forked from Green-Sky/tomato
c9cdae001 fix(toxav): remove extra copy of video frame on encode 4f6d4546b test: Improve the fake network library. a2581e700 refactor(toxcore): generate `Friend_Request` and `Dht_Nodes_Response` 2aaa11770 refactor(toxcore): use Tox_Memory in generated events 5c367452b test(toxcore): fix incorrect mutex in tox_scenario_get_time 8f92e710f perf: Add a timed limit of number of cookie requests. 695b6417a test: Add some more simulated network support. 815ae9ce9 test(toxcore): fix thread-safety in scenario framework 6d85c754e test(toxcore): add unit tests for net_crypto 9c22e79cc test(support): add SimulatedEnvironment for deterministic testing f34fcb195 chore: Update windows Dockerfile to debian stable (trixie). ece0e8980 fix(group_moderation): allow validating unsorted sanction list signatures a4fa754d7 refactor: rename struct Packet to struct Net_Packet d6f330f85 cleanup: Fix some warnings from coverity. e206bffa2 fix(group_chats): fix sync packets reverting topics 0e4715598 test: Add new scenario testing framework. 668291f44 refactor(toxcore): decouple Network_Funcs from sockaddr via IP_Port fc4396cef fix: potential division by zero in toxav and unsafe hex parsing 8e8b352ab refactor: Add nullable annotations to struct members. 7740bb421 refactor: decouple net_crypto from DHT 1936d4296 test: add benchmark for toxav audio and video 46bfdc2df fix: correct printf format specifiers for unsigned integers REVERT: 1828c5356 fix(toxav): remove extra copy of video frame on encode git-subtree-dir: external/toxcore/c-toxcore git-subtree-split: c9cdae001341e701fca980c9bb9febfeb95d2902
200 lines
5.9 KiB
C++
200 lines
5.9 KiB
C++
/* SPDX-License-Identifier: GPL-3.0-or-later
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* Copyright © 2025 The TokTok team.
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*/
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#include <benchmark/benchmark.h>
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#include <cmath>
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#include <cstring>
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#include <vector>
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#include "../toxcore/logger.h"
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#include "../toxcore/mono_time.h"
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#include "../toxcore/network.h"
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#include "../toxcore/os_memory.h"
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#include "audio.h"
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#include "av_test_support.hh"
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#include "rtp.h"
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namespace {
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class AudioBench : public benchmark::Fixture {
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public:
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void SetUp(const ::benchmark::State &state) override
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{
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const Memory *mem = os_memory();
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log = logger_new(mem);
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tm.t = 1000;
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mono_time = mono_time_new(mem, mock_time_cb, &tm);
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ac = ac_new(mono_time, log, 123, nullptr, nullptr);
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sampling_rate = static_cast<uint32_t>(state.range(0));
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channels = static_cast<uint8_t>(state.range(1));
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uint32_t bitrate = (channels == 1) ? 32000 : 64000;
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ac_reconfigure_encoder(ac, bitrate, sampling_rate, channels);
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sample_count = sampling_rate / 50; // 20ms frames
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pcm.resize(sample_count * channels);
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rtp_mock.capture_packets = false; // Disable capturing for benchmarks
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rtp_mock.auto_forward = true;
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rtp_mock.recv_session = rtp_new(log, RTP_TYPE_AUDIO, mono_time, RtpMock::send_packet,
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&rtp_mock, nullptr, nullptr, nullptr, ac, RtpMock::audio_cb);
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}
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void TearDown(const ::benchmark::State &state) override
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{
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const Memory *mem = os_memory();
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if (rtp_mock.recv_session) {
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rtp_kill(log, rtp_mock.recv_session);
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}
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if (ac) {
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ac_kill(ac);
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}
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if (mono_time) {
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mono_time_free(mem, mono_time);
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}
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if (log) {
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logger_kill(log);
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}
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}
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Logger *log = nullptr;
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Mono_Time *mono_time = nullptr;
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MockTime tm;
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ACSession *ac = nullptr;
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RtpMock rtp_mock;
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uint32_t sampling_rate = 0;
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uint8_t channels = 0;
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size_t sample_count = 0;
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std::vector<int16_t> pcm;
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};
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// Benchmark encoding a sequence of silent audio frames.
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BENCHMARK_DEFINE_F(AudioBench, EncodeSilentSequence)(benchmark::State &state)
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{
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std::vector<int16_t> silent_pcm(sample_count * channels);
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fill_silent_frame(channels, sample_count, silent_pcm);
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std::vector<uint8_t> encoded(2000);
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for (auto _ : state) {
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int encoded_size
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= ac_encode(ac, silent_pcm.data(), sample_count, encoded.data(), encoded.size());
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benchmark::DoNotOptimize(encoded_size);
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}
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}
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BENCHMARK_REGISTER_F(AudioBench, EncodeSilentSequence)
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->Args({8000, 1})
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->Args({48000, 1})
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->Args({48000, 2});
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// Benchmark encoding a sequence of audio frames.
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BENCHMARK_DEFINE_F(AudioBench, EncodeSequence)(benchmark::State &state)
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{
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int frame_index = 0;
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const int num_prefilled = 50;
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std::vector<std::vector<int16_t>> pcms(
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num_prefilled, std::vector<int16_t>(sample_count * channels));
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for (int i = 0; i < num_prefilled; ++i) {
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fill_audio_frame(sampling_rate, channels, i, sample_count, pcms[i]);
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}
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std::vector<uint8_t> encoded(2000);
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for (auto _ : state) {
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int idx = frame_index % num_prefilled;
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int encoded_size
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= ac_encode(ac, pcms[idx].data(), sample_count, encoded.data(), encoded.size());
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benchmark::DoNotOptimize(encoded_size);
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frame_index++;
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}
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}
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BENCHMARK_REGISTER_F(AudioBench, EncodeSequence)
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->Args({8000, 1})
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->Args({16000, 1})
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->Args({24000, 1})
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->Args({48000, 1})
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->Args({48000, 2});
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// Benchmark decoding a sequence of audio frames.
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BENCHMARK_DEFINE_F(AudioBench, DecodeSequence)(benchmark::State &state)
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{
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const int num_frames = 50;
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std::vector<std::vector<uint8_t>> encoded_frames(num_frames);
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// Pre-encode
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std::vector<uint8_t> encoded_tmp(2000);
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for (int i = 0; i < num_frames; ++i) {
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fill_audio_frame(sampling_rate, channels, i, sample_count, pcm);
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int size = ac_encode(ac, pcm.data(), sample_count, encoded_tmp.data(), encoded_tmp.size());
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encoded_frames[i].resize(4 + size);
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uint32_t net_sr = net_htonl(sampling_rate);
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std::memcpy(encoded_frames[i].data(), &net_sr, 4);
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std::memcpy(encoded_frames[i].data() + 4, encoded_tmp.data(), size);
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}
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int frame_index = 0;
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for (auto _ : state) {
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int idx = frame_index % num_frames;
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rtp_send_data(log, rtp_mock.recv_session, encoded_frames[idx].data(),
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static_cast<uint32_t>(encoded_frames[idx].size()), false);
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ac_iterate(ac);
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frame_index++;
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}
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}
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BENCHMARK_REGISTER_F(AudioBench, DecodeSequence)
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->Args({8000, 1})
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->Args({16000, 1})
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->Args({24000, 1})
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->Args({48000, 1})
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->Args({48000, 2});
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// Full end-to-end sequence benchmark (Encode -> RTP -> Decode)
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BENCHMARK_DEFINE_F(AudioBench, FullSequence)(benchmark::State &state)
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{
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int frame_index = 0;
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const int num_prefilled = 50;
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std::vector<std::vector<int16_t>> pcms(
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num_prefilled, std::vector<int16_t>(sample_count * channels));
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for (int i = 0; i < num_prefilled; ++i) {
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fill_audio_frame(sampling_rate, channels, i, sample_count, pcms[i]);
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}
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std::vector<uint8_t> encoded_tmp(2000);
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for (auto _ : state) {
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int idx = frame_index % num_prefilled;
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int size
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= ac_encode(ac, pcms[idx].data(), sample_count, encoded_tmp.data(), encoded_tmp.size());
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std::vector<uint8_t> payload(4 + size);
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uint32_t net_sr = net_htonl(sampling_rate);
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std::memcpy(payload.data(), &net_sr, 4);
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std::memcpy(payload.data() + 4, encoded_tmp.data(), size);
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rtp_send_data(log, rtp_mock.recv_session, payload.data(),
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static_cast<uint32_t>(payload.size()), false);
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ac_iterate(ac);
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frame_index++;
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}
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}
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BENCHMARK_REGISTER_F(AudioBench, FullSequence)
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->Args({8000, 1})
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->Args({16000, 1})
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->Args({24000, 1})
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->Args({48000, 1})
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->Args({48000, 2});
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}
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BENCHMARK_MAIN();
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