ladybird/Tests/LibMedia/TestMediaCommon.h

117 lines
4.2 KiB
C++

/*
* Copyright (c) 2022-2025, Gregory Bertilson <gregory@ladybird.org>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#pragma once
#include <AK/Function.h>
#include <LibCore/EventLoop.h>
#include <LibMedia/Containers/Matroska/MatroskaDemuxer.h>
#include <LibMedia/Containers/Matroska/Reader.h>
#include <LibMedia/Demuxer.h>
#include <LibMedia/FFmpeg/FFmpegDemuxer.h>
#include <LibMedia/MutexedDemuxer.h>
#include <LibMedia/Providers/AudioDataProvider.h>
#include <LibMedia/VideoDecoder.h>
#include <LibMedia/VideoFrame.h>
#include <LibTest/TestCase.h>
template<typename T>
static inline void decode_video(StringView path, size_t expected_frame_count, T create_decoder)
{
auto matroska_reader = MUST(Media::Matroska::Reader::from_file(path));
u64 video_track = 0;
MUST(matroska_reader.for_each_track_of_type(Media::Matroska::TrackEntry::TrackType::Video, [&](Media::Matroska::TrackEntry const& track_entry) -> Media::DecoderErrorOr<IterationDecision> {
video_track = track_entry.track_number();
return IterationDecision::Break;
}));
VERIFY(video_track != 0);
auto iterator = MUST(matroska_reader.create_sample_iterator(video_track));
size_t frame_count = 0;
NonnullOwnPtr<Media::VideoDecoder> decoder = create_decoder(iterator);
auto last_timestamp = AK::Duration::min();
while (frame_count <= expected_frame_count) {
auto block_result = iterator.next_block();
if (block_result.is_error() && block_result.error().category() == Media::DecoderErrorCategory::EndOfStream) {
VERIFY(frame_count == expected_frame_count);
return;
}
auto block = block_result.release_value();
for (auto const& frame : block.frames()) {
MUST(decoder->receive_coded_data(block.timestamp(), frame));
while (true) {
auto frame_result = decoder->get_decoded_frame();
if (frame_result.is_error()) {
if (frame_result.error().category() == Media::DecoderErrorCategory::NeedsMoreInput)
break;
VERIFY_NOT_REACHED();
}
EXPECT(last_timestamp <= frame_result.value()->timestamp());
last_timestamp = frame_result.value()->timestamp();
}
frame_count++;
}
}
VERIFY_NOT_REACHED();
}
static inline void decode_audio(StringView path, u32 sample_rate, u8 channel_count, size_t expected_sample_count)
{
Core::EventLoop loop;
auto mapped_file = TRY_OR_FAIL(Core::MappedFile::map(path));
auto demuxer = MUST([&] -> Media::DecoderErrorOr<NonnullRefPtr<Media::Demuxer>> {
auto matroska_result = Media::Matroska::MatroskaDemuxer::from_data(mapped_file->bytes());
if (!matroska_result.is_error())
return matroska_result.release_value();
return Media::FFmpeg::FFmpegDemuxer::from_data(mapped_file->bytes());
}());
auto mutexed_demuxer = make_ref_counted<Media::MutexedDemuxer>(demuxer);
auto track = TRY_OR_FAIL(demuxer->get_preferred_track_for_type(Media::TrackType::Audio));
VERIFY(track.has_value());
auto provider = TRY_OR_FAIL(Media::AudioDataProvider::try_create(mutexed_demuxer, track.release_value()));
auto reached_end = false;
provider->set_error_handler([&](Media::DecoderError&& error) {
if (error.category() == Media::DecoderErrorCategory::EndOfStream) {
reached_end = true;
return;
}
FAIL("An error occurred while decoding.");
});
auto time_limit = AK::Duration::from_seconds(1);
auto start_time = MonotonicTime::now_coarse();
size_t sample_count = 0;
while (true) {
auto block = provider->retrieve_block();
if (block.is_empty()) {
if (reached_end)
break;
} else {
EXPECT_EQ(block.sample_rate(), sample_rate);
EXPECT_EQ(block.channel_count(), channel_count);
sample_count += block.sample_count();
}
if (MonotonicTime::now_coarse() - start_time >= time_limit) {
FAIL("Decoding timed out.");
return;
}
loop.pump(Core::EventLoop::WaitMode::PollForEvents);
}
VERIFY(reached_end);
EXPECT_EQ(sample_count, expected_sample_count);
}