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138 lines (106 loc) · 3.98 KB
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#include "dynamic_dispatch_wrapper.hpp"
#undef HWY_TARGET_INCLUDE
#define HWY_TARGET_INCLUDE "dynamic_dispatch_wrapper.cpp"
#include <hwy/foreach_target.h>
#include <hwy/highway.h>
#include "zldsp_fft_cfft-inl.hpp"
#include "zldsp_fft_rfft-inl.hpp"
HWY_BEFORE_NAMESPACE();
namespace zldsp_fft_example::HWY_NAMESPACE {
template <typename F>
class CFFTImpl final : public CFFT<F> {
public:
explicit CFFTImpl(const std::size_t order) :
cfft_(order) {
}
void forward(Complex<F>* input, Complex<F>* output) noexcept override {
cfft_.forward(input, output);
}
void forward(Complex<F>* input, SoA<F> output) noexcept override {
cfft_.forward(input, output);
}
void forward(SoA<F> input, Complex<F>* output) noexcept override {
cfft_.forward(input, output);
}
void forward(SoA<F> input, SoA<F> output) noexcept override {
cfft_.forward(input, output);
}
void backward(Complex<F>* input, Complex<F>* output) noexcept override {
cfft_.backward(input, output);
}
void backward(Complex<F>* input, SoA<F> output) noexcept override {
cfft_.backward(input, output);
}
void backward(SoA<F> input, Complex<F>* output) noexcept override {
cfft_.backward(input, output);
}
void backward(SoA<F> input, SoA<F> output) noexcept override {
cfft_.backward(input, output);
}
private:
zldsp::fft::HWY_NAMESPACE::CFFT<F> cfft_;
};
template <typename F>
class RFFTImpl final : public RFFT<F> {
public:
explicit RFFTImpl(const std::size_t order) :
rfft_(order) {
}
void forward(F* input, Complex<F>* output) noexcept override {
rfft_.forward(input, output);
}
void forward(F* input, SoA<F> output) noexcept override {
rfft_.forward(input, output);
}
void backward(Complex<F>* input, F* output) noexcept override {
rfft_.backward(input, output);
}
void backward(SoA<F> input, F* output) noexcept override {
rfft_.backward(input, output);
}
void forward_sqr_mag(F* input, F* output) noexcept override {
rfft_.forward_sqr_mag(input, output);
}
private:
zldsp::fft::HWY_NAMESPACE::RFFT<F> rfft_;
};
CFFT<float>* prepare_cfft_float_impl(const std::size_t order) {
return new CFFTImpl<float>(order);
}
CFFT<double>* prepare_cfft_double_impl(const std::size_t order) {
return new CFFTImpl<double>(order);
}
RFFT<float>* prepare_rfft_float_impl(const std::size_t order) {
return new RFFTImpl<float>(order);
}
RFFT<double>* prepare_rfft_double_impl(const std::size_t order) {
return new RFFTImpl<double>(order);
}
}
HWY_AFTER_NAMESPACE();
#if HWY_ONCE
namespace zldsp_fft_example {
HWY_EXPORT(prepare_cfft_float_impl);
HWY_EXPORT(prepare_cfft_double_impl);
HWY_EXPORT(prepare_rfft_float_impl);
HWY_EXPORT(prepare_rfft_double_impl);
namespace detail {
std::unique_ptr<CFFT<float>> prepare_cfft_float(const std::size_t order) {
return std::unique_ptr<CFFT<float>>(
HWY_DYNAMIC_DISPATCH(prepare_cfft_float_impl)(order));
}
std::unique_ptr<CFFT<double>> prepare_cfft_double(const std::size_t order) {
return std::unique_ptr<CFFT<double>>(
HWY_DYNAMIC_DISPATCH(prepare_cfft_double_impl)(order));
}
std::unique_ptr<RFFT<float>> prepare_rfft_float(const std::size_t order) {
return std::unique_ptr<RFFT<float>>(
HWY_DYNAMIC_DISPATCH(prepare_rfft_float_impl)(order));
}
std::unique_ptr<RFFT<double>> prepare_rfft_double(const std::size_t order) {
return std::unique_ptr<RFFT<double>>(
HWY_DYNAMIC_DISPATCH(prepare_rfft_double_impl)(order));
}
}
}
#endif