Files
oak-editor/tests/gtest/audio_level_meter_test.cpp
T
Mike-Solar e1d3019659 tests: migrate gtest suite to the ffmpeg_bridge API and add bridge coverage
- Replace direct FFmpeg usage in the test suite (channel layout masks,
  pixel/sample format constants, AVFrame field access, sws_scale) with
  the bridge equivalents and the olive::AVFrame adapter
- Drop CoreRational.ToAVRational (API removed with core's FFmpeg
  dependency) and the GetSwsColorspaceFromAVColorSpace tests (helper
  moved inside the bridge)
- New ffmpeg_bridge_test.cpp exercises the C API directly: constants vs
  core, error strings, pixel format utilities, frames/packets, scaler,
  resampler, audio graph tempo processing, probe/decoder round-trip on
  tests/demo.mp4 (including hw-frame transfer), SRT subtitle reading,
  and encoder end-to-end tests (PNG video and PCM audio probed back)
2026-07-15 23:00:13 +08:00

78 lines
2.3 KiB
C++

#include <gtest/gtest.h>
#include <cmath>
#include "audio/audiolevelmeter.h"
#include "olive/core/render/audioparams.h"
#include "olive/core/render/samplebuffer.h"
#include "olive/core/render/sampleformat.h"
namespace
{
olive::core::AudioParams MakeStereoParams()
{
return olive::core::AudioParams(48000, olive::core::kChannelLayoutStereo,
olive::core::SampleFormat::F32P);
}
}
TEST(AudioLevelMeter, Silence)
{
olive::core::SampleBuffer samples(MakeStereoParams(), size_t(480));
samples.silence();
const olive::AudioLevelMeter::Stats stats =
olive::AudioLevelMeter::AnalyzeSampleBuffer(samples);
ASSERT_EQ(stats.channels.size(), 2);
EXPECT_TRUE(stats.silence);
EXPECT_DOUBLE_EQ(stats.max_peak_linear, 0.0);
EXPECT_DOUBLE_EQ(stats.channels.at(0).peak_linear, 0.0);
EXPECT_DOUBLE_EQ(stats.channels.at(0).rms_linear, 0.0);
EXPECT_DOUBLE_EQ(stats.integrated_lufs, -200.0);
}
TEST(AudioLevelMeter, ConstantSignal)
{
olive::core::SampleBuffer samples(MakeStereoParams(), size_t(480));
for (int channel = 0; channel < samples.channel_count(); channel++) {
float *data = samples.data(channel);
for (size_t i = 0; i < samples.sample_count(); i++) {
data[i] = 0.5f;
}
}
const olive::AudioLevelMeter::Stats stats =
olive::AudioLevelMeter::AnalyzeSampleBuffer(samples);
ASSERT_EQ(stats.channels.size(), 2);
EXPECT_FALSE(stats.silence);
EXPECT_DOUBLE_EQ(stats.max_peak_linear, 0.5);
EXPECT_NEAR(stats.channels.at(0).peak_db, -6.0206, 0.0001);
EXPECT_NEAR(stats.channels.at(0).rms_linear, 0.5, 0.0001);
EXPECT_NEAR(stats.channels.at(0).vu_db, -6.0206, 0.0001);
EXPECT_NEAR(stats.integrated_lufs, -6.7116, 0.0001);
}
TEST(AudioLevelMeter, PerChannelPeaksAndRms)
{
olive::core::SampleBuffer samples(MakeStereoParams(), size_t(4));
float left[] = { 0.0f, 0.25f, -0.5f, 1.0f };
float right[] = { 0.0f, -0.25f, 0.25f, -0.25f };
samples.set(0, left, 4);
samples.set(1, right, 4);
const olive::AudioLevelMeter::Stats stats =
olive::AudioLevelMeter::AnalyzeSampleBuffer(samples);
ASSERT_EQ(stats.channels.size(), 2);
EXPECT_DOUBLE_EQ(stats.channels.at(0).peak_linear, 1.0);
EXPECT_DOUBLE_EQ(stats.channels.at(1).peak_linear, 0.25);
EXPECT_NEAR(stats.channels.at(0).rms_linear,
std::sqrt((0.25 * 0.25 + 0.5 * 0.5 + 1.0) / 4.0), 0.0001);
EXPECT_NEAR(stats.channels.at(1).rms_linear,
std::sqrt((0.25 * 0.25 * 3.0) / 4.0), 0.0001);
}