173 lines
6.2 KiB
C++
173 lines
6.2 KiB
C++
/*
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* Copyright (c) 2016 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "media/base/video_broadcaster.h"
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#include <vector>
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#include "absl/types/optional.h"
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#include "api/video/i420_buffer.h"
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#include "api/video/video_rotation.h"
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#include "media/base/video_common.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/logging.h"
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namespace rtc {
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VideoBroadcaster::VideoBroadcaster() = default;
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VideoBroadcaster::~VideoBroadcaster() = default;
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void VideoBroadcaster::AddOrUpdateSink(
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VideoSinkInterface<webrtc::VideoFrame>* sink,
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const VideoSinkWants& wants) {
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RTC_DCHECK(sink != nullptr);
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webrtc::MutexLock lock(&sinks_and_wants_lock_);
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if (!FindSinkPair(sink)) {
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// `Sink` is a new sink, which didn't receive previous frame.
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previous_frame_sent_to_all_sinks_ = false;
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if (last_constraints_.has_value()) {
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RTC_LOG(LS_INFO) << __func__ << " forwarding stored constraints min_fps "
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<< last_constraints_->min_fps.value_or(-1) << " max_fps "
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<< last_constraints_->max_fps.value_or(-1);
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sink->OnConstraintsChanged(*last_constraints_);
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}
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}
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VideoSourceBase::AddOrUpdateSink(sink, wants);
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UpdateWants();
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}
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void VideoBroadcaster::RemoveSink(
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VideoSinkInterface<webrtc::VideoFrame>* sink) {
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RTC_DCHECK(sink != nullptr);
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webrtc::MutexLock lock(&sinks_and_wants_lock_);
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VideoSourceBase::RemoveSink(sink);
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UpdateWants();
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}
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bool VideoBroadcaster::frame_wanted() const {
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webrtc::MutexLock lock(&sinks_and_wants_lock_);
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return !sink_pairs().empty();
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}
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VideoSinkWants VideoBroadcaster::wants() const {
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webrtc::MutexLock lock(&sinks_and_wants_lock_);
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return current_wants_;
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}
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void VideoBroadcaster::OnFrame(const webrtc::VideoFrame& frame) {
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webrtc::MutexLock lock(&sinks_and_wants_lock_);
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bool current_frame_was_discarded = false;
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for (auto& sink_pair : sink_pairs()) {
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if (sink_pair.wants.rotation_applied &&
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frame.rotation() != webrtc::kVideoRotation_0) {
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// Calls to OnFrame are not synchronized with changes to the sink wants.
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// When rotation_applied is set to true, one or a few frames may get here
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// with rotation still pending. Protect sinks that don't expect any
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// pending rotation.
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RTC_LOG(LS_VERBOSE) << "Discarding frame with unexpected rotation.";
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sink_pair.sink->OnDiscardedFrame();
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current_frame_was_discarded = true;
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continue;
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}
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if (sink_pair.wants.black_frames) {
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webrtc::VideoFrame black_frame =
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webrtc::VideoFrame::Builder()
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.set_video_frame_buffer(
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GetBlackFrameBuffer(frame.width(), frame.height()))
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.set_rotation(frame.rotation())
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.set_timestamp_us(frame.timestamp_us())
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.set_id(frame.id())
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.build();
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sink_pair.sink->OnFrame(black_frame);
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} else if (!previous_frame_sent_to_all_sinks_ && frame.has_update_rect()) {
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// Since last frame was not sent to some sinks, no reliable update
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// information is available, so we need to clear the update rect.
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webrtc::VideoFrame copy = frame;
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copy.clear_update_rect();
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sink_pair.sink->OnFrame(copy);
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} else {
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sink_pair.sink->OnFrame(frame);
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}
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}
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previous_frame_sent_to_all_sinks_ = !current_frame_was_discarded;
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}
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void VideoBroadcaster::OnDiscardedFrame() {
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webrtc::MutexLock lock(&sinks_and_wants_lock_);
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for (auto& sink_pair : sink_pairs()) {
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sink_pair.sink->OnDiscardedFrame();
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}
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}
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void VideoBroadcaster::ProcessConstraints(
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const webrtc::VideoTrackSourceConstraints& constraints) {
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webrtc::MutexLock lock(&sinks_and_wants_lock_);
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RTC_LOG(LS_INFO) << __func__ << " min_fps "
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<< constraints.min_fps.value_or(-1) << " max_fps "
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<< constraints.max_fps.value_or(-1) << " broadcasting to "
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<< sink_pairs().size() << " sinks.";
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last_constraints_ = constraints;
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for (auto& sink_pair : sink_pairs())
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sink_pair.sink->OnConstraintsChanged(constraints);
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}
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void VideoBroadcaster::UpdateWants() {
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VideoSinkWants wants;
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wants.rotation_applied = false;
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wants.resolution_alignment = 1;
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for (auto& sink : sink_pairs()) {
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// wants.rotation_applied == ANY(sink.wants.rotation_applied)
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if (sink.wants.rotation_applied) {
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wants.rotation_applied = true;
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}
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// wants.max_pixel_count == MIN(sink.wants.max_pixel_count)
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if (sink.wants.max_pixel_count < wants.max_pixel_count) {
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wants.max_pixel_count = sink.wants.max_pixel_count;
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}
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// Select the minimum requested target_pixel_count, if any, of all sinks so
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// that we don't over utilize the resources for any one.
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// TODO(sprang): Consider using the median instead, since the limit can be
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// expressed by max_pixel_count.
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if (sink.wants.target_pixel_count &&
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(!wants.target_pixel_count ||
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(*sink.wants.target_pixel_count < *wants.target_pixel_count))) {
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wants.target_pixel_count = sink.wants.target_pixel_count;
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}
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// Select the minimum for the requested max framerates.
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if (sink.wants.max_framerate_fps < wants.max_framerate_fps) {
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wants.max_framerate_fps = sink.wants.max_framerate_fps;
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}
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wants.resolution_alignment = cricket::LeastCommonMultiple(
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wants.resolution_alignment, sink.wants.resolution_alignment);
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}
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if (wants.target_pixel_count &&
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*wants.target_pixel_count >= wants.max_pixel_count) {
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wants.target_pixel_count.emplace(wants.max_pixel_count);
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}
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current_wants_ = wants;
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}
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const rtc::scoped_refptr<webrtc::VideoFrameBuffer>&
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VideoBroadcaster::GetBlackFrameBuffer(int width, int height) {
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if (!black_frame_buffer_ || black_frame_buffer_->width() != width ||
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black_frame_buffer_->height() != height) {
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rtc::scoped_refptr<webrtc::I420Buffer> buffer =
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webrtc::I420Buffer::Create(width, height);
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webrtc::I420Buffer::SetBlack(buffer.get());
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black_frame_buffer_ = buffer;
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}
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return black_frame_buffer_;
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}
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} // namespace rtc
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