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//go:build linux && !android
package tun
import (
"bytes"
"errors"
"fmt"
"io"
"net"
"os"
"runtime"
"slices"
"syscall"
"testing"
"time"
"github.com/sagernet/sing-tun/gtcpip/header"
E "github.com/sagernet/sing/common/exceptions"
"golang.org/x/sys/unix"
)
func TestGoKernelWindowClamp(t *testing.T) {
previous := runtime.GOMAXPROCS(4)
defer runtime.GOMAXPROCS(previous)
cases := []struct {
window int
mss int
loss bool
}{
{window: 2048},
{window: 4096, mss: 512},
{window: 16384, loss: true},
}
for _, scenario := range cases {
t.Run(fmt.Sprintf("window=%d/mss=%d/loss=%v", scenario.window, scenario.mss, scenario.loss), func(configTest *testing.T) {
size := 256 << 10
config := kernelStackConfig{mtu: 9000, socketBuffer: 4096, upstreamSocketBuffer: 4096, gso: scenario.loss, multiQueue: scenario.loss}
config.dialer = net.Dialer{Control: func(_, _ string, rawConn syscall.RawConn) error {
var optionErr error
err := rawConn.Control(func(descriptor uintptr) {
optionErr = unix.SetsockoptInt(int(descriptor), unix.SOL_SOCKET, unix.SO_RCVBUF, 4096)
if optionErr != nil {
return
}
optionErr = unix.SetsockoptInt(int(descriptor), unix.IPPROTO_TCP, unix.TCP_WINDOW_CLAMP, scenario.window)
if optionErr != nil || scenario.mss == 0 {
return
}
optionErr = unix.SetsockoptInt(int(descriptor), unix.IPPROTO_TCP, unix.TCP_MAXSEG, scenario.mss)
})
return E.Errors(err, optionErr)
}}
if scenario.loss {
size = 1 << 20
config.upstreamSocketBuffer = 64 << 10
config.configure = func(test *testing.T, options Options) {
configureKernelNetem(test, options, "delay", "2ms")
}
}
var traffic *kernelTCPHarness
config.handshake = func(conn *GoConn) error {
if scenario.loss {
traffic.setFilter(conn, kernelBidirectionalDataLoss())
}
return conn.HandshakeSuccess()
}
fixture, traffic := newKernelTCPFixture(configTest, config, kernelTCPConfig{})
if scenario.loss {
configTest.Cleanup(func() {
traffic.access.Lock()
defer traffic.access.Unlock()
for key, flow := range traffic.flows {
if flow.faults != 2 {
configTest.Errorf("flow %v observed %d targeted data drops, expected 2", key, flow.faults)
}
}
})
}
for _, ipv6 := range []bool{false, true} {
for _, mode := range []string{"write", "buffer", "splice"} {
configTest.Run(fmt.Sprintf("ipv6=%v/mode=%s", ipv6, mode), func(test *testing.T) {
test.Parallel()
kernelBackpressure(test, fixture, ipv6, mode, size)
})
}
}
})
}
}
func TestGoKernelReceiveWindowUpdateLoss(t *testing.T) {
fixture, traffic := newKernelTCPFixture(t, kernelStackConfig{mtu: 1500, socketBuffer: 4096}, kernelTCPConfig{})
for _, ipv6 := range []bool{false, true} {
t.Run(fmt.Sprintf("ipv6=%v", ipv6), func(test *testing.T) {
client, server := fixture.pair(test, ipv6)
payload := kernelPayload(512<<10, 131)
written := make(chan error, 1)
go func() {
_, err := client.Write(payload)
if err == nil {
err = client.CloseWrite()
}
written <- err
}()
deadline := time.Now().Add(2 * time.Second)
for time.Now().Before(deadline) {
if server.receiveEdge.Load()-server.receiveAvailable.Load() < 1<<server.localWindowShift {
break
}
time.Sleep(time.Millisecond)
}
available := server.receiveAvailable.Load() - 1
if available == 0 || server.receiveEdge.Load()-server.receiveAvailable.Load() >= 1<<server.localWindowShift {
test.Fatal("Go receive window did not close")
}
windowUpdate := func(event kernelTCPEvent) bool {
return event.outgoing && event.flags == header.TCPFlagAck && event.window > 0
}
traffic.setFilter(server, func(event kernelTCPEvent) kernelTCPAction {
return kernelTCPAction{drop: windowUpdate(event)}
})
data := make([]byte, len(payload))
_, err := io.ReadFull(server, data[:available])
if err != nil {
test.Fatal(err)
}
traffic.await(test, server, "drop Go receive-window update", func(flow kernelTCPFlow) bool {
return slices.ContainsFunc(flow.events, func(event kernelTCPEvent) bool { return event.dropped && windowUpdate(event) })
})
traffic.setFilter(server, nil)
server.SetReadDeadline(time.Now().Add(4 * time.Second))
_, err = io.ReadFull(server, data[available:])
if err != nil {
test.Fatal("recover Go receive window:", err)
}
if !bytes.Equal(data, payload) {
test.Fatal("receive window recovery corrupted the stream")
}
_, err = server.Read(data[:1])
if err != io.EOF {
test.Fatalf("stream end: %v", err)
}
err = kernelTCPResult(test, written, "upload after receive-window update loss")
if err != nil {
test.Fatal(err)
}
})
}
}
func TestGoKernelSACKReneging(t *testing.T) {
for _, ipv6 := range []bool{false, true} {
t.Run(fmt.Sprintf("ipv6=%v", ipv6), func(test *testing.T) {
test.Parallel()
fixture, traffic := newKernelTCPFixture(test, kernelStackConfig{mtu: 1500}, kernelTCPConfig{})
client, server := fixture.pair(test, ipv6)
traffic.setFilter(server, func(event kernelTCPEvent) kernelTCPAction {
return kernelTCPAction{drop: event.outgoing && event.sequence == 1 && event.end > event.sequence}
})
mss := int(server.effectiveMSS.Load())
payload := kernelPayload(8*mss, 137)
_, err := server.Write(payload)
if err != nil {
test.Fatal(err)
}
retained := goSackBlock{start: uint64(mss + 1), end: uint64(len(payload) + 1)}
traffic.await(test, server, "kernel SACK of queued out-of-order data", func(flow kernelTCPFlow) bool {
return slices.ContainsFunc(flow.events, func(event kernelTCPEvent) bool {
return !event.outgoing && slices.Contains(event.sacks, retained)
})
})
err = client.SetReadBuffer(512)
if err != nil {
test.Fatal(err)
}
traffic.setFilter(server, nil)
traffic.await(test, server, "kernel reneging on its SACK interval", func(flow kernelTCPFlow) bool {
return slices.ContainsFunc(flow.events, func(event kernelTCPEvent) bool {
return !event.outgoing && event.ack >= retained.start && event.ack < retained.end
})
})
err = client.SetReadBuffer(64 << 10)
if err != nil {
test.Fatal(err)
}
client.SetReadDeadline(time.Now().Add(4 * time.Second))
data := make([]byte, len(payload))
n, err := io.ReadFull(client, data)
if err != nil || !bytes.Equal(data, payload) {
test.Fatalf("SACK reneging: received=%d/%d: %v", n, len(payload), err)
}
err = server.CloseWrite()
if err != nil {
test.Fatal(err)
}
_, err = client.Read(data[:1])
if err != io.EOF {
test.Fatalf("stream end after SACK reneging: %v", err)
}
})
}
}
func TestGoKernelZeroWindowHalfClose(t *testing.T) {
for _, ipv6 := range []bool{false, true} {
t.Run(fmt.Sprintf("ipv6=%v", ipv6), func(test *testing.T) {
test.Parallel()
config := kernelStackConfig{mtu: 9000, socketBuffer: 512}
config.dialer = net.Dialer{Control: func(_, _ string, rawConn syscall.RawConn) error {
var optionErr error
err := rawConn.Control(func(descriptor uintptr) {
optionErr = unix.SetsockoptInt(int(descriptor), unix.SOL_SOCKET, unix.SO_RCVBUF, 512)
if optionErr == nil {
optionErr = unix.SetsockoptInt(int(descriptor), unix.IPPROTO_TCP, unix.TCP_WINDOW_CLAMP, 1024)
}
})
return E.Errors(err, optionErr)
}}
fixture, traffic := newKernelTCPFixture(test, config, kernelTCPConfig{})
client, server := fixture.pair(test, ipv6)
payload := kernelPayload(int(server.sendPermit.Load()&^goPermitWindowBit-1), 139)
_, err := server.Write(payload)
if err != nil {
test.Fatal(err)
}
deadline := time.Now().Add(time.Second)
for time.Now().Before(deadline) {
if server.sendUnacked.Load() == uint64(len(payload)+1) && server.sendPermit.Load()&^goPermitWindowBit == server.sendUnacked.Load() {
break
}
time.Sleep(time.Millisecond)
}
if server.sendUnacked.Load() != uint64(len(payload)+1) || server.sendPermit.Load()&^goPermitWindowBit != server.sendUnacked.Load() {
test.Fatalf("window did not close after acknowledging all data: length=%d unacked=%d permit=%d", len(payload), server.sendUnacked.Load(), server.sendPermit.Load()&^goPermitWindowBit)
}
finAcknowledgement := func(event kernelTCPEvent) bool {
return !event.outgoing && event.flags&header.TCPFlagAck != 0 && event.ack == uint64(len(payload)+2)
}
traffic.setFilter(server, func(event kernelTCPEvent) kernelTCPAction {
return kernelTCPAction{drop: finAcknowledgement(event)}
})
err = server.CloseWrite()
if err != nil {
test.Fatal(err)
}
traffic.await(test, server, "FIN sent with zero receive window", func(flow kernelTCPFlow) bool {
return flow.fin != 0 && flow.peerWindow == 0
})
err = client.SetReadBuffer(64 << 10)
if err != nil {
test.Fatal(err)
}
data := make([]byte, len(payload))
_, err = io.ReadFull(client, data)
if err != nil || !bytes.Equal(data, payload) {
test.Fatalf("half-close data: %v", err)
}
traffic.await(test, server, "drop FIN acknowledgement at a closed receive window", func(flow kernelTCPFlow) bool {
return slices.ContainsFunc(flow.events, func(event kernelTCPEvent) bool { return event.dropped && finAcknowledgement(event) })
})
traffic.setFilter(server, nil)
client.SetReadDeadline(time.Now().Add(4 * time.Second))
_, err = client.Read(data[:1])
if err != io.EOF {
test.Fatalf("zero-window FIN: %v", err)
}
traffic.await(test, server, "recover lost FIN acknowledgement", func(flow kernelTCPFlow) bool {
return flow.fin != 0 && flow.acked >= flow.fin
})
err = client.CloseWrite()
if err != nil {
test.Fatal(err)
}
_, err = server.Read(data[:1])
if err != io.EOF {
test.Fatalf("peer FIN: %v", err)
}
})
}
}
func TestGoKernelWindowLimitedRecovery(t *testing.T) {
for _, ipv6 := range []bool{false, true} {
t.Run(fmt.Sprintf("ipv6=%v", ipv6), func(test *testing.T) {
test.Parallel()
fixture := newKernelStackFixture(test, kernelStackConfig{mtu: 9000})
client, server := fixture.pair(test, ipv6)
err := client.SetReadBuffer(4096)
if err != nil {
test.Fatal(err)
}
output, err := kernelCommand("tc", "qdisc", "add", "dev", fixture.options.Name, "root", "netem", "delay", "50ms")
if err != nil {
test.Fatalf("delay ACKs: %s: %v", output, err)
}
payload := kernelPayload(8<<20, 223)
initial := 4 * int(server.effectiveMSS.Load())
_, err = server.Write(payload[:initial])
if err != nil {
test.Fatal(err)
}
deadline := time.Now().Add(time.Second)
for time.Now().Before(deadline) {
if server.sendPermit.Load()&^goPermitWindowBit == server.sendUnacked.Load() && server.sentTail.Load() > server.sendUnacked.Load()+2*uint64(server.effectiveMSS.Load()) {
break
}
time.Sleep(time.Millisecond)
}
if server.sendPermit.Load()&^goPermitWindowBit != server.sendUnacked.Load() || server.sentTail.Load() <= server.sendUnacked.Load()+2*uint64(server.effectiveMSS.Load()) {
test.Fatal("window did not shrink below outstanding data")
}
completed := make(chan kernelIOResult, 1)
server.SetWriteDeadline(time.Now().Add(2 * time.Second))
go func() {
n, writeErr := server.Write(payload[initial:])
completed <- kernelIOResult{n: n + initial, err: writeErr}
}()
deadline = time.Now().Add(time.Second)
for server.writerWaiting.Load() == 0 && time.Now().Before(deadline) {
time.Sleep(time.Millisecond)
}
if server.writerWaiting.Load() == 0 {
test.Fatal("write did not block at the closed window")
}
server.SetWriteDeadline(time.Now())
var accepted int
select {
case result := <-completed:
if !errors.Is(result.err, os.ErrDeadlineExceeded) || result.n <= 0 || result.n >= len(payload) {
test.Fatalf("interrupt blocked write: %+v", result)
}
accepted = result.n
case <-time.After(time.Second):
test.Fatal("write did not react to deadline")
}
output, err = kernelCommand("tc", "qdisc", "del", "dev", fixture.options.Name, "root")
if err != nil {
test.Fatalf("restore ACKs: %s: %v", output, err)
}
err = client.SetReadBuffer(4 << 20)
if err != nil {
test.Fatal(err)
}
rawConn, err := client.SyscallConn()
if err != nil {
test.Fatal(err)
}
var optionErr error
err = rawConn.Control(func(descriptor uintptr) {
optionErr = unix.SetsockoptInt(int(descriptor), unix.IPPROTO_TCP, unix.TCP_WINDOW_CLAMP, 6144)
})
if err != nil || optionErr != nil {
test.Fatalf("limit receive window: %v %v", err, optionErr)
}
server.SetWriteDeadline(time.Now().Add(4 * time.Second))
client.SetReadDeadline(time.Now().Add(4 * time.Second))
go func() {
n, writeErr := server.Write(payload[accepted:])
if writeErr == nil {
writeErr = server.CloseWrite()
}
completed <- kernelIOResult{n: n + accepted, err: writeErr}
}()
data, err := io.ReadAll(client)
if err != nil || !bytes.Equal(data, payload) {
test.Fatalf("window-limited recovery: received=%d/%d accepted=%d: %v", len(data), len(payload), accepted, err)
}
select {
case result := <-completed:
if result.err != nil || result.n != len(payload) {
test.Fatalf("resume blocked write: %+v", result)
}
case <-time.After(time.Second):
test.Fatal("write remained blocked after recovery")
}
})
}
}
func TestGoKernelZeroWindow(t *testing.T) {
fixture, traffic := newKernelTCPFixture(t, kernelStackConfig{mtu: 9000}, kernelTCPConfig{})
for _, ipv6 := range []bool{false, true} {
t.Run(fmt.Sprintf("ipv6=%v", ipv6), func(test *testing.T) {
client, server := fixture.pair(test, ipv6)
err := client.SetReadBuffer(4096)
if err != nil {
test.Fatal(err)
}
output, err := kernelCommand("tc", "qdisc", "replace", "dev", fixture.options.Name, "root", "netem", "delay", "50ms")
if err != nil {
test.Fatalf("tc qdisc replace: %s: %v", output, err)
}
payload := kernelPayload(32768, 107)
_, err = server.Write(payload)
if err != nil {
test.Fatal(err)
}
deadline := time.Now().Add(time.Second)
for time.Now().Before(deadline) {
if server.sendPermit.Load()&^goPermitWindowBit == server.sendUnacked.Load() && server.sentTail.Load() == server.bufferedTail.Load() {
break
}
time.Sleep(time.Millisecond)
}
unacked := server.sendUnacked.Load()
if server.sendPermit.Load()&^goPermitWindowBit != unacked || server.sentTail.Load() != uint64(len(payload)+1) || unacked <= 1 || unacked >= server.sentTail.Load() {
test.Fatalf("window did not close with only outstanding data: unacked=%d sent=%d buffered=%d permit=%d", unacked, server.sentTail.Load(), server.bufferedTail.Load(), server.sendPermit.Load()&^goPermitWindowBit)
}
windowUpdate := func(event kernelTCPEvent) bool {
return !event.outgoing && event.flags == header.TCPFlagAck && event.window > 0
}
traffic.setFilter(server, func(event kernelTCPEvent) kernelTCPAction {
return kernelTCPAction{drop: windowUpdate(event)}
})
output, err = kernelCommand("tc", "qdisc", "del", "dev", fixture.options.Name, "root")
if err != nil {
test.Fatalf("tc qdisc del: %s: %v", output, err)
}
err = client.SetReadBuffer(4 << 20)
if err != nil {
test.Fatal(err)
}
data := make([]byte, len(payload))
_, err = io.ReadFull(client, data[:unacked-1])
if err != nil {
test.Fatal(err)
}
traffic.await(test, server, "drop kernel receive-window update", func(flow kernelTCPFlow) bool {
return slices.ContainsFunc(flow.events, func(event kernelTCPEvent) bool { return event.dropped && windowUpdate(event) })
})
traffic.setFilter(server, nil)
client.SetReadDeadline(time.Now().Add(4 * time.Second))
_, err = io.ReadFull(client, data[unacked-1:])
if err != nil {
test.Fatal("recover lost window update:", err)
}
if !bytes.Equal(data, payload) {
test.Fatal("zero-window recovery corrupted the stream")
}
})
}
}