236 lines
8.4 KiB
C++
236 lines
8.4 KiB
C++
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/*
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* Copyright (c) 2013 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 "video/video_send_stream.h"
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#include <utility>
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#include "api/array_view.h"
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#include "api/video/video_stream_encoder_create.h"
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#include "api/video/video_stream_encoder_settings.h"
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#include "modules/rtp_rtcp/include/rtp_header_extension_map.h"
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#include "modules/rtp_rtcp/source/rtp_header_extension_size.h"
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#include "modules/rtp_rtcp/source/rtp_sender.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/logging.h"
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#include "rtc_base/strings/string_builder.h"
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#include "rtc_base/task_utils/to_queued_task.h"
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#include "system_wrappers/include/clock.h"
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#include "system_wrappers/include/field_trial.h"
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#include "video/video_send_stream_impl.h"
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namespace webrtc {
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namespace {
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size_t CalculateMaxHeaderSize(const RtpConfig& config) {
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size_t header_size = kRtpHeaderSize;
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size_t extensions_size = 0;
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size_t fec_extensions_size = 0;
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if (!config.extensions.empty()) {
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RtpHeaderExtensionMap extensions_map(config.extensions);
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extensions_size = RtpHeaderExtensionSize(RTPSender::VideoExtensionSizes(),
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extensions_map);
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fec_extensions_size =
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RtpHeaderExtensionSize(RTPSender::FecExtensionSizes(), extensions_map);
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}
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header_size += extensions_size;
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if (config.flexfec.payload_type >= 0) {
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// All FEC extensions again plus maximum FlexFec overhead.
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header_size += fec_extensions_size + 32;
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} else {
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if (config.ulpfec.ulpfec_payload_type >= 0) {
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// Header with all the FEC extensions will be repeated plus maximum
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// UlpFec overhead.
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header_size += fec_extensions_size + 18;
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}
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if (config.ulpfec.red_payload_type >= 0) {
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header_size += 1; // RED header.
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}
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}
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// Additional room for Rtx.
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if (config.rtx.payload_type >= 0)
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header_size += kRtxHeaderSize;
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return header_size;
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}
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} // namespace
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namespace internal {
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VideoSendStream::VideoSendStream(
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Clock* clock,
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int num_cpu_cores,
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ProcessThread* module_process_thread,
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TaskQueueFactory* task_queue_factory,
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RtcpRttStats* call_stats,
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RtpTransportControllerSendInterface* transport,
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BitrateAllocatorInterface* bitrate_allocator,
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SendDelayStats* send_delay_stats,
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RtcEventLog* event_log,
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VideoSendStream::Config config,
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VideoEncoderConfig encoder_config,
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const std::map<uint32_t, RtpState>& suspended_ssrcs,
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const std::map<uint32_t, RtpPayloadState>& suspended_payload_states,
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std::unique_ptr<FecController> fec_controller)
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: worker_queue_(transport->GetWorkerQueue()),
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stats_proxy_(clock, config, encoder_config.content_type),
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config_(std::move(config)),
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content_type_(encoder_config.content_type) {
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RTC_DCHECK(config_.encoder_settings.encoder_factory);
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RTC_DCHECK(config_.encoder_settings.bitrate_allocator_factory);
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video_stream_encoder_ =
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CreateVideoStreamEncoder(clock, task_queue_factory, num_cpu_cores,
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&stats_proxy_, config_.encoder_settings);
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// TODO(srte): Initialization should not be done posted on a task queue.
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// Note that the posted task must not outlive this scope since the closure
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// references local variables.
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worker_queue_->PostTask(ToQueuedTask(
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[this, clock, call_stats, transport, bitrate_allocator, send_delay_stats,
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event_log, &suspended_ssrcs, &encoder_config, &suspended_payload_states,
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&fec_controller]() {
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send_stream_.reset(new VideoSendStreamImpl(
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clock, &stats_proxy_, worker_queue_, call_stats, transport,
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bitrate_allocator, send_delay_stats, video_stream_encoder_.get(),
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event_log, &config_, encoder_config.max_bitrate_bps,
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encoder_config.bitrate_priority, suspended_ssrcs,
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suspended_payload_states, encoder_config.content_type,
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std::move(fec_controller)));
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},
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[this]() { thread_sync_event_.Set(); }));
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// Wait for ConstructionTask to complete so that |send_stream_| can be used.
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// |module_process_thread| must be registered and deregistered on the thread
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// it was created on.
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thread_sync_event_.Wait(rtc::Event::kForever);
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send_stream_->RegisterProcessThread(module_process_thread);
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ReconfigureVideoEncoder(std::move(encoder_config));
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}
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VideoSendStream::~VideoSendStream() {
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RTC_DCHECK_RUN_ON(&thread_checker_);
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RTC_DCHECK(!send_stream_);
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}
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void VideoSendStream::UpdateActiveSimulcastLayers(
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const std::vector<bool> active_layers) {
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RTC_DCHECK_RUN_ON(&thread_checker_);
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rtc::StringBuilder active_layers_string;
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active_layers_string << "{";
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for (size_t i = 0; i < active_layers.size(); ++i) {
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if (active_layers[i]) {
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active_layers_string << "1";
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} else {
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active_layers_string << "0";
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}
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if (i < active_layers.size() - 1) {
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active_layers_string << ", ";
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}
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}
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active_layers_string << "}";
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RTC_LOG(LS_INFO) << "UpdateActiveSimulcastLayers: "
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<< active_layers_string.str();
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VideoSendStreamImpl* send_stream = send_stream_.get();
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worker_queue_->PostTask([this, send_stream, active_layers] {
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send_stream->UpdateActiveSimulcastLayers(active_layers);
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thread_sync_event_.Set();
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});
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thread_sync_event_.Wait(rtc::Event::kForever);
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}
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void VideoSendStream::Start() {
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RTC_DCHECK_RUN_ON(&thread_checker_);
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RTC_LOG(LS_INFO) << "VideoSendStream::Start";
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VideoSendStreamImpl* send_stream = send_stream_.get();
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worker_queue_->PostTask([this, send_stream] {
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send_stream->Start();
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thread_sync_event_.Set();
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});
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// It is expected that after VideoSendStream::Start has been called, incoming
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// frames are not dropped in VideoStreamEncoder. To ensure this, Start has to
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// be synchronized.
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thread_sync_event_.Wait(rtc::Event::kForever);
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}
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void VideoSendStream::Stop() {
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RTC_DCHECK_RUN_ON(&thread_checker_);
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RTC_LOG(LS_INFO) << "VideoSendStream::Stop";
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VideoSendStreamImpl* send_stream = send_stream_.get();
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worker_queue_->PostTask([send_stream] { send_stream->Stop(); });
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}
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void VideoSendStream::AddAdaptationResource(
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rtc::scoped_refptr<Resource> resource) {
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RTC_DCHECK_RUN_ON(&thread_checker_);
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video_stream_encoder_->AddAdaptationResource(resource);
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}
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std::vector<rtc::scoped_refptr<Resource>>
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VideoSendStream::GetAdaptationResources() {
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RTC_DCHECK_RUN_ON(&thread_checker_);
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return video_stream_encoder_->GetAdaptationResources();
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}
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void VideoSendStream::SetSource(
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rtc::VideoSourceInterface<webrtc::VideoFrame>* source,
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const DegradationPreference& degradation_preference) {
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RTC_DCHECK_RUN_ON(&thread_checker_);
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video_stream_encoder_->SetSource(source, degradation_preference);
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}
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void VideoSendStream::ReconfigureVideoEncoder(VideoEncoderConfig config) {
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// TODO(perkj): Some test cases in VideoSendStreamTest call
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// ReconfigureVideoEncoder from the network thread.
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// RTC_DCHECK_RUN_ON(&thread_checker_);
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RTC_DCHECK(content_type_ == config.content_type);
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video_stream_encoder_->ConfigureEncoder(
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std::move(config),
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config_.rtp.max_packet_size - CalculateMaxHeaderSize(config_.rtp));
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}
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VideoSendStream::Stats VideoSendStream::GetStats() {
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// TODO(perkj, solenberg): Some test cases in EndToEndTest call GetStats from
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// a network thread. See comment in Call::GetStats().
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// RTC_DCHECK_RUN_ON(&thread_checker_);
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return stats_proxy_.GetStats();
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}
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absl::optional<float> VideoSendStream::GetPacingFactorOverride() const {
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return send_stream_->configured_pacing_factor_;
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}
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void VideoSendStream::StopPermanentlyAndGetRtpStates(
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VideoSendStream::RtpStateMap* rtp_state_map,
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VideoSendStream::RtpPayloadStateMap* payload_state_map) {
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RTC_DCHECK_RUN_ON(&thread_checker_);
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video_stream_encoder_->Stop();
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send_stream_->DeRegisterProcessThread();
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worker_queue_->PostTask([this, rtp_state_map, payload_state_map]() {
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send_stream_->Stop();
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*rtp_state_map = send_stream_->GetRtpStates();
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*payload_state_map = send_stream_->GetRtpPayloadStates();
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send_stream_.reset();
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thread_sync_event_.Set();
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});
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thread_sync_event_.Wait(rtc::Event::kForever);
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}
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void VideoSendStream::DeliverRtcp(const uint8_t* packet, size_t length) {
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// Called on a network thread.
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send_stream_->DeliverRtcp(packet, length);
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}
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} // namespace internal
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} // namespace webrtc
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