sfizz/benchmarks/BM_readChunkFlac.cpp

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// SPDX-License-Identifier: BSD-2-Clause
// This code is part of the sfizz library and is licensed under a BSD 2-clause
// license. You should have receive a LICENSE.md file along with the code.
// If not, contact the sfizz maintainers at https://github.com/sfztools/sfizz
#include "SIMDHelpers.h"
#include "Buffer.h"
#include <benchmark/benchmark.h>
#include <sndfile.hh>
#include "ghc/fs_std.hpp"
#define DR_FLAC_IMPLEMENTATION
#include "dr_flac.h"
#include "AudioBuffer.h"
#include "absl/memory/memory.h"
#ifndef NDEBUG
#include <iostream>
#endif
#include <unistd.h> // readlink
class FileFixture : public benchmark::Fixture {
public:
void SetUp(const ::benchmark::State& /* state */) {
rootPath = getPath() / "sample1.flac";
if (!fs::exists(rootPath)) {
#ifndef NDEBUG
std::cerr << "Can't find path" << '\n';
#endif
std::terminate();
}
sndfile = SndfileHandle(rootPath.c_str());
numFrames = static_cast<size_t>(sndfile.frames());
output = absl::make_unique<sfz::AudioBuffer<float>>(sndfile.channels(), sndfile.frames());
}
void TearDown(const ::benchmark::State& /* state */) {
}
fs::path getPath()
{
#ifdef __linux__
char buf[PATH_MAX + 1];
if (readlink("/proc/self/exe", buf, sizeof(buf) - 1) == -1)
return {};
std::string str { buf };
return str.substr(0, str.rfind('/'));
#elif _WIN32
return fs::current_path();
#endif
}
std::unique_ptr<sfz::AudioBuffer<float>> output;
SndfileHandle sndfile;
fs::path rootPath;
size_t numFrames;
};
BENCHMARK_DEFINE_F(FileFixture, SndFileOnce)(benchmark::State& state) {
for (auto _ : state)
{
sfz::Buffer<float> buffer { numFrames * sndfile.channels() };
sndfile.readf(buffer.data(), numFrames);
sfz::readInterleaved(buffer, output->getSpan(0), output->getSpan(1));
}
}
BENCHMARK_DEFINE_F(FileFixture, SndFileChunked)(benchmark::State& state) {
for (auto _ : state)
{
auto chunkSize = static_cast<size_t>(state.range(0));
size_t framesRead = 0;
sndfile.seek(0, SEEK_SET);
while(framesRead < numFrames)
{
sfz::Buffer<float> buffer { chunkSize * sndfile.channels() };
auto read = sndfile.readf(buffer.data(), chunkSize);
sfz::readInterleaved(
absl::MakeSpan(buffer).first(read),
output->getSpan(0).subspan(framesRead),
output->getSpan(1).subspan(framesRead)
);
framesRead += read;
}
}
}
BENCHMARK_DEFINE_F(FileFixture, DrWavChunked)(benchmark::State& state) {
auto chunkSize = static_cast<size_t>(state.range(0));
auto* flac = drflac_open_file(rootPath.c_str(), nullptr);
if (!flac) {
#ifndef NDEBUG
std::cerr << "Can't find path" << '\n';
#endif
std::terminate();
}
sfz::Buffer<float> buffer { chunkSize * flac->channels };
for (auto _ : state)
{
size_t framesRead = 0;
drflac_seek_to_pcm_frame(flac, 0);
while(framesRead < numFrames)
{
auto read = drflac_read_pcm_frames_f32(flac, chunkSize, buffer.data());
sfz::readInterleaved(
absl::MakeSpan(buffer).first(read),
output->getSpan(0).subspan(framesRead),
output->getSpan(1).subspan(framesRead)
);
framesRead += read;
}
}
}
BENCHMARK_REGISTER_F(FileFixture, SndFileOnce);
BENCHMARK_REGISTER_F(FileFixture, SndFileChunked)->RangeMultiplier(4)->Range((1 << 10), (1 << 16));
BENCHMARK_REGISTER_F(FileFixture, DrWavChunked)->RangeMultiplier(4)->Range((1 << 10), (1 << 16));
BENCHMARK_MAIN();