1083 lines
29 KiB
C++
1083 lines
29 KiB
C++
/*
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This file is part of Telegram Desktop,
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the official desktop application for the Telegram messaging service.
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For license and copyright information please follow this link:
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https://github.com/telegramdesktop/tdesktop/blob/master/LEGAL
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*/
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#include "media/streaming/media_streaming_video_track.h"
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#include "media/audio/media_audio.h"
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#include "base/concurrent_timer.h"
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namespace Media {
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namespace Streaming {
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namespace {
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constexpr auto kDisplaySkipped = crl::time(-1);
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constexpr auto kFinishedPosition = std::numeric_limits<crl::time>::max();
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static_assert(kDisplaySkipped != kTimeUnknown);
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} // namespace
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class VideoTrackObject final {
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public:
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using Frame = VideoTrack::Frame;
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using Shared = VideoTrack::Shared;
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VideoTrackObject(
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crl::weak_on_queue<VideoTrackObject> weak,
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const PlaybackOptions &options,
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not_null<Shared*> shared,
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Stream &&stream,
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const AudioMsgId &audioId,
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FnMut<void(const Information &)> ready,
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Fn<void(Error)> error);
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void process(std::vector<FFmpeg::Packet> &&packets);
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[[nodisacrd]] rpl::producer<> checkNextFrame() const;
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[[nodisacrd]] rpl::producer<> waitingForData() const;
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void pause(crl::time time);
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void resume(crl::time time);
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void setSpeed(float64 speed);
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void setWaitForMarkAsShown(bool wait);
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void interrupt();
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void frameShown();
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void addTimelineDelay(crl::time delayed);
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void updateFrameRequest(
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const Instance *instance,
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const FrameRequest &request);
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void removeFrameRequest(const Instance *instance);
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private:
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enum class FrameResult {
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Done,
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Error,
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Waiting,
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Looped,
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Finished,
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};
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using ReadEnoughState = base::optional_variant<
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FrameResult,
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Shared::PrepareNextCheck>;
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void fail(Error error);
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[[nodiscard]] bool interrupted() const;
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[[nodiscard]] bool tryReadFirstFrame(FFmpeg::Packet &&packet);
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[[nodiscard]] bool fillStateFromFrame();
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[[nodiscard]] bool processFirstFrame();
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void queueReadFrames(crl::time delay = 0);
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void readFrames();
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[[nodiscard]] ReadEnoughState readEnoughFrames(crl::time trackTime);
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[[nodiscard]] FrameResult readFrame(not_null<Frame*> frame);
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void fillRequests(not_null<Frame*> frame) const;
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[[nodiscard]] QSize chooseOriginalResize() const;
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void presentFrameIfNeeded();
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void callReady();
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[[nodiscard]] bool loopAround();
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[[nodiscard]] crl::time computeDuration() const;
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[[nodiscard]] int durationByPacket(const FFmpeg::Packet &packet);
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// Force frame position to be clamped to [0, duration] and monotonic.
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[[nodiscard]] crl::time currentFramePosition() const;
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[[nodiscard]] TimePoint trackTime() const;
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const crl::weak_on_queue<VideoTrackObject> _weak;
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PlaybackOptions _options;
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// Main thread wrapper destructor will set _shared back to nullptr.
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// All queued method calls after that should be discarded.
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Shared *_shared = nullptr;
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Stream _stream;
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AudioMsgId _audioId;
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bool _readTillEnd = false;
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FnMut<void(const Information &)> _ready;
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Fn<void(Error)> _error;
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crl::time _pausedTime = kTimeUnknown;
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crl::time _resumedTime = kTimeUnknown;
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int _durationByLastPacket = 0;
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mutable TimePoint _syncTimePoint;
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crl::time _loopingShift = 0;
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rpl::event_stream<> _checkNextFrame;
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rpl::event_stream<> _waitingForData;
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base::flat_map<const Instance*, FrameRequest> _requests;
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bool _queued = false;
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base::ConcurrentTimer _readFramesTimer;
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// For initial frame skipping for an exact seek.
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FFmpeg::FramePointer _initialSkippingFrame;
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};
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VideoTrackObject::VideoTrackObject(
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crl::weak_on_queue<VideoTrackObject> weak,
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const PlaybackOptions &options,
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not_null<Shared*> shared,
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Stream &&stream,
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const AudioMsgId &audioId,
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FnMut<void(const Information &)> ready,
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Fn<void(Error)> error)
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: _weak(std::move(weak))
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, _options(options)
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, _shared(shared)
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, _stream(std::move(stream))
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, _audioId(audioId)
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, _ready(std::move(ready))
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, _error(std::move(error))
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, _readFramesTimer(_weak, [=] { readFrames(); }) {
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Expects(_stream.duration > 1);
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Expects(_ready != nullptr);
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Expects(_error != nullptr);
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}
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rpl::producer<> VideoTrackObject::checkNextFrame() const {
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return interrupted()
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? (rpl::complete<>() | rpl::type_erased())
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: !_shared->firstPresentHappened()
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? (_checkNextFrame.events() | rpl::type_erased())
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: _checkNextFrame.events_starting_with({});
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}
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rpl::producer<> VideoTrackObject::waitingForData() const {
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return interrupted()
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? (rpl::never() | rpl::type_erased())
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: _waitingForData.events();
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}
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void VideoTrackObject::process(std::vector<FFmpeg::Packet> &&packets) {
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if (interrupted() || packets.empty()) {
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return;
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}
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if (packets.front().empty()) {
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Assert(packets.size() == 1);
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_readTillEnd = true;
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} else if (!_readTillEnd) {
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//for (const auto &packet : packets) {
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// // Maybe it is enough to count by list.back()?.. hope so.
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// accumulate_max(
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// _durationByLastPacket,
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// durationByPacket(packet));
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// if (interrupted()) {
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// return;
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// }
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//}
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accumulate_max(
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_durationByLastPacket,
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durationByPacket(packets.back()));
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if (interrupted()) {
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return;
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}
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}
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for (auto i = begin(packets), e = end(packets); i != e; ++i) {
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if (_shared->initialized()) {
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_stream.queue.insert(
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end(_stream.queue),
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std::make_move_iterator(i),
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std::make_move_iterator(e));
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queueReadFrames();
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break;
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} else if (!tryReadFirstFrame(std::move(*i))) {
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fail(Error::InvalidData);
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break;
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}
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}
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}
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int VideoTrackObject::durationByPacket(const FFmpeg::Packet &packet) {
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// We've set this value on the first cycle.
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if (_loopingShift || _stream.duration != kDurationUnavailable) {
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return 0;
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}
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const auto result = FFmpeg::DurationByPacket(packet, _stream.timeBase);
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if (result < 0) {
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fail(Error::InvalidData);
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return 0;
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}
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Ensures(result > 0);
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return result;
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}
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void VideoTrackObject::queueReadFrames(crl::time delay) {
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if (delay > 0) {
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_readFramesTimer.callOnce(delay);
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} else if (!_queued) {
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_queued = true;
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_weak.with([](VideoTrackObject &that) {
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that._queued = false;
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that.readFrames();
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});
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}
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}
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void VideoTrackObject::readFrames() {
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if (interrupted()) {
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return;
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}
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auto time = trackTime().trackTime;
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while (true) {
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const auto result = readEnoughFrames(time);
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result.match([&](FrameResult result) {
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if (result == FrameResult::Done
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|| result == FrameResult::Finished) {
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presentFrameIfNeeded();
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} else if (result == FrameResult::Looped) {
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const auto duration = computeDuration();
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Assert(duration != kDurationUnavailable);
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time -= duration;
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}
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}, [&](Shared::PrepareNextCheck delay) {
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Expects(delay == kTimeUnknown || delay > 0);
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if (delay != kTimeUnknown) {
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queueReadFrames(delay);
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}
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}, [](std::nullopt_t) {
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});
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if (result.has_value()) {
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break;
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}
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}
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}
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auto VideoTrackObject::readEnoughFrames(crl::time trackTime)
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-> ReadEnoughState {
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const auto dropStaleFrames = !_options.waitForMarkAsShown;
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const auto state = _shared->prepareState(trackTime, dropStaleFrames);
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return state.match([&](Shared::PrepareFrame frame) -> ReadEnoughState {
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while (true) {
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const auto result = readFrame(frame);
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if (result != FrameResult::Done) {
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return result;
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} else if (!dropStaleFrames
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|| !VideoTrack::IsStale(frame, trackTime)) {
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return std::nullopt;
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}
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}
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}, [&](Shared::PrepareNextCheck delay) -> ReadEnoughState {
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return delay;
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}, [&](std::nullopt_t) -> ReadEnoughState {
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return FrameResult::Done;
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});
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}
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bool VideoTrackObject::loopAround() {
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const auto duration = computeDuration();
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if (duration == kDurationUnavailable) {
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LOG(("Streaming Error: "
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"Couldn't find out the real video stream duration."));
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return false;
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}
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avcodec_flush_buffers(_stream.codec.get());
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_loopingShift += duration;
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_readTillEnd = false;
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return true;
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}
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crl::time VideoTrackObject::computeDuration() const {
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if (_stream.duration != kDurationUnavailable) {
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return _stream.duration;
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} else if ((_loopingShift || _readTillEnd) && _durationByLastPacket) {
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// We looped, so it already holds full stream duration.
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return _durationByLastPacket;
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}
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return kDurationUnavailable;
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}
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auto VideoTrackObject::readFrame(not_null<Frame*> frame) -> FrameResult {
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if (const auto error = ReadNextFrame(_stream)) {
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if (error.code() == AVERROR_EOF) {
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if (!_options.loop) {
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frame->position = kFinishedPosition;
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frame->displayed = kTimeUnknown;
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return FrameResult::Finished;
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} else if (loopAround()) {
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return FrameResult::Looped;
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} else {
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fail(Error::InvalidData);
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return FrameResult::Error;
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}
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} else if (error.code() != AVERROR(EAGAIN) || _readTillEnd) {
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fail(Error::InvalidData);
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return FrameResult::Error;
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}
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Assert(_stream.queue.empty());
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_waitingForData.fire({});
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return FrameResult::Waiting;
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}
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const auto position = currentFramePosition();
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if (position == kTimeUnknown) {
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fail(Error::InvalidData);
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return FrameResult::Error;
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}
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std::swap(frame->decoded, _stream.frame);
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frame->position = position;
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frame->displayed = kTimeUnknown;
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return FrameResult::Done;
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}
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void VideoTrackObject::fillRequests(not_null<Frame*> frame) const {
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auto i = frame->prepared.begin();
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for (const auto &[instance, request] : _requests) {
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while (i != frame->prepared.end() && i->first < instance) {
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i = frame->prepared.erase(i);
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}
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if (i == frame->prepared.end() || i->first > instance) {
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i = frame->prepared.emplace(instance, request).first;
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}
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++i;
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}
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while (i != frame->prepared.end()) {
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i = frame->prepared.erase(i);
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}
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}
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QSize VideoTrackObject::chooseOriginalResize() const {
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auto chosen = QSize();
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for (const auto &[_, request] : _requests) {
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if (request.resize.isEmpty()) {
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return QSize();
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}
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const auto byWidth = (request.resize.width() >= chosen.width());
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const auto byHeight = (request.resize.height() >= chosen.height());
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if (byWidth && byHeight) {
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chosen = request.resize;
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} else if (byWidth || byHeight) {
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return QSize();
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}
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}
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return chosen;
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}
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void VideoTrackObject::presentFrameIfNeeded() {
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if (_pausedTime != kTimeUnknown || _resumedTime == kTimeUnknown) {
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return;
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}
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const auto rasterize = [&](not_null<Frame*> frame) {
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Expects(frame->position != kFinishedPosition);
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fillRequests(frame);
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frame->original = ConvertFrame(
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_stream,
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frame->decoded.get(),
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chooseOriginalResize(),
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std::move(frame->original));
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if (frame->original.isNull()) {
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frame->prepared.clear();
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fail(Error::InvalidData);
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return;
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}
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VideoTrack::PrepareFrameByRequests(frame, _stream.rotation);
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Ensures(VideoTrack::IsRasterized(frame));
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};
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const auto dropStaleFrames = !_options.waitForMarkAsShown;
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const auto presented = _shared->presentFrame(
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trackTime(),
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_options.speed,
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dropStaleFrames,
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rasterize);
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addTimelineDelay(presented.addedWorldTimeDelay);
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if (presented.displayPosition == kFinishedPosition) {
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interrupt();
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_checkNextFrame = rpl::event_stream<>();
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return;
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} else if (presented.displayPosition != kTimeUnknown) {
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_checkNextFrame.fire({});
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}
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if (presented.nextCheckDelay != kTimeUnknown) {
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Assert(presented.nextCheckDelay >= 0);
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queueReadFrames(presented.nextCheckDelay);
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}
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}
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void VideoTrackObject::pause(crl::time time) {
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Expects(_syncTimePoint.valid());
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if (interrupted()) {
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return;
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} else if (_pausedTime == kTimeUnknown) {
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_pausedTime = time;
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}
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}
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void VideoTrackObject::resume(crl::time time) {
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Expects(_syncTimePoint.trackTime != kTimeUnknown);
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if (interrupted()) {
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return;
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}
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// Resumed time used to validate sync to audio.
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_resumedTime = time;
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if (_pausedTime != kTimeUnknown) {
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Assert(_pausedTime <= time);
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_syncTimePoint.worldTime += (time - _pausedTime);
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_pausedTime = kTimeUnknown;
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} else {
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_syncTimePoint.worldTime = time;
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}
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queueReadFrames();
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Ensures(_syncTimePoint.valid());
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Ensures(_pausedTime == kTimeUnknown);
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}
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void VideoTrackObject::setSpeed(float64 speed) {
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if (interrupted()) {
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return;
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}
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if (_syncTimePoint.valid()) {
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_syncTimePoint = trackTime();
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}
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_options.speed = speed;
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}
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void VideoTrackObject::setWaitForMarkAsShown(bool wait) {
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if (interrupted()) {
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return;
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}
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_options.waitForMarkAsShown = wait;
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}
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bool VideoTrackObject::interrupted() const {
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return (_shared == nullptr);
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}
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void VideoTrackObject::frameShown() {
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if (interrupted()) {
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return;
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}
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queueReadFrames();
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}
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void VideoTrackObject::addTimelineDelay(crl::time delayed) {
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Expects(_syncTimePoint.valid());
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if (!delayed) {
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return;
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}
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_syncTimePoint.worldTime += delayed;
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}
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void VideoTrackObject::updateFrameRequest(
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const Instance *instance,
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const FrameRequest &request) {
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_requests.emplace(instance, request);
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}
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void VideoTrackObject::removeFrameRequest(const Instance *instance) {
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_requests.remove(instance);
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}
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bool VideoTrackObject::tryReadFirstFrame(FFmpeg::Packet &&packet) {
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if (ProcessPacket(_stream, std::move(packet)).failed()) {
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return false;
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}
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while (true) {
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if (const auto error = ReadNextFrame(_stream)) {
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if (error.code() == AVERROR_EOF) {
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if (!_initialSkippingFrame) {
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return false;
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}
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// Return the last valid frame if we seek too far.
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_stream.frame = std::move(_initialSkippingFrame);
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return processFirstFrame();
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} else if (error.code() != AVERROR(EAGAIN) || _readTillEnd) {
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return false;
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} else {
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// Waiting for more packets.
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return true;
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}
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} else if (!fillStateFromFrame()) {
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return false;
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} else if (_syncTimePoint.trackTime >= _options.position) {
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return processFirstFrame();
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}
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// Seek was with AVSEEK_FLAG_BACKWARD so first we get old frames.
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// Try skipping frames until one is after the requested position.
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std::swap(_initialSkippingFrame, _stream.frame);
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if (!_stream.frame) {
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_stream.frame = FFmpeg::MakeFramePointer();
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}
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}
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}
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bool VideoTrackObject::processFirstFrame() {
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auto frame = ConvertFrame(
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_stream,
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_stream.frame.get(),
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QSize(),
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QImage());
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if (frame.isNull()) {
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return false;
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}
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_shared->init(std::move(frame), _syncTimePoint.trackTime);
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callReady();
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queueReadFrames();
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return true;
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}
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crl::time VideoTrackObject::currentFramePosition() const {
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const auto position = FramePosition(_stream);
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if (position == kTimeUnknown || position == kFinishedPosition) {
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return kTimeUnknown;
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}
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return _loopingShift + std::clamp(
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position,
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crl::time(0),
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computeDuration() - 1);
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}
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|
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bool VideoTrackObject::fillStateFromFrame() {
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const auto position = currentFramePosition();
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if (position == kTimeUnknown) {
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return false;
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}
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_syncTimePoint.trackTime = position;
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return true;
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}
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void VideoTrackObject::callReady() {
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Expects(_ready != nullptr);
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|
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const auto frame = _shared->frameForPaint();
|
|
|
|
auto data = VideoInformation();
|
|
data.size = FFmpeg::CorrectByAspect(
|
|
frame->original.size(),
|
|
_stream.aspect);
|
|
if (FFmpeg::RotationSwapWidthHeight(_stream.rotation)) {
|
|
data.size.transpose();
|
|
}
|
|
data.cover = frame->original;
|
|
data.rotation = _stream.rotation;
|
|
data.state.duration = _stream.duration;
|
|
data.state.position = _syncTimePoint.trackTime;
|
|
data.state.receivedTill = _readTillEnd
|
|
? _stream.duration
|
|
: _syncTimePoint.trackTime;
|
|
base::take(_ready)({ data });
|
|
}
|
|
|
|
TimePoint VideoTrackObject::trackTime() const {
|
|
auto result = TimePoint();
|
|
result.worldTime = (_pausedTime != kTimeUnknown)
|
|
? _pausedTime
|
|
: crl::now();
|
|
if (!_syncTimePoint) {
|
|
result.trackTime = _syncTimePoint.trackTime;
|
|
return result;
|
|
}
|
|
|
|
Assert(_resumedTime != kTimeUnknown);
|
|
if (_options.syncVideoByAudio && _audioId.externalPlayId()) {
|
|
const auto mixer = Media::Player::mixer();
|
|
const auto point = mixer->getExternalSyncTimePoint(_audioId);
|
|
if (point && point.worldTime > _resumedTime) {
|
|
_syncTimePoint = point;
|
|
}
|
|
}
|
|
const auto adjust = (result.worldTime - _syncTimePoint.worldTime);
|
|
result.trackTime = _syncTimePoint.trackTime
|
|
+ crl::time(std::round(adjust * _options.speed));
|
|
return result;
|
|
}
|
|
|
|
void VideoTrackObject::interrupt() {
|
|
_shared = nullptr;
|
|
}
|
|
|
|
void VideoTrackObject::fail(Error error) {
|
|
interrupt();
|
|
_error(error);
|
|
}
|
|
|
|
void VideoTrack::Shared::init(QImage &&cover, crl::time position) {
|
|
Expects(!initialized());
|
|
|
|
_frames[0].original = std::move(cover);
|
|
_frames[0].position = position;
|
|
|
|
// Usually main thread sets displayed time before _counter increment.
|
|
// But in this case we update _counter, so we set a fake displayed time.
|
|
_frames[0].displayed = kDisplaySkipped;
|
|
|
|
_delay = 0;
|
|
_counter.store(0, std::memory_order_release);
|
|
}
|
|
|
|
int VideoTrack::Shared::counter() const {
|
|
return _counter.load(std::memory_order_acquire);
|
|
}
|
|
|
|
bool VideoTrack::Shared::initialized() const {
|
|
return (counter() != kCounterUninitialized);
|
|
}
|
|
|
|
not_null<VideoTrack::Frame*> VideoTrack::Shared::getFrame(int index) {
|
|
Expects(index >= 0 && index < kFramesCount);
|
|
|
|
return &_frames[index];
|
|
}
|
|
|
|
not_null<const VideoTrack::Frame*> VideoTrack::Shared::getFrame(
|
|
int index) const {
|
|
Expects(index >= 0 && index < kFramesCount);
|
|
|
|
return &_frames[index];
|
|
}
|
|
|
|
auto VideoTrack::Shared::prepareState(
|
|
crl::time trackTime,
|
|
bool dropStaleFrames)
|
|
-> PrepareState {
|
|
const auto prepareNext = [&](int index) -> PrepareState {
|
|
const auto frame = getFrame(index);
|
|
const auto next = getFrame((index + 1) % kFramesCount);
|
|
if (!IsDecoded(frame)) {
|
|
return frame;
|
|
} else if (!IsDecoded(next)) {
|
|
return next;
|
|
} else if (next->position < frame->position) {
|
|
std::swap(*frame, *next);
|
|
}
|
|
if (next->position == kFinishedPosition || !dropStaleFrames) {
|
|
return PrepareNextCheck(kTimeUnknown);
|
|
} else if (IsStale(frame, trackTime)) {
|
|
std::swap(*frame, *next);
|
|
next->displayed = kDisplaySkipped;
|
|
return next;
|
|
} else {
|
|
return PrepareNextCheck(frame->position - trackTime + 1);
|
|
}
|
|
};
|
|
const auto finishPrepare = [&](int index) -> PrepareState {
|
|
// If player already awaits next frame - we ignore if it's stale.
|
|
dropStaleFrames = false;
|
|
const auto result = prepareNext(index);
|
|
return result.is<PrepareNextCheck>() ? PrepareState() : result;
|
|
};
|
|
|
|
switch (counter()) {
|
|
case 0: return finishPrepare(1);
|
|
case 1: return prepareNext(2);
|
|
case 2: return finishPrepare(2);
|
|
case 3: return prepareNext(3);
|
|
case 4: return finishPrepare(3);
|
|
case 5: return prepareNext(0);
|
|
case 6: return finishPrepare(0);
|
|
case 7: return prepareNext(1);
|
|
}
|
|
Unexpected("Counter value in VideoTrack::Shared::prepareState.");
|
|
}
|
|
|
|
// Sometimes main thread subscribes to check frame requests before
|
|
// the first frame is ready and presented and sometimes after.
|
|
bool VideoTrack::Shared::firstPresentHappened() const {
|
|
switch (counter()) {
|
|
case 0: return false;
|
|
case 1: return true;
|
|
}
|
|
Unexpected("Counter value in VideoTrack::Shared::firstPresentHappened.");
|
|
}
|
|
|
|
template <typename RasterizeCallback>
|
|
auto VideoTrack::Shared::presentFrame(
|
|
TimePoint time,
|
|
float64 playbackSpeed,
|
|
bool dropStaleFrames,
|
|
RasterizeCallback &&rasterize)
|
|
-> PresentFrame {
|
|
const auto present = [&](int counter, int index) -> PresentFrame {
|
|
const auto frame = getFrame(index);
|
|
const auto position = frame->position;
|
|
const auto addedWorldTimeDelay = base::take(_delay);
|
|
if (position == kFinishedPosition) {
|
|
return { kFinishedPosition, kTimeUnknown, addedWorldTimeDelay };
|
|
}
|
|
rasterize(frame);
|
|
if (!IsRasterized(frame)) {
|
|
// Error happened during frame prepare.
|
|
return { kTimeUnknown, kTimeUnknown, addedWorldTimeDelay };
|
|
}
|
|
const auto trackLeft = position - time.trackTime;
|
|
frame->display = time.worldTime
|
|
+ addedWorldTimeDelay
|
|
+ crl::time(std::round(trackLeft / playbackSpeed));
|
|
|
|
// Release this frame to the main thread for rendering.
|
|
_counter.store(
|
|
(counter + 1) % (2 * kFramesCount),
|
|
std::memory_order_release);
|
|
return { position, crl::time(0), addedWorldTimeDelay };
|
|
};
|
|
const auto nextCheckDelay = [&](int index) -> PresentFrame {
|
|
const auto frame = getFrame(index);
|
|
if (frame->position == kFinishedPosition) {
|
|
return { kFinishedPosition, kTimeUnknown };
|
|
}
|
|
const auto next = getFrame((index + 1) % kFramesCount);
|
|
if (!IsDecoded(frame) || !IsDecoded(next)) {
|
|
return { kTimeUnknown, crl::time(0) };
|
|
} else if (next->position == kFinishedPosition
|
|
|| !dropStaleFrames
|
|
|| IsStale(frame, time.trackTime)) {
|
|
return { kTimeUnknown, kTimeUnknown };
|
|
}
|
|
return { kTimeUnknown, (frame->position - time.trackTime + 1) };
|
|
};
|
|
|
|
switch (counter()) {
|
|
case 0: return present(0, 1);
|
|
case 1: return nextCheckDelay(2);
|
|
case 2: return present(2, 2);
|
|
case 3: return nextCheckDelay(3);
|
|
case 4: return present(4, 3);
|
|
case 5: return nextCheckDelay(0);
|
|
case 6: return present(6, 0);
|
|
case 7: return nextCheckDelay(1);
|
|
}
|
|
Unexpected("Counter value in VideoTrack::Shared::prepareState.");
|
|
}
|
|
|
|
crl::time VideoTrack::Shared::nextFrameDisplayTime() const {
|
|
const auto frameDisplayTime = [&](int counter) {
|
|
const auto next = (counter + 1) % (2 * kFramesCount);
|
|
const auto index = next / 2;
|
|
const auto frame = getFrame(index);
|
|
if (frame->displayed != kTimeUnknown) {
|
|
// Frame already displayed, but not yet shown.
|
|
return kFrameDisplayTimeAlreadyDone;
|
|
}
|
|
Assert(IsRasterized(frame));
|
|
Assert(frame->display != kTimeUnknown);
|
|
|
|
return frame->display;
|
|
};
|
|
|
|
switch (counter()) {
|
|
case 0: return kTimeUnknown;
|
|
case 1: return frameDisplayTime(1);
|
|
case 2: return kTimeUnknown;
|
|
case 3: return frameDisplayTime(3);
|
|
case 4: return kTimeUnknown;
|
|
case 5: return frameDisplayTime(5);
|
|
case 6: return kTimeUnknown;
|
|
case 7: return frameDisplayTime(7);
|
|
}
|
|
Unexpected("Counter value in VideoTrack::Shared::nextFrameDisplayTime.");
|
|
}
|
|
|
|
crl::time VideoTrack::Shared::markFrameDisplayed(crl::time now) {
|
|
const auto mark = [&](int counter) {
|
|
const auto next = (counter + 1) % (2 * kFramesCount);
|
|
const auto index = next / 2;
|
|
const auto frame = getFrame(index);
|
|
Assert(frame->position != kTimeUnknown);
|
|
if (frame->displayed == kTimeUnknown) {
|
|
frame->displayed = now;
|
|
}
|
|
return frame->position;
|
|
};
|
|
|
|
switch (counter()) {
|
|
case 0: Unexpected("Value 0 in VideoTrack::Shared::markFrameDisplayed.");
|
|
case 1: return mark(1);
|
|
case 2: Unexpected("Value 2 in VideoTrack::Shared::markFrameDisplayed.");
|
|
case 3: return mark(3);
|
|
case 4: Unexpected("Value 4 in VideoTrack::Shared::markFrameDisplayed.");
|
|
case 5: return mark(5);
|
|
case 6: Unexpected("Value 6 in VideoTrack::Shared::markFrameDisplayed.");
|
|
case 7: return mark(7);
|
|
}
|
|
Unexpected("Counter value in VideoTrack::Shared::markFrameDisplayed.");
|
|
}
|
|
|
|
void VideoTrack::Shared::addTimelineDelay(crl::time delayed) {
|
|
if (!delayed) {
|
|
return;
|
|
}
|
|
const auto recountCurrentFrame = [&](int counter) {
|
|
_delay += delayed;
|
|
//const auto next = (counter + 1) % (2 * kFramesCount);
|
|
//const auto index = next / 2;
|
|
//const auto frame = getFrame(index);
|
|
//if (frame->displayed != kTimeUnknown) {
|
|
// // Frame already displayed.
|
|
// return;
|
|
//}
|
|
//Assert(IsRasterized(frame));
|
|
//Assert(frame->display != kTimeUnknown);
|
|
//frame->display = countFrameDisplayTime(frame->index);
|
|
};
|
|
|
|
switch (counter()) {
|
|
case 0: Unexpected("Value 0 in VideoTrack::Shared::addTimelineDelay.");
|
|
case 1: return recountCurrentFrame(1);
|
|
case 2: Unexpected("Value 2 in VideoTrack::Shared::addTimelineDelay.");
|
|
case 3: return recountCurrentFrame(3);
|
|
case 4: Unexpected("Value 4 in VideoTrack::Shared::addTimelineDelay.");
|
|
case 5: return recountCurrentFrame(5);
|
|
case 6: Unexpected("Value 6 in VideoTrack::Shared::addTimelineDelay.");
|
|
case 7: return recountCurrentFrame(7);
|
|
}
|
|
Unexpected("Counter value in VideoTrack::Shared::addTimelineDelay.");
|
|
}
|
|
|
|
bool VideoTrack::Shared::markFrameShown() {
|
|
const auto jump = [&](int counter) {
|
|
const auto next = (counter + 1) % (2 * kFramesCount);
|
|
const auto index = next / 2;
|
|
const auto frame = getFrame(index);
|
|
if (frame->displayed == kTimeUnknown) {
|
|
return false;
|
|
}
|
|
_counter.store(
|
|
next,
|
|
std::memory_order_release);
|
|
return true;
|
|
};
|
|
|
|
switch (counter()) {
|
|
case 0: return false;
|
|
case 1: return jump(1);
|
|
case 2: return false;
|
|
case 3: return jump(3);
|
|
case 4: return false;
|
|
case 5: return jump(5);
|
|
case 6: return false;
|
|
case 7: return jump(7);
|
|
}
|
|
Unexpected("Counter value in VideoTrack::Shared::markFrameShown.");
|
|
}
|
|
|
|
not_null<VideoTrack::Frame*> VideoTrack::Shared::frameForPaint() {
|
|
const auto result = getFrame(counter() / 2);
|
|
Assert(!result->original.isNull());
|
|
Assert(result->position != kTimeUnknown);
|
|
Assert(result->displayed != kTimeUnknown);
|
|
|
|
return result;
|
|
}
|
|
|
|
VideoTrack::VideoTrack(
|
|
const PlaybackOptions &options,
|
|
Stream &&stream,
|
|
const AudioMsgId &audioId,
|
|
FnMut<void(const Information &)> ready,
|
|
Fn<void(Error)> error)
|
|
: _streamIndex(stream.index)
|
|
, _streamTimeBase(stream.timeBase)
|
|
, _streamDuration(stream.duration)
|
|
, _streamRotation(stream.rotation)
|
|
//, _streamAspect(stream.aspect)
|
|
, _shared(std::make_unique<Shared>())
|
|
, _wrapped(
|
|
options,
|
|
_shared.get(),
|
|
std::move(stream),
|
|
audioId,
|
|
std::move(ready),
|
|
std::move(error)) {
|
|
}
|
|
|
|
int VideoTrack::streamIndex() const {
|
|
return _streamIndex;
|
|
}
|
|
|
|
AVRational VideoTrack::streamTimeBase() const {
|
|
return _streamTimeBase;
|
|
}
|
|
|
|
crl::time VideoTrack::streamDuration() const {
|
|
return _streamDuration;
|
|
}
|
|
|
|
void VideoTrack::process(std::vector<FFmpeg::Packet> &&packets) {
|
|
_wrapped.with([
|
|
packets = std::move(packets)
|
|
](Implementation &unwrapped) mutable {
|
|
unwrapped.process(std::move(packets));
|
|
});
|
|
}
|
|
|
|
void VideoTrack::waitForData() {
|
|
}
|
|
|
|
void VideoTrack::pause(crl::time time) {
|
|
_wrapped.with([=](Implementation &unwrapped) {
|
|
unwrapped.pause(time);
|
|
});
|
|
}
|
|
|
|
void VideoTrack::resume(crl::time time) {
|
|
_wrapped.with([=](Implementation &unwrapped) {
|
|
unwrapped.resume(time);
|
|
});
|
|
}
|
|
|
|
void VideoTrack::setSpeed(float64 speed) {
|
|
_wrapped.with([=](Implementation &unwrapped) {
|
|
unwrapped.setSpeed(speed);
|
|
});
|
|
}
|
|
|
|
void VideoTrack::setWaitForMarkAsShown(bool wait) {
|
|
_wrapped.with([=](Implementation &unwrapped) {
|
|
unwrapped.setWaitForMarkAsShown(wait);
|
|
});
|
|
}
|
|
|
|
crl::time VideoTrack::nextFrameDisplayTime() const {
|
|
return _shared->nextFrameDisplayTime();
|
|
}
|
|
|
|
crl::time VideoTrack::markFrameDisplayed(crl::time now) {
|
|
const auto result = _shared->markFrameDisplayed(now);
|
|
|
|
Ensures(result != kTimeUnknown);
|
|
return result;
|
|
}
|
|
|
|
void VideoTrack::addTimelineDelay(crl::time delayed) {
|
|
_shared->addTimelineDelay(delayed);
|
|
//if (!delayed) {
|
|
// return;
|
|
//}
|
|
//_wrapped.with([=](Implementation &unwrapped) mutable {
|
|
// unwrapped.addTimelineDelay(delayed);
|
|
//});
|
|
}
|
|
|
|
bool VideoTrack::markFrameShown() {
|
|
if (!_shared->markFrameShown()) {
|
|
return false;
|
|
}
|
|
_wrapped.with([](Implementation &unwrapped) {
|
|
unwrapped.frameShown();
|
|
});
|
|
return true;
|
|
}
|
|
|
|
QImage VideoTrack::frame(
|
|
const FrameRequest &request,
|
|
const Instance *instance) {
|
|
const auto frame = _shared->frameForPaint();
|
|
const auto i = frame->prepared.find(instance);
|
|
const auto none = (i == frame->prepared.end());
|
|
const auto preparedFor = frame->prepared.empty()
|
|
? FrameRequest::NonStrict()
|
|
: (none ? frame->prepared.begin() : i)->second.request;
|
|
const auto changed = !preparedFor.goodFor(request);
|
|
const auto useRequest = changed ? request : preparedFor;
|
|
if (changed) {
|
|
_wrapped.with([=](Implementation &unwrapped) {
|
|
unwrapped.updateFrameRequest(instance, useRequest);
|
|
});
|
|
}
|
|
if (GoodForRequest(frame->original, _streamRotation, useRequest)) {
|
|
return frame->original;
|
|
} else if (changed || none || i->second.image.isNull()) {
|
|
const auto j = none
|
|
? frame->prepared.emplace(instance, useRequest).first
|
|
: i;
|
|
if (changed && !none) {
|
|
i->second.request = useRequest;
|
|
}
|
|
if (frame->prepared.size() > 1) {
|
|
for (auto &[alreadyInstance, prepared] : frame->prepared) {
|
|
if (alreadyInstance != instance
|
|
&& prepared.request == useRequest
|
|
&& !prepared.image.isNull()) {
|
|
return prepared.image;
|
|
}
|
|
}
|
|
}
|
|
j->second.image = PrepareByRequest(
|
|
frame->original,
|
|
_streamRotation,
|
|
useRequest,
|
|
std::move(j->second.image));
|
|
return j->second.image;
|
|
}
|
|
return i->second.image;
|
|
}
|
|
|
|
void VideoTrack::unregisterInstance(not_null<const Instance*> instance) {
|
|
_wrapped.with([=](Implementation &unwrapped) {
|
|
unwrapped.removeFrameRequest(instance);
|
|
});
|
|
}
|
|
|
|
void VideoTrack::PrepareFrameByRequests(
|
|
not_null<Frame*> frame,
|
|
int rotation) {
|
|
Expects(!frame->original.isNull());
|
|
|
|
const auto begin = frame->prepared.begin();
|
|
const auto end = frame->prepared.end();
|
|
for (auto i = begin; i != end; ++i) {
|
|
auto &prepared = i->second;
|
|
if (!GoodForRequest(frame->original, rotation, prepared.request)) {
|
|
auto j = begin;
|
|
for (; j != i; ++j) {
|
|
if (j->second.request == prepared.request) {
|
|
prepared.image = QImage();
|
|
break;
|
|
}
|
|
}
|
|
if (j == i) {
|
|
prepared.image = PrepareByRequest(
|
|
frame->original,
|
|
rotation,
|
|
prepared.request,
|
|
std::move(prepared.image));
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
bool VideoTrack::IsDecoded(not_null<const Frame*> frame) {
|
|
return (frame->position != kTimeUnknown)
|
|
&& (frame->displayed == kTimeUnknown);
|
|
}
|
|
|
|
bool VideoTrack::IsRasterized(not_null<const Frame*> frame) {
|
|
return IsDecoded(frame)
|
|
&& !frame->original.isNull();
|
|
}
|
|
|
|
bool VideoTrack::IsStale(not_null<const Frame*> frame, crl::time trackTime) {
|
|
Expects(IsDecoded(frame));
|
|
|
|
return (frame->position < trackTime);
|
|
}
|
|
|
|
rpl::producer<> VideoTrack::checkNextFrame() const {
|
|
return _wrapped.producer_on_main([](const Implementation &unwrapped) {
|
|
return unwrapped.checkNextFrame();
|
|
});
|
|
}
|
|
|
|
rpl::producer<> VideoTrack::waitingForData() const {
|
|
return _wrapped.producer_on_main([](const Implementation &unwrapped) {
|
|
return unwrapped.waitingForData();
|
|
});
|
|
}
|
|
|
|
VideoTrack::~VideoTrack() {
|
|
_wrapped.with([shared = std::move(_shared)](Implementation &unwrapped) {
|
|
unwrapped.interrupt();
|
|
});
|
|
}
|
|
|
|
} // namespace Streaming
|
|
} // namespace Media
|