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Because they usually happen for all or for no frames in a stream. Bug: chrome:801327 Change-Id: Ie09b93a0822e821076ff2743cf1223c29fcf44a6 Reviewed-on: https://webrtc-review.googlesource.com/39785 Reviewed-by: Rasmus Brandt <brandtr@webrtc.org> Commit-Queue: Ilya Nikolaevskiy <ilnik@webrtc.org> Cr-Commit-Position: refs/heads/master@{#21644}
424 lines
18 KiB
C++
424 lines
18 KiB
C++
/*
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* Copyright (c) 2012 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 "modules/video_coding/generic_encoder.h"
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#include <vector>
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#include "api/optional.h"
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#include "api/video/i420_buffer.h"
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#include "modules/include/module_common_types_public.h"
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#include "modules/video_coding/encoded_frame.h"
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#include "modules/video_coding/media_optimization.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/experiments/alr_experiment.h"
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#include "rtc_base/logging.h"
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#include "rtc_base/timeutils.h"
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#include "rtc_base/trace_event.h"
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#include "system_wrappers/include/field_trial.h"
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namespace webrtc {
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namespace {
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const int kMessagesThrottlingThreshold = 2;
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const int kThrottleRatio = 100000;
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} // namespace
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VCMGenericEncoder::VCMGenericEncoder(
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VideoEncoder* encoder,
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VCMEncodedFrameCallback* encoded_frame_callback,
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bool internal_source)
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: encoder_(encoder),
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vcm_encoded_frame_callback_(encoded_frame_callback),
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internal_source_(internal_source),
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encoder_params_({BitrateAllocation(), 0, 0, 0}),
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streams_or_svc_num_(0) {}
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VCMGenericEncoder::~VCMGenericEncoder() {}
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int32_t VCMGenericEncoder::Release() {
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RTC_DCHECK_RUNS_SERIALIZED(&race_checker_);
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TRACE_EVENT0("webrtc", "VCMGenericEncoder::Release");
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return encoder_->Release();
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}
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int32_t VCMGenericEncoder::InitEncode(const VideoCodec* settings,
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int32_t number_of_cores,
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size_t max_payload_size) {
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RTC_DCHECK_RUNS_SERIALIZED(&race_checker_);
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TRACE_EVENT0("webrtc", "VCMGenericEncoder::InitEncode");
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streams_or_svc_num_ = settings->numberOfSimulcastStreams;
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codec_type_ = settings->codecType;
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if (settings->codecType == kVideoCodecVP9) {
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streams_or_svc_num_ = settings->VP9().numberOfSpatialLayers;
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}
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if (streams_or_svc_num_ == 0)
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streams_or_svc_num_ = 1;
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vcm_encoded_frame_callback_->SetTimingFramesThresholds(
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settings->timing_frame_thresholds);
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vcm_encoded_frame_callback_->OnFrameRateChanged(settings->maxFramerate);
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if (encoder_->InitEncode(settings, number_of_cores, max_payload_size) != 0) {
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RTC_LOG(LS_ERROR) << "Failed to initialize the encoder associated with "
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"payload name: "
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<< settings->plName;
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return -1;
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}
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vcm_encoded_frame_callback_->Reset();
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encoder_->RegisterEncodeCompleteCallback(vcm_encoded_frame_callback_);
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return 0;
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}
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int32_t VCMGenericEncoder::Encode(const VideoFrame& frame,
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const CodecSpecificInfo* codec_specific,
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const std::vector<FrameType>& frame_types) {
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RTC_DCHECK_RUNS_SERIALIZED(&race_checker_);
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TRACE_EVENT1("webrtc", "VCMGenericEncoder::Encode", "timestamp",
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frame.timestamp());
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for (FrameType frame_type : frame_types)
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RTC_DCHECK(frame_type == kVideoFrameKey || frame_type == kVideoFrameDelta);
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for (size_t i = 0; i < streams_or_svc_num_; ++i)
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vcm_encoded_frame_callback_->OnEncodeStarted(frame.timestamp(),
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frame.render_time_ms(), i);
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return encoder_->Encode(frame, codec_specific, &frame_types);
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}
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void VCMGenericEncoder::SetEncoderParameters(const EncoderParameters& params) {
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RTC_DCHECK_RUNS_SERIALIZED(&race_checker_);
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bool channel_parameters_have_changed;
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bool rates_have_changed;
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{
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rtc::CritScope lock(¶ms_lock_);
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channel_parameters_have_changed =
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params.loss_rate != encoder_params_.loss_rate ||
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params.rtt != encoder_params_.rtt;
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rates_have_changed =
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params.target_bitrate != encoder_params_.target_bitrate ||
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params.input_frame_rate != encoder_params_.input_frame_rate;
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encoder_params_ = params;
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}
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if (channel_parameters_have_changed) {
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int res = encoder_->SetChannelParameters(params.loss_rate, params.rtt);
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if (res != 0) {
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RTC_LOG(LS_WARNING) << "Error set encoder parameters (loss = "
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<< params.loss_rate << ", rtt = " << params.rtt
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<< "): " << res;
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}
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}
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if (rates_have_changed) {
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int res = encoder_->SetRateAllocation(params.target_bitrate,
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params.input_frame_rate);
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if (res != 0) {
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RTC_LOG(LS_WARNING) << "Error set encoder rate (total bitrate bps = "
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<< params.target_bitrate.get_sum_bps()
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<< ", framerate = " << params.input_frame_rate
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<< "): " << res;
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}
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vcm_encoded_frame_callback_->OnFrameRateChanged(params.input_frame_rate);
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for (size_t i = 0; i < streams_or_svc_num_; ++i) {
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size_t layer_bitrate_bytes_per_sec =
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params.target_bitrate.GetSpatialLayerSum(i) / 8;
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// VP9 rate control is not yet moved out of VP9Impl. Due to that rates
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// are not split among spatial layers. Use default 1:2:4 bitrate
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// distribution.
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// TODO(ilnik): move bitrate per spatial layer calculations out of
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// vp9_impl.cc and drop the check below.
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if (codec_type_ == kVideoCodecVP9) {
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int scaling_factor_num = 1 << i; // 1, 2 or 4
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int scaling_factor_den = (1 << streams_or_svc_num_) - 1; // 1 + 2 + 4
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layer_bitrate_bytes_per_sec = params.target_bitrate.get_sum_bps() / 8 *
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scaling_factor_num / scaling_factor_den;
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}
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vcm_encoded_frame_callback_->OnTargetBitrateChanged(
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layer_bitrate_bytes_per_sec, i);
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}
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}
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}
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EncoderParameters VCMGenericEncoder::GetEncoderParameters() const {
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rtc::CritScope lock(¶ms_lock_);
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return encoder_params_;
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}
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int32_t VCMGenericEncoder::SetPeriodicKeyFrames(bool enable) {
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RTC_DCHECK_RUNS_SERIALIZED(&race_checker_);
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return encoder_->SetPeriodicKeyFrames(enable);
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}
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int32_t VCMGenericEncoder::RequestFrame(
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const std::vector<FrameType>& frame_types) {
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RTC_DCHECK_RUNS_SERIALIZED(&race_checker_);
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// TODO(nisse): Used only with internal source. Delete as soon as
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// that feature is removed. The only implementation I've been able
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// to find ignores what's in the frame. With one exception: It seems
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// a few test cases, e.g.,
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// VideoSendStreamTest.VideoSendStreamStopSetEncoderRateToZero, set
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// internal_source to true and use FakeEncoder. And the latter will
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// happily encode this 1x1 frame and pass it on down the pipeline.
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return encoder_->Encode(VideoFrame(I420Buffer::Create(1, 1),
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kVideoRotation_0, 0),
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NULL, &frame_types);
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return 0;
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}
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bool VCMGenericEncoder::InternalSource() const {
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return internal_source_;
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}
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bool VCMGenericEncoder::SupportsNativeHandle() const {
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RTC_DCHECK_RUNS_SERIALIZED(&race_checker_);
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return encoder_->SupportsNativeHandle();
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}
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VCMEncodedFrameCallback::VCMEncodedFrameCallback(
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EncodedImageCallback* post_encode_callback,
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media_optimization::MediaOptimization* media_opt)
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: internal_source_(false),
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post_encode_callback_(post_encode_callback),
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media_opt_(media_opt),
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framerate_(1),
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last_timing_frame_time_ms_(-1),
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timing_frames_thresholds_({-1, 0}),
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incorrect_capture_time_logged_messages_(0),
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reordered_frames_logged_messages_(0),
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stalled_encoder_logged_messages_(0) {
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rtc::Optional<AlrExperimentSettings> experiment_settings =
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AlrExperimentSettings::CreateFromFieldTrial(
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AlrExperimentSettings::kStrictPacingAndProbingExperimentName);
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if (experiment_settings) {
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experiment_groups_[0] = experiment_settings->group_id + 1;
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} else {
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experiment_groups_[0] = 0;
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}
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experiment_settings = AlrExperimentSettings::CreateFromFieldTrial(
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AlrExperimentSettings::kScreenshareProbingBweExperimentName);
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if (experiment_settings) {
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experiment_groups_[1] = experiment_settings->group_id + 1;
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} else {
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experiment_groups_[1] = 0;
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}
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}
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VCMEncodedFrameCallback::~VCMEncodedFrameCallback() {}
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void VCMEncodedFrameCallback::OnTargetBitrateChanged(
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size_t bitrate_bytes_per_second,
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size_t simulcast_svc_idx) {
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rtc::CritScope crit(&timing_params_lock_);
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if (timing_frames_info_.size() < simulcast_svc_idx + 1)
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timing_frames_info_.resize(simulcast_svc_idx + 1);
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timing_frames_info_[simulcast_svc_idx].target_bitrate_bytes_per_sec =
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bitrate_bytes_per_second;
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}
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void VCMEncodedFrameCallback::OnFrameRateChanged(size_t framerate) {
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rtc::CritScope crit(&timing_params_lock_);
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framerate_ = framerate;
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}
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void VCMEncodedFrameCallback::OnEncodeStarted(uint32_t rtp_timestamp,
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int64_t capture_time_ms,
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size_t simulcast_svc_idx) {
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if (internal_source_) {
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return;
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}
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rtc::CritScope crit(&timing_params_lock_);
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if (timing_frames_info_.size() < simulcast_svc_idx + 1)
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timing_frames_info_.resize(simulcast_svc_idx + 1);
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RTC_DCHECK(
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timing_frames_info_[simulcast_svc_idx].encode_start_list.empty() ||
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rtc::TimeDiff(capture_time_ms, timing_frames_info_[simulcast_svc_idx]
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.encode_start_list.back()
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.capture_time_ms) >= 0);
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// If stream is disabled due to low bandwidth OnEncodeStarted still will be
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// called and have to be ignored.
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if (timing_frames_info_[simulcast_svc_idx].target_bitrate_bytes_per_sec == 0)
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return;
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if (timing_frames_info_[simulcast_svc_idx].encode_start_list.size() ==
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kMaxEncodeStartTimeListSize) {
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++stalled_encoder_logged_messages_;
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if (stalled_encoder_logged_messages_ <= kMessagesThrottlingThreshold ||
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stalled_encoder_logged_messages_ % kThrottleRatio == 0) {
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RTC_LOG(LS_WARNING) << "Too many frames in the encode_start_list."
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" Did encoder stall?";
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if (stalled_encoder_logged_messages_ == kMessagesThrottlingThreshold) {
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RTC_LOG(LS_WARNING) << "Too many log messages. Further stalled encoder"
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"warnings will be throttled.";
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}
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}
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post_encode_callback_->OnDroppedFrame(DropReason::kDroppedByEncoder);
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timing_frames_info_[simulcast_svc_idx].encode_start_list.pop_front();
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}
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timing_frames_info_[simulcast_svc_idx].encode_start_list.emplace_back(
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rtp_timestamp, capture_time_ms, rtc::TimeMillis());
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}
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EncodedImageCallback::Result VCMEncodedFrameCallback::OnEncodedImage(
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const EncodedImage& encoded_image,
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const CodecSpecificInfo* codec_specific,
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const RTPFragmentationHeader* fragmentation_header) {
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TRACE_EVENT_INSTANT1("webrtc", "VCMEncodedFrameCallback::Encoded",
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"timestamp", encoded_image._timeStamp);
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size_t simulcast_svc_idx = 0;
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if (codec_specific->codecType == kVideoCodecVP9) {
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if (codec_specific->codecSpecific.VP9.num_spatial_layers > 1)
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simulcast_svc_idx = codec_specific->codecSpecific.VP9.spatial_idx;
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} else if (codec_specific->codecType == kVideoCodecVP8) {
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simulcast_svc_idx = codec_specific->codecSpecific.VP8.simulcastIdx;
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} else if (codec_specific->codecType == kVideoCodecGeneric) {
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simulcast_svc_idx = codec_specific->codecSpecific.generic.simulcast_idx;
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} else if (codec_specific->codecType == kVideoCodecH264) {
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// TODO(ilnik): When h264 simulcast is landed, extract simulcast idx here.
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}
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EncodedImage image_copy(encoded_image);
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rtc::Optional<size_t> outlier_frame_size;
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rtc::Optional<int64_t> encode_start_ms;
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size_t num_simulcast_svc_streams = 1;
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uint8_t timing_flags = TimingFrameFlags::kNotTriggered;
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if (!internal_source_) {
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rtc::CritScope crit(&timing_params_lock_);
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// Encoders with internal sources do not call OnEncodeStarted and
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// OnFrameRateChanged. |timing_frames_info_| may be not filled here.
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num_simulcast_svc_streams = timing_frames_info_.size();
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if (simulcast_svc_idx < num_simulcast_svc_streams) {
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auto encode_start_list =
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&timing_frames_info_[simulcast_svc_idx].encode_start_list;
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// Skip frames for which there was OnEncodeStarted but no OnEncodedImage
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// call. These are dropped by encoder internally.
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// Because some hardware encoders don't preserve capture timestamp we use
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// RTP timestamps here.
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while (!encode_start_list->empty() &&
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IsNewerTimestamp(image_copy._timeStamp,
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encode_start_list->front().rtp_timestamp)) {
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post_encode_callback_->OnDroppedFrame(DropReason::kDroppedByEncoder);
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encode_start_list->pop_front();
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}
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if (encode_start_list->size() > 0 &&
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encode_start_list->front().rtp_timestamp == image_copy._timeStamp) {
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encode_start_ms.emplace(
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encode_start_list->front().encode_start_time_ms);
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if (image_copy.capture_time_ms_ !=
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encode_start_list->front().capture_time_ms) {
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// Force correct capture timestamp.
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image_copy.capture_time_ms_ =
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encode_start_list->front().capture_time_ms;
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++incorrect_capture_time_logged_messages_;
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if (incorrect_capture_time_logged_messages_ <=
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kMessagesThrottlingThreshold ||
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incorrect_capture_time_logged_messages_ % kThrottleRatio == 0) {
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RTC_LOG(LS_WARNING)
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<< "Encoder is not preserving capture timestamps.";
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if (incorrect_capture_time_logged_messages_ ==
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kMessagesThrottlingThreshold) {
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RTC_LOG(LS_WARNING) << "Too many log messages. Further incorrect "
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"timestamps warnings will be throttled.";
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}
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}
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}
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encode_start_list->pop_front();
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} else {
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++reordered_frames_logged_messages_;
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if (reordered_frames_logged_messages_ <= kMessagesThrottlingThreshold ||
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reordered_frames_logged_messages_ % kThrottleRatio == 0) {
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RTC_LOG(LS_WARNING)
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<< "Frame with no encode started time recordings. "
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"Encoder may be reordering frames "
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"or not preserving RTP timestamps.";
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if (reordered_frames_logged_messages_ ==
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kMessagesThrottlingThreshold) {
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RTC_LOG(LS_WARNING) << "Too many log messages. Further frames "
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"reordering warnings will be throttled.";
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}
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}
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}
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size_t target_bitrate =
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timing_frames_info_[simulcast_svc_idx].target_bitrate_bytes_per_sec;
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if (framerate_ > 0 && target_bitrate > 0) {
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// framerate and target bitrate were reported by encoder.
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size_t average_frame_size = target_bitrate / framerate_;
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outlier_frame_size.emplace(
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average_frame_size *
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timing_frames_thresholds_.outlier_ratio_percent / 100);
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}
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}
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// Check if it's time to send a timing frame.
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int64_t timing_frame_delay_ms =
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image_copy.capture_time_ms_ - last_timing_frame_time_ms_;
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// Trigger threshold if it's a first frame, too long passed since the last
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// timing frame, or we already sent timing frame on a different simulcast
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// stream with the same capture time.
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if (last_timing_frame_time_ms_ == -1 ||
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timing_frame_delay_ms >= timing_frames_thresholds_.delay_ms ||
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timing_frame_delay_ms == 0) {
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timing_flags = TimingFrameFlags::kTriggeredByTimer;
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last_timing_frame_time_ms_ = image_copy.capture_time_ms_;
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}
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// Outliers trigger timing frames, but do not affect scheduled timing
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// frames.
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if (outlier_frame_size && image_copy._length >= *outlier_frame_size) {
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timing_flags |= TimingFrameFlags::kTriggeredBySize;
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}
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}
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// If encode start is not available that means that encoder uses internal
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// source. In that case capture timestamp may be from a different clock with a
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// drift relative to rtc::TimeMillis(). We can't use it for Timing frames,
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// because to being sent in the network capture time required to be less than
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// all the other timestamps.
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if (encode_start_ms) {
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image_copy.SetEncodeTime(*encode_start_ms, rtc::TimeMillis());
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image_copy.timing_.flags = timing_flags;
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} else {
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image_copy.timing_.flags = TimingFrameFlags::kInvalid;
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}
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// Piggyback ALR experiment group id and simulcast id into the content type.
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uint8_t experiment_id =
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experiment_groups_[videocontenttypehelpers::IsScreenshare(
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image_copy.content_type_)];
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// TODO(ilnik): This will force content type extension to be present even
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// for realtime video. At the expense of miniscule overhead we will get
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// sliced receive statistics.
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RTC_CHECK(videocontenttypehelpers::SetExperimentId(&image_copy.content_type_,
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experiment_id));
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// We count simulcast streams from 1 on the wire. That's why we set simulcast
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// id in content type to +1 of that is actual simulcast index. This is because
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// value 0 on the wire is reserved for 'no simulcast stream specified'.
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RTC_CHECK(videocontenttypehelpers::SetSimulcastId(
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&image_copy.content_type_, static_cast<uint8_t>(simulcast_svc_idx + 1)));
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Result result = post_encode_callback_->OnEncodedImage(
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image_copy, codec_specific, fragmentation_header);
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if (result.error != Result::OK)
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return result;
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if (media_opt_) {
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media_opt_->UpdateWithEncodedData(image_copy);
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if (internal_source_) {
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// Signal to encoder to drop next frame.
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result.drop_next_frame = media_opt_->DropFrame();
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}
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}
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return result;
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}
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} // namespace webrtc
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