domain has multiple levels of subdomain, such as `sub2.sub1.example.com`, the + // subdomain field should contain `sub2.sub1`, with no trailing period. + URLSubdomainKey = attribute.Key("url.subdomain") + + // URLTemplateKey is the attribute Key conforming to the "url.template" semantic + // conventions. It represents the low-cardinality template of an + // [absolute path reference]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/users/{id}", "/users/:id", "/users?id={id}" + // + // [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 + URLTemplateKey = attribute.Key("url.template") + + // URLTopLevelDomainKey is the attribute Key conforming to the + // "url.top_level_domain" semantic conventions. It represents the effective top + // level domain (eTLD), also known as the domain suffix, is the last part of the + // domain name. For example, the top level domain for example.com is `com`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "com", "co.uk" + // Note: This value can be determined precisely with the [public suffix list]. + // + // [public suffix list]: https://publicsuffix.org/ + URLTopLevelDomainKey = attribute.Key("url.top_level_domain") +) + +// URLDomain returns an attribute KeyValue conforming to the "url.domain" +// semantic conventions. It represents the domain extracted from the `url.full`, +// such as "opentelemetry.io". +func URLDomain(val string) attribute.KeyValue { + return URLDomainKey.String(val) +} + +// URLExtension returns an attribute KeyValue conforming to the "url.extension" +// semantic conventions. It represents the file extension extracted from the +// `url.full`, excluding the leading dot. +func URLExtension(val string) attribute.KeyValue { + return URLExtensionKey.String(val) +} + +// URLFragment returns an attribute KeyValue conforming to the "url.fragment" +// semantic conventions. It represents the [URI fragment] component. +// +// [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5 +func URLFragment(val string) attribute.KeyValue { + return URLFragmentKey.String(val) +} + +// URLFull returns an attribute KeyValue conforming to the "url.full" semantic +// conventions. It represents the absolute URL describing a network resource +// according to [RFC3986]. +// +// [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986 +func URLFull(val string) attribute.KeyValue { + return URLFullKey.String(val) +} + +// URLOriginal returns an attribute KeyValue conforming to the "url.original" +// semantic conventions. It represents the unmodified original URL as seen in the +// event source. +func URLOriginal(val string) attribute.KeyValue { + return URLOriginalKey.String(val) +} + +// URLPath returns an attribute KeyValue conforming to the "url.path" semantic +// conventions. It represents the [URI path] component. +// +// [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3 +func URLPath(val string) attribute.KeyValue { + return URLPathKey.String(val) +} + +// URLPort returns an attribute KeyValue conforming to the "url.port" semantic +// conventions. It represents the port extracted from the `url.full`. +func URLPort(val int) attribute.KeyValue { + return URLPortKey.Int(val) +} + +// URLQuery returns an attribute KeyValue conforming to the "url.query" semantic +// conventions. It represents the [URI query] component. +// +// [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4 +func URLQuery(val string) attribute.KeyValue { + return URLQueryKey.String(val) +} + +// URLRegisteredDomain returns an attribute KeyValue conforming to the +// "url.registered_domain" semantic conventions. It represents the highest +// registered url domain, stripped of the subdomain. +func URLRegisteredDomain(val string) attribute.KeyValue { + return URLRegisteredDomainKey.String(val) +} + +// URLScheme returns an attribute KeyValue conforming to the "url.scheme" +// semantic conventions. It represents the [URI scheme] component identifying the +// used protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func URLScheme(val string) attribute.KeyValue { + return URLSchemeKey.String(val) +} + +// URLSubdomain returns an attribute KeyValue conforming to the "url.subdomain" +// semantic conventions. It represents the subdomain portion of a fully qualified +// domain name includes all of the names except the host name under the +// registered_domain. In a partially qualified domain, or if the qualification +// level of the full name cannot be determined, subdomain contains all of the +// names below the registered domain. +func URLSubdomain(val string) attribute.KeyValue { + return URLSubdomainKey.String(val) +} + +// URLTemplate returns an attribute KeyValue conforming to the "url.template" +// semantic conventions. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func URLTemplate(val string) attribute.KeyValue { + return URLTemplateKey.String(val) +} + +// URLTopLevelDomain returns an attribute KeyValue conforming to the +// "url.top_level_domain" semantic conventions. It represents the effective top +// level domain (eTLD), also known as the domain suffix, is the last part of the +// domain name. For example, the top level domain for example.com is `com`. +func URLTopLevelDomain(val string) attribute.KeyValue { + return URLTopLevelDomainKey.String(val) +} + +// Namespace: user +const ( + // UserEmailKey is the attribute Key conforming to the "user.email" semantic + // conventions. It represents the user email address. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "a.einstein@example.com" + UserEmailKey = attribute.Key("user.email") + + // UserFullNameKey is the attribute Key conforming to the "user.full_name" + // semantic conventions. It represents the user's full name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Albert Einstein" + UserFullNameKey = attribute.Key("user.full_name") + + // UserHashKey is the attribute Key conforming to the "user.hash" semantic + // conventions. It represents the unique user hash to correlate information for + // a user in anonymized form. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "364fc68eaf4c8acec74a4e52d7d1feaa" + // Note: Useful if `user.id` or `user.name` contain confidential information and + // cannot be used. + UserHashKey = attribute.Key("user.hash") + + // UserIDKey is the attribute Key conforming to the "user.id" semantic + // conventions. It represents the unique identifier of the user. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "S-1-5-21-202424912787-2692429404-2351956786-1000" + UserIDKey = attribute.Key("user.id") + + // UserNameKey is the attribute Key conforming to the "user.name" semantic + // conventions. It represents the short name or login/username of the user. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "a.einstein" + UserNameKey = attribute.Key("user.name") + + // UserRolesKey is the attribute Key conforming to the "user.roles" semantic + // conventions. It represents the array of user roles at the time of the event. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "admin", "reporting_user" + UserRolesKey = attribute.Key("user.roles") +) + +// UserEmail returns an attribute KeyValue conforming to the "user.email" +// semantic conventions. It represents the user email address. +func UserEmail(val string) attribute.KeyValue { + return UserEmailKey.String(val) +} + +// UserFullName returns an attribute KeyValue conforming to the "user.full_name" +// semantic conventions. It represents the user's full name. +func UserFullName(val string) attribute.KeyValue { + return UserFullNameKey.String(val) +} + +// UserHash returns an attribute KeyValue conforming to the "user.hash" semantic +// conventions. It represents the unique user hash to correlate information for a +// user in anonymized form. +func UserHash(val string) attribute.KeyValue { + return UserHashKey.String(val) +} + +// UserID returns an attribute KeyValue conforming to the "user.id" semantic +// conventions. It represents the unique identifier of the user. +func UserID(val string) attribute.KeyValue { + return UserIDKey.String(val) +} + +// UserName returns an attribute KeyValue conforming to the "user.name" semantic +// conventions. It represents the short name or login/username of the user. +func UserName(val string) attribute.KeyValue { + return UserNameKey.String(val) +} + +// UserRoles returns an attribute KeyValue conforming to the "user.roles" +// semantic conventions. It represents the array of user roles at the time of the +// event. +func UserRoles(val ...string) attribute.KeyValue { + return UserRolesKey.StringSlice(val) +} + +// Namespace: user_agent +const ( + // UserAgentNameKey is the attribute Key conforming to the "user_agent.name" + // semantic conventions. It represents the name of the user-agent extracted from + // original. Usually refers to the browser's name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Safari", "YourApp" + // Note: [Example] of extracting browser's name from original string. In the + // case of using a user-agent for non-browser products, such as microservices + // with multiple names/versions inside the `user_agent.original`, the most + // significant name SHOULD be selected. In such a scenario it should align with + // `user_agent.version` + // + // [Example]: https://uaparser.dev/#demo + UserAgentNameKey = attribute.Key("user_agent.name") + + // UserAgentOriginalKey is the attribute Key conforming to the + // "user_agent.original" semantic conventions. It represents the value of the + // [HTTP User-Agent] header sent by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "CERN-LineMode/2.15 libwww/2.17b3", "Mozilla/5.0 (iPhone; CPU + // iPhone OS 14_7_1 like Mac OS X) AppleWebKit/605.1.15 (KHTML, like Gecko) + // Version/14.1.2 Mobile/15E148 Safari/604.1", "YourApp/1.0.0 + // grpc-java-okhttp/1.27.2" + // + // [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent + UserAgentOriginalKey = attribute.Key("user_agent.original") + + // UserAgentOSNameKey is the attribute Key conforming to the + // "user_agent.os.name" semantic conventions. It represents the human readable + // operating system name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "iOS", "Android", "Ubuntu" + // Note: For mapping user agent strings to OS names, libraries such as + // [ua-parser] can be utilized. + // + // [ua-parser]: https://github.com/ua-parser + UserAgentOSNameKey = attribute.Key("user_agent.os.name") + + // UserAgentOSVersionKey is the attribute Key conforming to the + // "user_agent.os.version" semantic conventions. It represents the version + // string of the operating system as defined in [Version Attributes]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "14.2.1", "18.04.1" + // Note: For mapping user agent strings to OS versions, libraries such as + // [ua-parser] can be utilized. + // + // [Version Attributes]: /docs/resource/README.md#version-attributes + // [ua-parser]: https://github.com/ua-parser + UserAgentOSVersionKey = attribute.Key("user_agent.os.version") + + // UserAgentSyntheticTypeKey is the attribute Key conforming to the + // "user_agent.synthetic.type" semantic conventions. It represents the specifies + // the category of synthetic traffic, such as tests or bots. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: This attribute MAY be derived from the contents of the + // `user_agent.original` attribute. Components that populate the attribute are + // responsible for determining what they consider to be synthetic bot or test + // traffic. This attribute can either be set for self-identification purposes, + // or on telemetry detected to be generated as a result of a synthetic request. + // This attribute is useful for distinguishing between genuine client traffic + // and synthetic traffic generated by bots or tests. + UserAgentSyntheticTypeKey = attribute.Key("user_agent.synthetic.type") + + // UserAgentVersionKey is the attribute Key conforming to the + // "user_agent.version" semantic conventions. It represents the version of the + // user-agent extracted from original. Usually refers to the browser's version. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "14.1.2", "1.0.0" + // Note: [Example] of extracting browser's version from original string. In the + // case of using a user-agent for non-browser products, such as microservices + // with multiple names/versions inside the `user_agent.original`, the most + // significant version SHOULD be selected. In such a scenario it should align + // with `user_agent.name` + // + // [Example]: https://uaparser.dev/#demo + UserAgentVersionKey = attribute.Key("user_agent.version") +) + +// UserAgentName returns an attribute KeyValue conforming to the +// "user_agent.name" semantic conventions. It represents the name of the +// user-agent extracted from original. Usually refers to the browser's name. +func UserAgentName(val string) attribute.KeyValue { + return UserAgentNameKey.String(val) +} + +// UserAgentOriginal returns an attribute KeyValue conforming to the +// "user_agent.original" semantic conventions. It represents the value of the +// [HTTP User-Agent] header sent by the client. +// +// [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent +func UserAgentOriginal(val string) attribute.KeyValue { + return UserAgentOriginalKey.String(val) +} + +// UserAgentOSName returns an attribute KeyValue conforming to the +// "user_agent.os.name" semantic conventions. It represents the human readable +// operating system name. +func UserAgentOSName(val string) attribute.KeyValue { + return UserAgentOSNameKey.String(val) +} + +// UserAgentOSVersion returns an attribute KeyValue conforming to the +// "user_agent.os.version" semantic conventions. It represents the version string +// of the operating system as defined in [Version Attributes]. +// +// [Version Attributes]: /docs/resource/README.md#version-attributes +func UserAgentOSVersion(val string) attribute.KeyValue { + return UserAgentOSVersionKey.String(val) +} + +// UserAgentVersion returns an attribute KeyValue conforming to the +// "user_agent.version" semantic conventions. It represents the version of the +// user-agent extracted from original. Usually refers to the browser's version. +func UserAgentVersion(val string) attribute.KeyValue { + return UserAgentVersionKey.String(val) +} + +// Enum values for user_agent.synthetic.type +var ( + // Bot source. + // Stability: development + UserAgentSyntheticTypeBot = UserAgentSyntheticTypeKey.String("bot") + // Synthetic test source. + // Stability: development + UserAgentSyntheticTypeTest = UserAgentSyntheticTypeKey.String("test") +) + +// Namespace: vcs +const ( + // VCSChangeIDKey is the attribute Key conforming to the "vcs.change.id" + // semantic conventions. It represents the ID of the change (pull request/merge + // request/changelist) if applicable. This is usually a unique (within + // repository) identifier generated by the VCS system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "123" + VCSChangeIDKey = attribute.Key("vcs.change.id") + + // VCSChangeStateKey is the attribute Key conforming to the "vcs.change.state" + // semantic conventions. It represents the state of the change (pull + // request/merge request/changelist). + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "open", "closed", "merged" + VCSChangeStateKey = attribute.Key("vcs.change.state") + + // VCSChangeTitleKey is the attribute Key conforming to the "vcs.change.title" + // semantic conventions. It represents the human readable title of the change + // (pull request/merge request/changelist). This title is often a brief summary + // of the change and may get merged in to a ref as the commit summary. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Fixes broken thing", "feat: add my new feature", "[chore] update + // dependency" + VCSChangeTitleKey = attribute.Key("vcs.change.title") + + // VCSLineChangeTypeKey is the attribute Key conforming to the + // "vcs.line_change.type" semantic conventions. It represents the type of line + // change being measured on a branch or change. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "added", "removed" + VCSLineChangeTypeKey = attribute.Key("vcs.line_change.type") + + // VCSOwnerNameKey is the attribute Key conforming to the "vcs.owner.name" + // semantic conventions. It represents the group owner within the version + // control system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-org", "myteam", "business-unit" + VCSOwnerNameKey = attribute.Key("vcs.owner.name") + + // VCSProviderNameKey is the attribute Key conforming to the "vcs.provider.name" + // semantic conventions. It represents the name of the version control system + // provider. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "github", "gitlab", "gitea", "bitbucket" + VCSProviderNameKey = attribute.Key("vcs.provider.name") + + // VCSRefBaseNameKey is the attribute Key conforming to the "vcs.ref.base.name" + // semantic conventions. It represents the name of the [reference] such as + // **branch** or **tag** in the repository. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-feature-branch", "tag-1-test" + // Note: `base` refers to the starting point of a change. For example, `main` + // would be the base reference of type branch if you've created a new + // reference of type branch from it and created new commits. + // + // [reference]: https://git-scm.com/docs/gitglossary#def_ref + VCSRefBaseNameKey = attribute.Key("vcs.ref.base.name") + + // VCSRefBaseRevisionKey is the attribute Key conforming to the + // "vcs.ref.base.revision" semantic conventions. It represents the revision, + // literally [revised version], The revision most often refers to a commit + // object in Git, or a revision number in SVN. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc", + // "main", "123", "HEAD" + // Note: `base` refers to the starting point of a change. For example, `main` + // would be the base reference of type branch if you've created a new + // reference of type branch from it and created new commits. The + // revision can be a full [hash value (see + // glossary)], + // of the recorded change to a ref within a repository pointing to a + // commit [commit] object. It does + // not necessarily have to be a hash; it can simply define a [revision + // number] + // which is an integer that is monotonically increasing. In cases where + // it is identical to the `ref.base.name`, it SHOULD still be included. + // It is up to the implementer to decide which value to set as the + // revision based on the VCS system and situational context. + // + // [revised version]: https://www.merriam-webster.com/dictionary/revision + // [hash value (see + // glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf + // [commit]: https://git-scm.com/docs/git-commit + // [revision + // number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html + VCSRefBaseRevisionKey = attribute.Key("vcs.ref.base.revision") + + // VCSRefBaseTypeKey is the attribute Key conforming to the "vcs.ref.base.type" + // semantic conventions. It represents the type of the [reference] in the + // repository. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "branch", "tag" + // Note: `base` refers to the starting point of a change. For example, `main` + // would be the base reference of type branch if you've created a new + // reference of type branch from it and created new commits. + // + // [reference]: https://git-scm.com/docs/gitglossary#def_ref + VCSRefBaseTypeKey = attribute.Key("vcs.ref.base.type") + + // VCSRefHeadNameKey is the attribute Key conforming to the "vcs.ref.head.name" + // semantic conventions. It represents the name of the [reference] such as + // **branch** or **tag** in the repository. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-feature-branch", "tag-1-test" + // Note: `head` refers to where you are right now; the current reference at a + // given time. + // + // [reference]: https://git-scm.com/docs/gitglossary#def_ref + VCSRefHeadNameKey = attribute.Key("vcs.ref.head.name") + + // VCSRefHeadRevisionKey is the attribute Key conforming to the + // "vcs.ref.head.revision" semantic conventions. It represents the revision, + // literally [revised version], The revision most often refers to a commit + // object in Git, or a revision number in SVN. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc", + // "main", "123", "HEAD" + // Note: `head` refers to where you are right now; the current reference at a + // given time.The revision can be a full [hash value (see + // glossary)], + // of the recorded change to a ref within a repository pointing to a + // commit [commit] object. It does + // not necessarily have to be a hash; it can simply define a [revision + // number] + // which is an integer that is monotonically increasing. In cases where + // it is identical to the `ref.head.name`, it SHOULD still be included. + // It is up to the implementer to decide which value to set as the + // revision based on the VCS system and situational context. + // + // [revised version]: https://www.merriam-webster.com/dictionary/revision + // [hash value (see + // glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf + // [commit]: https://git-scm.com/docs/git-commit + // [revision + // number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html + VCSRefHeadRevisionKey = attribute.Key("vcs.ref.head.revision") + + // VCSRefHeadTypeKey is the attribute Key conforming to the "vcs.ref.head.type" + // semantic conventions. It represents the type of the [reference] in the + // repository. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "branch", "tag" + // Note: `head` refers to where you are right now; the current reference at a + // given time. + // + // [reference]: https://git-scm.com/docs/gitglossary#def_ref + VCSRefHeadTypeKey = attribute.Key("vcs.ref.head.type") + + // VCSRefTypeKey is the attribute Key conforming to the "vcs.ref.type" semantic + // conventions. It represents the type of the [reference] in the repository. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "branch", "tag" + // + // [reference]: https://git-scm.com/docs/gitglossary#def_ref + VCSRefTypeKey = attribute.Key("vcs.ref.type") + + // VCSRepositoryNameKey is the attribute Key conforming to the + // "vcs.repository.name" semantic conventions. It represents the human readable + // name of the repository. It SHOULD NOT include any additional identifier like + // Group/SubGroup in GitLab or organization in GitHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "semantic-conventions", "my-cool-repo" + // Note: Due to it only being the name, it can clash with forks of the same + // repository if collecting telemetry across multiple orgs or groups in + // the same backends. + VCSRepositoryNameKey = attribute.Key("vcs.repository.name") + + // VCSRepositoryURLFullKey is the attribute Key conforming to the + // "vcs.repository.url.full" semantic conventions. It represents the + // [canonical URL] of the repository providing the complete HTTP(S) address in + // order to locate and identify the repository through a browser. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "https://github.com/opentelemetry/open-telemetry-collector-contrib", + // "https://gitlab.com/my-org/my-project/my-projects-project/repo" + // Note: In Git Version Control Systems, the canonical URL SHOULD NOT include + // the `.git` extension. + // + // [canonical URL]: https://support.google.com/webmasters/answer/10347851 + VCSRepositoryURLFullKey = attribute.Key("vcs.repository.url.full") + + // VCSRevisionDeltaDirectionKey is the attribute Key conforming to the + // "vcs.revision_delta.direction" semantic conventions. It represents the type + // of revision comparison. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ahead", "behind" + VCSRevisionDeltaDirectionKey = attribute.Key("vcs.revision_delta.direction") +) + +// VCSChangeID returns an attribute KeyValue conforming to the "vcs.change.id" +// semantic conventions. It represents the ID of the change (pull request/merge +// request/changelist) if applicable. This is usually a unique (within +// repository) identifier generated by the VCS system. +func VCSChangeID(val string) attribute.KeyValue { + return VCSChangeIDKey.String(val) +} + +// VCSChangeTitle returns an attribute KeyValue conforming to the +// "vcs.change.title" semantic conventions. It represents the human readable +// title of the change (pull request/merge request/changelist). This title is +// often a brief summary of the change and may get merged in to a ref as the +// commit summary. +func VCSChangeTitle(val string) attribute.KeyValue { + return VCSChangeTitleKey.String(val) +} + +// VCSOwnerName returns an attribute KeyValue conforming to the "vcs.owner.name" +// semantic conventions. It represents the group owner within the version control +// system. +func VCSOwnerName(val string) attribute.KeyValue { + return VCSOwnerNameKey.String(val) +} + +// VCSRefBaseName returns an attribute KeyValue conforming to the +// "vcs.ref.base.name" semantic conventions. It represents the name of the +// [reference] such as **branch** or **tag** in the repository. +// +// [reference]: https://git-scm.com/docs/gitglossary#def_ref +func VCSRefBaseName(val string) attribute.KeyValue { + return VCSRefBaseNameKey.String(val) +} + +// VCSRefBaseRevision returns an attribute KeyValue conforming to the +// "vcs.ref.base.revision" semantic conventions. It represents the revision, +// literally [revised version], The revision most often refers to a commit object +// in Git, or a revision number in SVN. +// +// [revised version]: https://www.merriam-webster.com/dictionary/revision +func VCSRefBaseRevision(val string) attribute.KeyValue { + return VCSRefBaseRevisionKey.String(val) +} + +// VCSRefHeadName returns an attribute KeyValue conforming to the +// "vcs.ref.head.name" semantic conventions. It represents the name of the +// [reference] such as **branch** or **tag** in the repository. +// +// [reference]: https://git-scm.com/docs/gitglossary#def_ref +func VCSRefHeadName(val string) attribute.KeyValue { + return VCSRefHeadNameKey.String(val) +} + +// VCSRefHeadRevision returns an attribute KeyValue conforming to the +// "vcs.ref.head.revision" semantic conventions. It represents the revision, +// literally [revised version], The revision most often refers to a commit object +// in Git, or a revision number in SVN. +// +// [revised version]: https://www.merriam-webster.com/dictionary/revision +func VCSRefHeadRevision(val string) attribute.KeyValue { + return VCSRefHeadRevisionKey.String(val) +} + +// VCSRepositoryName returns an attribute KeyValue conforming to the +// "vcs.repository.name" semantic conventions. It represents the human readable +// name of the repository. It SHOULD NOT include any additional identifier like +// Group/SubGroup in GitLab or organization in GitHub. +func VCSRepositoryName(val string) attribute.KeyValue { + return VCSRepositoryNameKey.String(val) +} + +// VCSRepositoryURLFull returns an attribute KeyValue conforming to the +// "vcs.repository.url.full" semantic conventions. It represents the +// [canonical URL] of the repository providing the complete HTTP(S) address in +// order to locate and identify the repository through a browser. +// +// [canonical URL]: https://support.google.com/webmasters/answer/10347851 +func VCSRepositoryURLFull(val string) attribute.KeyValue { + return VCSRepositoryURLFullKey.String(val) +} + +// Enum values for vcs.change.state +var ( + // Open means the change is currently active and under review. It hasn't been + // merged into the target branch yet, and it's still possible to make changes or + // add comments. + // Stability: development + VCSChangeStateOpen = VCSChangeStateKey.String("open") + // WIP (work-in-progress, draft) means the change is still in progress and not + // yet ready for a full review. It might still undergo significant changes. + // Stability: development + VCSChangeStateWip = VCSChangeStateKey.String("wip") + // Closed means the merge request has been closed without merging. This can + // happen for various reasons, such as the changes being deemed unnecessary, the + // issue being resolved in another way, or the author deciding to withdraw the + // request. + // Stability: development + VCSChangeStateClosed = VCSChangeStateKey.String("closed") + // Merged indicates that the change has been successfully integrated into the + // target codebase. + // Stability: development + VCSChangeStateMerged = VCSChangeStateKey.String("merged") +) + +// Enum values for vcs.line_change.type +var ( + // How many lines were added. + // Stability: development + VCSLineChangeTypeAdded = VCSLineChangeTypeKey.String("added") + // How many lines were removed. + // Stability: development + VCSLineChangeTypeRemoved = VCSLineChangeTypeKey.String("removed") +) + +// Enum values for vcs.provider.name +var ( + // [GitHub] + // Stability: development + // + // [GitHub]: https://github.com + VCSProviderNameGithub = VCSProviderNameKey.String("github") + // [GitLab] + // Stability: development + // + // [GitLab]: https://gitlab.com + VCSProviderNameGitlab = VCSProviderNameKey.String("gitlab") + // [Gitea] + // Stability: development + // + // [Gitea]: https://gitea.io + VCSProviderNameGitea = VCSProviderNameKey.String("gitea") + // [Bitbucket] + // Stability: development + // + // [Bitbucket]: https://bitbucket.org + VCSProviderNameBitbucket = VCSProviderNameKey.String("bitbucket") +) + +// Enum values for vcs.ref.base.type +var ( + // [branch] + // Stability: development + // + // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch + VCSRefBaseTypeBranch = VCSRefBaseTypeKey.String("branch") + // [tag] + // Stability: development + // + // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag + VCSRefBaseTypeTag = VCSRefBaseTypeKey.String("tag") +) + +// Enum values for vcs.ref.head.type +var ( + // [branch] + // Stability: development + // + // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch + VCSRefHeadTypeBranch = VCSRefHeadTypeKey.String("branch") + // [tag] + // Stability: development + // + // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag + VCSRefHeadTypeTag = VCSRefHeadTypeKey.String("tag") +) + +// Enum values for vcs.ref.type +var ( + // [branch] + // Stability: development + // + // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch + VCSRefTypeBranch = VCSRefTypeKey.String("branch") + // [tag] + // Stability: development + // + // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag + VCSRefTypeTag = VCSRefTypeKey.String("tag") +) + +// Enum values for vcs.revision_delta.direction +var ( + // How many revisions the change is behind the target ref. + // Stability: development + VCSRevisionDeltaDirectionBehind = VCSRevisionDeltaDirectionKey.String("behind") + // How many revisions the change is ahead of the target ref. + // Stability: development + VCSRevisionDeltaDirectionAhead = VCSRevisionDeltaDirectionKey.String("ahead") +) + +// Namespace: webengine +const ( + // WebEngineDescriptionKey is the attribute Key conforming to the + // "webengine.description" semantic conventions. It represents the additional + // description of the web engine (e.g. detailed version and edition + // information). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "WildFly Full 21.0.0.Final (WildFly Core 13.0.1.Final) - + // 2.2.2.Final" + WebEngineDescriptionKey = attribute.Key("webengine.description") + + // WebEngineNameKey is the attribute Key conforming to the "webengine.name" + // semantic conventions. It represents the name of the web engine. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "WildFly" + WebEngineNameKey = attribute.Key("webengine.name") + + // WebEngineVersionKey is the attribute Key conforming to the + // "webengine.version" semantic conventions. It represents the version of the + // web engine. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "21.0.0" + WebEngineVersionKey = attribute.Key("webengine.version") +) + +// WebEngineDescription returns an attribute KeyValue conforming to the +// "webengine.description" semantic conventions. It represents the additional +// description of the web engine (e.g. detailed version and edition information). +func WebEngineDescription(val string) attribute.KeyValue { + return WebEngineDescriptionKey.String(val) +} + +// WebEngineName returns an attribute KeyValue conforming to the "webengine.name" +// semantic conventions. It represents the name of the web engine. +func WebEngineName(val string) attribute.KeyValue { + return WebEngineNameKey.String(val) +} + +// WebEngineVersion returns an attribute KeyValue conforming to the +// "webengine.version" semantic conventions. It represents the version of the web +// engine. +func WebEngineVersion(val string) attribute.KeyValue { + return WebEngineVersionKey.String(val) +} + +// Namespace: zos +const ( + // ZOSSmfIDKey is the attribute Key conforming to the "zos.smf.id" semantic + // conventions. It represents the System Management Facility (SMF) Identifier + // uniquely identified a z/OS system within a SYSPLEX or mainframe environment + // and is used for system and performance analysis. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "SYS1" + ZOSSmfIDKey = attribute.Key("zos.smf.id") + + // ZOSSysplexNameKey is the attribute Key conforming to the "zos.sysplex.name" + // semantic conventions. It represents the name of the SYSPLEX to which the z/OS + // system belongs too. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "SYSPLEX1" + ZOSSysplexNameKey = attribute.Key("zos.sysplex.name") +) + +// ZOSSmfID returns an attribute KeyValue conforming to the "zos.smf.id" semantic +// conventions. It represents the System Management Facility (SMF) Identifier +// uniquely identified a z/OS system within a SYSPLEX or mainframe environment +// and is used for system and performance analysis. +func ZOSSmfID(val string) attribute.KeyValue { + return ZOSSmfIDKey.String(val) +} + +// ZOSSysplexName returns an attribute KeyValue conforming to the +// "zos.sysplex.name" semantic conventions. It represents the name of the SYSPLEX +// to which the z/OS system belongs too. +func ZOSSysplexName(val string) attribute.KeyValue { + return ZOSSysplexNameKey.String(val) +} \ No newline at end of file diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/doc.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/doc.go new file mode 100644 index 0000000000..a45d424d88 --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/doc.go @@ -0,0 +1,11 @@ +// Code generated from semantic convention specification. DO NOT EDIT. + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package semconv implements OpenTelemetry semantic conventions. +// +// OpenTelemetry semantic conventions are agreed standardized naming +// patterns for OpenTelemetry things. This package represents the v1.41.0 +// version of the OpenTelemetry semantic conventions. +package semconv // import "go.opentelemetry.io/otel/semconv/v1.41.0" diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/error_type.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/error_type.go new file mode 100644 index 0000000000..0b13f0de8e --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/error_type.go @@ -0,0 +1,83 @@ +// Code generated from semantic convention specification. DO NOT EDIT. + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.41.0" + +import ( + "errors" + "fmt" + "reflect" + + "go.opentelemetry.io/otel/attribute" +) + +// ErrorType returns an [attribute.KeyValue] identifying the error type of err. +// +// If err is nil, the returned attribute has the default value +// [ErrorTypeOther]. +// +// If err or one of the errors in its chain has the method +// +// ErrorType() string +// +// the returned attribute has that method's return value. If multiple errors in +// the chain implement this method, the value from the first match found by +// [errors.As] is used. Otherwise, the returned attribute has a value derived +// from the concrete type of err after unwrapping any wrappers created with +// [fmt.Errorf]. +// +// The key of the returned attribute is [ErrorTypeKey]. +func ErrorType(err error) attribute.KeyValue { + if err == nil { + return ErrorTypeOther + } + + return ErrorTypeKey.String(errorType(err)) +} + +func errorType(err error) string { + var s string + if et, ok := err.(interface{ ErrorType() string }); ok { + // Fast path: check the top-level error first. + s = et.ErrorType() + } else { + // Fallback: search the error chain for an ErrorType method. + var et interface{ ErrorType() string } + if errors.As(err, &et) { + // Prioritize the ErrorType method if available. + s = et.ErrorType() + } + } + if s == "" { + // Fallback to reflection if the ErrorType method is not supported or + // returns an empty value. + + t := reflect.TypeOf(unwrapFmtWrapped(err)) + pkg, name := t.PkgPath(), t.Name() + if pkg != "" && name != "" { + s = pkg + "." + name + } else { + // The type has no package path or name (predeclared, not-defined, + // or alias for a not-defined type). + // + // This is not guaranteed to be unique, but is a best effort. + s = t.String() + } + } + return s +} + +var fmtWrapErrorType = reflect.TypeOf(fmt.Errorf("wrapped: %w", errors.New("err"))) + +func unwrapFmtWrapped(err error) error { + for reflect.TypeOf(err) == fmtWrapErrorType { + u := errors.Unwrap(err) + if u == nil { + return err // When the wrapped error is nil, use the concrete type of the wrapper. + } + err = u + } + return err +} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/exception.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/exception.go new file mode 100644 index 0000000000..5f0151affa --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/exception.go @@ -0,0 +1,11 @@ +// Code generated from semantic convention specification. DO NOT EDIT. + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.41.0" + +const ( + // ExceptionEventName is the name of the Span event representing an exception. + ExceptionEventName = "exception" +) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/httpconv/metric.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/httpconv/metric.go new file mode 100644 index 0000000000..1b811e2d72 --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/httpconv/metric.go @@ -0,0 +1,2136 @@ +// Code generated from semantic convention specification. DO NOT EDIT. + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package httpconv provides types and functionality for OpenTelemetry semantic +// conventions in the "http" namespace. +package httpconv + +import ( + "context" + "sync" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/noop" +) + +var ( + addOptPool = &sync.Pool{New: func() any { return &[]metric.AddOption{} }} + recOptPool = &sync.Pool{New: func() any { return &[]metric.RecordOption{} }} +) + +// ErrorTypeAttr is an attribute conforming to the error.type semantic +// conventions. It represents the describes a class of error the operation ended +// with. +type ErrorTypeAttr string + +var ( + // ErrorTypeOther is a fallback error value to be used when the instrumentation + // doesn't define a custom value. + ErrorTypeOther ErrorTypeAttr = "_OTHER" +) + +// ConnectionStateAttr is an attribute conforming to the http.connection.state +// semantic conventions. It represents the state of the HTTP connection in the +// HTTP connection pool. +type ConnectionStateAttr string + +var ( + // ConnectionStateActive is the active state. + ConnectionStateActive ConnectionStateAttr = "active" + // ConnectionStateIdle is the idle state. + ConnectionStateIdle ConnectionStateAttr = "idle" +) + +// RequestMethodAttr is an attribute conforming to the http.request.method +// semantic conventions. It represents the HTTP request method. +type RequestMethodAttr string + +var ( + // RequestMethodConnect is the CONNECT method. + RequestMethodConnect RequestMethodAttr = "CONNECT" + // RequestMethodDelete is the DELETE method. + RequestMethodDelete RequestMethodAttr = "DELETE" + // RequestMethodGet is the GET method. + RequestMethodGet RequestMethodAttr = "GET" + // RequestMethodHead is the HEAD method. + RequestMethodHead RequestMethodAttr = "HEAD" + // RequestMethodOptions is the OPTIONS method. + RequestMethodOptions RequestMethodAttr = "OPTIONS" + // RequestMethodPatch is the PATCH method. + RequestMethodPatch RequestMethodAttr = "PATCH" + // RequestMethodPost is the POST method. + RequestMethodPost RequestMethodAttr = "POST" + // RequestMethodPut is the PUT method. + RequestMethodPut RequestMethodAttr = "PUT" + // RequestMethodTrace is the TRACE method. + RequestMethodTrace RequestMethodAttr = "TRACE" + // RequestMethodQuery is the QUERY method. + RequestMethodQuery RequestMethodAttr = "QUERY" + // RequestMethodOther is the any HTTP method that the instrumentation has no + // prior knowledge of. + RequestMethodOther RequestMethodAttr = "_OTHER" +) + +// UserAgentSyntheticTypeAttr is an attribute conforming to the +// user_agent.synthetic.type semantic conventions. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +type UserAgentSyntheticTypeAttr string + +var ( + // UserAgentSyntheticTypeBot is the bot source. + UserAgentSyntheticTypeBot UserAgentSyntheticTypeAttr = "bot" + // UserAgentSyntheticTypeTest is the synthetic test source. + UserAgentSyntheticTypeTest UserAgentSyntheticTypeAttr = "test" +) + +// ClientActiveRequests is an instrument used to record metric values conforming +// to the "http.client.active_requests" semantic conventions. It represents the +// number of active HTTP requests. +type ClientActiveRequests struct { + metric.Int64UpDownCounter +} + +var newClientActiveRequestsOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("Number of active HTTP requests."), + metric.WithUnit("{request}"), +} + +// NewClientActiveRequests returns a new ClientActiveRequests instrument. +func NewClientActiveRequests( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (ClientActiveRequests, error) { + // Check if the meter is nil. + if m == nil { + return ClientActiveRequests{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newClientActiveRequestsOpts + } else { + opt = append(opt, newClientActiveRequestsOpts...) + } + + i, err := m.Int64UpDownCounter( + "http.client.active_requests", + opt..., + ) + if err != nil { + return ClientActiveRequests{noop.Int64UpDownCounter{}}, err + } + return ClientActiveRequests{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientActiveRequests) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ClientActiveRequests) Name() string { + return "http.client.active_requests" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientActiveRequests) Unit() string { + return "{request}" +} + +// Description returns the semantic convention description of the instrument +func (ClientActiveRequests) Description() string { + return "Number of active HTTP requests." +} + +// Add adds incr to the existing count for attrs. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +func (m ClientActiveRequests) Add( + ctx context.Context, + incr int64, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr, metric.WithAttributes( + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +func (m ClientActiveRequests) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientActiveRequests) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrRequestMethod returns an optional attribute for the "http.request.method" +// semantic convention. It represents the HTTP request method. +func (ClientActiveRequests) AttrRequestMethod(val RequestMethodAttr) attribute.KeyValue { + return attribute.String("http.request.method", string(val)) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientActiveRequests) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientActiveRequestsObservable is an instrument used to record metric values +// conforming to the "http.client.active_requests" semantic conventions. It +// represents the number of active HTTP requests. +type ClientActiveRequestsObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newClientActiveRequestsObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Number of active HTTP requests."), + metric.WithUnit("{request}"), +} + +// NewClientActiveRequestsObservable returns a new ClientActiveRequestsObservable +// instrument. +func NewClientActiveRequestsObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (ClientActiveRequestsObservable, error) { + // Check if the meter is nil. + if m == nil { + return ClientActiveRequestsObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newClientActiveRequestsObservableOpts + } else { + opt = append(opt, newClientActiveRequestsObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "http.client.active_requests", + opt..., + ) + if err != nil { + return ClientActiveRequestsObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return ClientActiveRequestsObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientActiveRequestsObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ClientActiveRequestsObservable) Name() string { + return "http.client.active_requests" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientActiveRequestsObservable) Unit() string { + return "{request}" +} + +// Description returns the semantic convention description of the instrument +func (ClientActiveRequestsObservable) Description() string { + return "Number of active HTTP requests." +} + +// AttrServerAddress returns a required attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (ClientActiveRequestsObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns a required attribute for the "server.port" semantic +// convention. It represents the server port number. +func (ClientActiveRequestsObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientActiveRequestsObservable) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrRequestMethod returns an optional attribute for the "http.request.method" +// semantic convention. It represents the HTTP request method. +func (ClientActiveRequestsObservable) AttrRequestMethod(val RequestMethodAttr) attribute.KeyValue { + return attribute.String("http.request.method", string(val)) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientActiveRequestsObservable) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientConnectionDuration is an instrument used to record metric values +// conforming to the "http.client.connection.duration" semantic conventions. It +// represents the duration of the successfully established outbound HTTP +// connections. +type ClientConnectionDuration struct { + metric.Float64Histogram +} + +var newClientConnectionDurationOpts = []metric.Float64HistogramOption{ + metric.WithDescription("The duration of the successfully established outbound HTTP connections."), + metric.WithUnit("s"), +} + +// NewClientConnectionDuration returns a new ClientConnectionDuration instrument. +func NewClientConnectionDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (ClientConnectionDuration, error) { + // Check if the meter is nil. + if m == nil { + return ClientConnectionDuration{noop.Float64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newClientConnectionDurationOpts + } else { + opt = append(opt, newClientConnectionDurationOpts...) + } + + i, err := m.Float64Histogram( + "http.client.connection.duration", + opt..., + ) + if err != nil { + return ClientConnectionDuration{noop.Float64Histogram{}}, err + } + return ClientConnectionDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientConnectionDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientConnectionDuration) Name() string { + return "http.client.connection.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientConnectionDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (ClientConnectionDuration) Description() string { + return "The duration of the successfully established outbound HTTP connections." +} + +// Record records val to the current distribution for attrs. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +func (m ClientConnectionDuration) Record( + ctx context.Context, + val float64, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +func (m ClientConnectionDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrNetworkPeerAddress returns an optional attribute for the +// "network.peer.address" semantic convention. It represents the peer address of +// the network connection - IP address or Unix domain socket name. +func (ClientConnectionDuration) AttrNetworkPeerAddress(val string) attribute.KeyValue { + return attribute.String("network.peer.address", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientConnectionDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientConnectionDuration) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientOpenConnections is an instrument used to record metric values conforming +// to the "http.client.open_connections" semantic conventions. It represents the +// number of outbound HTTP connections that are currently active or idle on the +// client. +type ClientOpenConnections struct { + metric.Int64UpDownCounter +} + +var newClientOpenConnectionsOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("Number of outbound HTTP connections that are currently active or idle on the client."), + metric.WithUnit("{connection}"), +} + +// NewClientOpenConnections returns a new ClientOpenConnections instrument. +func NewClientOpenConnections( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (ClientOpenConnections, error) { + // Check if the meter is nil. + if m == nil { + return ClientOpenConnections{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newClientOpenConnectionsOpts + } else { + opt = append(opt, newClientOpenConnectionsOpts...) + } + + i, err := m.Int64UpDownCounter( + "http.client.open_connections", + opt..., + ) + if err != nil { + return ClientOpenConnections{noop.Int64UpDownCounter{}}, err + } + return ClientOpenConnections{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientOpenConnections) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ClientOpenConnections) Name() string { + return "http.client.open_connections" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientOpenConnections) Unit() string { + return "{connection}" +} + +// Description returns the semantic convention description of the instrument +func (ClientOpenConnections) Description() string { + return "Number of outbound HTTP connections that are currently active or idle on the client." +} + +// Add adds incr to the existing count for attrs. +// +// The connectionState is the state of the HTTP connection in the HTTP connection +// pool. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +func (m ClientOpenConnections) Add( + ctx context.Context, + incr int64, + connectionState ConnectionStateAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr, metric.WithAttributes( + attribute.String("http.connection.state", string(connectionState)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.connection.state", string(connectionState)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +func (m ClientOpenConnections) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrNetworkPeerAddress returns an optional attribute for the +// "network.peer.address" semantic convention. It represents the peer address of +// the network connection - IP address or Unix domain socket name. +func (ClientOpenConnections) AttrNetworkPeerAddress(val string) attribute.KeyValue { + return attribute.String("network.peer.address", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientOpenConnections) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientOpenConnections) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientOpenConnectionsObservable is an instrument used to record metric values +// conforming to the "http.client.open_connections" semantic conventions. It +// represents the number of outbound HTTP connections that are currently active +// or idle on the client. +type ClientOpenConnectionsObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newClientOpenConnectionsObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Number of outbound HTTP connections that are currently active or idle on the client."), + metric.WithUnit("{connection}"), +} + +// NewClientOpenConnectionsObservable returns a new +// ClientOpenConnectionsObservable instrument. +func NewClientOpenConnectionsObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (ClientOpenConnectionsObservable, error) { + // Check if the meter is nil. + if m == nil { + return ClientOpenConnectionsObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newClientOpenConnectionsObservableOpts + } else { + opt = append(opt, newClientOpenConnectionsObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "http.client.open_connections", + opt..., + ) + if err != nil { + return ClientOpenConnectionsObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return ClientOpenConnectionsObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientOpenConnectionsObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ClientOpenConnectionsObservable) Name() string { + return "http.client.open_connections" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientOpenConnectionsObservable) Unit() string { + return "{connection}" +} + +// Description returns the semantic convention description of the instrument +func (ClientOpenConnectionsObservable) Description() string { + return "Number of outbound HTTP connections that are currently active or idle on the client." +} + +// AttrConnectionState returns a required attribute for the +// "http.connection.state" semantic convention. It represents the state of the +// HTTP connection in the HTTP connection pool. +func (ClientOpenConnectionsObservable) AttrConnectionState(val ConnectionStateAttr) attribute.KeyValue { + return attribute.String("http.connection.state", string(val)) +} + +// AttrServerAddress returns a required attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (ClientOpenConnectionsObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns a required attribute for the "server.port" semantic +// convention. It represents the server port number. +func (ClientOpenConnectionsObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrNetworkPeerAddress returns an optional attribute for the +// "network.peer.address" semantic convention. It represents the peer address of +// the network connection - IP address or Unix domain socket name. +func (ClientOpenConnectionsObservable) AttrNetworkPeerAddress(val string) attribute.KeyValue { + return attribute.String("network.peer.address", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientOpenConnectionsObservable) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientOpenConnectionsObservable) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientRequestBodySize is an instrument used to record metric values conforming +// to the "http.client.request.body.size" semantic conventions. It represents the +// size of HTTP client request bodies. +type ClientRequestBodySize struct { + metric.Int64Histogram +} + +var newClientRequestBodySizeOpts = []metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP client request bodies."), + metric.WithUnit("By"), +} + +// NewClientRequestBodySize returns a new ClientRequestBodySize instrument. +func NewClientRequestBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ClientRequestBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ClientRequestBodySize{noop.Int64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newClientRequestBodySizeOpts + } else { + opt = append(opt, newClientRequestBodySizeOpts...) + } + + i, err := m.Int64Histogram( + "http.client.request.body.size", + opt..., + ) + if err != nil { + return ClientRequestBodySize{noop.Int64Histogram{}}, err + } + return ClientRequestBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientRequestBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientRequestBodySize) Name() string { + return "http.client.request.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientRequestBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ClientRequestBodySize) Description() string { + return "Size of HTTP client request bodies." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +// +// The size of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ClientRequestBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// The size of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ClientRequestBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ClientRequestBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ClientRequestBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ClientRequestBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientRequestBodySize) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientRequestBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientRequestBodySize) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientRequestDuration is an instrument used to record metric values conforming +// to the "http.client.request.duration" semantic conventions. It represents the +// duration of HTTP client requests. +type ClientRequestDuration struct { + metric.Float64Histogram +} + +var newClientRequestDurationOpts = []metric.Float64HistogramOption{ + metric.WithDescription("Duration of HTTP client requests."), + metric.WithUnit("s"), + metric.WithExplicitBucketBoundaries([]float64{0.005, 0.01, 0.025, 0.05, 0.075, 0.1, 0.25, 0.5, 0.75, 1, 2.5, 5, 7.5, 10}...), +} + +// NewClientRequestDuration returns a new ClientRequestDuration instrument. +func NewClientRequestDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (ClientRequestDuration, error) { + // Check if the meter is nil. + if m == nil { + return ClientRequestDuration{noop.Float64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newClientRequestDurationOpts + } else { + opt = append(opt, newClientRequestDurationOpts...) + } + + i, err := m.Float64Histogram( + "http.client.request.duration", + opt..., + ) + if err != nil { + return ClientRequestDuration{noop.Float64Histogram{}}, err + } + return ClientRequestDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientRequestDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientRequestDuration) Name() string { + return "http.client.request.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientRequestDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (ClientRequestDuration) Description() string { + return "Duration of HTTP client requests." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +func (m ClientRequestDuration) Record( + ctx context.Context, + val float64, + requestMethod RequestMethodAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +func (m ClientRequestDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ClientRequestDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ClientRequestDuration) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ClientRequestDuration) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientRequestDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientRequestDuration) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientRequestDuration) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// ClientResponseBodySize is an instrument used to record metric values +// conforming to the "http.client.response.body.size" semantic conventions. It +// represents the size of HTTP client response bodies. +type ClientResponseBodySize struct { + metric.Int64Histogram +} + +var newClientResponseBodySizeOpts = []metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP client response bodies."), + metric.WithUnit("By"), +} + +// NewClientResponseBodySize returns a new ClientResponseBodySize instrument. +func NewClientResponseBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ClientResponseBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ClientResponseBodySize{noop.Int64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newClientResponseBodySizeOpts + } else { + opt = append(opt, newClientResponseBodySizeOpts...) + } + + i, err := m.Int64Histogram( + "http.client.response.body.size", + opt..., + ) + if err != nil { + return ClientResponseBodySize{noop.Int64Histogram{}}, err + } + return ClientResponseBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientResponseBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientResponseBodySize) Name() string { + return "http.client.response.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientResponseBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ClientResponseBodySize) Description() string { + return "Size of HTTP client response bodies." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +// +// The size of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ClientResponseBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// The size of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ClientResponseBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ClientResponseBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ClientResponseBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ClientResponseBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientResponseBodySize) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientResponseBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientResponseBodySize) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ServerActiveRequests is an instrument used to record metric values conforming +// to the "http.server.active_requests" semantic conventions. It represents the +// number of active HTTP server requests. +type ServerActiveRequests struct { + metric.Int64UpDownCounter +} + +var newServerActiveRequestsOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("Number of active HTTP server requests."), + metric.WithUnit("{request}"), +} + +// NewServerActiveRequests returns a new ServerActiveRequests instrument. +func NewServerActiveRequests( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (ServerActiveRequests, error) { + // Check if the meter is nil. + if m == nil { + return ServerActiveRequests{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newServerActiveRequestsOpts + } else { + opt = append(opt, newServerActiveRequestsOpts...) + } + + i, err := m.Int64UpDownCounter( + "http.server.active_requests", + opt..., + ) + if err != nil { + return ServerActiveRequests{noop.Int64UpDownCounter{}}, err + } + return ServerActiveRequests{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerActiveRequests) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ServerActiveRequests) Name() string { + return "http.server.active_requests" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerActiveRequests) Unit() string { + return "{request}" +} + +// Description returns the semantic convention description of the instrument +func (ServerActiveRequests) Description() string { + return "Number of active HTTP server requests." +} + +// Add adds incr to the existing count for attrs. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (m ServerActiveRequests) Add( + ctx context.Context, + incr int64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +func (m ServerActiveRequests) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerActiveRequests) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerActiveRequests) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// ServerActiveRequestsObservable is an instrument used to record metric values +// conforming to the "http.server.active_requests" semantic conventions. It +// represents the number of active HTTP server requests. +type ServerActiveRequestsObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newServerActiveRequestsObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Number of active HTTP server requests."), + metric.WithUnit("{request}"), +} + +// NewServerActiveRequestsObservable returns a new ServerActiveRequestsObservable +// instrument. +func NewServerActiveRequestsObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (ServerActiveRequestsObservable, error) { + // Check if the meter is nil. + if m == nil { + return ServerActiveRequestsObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newServerActiveRequestsObservableOpts + } else { + opt = append(opt, newServerActiveRequestsObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "http.server.active_requests", + opt..., + ) + if err != nil { + return ServerActiveRequestsObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return ServerActiveRequestsObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerActiveRequestsObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ServerActiveRequestsObservable) Name() string { + return "http.server.active_requests" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerActiveRequestsObservable) Unit() string { + return "{request}" +} + +// Description returns the semantic convention description of the instrument +func (ServerActiveRequestsObservable) Description() string { + return "Number of active HTTP server requests." +} + +// AttrRequestMethod returns a required attribute for the "http.request.method" +// semantic convention. It represents the HTTP request method. +func (ServerActiveRequestsObservable) AttrRequestMethod(val RequestMethodAttr) attribute.KeyValue { + return attribute.String("http.request.method", string(val)) +} + +// AttrURLScheme returns a required attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ServerActiveRequestsObservable) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerActiveRequestsObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerActiveRequestsObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// ServerRequestBodySize is an instrument used to record metric values conforming +// to the "http.server.request.body.size" semantic conventions. It represents the +// size of HTTP server request bodies. +type ServerRequestBodySize struct { + metric.Int64Histogram +} + +var newServerRequestBodySizeOpts = []metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP server request bodies."), + metric.WithUnit("By"), +} + +// NewServerRequestBodySize returns a new ServerRequestBodySize instrument. +func NewServerRequestBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ServerRequestBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ServerRequestBodySize{noop.Int64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newServerRequestBodySizeOpts + } else { + opt = append(opt, newServerRequestBodySizeOpts...) + } + + i, err := m.Int64Histogram( + "http.server.request.body.size", + opt..., + ) + if err != nil { + return ServerRequestBodySize{noop.Int64Histogram{}}, err + } + return ServerRequestBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerRequestBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ServerRequestBodySize) Name() string { + return "http.server.request.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerRequestBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ServerRequestBodySize) Description() string { + return "Size of HTTP server request bodies." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +// +// The size of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ServerRequestBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// The size of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ServerRequestBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ServerRequestBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ServerRequestBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrRoute returns an optional attribute for the "http.route" semantic +// convention. It represents the matched route template for the request. This +// MUST be low-cardinality and include all static path segments, with dynamic +// path segments represented with placeholders. +func (ServerRequestBodySize) AttrRoute(val string) attribute.KeyValue { + return attribute.String("http.route", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ServerRequestBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ServerRequestBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerRequestBodySize) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerRequestBodySize) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrUserAgentSyntheticType returns an optional attribute for the +// "user_agent.synthetic.type" semantic convention. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +func (ServerRequestBodySize) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { + return attribute.String("user_agent.synthetic.type", string(val)) +} + +// ServerRequestDuration is an instrument used to record metric values conforming +// to the "http.server.request.duration" semantic conventions. It represents the +// duration of HTTP server requests. +type ServerRequestDuration struct { + metric.Float64Histogram +} + +var newServerRequestDurationOpts = []metric.Float64HistogramOption{ + metric.WithDescription("Duration of HTTP server requests."), + metric.WithUnit("s"), + metric.WithExplicitBucketBoundaries([]float64{0.005, 0.01, 0.025, 0.05, 0.075, 0.1, 0.25, 0.5, 0.75, 1, 2.5, 5, 7.5, 10}...), +} + +// NewServerRequestDuration returns a new ServerRequestDuration instrument. +func NewServerRequestDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (ServerRequestDuration, error) { + // Check if the meter is nil. + if m == nil { + return ServerRequestDuration{noop.Float64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newServerRequestDurationOpts + } else { + opt = append(opt, newServerRequestDurationOpts...) + } + + i, err := m.Float64Histogram( + "http.server.request.duration", + opt..., + ) + if err != nil { + return ServerRequestDuration{noop.Float64Histogram{}}, err + } + return ServerRequestDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerRequestDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ServerRequestDuration) Name() string { + return "http.server.request.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerRequestDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (ServerRequestDuration) Description() string { + return "Duration of HTTP server requests." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (m ServerRequestDuration) Record( + ctx context.Context, + val float64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +func (m ServerRequestDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ServerRequestDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ServerRequestDuration) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrRoute returns an optional attribute for the "http.route" semantic +// convention. It represents the matched route template for the request. This +// MUST be low-cardinality and include all static path segments, with dynamic +// path segments represented with placeholders. +func (ServerRequestDuration) AttrRoute(val string) attribute.KeyValue { + return attribute.String("http.route", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ServerRequestDuration) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ServerRequestDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerRequestDuration) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerRequestDuration) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrUserAgentSyntheticType returns an optional attribute for the +// "user_agent.synthetic.type" semantic convention. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +func (ServerRequestDuration) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { + return attribute.String("user_agent.synthetic.type", string(val)) +} + +// ServerResponseBodySize is an instrument used to record metric values +// conforming to the "http.server.response.body.size" semantic conventions. It +// represents the size of HTTP server response bodies. +type ServerResponseBodySize struct { + metric.Int64Histogram +} + +var newServerResponseBodySizeOpts = []metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP server response bodies."), + metric.WithUnit("By"), +} + +// NewServerResponseBodySize returns a new ServerResponseBodySize instrument. +func NewServerResponseBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ServerResponseBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ServerResponseBodySize{noop.Int64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newServerResponseBodySizeOpts + } else { + opt = append(opt, newServerResponseBodySizeOpts...) + } + + i, err := m.Int64Histogram( + "http.server.response.body.size", + opt..., + ) + if err != nil { + return ServerResponseBodySize{noop.Int64Histogram{}}, err + } + return ServerResponseBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerResponseBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ServerResponseBodySize) Name() string { + return "http.server.response.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerResponseBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ServerResponseBodySize) Description() string { + return "Size of HTTP server response bodies." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +// +// The size of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ServerResponseBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// The size of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ServerResponseBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ServerResponseBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ServerResponseBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrRoute returns an optional attribute for the "http.route" semantic +// convention. It represents the matched route template for the request. This +// MUST be low-cardinality and include all static path segments, with dynamic +// path segments represented with placeholders. +func (ServerResponseBodySize) AttrRoute(val string) attribute.KeyValue { + return attribute.String("http.route", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ServerResponseBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ServerResponseBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerResponseBodySize) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerResponseBodySize) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrUserAgentSyntheticType returns an optional attribute for the +// "user_agent.synthetic.type" semantic convention. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +func (ServerResponseBodySize) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { + return attribute.String("user_agent.synthetic.type", string(val)) +} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/otelconv/metric.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/otelconv/metric.go new file mode 100644 index 0000000000..d50e198493 --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/otelconv/metric.go @@ -0,0 +1,3234 @@ +// Code generated from semantic convention specification. DO NOT EDIT. + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package otelconv provides types and functionality for OpenTelemetry semantic +// conventions in the "otel" namespace. +package otelconv + +import ( + "context" + "sync" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/noop" +) + +var ( + addOptPool = &sync.Pool{New: func() any { return &[]metric.AddOption{} }} + recOptPool = &sync.Pool{New: func() any { return &[]metric.RecordOption{} }} +) + +// ErrorTypeAttr is an attribute conforming to the error.type semantic +// conventions. It represents the describes a class of error the operation ended +// with. +type ErrorTypeAttr string + +var ( + // ErrorTypeOther is a fallback error value to be used when the instrumentation + // doesn't define a custom value. + ErrorTypeOther ErrorTypeAttr = "_OTHER" +) + +// ComponentTypeAttr is an attribute conforming to the otel.component.type +// semantic conventions. It represents a name identifying the type of the +// OpenTelemetry component. +type ComponentTypeAttr string + +var ( + // ComponentTypeBatchingSpanProcessor is the builtin SDK batching span + // processor. + ComponentTypeBatchingSpanProcessor ComponentTypeAttr = "batching_span_processor" + // ComponentTypeSimpleSpanProcessor is the builtin SDK simple span processor. + ComponentTypeSimpleSpanProcessor ComponentTypeAttr = "simple_span_processor" + // ComponentTypeBatchingLogProcessor is the builtin SDK batching log record + // processor. + ComponentTypeBatchingLogProcessor ComponentTypeAttr = "batching_log_processor" + // ComponentTypeSimpleLogProcessor is the builtin SDK simple log record + // processor. + ComponentTypeSimpleLogProcessor ComponentTypeAttr = "simple_log_processor" + // ComponentTypeOtlpGRPCSpanExporter is the OTLP span exporter over gRPC with + // protobuf serialization. + ComponentTypeOtlpGRPCSpanExporter ComponentTypeAttr = "otlp_grpc_span_exporter" + // ComponentTypeOtlpHTTPSpanExporter is the OTLP span exporter over HTTP with + // protobuf serialization. + ComponentTypeOtlpHTTPSpanExporter ComponentTypeAttr = "otlp_http_span_exporter" + // ComponentTypeOtlpHTTPJSONSpanExporter is the OTLP span exporter over HTTP + // with JSON serialization. + ComponentTypeOtlpHTTPJSONSpanExporter ComponentTypeAttr = "otlp_http_json_span_exporter" + // ComponentTypeZipkinHTTPSpanExporter is the zipkin span exporter over HTTP. + ComponentTypeZipkinHTTPSpanExporter ComponentTypeAttr = "zipkin_http_span_exporter" + // ComponentTypeOtlpGRPCLogExporter is the OTLP log record exporter over gRPC + // with protobuf serialization. + ComponentTypeOtlpGRPCLogExporter ComponentTypeAttr = "otlp_grpc_log_exporter" + // ComponentTypeOtlpHTTPLogExporter is the OTLP log record exporter over HTTP + // with protobuf serialization. + ComponentTypeOtlpHTTPLogExporter ComponentTypeAttr = "otlp_http_log_exporter" + // ComponentTypeOtlpHTTPJSONLogExporter is the OTLP log record exporter over + // HTTP with JSON serialization. + ComponentTypeOtlpHTTPJSONLogExporter ComponentTypeAttr = "otlp_http_json_log_exporter" + // ComponentTypePeriodicMetricReader is the builtin SDK periodically exporting + // metric reader. + ComponentTypePeriodicMetricReader ComponentTypeAttr = "periodic_metric_reader" + // ComponentTypeOtlpGRPCMetricExporter is the OTLP metric exporter over gRPC + // with protobuf serialization. + ComponentTypeOtlpGRPCMetricExporter ComponentTypeAttr = "otlp_grpc_metric_exporter" + // ComponentTypeOtlpHTTPMetricExporter is the OTLP metric exporter over HTTP + // with protobuf serialization. + ComponentTypeOtlpHTTPMetricExporter ComponentTypeAttr = "otlp_http_metric_exporter" + // ComponentTypeOtlpHTTPJSONMetricExporter is the OTLP metric exporter over HTTP + // with JSON serialization. + ComponentTypeOtlpHTTPJSONMetricExporter ComponentTypeAttr = "otlp_http_json_metric_exporter" + // ComponentTypePrometheusHTTPTextMetricExporter is the prometheus metric + // exporter over HTTP with the default text-based format. + ComponentTypePrometheusHTTPTextMetricExporter ComponentTypeAttr = "prometheus_http_text_metric_exporter" +) + +// SpanParentOriginAttr is an attribute conforming to the otel.span.parent.origin +// semantic conventions. It represents the determines whether the span has a +// parent span, and if so, [whether it is a remote parent]. +// +// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote +type SpanParentOriginAttr string + +var ( + // SpanParentOriginNone is the span does not have a parent, it is a root span. + SpanParentOriginNone SpanParentOriginAttr = "none" + // SpanParentOriginLocal is the span has a parent and the parent's span context + // [isRemote()] is false. + // + // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote + SpanParentOriginLocal SpanParentOriginAttr = "local" + // SpanParentOriginRemote is the span has a parent and the parent's span context + // [isRemote()] is true. + // + // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote + SpanParentOriginRemote SpanParentOriginAttr = "remote" +) + +// SpanSamplingResultAttr is an attribute conforming to the +// otel.span.sampling_result semantic conventions. It represents the result value +// of the sampler for this span. +type SpanSamplingResultAttr string + +var ( + // SpanSamplingResultDrop is the span is not sampled and not recording. + SpanSamplingResultDrop SpanSamplingResultAttr = "DROP" + // SpanSamplingResultRecordOnly is the span is not sampled, but recording. + SpanSamplingResultRecordOnly SpanSamplingResultAttr = "RECORD_ONLY" + // SpanSamplingResultRecordAndSample is the span is sampled and recording. + SpanSamplingResultRecordAndSample SpanSamplingResultAttr = "RECORD_AND_SAMPLE" +) + +// SDKExporterLogExported is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.log.exported" semantic conventions. It +// represents the number of log records for which the export has finished, either +// successful or failed. +type SDKExporterLogExported struct { + metric.Int64Counter +} + +var newSDKExporterLogExportedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of log records for which the export has finished, either successful or failed."), + metric.WithUnit("{log_record}"), +} + +// NewSDKExporterLogExported returns a new SDKExporterLogExported instrument. +func NewSDKExporterLogExported( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKExporterLogExported, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterLogExported{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterLogExportedOpts + } else { + opt = append(opt, newSDKExporterLogExportedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.exporter.log.exported", + opt..., + ) + if err != nil { + return SDKExporterLogExported{noop.Int64Counter{}}, err + } + return SDKExporterLogExported{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterLogExported) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterLogExported) Name() string { + return "otel.sdk.exporter.log.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterLogExported) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterLogExported) Description() string { + return "The number of log records for which the export has finished, either successful or failed." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with +// `rejected_log_records`), rejected log records MUST count as failed and only +// non-rejected log records count as success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +func (m SDKExporterLogExported) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with +// `rejected_log_records`), rejected log records MUST count as failed and only +// non-rejected log records count as success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +func (m SDKExporterLogExported) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterLogExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterLogExported) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterLogExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterLogExported) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterLogExported) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterLogExportedObservable is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.log.exported" semantic conventions. It +// represents the number of log records for which the export has finished, either +// successful or failed. +type SDKExporterLogExportedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKExporterLogExportedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of log records for which the export has finished, either successful or failed."), + metric.WithUnit("{log_record}"), +} + +// NewSDKExporterLogExportedObservable returns a new +// SDKExporterLogExportedObservable instrument. +func NewSDKExporterLogExportedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKExporterLogExportedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterLogExportedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterLogExportedObservableOpts + } else { + opt = append(opt, newSDKExporterLogExportedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.exporter.log.exported", + opt..., + ) + if err != nil { + return SDKExporterLogExportedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKExporterLogExportedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterLogExportedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterLogExportedObservable) Name() string { + return "otel.sdk.exporter.log.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterLogExportedObservable) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterLogExportedObservable) Description() string { + return "The number of log records for which the export has finished, either successful or failed." +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterLogExportedObservable) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterLogExportedObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterLogExportedObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterLogExportedObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterLogExportedObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterLogInflight is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.log.inflight" semantic conventions. It +// represents the number of log records which were passed to the exporter, but +// that have not been exported yet (neither successful, nor failed). +type SDKExporterLogInflight struct { + metric.Int64UpDownCounter +} + +var newSDKExporterLogInflightOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{log_record}"), +} + +// NewSDKExporterLogInflight returns a new SDKExporterLogInflight instrument. +func NewSDKExporterLogInflight( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (SDKExporterLogInflight, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterLogInflight{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterLogInflightOpts + } else { + opt = append(opt, newSDKExporterLogInflightOpts...) + } + + i, err := m.Int64UpDownCounter( + "otel.sdk.exporter.log.inflight", + opt..., + ) + if err != nil { + return SDKExporterLogInflight{noop.Int64UpDownCounter{}}, err + } + return SDKExporterLogInflight{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterLogInflight) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterLogInflight) Name() string { + return "otel.sdk.exporter.log.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterLogInflight) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterLogInflight) Description() string { + return "The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +func (m SDKExporterLogInflight) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +func (m SDKExporterLogInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterLogInflight) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterLogInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterLogInflight) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterLogInflight) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterLogInflightObservable is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.log.inflight" semantic conventions. It +// represents the number of log records which were passed to the exporter, but +// that have not been exported yet (neither successful, nor failed). +type SDKExporterLogInflightObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKExporterLogInflightObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{log_record}"), +} + +// NewSDKExporterLogInflightObservable returns a new +// SDKExporterLogInflightObservable instrument. +func NewSDKExporterLogInflightObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKExporterLogInflightObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterLogInflightObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterLogInflightObservableOpts + } else { + opt = append(opt, newSDKExporterLogInflightObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.exporter.log.inflight", + opt..., + ) + if err != nil { + return SDKExporterLogInflightObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKExporterLogInflightObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterLogInflightObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterLogInflightObservable) Name() string { + return "otel.sdk.exporter.log.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterLogInflightObservable) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterLogInflightObservable) Description() string { + return "The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterLogInflightObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterLogInflightObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterLogInflightObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterLogInflightObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterMetricDataPointExported is an instrument used to record metric +// values conforming to the "otel.sdk.exporter.metric_data_point.exported" +// semantic conventions. It represents the number of metric data points for which +// the export has finished, either successful or failed. +type SDKExporterMetricDataPointExported struct { + metric.Int64Counter +} + +var newSDKExporterMetricDataPointExportedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of metric data points for which the export has finished, either successful or failed."), + metric.WithUnit("{data_point}"), +} + +// NewSDKExporterMetricDataPointExported returns a new +// SDKExporterMetricDataPointExported instrument. +func NewSDKExporterMetricDataPointExported( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKExporterMetricDataPointExported, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterMetricDataPointExported{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterMetricDataPointExportedOpts + } else { + opt = append(opt, newSDKExporterMetricDataPointExportedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.exporter.metric_data_point.exported", + opt..., + ) + if err != nil { + return SDKExporterMetricDataPointExported{noop.Int64Counter{}}, err + } + return SDKExporterMetricDataPointExported{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterMetricDataPointExported) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterMetricDataPointExported) Name() string { + return "otel.sdk.exporter.metric_data_point.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterMetricDataPointExported) Unit() string { + return "{data_point}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterMetricDataPointExported) Description() string { + return "The number of metric data points for which the export has finished, either successful or failed." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with +// `rejected_data_points`), rejected data points MUST count as failed and only +// non-rejected data points count as success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +func (m SDKExporterMetricDataPointExported) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with +// `rejected_data_points`), rejected data points MUST count as failed and only +// non-rejected data points count as success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +func (m SDKExporterMetricDataPointExported) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterMetricDataPointExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterMetricDataPointExported) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterMetricDataPointExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterMetricDataPointExported) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterMetricDataPointExported) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterMetricDataPointExportedObservable is an instrument used to record +// metric values conforming to the "otel.sdk.exporter.metric_data_point.exported" +// semantic conventions. It represents the number of metric data points for which +// the export has finished, either successful or failed. +type SDKExporterMetricDataPointExportedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKExporterMetricDataPointExportedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of metric data points for which the export has finished, either successful or failed."), + metric.WithUnit("{data_point}"), +} + +// NewSDKExporterMetricDataPointExportedObservable returns a new +// SDKExporterMetricDataPointExportedObservable instrument. +func NewSDKExporterMetricDataPointExportedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKExporterMetricDataPointExportedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterMetricDataPointExportedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterMetricDataPointExportedObservableOpts + } else { + opt = append(opt, newSDKExporterMetricDataPointExportedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.exporter.metric_data_point.exported", + opt..., + ) + if err != nil { + return SDKExporterMetricDataPointExportedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKExporterMetricDataPointExportedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterMetricDataPointExportedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterMetricDataPointExportedObservable) Name() string { + return "otel.sdk.exporter.metric_data_point.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterMetricDataPointExportedObservable) Unit() string { + return "{data_point}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterMetricDataPointExportedObservable) Description() string { + return "The number of metric data points for which the export has finished, either successful or failed." +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterMetricDataPointExportedObservable) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterMetricDataPointExportedObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterMetricDataPointExportedObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterMetricDataPointExportedObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterMetricDataPointExportedObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterMetricDataPointInflight is an instrument used to record metric +// values conforming to the "otel.sdk.exporter.metric_data_point.inflight" +// semantic conventions. It represents the number of metric data points which +// were passed to the exporter, but that have not been exported yet (neither +// successful, nor failed). +type SDKExporterMetricDataPointInflight struct { + metric.Int64UpDownCounter +} + +var newSDKExporterMetricDataPointInflightOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{data_point}"), +} + +// NewSDKExporterMetricDataPointInflight returns a new +// SDKExporterMetricDataPointInflight instrument. +func NewSDKExporterMetricDataPointInflight( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (SDKExporterMetricDataPointInflight, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterMetricDataPointInflight{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterMetricDataPointInflightOpts + } else { + opt = append(opt, newSDKExporterMetricDataPointInflightOpts...) + } + + i, err := m.Int64UpDownCounter( + "otel.sdk.exporter.metric_data_point.inflight", + opt..., + ) + if err != nil { + return SDKExporterMetricDataPointInflight{noop.Int64UpDownCounter{}}, err + } + return SDKExporterMetricDataPointInflight{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterMetricDataPointInflight) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterMetricDataPointInflight) Name() string { + return "otel.sdk.exporter.metric_data_point.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterMetricDataPointInflight) Unit() string { + return "{data_point}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterMetricDataPointInflight) Description() string { + return "The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +func (m SDKExporterMetricDataPointInflight) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +func (m SDKExporterMetricDataPointInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterMetricDataPointInflight) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterMetricDataPointInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterMetricDataPointInflight) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterMetricDataPointInflight) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterMetricDataPointInflightObservable is an instrument used to record +// metric values conforming to the "otel.sdk.exporter.metric_data_point.inflight" +// semantic conventions. It represents the number of metric data points which +// were passed to the exporter, but that have not been exported yet (neither +// successful, nor failed). +type SDKExporterMetricDataPointInflightObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKExporterMetricDataPointInflightObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{data_point}"), +} + +// NewSDKExporterMetricDataPointInflightObservable returns a new +// SDKExporterMetricDataPointInflightObservable instrument. +func NewSDKExporterMetricDataPointInflightObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKExporterMetricDataPointInflightObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterMetricDataPointInflightObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterMetricDataPointInflightObservableOpts + } else { + opt = append(opt, newSDKExporterMetricDataPointInflightObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.exporter.metric_data_point.inflight", + opt..., + ) + if err != nil { + return SDKExporterMetricDataPointInflightObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKExporterMetricDataPointInflightObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterMetricDataPointInflightObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterMetricDataPointInflightObservable) Name() string { + return "otel.sdk.exporter.metric_data_point.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterMetricDataPointInflightObservable) Unit() string { + return "{data_point}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterMetricDataPointInflightObservable) Description() string { + return "The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterMetricDataPointInflightObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterMetricDataPointInflightObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterMetricDataPointInflightObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterMetricDataPointInflightObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterOperationDuration is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.operation.duration" semantic conventions. +// It represents the duration of exporting a batch of telemetry records. +type SDKExporterOperationDuration struct { + metric.Float64Histogram +} + +var newSDKExporterOperationDurationOpts = []metric.Float64HistogramOption{ + metric.WithDescription("The duration of exporting a batch of telemetry records."), + metric.WithUnit("s"), +} + +// NewSDKExporterOperationDuration returns a new SDKExporterOperationDuration +// instrument. +func NewSDKExporterOperationDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (SDKExporterOperationDuration, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterOperationDuration{noop.Float64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterOperationDurationOpts + } else { + opt = append(opt, newSDKExporterOperationDurationOpts...) + } + + i, err := m.Float64Histogram( + "otel.sdk.exporter.operation.duration", + opt..., + ) + if err != nil { + return SDKExporterOperationDuration{noop.Float64Histogram{}}, err + } + return SDKExporterOperationDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterOperationDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterOperationDuration) Name() string { + return "otel.sdk.exporter.operation.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterOperationDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterOperationDuration) Description() string { + return "The duration of exporting a batch of telemetry records." +} + +// Record records val to the current distribution for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// This metric defines successful operations using the full success definitions +// for [http] +// and [grpc]. Anything else is defined as an unsuccessful operation. For +// successful +// operations, `error.type` MUST NOT be set. For unsuccessful export operations, +// `error.type` MUST contain a relevant failure cause. +// +// [http]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success-1 +// [grpc]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success +func (m SDKExporterOperationDuration) Record( + ctx context.Context, + val float64, + attrs ...attribute.KeyValue, +) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// This metric defines successful operations using the full success definitions +// for [http] +// and [grpc]. Anything else is defined as an unsuccessful operation. For +// successful +// operations, `error.type` MUST NOT be set. For unsuccessful export operations, +// `error.type` MUST contain a relevant failure cause. +// +// [http]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success-1 +// [grpc]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success +func (m SDKExporterOperationDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterOperationDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrHTTPResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the HTTP status +// code of the last HTTP request performed in scope of this export call. +func (SDKExporterOperationDuration) AttrHTTPResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterOperationDuration) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterOperationDuration) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrRPCResponseStatusCode returns an optional attribute for the +// "rpc.response.status_code" semantic convention. It represents the gRPC status +// code of the last gRPC request performed in scope of this export call. +func (SDKExporterOperationDuration) AttrRPCResponseStatusCode(val string) attribute.KeyValue { + return attribute.String("rpc.response.status_code", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterOperationDuration) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterOperationDuration) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterSpanExported is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.span.exported" semantic conventions. It +// represents the number of spans for which the export has finished, either +// successful or failed. +type SDKExporterSpanExported struct { + metric.Int64Counter +} + +var newSDKExporterSpanExportedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of spans for which the export has finished, either successful or failed."), + metric.WithUnit("{span}"), +} + +// NewSDKExporterSpanExported returns a new SDKExporterSpanExported instrument. +func NewSDKExporterSpanExported( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKExporterSpanExported, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterSpanExported{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterSpanExportedOpts + } else { + opt = append(opt, newSDKExporterSpanExportedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.exporter.span.exported", + opt..., + ) + if err != nil { + return SDKExporterSpanExported{noop.Int64Counter{}}, err + } + return SDKExporterSpanExported{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterSpanExported) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterSpanExported) Name() string { + return "otel.sdk.exporter.span.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterSpanExported) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterSpanExported) Description() string { + return "The number of spans for which the export has finished, either successful or failed." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with `rejected_spans` +// ), rejected spans MUST count as failed and only non-rejected spans count as +// success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +func (m SDKExporterSpanExported) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with `rejected_spans` +// ), rejected spans MUST count as failed and only non-rejected spans count as +// success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +func (m SDKExporterSpanExported) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterSpanExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterSpanExported) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterSpanExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterSpanExported) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterSpanExported) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterSpanExportedObservable is an instrument used to record metric +// values conforming to the "otel.sdk.exporter.span.exported" semantic +// conventions. It represents the number of spans for which the export has +// finished, either successful or failed. +type SDKExporterSpanExportedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKExporterSpanExportedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of spans for which the export has finished, either successful or failed."), + metric.WithUnit("{span}"), +} + +// NewSDKExporterSpanExportedObservable returns a new +// SDKExporterSpanExportedObservable instrument. +func NewSDKExporterSpanExportedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKExporterSpanExportedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterSpanExportedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterSpanExportedObservableOpts + } else { + opt = append(opt, newSDKExporterSpanExportedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.exporter.span.exported", + opt..., + ) + if err != nil { + return SDKExporterSpanExportedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKExporterSpanExportedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterSpanExportedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterSpanExportedObservable) Name() string { + return "otel.sdk.exporter.span.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterSpanExportedObservable) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterSpanExportedObservable) Description() string { + return "The number of spans for which the export has finished, either successful or failed." +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterSpanExportedObservable) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterSpanExportedObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterSpanExportedObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterSpanExportedObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterSpanExportedObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterSpanInflight is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.span.inflight" semantic conventions. It +// represents the number of spans which were passed to the exporter, but that +// have not been exported yet (neither successful, nor failed). +type SDKExporterSpanInflight struct { + metric.Int64UpDownCounter +} + +var newSDKExporterSpanInflightOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{span}"), +} + +// NewSDKExporterSpanInflight returns a new SDKExporterSpanInflight instrument. +func NewSDKExporterSpanInflight( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (SDKExporterSpanInflight, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterSpanInflight{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterSpanInflightOpts + } else { + opt = append(opt, newSDKExporterSpanInflightOpts...) + } + + i, err := m.Int64UpDownCounter( + "otel.sdk.exporter.span.inflight", + opt..., + ) + if err != nil { + return SDKExporterSpanInflight{noop.Int64UpDownCounter{}}, err + } + return SDKExporterSpanInflight{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterSpanInflight) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterSpanInflight) Name() string { + return "otel.sdk.exporter.span.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterSpanInflight) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterSpanInflight) Description() string { + return "The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +func (m SDKExporterSpanInflight) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +func (m SDKExporterSpanInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterSpanInflight) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterSpanInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterSpanInflight) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterSpanInflight) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterSpanInflightObservable is an instrument used to record metric +// values conforming to the "otel.sdk.exporter.span.inflight" semantic +// conventions. It represents the number of spans which were passed to the +// exporter, but that have not been exported yet (neither successful, nor +// failed). +type SDKExporterSpanInflightObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKExporterSpanInflightObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{span}"), +} + +// NewSDKExporterSpanInflightObservable returns a new +// SDKExporterSpanInflightObservable instrument. +func NewSDKExporterSpanInflightObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKExporterSpanInflightObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterSpanInflightObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterSpanInflightObservableOpts + } else { + opt = append(opt, newSDKExporterSpanInflightObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.exporter.span.inflight", + opt..., + ) + if err != nil { + return SDKExporterSpanInflightObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKExporterSpanInflightObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterSpanInflightObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterSpanInflightObservable) Name() string { + return "otel.sdk.exporter.span.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterSpanInflightObservable) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterSpanInflightObservable) Description() string { + return "The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterSpanInflightObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterSpanInflightObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterSpanInflightObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterSpanInflightObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKLogCreated is an instrument used to record metric values conforming to the +// "otel.sdk.log.created" semantic conventions. It represents the number of logs +// submitted to enabled SDK Loggers. +type SDKLogCreated struct { + metric.Int64Counter +} + +var newSDKLogCreatedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of logs submitted to enabled SDK Loggers."), + metric.WithUnit("{log_record}"), +} + +// NewSDKLogCreated returns a new SDKLogCreated instrument. +func NewSDKLogCreated( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKLogCreated, error) { + // Check if the meter is nil. + if m == nil { + return SDKLogCreated{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKLogCreatedOpts + } else { + opt = append(opt, newSDKLogCreatedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.log.created", + opt..., + ) + if err != nil { + return SDKLogCreated{noop.Int64Counter{}}, err + } + return SDKLogCreated{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKLogCreated) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKLogCreated) Name() string { + return "otel.sdk.log.created" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKLogCreated) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKLogCreated) Description() string { + return "The number of logs submitted to enabled SDK Loggers." +} + +// Add adds incr to the existing count for attrs. +func (m SDKLogCreated) Add(ctx context.Context, incr int64, attrs ...attribute.KeyValue) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributes(attrs...)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +func (m SDKLogCreated) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// SDKLogCreatedObservable is an instrument used to record metric values +// conforming to the "otel.sdk.log.created" semantic conventions. It represents +// the number of logs submitted to enabled SDK Loggers. +type SDKLogCreatedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKLogCreatedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of logs submitted to enabled SDK Loggers."), + metric.WithUnit("{log_record}"), +} + +// NewSDKLogCreatedObservable returns a new SDKLogCreatedObservable instrument. +func NewSDKLogCreatedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKLogCreatedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKLogCreatedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKLogCreatedObservableOpts + } else { + opt = append(opt, newSDKLogCreatedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.log.created", + opt..., + ) + if err != nil { + return SDKLogCreatedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKLogCreatedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKLogCreatedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKLogCreatedObservable) Name() string { + return "otel.sdk.log.created" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKLogCreatedObservable) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKLogCreatedObservable) Description() string { + return "The number of logs submitted to enabled SDK Loggers." +} + +// SDKMetricReaderCollectionDuration is an instrument used to record metric +// values conforming to the "otel.sdk.metric_reader.collection.duration" semantic +// conventions. It represents the duration of the collect operation of the metric +// reader. +type SDKMetricReaderCollectionDuration struct { + metric.Float64Histogram +} + +var newSDKMetricReaderCollectionDurationOpts = []metric.Float64HistogramOption{ + metric.WithDescription("The duration of the collect operation of the metric reader."), + metric.WithUnit("s"), +} + +// NewSDKMetricReaderCollectionDuration returns a new +// SDKMetricReaderCollectionDuration instrument. +func NewSDKMetricReaderCollectionDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (SDKMetricReaderCollectionDuration, error) { + // Check if the meter is nil. + if m == nil { + return SDKMetricReaderCollectionDuration{noop.Float64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newSDKMetricReaderCollectionDurationOpts + } else { + opt = append(opt, newSDKMetricReaderCollectionDurationOpts...) + } + + i, err := m.Float64Histogram( + "otel.sdk.metric_reader.collection.duration", + opt..., + ) + if err != nil { + return SDKMetricReaderCollectionDuration{noop.Float64Histogram{}}, err + } + return SDKMetricReaderCollectionDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKMetricReaderCollectionDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (SDKMetricReaderCollectionDuration) Name() string { + return "otel.sdk.metric_reader.collection.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKMetricReaderCollectionDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (SDKMetricReaderCollectionDuration) Description() string { + return "The duration of the collect operation of the metric reader." +} + +// Record records val to the current distribution for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful collections, `error.type` MUST NOT be set. For failed +// collections, `error.type` SHOULD contain the failure cause. +// It can happen that metrics collection is successful for some MetricProducers, +// while others fail. In that case `error.type` SHOULD be set to any of the +// failure causes. +func (m SDKMetricReaderCollectionDuration) Record( + ctx context.Context, + val float64, + attrs ...attribute.KeyValue, +) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// For successful collections, `error.type` MUST NOT be set. For failed +// collections, `error.type` SHOULD contain the failure cause. +// It can happen that metrics collection is successful for some MetricProducers, +// while others fail. In that case `error.type` SHOULD be set to any of the +// failure causes. +func (m SDKMetricReaderCollectionDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + clear(*o) + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKMetricReaderCollectionDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKMetricReaderCollectionDuration) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKMetricReaderCollectionDuration) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorLogProcessed is an instrument used to record metric values +// conforming to the "otel.sdk.processor.log.processed" semantic conventions. It +// represents the number of log records for which the processing has finished, +// either successful or failed. +type SDKProcessorLogProcessed struct { + metric.Int64Counter +} + +var newSDKProcessorLogProcessedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of log records for which the processing has finished, either successful or failed."), + metric.WithUnit("{log_record}"), +} + +// NewSDKProcessorLogProcessed returns a new SDKProcessorLogProcessed instrument. +func NewSDKProcessorLogProcessed( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKProcessorLogProcessed, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorLogProcessed{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorLogProcessedOpts + } else { + opt = append(opt, newSDKProcessorLogProcessedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.processor.log.processed", + opt..., + ) + if err != nil { + return SDKProcessorLogProcessed{noop.Int64Counter{}}, err + } + return SDKProcessorLogProcessed{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorLogProcessed) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorLogProcessed) Name() string { + return "otel.sdk.processor.log.processed" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorLogProcessed) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorLogProcessed) Description() string { + return "The number of log records for which the processing has finished, either successful or failed." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful processing, `error.type` MUST NOT be set. For failed +// processing, `error.type` MUST contain the failure cause. +// For the SDK Simple and Batching Log Record Processor a log record is +// considered to be processed already when it has been submitted to the exporter, +// not when the corresponding export call has finished. +func (m SDKProcessorLogProcessed) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful processing, `error.type` MUST NOT be set. For failed +// processing, `error.type` MUST contain the failure cause. +// For the SDK Simple and Batching Log Record Processor a log record is +// considered to be processed already when it has been submitted to the exporter, +// not when the corresponding export call has finished. +func (m SDKProcessorLogProcessed) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents a low-cardinality description of the failure reason. +// SDK Batching Log Record Processors MUST use `queue_full` for log records +// dropped due to a full queue. +func (SDKProcessorLogProcessed) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorLogProcessed) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorLogProcessed) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorLogProcessedObservable is an instrument used to record metric +// values conforming to the "otel.sdk.processor.log.processed" semantic +// conventions. It represents the number of log records for which the processing +// has finished, either successful or failed. +type SDKProcessorLogProcessedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKProcessorLogProcessedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of log records for which the processing has finished, either successful or failed."), + metric.WithUnit("{log_record}"), +} + +// NewSDKProcessorLogProcessedObservable returns a new +// SDKProcessorLogProcessedObservable instrument. +func NewSDKProcessorLogProcessedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKProcessorLogProcessedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorLogProcessedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorLogProcessedObservableOpts + } else { + opt = append(opt, newSDKProcessorLogProcessedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.processor.log.processed", + opt..., + ) + if err != nil { + return SDKProcessorLogProcessedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKProcessorLogProcessedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorLogProcessedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorLogProcessedObservable) Name() string { + return "otel.sdk.processor.log.processed" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorLogProcessedObservable) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorLogProcessedObservable) Description() string { + return "The number of log records for which the processing has finished, either successful or failed." +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents a low-cardinality description of the failure reason. +// SDK Batching Log Record Processors MUST use `queue_full` for log records +// dropped due to a full queue. +func (SDKProcessorLogProcessedObservable) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorLogProcessedObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorLogProcessedObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorLogQueueCapacity is an instrument used to record metric values +// conforming to the "otel.sdk.processor.log.queue.capacity" semantic +// conventions. It represents the maximum number of log records the queue of a +// given instance of an SDK Log Record processor can hold. +type SDKProcessorLogQueueCapacity struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKProcessorLogQueueCapacityOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The maximum number of log records the queue of a given instance of an SDK Log Record processor can hold."), + metric.WithUnit("{log_record}"), +} + +// NewSDKProcessorLogQueueCapacity returns a new SDKProcessorLogQueueCapacity +// instrument. +func NewSDKProcessorLogQueueCapacity( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKProcessorLogQueueCapacity, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorLogQueueCapacity{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorLogQueueCapacityOpts + } else { + opt = append(opt, newSDKProcessorLogQueueCapacityOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.processor.log.queue.capacity", + opt..., + ) + if err != nil { + return SDKProcessorLogQueueCapacity{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKProcessorLogQueueCapacity{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorLogQueueCapacity) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorLogQueueCapacity) Name() string { + return "otel.sdk.processor.log.queue.capacity" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorLogQueueCapacity) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorLogQueueCapacity) Description() string { + return "The maximum number of log records the queue of a given instance of an SDK Log Record processor can hold." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorLogQueueCapacity) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorLogQueueCapacity) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorLogQueueSize is an instrument used to record metric values +// conforming to the "otel.sdk.processor.log.queue.size" semantic conventions. It +// represents the number of log records in the queue of a given instance of an +// SDK log processor. +type SDKProcessorLogQueueSize struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKProcessorLogQueueSizeOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of log records in the queue of a given instance of an SDK log processor."), + metric.WithUnit("{log_record}"), +} + +// NewSDKProcessorLogQueueSize returns a new SDKProcessorLogQueueSize instrument. +func NewSDKProcessorLogQueueSize( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKProcessorLogQueueSize, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorLogQueueSize{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorLogQueueSizeOpts + } else { + opt = append(opt, newSDKProcessorLogQueueSizeOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.processor.log.queue.size", + opt..., + ) + if err != nil { + return SDKProcessorLogQueueSize{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKProcessorLogQueueSize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorLogQueueSize) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorLogQueueSize) Name() string { + return "otel.sdk.processor.log.queue.size" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorLogQueueSize) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorLogQueueSize) Description() string { + return "The number of log records in the queue of a given instance of an SDK log processor." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorLogQueueSize) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorLogQueueSize) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorSpanProcessed is an instrument used to record metric values +// conforming to the "otel.sdk.processor.span.processed" semantic conventions. It +// represents the number of spans for which the processing has finished, either +// successful or failed. +type SDKProcessorSpanProcessed struct { + metric.Int64Counter +} + +var newSDKProcessorSpanProcessedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of spans for which the processing has finished, either successful or failed."), + metric.WithUnit("{span}"), +} + +// NewSDKProcessorSpanProcessed returns a new SDKProcessorSpanProcessed +// instrument. +func NewSDKProcessorSpanProcessed( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKProcessorSpanProcessed, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorSpanProcessed{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorSpanProcessedOpts + } else { + opt = append(opt, newSDKProcessorSpanProcessedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.processor.span.processed", + opt..., + ) + if err != nil { + return SDKProcessorSpanProcessed{noop.Int64Counter{}}, err + } + return SDKProcessorSpanProcessed{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorSpanProcessed) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorSpanProcessed) Name() string { + return "otel.sdk.processor.span.processed" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorSpanProcessed) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorSpanProcessed) Description() string { + return "The number of spans for which the processing has finished, either successful or failed." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful processing, `error.type` MUST NOT be set. For failed +// processing, `error.type` MUST contain the failure cause. +// For the SDK Simple and Batching Span Processor a span is considered to be +// processed already when it has been submitted to the exporter, not when the +// corresponding export call has finished. +func (m SDKProcessorSpanProcessed) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful processing, `error.type` MUST NOT be set. For failed +// processing, `error.type` MUST contain the failure cause. +// For the SDK Simple and Batching Span Processor a span is considered to be +// processed already when it has been submitted to the exporter, not when the +// corresponding export call has finished. +func (m SDKProcessorSpanProcessed) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents a low-cardinality description of the failure reason. +// SDK Batching Span Processors MUST use `queue_full` for spans dropped due to a +// full queue. +func (SDKProcessorSpanProcessed) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorSpanProcessed) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorSpanProcessed) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorSpanProcessedObservable is an instrument used to record metric +// values conforming to the "otel.sdk.processor.span.processed" semantic +// conventions. It represents the number of spans for which the processing has +// finished, either successful or failed. +type SDKProcessorSpanProcessedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKProcessorSpanProcessedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of spans for which the processing has finished, either successful or failed."), + metric.WithUnit("{span}"), +} + +// NewSDKProcessorSpanProcessedObservable returns a new +// SDKProcessorSpanProcessedObservable instrument. +func NewSDKProcessorSpanProcessedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKProcessorSpanProcessedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorSpanProcessedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorSpanProcessedObservableOpts + } else { + opt = append(opt, newSDKProcessorSpanProcessedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.processor.span.processed", + opt..., + ) + if err != nil { + return SDKProcessorSpanProcessedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKProcessorSpanProcessedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorSpanProcessedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorSpanProcessedObservable) Name() string { + return "otel.sdk.processor.span.processed" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorSpanProcessedObservable) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorSpanProcessedObservable) Description() string { + return "The number of spans for which the processing has finished, either successful or failed." +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents a low-cardinality description of the failure reason. +// SDK Batching Span Processors MUST use `queue_full` for spans dropped due to a +// full queue. +func (SDKProcessorSpanProcessedObservable) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorSpanProcessedObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorSpanProcessedObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorSpanQueueCapacity is an instrument used to record metric values +// conforming to the "otel.sdk.processor.span.queue.capacity" semantic +// conventions. It represents the maximum number of spans the queue of a given +// instance of an SDK span processor can hold. +type SDKProcessorSpanQueueCapacity struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKProcessorSpanQueueCapacityOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The maximum number of spans the queue of a given instance of an SDK span processor can hold."), + metric.WithUnit("{span}"), +} + +// NewSDKProcessorSpanQueueCapacity returns a new SDKProcessorSpanQueueCapacity +// instrument. +func NewSDKProcessorSpanQueueCapacity( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKProcessorSpanQueueCapacity, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorSpanQueueCapacity{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorSpanQueueCapacityOpts + } else { + opt = append(opt, newSDKProcessorSpanQueueCapacityOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.processor.span.queue.capacity", + opt..., + ) + if err != nil { + return SDKProcessorSpanQueueCapacity{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKProcessorSpanQueueCapacity{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorSpanQueueCapacity) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorSpanQueueCapacity) Name() string { + return "otel.sdk.processor.span.queue.capacity" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorSpanQueueCapacity) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorSpanQueueCapacity) Description() string { + return "The maximum number of spans the queue of a given instance of an SDK span processor can hold." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorSpanQueueCapacity) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorSpanQueueCapacity) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorSpanQueueSize is an instrument used to record metric values +// conforming to the "otel.sdk.processor.span.queue.size" semantic conventions. +// It represents the number of spans in the queue of a given instance of an SDK +// span processor. +type SDKProcessorSpanQueueSize struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKProcessorSpanQueueSizeOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of spans in the queue of a given instance of an SDK span processor."), + metric.WithUnit("{span}"), +} + +// NewSDKProcessorSpanQueueSize returns a new SDKProcessorSpanQueueSize +// instrument. +func NewSDKProcessorSpanQueueSize( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKProcessorSpanQueueSize, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorSpanQueueSize{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorSpanQueueSizeOpts + } else { + opt = append(opt, newSDKProcessorSpanQueueSizeOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.processor.span.queue.size", + opt..., + ) + if err != nil { + return SDKProcessorSpanQueueSize{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKProcessorSpanQueueSize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorSpanQueueSize) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorSpanQueueSize) Name() string { + return "otel.sdk.processor.span.queue.size" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorSpanQueueSize) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorSpanQueueSize) Description() string { + return "The number of spans in the queue of a given instance of an SDK span processor." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorSpanQueueSize) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorSpanQueueSize) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKSpanLive is an instrument used to record metric values conforming to the +// "otel.sdk.span.live" semantic conventions. It represents the number of created +// spans with `recording=true` for which the end operation has not been called +// yet. +type SDKSpanLive struct { + metric.Int64UpDownCounter +} + +var newSDKSpanLiveOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("The number of created spans with `recording=true` for which the end operation has not been called yet."), + metric.WithUnit("{span}"), +} + +// NewSDKSpanLive returns a new SDKSpanLive instrument. +func NewSDKSpanLive( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (SDKSpanLive, error) { + // Check if the meter is nil. + if m == nil { + return SDKSpanLive{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKSpanLiveOpts + } else { + opt = append(opt, newSDKSpanLiveOpts...) + } + + i, err := m.Int64UpDownCounter( + "otel.sdk.span.live", + opt..., + ) + if err != nil { + return SDKSpanLive{noop.Int64UpDownCounter{}}, err + } + return SDKSpanLive{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKSpanLive) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKSpanLive) Name() string { + return "otel.sdk.span.live" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKSpanLive) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKSpanLive) Description() string { + return "The number of created spans with `recording=true` for which the end operation has not been called yet." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +func (m SDKSpanLive) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +func (m SDKSpanLive) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrSpanSamplingResult returns an optional attribute for the +// "otel.span.sampling_result" semantic convention. It represents the result +// value of the sampler for this span. +func (SDKSpanLive) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue { + return attribute.String("otel.span.sampling_result", string(val)) +} + +// SDKSpanLiveObservable is an instrument used to record metric values conforming +// to the "otel.sdk.span.live" semantic conventions. It represents the number of +// created spans with `recording=true` for which the end operation has not been +// called yet. +type SDKSpanLiveObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKSpanLiveObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of created spans with `recording=true` for which the end operation has not been called yet."), + metric.WithUnit("{span}"), +} + +// NewSDKSpanLiveObservable returns a new SDKSpanLiveObservable instrument. +func NewSDKSpanLiveObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKSpanLiveObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKSpanLiveObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKSpanLiveObservableOpts + } else { + opt = append(opt, newSDKSpanLiveObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.span.live", + opt..., + ) + if err != nil { + return SDKSpanLiveObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKSpanLiveObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKSpanLiveObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKSpanLiveObservable) Name() string { + return "otel.sdk.span.live" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKSpanLiveObservable) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKSpanLiveObservable) Description() string { + return "The number of created spans with `recording=true` for which the end operation has not been called yet." +} + +// AttrSpanSamplingResult returns an optional attribute for the +// "otel.span.sampling_result" semantic convention. It represents the result +// value of the sampler for this span. +func (SDKSpanLiveObservable) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue { + return attribute.String("otel.span.sampling_result", string(val)) +} + +// SDKSpanStarted is an instrument used to record metric values conforming to the +// "otel.sdk.span.started" semantic conventions. It represents the number of +// created spans. +type SDKSpanStarted struct { + metric.Int64Counter +} + +var newSDKSpanStartedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of created spans."), + metric.WithUnit("{span}"), +} + +// NewSDKSpanStarted returns a new SDKSpanStarted instrument. +func NewSDKSpanStarted( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKSpanStarted, error) { + // Check if the meter is nil. + if m == nil { + return SDKSpanStarted{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKSpanStartedOpts + } else { + opt = append(opt, newSDKSpanStartedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.span.started", + opt..., + ) + if err != nil { + return SDKSpanStarted{noop.Int64Counter{}}, err + } + return SDKSpanStarted{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKSpanStarted) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKSpanStarted) Name() string { + return "otel.sdk.span.started" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKSpanStarted) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKSpanStarted) Description() string { + return "The number of created spans." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// Implementations MUST record this metric for all spans, even for non-recording +// ones. +func (m SDKSpanStarted) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// Implementations MUST record this metric for all spans, even for non-recording +// ones. +func (m SDKSpanStarted) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + clear(*o) + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrSpanParentOrigin returns an optional attribute for the +// "otel.span.parent.origin" semantic convention. It represents the determines +// whether the span has a parent span, and if so, [whether it is a remote parent] +// . +// +// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote +func (SDKSpanStarted) AttrSpanParentOrigin(val SpanParentOriginAttr) attribute.KeyValue { + return attribute.String("otel.span.parent.origin", string(val)) +} + +// AttrSpanSamplingResult returns an optional attribute for the +// "otel.span.sampling_result" semantic convention. It represents the result +// value of the sampler for this span. +func (SDKSpanStarted) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue { + return attribute.String("otel.span.sampling_result", string(val)) +} + +// SDKSpanStartedObservable is an instrument used to record metric values +// conforming to the "otel.sdk.span.started" semantic conventions. It represents +// the number of created spans. +type SDKSpanStartedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKSpanStartedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of created spans."), + metric.WithUnit("{span}"), +} + +// NewSDKSpanStartedObservable returns a new SDKSpanStartedObservable instrument. +func NewSDKSpanStartedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKSpanStartedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKSpanStartedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKSpanStartedObservableOpts + } else { + opt = append(opt, newSDKSpanStartedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.span.started", + opt..., + ) + if err != nil { + return SDKSpanStartedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKSpanStartedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKSpanStartedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKSpanStartedObservable) Name() string { + return "otel.sdk.span.started" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKSpanStartedObservable) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKSpanStartedObservable) Description() string { + return "The number of created spans." +} + +// AttrSpanParentOrigin returns an optional attribute for the +// "otel.span.parent.origin" semantic convention. It represents the determines +// whether the span has a parent span, and if so, [whether it is a remote parent] +// . +// +// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote +func (SDKSpanStartedObservable) AttrSpanParentOrigin(val SpanParentOriginAttr) attribute.KeyValue { + return attribute.String("otel.span.parent.origin", string(val)) +} + +// AttrSpanSamplingResult returns an optional attribute for the +// "otel.span.sampling_result" semantic convention. It represents the result +// value of the sampler for this span. +func (SDKSpanStartedObservable) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue { + return attribute.String("otel.span.sampling_result", string(val)) +} diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/schema.go b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/schema.go new file mode 100644 index 0000000000..24948a48f8 --- /dev/null +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/semconv/v1.41.0/schema.go @@ -0,0 +1,11 @@ +// Code generated from semantic convention specification. DO NOT EDIT. + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.41.0" + +// SchemaURL is the schema URL that matches the version of the semantic conventions +// that this package defines. Semconv packages starting from v1.4.0 must declare +// non-empty schema URL in the form https://opentelemetry.io/schemas/ +const SchemaURL = "https://opentelemetry.io/schemas/1.41.0" diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/trace/auto.go b/tests/e2e/vendor/go.opentelemetry.io/otel/trace/auto.go index 604fdab446..a75cf047d5 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/trace/auto.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/trace/auto.go @@ -20,7 +20,7 @@ import ( "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/codes" - semconv "go.opentelemetry.io/otel/semconv/v1.39.0" + semconv "go.opentelemetry.io/otel/semconv/v1.41.0" "go.opentelemetry.io/otel/trace/embedded" "go.opentelemetry.io/otel/trace/internal/telemetry" ) @@ -314,6 +314,14 @@ func convAttrValue(value attribute.Value) telemetry.Value { case attribute.STRING: v := truncate(maxSpan.AttrValueLen, value.AsString()) return telemetry.StringValue(v) + case attribute.BYTESLICE: + // len(v.AsString()) is identical to len(v.AsByteSlice()) but + // avoids allocating the full slice before truncation. + s := value.AsString() + if maxSpan.AttrValueLen >= 0 && len(s) > maxSpan.AttrValueLen { + return telemetry.BytesValue([]byte(s[:maxSpan.AttrValueLen])) + } + return telemetry.BytesValue([]byte(s)) case attribute.BOOLSLICE: slice := value.AsBoolSlice() out := make([]telemetry.Value, 0, len(slice)) @@ -343,6 +351,13 @@ func convAttrValue(value attribute.Value) telemetry.Value { out = append(out, telemetry.StringValue(v)) } return telemetry.SliceValue(out...) + case attribute.SLICE: + slice := value.AsSlice() + out := make([]telemetry.Value, 0, len(slice)) + for _, v := range slice { + out = append(out, convAttrValue(v)) + } + return telemetry.SliceValue(out...) } return telemetry.Value{} } @@ -463,7 +478,8 @@ func (s *autoSpan) RecordError(err error, opts ...EventOption) { cfg := NewEventConfig(opts...) attrs := cfg.Attributes() - attrs = append(attrs, + attrs = append( + attrs, semconv.ExceptionType(typeStr(err)), semconv.ExceptionMessage(err.Error()), ) diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/trace/config.go b/tests/e2e/vendor/go.opentelemetry.io/otel/trace/config.go index d9ecef1cad..4cedba5ac7 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/trace/config.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/trace/config.go @@ -34,10 +34,17 @@ func (t *TracerConfig) SchemaURL() string { return t.schemaURL } +type experimentalOption interface { + Experimental() +} + // NewTracerConfig applies all the options to a returned TracerConfig. func NewTracerConfig(options ...TracerOption) TracerConfig { var config TracerConfig for _, option := range options { + if _, ok := option.(experimentalOption); ok { + continue + } config = option.apply(config) } return config @@ -103,6 +110,9 @@ func (cfg *SpanConfig) SpanKind() SpanKind { func NewSpanStartConfig(options ...SpanStartOption) SpanConfig { var c SpanConfig for _, option := range options { + if _, ok := option.(experimentalOption); ok { + continue + } c = option.applySpanStart(c) } return c @@ -115,6 +125,9 @@ func NewSpanStartConfig(options ...SpanStartOption) SpanConfig { func NewSpanEndConfig(options ...SpanEndOption) SpanConfig { var c SpanConfig for _, option := range options { + if _, ok := option.(experimentalOption); ok { + continue + } c = option.applySpanEnd(c) } return c @@ -167,6 +180,9 @@ func (cfg *EventConfig) StackTrace() bool { func NewEventConfig(options ...EventOption) EventConfig { var c EventConfig for _, option := range options { + if _, ok := option.(experimentalOption); ok { + continue + } c = option.applyEvent(c) } if c.timestamp.IsZero() { diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/span.go b/tests/e2e/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/span.go index e7ca62c660..61c7819a23 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/span.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/span.go @@ -314,9 +314,9 @@ type SpanEvent struct { } // MarshalJSON encodes e into OTLP formatted JSON. -func (e SpanEvent) MarshalJSON() ([]byte, error) { - t := e.Time.UnixNano() - if e.Time.IsZero() || t < 0 { +func (se SpanEvent) MarshalJSON() ([]byte, error) { + t := se.Time.UnixNano() + if se.Time.IsZero() || t < 0 { t = 0 } @@ -325,7 +325,7 @@ func (e SpanEvent) MarshalJSON() ([]byte, error) { Alias Time uint64 `json:"timeUnixNano,omitempty"` }{ - Alias: Alias(e), + Alias: Alias(se), Time: uint64(t), // nolint: gosec // >0 checked above }) } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/trace/trace.go b/tests/e2e/vendor/go.opentelemetry.io/otel/trace/trace.go index ee6f4bcb2a..e3d103c4b6 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/trace/trace.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/trace/trace.go @@ -12,6 +12,11 @@ const ( // with the sampling bit set means the span is sampled. FlagsSampled = TraceFlags(0x01) + // FlagsRandom is a bitmask with the random trace ID flag set. When + // set, it signals that the trace ID was generated randomly with at + // least 56 bits of randomness (W3C Trace Context Level 2). + FlagsRandom = TraceFlags(0x02) + errInvalidHexID errorConst = "trace-id and span-id can only contain [0-9a-f] characters, all lowercase" errInvalidTraceIDLength errorConst = "hex encoded trace-id must have length equals to 32" @@ -191,6 +196,20 @@ func (tf TraceFlags) WithSampled(sampled bool) TraceFlags { // nolint:revive // return tf &^ FlagsSampled } +// IsRandom reports whether the random bit is set in the TraceFlags. +func (tf TraceFlags) IsRandom() bool { + return tf&FlagsRandom == FlagsRandom +} + +// WithRandom sets the random bit in a new copy of the TraceFlags. +func (tf TraceFlags) WithRandom(random bool) TraceFlags { // nolint:revive // random is not a control flag. + if random { + return tf | FlagsRandom + } + + return tf &^ FlagsRandom +} + // MarshalJSON implements a custom marshal function to encode TraceFlags // as a hex string. func (tf TraceFlags) MarshalJSON() ([]byte, error) { @@ -317,6 +336,11 @@ func (sc SpanContext) IsSampled() bool { return sc.traceFlags.IsSampled() } +// IsRandom reports whether the random bit is set in the SpanContext's TraceFlags. +func (sc SpanContext) IsRandom() bool { + return sc.traceFlags.IsRandom() +} + // WithTraceFlags returns a new SpanContext with the TraceFlags replaced. func (sc SpanContext) WithTraceFlags(flags TraceFlags) SpanContext { return SpanContext{ diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/trace/tracestate.go b/tests/e2e/vendor/go.opentelemetry.io/otel/trace/tracestate.go index df65c5cc72..e9cb3fd4d1 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/trace/tracestate.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/trace/tracestate.go @@ -64,7 +64,7 @@ func checkKeyRemain(key string) bool { if v > 127 { return false } - if isAlphaNum(byte(v)) { + if isAlphaNumASCII(v) { continue } switch v { @@ -92,7 +92,7 @@ func checkKeyPart(key string, n int) bool { return ret && checkKeyRemain(key[1:]) } -func isAlphaNum(c byte) bool { +func isAlphaNumASCII[T rune | byte](c T) bool { if c >= 'a' && c <= 'z' { return true } @@ -108,7 +108,7 @@ func checkKeyTenant(key string, n int) bool { if key == "" { return false } - return isAlphaNum(key[0]) && len(key[1:]) <= n && checkKeyRemain(key[1:]) + return isAlphaNumASCII(key[0]) && len(key[1:]) <= n && checkKeyRemain(key[1:]) } // based on the W3C Trace Context specification diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/version.go b/tests/e2e/vendor/go.opentelemetry.io/otel/version.go index 9004534068..72746acfdb 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/version.go +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/version.go @@ -5,5 +5,5 @@ package otel // import "go.opentelemetry.io/otel" // Version is the current release version of OpenTelemetry in use. func Version() string { - return "1.41.0" + return "1.44.0" } diff --git a/tests/e2e/vendor/go.opentelemetry.io/otel/versions.yaml b/tests/e2e/vendor/go.opentelemetry.io/otel/versions.yaml index 479c747876..d6dbf803ef 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/otel/versions.yaml +++ b/tests/e2e/vendor/go.opentelemetry.io/otel/versions.yaml @@ -3,7 +3,7 @@ module-sets: stable-v1: - version: v1.41.0 + version: v1.44.0 modules: - go.opentelemetry.io/otel - go.opentelemetry.io/otel/bridge/opencensus @@ -22,11 +22,12 @@ module-sets: - go.opentelemetry.io/otel/sdk/metric - go.opentelemetry.io/otel/trace experimental-metrics: - version: v0.63.0 + version: v0.66.0 modules: - go.opentelemetry.io/otel/exporters/prometheus + - go.opentelemetry.io/otel/metric/x experimental-logs: - version: v0.17.0 + version: v0.20.0 modules: - go.opentelemetry.io/otel/log - go.opentelemetry.io/otel/log/logtest @@ -36,7 +37,7 @@ module-sets: - go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp - go.opentelemetry.io/otel/exporters/stdout/stdoutlog experimental-schema: - version: v0.0.15 + version: v0.0.17 modules: - go.opentelemetry.io/otel/schema excluded-modules: @@ -55,6 +56,9 @@ modules: go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc: version-refs: - ./internal/version.go + go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp: + version-refs: + - ./internal/version.go go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc: version-refs: - ./internal/version.go @@ -64,3 +68,6 @@ modules: go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp: version-refs: - ./internal/version.go + go.opentelemetry.io/otel/exporters/stdout/stdoutlog: + version-refs: + - ./internal/version.go diff --git a/tests/e2e/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go b/tests/e2e/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go index 1f8d49bc98..304f647637 100644 --- a/tests/e2e/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go +++ b/tests/e2e/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go @@ -53,6 +53,7 @@ type AnyValue struct { // *AnyValue_ArrayValue // *AnyValue_KvlistValue // *AnyValue_BytesValue + // *AnyValue_StringValueStrindex Value isAnyValue_Value `protobuf_oneof:"value"` } @@ -144,6 +145,13 @@ func (x *AnyValue) GetBytesValue() []byte { return nil } +func (x *AnyValue) GetStringValueStrindex() int32 { + if x, ok := x.GetValue().(*AnyValue_StringValueStrindex); ok { + return x.StringValueStrindex + } + return 0 +} + type isAnyValue_Value interface { isAnyValue_Value() } @@ -176,6 +184,20 @@ type AnyValue_BytesValue struct { BytesValue []byte `protobuf:"bytes,7,opt,name=bytes_value,json=bytesValue,proto3,oneof"` } +type AnyValue_StringValueStrindex struct { + // Reference to the string value in ProfilesDictionary.string_table. + // + // Note: This is currently used exclusively in the Profiling signal. + // Implementers of OTLP receivers for signals other than Profiling should + // treat the presence of this value as a non-fatal issue. + // Log an error or warning indicating an unexpected field intended for the + // Profiling signal and process the data as if this value were absent or + // empty, ignoring its semantic content for the non-Profiling signal. + // + // Status: [Development] + StringValueStrindex int32 `protobuf:"varint,8,opt,name=string_value_strindex,json=stringValueStrindex,proto3,oneof"` +} + func (*AnyValue_StringValue) isAnyValue_Value() {} func (*AnyValue_BoolValue) isAnyValue_Value() {} @@ -190,6 +212,8 @@ func (*AnyValue_KvlistValue) isAnyValue_Value() {} func (*AnyValue_BytesValue) isAnyValue_Value() {} +func (*AnyValue_StringValueStrindex) isAnyValue_Value() {} + // ArrayValue is a list of AnyValue messages. We need ArrayValue as a message // since oneof in AnyValue does not allow repeated fields. type ArrayValue struct { @@ -306,9 +330,22 @@ type KeyValue struct { unknownFields protoimpl.UnknownFields // The key name of the pair. + // key_ref MUST NOT be set if key is used. Key string `protobuf:"bytes,1,opt,name=key,proto3" json:"key,omitempty"` // The value of the pair. Value *AnyValue `protobuf:"bytes,2,opt,name=value,proto3" json:"value,omitempty"` + // Reference to the string key in ProfilesDictionary.string_table. + // key MUST NOT be set if key_strindex is used. + // + // Note: This is currently used exclusively in the Profiling signal. + // Implementers of OTLP receivers for signals other than Profiling should + // treat the presence of this key as a non-fatal issue. + // Log an error or warning indicating an unexpected field intended for the + // Profiling signal and process the data as if this value were absent or + // empty, ignoring its semantic content for the non-Profiling signal. + // + // Status: [Development] + KeyStrindex int32 `protobuf:"varint,3,opt,name=key_strindex,json=keyStrindex,proto3" json:"key_strindex,omitempty"` } func (x *KeyValue) Reset() { @@ -357,6 +394,13 @@ func (x *KeyValue) GetValue() *AnyValue { return nil } +func (x *KeyValue) GetKeyStrindex() int32 { + if x != nil { + return x.KeyStrindex + } + return 0 +} + // 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@@ func file_opentelemetry_proto_common_v1_common_proto_init() { (*AnyValue_ArrayValue)(nil), (*AnyValue_KvlistValue)(nil), (*AnyValue_BytesValue)(nil), + (*AnyValue_StringValueStrindex)(nil), } type x struct{} out := protoimpl.TypeBuilder{ diff --git a/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/asn1.go b/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/asn1.go new file mode 100644 index 0000000000..d25979d9f5 --- /dev/null +++ b/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/asn1.go @@ -0,0 +1,825 @@ +// Copyright 2017 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package cryptobyte + +import ( + encoding_asn1 "encoding/asn1" + "fmt" + "math/big" + "reflect" + "time" + + "golang.org/x/crypto/cryptobyte/asn1" +) + +// This file contains ASN.1-related methods for String and Builder. + +// Builder + +// AddASN1Int64 appends a DER-encoded ASN.1 INTEGER. +func (b *Builder) AddASN1Int64(v int64) { + b.addASN1Signed(asn1.INTEGER, v) +} + +// AddASN1Int64WithTag appends a DER-encoded ASN.1 INTEGER with the +// given tag. +func (b *Builder) AddASN1Int64WithTag(v int64, tag asn1.Tag) { + b.addASN1Signed(tag, v) +} + +// AddASN1Enum appends a DER-encoded ASN.1 ENUMERATION. +func (b *Builder) AddASN1Enum(v int64) { + b.addASN1Signed(asn1.ENUM, v) +} + +func (b *Builder) addASN1Signed(tag asn1.Tag, v int64) { + b.AddASN1(tag, func(c *Builder) { + length := 1 + for i := v; i >= 0x80 || i < -0x80; i >>= 8 { + length++ + } + + for ; length > 0; length-- { + i := v >> uint((length-1)*8) & 0xff + c.AddUint8(uint8(i)) + } + }) +} + +// AddASN1Uint64 appends a DER-encoded ASN.1 INTEGER. +func (b *Builder) AddASN1Uint64(v uint64) { + b.AddASN1(asn1.INTEGER, func(c *Builder) { + length := 1 + for i := v; i >= 0x80; i >>= 8 { + length++ + } + + for ; length > 0; length-- { + i := v >> uint((length-1)*8) & 0xff + c.AddUint8(uint8(i)) + } + }) +} + +// AddASN1BigInt appends a DER-encoded ASN.1 INTEGER. +func (b *Builder) AddASN1BigInt(n *big.Int) { + if b.err != nil { + return + } + + b.AddASN1(asn1.INTEGER, func(c *Builder) { + if n.Sign() < 0 { + // A negative number has to be converted to two's-complement form. So we + // invert and subtract 1. If the most-significant-bit isn't set then + // we'll need to pad the beginning with 0xff in order to keep the number + // negative. + nMinus1 := new(big.Int).Neg(n) + nMinus1.Sub(nMinus1, bigOne) + bytes := nMinus1.Bytes() + for i := range bytes { + bytes[i] ^= 0xff + } + if len(bytes) == 0 || bytes[0]&0x80 == 0 { + c.add(0xff) + } + c.add(bytes...) + } else if n.Sign() == 0 { + c.add(0) + } else { + bytes := n.Bytes() + if bytes[0]&0x80 != 0 { + c.add(0) + } + c.add(bytes...) + } + }) +} + +// AddASN1OctetString appends a DER-encoded ASN.1 OCTET STRING. +func (b *Builder) AddASN1OctetString(bytes []byte) { + b.AddASN1(asn1.OCTET_STRING, func(c *Builder) { + c.AddBytes(bytes) + }) +} + +const generalizedTimeFormatStr = "20060102150405Z0700" + +// AddASN1GeneralizedTime appends a DER-encoded ASN.1 GENERALIZEDTIME. +func (b *Builder) AddASN1GeneralizedTime(t time.Time) { + if t.Year() < 0 || t.Year() > 9999 { + b.err = fmt.Errorf("cryptobyte: cannot represent %v as a GeneralizedTime", t) + return + } + b.AddASN1(asn1.GeneralizedTime, func(c *Builder) { + c.AddBytes([]byte(t.Format(generalizedTimeFormatStr))) + }) +} + +// AddASN1UTCTime appends a DER-encoded ASN.1 UTCTime. +func (b *Builder) AddASN1UTCTime(t time.Time) { + b.AddASN1(asn1.UTCTime, func(c *Builder) { + // As utilized by the X.509 profile, UTCTime can only + // represent the years 1950 through 2049. + if t.Year() < 1950 || t.Year() >= 2050 { + b.err = fmt.Errorf("cryptobyte: cannot represent %v as a UTCTime", t) + return + } + c.AddBytes([]byte(t.Format(defaultUTCTimeFormatStr))) + }) +} + +// AddASN1BitString appends a DER-encoded ASN.1 BIT STRING. This does not +// support BIT STRINGs that are not a whole number of bytes. +func (b *Builder) AddASN1BitString(data []byte) { + b.AddASN1(asn1.BIT_STRING, func(b *Builder) { + b.AddUint8(0) + b.AddBytes(data) + }) +} + +func (b *Builder) addBase128Int(n int64) { + var length int + if n == 0 { + length = 1 + } else { + for i := n; i > 0; i >>= 7 { + length++ + } + } + + for i := length - 1; i >= 0; i-- { + o := byte(n >> uint(i*7)) + o &= 0x7f + if i != 0 { + o |= 0x80 + } + + b.add(o) + } +} + +func isValidOID(oid encoding_asn1.ObjectIdentifier) bool { + if len(oid) < 2 { + return false + } + + if oid[0] > 2 || (oid[0] <= 1 && oid[1] >= 40) { + return false + } + + for _, v := range oid { + if v < 0 { + return false + } + } + + return true +} + +func (b *Builder) AddASN1ObjectIdentifier(oid encoding_asn1.ObjectIdentifier) { + b.AddASN1(asn1.OBJECT_IDENTIFIER, func(b *Builder) { + if !isValidOID(oid) { + b.err = fmt.Errorf("cryptobyte: invalid OID: %v", oid) + return + } + + b.addBase128Int(int64(oid[0])*40 + int64(oid[1])) + for _, v := range oid[2:] { + b.addBase128Int(int64(v)) + } + }) +} + +func (b *Builder) AddASN1Boolean(v bool) { + b.AddASN1(asn1.BOOLEAN, func(b *Builder) { + if v { + b.AddUint8(0xff) + } else { + b.AddUint8(0) + } + }) +} + +func (b *Builder) AddASN1NULL() { + b.add(uint8(asn1.NULL), 0) +} + +// MarshalASN1 calls encoding_asn1.Marshal on its input and appends the result if +// successful or records an error if one occurred. +func (b *Builder) MarshalASN1(v interface{}) { + // NOTE(martinkr): This is somewhat of a hack to allow propagation of + // encoding_asn1.Marshal errors into Builder.err. N.B. if you call MarshalASN1 with a + // value embedded into a struct, its tag information is lost. + if b.err != nil { + return + } + bytes, err := encoding_asn1.Marshal(v) + if err != nil { + b.err = err + return + } + b.AddBytes(bytes) +} + +// AddASN1 appends an ASN.1 object. The object is prefixed with the given tag. +// Tags greater than 30 are not supported and result in an error (i.e. +// low-tag-number form only). The child builder passed to the +// BuilderContinuation can be used to build the content of the ASN.1 object. +func (b *Builder) AddASN1(tag asn1.Tag, f BuilderContinuation) { + if b.err != nil { + return + } + // Identifiers with the low five bits set indicate high-tag-number format + // (two or more octets), which we don't support. + if tag&0x1f == 0x1f { + b.err = fmt.Errorf("cryptobyte: high-tag number identifier octets not supported: 0x%x", tag) + return + } + b.AddUint8(uint8(tag)) + b.addLengthPrefixed(1, true, f) +} + +// String + +// ReadASN1Boolean decodes an ASN.1 BOOLEAN and converts it to a boolean +// representation into out and advances. It reports whether the read +// was successful. +func (s *String) ReadASN1Boolean(out *bool) bool { + var bytes String + if !s.ReadASN1(&bytes, asn1.BOOLEAN) || len(bytes) != 1 { + return false + } + + switch bytes[0] { + case 0: + *out = false + case 0xff: + *out = true + default: + return false + } + + return true +} + +// ReadASN1Integer decodes an ASN.1 INTEGER into out and advances. If out does +// not point to an integer, to a big.Int, or to a []byte it panics. Only +// positive and zero values can be decoded into []byte, and they are returned as +// big-endian binary values that share memory with s. Positive values will have +// no leading zeroes, and zero will be returned as a single zero byte. +// ReadASN1Integer reports whether the read was successful. +func (s *String) ReadASN1Integer(out interface{}) bool { + switch out := out.(type) { + case *int, *int8, *int16, *int32, *int64: + var i int64 + if !s.readASN1Int64(&i) || reflect.ValueOf(out).Elem().OverflowInt(i) { + return false + } + reflect.ValueOf(out).Elem().SetInt(i) + return true + case *uint, *uint8, *uint16, *uint32, *uint64: + var u uint64 + if !s.readASN1Uint64(&u) || reflect.ValueOf(out).Elem().OverflowUint(u) { + return false + } + reflect.ValueOf(out).Elem().SetUint(u) + return true + case *big.Int: + return s.readASN1BigInt(out) + case *[]byte: + return s.readASN1Bytes(out) + default: + panic("out does not point to an integer type") + } +} + +func checkASN1Integer(bytes []byte) bool { + if len(bytes) == 0 { + // An INTEGER is encoded with at least one octet. + return false + } + if len(bytes) == 1 { + return true + } + if bytes[0] == 0 && bytes[1]&0x80 == 0 || bytes[0] == 0xff && bytes[1]&0x80 == 0x80 { + // Value is not minimally encoded. + return false + } + return true +} + +var bigOne = big.NewInt(1) + +func (s *String) readASN1BigInt(out *big.Int) bool { + var bytes String + if !s.ReadASN1(&bytes, asn1.INTEGER) || !checkASN1Integer(bytes) { + return false + } + if bytes[0]&0x80 == 0x80 { + // Negative number. + neg := make([]byte, len(bytes)) + for i, b := range bytes { + neg[i] = ^b + } + out.SetBytes(neg) + out.Add(out, bigOne) + out.Neg(out) + } else { + out.SetBytes(bytes) + } + return true +} + +func (s *String) readASN1Bytes(out *[]byte) bool { + var bytes String + if !s.ReadASN1(&bytes, asn1.INTEGER) || !checkASN1Integer(bytes) { + return false + } + if bytes[0]&0x80 == 0x80 { + return false + } + for len(bytes) > 1 && bytes[0] == 0 { + bytes = bytes[1:] + } + *out = bytes + return true +} + +func (s *String) readASN1Int64(out *int64) bool { + var bytes String + if !s.ReadASN1(&bytes, asn1.INTEGER) || !checkASN1Integer(bytes) || !asn1Signed(out, bytes) { + return false + } + return true +} + +func asn1Signed(out *int64, n []byte) bool { + length := len(n) + if length > 8 { + return false + } + for i := 0; i < length; i++ { + *out <<= 8 + *out |= int64(n[i]) + } + // Shift up and down in order to sign extend the result. + *out <<= 64 - uint8(length)*8 + *out >>= 64 - uint8(length)*8 + return true +} + +func (s *String) readASN1Uint64(out *uint64) bool { + var bytes String + if !s.ReadASN1(&bytes, asn1.INTEGER) || !checkASN1Integer(bytes) || !asn1Unsigned(out, bytes) { + return false + } + return true +} + +func asn1Unsigned(out *uint64, n []byte) bool { + length := len(n) + if length > 9 || length == 9 && n[0] != 0 { + // Too large for uint64. + return false + } + if n[0]&0x80 != 0 { + // Negative number. + return false + } + for i := 0; i < length; i++ { + *out <<= 8 + *out |= uint64(n[i]) + } + return true +} + +// ReadASN1Int64WithTag decodes an ASN.1 INTEGER with the given tag into out +// and advances. It reports whether the read was successful and resulted in a +// value that can be represented in an int64. +func (s *String) ReadASN1Int64WithTag(out *int64, tag asn1.Tag) bool { + var bytes String + return s.ReadASN1(&bytes, tag) && checkASN1Integer(bytes) && asn1Signed(out, bytes) +} + +// ReadASN1Enum decodes an ASN.1 ENUMERATION into out and advances. It reports +// whether the read was successful. +func (s *String) ReadASN1Enum(out *int) bool { + var bytes String + var i int64 + if !s.ReadASN1(&bytes, asn1.ENUM) || !checkASN1Integer(bytes) || !asn1Signed(&i, bytes) { + return false + } + if int64(int(i)) != i { + return false + } + *out = int(i) + return true +} + +func (s *String) readBase128Int(out *int) bool { + ret := 0 + for i := 0; len(*s) > 0; i++ { + if i == 5 { + return false + } + // Avoid overflowing int on a 32-bit platform. + // We don't want different behavior based on the architecture. + if ret >= 1<<(31-7) { + return false + } + ret <<= 7 + b := s.read(1)[0] + + // ITU-T X.690, section 8.19.2: + // The subidentifier shall be encoded in the fewest possible octets, + // that is, the leading octet of the subidentifier shall not have the value 0x80. + if i == 0 && b == 0x80 { + return false + } + + ret |= int(b & 0x7f) + if b&0x80 == 0 { + *out = ret + return true + } + } + return false // truncated +} + +// ReadASN1ObjectIdentifier decodes an ASN.1 OBJECT IDENTIFIER into out and +// advances. It reports whether the read was successful. +func (s *String) ReadASN1ObjectIdentifier(out *encoding_asn1.ObjectIdentifier) bool { + var bytes String + if !s.ReadASN1(&bytes, asn1.OBJECT_IDENTIFIER) || len(bytes) == 0 { + return false + } + + // In the worst case, we get two elements from the first byte (which is + // encoded differently) and then every varint is a single byte long. + components := make([]int, len(bytes)+1) + + // The first varint is 40*value1 + value2: + // According to this packing, value1 can take the values 0, 1 and 2 only. + // When value1 = 0 or value1 = 1, then value2 is <= 39. When value1 = 2, + // then there are no restrictions on value2. + var v int + if !bytes.readBase128Int(&v) { + return false + } + if v < 80 { + components[0] = v / 40 + components[1] = v % 40 + } else { + components[0] = 2 + components[1] = v - 80 + } + + i := 2 + for ; len(bytes) > 0; i++ { + if !bytes.readBase128Int(&v) { + return false + } + components[i] = v + } + *out = components[:i] + return true +} + +// ReadASN1GeneralizedTime decodes an ASN.1 GENERALIZEDTIME into out and +// advances. It reports whether the read was successful. +func (s *String) ReadASN1GeneralizedTime(out *time.Time) bool { + var bytes String + if !s.ReadASN1(&bytes, asn1.GeneralizedTime) { + return false + } + t := string(bytes) + res, err := time.Parse(generalizedTimeFormatStr, t) + if err != nil { + return false + } + if serialized := res.Format(generalizedTimeFormatStr); serialized != t { + return false + } + *out = res + return true +} + +const defaultUTCTimeFormatStr = "060102150405Z0700" + +// ReadASN1UTCTime decodes an ASN.1 UTCTime into out and advances. +// It reports whether the read was successful. +func (s *String) ReadASN1UTCTime(out *time.Time) bool { + var bytes String + if !s.ReadASN1(&bytes, asn1.UTCTime) { + return false + } + t := string(bytes) + + formatStr := defaultUTCTimeFormatStr + var err error + res, err := time.Parse(formatStr, t) + if err != nil { + // Fallback to minute precision if we can't parse second + // precision. If we are following X.509 or X.690 we shouldn't + // support this, but we do. + formatStr = "0601021504Z0700" + res, err = time.Parse(formatStr, t) + } + if err != nil { + return false + } + + if serialized := res.Format(formatStr); serialized != t { + return false + } + + if res.Year() >= 2050 { + // UTCTime interprets the low order digits 50-99 as 1950-99. + // This only applies to its use in the X.509 profile. + // See https://tools.ietf.org/html/rfc5280#section-4.1.2.5.1 + res = res.AddDate(-100, 0, 0) + } + *out = res + return true +} + +// ReadASN1BitString decodes an ASN.1 BIT STRING into out and advances. +// It reports whether the read was successful. +func (s *String) ReadASN1BitString(out *encoding_asn1.BitString) bool { + var bytes String + if !s.ReadASN1(&bytes, asn1.BIT_STRING) || len(bytes) == 0 || + len(bytes)*8/8 != len(bytes) { + return false + } + + paddingBits := bytes[0] + bytes = bytes[1:] + if paddingBits > 7 || + len(bytes) == 0 && paddingBits != 0 || + len(bytes) > 0 && bytes[len(bytes)-1]&(1< 4 || len(*s) < int(2+lenLen) { + return false + } + + lenBytes := String((*s)[2 : 2+lenLen]) + if !lenBytes.readUnsigned(&len32, int(lenLen)) { + return false + } + + // ITU-T X.690 section 10.1 (DER length forms) requires encoding the length + // with the minimum number of octets. + if len32 < 128 { + // Length should have used short-form encoding. + return false + } + if len32>>((lenLen-1)*8) == 0 { + // Leading octet is 0. Length should have been at least one byte shorter. + return false + } + + headerLen = 2 + uint32(lenLen) + if headerLen+len32 < len32 { + // Overflow. + return false + } + length = headerLen + len32 + } + + if int(length) < 0 || !s.ReadBytes((*[]byte)(out), int(length)) { + return false + } + if skipHeader && !out.Skip(int(headerLen)) { + panic("cryptobyte: internal error") + } + + return true +} diff --git a/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/asn1/asn1.go b/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/asn1/asn1.go new file mode 100644 index 0000000000..90ef6a241d --- /dev/null +++ b/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/asn1/asn1.go @@ -0,0 +1,46 @@ +// Copyright 2017 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Package asn1 contains supporting types for parsing and building ASN.1 +// messages with the cryptobyte package. +package asn1 + +// Tag represents an ASN.1 identifier octet, consisting of a tag number +// (indicating a type) and class (such as context-specific or constructed). +// +// Methods in the cryptobyte package only support the low-tag-number form, i.e. +// a single identifier octet with bits 7-8 encoding the class and bits 1-6 +// encoding the tag number. +type Tag uint8 + +const ( + classConstructed = 0x20 + classContextSpecific = 0x80 +) + +// Constructed returns t with the constructed class bit set. +func (t Tag) Constructed() Tag { return t | classConstructed } + +// ContextSpecific returns t with the context-specific class bit set. +func (t Tag) ContextSpecific() Tag { return t | classContextSpecific } + +// The following is a list of standard tag and class combinations. +const ( + BOOLEAN = Tag(1) + INTEGER = Tag(2) + BIT_STRING = Tag(3) + OCTET_STRING = Tag(4) + NULL = Tag(5) + OBJECT_IDENTIFIER = Tag(6) + ENUM = Tag(10) + UTF8String = Tag(12) + SEQUENCE = Tag(16 | classConstructed) + SET = Tag(17 | classConstructed) + PrintableString = Tag(19) + T61String = Tag(20) + IA5String = Tag(22) + UTCTime = Tag(23) + GeneralizedTime = Tag(24) + GeneralString = Tag(27) +) diff --git a/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/builder.go b/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/builder.go new file mode 100644 index 0000000000..cf254f5f1e --- /dev/null +++ b/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/builder.go @@ -0,0 +1,350 @@ +// Copyright 2017 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package cryptobyte + +import ( + "errors" + "fmt" +) + +// A Builder builds byte strings from fixed-length and length-prefixed values. +// Builders either allocate space as needed, or are ‘fixed’, which means that +// they write into a given buffer and produce an error if it's exhausted. +// +// The zero value is a usable Builder that allocates space as needed. +// +// Simple values are marshaled and appended to a Builder using methods on the +// Builder. Length-prefixed values are marshaled by providing a +// BuilderContinuation, which is a function that writes the inner contents of +// the value to a given Builder. See the documentation for BuilderContinuation +// for details. +type Builder struct { + err error + result []byte + fixedSize bool + child *Builder + offset int + pendingLenLen int + pendingIsASN1 bool + inContinuation *bool +} + +// NewBuilder creates a Builder that appends its output to the given buffer. +// Like append(), the slice will be reallocated if its capacity is exceeded. +// Use Bytes to get the final buffer. +func NewBuilder(buffer []byte) *Builder { + return &Builder{ + result: buffer, + } +} + +// NewFixedBuilder creates a Builder that appends its output into the given +// buffer. This builder does not reallocate the output buffer. Writes that +// would exceed the buffer's capacity are treated as an error. +func NewFixedBuilder(buffer []byte) *Builder { + return &Builder{ + result: buffer, + fixedSize: true, + } +} + +// SetError sets the value to be returned as the error from Bytes. Writes +// performed after calling SetError are ignored. +func (b *Builder) SetError(err error) { + b.err = err +} + +// Bytes returns the bytes written by the builder or an error if one has +// occurred during building. +func (b *Builder) Bytes() ([]byte, error) { + if b.err != nil { + return nil, b.err + } + return b.result[b.offset:], nil +} + +// BytesOrPanic returns the bytes written by the builder or panics if an error +// has occurred during building. +func (b *Builder) BytesOrPanic() []byte { + if b.err != nil { + panic(b.err) + } + return b.result[b.offset:] +} + +// AddUint8 appends an 8-bit value to the byte string. +func (b *Builder) AddUint8(v uint8) { + b.add(byte(v)) +} + +// AddUint16 appends a big-endian, 16-bit value to the byte string. +func (b *Builder) AddUint16(v uint16) { + b.add(byte(v>>8), byte(v)) +} + +// AddUint24 appends a big-endian, 24-bit value to the byte string. The highest +// byte of the 32-bit input value is silently truncated. +func (b *Builder) AddUint24(v uint32) { + b.add(byte(v>>16), byte(v>>8), byte(v)) +} + +// AddUint32 appends a big-endian, 32-bit value to the byte string. +func (b *Builder) AddUint32(v uint32) { + b.add(byte(v>>24), byte(v>>16), byte(v>>8), byte(v)) +} + +// AddUint48 appends a big-endian, 48-bit value to the byte string. +func (b *Builder) AddUint48(v uint64) { + b.add(byte(v>>40), byte(v>>32), byte(v>>24), byte(v>>16), byte(v>>8), byte(v)) +} + +// AddUint64 appends a big-endian, 64-bit value to the byte string. +func (b *Builder) AddUint64(v uint64) { + b.add(byte(v>>56), byte(v>>48), byte(v>>40), byte(v>>32), byte(v>>24), byte(v>>16), byte(v>>8), byte(v)) +} + +// AddBytes appends a sequence of bytes to the byte string. +func (b *Builder) AddBytes(v []byte) { + b.add(v...) +} + +// BuilderContinuation is a continuation-passing interface for building +// length-prefixed byte sequences. Builder methods for length-prefixed +// sequences (AddUint8LengthPrefixed etc) will invoke the BuilderContinuation +// supplied to them. The child builder passed to the continuation can be used +// to build the content of the length-prefixed sequence. For example: +// +// parent := cryptobyte.NewBuilder() +// parent.AddUint8LengthPrefixed(func (child *Builder) { +// child.AddUint8(42) +// child.AddUint8LengthPrefixed(func (grandchild *Builder) { +// grandchild.AddUint8(5) +// }) +// }) +// +// It is an error to write more bytes to the child than allowed by the reserved +// length prefix. After the continuation returns, the child must be considered +// invalid, i.e. users must not store any copies or references of the child +// that outlive the continuation. +// +// If the continuation panics with a value of type BuildError then the inner +// error will be returned as the error from Bytes. If the child panics +// otherwise then Bytes will repanic with the same value. +type BuilderContinuation func(child *Builder) + +// BuildError wraps an error. If a BuilderContinuation panics with this value, +// the panic will be recovered and the inner error will be returned from +// Builder.Bytes. +type BuildError struct { + Err error +} + +// AddUint8LengthPrefixed adds a 8-bit length-prefixed byte sequence. +func (b *Builder) AddUint8LengthPrefixed(f BuilderContinuation) { + b.addLengthPrefixed(1, false, f) +} + +// AddUint16LengthPrefixed adds a big-endian, 16-bit length-prefixed byte sequence. +func (b *Builder) AddUint16LengthPrefixed(f BuilderContinuation) { + b.addLengthPrefixed(2, false, f) +} + +// AddUint24LengthPrefixed adds a big-endian, 24-bit length-prefixed byte sequence. +func (b *Builder) AddUint24LengthPrefixed(f BuilderContinuation) { + b.addLengthPrefixed(3, false, f) +} + +// AddUint32LengthPrefixed adds a big-endian, 32-bit length-prefixed byte sequence. +func (b *Builder) AddUint32LengthPrefixed(f BuilderContinuation) { + b.addLengthPrefixed(4, false, f) +} + +func (b *Builder) callContinuation(f BuilderContinuation, arg *Builder) { + if !*b.inContinuation { + *b.inContinuation = true + + defer func() { + *b.inContinuation = false + + r := recover() + if r == nil { + return + } + + if buildError, ok := r.(BuildError); ok { + b.err = buildError.Err + } else { + panic(r) + } + }() + } + + f(arg) +} + +func (b *Builder) addLengthPrefixed(lenLen int, isASN1 bool, f BuilderContinuation) { + // Subsequent writes can be ignored if the builder has encountered an error. + if b.err != nil { + return + } + + offset := len(b.result) + b.add(make([]byte, lenLen)...) + + if b.inContinuation == nil { + b.inContinuation = new(bool) + } + + b.child = &Builder{ + result: b.result, + fixedSize: b.fixedSize, + offset: offset, + pendingLenLen: lenLen, + pendingIsASN1: isASN1, + inContinuation: b.inContinuation, + } + + b.callContinuation(f, b.child) + b.flushChild() + if b.child != nil { + panic("cryptobyte: internal error") + } +} + +func (b *Builder) flushChild() { + if b.child == nil { + return + } + b.child.flushChild() + child := b.child + b.child = nil + + if child.err != nil { + b.err = child.err + return + } + + length := len(child.result) - child.pendingLenLen - child.offset + + if length < 0 { + panic("cryptobyte: internal error") // result unexpectedly shrunk + } + + if child.pendingIsASN1 { + // For ASN.1, we reserved a single byte for the length. If that turned out + // to be incorrect, we have to move the contents along in order to make + // space. + if child.pendingLenLen != 1 { + panic("cryptobyte: internal error") + } + var lenLen, lenByte uint8 + if int64(length) > 0xfffffffe { + b.err = errors.New("pending ASN.1 child too long") + return + } else if length > 0xffffff { + lenLen = 5 + lenByte = 0x80 | 4 + } else if length > 0xffff { + lenLen = 4 + lenByte = 0x80 | 3 + } else if length > 0xff { + lenLen = 3 + lenByte = 0x80 | 2 + } else if length > 0x7f { + lenLen = 2 + lenByte = 0x80 | 1 + } else { + lenLen = 1 + lenByte = uint8(length) + length = 0 + } + + // Insert the initial length byte, make space for successive length bytes, + // and adjust the offset. + child.result[child.offset] = lenByte + extraBytes := int(lenLen - 1) + if extraBytes != 0 { + child.add(make([]byte, extraBytes)...) + childStart := child.offset + child.pendingLenLen + copy(child.result[childStart+extraBytes:], child.result[childStart:]) + } + child.offset++ + child.pendingLenLen = extraBytes + } + + l := length + for i := child.pendingLenLen - 1; i >= 0; i-- { + child.result[child.offset+i] = uint8(l) + l >>= 8 + } + if l != 0 { + b.err = fmt.Errorf("cryptobyte: pending child length %d exceeds %d-byte length prefix", length, child.pendingLenLen) + return + } + + if b.fixedSize && &b.result[0] != &child.result[0] { + panic("cryptobyte: BuilderContinuation reallocated a fixed-size buffer") + } + + b.result = child.result +} + +func (b *Builder) add(bytes ...byte) { + if b.err != nil { + return + } + if b.child != nil { + panic("cryptobyte: attempted write while child is pending") + } + if len(b.result)+len(bytes) < len(bytes) { + b.err = errors.New("cryptobyte: length overflow") + } + if b.fixedSize && len(b.result)+len(bytes) > cap(b.result) { + b.err = errors.New("cryptobyte: Builder is exceeding its fixed-size buffer") + return + } + b.result = append(b.result, bytes...) +} + +// Unwrite rolls back non-negative n bytes written directly to the Builder. +// An attempt by a child builder passed to a continuation to unwrite bytes +// from its parent will panic. +func (b *Builder) Unwrite(n int) { + if b.err != nil { + return + } + if b.child != nil { + panic("cryptobyte: attempted unwrite while child is pending") + } + length := len(b.result) - b.pendingLenLen - b.offset + if length < 0 { + panic("cryptobyte: internal error") + } + if n < 0 { + panic("cryptobyte: attempted to unwrite negative number of bytes") + } + if n > length { + panic("cryptobyte: attempted to unwrite more than was written") + } + b.result = b.result[:len(b.result)-n] +} + +// A MarshalingValue marshals itself into a Builder. +type MarshalingValue interface { + // Marshal is called by Builder.AddValue. It receives a pointer to a builder + // to marshal itself into. It may return an error that occurred during + // marshaling, such as unset or invalid values. + Marshal(b *Builder) error +} + +// AddValue calls Marshal on v, passing a pointer to the builder to append to. +// If Marshal returns an error, it is set on the Builder so that subsequent +// appends don't have an effect. +func (b *Builder) AddValue(v MarshalingValue) { + err := v.Marshal(b) + if err != nil { + b.err = err + } +} diff --git a/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/string.go b/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/string.go new file mode 100644 index 0000000000..4b0f8097f9 --- /dev/null +++ b/tests/e2e/vendor/golang.org/x/crypto/cryptobyte/string.go @@ -0,0 +1,183 @@ +// Copyright 2017 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Package cryptobyte contains types that help with parsing and constructing +// length-prefixed, binary messages, including ASN.1 DER. (The asn1 subpackage +// contains useful ASN.1 constants.) +// +// The String type is for parsing. It wraps a []byte slice and provides helper +// functions for consuming structures, value by value. +// +// The Builder type is for constructing messages. It providers helper functions +// for appending values and also for appending length-prefixed submessages – +// without having to worry about calculating the length prefix ahead of time. +// +// See the documentation and examples for the Builder and String types to get +// started. +package cryptobyte + +// String represents a string of bytes. It provides methods for parsing +// fixed-length and length-prefixed values from it. +type String []byte + +// read advances a String by n bytes and returns them. If less than n bytes +// remain, it returns nil. +func (s *String) read(n int) []byte { + if len(*s) < n || n < 0 { + return nil + } + v := (*s)[:n] + *s = (*s)[n:] + return v +} + +// Skip advances the String by n byte and reports whether it was successful. +func (s *String) Skip(n int) bool { + return s.read(n) != nil +} + +// ReadUint8 decodes an 8-bit value into out and advances over it. +// It reports whether the read was successful. +func (s *String) ReadUint8(out *uint8) bool { + v := s.read(1) + if v == nil { + return false + } + *out = uint8(v[0]) + return true +} + +// ReadUint16 decodes a big-endian, 16-bit value into out and advances over it. +// It reports whether the read was successful. +func (s *String) ReadUint16(out *uint16) bool { + v := s.read(2) + if v == nil { + return false + } + *out = uint16(v[0])<<8 | uint16(v[1]) + return true +} + +// ReadUint24 decodes a big-endian, 24-bit value into out and advances over it. +// It reports whether the read was successful. +func (s *String) ReadUint24(out *uint32) bool { + v := s.read(3) + if v == nil { + return false + } + *out = uint32(v[0])<<16 | uint32(v[1])<<8 | uint32(v[2]) + return true +} + +// ReadUint32 decodes a big-endian, 32-bit value into out and advances over it. +// It reports whether the read was successful. +func (s *String) ReadUint32(out *uint32) bool { + v := s.read(4) + if v == nil { + return false + } + *out = uint32(v[0])<<24 | uint32(v[1])<<16 | uint32(v[2])<<8 | uint32(v[3]) + return true +} + +// ReadUint48 decodes a big-endian, 48-bit value into out and advances over it. +// It reports whether the read was successful. +func (s *String) ReadUint48(out *uint64) bool { + v := s.read(6) + if v == nil { + return false + } + *out = uint64(v[0])<<40 | uint64(v[1])<<32 | uint64(v[2])<<24 | uint64(v[3])<<16 | uint64(v[4])<<8 | uint64(v[5]) + return true +} + +// ReadUint64 decodes a big-endian, 64-bit value into out and advances over it. +// It reports whether the read was successful. +func (s *String) ReadUint64(out *uint64) bool { + v := s.read(8) + if v == nil { + return false + } + *out = uint64(v[0])<<56 | uint64(v[1])<<48 | uint64(v[2])<<40 | uint64(v[3])<<32 | uint64(v[4])<<24 | uint64(v[5])<<16 | uint64(v[6])<<8 | uint64(v[7]) + return true +} + +func (s *String) readUnsigned(out *uint32, length int) bool { + v := s.read(length) + if v == nil { + return false + } + var result uint32 + for i := 0; i < length; i++ { + result <<= 8 + result |= uint32(v[i]) + } + *out = result + return true +} + +func (s *String) readLengthPrefixed(lenLen int, outChild *String) bool { + lenBytes := s.read(lenLen) + if lenBytes == nil { + return false + } + var length uint32 + for _, b := range lenBytes { + length = length << 8 + length = length | uint32(b) + } + v := s.read(int(length)) + if v == nil { + return false + } + *outChild = v + return true +} + +// ReadUint8LengthPrefixed reads the content of an 8-bit length-prefixed value +// into out and advances over it. It reports whether the read was successful. +func (s *String) ReadUint8LengthPrefixed(out *String) bool { + return s.readLengthPrefixed(1, out) +} + +// ReadUint16LengthPrefixed reads the content of a big-endian, 16-bit +// length-prefixed value into out and advances over it. It reports whether the +// read was successful. +func (s *String) ReadUint16LengthPrefixed(out *String) bool { + return s.readLengthPrefixed(2, out) +} + +// ReadUint24LengthPrefixed reads the content of a big-endian, 24-bit +// length-prefixed value into out and advances over it. It reports whether +// the read was successful. +func (s *String) ReadUint24LengthPrefixed(out *String) bool { + return s.readLengthPrefixed(3, out) +} + +// ReadBytes reads n bytes into out and advances over them. It reports +// whether the read was successful. +func (s *String) ReadBytes(out *[]byte, n int) bool { + v := s.read(n) + if v == nil { + return false + } + *out = v + return true +} + +// CopyBytes copies len(out) bytes into out and advances over them. It reports +// whether the copy operation was successful +func (s *String) CopyBytes(out []byte) bool { + n := len(out) + v := s.read(n) + if v == nil { + return false + } + return copy(out, v) == n +} + +// Empty reports whether the string does not contain any bytes. +func (s String) Empty() bool { + return len(s) == 0 +} diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/certs.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/certs.go index 139fa31e1b..6f75d77ec1 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/certs.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/certs.go @@ -348,6 +348,9 @@ func (c *CertChecker) CheckHostKey(addr string, remote net.Addr, key PublicKey) if cert.CertType != HostCert { return fmt.Errorf("ssh: certificate presented as a host key has type %d", cert.CertType) } + if c.IsHostAuthority == nil { + return errors.New("ssh: cannot verify certificate, IsHostAuthority not set") + } if !c.IsHostAuthority(cert.SignatureKey, addr) { return fmt.Errorf("ssh: no authorities for hostname: %v", addr) } @@ -375,6 +378,9 @@ func (c *CertChecker) Authenticate(conn ConnMetadata, pubKey PublicKey) (*Permis if cert.CertType != UserCert { return nil, fmt.Errorf("ssh: cert has type %d", cert.CertType) } + if c.IsUserAuthority == nil { + return nil, errors.New("ssh: cannot verify certificate, IsUserAuthority not set") + } if !c.IsUserAuthority(cert.SignatureKey) { return nil, fmt.Errorf("ssh: certificate signed by unrecognized authority") } @@ -438,7 +444,17 @@ func (c *CertChecker) CheckCert(principal string, cert *Certificate) error { if before := int64(cert.ValidBefore); cert.ValidBefore != uint64(CertTimeInfinity) && (unixNow >= before || before < 0) { return fmt.Errorf("ssh: cert has expired") } - if err := cert.SignatureKey.Verify(cert.bytesForSigning(), cert.Signature); err != nil { + // Match OpenSSH: the SK user-presence flag is never enforced on a + // certificate's CA signature. OpenSSH calls sshkey_verify with + // detailsp==NULL in sshkey.c:cert_parse, so the UP/UV flags are + // not even extracted. The UP bit on a CA signature reflects the + // CA operator's presence at signing time, which has no bearing on + // whether the user being authenticated is present now; enforcing + // it here would only break interop with certificates issued by + // non-interactive SK CAs. skKeyWithoutUP is a no-op for non-SK + // keys (the common case). + caKey := skKeyWithoutUP(cert.SignatureKey) + if err := caKey.Verify(cert.bytesForSigning(), cert.Signature); err != nil { return fmt.Errorf("ssh: certificate signature does not verify") } diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/channel.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/channel.go index cc0bb7ab64..afc9aef185 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/channel.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/channel.go @@ -11,6 +11,7 @@ import ( "io" "log" "sync" + "sync/atomic" ) const ( @@ -131,11 +132,17 @@ func (r RejectionReason) String() string { return fmt.Sprintf("unknown reason %d", int(r)) } -func min(a uint32, b int) uint32 { - if a < uint32(b) { - return a +// minPayloadSize returns min(limit, length) clamped to a uint32. It is used +// to compute the size of the next channel data packet from the remaining +// payload. The comparison is done in int64 because length is an int — on +// 64-bit systems len(data) can exceed 2^32, and a direct uint32(length) +// cast would silently truncate to 0 at every multiple of 2^32, causing +// WriteExtended's loop to spin without making progress. +func minPayloadSize(limit uint32, length int) uint32 { + if int64(length) > int64(limit) { + return limit } - return uint32(b) + return uint32(length) } type channelDirection uint8 @@ -177,6 +184,12 @@ type channel struct { // with WantReply=true outstanding. This lock is held by a // goroutine that has such an outgoing request pending. sentRequestMu sync.Mutex + // sentRequestPending is set to true while a SendRequest call with + // WantReply=true is in flight. handlePacket uses it as a gate: responses + // arriving while no request is pending are dropped to prevent a + // misbehaving peer from stalling the mux read loop by filling ch.msg + // with unsolicited channelRequestSuccess/Failure messages. + sentRequestPending atomic.Bool incomingRequests chan *Request @@ -251,7 +264,7 @@ func (ch *channel) WriteExtended(data []byte, extendedCode uint32) (n int, err e ch.writeMu.Unlock() for len(data) > 0 { - space := min(ch.maxRemotePayload, len(data)) + space := minPayloadSize(ch.maxRemotePayload, len(data)) if space, err = ch.remoteWin.reserve(space); err != nil { return n, err } @@ -460,6 +473,18 @@ func (ch *channel) handlePacket(packet []byte) error { } ch.incomingRequests <- &req + case *channelRequestSuccessMsg, *channelRequestFailureMsg: + // Drop responses that arrive when no SendRequest is waiting, to + // prevent a malicious peer from filling ch.msg and stalling the + // mux read loop. The non-blocking send additionally protects the + // loop if a well-behaved caller is slow to read. + if !ch.sentRequestPending.Load() { + return nil + } + select { + case ch.msg <- msg: + default: + } default: ch.msg <- msg } @@ -530,7 +555,17 @@ func (ch *channel) Reject(reason RejectionReason, message string) error { Language: "en", } ch.decided = true - return ch.sendMessage(reject) + err := ch.sendMessage(reject) + + // Remove the channel from the mux to prevent memory leaks. + // Do not call ch.close() here: no goroutine holds a reference to a + // rejected channel's internal channels (msg, incomingRequests), so + // removing it from chanList is sufficient for GC. Calling close() + // would race with the mux loop goroutine (handlePacket or dropAll), + // causing a panic from closing an already-closed channel. + ch.mux.chanList.remove(ch.localId) + + return err } func (ch *channel) Read(data []byte) (int, error) { @@ -586,6 +621,27 @@ func (ch *channel) SendRequest(name string, wantReply bool, payload []byte) (boo if wantReply { ch.sentRequestMu.Lock() defer ch.sentRequestMu.Unlock() + + // Open the gate so that responses arriving while this request is in + // flight are allowed to reach ch.msg. Responses arriving while no + // request is pending are dropped by handlePacket. + ch.sentRequestPending.Store(true) + defer ch.sentRequestPending.Store(false) + + // Drain any spurious responses that may have been buffered. This + // prevents a previously buffered unexpected response from being + // consumed instead of the actual response for this request. + drain: + for { + select { + case _, ok := <-ch.msg: + if !ok { + break drain + } + default: + break drain + } + } } msg := channelRequestMsg{ diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/cipher.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/cipher.go index 7554ed57a9..48d0199545 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/cipher.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/cipher.go @@ -407,7 +407,7 @@ func (c *gcmCipher) readCipherPacket(seqNum uint32, r io.Reader) ([]byte, error) return nil, fmt.Errorf("ssh: illegal padding %d", padding) } - if int(padding+1) >= len(plain) { + if int(padding)+1 >= len(plain) { return nil, fmt.Errorf("ssh: padding %d too large", padding) } plain = plain[1 : length-uint32(padding)] @@ -586,7 +586,7 @@ func (c *cbcCipher) writeCipherPacket(seqNum uint32, w io.Writer, rand io.Reader // Length of encrypted portion of the packet (header, payload, padding). // Enforce minimum padding and packet size. - encLength := maxUInt32(prefixLen+len(packet)+cbcMinPaddingSize, cbcMinPaddingSize) + encLength := maxUInt32(prefixLen+len(packet)+cbcMinPaddingSize, cbcMinPacketSize) // Enforce block size. encLength = (encLength + effectiveBlockSize - 1) / effectiveBlockSize * effectiveBlockSize diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/client.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/client.go index 33079789bc..89f0def9f6 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/client.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/client.go @@ -88,6 +88,32 @@ func NewClientConn(c net.Conn, addr string, config *ClientConfig) (Conn, <-chan return conn, conn.mux.incomingChannels, conn.mux.incomingRequests, nil } +// NewControlClientConn establishes an SSH connection over an OpenSSH +// ControlMaster socket c in proxy mode. +// +// Note that this package only implements the client side of the multiplexing +// protocol. The provided net.Conn must be a local, secure connection (such as a +// Unix domain socket) connected to an already-running OpenSSH process acting as +// the ControlMaster. +// +// WARNING: Because proxy mode bypasses the standard cryptographic handshake +// passing a standard network connection (e.g., TCP) will result in plaintext +// data leakage. +// +// The Request and NewChannel channels must be serviced or the connection +// will hang. +func NewControlClientConn(c net.Conn) (Conn, <-chan NewChannel, <-chan *Request, error) { + conn := &connection{ + sshConn: sshConn{conn: c}, + } + var err error + if conn.transport, err = handshakeControlProxy(c); err != nil { + return nil, nil, nil, fmt.Errorf("ssh: control proxy handshake failed: %w", err) + } + conn.mux = newMux(conn.transport) + return conn, conn.mux.incomingChannels, conn.mux.incomingRequests, nil +} + // clientHandshake performs the client side key exchange. See RFC 4253 Section // 7. func (c *connection) clientHandshake(dialAddress string, config *ClientConfig) error { @@ -197,6 +223,59 @@ type HostKeyCallback func(hostname string, remote net.Addr, key PublicKey) error // the server. A BannerCallback receives the message sent by the remote server. type BannerCallback func(message string) error +// ClientAuthContext contains information about the current state of the +// authentication process, passed to [ClientAuthCallback]. +type ClientAuthContext struct { + // Metadata contains the connection metadata. + Metadata ConnMetadata + + // Algorithms contains the negotiated algorithms. + Algorithms NegotiatedAlgorithms + + // AllowedMethods lists the authentication methods currently accepted + // by the server. These are the protocol-level names defined in RFC 4252 + // such as "publickey", "password". + AllowedMethods []string + + // PartialSuccessMethods lists the authentication methods that have already + // succeeded, indicating a multi-step authentication flow. This list + // represents the exact sequence of partial successes and may contain + // duplicates if the same method succeeded multiple times. + PartialSuccessMethods []string + + // TriedMethods lists the methods that have already been attempted and + // failed during this session. This list represents the exact sequence of + // failures and may contain duplicates. This allows the callback to also + // track the number of failed attempts for a specific method. + TriedMethods []string +} + +// ClientAuthCallback is a hook invoked before each authentication attempt. It +// allows the client to dynamically select an authentication method based on the +// current context, server capabilities, or previous failures. +// +// The callback is invoked after the initial "none" authentication method, once +// the server's supported authentication methods are known. +// +// Return values: +// - (AuthMethod, nil): The client will attempt this specific method next. +// The returned method does NOT need to be present in [ClientConfig.Auth]. +// This allows for dynamic authentication strategies (e.g., prompting +// for a password only if public key auth fails). Callers should inspect +// [ClientAuthContext.TriedMethods] to avoid repeatedly returning the +// same failing method. +// - (nil, nil): The client selects from [ClientConfig.Auth] the first +// instance of a method that has not been tried yet, or aborts if none +// are left. If authentication is not successful, the callback is invoked +// again before the following attempt. +// - (nil, error): The authentication process is aborted immediately, +// causing the ongoing SSH handshake to fail with the provided error. +// +// To bound resource use, the client caps the total number of authentication +// attempts (failures and partial successes combined) at 64. If the cap is +// exceeded the handshake aborts with an error. +type ClientAuthCallback func(ctx *ClientAuthContext) (AuthMethod, error) + // A ClientConfig structure is used to configure a Client. It must not be // modified after having been passed to an SSH function. type ClientConfig struct { @@ -210,6 +289,9 @@ type ClientConfig struct { // Auth contains possible authentication methods to use with the // server. Only the first instance of a particular RFC 4252 method will // be used during authentication. + // + // If AuthCallback is set, these AuthMethod are only used if the + // callback returns nil. Auth []AuthMethod // HostKeyCallback is called during the cryptographic @@ -240,6 +322,9 @@ type ClientConfig struct { // // A Timeout of zero means no timeout. Timeout time.Duration + + // AuthCallback, if non-nil, is invoked before each authentication attempt. + AuthCallback ClientAuthCallback } // InsecureIgnoreHostKey returns a function that can be used for diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/client_auth.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/client_auth.go index 3127e49903..60af2fc4dd 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/client_auth.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/client_auth.go @@ -21,6 +21,12 @@ const ( authSuccess ) +// maxAuthClientTried bounds the total number of authentication attempts +// (failures and partial successes combined) the client makes before +// aborting the loop, to prevent unbounded growth when an AuthCallback +// keeps supplying methods. +const maxAuthClientTried = 64 + // clientAuthenticate authenticates with the remote server. See RFC 4252. func (c *connection) clientAuthenticate(config *ClientConfig) error { // initiate user auth session @@ -67,32 +73,62 @@ func (c *connection) clientAuthenticate(config *ClientConfig) error { // then any untried methods suggested by the server. var tried []string var lastMethods []string + var partialSuccess []string sessionID := c.transport.getSessionID() for auth := AuthMethod(new(noneAuth)); auth != nil; { ok, methods, err := auth.auth(sessionID, config.User, c.transport, config.Rand, extensions) if err != nil { // On disconnect, return error immediately - if _, ok := err.(*disconnectMsg); ok { + if _, isDisconnect := err.(*disconnectMsg); isDisconnect { return err } - // We return the error later if there is no other method left to - // try. + // We return the error later if there is no other method + // left to try. ok = authFailure } - if ok == authSuccess { - // success + + switch ok { + case authSuccess: return nil - } else if ok == authFailure { - if m := auth.method(); !slices.Contains(tried, m) { - tried = append(tried, m) - } + case authPartialSuccess: + partialSuccess = append(partialSuccess, auth.method()) + case authFailure: + tried = append(tried, auth.method()) } + if len(partialSuccess)+len(tried) > maxAuthClientTried { + return fmt.Errorf("ssh: too many authentication attempts (%d), aborting", + len(partialSuccess)+len(tried)) + } + if methods == nil { methods = lastMethods } lastMethods = methods + // If AuthCallback is set it takes precedence: it picks the next + // AuthMethod dynamically. The returned method need not be in + // config.Auth. If the callback returns (nil, nil) we fall back to + // selecting the next untried method from config.Auth below; on + // (nil, error) the handshake aborts. + if config.AuthCallback != nil { + ctx := &ClientAuthContext{ + Metadata: c, + Algorithms: c.Algorithms(), + AllowedMethods: slices.Clone(methods), + PartialSuccessMethods: slices.Clone(partialSuccess), + TriedMethods: slices.Clone(tried), + } + altAuth, cbErr := config.AuthCallback(ctx) + if cbErr != nil { + return cbErr + } + if altAuth != nil { + auth = altAuth + continue + } + } + auth = nil findNext: @@ -274,10 +310,14 @@ func pickSignatureAlgorithm(signer Signer, extensions map[string][]byte) (MultiA } // Filter algorithms based on those supported by MultiAlgorithmSigner. + // Iterate over the signer's algorithms first to preserve its preference order. + supportedKeyAlgos := algorithmsForKeyFormat(keyFormat) var keyAlgos []string - for _, algo := range algorithmsForKeyFormat(keyFormat) { - if slices.Contains(as.Algorithms(), underlyingAlgo(algo)) { - keyAlgos = append(keyAlgos, algo) + for _, signerAlgo := range as.Algorithms() { + if idx := slices.IndexFunc(supportedKeyAlgos, func(algo string) bool { + return underlyingAlgo(algo) == signerAlgo + }); idx >= 0 { + keyAlgos = append(keyAlgos, supportedKeyAlgos[idx]) } } @@ -373,11 +413,11 @@ func (cb publicKeyCallback) auth(session []byte, user string, c packetConn, rand return authFailure, nil, err } - // If authentication succeeds or the list of available methods does not - // contain the "publickey" method, do not attempt to authenticate with any - // other keys. According to RFC 4252 Section 7, the latter can occur when - // additional authentication methods are required. - if success == authSuccess || !slices.Contains(methods, cb.method()) { + // If authentication succeeds or partially succeeds, return immediately + // so the caller can select the next auth method. According to RFC 4252 + // Section 7, if the server no longer lists "publickey" among its + // allowed methods, do not attempt to authenticate with any other keys. + if success == authSuccess || success == authPartialSuccess || !slices.Contains(methods, cb.method()) { return success, methods, err } } diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/connection.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/connection.go index 613a71a7b3..378f6407b5 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/connection.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/connection.go @@ -91,9 +91,17 @@ func DiscardRequests(in <-chan *Request) { } } +// A connTransport represents the transport for a connection. +type connTransport interface { + packetConn + getAlgorithms() NegotiatedAlgorithms + getSessionID() []byte + waitSession() error +} + // A connection represents an incoming connection. type connection struct { - transport *handshakeTransport + transport connTransport sshConn // The connection protocol. diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/control.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/control.go new file mode 100644 index 0000000000..9b14e4cafa --- /dev/null +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/control.go @@ -0,0 +1,155 @@ +// Copyright 2026 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package ssh + +import ( + "encoding/binary" + "errors" + "fmt" + "io" + + "golang.org/x/crypto/cryptobyte" +) + +const ( + muxProtocolVersion = 4 + + muxMsgHello = 0x00000001 + muxCProxy = 0x1000000f + muxSProxy = 0x8000000f +) + +const controlProxyRequestID = 0 + +// handshakeControlProxy attempts to establish a transport connection with an +// OpenSSH ControlMaster socket in proxy mode. For details see: +// https://github.com/openssh/openssh-portable/blob/master/PROTOCOL.mux +func handshakeControlProxy(rw io.ReadWriteCloser) (connTransport, error) { + if err := controlProxyWritePacket(rw, func(b *cryptobyte.Builder) { + b.AddUint32(muxMsgHello) + b.AddUint32(muxProtocolVersion) + }); err != nil { + return nil, fmt.Errorf("mux hello write failed: %w", err) + } + if err := controlProxyWritePacket(rw, func(b *cryptobyte.Builder) { + b.AddUint32(muxCProxy) + b.AddUint32(controlProxyRequestID) + }); err != nil { + return nil, fmt.Errorf("mux client proxy write failed: %w", err) + } + + messageType, body, err := controlProxyReadMessage(rw) + if err != nil { + return nil, fmt.Errorf("mux hello read failed: %w", err) + } + if messageType != muxMsgHello { + return nil, fmt.Errorf("expected hello response, got %v", messageType) + } + var v uint32 + if !body.ReadUint32(&v) { + return nil, errors.New("EOF reading mux protocol version") + } + if v != muxProtocolVersion { + return nil, fmt.Errorf("mux server has unsupported version %v", v) + } + messageType, body, err = controlProxyReadMessage(rw) + if err != nil { + return nil, fmt.Errorf("mux server proxy read failed: %w", err) + } + if messageType != muxSProxy { + return nil, fmt.Errorf("expected server proxy response, got %v", messageType) + } + var reqID uint32 + if !body.ReadUint32(&reqID) { + return nil, errors.New("EOF reading request id") + } + if reqID != controlProxyRequestID { + return nil, fmt.Errorf("expected request id %v, got %v", controlProxyRequestID, reqID) + } + return &controlProxyTransport{rw}, nil +} + +// controlProxyTransport implements the connTransport interface for +// ControlMaster connections. Each controlMessage has zero length padding and +// no MAC. +type controlProxyTransport struct { + rw io.ReadWriteCloser +} + +func (p *controlProxyTransport) Close() error { + return p.rw.Close() +} + +func (p *controlProxyTransport) writePacket(controlMessage []byte) error { + return controlProxyWritePacket(p.rw, func(b *cryptobyte.Builder) { + b.AddUint8(0) // Padding length. + b.AddBytes(controlMessage) + }) +} + +func (p *controlProxyTransport) readPacket() ([]byte, error) { + buf, err := controlProxyReadPacket(p.rw) + if err != nil { + return nil, fmt.Errorf("ssh: error reading control message: %w", err) + } + // Discard the padding length. + if len(buf) < 1 { + return nil, errors.New("ssh: EOF reading padding length") + } + if buf[0] != 0 { + return nil, errors.New("ssh: unexpected non-zero padding in control message") + } + return buf[1:], nil +} + +func (p *controlProxyTransport) getAlgorithms() NegotiatedAlgorithms { + return NegotiatedAlgorithms{} +} + +func (p *controlProxyTransport) getSessionID() []byte { + return nil +} + +func (p *controlProxyTransport) waitSession() error { + return nil +} + +func controlProxyWritePacket(w io.Writer, f cryptobyte.BuilderContinuation) error { + var buf []byte + b := cryptobyte.NewBuilder(buf) + b.AddUint32LengthPrefixed(f) + out, err := b.Bytes() + if err != nil { + return err + } + _, err = w.Write(out) + return err +} + +func controlProxyReadPacket(r io.Reader) (cryptobyte.String, error) { + var l uint32 + if err := binary.Read(r, binary.BigEndian, &l); err != nil { + return nil, err + } + if l > maxPacket { + return nil, fmt.Errorf("message length %v exceeds maximum %v", l, maxPacket) + } + buf := make([]byte, l) + if _, err := io.ReadFull(r, buf); err != nil { + return nil, err + } + return buf, nil +} + +func controlProxyReadMessage(r io.Reader) (messageType uint32, body cryptobyte.String, err error) { + body, err = controlProxyReadPacket(r) + if err != nil { + return 0, nil, fmt.Errorf("error reading message body: %w", err) + } + if !body.ReadUint32(&messageType) { + return 0, nil, errors.New("EOF reading message type") + } + return messageType, body, nil +} diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/kex.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/kex.go index 5f7fdd8514..91b771c4ae 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/kex.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/kex.go @@ -16,6 +16,7 @@ import ( "io" "math/big" "slices" + "sync" "golang.org/x/crypto/curve25519" ) @@ -718,15 +719,9 @@ func (gex *dhGEXSHA) Server(c packetConn, randSource io.Reader, magics *handshak kexDHGexRequest.MaxBits, kexDHGexRequest.PreferredBits) } - var p *big.Int - // We hardcode sending Oakley Group 14 (2048 bits), Oakley Group 15 (3072 - // bits) or Oakley Group 16 (4096 bits), based on the requested max size. - if kexDHGexRequest.MaxBits < 3072 { - p, _ = new(big.Int).SetString(oakleyGroup14, 16) - } else if kexDHGexRequest.MaxBits < 4096 { - p, _ = new(big.Int).SetString(oakleyGroup15, 16) - } else { - p, _ = new(big.Int).SetString(oakleyGroup16, 16) + p, err := chooseDH(kexDHGexRequest) + if err != nil { + return nil, err } g := big.NewInt(2) @@ -805,3 +800,65 @@ func (gex *dhGEXSHA) Server(c packetConn, randSource io.Reader, magics *handshak Hash: gex.hashFunc, }, err } + +type dhKEXGroup struct { + size int + p *big.Int +} + +// supportedDHKEXGroups returns the DH groups the server is willing to offer +// for diffie-hellman-group-exchange-* key exchanges. The list is built lazily +// on first use to keep the hex-to-big.Int parse out of package initialization. +var supportedDHKEXGroups = sync.OnceValue(func() []dhKEXGroup { + specs := []struct { + size int + hex string + }{ + {2048, oakleyGroup14}, + {3072, oakleyGroup15}, + {4096, oakleyGroup16}, + } + out := make([]dhKEXGroup, 0, len(specs)) + for _, s := range specs { + p, _ := new(big.Int).SetString(s.hex, 16) + out = append(out, dhKEXGroup{size: s.size, p: p}) + } + return out +}) + +// chooseDH picks a DH group for the given client request, mirroring the +// algorithm used by OpenSSH's choose_dh in dh.c: prefer the smallest known +// group larger than or equal to the client's PreferredBits, and otherwise pick +// the largest group within the accepted [MinBits, MaxBits] range. +func chooseDH(req kexDHGexRequestMsg) (*big.Int, error) { + var best *big.Int + bestSize := 0 + wantBits := int(req.PreferredBits) + + for _, group := range supportedDHKEXGroups() { + if uint32(group.size) < req.MinBits || uint32(group.size) > req.MaxBits { + continue + } + + if bestSize == 0 { + best = group.p + bestSize = group.size + continue + } + + closerFromAbove := group.size >= wantBits && group.size < bestSize + closerFromBelow := group.size > bestSize && bestSize < wantBits + + if closerFromAbove || closerFromBelow { + best = group.p + bestSize = group.size + } + } + + if bestSize == 0 { + return nil, fmt.Errorf("ssh: no suitable DH group found for request min: %d, preferred: %d, max: %d", + req.MinBits, req.PreferredBits, req.MaxBits) + } + + return best, nil +} diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/keys.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/keys.go index 47a07539d9..64377715e1 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/keys.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/keys.go @@ -76,7 +76,7 @@ func parsePubKey(in []byte, algo string) (pubKey PublicKey, rest []byte, err err case InsecureKeyAlgoDSA: return parseDSA(in) case KeyAlgoECDSA256, KeyAlgoECDSA384, KeyAlgoECDSA521: - return parseECDSA(in) + return parseECDSA(in, algo) case KeyAlgoSKECDSA256: return parseSKECDSA(in) case KeyAlgoED25519: @@ -182,14 +182,19 @@ func ParseKnownHosts(in []byte) (marker string, hosts []string, pubKey PublicKey } hosts := string(keyFields[0]) - // keyFields[1] contains the key type (e.g. “ssh-rsaâ€). - // However, that information is duplicated inside the - // base64-encoded key and so is ignored here. + // keyFields[1] contains the key type (e.g. "ssh-rsa"). This information + // is duplicated within the base64-encoded key blob. As OpenSSH's + // sshkey_read does, we verify that the declared key type matches the + // type embedded in the key blob. + wantType := string(keyFields[1]) key := bytes.Join(keyFields[2:], []byte(" ")) if pubKey, comment, err = parseAuthorizedKey(key); err != nil { return "", nil, nil, "", nil, err } + if pubKey.Type() != wantType { + return "", nil, nil, "", nil, fmt.Errorf("ssh: known hosts key type mismatch: human-readable type %q, encoded type %q", wantType, pubKey.Type()) + } return marker, strings.Split(hosts, ","), pubKey, comment, rest, nil } @@ -228,10 +233,17 @@ func ParseAuthorizedKey(in []byte) (out PublicKey, comment string, options []str } if out, comment, err = parseAuthorizedKey(in[i:]); err == nil { - return out, comment, options, rest, nil - } else { - lastErr = err + // The first field contains the declared key type. As OpenSSH's + // sshkey_read does, we verify that it matches the type embedded in + // the key blob. Without this check, a single-token option (e.g. + // "restrict") appearing in the key type position could be silently + // discarded along with its intended effect. + if string(in[:i]) == out.Type() { + return out, comment, options, rest, nil + } + err = fmt.Errorf("ssh: authorized keys key type mismatch: human-readable type %q, encoded type %q", in[:i], out.Type()) } + lastErr = err // No key type recognised. Maybe there's an options field at // the beginning. @@ -271,11 +283,15 @@ func ParseAuthorizedKey(in []byte) (out PublicKey, comment string, options []str } if out, comment, err = parseAuthorizedKey(in[i:]); err == nil { - options = candidateOptions - return out, comment, options, rest, nil - } else { - lastErr = err + // As above, the declared key type (here following the options + // field) must match the type embedded in the key blob. + if string(in[:i]) == out.Type() { + options = candidateOptions + return out, comment, options, rest, nil + } + err = fmt.Errorf("ssh: authorized keys key type mismatch: human-readable type %q, encoded type %q", in[:i], out.Type()) } + lastErr = err in = rest continue @@ -469,6 +485,12 @@ func parseRSA(in []byte) (out PublicKey, rest []byte, err error) { return nil, nil, err } + // 8192 bits is also the maximum RSA key size accepted by crypto/tls for + // signature verification: + // https://github.com/golang/go/blob/69801b25/src/crypto/tls/handshake_client.go#L1096 + if w.N.BitLen() > 8192 { + return nil, nil, errors.New("ssh: rsa modulus too large") + } if w.E.BitLen() > 24 { return nil, nil, errors.New("ssh: exponent too large") } @@ -574,6 +596,24 @@ func checkDSAParams(param *dsa.Parameters) error { return fmt.Errorf("ssh: unsupported DSA key size %d", l) } + // FIPS 186-2 specifies that Q must be exactly 160 bits. We must enforce + // this to prevent DoS attacks where an attacker sends a huge Q which makes + // verification slow. + if l := param.Q.BitLen(); l != 160 { + return fmt.Errorf("ssh: unsupported DSA sub-prime size %d", l) + } + + // The generator G is an element of the group, so it must be strictly less + // than the modulus P. + if param.G.Cmp(param.P) >= 0 { + return errors.New("ssh: DSA generator larger than modulus") + } + + // G must be positive. + if param.G.Sign() <= 0 { + return errors.New("ssh: DSA generator must be positive") + } + return nil } @@ -596,6 +636,14 @@ func parseDSA(in []byte) (out PublicKey, rest []byte, err error) { return nil, nil, err } + // The public value Y must be a non-zero element of the group, i.e. + // strictly between 0 and P. crypto/dsa.Verify does not range-check Y, + // so we reject out-of-range values here to prevent a maliciously + // oversized Y from slowing verification. + if w.Y.Sign() <= 0 || w.Y.Cmp(w.P) >= 0 { + return nil, nil, errors.New("ssh: DSA public value Y out of range") + } + key := &dsaPublicKey{ Parameters: param, Y: w.Y, @@ -774,7 +822,7 @@ func supportedEllipticCurve(curve elliptic.Curve) bool { } // parseECDSA parses an ECDSA key according to RFC 5656, section 3.1. -func parseECDSA(in []byte) (out PublicKey, rest []byte, err error) { +func parseECDSA(in []byte, expectedType string) (out PublicKey, rest []byte, err error) { var w struct { Curve string KeyBytes []byte @@ -785,6 +833,12 @@ func parseECDSA(in []byte) (out PublicKey, rest []byte, err error) { return nil, nil, err } + actualType := "ecdsa-sha2-" + w.Curve + if expectedType != actualType { + return nil, nil, fmt.Errorf("ssh: algorithm type mismatch: expected %q, found curve %q (type %q)", + expectedType, w.Curve, actualType) + } + key := new(ecdsa.PublicKey) switch w.Curve { @@ -869,11 +923,25 @@ type skFields struct { Counter uint32 } +// flagUserPresence is the "user present" bit (UP) in the SK signature +// flags, matching the FIDO CTAP2 authenticatorData UP flag. See +// openssh/PROTOCOL.u2f. +const flagUserPresence = 0x01 + +// errSKMissingUserPresence is returned by SK key Verify methods when +// the signature does not assert user presence and the key was not +// marked as no-touch-required. +var errSKMissingUserPresence = errors.New("ssh: signature missing required user presence flag") + type skECDSAPublicKey struct { // application is a URL-like string, typically "ssh:" for SSH. // see openssh/PROTOCOL.u2f for details. application string ecdsa.PublicKey + // noTouchRequired, when true, disables the default user-presence + // check in Verify. It is set by skKeyWithoutUP on a clone of the + // key, never on an instance shared across authentication attempts. + noTouchRequired bool } func (k *skECDSAPublicKey) Type() string { @@ -959,6 +1027,10 @@ func (k *skECDSAPublicKey) Verify(data []byte, sig *Signature) error { return err } + if skf.Flags&flagUserPresence == 0 && !k.noTouchRequired { + return errSKMissingUserPresence + } + blob := struct { ApplicationDigest []byte `ssh:"rest"` Flags byte @@ -992,6 +1064,10 @@ type skEd25519PublicKey struct { // see openssh/PROTOCOL.u2f for details. application string ed25519.PublicKey + // noTouchRequired, when true, disables the default user-presence + // check in Verify. It is set by skKeyWithoutUP on a clone of the + // key, never on an instance shared across authentication attempts. + noTouchRequired bool } func (k *skEd25519PublicKey) Type() string { @@ -1066,6 +1142,10 @@ func (k *skEd25519PublicKey) Verify(data []byte, sig *Signature) error { return err } + if skf.Flags&flagUserPresence == 0 && !k.noTouchRequired { + return errSKMissingUserPresence + } + blob := struct { ApplicationDigest []byte `ssh:"rest"` Flags byte @@ -1408,6 +1488,17 @@ func passphraseProtectedOpenSSHKey(passphrase []byte) openSSHDecryptFunc { return nil, err } + // OpenSSH does not impose an upper bound on the bcrypt round count + // stored in the key file, but bcrypt_pbkdf cost is linear in rounds: + // the default is 16, ssh-keygen lets users pick anything up to + // INT_MAX. Cap at 2048 (128x the default, a few seconds of CPU) so + // that an oversized value in the file cannot tie up the caller for + // months. + const maxRounds = 1 << 11 + if opts.Rounds > maxRounds { + return nil, fmt.Errorf("ssh: bcrypt KDF rounds %d exceed maximum %d", opts.Rounds, maxRounds) + } + k, err := bcrypt_pbkdf.Key(passphrase, []byte(opts.Salt), int(opts.Rounds), 32+16) if err != nil { return nil, err @@ -1577,10 +1668,28 @@ func parseOpenSSHPrivateKey(key []byte, decrypt openSSHDecryptFunc) (crypto.Priv return nil, err } + // Mirror the validation done in parseRSA for public keys: cap the + // modulus at the same limit enforced by crypto/tls, reject oversized + // or invalid exponents, and additionally bound the prime factors to + // avoid the expensive CRT coefficient recomputation in pk.Precompute. + if key.N.BitLen() > 8192 { + return nil, errors.New("ssh: rsa modulus too large") + } + if key.P.BitLen() > 4096 || key.Q.BitLen() > 4096 { + return nil, errors.New("ssh: rsa prime too large") + } + if key.E.BitLen() > 24 { + return nil, errors.New("ssh: exponent too large") + } + e := key.E.Int64() + if e < 3 || e&1 == 0 { + return nil, errors.New("ssh: incorrect exponent") + } + pk := &rsa.PrivateKey{ PublicKey: rsa.PublicKey{ N: key.N, - E: int(key.E.Int64()), + E: int(e), }, D: key.D, Primes: []*big.Int{key.P, key.Q}, diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/messages.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/messages.go index ab22c3d38d..de86f71cf4 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/messages.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/messages.go @@ -44,7 +44,16 @@ type disconnectMsg struct { } func (d *disconnectMsg) Error() string { - return fmt.Sprintf("ssh: disconnect, reason %d: %s", d.Reason, d.Message) + return fmt.Sprintf("ssh: disconnect, reason %d: %q", d.Reason, sanitizeString(d.Message)) +} + +func sanitizeString(s string) string { + return strings.Map(func(r rune) rune { + if r == '\t' || (r >= ' ' && r < 0x7f) { + return r + } + return -1 + }, s) } // See RFC 4253, section 7.1. diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/mux.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/mux.go index d2d24c635d..5775881c6a 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/mux.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/mux.go @@ -91,9 +91,10 @@ type mux struct { incomingChannels chan NewChannel - globalSentMu sync.Mutex - globalResponses chan interface{} - incomingRequests chan *Request + globalSentMu sync.Mutex + globalSentPending atomic.Bool + globalResponses chan interface{} + incomingRequests chan *Request errCond *sync.Cond err error @@ -141,6 +142,27 @@ func (m *mux) SendRequest(name string, wantReply bool, payload []byte) (bool, [] if wantReply { m.globalSentMu.Lock() defer m.globalSentMu.Unlock() + + // Open the gate so that responses arriving while this request is in + // flight are allowed to reach globalResponses. Any response arriving + // while no request is pending is dropped by handleGlobalPacket. + m.globalSentPending.Store(true) + defer m.globalSentPending.Store(false) + + // Drain any spurious responses that may have been buffered. This prevents + // a previously buffered unexpected response from being consumed instead + // of the actual response for this request. + drain: + for { + select { + case _, ok := <-m.globalResponses: + if !ok { + break drain + } + default: + break drain + } + } } if err := m.sendMessage(globalRequestMsg{ @@ -267,7 +289,16 @@ func (m *mux) handleGlobalPacket(packet []byte) error { mux: m, } case *globalRequestSuccessMsg, *globalRequestFailureMsg: - m.globalResponses <- msg + // Drop responses that arrive when no SendRequest is waiting, to + // prevent a malicious peer from staging responses for a future + // caller. + if !m.globalSentPending.Load() { + return nil + } + select { + case m.globalResponses <- msg: + default: + } default: panic(fmt.Sprintf("not a global message %#v", msg)) } diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/server.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/server.go index 064dcbaf5a..3c0fcc953e 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/server.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/server.go @@ -34,21 +34,29 @@ type Permissions struct { // or not supported. CriticalOptions map[string]string - // Extensions are extra functionality that the server may - // offer on authenticated connections. Lack of support for an - // extension does not preclude authenticating a user. Common - // extensions are "permit-agent-forwarding", - // "permit-X11-forwarding". The Go SSH library currently does - // not act on any extension, and it is up to server - // implementations to honor them. Extensions can be used to - // pass data from the authentication callbacks to the server - // application layer. + // Extensions are extra functionality that the server may offer on + // authenticated connections. Lack of support for an extension does not + // preclude authenticating a user. Common extensions are + // "permit-agent-forwarding", "permit-X11-forwarding". In general the Go + // SSH library does not act on extensions and it is up to server + // implementations to honor them; extensions can also be used to pass data + // from the authentication callbacks to the server application layer. + // + // The one extension acted upon by this library is "no-touch-required", + // which applies only to security-key public keys + // (sk-ecdsa-sha2-nistp256@openssh.com and sk-ssh-ed25519@openssh.com). + // When present, it waives the default requirement that SK signatures + // assert user presence (i.e. a physical touch of the authenticator) + // during signature verification. Extensions map[string]string // ExtraData allows to store user defined data. ExtraData map[any]any } +// GSSAPIWithMICConfig includes the server callbacks for gssapi-with-mic +// authentication. If either field is nil, gssapi-with-mic is considered not +// configured. type GSSAPIWithMICConfig struct { // AllowLogin, must be set, is called when gssapi-with-mic // authentication is selected (RFC 4462 section 3). The srcName is from the @@ -63,6 +71,10 @@ type GSSAPIWithMICConfig struct { Server GSSAPIServer } +func gssapiWithMICConfigured(config *GSSAPIWithMICConfig) bool { + return config != nil && config.AllowLogin != nil && config.Server != nil +} + // SendAuthBanner implements [ServerPreAuthConn]. func (s *connection) SendAuthBanner(msg string) error { return s.transport.writePacket(Marshal(&userAuthBannerMsg{ @@ -84,6 +96,79 @@ type ServerPreAuthConn interface { SendAuthBanner(string) error } +// noTouchRequiredExtension is the extension name used by OpenSSH in +// authorized_keys options and certificate extensions to mark keys +// whose signatures do not need to assert user presence (touch). See +// ssh-keygen(1) and sshd(8). +const noTouchRequiredExtension = "no-touch-required" + +// noTouchAllowed reports whether the user presence requirement on +// SK signatures should be waived for this authentication attempt. The +// requirement is waived when the "no-touch-required" extension is +// present either in the Permissions returned by the auth callback +// (authorized_keys-level opt-out) or in the certificate's own +// Extensions (CA-level opt-out), matching OpenSSH behavior. OpenSSH +// reads the per-key opt-out only from cert Extensions and +// authorized_keys options (never from CriticalOptions); we follow the +// same rule. +func noTouchAllowed(pubKey PublicKey, perms *Permissions) bool { + if perms != nil { + if _, ok := perms.Extensions[noTouchRequiredExtension]; ok { + return true + } + } + if cert, ok := pubKey.(*Certificate); ok { + if _, ok := cert.Extensions[noTouchRequiredExtension]; ok { + return true + } + } + return false +} + +// skKeyWithoutUP returns a PublicKey equivalent to pubKey but whose +// Verify accepts SK signatures with the user-presence flag clear. If +// pubKey is not (and does not wrap) an SK key, pubKey is returned +// unchanged. The returned value never mutates pubKey: for SK keys a +// shallow copy is made so that the noTouchRequired flag is set only on +// the clone. +// +// The implementation is iterative rather than recursive. When pubKey +// is a *Certificate we unwrap exactly one level to look at the inner +// key. The SSH cert format forbids Certificate.Key from being another +// Certificate (parseCert rejects it), but nothing stops callers from +// constructing such a value directly in Go; a recursive descent could +// otherwise be driven to unbounded depth by a hand-crafted or cyclic +// Certificate. A malformed input of that shape simply returns +// unchanged here. +func skKeyWithoutUP(pubKey PublicKey) PublicKey { + cert, isCert := pubKey.(*Certificate) + target := pubKey + if isCert { + target = cert.Key + } + var cloned PublicKey + switch k := target.(type) { + case *skECDSAPublicKey: + c := *k + c.noTouchRequired = true + cloned = &c + case *skEd25519PublicKey: + c := *k + c.noTouchRequired = true + cloned = &c + default: + // Not an SK key (or a pathological *Certificate wrapping + // another *Certificate): pubKey is already usable for Verify. + return pubKey + } + if !isCert { + return cloned + } + c := *cert + c.Key = cloned + return &c +} + // ServerConfig holds server specific configuration data. type ServerConfig struct { // Config contains configuration shared between client and server. @@ -242,8 +327,10 @@ func (c *pubKeyCache) add(candidate cachedPubKey) { type ServerConn struct { Conn - // If the succeeding authentication callback returned a - // non-nil Permissions pointer, it is stored here. + // If the succeeding authentication callback returned a non-nil Permissions + // pointer, it is stored here. These are the permissions from the final, + // successful authentication method. Permissions returned by callbacks that + // return PartialSuccessError are not preserved and must be nil. Permissions *Permissions } @@ -302,8 +389,7 @@ func (s *connection) serverHandshake(config *ServerConfig) (*Permissions, error) } if !config.NoClientAuth && config.PasswordCallback == nil && config.PublicKeyCallback == nil && - config.KeyboardInteractiveCallback == nil && (config.GSSAPIWithMICConfig == nil || - config.GSSAPIWithMICConfig.AllowLogin == nil || config.GSSAPIWithMICConfig.Server == nil) { + config.KeyboardInteractiveCallback == nil && !gssapiWithMICConfigured(config.GSSAPIWithMICConfig) { return nil, errors.New("ssh: no authentication methods configured but NoClientAuth is also false") } @@ -527,6 +613,15 @@ func (b *BannerError) Error() string { return b.Err.Error() } +// maxAuthServerAttempts caps the total number of SSH_MSG_USERAUTH_REQUEST +// messages the server will process on a single connection, regardless of +// outcome (failure, partial success, public key query, or none). It is a +// backstop against clients that drive the authentication loop indefinitely +// without ever incurring a real failure — for example by repeatedly +// triggering PartialSuccessError or by spamming public key offer queries — +// neither of which increment the MaxAuthTries failure counter. +const maxAuthServerAttempts = 128 + func (s *connection) serverAuthenticate(config *ServerConfig) (*Permissions, error) { if config.PreAuthConnCallback != nil { config.PreAuthConnCallback(s) @@ -537,6 +632,7 @@ func (s *connection) serverAuthenticate(config *ServerConfig) (*Permissions, err var perms *Permissions authFailures := 0 + authAttempts := 0 noneAuthCount := 0 var authErrs []error var calledBannerCallback bool @@ -565,6 +661,19 @@ userAuthLoop: return nil, &ServerAuthError{Errors: authErrs} } + if authAttempts >= maxAuthServerAttempts { + discMsg := &disconnectMsg{ + Reason: 2, + Message: "too many authentication attempts", + } + if err := s.transport.writePacket(Marshal(discMsg)); err != nil { + return nil, err + } + authErrs = append(authErrs, discMsg) + return nil, &ServerAuthError{Errors: authErrs} + } + authAttempts++ + var userAuthReq userAuthRequestMsg if packet, err := s.transport.readPacket(); err != nil { if err == io.EOF { @@ -737,8 +846,15 @@ userAuthLoop: } signedData := buildDataSignedForAuth(sessionID, userAuthReq, algo, pubKeyData) - - if err := pubKey.Verify(signedData, sig); err != nil { + // pubKey is reused below for VerifiedPublicKeyCallback and + // must remain the key as presented by the client; derive a + // separate value for Verify that carries any applicable + // no-touch-required opt-out. + pubKeyForVerify := pubKey + if noTouchAllowed(pubKey, candidate.perms) { + pubKeyForVerify = skKeyWithoutUP(pubKey) + } + if err := pubKeyForVerify.Verify(signedData, sig); err != nil { return nil, err } @@ -750,9 +866,16 @@ userAuthLoop: // considered verified and the callback must not run. perms, authErr = config.VerifiedPublicKeyCallback(s, pubKey, perms, algo) } + if authErr == nil && perms != nil && perms.CriticalOptions != nil { + if saco := perms.CriticalOptions[sourceAddressCriticalOption]; saco != "" { + if err := checkSourceAddress(s.RemoteAddr(), saco); err != nil { + authErr = err + } + } + } } case "gssapi-with-mic": - if authConfig.GSSAPIWithMICConfig == nil { + if !gssapiWithMICConfigured(authConfig.GSSAPIWithMICConfig) { authErr = errors.New("ssh: gssapi-with-mic auth not configured") break } @@ -824,6 +947,13 @@ userAuthLoop: var failureMsg userAuthFailureMsg if partialSuccess, ok := authErr.(*PartialSuccessError); ok { + // Permissions are not preserved between authentication steps. To + // avoid confusion about the final state of the connection, we + // disallow returning non-nil Permissions combined with + // PartialSuccessError. + if perms != nil { + return nil, errors.New("ssh: permissions must be nil when returning PartialSuccessError") + } // After a partial success error we don't allow changing the user // name and execute the NoClientAuthCallback. partialSuccessReturned = true @@ -878,8 +1008,7 @@ userAuthLoop: if authConfig.KeyboardInteractiveCallback != nil { failureMsg.Methods = append(failureMsg.Methods, "keyboard-interactive") } - if authConfig.GSSAPIWithMICConfig != nil && authConfig.GSSAPIWithMICConfig.Server != nil && - authConfig.GSSAPIWithMICConfig.AllowLogin != nil { + if gssapiWithMICConfigured(authConfig.GSSAPIWithMICConfig) { failureMsg.Methods = append(failureMsg.Methods, "gssapi-with-mic") } diff --git a/tests/e2e/vendor/golang.org/x/crypto/ssh/session.go b/tests/e2e/vendor/golang.org/x/crypto/ssh/session.go index acef62259f..ac62955788 100644 --- a/tests/e2e/vendor/golang.org/x/crypto/ssh/session.go +++ b/tests/e2e/vendor/golang.org/x/crypto/ssh/session.go @@ -423,6 +423,9 @@ func (s *Session) wait(reqs <-chan *Request) error { for msg := range reqs { switch msg.Type { case "exit-status": + if len(msg.Payload) < 4 { + return errors.New("ssh: malformed exit-status request") + } wm.status = int(binary.BigEndian.Uint32(msg.Payload)) case "exit-signal": var sigval struct { diff --git a/tests/e2e/vendor/golang.org/x/net/html/entity.go b/tests/e2e/vendor/golang.org/x/net/html/entity.go index b628880a01..4e8d5d55f2 100644 --- a/tests/e2e/vendor/golang.org/x/net/html/entity.go +++ b/tests/e2e/vendor/golang.org/x/net/html/entity.go @@ -2156,9 +2156,8 @@ var entity = map[string]rune{ // HTML entities that are two unicode codepoints. var entity2 = map[string][2]rune{ - // TODO(nigeltao): Handle replacements that are wider than their names. - // "nLt;": {'\u226A', '\u20D2'}, - // "nGt;": {'\u226B', '\u20D2'}, + "nLt;": {'\u226A', '\u20D2'}, + "nGt;": {'\u226B', '\u20D2'}, "NotEqualTilde;": {'\u2242', '\u0338'}, "NotGreaterFullEqual;": {'\u2267', '\u0338'}, "NotGreaterGreater;": {'\u226B', '\u0338'}, diff --git a/tests/e2e/vendor/golang.org/x/net/html/escape.go b/tests/e2e/vendor/golang.org/x/net/html/escape.go index 12f2273706..df3edc5b12 100644 --- a/tests/e2e/vendor/golang.org/x/net/html/escape.go +++ b/tests/e2e/vendor/golang.org/x/net/html/escape.go @@ -6,6 +6,7 @@ package html import ( "bytes" + "slices" "strings" "unicode/utf8" ) @@ -50,25 +51,24 @@ var replacementTable = [...]rune{ // 0x0D->'\u000D' is a no-op. } -// unescapeEntity reads an entity like "<" from b[src:] and writes the -// corresponding "<" to b[dst:], returning the incremented dst and src cursors. -// Precondition: b[src] == '&' && dst <= src. -// attribute should be true if parsing an attribute value. -func unescapeEntity(b []byte, dst, src int, attribute bool) (dst1, src1 int) { +// unescapeEntity attempts to consume a character reference from s[src:], +// returning the rune, potential second rune, and number of bytes consumed +// (which indicates the length of the character reference). It is assumed that +// the first byte of s is '&'. attribute should be true if parsing an attribute +// value. +func unescapeEntity(s []byte, attribute bool) (rune, rune, int) { // https://html.spec.whatwg.org/multipage/syntax.html#consume-a-character-reference // i starts at 1 because we already know that s[0] == '&'. - i, s := 1, b[src:] + i := 1 if len(s) <= 1 { - b[dst] = b[src] - return dst + 1, src + 1 + return '&', 0, 1 } if s[i] == '#' { - if len(s) <= 3 { // We need to have at least "&#.". - b[dst] = b[src] - return dst + 1, src + 1 + if len(s) <= 2 { // We need to have at least "&#". + return '&', 0, 1 } i++ c := s[i] @@ -78,34 +78,43 @@ func unescapeEntity(b []byte, dst, src int, attribute bool) (dst1, src1 int) { i++ } + i0 := i x := '\x00' for i < len(s) { c = s[i] - i++ + var d rune + var mult rune if hex { + mult = 16 if '0' <= c && c <= '9' { - x = 16*x + rune(c) - '0' - continue + d = rune(c) - '0' } else if 'a' <= c && c <= 'f' { - x = 16*x + rune(c) - 'a' + 10 - continue + d = rune(c) - 'a' + 10 } else if 'A' <= c && c <= 'F' { - x = 16*x + rune(c) - 'A' + 10 - continue + d = rune(c) - 'A' + 10 + } else { + break + } + } else { + mult = 10 + if '0' <= c && c <= '9' { + d = rune(c) - '0' + } else { + break } - } else if '0' <= c && c <= '9' { - x = 10*x + rune(c) - '0' - continue } - if c != ';' { - i-- + if x <= 0x10FFFF { + x = mult*x + d } - break + i++ + } + + if i == i0 { // No characters matched. + return '&', 0, 1 } - if i <= 3 { // No characters matched. - b[dst] = b[src] - return dst + 1, src + 1 + if i < len(s) && s[i] == ';' { + i++ } if 0x80 <= x && x <= 0x9F { @@ -116,7 +125,7 @@ func unescapeEntity(b []byte, dst, src int, attribute bool) (dst1, src1 int) { x = '\uFFFD' } - return dst + utf8.EncodeRune(b[dst:], x), src + i + return x, 0, i } // Consume the maximum number of characters possible, with the @@ -141,10 +150,9 @@ func unescapeEntity(b []byte, dst, src int, attribute bool) (dst1, src1 int) { } else if attribute && entityName[len(entityName)-1] != ';' && len(s) > i && s[i] == '=' { // No-op. } else if x := entity[entityName]; x != 0 { - return dst + utf8.EncodeRune(b[dst:], x), src + i + return x, 0, i } else if x := entity2[entityName]; x[0] != 0 { - dst1 := dst + utf8.EncodeRune(b[dst:], x[0]) - return dst1 + utf8.EncodeRune(b[dst1:], x[1]), src + i + return x[0], x[1], i } else if !attribute { maxLen := len(entityName) - 1 if maxLen > longestEntityWithoutSemicolon { @@ -152,35 +160,67 @@ func unescapeEntity(b []byte, dst, src int, attribute bool) (dst1, src1 int) { } for j := maxLen; j > 1; j-- { if x := entity[entityName[:j]]; x != 0 { - return dst + utf8.EncodeRune(b[dst:], x), src + j + 1 + return x, 0, j + 1 } } } - dst1, src1 = dst+i, src+i - copy(b[dst:dst1], b[src:src1]) - return dst1, src1 + return '&', 0, 1 } -// unescape unescapes b's entities in-place, so that "a<b" becomes "a entityNameLen { + if reusingB { + out = slices.Clone(out) + reusingB = false } - return b[0:dst] + out = slices.Grow(out, replLen) + } + out = utf8.AppendRune(out, r1) + if r2 != 0 { + out = utf8.AppendRune(out, r2) } + + src += entityNameLen } - return b + + return out } // lower lower-cases the A-Z bytes in b in-place, so that "aBc" becomes "abc". diff --git a/tests/e2e/vendor/golang.org/x/net/html/foreign.go b/tests/e2e/vendor/golang.org/x/net/html/foreign.go index e8515d8e88..65d01d1ed9 100644 --- a/tests/e2e/vendor/golang.org/x/net/html/foreign.go +++ b/tests/e2e/vendor/golang.org/x/net/html/foreign.go @@ -23,7 +23,7 @@ func adjustForeignAttributes(aa []Attribute) { } switch a.Key { case "xlink:actuate", "xlink:arcrole", "xlink:href", "xlink:role", "xlink:show", - "xlink:title", "xlink:type", "xml:base", "xml:lang", "xml:space", "xmlns:xlink": + "xlink:title", "xlink:type", "xml:lang", "xml:space", "xmlns:xlink": j := strings.Index(a.Key, ":") aa[i].Namespace = a.Key[:j] aa[i].Key = a.Key[j+1:] diff --git a/tests/e2e/vendor/golang.org/x/net/html/iter.go b/tests/e2e/vendor/golang.org/x/net/html/iter.go index 54be8fd30f..349ef73e64 100644 --- a/tests/e2e/vendor/golang.org/x/net/html/iter.go +++ b/tests/e2e/vendor/golang.org/x/net/html/iter.go @@ -2,8 +2,6 @@ // Use of this source code is governed by a BSD-style // license that can be found in the LICENSE file. -//go:build go1.23 - package html import "iter" diff --git a/tests/e2e/vendor/golang.org/x/net/html/node.go b/tests/e2e/vendor/golang.org/x/net/html/node.go index 77741a1950..253e4679c7 100644 --- a/tests/e2e/vendor/golang.org/x/net/html/node.go +++ b/tests/e2e/vendor/golang.org/x/net/html/node.go @@ -11,6 +11,7 @@ import ( // A NodeType is the type of a Node. type NodeType uint32 +//go:generate stringer -type NodeType const ( ErrorNode NodeType = iota TextNode diff --git a/tests/e2e/vendor/golang.org/x/net/html/nodetype_string.go b/tests/e2e/vendor/golang.org/x/net/html/nodetype_string.go new file mode 100644 index 0000000000..8253af4915 --- /dev/null +++ b/tests/e2e/vendor/golang.org/x/net/html/nodetype_string.go @@ -0,0 +1,31 @@ +// Code generated by "stringer -type NodeType"; DO NOT EDIT. + +package html + +import "strconv" + +func _() { + // An "invalid array index" compiler error signifies that the constant values have changed. + // Re-run the stringer command to generate them again. + var x [1]struct{} + _ = x[ErrorNode-0] + _ = x[TextNode-1] + _ = x[DocumentNode-2] + _ = x[ElementNode-3] + _ = x[CommentNode-4] + _ = x[DoctypeNode-5] + _ = x[RawNode-6] + _ = x[scopeMarkerNode-7] +} + +const _NodeType_name = "ErrorNodeTextNodeDocumentNodeElementNodeCommentNodeDoctypeNodeRawNodescopeMarkerNode" + +var _NodeType_index = [...]uint8{0, 9, 17, 29, 40, 51, 62, 69, 84} + +func (i NodeType) String() string { + idx := int(i) - 0 + if i < 0 || idx >= len(_NodeType_index)-1 { + return "NodeType(" + strconv.FormatInt(int64(i), 10) + ")" + } + return _NodeType_name[_NodeType_index[idx]:_NodeType_index[idx+1]] +} diff --git a/tests/e2e/vendor/golang.org/x/net/html/parse.go b/tests/e2e/vendor/golang.org/x/net/html/parse.go index 88fc0056a3..165b6108d4 100644 --- a/tests/e2e/vendor/golang.org/x/net/html/parse.go +++ b/tests/e2e/vendor/golang.org/x/net/html/parse.go @@ -5,9 +5,11 @@ package html import ( + "cmp" "errors" "fmt" "io" + "slices" "strings" a "golang.org/x/net/html/atom" @@ -61,7 +63,7 @@ func (p *parser) top() *Node { // Stop tags for use in popUntil. These come from section 12.2.4.2. var ( defaultScopeStopTags = map[string][]a.Atom{ - "": {a.Applet, a.Caption, a.Html, a.Table, a.Td, a.Th, a.Marquee, a.Object, a.Template}, + "": {a.Applet, a.Caption, a.Html, a.Table, a.Td, a.Th, a.Marquee, a.Object, a.Template, a.Select}, "math": {a.AnnotationXml, a.Mi, a.Mn, a.Mo, a.Ms, a.Mtext}, "svg": {a.Desc, a.ForeignObject, a.Title}, } @@ -76,7 +78,6 @@ const ( tableScope tableRowScope tableBodyScope - selectScope ) // popUntil pops the stack of open elements at the highest element whose tag @@ -131,10 +132,6 @@ func (p *parser) indexOfElementInScope(s scope, matchTags ...a.Atom) int { if tagAtom == a.Html || tagAtom == a.Table || tagAtom == a.Template { return -1 } - case selectScope: - if tagAtom != a.Optgroup && tagAtom != a.Option { - return -1 - } default: panic(fmt.Sprintf("html: internal error: indexOfElementInScope unknown scope: %d", s)) } @@ -328,6 +325,14 @@ func (p *parser) addText(text string) { }) } +func attrCompare(a, b Attribute) int { + return cmp.Or( + cmp.Compare(a.Namespace, b.Namespace), + cmp.Compare(a.Key, b.Key), + cmp.Compare(a.Val, b.Val), + ) +} + // addElement adds a child element based on the current token. func (p *parser) addElement() { p.addChild(&Node{ @@ -343,6 +348,10 @@ func (p *parser) addFormattingElement() { tagAtom, attr := p.tok.DataAtom, p.tok.Attr p.addElement() + // In order to optimize the search, we need the attributes to be sorted, so we + // can just use slices.Equal. + slices.SortFunc(attr, attrCompare) + // Implement the Noah's Ark clause, but with three per family instead of two. identicalElements := 0 findIdenticalElements: @@ -360,19 +369,7 @@ findIdenticalElements: if n.DataAtom != tagAtom { continue } - if len(n.Attr) != len(attr) { - continue - } - compareAttributes: - for _, t0 := range n.Attr { - for _, t1 := range attr { - if t0.Key == t1.Key && t0.Namespace == t1.Namespace && t0.Val == t1.Val { - // Found a match for this attribute, continue with the next attribute. - continue compareAttributes - } - } - // If we get here, there is no attribute that matches a. - // Therefore the element is not identical to the new one. + if !slices.Equal(n.Attr, attr) { continue findIdenticalElements } @@ -382,7 +379,11 @@ findIdenticalElements: } } - p.afe = append(p.afe, p.top()) + // Sort the attributes to optimize future identical-element searches. + top := p.top() + slices.SortFunc(top.Attr, attrCompare) + + p.afe = append(p.afe, top) } // Section 12.2.4.3. @@ -454,21 +455,6 @@ func (p *parser) resetInsertionMode() { } switch n.DataAtom { - case a.Select: - if !last { - for ancestor, first := n, p.oe[0]; ancestor != first; { - ancestor = p.oe[p.oe.index(ancestor)-1] - switch ancestor.DataAtom { - case a.Template: - p.im = inSelectIM - return - case a.Table: - p.im = inSelectInTableIM - return - } - } - } - p.im = inSelectIM case a.Td, a.Th: // TODO: remove this divergence from the HTML5 spec. // @@ -996,7 +982,10 @@ func inBodyIM(p *parser) bool { p.popUntil(buttonScope, a.P) p.addElement() case a.Button: - p.popUntil(defaultScope, a.Button) + if p.elementInScope(defaultScope, a.Button) { + p.generateImpliedEndTags() + p.popUntil(defaultScope, a.Button) + } p.reconstructActiveFormattingElements() p.addElement() p.framesetOK = false @@ -1034,7 +1023,18 @@ func inBodyIM(p *parser) bool { p.framesetOK = false p.im = inTableIM return true - case a.Area, a.Br, a.Embed, a.Img, a.Input, a.Keygen, a.Wbr: + case a.Area, a.Br, a.Embed, a.Img, a.Keygen, a.Wbr: + p.reconstructActiveFormattingElements() + p.addElement() + p.oe.pop() + p.acknowledgeSelfClosingTag() + p.framesetOK = false + case a.Input: + if p.fragment && p.context.DataAtom == a.Select { + // Ignore the token. + return true + } + p.popUntil(defaultScope, a.Select) p.reconstructActiveFormattingElements() p.addElement() p.oe.pop() @@ -1055,7 +1055,13 @@ func inBodyIM(p *parser) bool { p.oe.pop() p.acknowledgeSelfClosingTag() case a.Hr: - p.popUntil(buttonScope, a.P) + if p.elementInScope(buttonScope, a.P) { + p.generateImpliedEndTags("p") + p.popUntil(defaultScope, a.P) + } + if p.elementInScope(defaultScope, a.Select) { + p.generateImpliedEndTags() + } p.addElement() p.oe.pop() p.acknowledgeSelfClosingTag() @@ -1089,13 +1095,30 @@ func inBodyIM(p *parser) bool { // Don't let the tokenizer go into raw text mode when scripting is disabled. p.tokenizer.NextIsNotRawText() case a.Select: + if p.fragment && p.context.DataAtom == a.Select { + // Ignore the token. + return true + } else if p.popUntil(defaultScope, a.Select) { + return true + } p.reconstructActiveFormattingElements() p.addElement() p.framesetOK = false - p.im = inSelectIM return true - case a.Optgroup, a.Option: - if p.top().DataAtom == a.Option { + case a.Option: + if p.elementInScope(defaultScope, a.Select) { + p.generateImpliedEndTags("optgroup") + // If oe has option element in scope, parse error? + } else if p.top().DataAtom == a.Option { + p.oe.pop() + } + p.reconstructActiveFormattingElements() + p.addElement() + case a.Optgroup: + if p.elementInScope(defaultScope, a.Select) { + p.generateImpliedEndTags() + // If oe has option or optgroup element in scope, parse error? + } else if p.top().DataAtom == a.Option { p.oe.pop() } p.reconstructActiveFormattingElements() @@ -1143,7 +1166,12 @@ func inBodyIM(p *parser) bool { return false } return true - case a.Address, a.Article, a.Aside, a.Blockquote, a.Button, a.Center, a.Details, a.Dialog, a.Dir, a.Div, a.Dl, a.Fieldset, a.Figcaption, a.Figure, a.Footer, a.Header, a.Hgroup, a.Listing, a.Main, a.Menu, a.Nav, a.Ol, a.Pre, a.Search, a.Section, a.Summary, a.Ul: + case a.Address, a.Article, a.Aside, a.Blockquote, a.Button, a.Center, a.Details, a.Dialog, a.Dir, a.Div, a.Dl, a.Fieldset, a.Figcaption, a.Figure, a.Footer, a.Header, a.Hgroup, a.Listing, a.Main, a.Menu, a.Nav, a.Ol, a.Pre, a.Search, a.Section, a.Select, a.Summary, a.Ul: + if !p.elementInScope(defaultScope, p.tok.DataAtom) { + // Ignore the token. + return true + } + p.generateImpliedEndTags() p.popUntil(defaultScope, p.tok.DataAtom) case a.Form: if p.oe.contains(a.Template) { @@ -1372,8 +1400,6 @@ func (p *parser) inBodyEndTagFormatting(tagAtom a.Atom, tagName string) { } // inBodyEndTagOther performs the "any other end tag" algorithm for inBodyIM. -// "Any other end tag" handling from 12.2.6.5 The rules for parsing tokens in foreign content -// https://html.spec.whatwg.org/multipage/syntax.html#parsing-main-inforeign func (p *parser) inBodyEndTagOther(tagAtom a.Atom, tagName string) { for i := len(p.oe) - 1; i >= 0; i-- { // Two element nodes have the same tag if they have the same Data (a @@ -1383,7 +1409,7 @@ func (p *parser) inBodyEndTagOther(tagAtom a.Atom, tagName string) { // Uncommon (custom) tags get a zero DataAtom. // // The if condition here is equivalent to (p.oe[i].Data == tagName). - if (p.oe[i].DataAtom == tagAtom) && + if p.oe[i].Namespace == "" && (p.oe[i].DataAtom == tagAtom) && ((tagAtom != 0) || (p.oe[i].Data == tagName)) { p.oe = p.oe[:i] break @@ -1484,17 +1510,6 @@ func inTableIM(p *parser) bool { } p.addElement() p.form = p.oe.pop() - case a.Select: - p.reconstructActiveFormattingElements() - switch p.top().DataAtom { - case a.Table, a.Tbody, a.Tfoot, a.Thead, a.Tr: - p.fosterParenting = true - } - p.addElement() - p.fosterParenting = false - p.framesetOK = false - p.im = inSelectInTableIM - return true } case EndTagToken: switch p.tok.DataAtom { @@ -1543,12 +1558,6 @@ func inCaptionIM(p *parser) bool { p.clearActiveFormattingElements() p.im = inTableIM return false - case a.Select: - p.reconstructActiveFormattingElements() - p.addElement() - p.framesetOK = false - p.im = inSelectInTableIM - return true } case EndTagToken: switch p.tok.DataAtom { @@ -1758,12 +1767,6 @@ func inCellIM(p *parser) bool { } // Ignore the token. return true - case a.Select: - p.reconstructActiveFormattingElements() - p.addElement() - p.framesetOK = false - p.im = inSelectInTableIM - return true } case EndTagToken: switch p.tok.DataAtom { @@ -1794,118 +1797,6 @@ func inCellIM(p *parser) bool { return inBodyIM(p) } -// Section 12.2.6.4.16. -func inSelectIM(p *parser) bool { - switch p.tok.Type { - case TextToken: - p.addText(strings.Replace(p.tok.Data, "\x00", "", -1)) - case StartTagToken: - switch p.tok.DataAtom { - case a.Html: - return inBodyIM(p) - case a.Option: - if p.top().DataAtom == a.Option { - p.oe.pop() - } - p.addElement() - case a.Optgroup: - if p.top().DataAtom == a.Option { - p.oe.pop() - } - if p.top().DataAtom == a.Optgroup { - p.oe.pop() - } - p.addElement() - case a.Select: - if !p.popUntil(selectScope, a.Select) { - // Ignore the token. - return true - } - p.resetInsertionMode() - case a.Input, a.Keygen, a.Textarea: - if p.elementInScope(selectScope, a.Select) { - p.parseImpliedToken(EndTagToken, a.Select, a.Select.String()) - return false - } - // In order to properly ignore