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This CL has been generated with the following script: for m in PLOG \ LOG_TAG \ LOG_GLEM \ LOG_GLE_EX \ LOG_GLE \ LAST_SYSTEM_ERROR \ LOG_ERRNO_EX \ LOG_ERRNO \ LOG_ERR_EX \ LOG_ERR \ LOG_V \ LOG_F \ LOG_T_F \ LOG_E \ LOG_T \ LOG_CHECK_LEVEL_V \ LOG_CHECK_LEVEL \ LOG do git grep -l $m | xargs sed -i "s,\b$m\b,RTC_$m,g" done git checkout rtc_base/logging.h git cl format Bug: webrtc:8452 Change-Id: I1a53ef3e0a5ef6e244e62b2e012b864914784600 Reviewed-on: https://webrtc-review.googlesource.com/21325 Reviewed-by: Niels Moller <nisse@webrtc.org> Reviewed-by: Karl Wiberg <kwiberg@webrtc.org> Commit-Queue: Mirko Bonadei <mbonadei@webrtc.org> Cr-Commit-Position: refs/heads/master@{#20617}
411 lines
13 KiB
C++
411 lines
13 KiB
C++
/*
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* Copyright 2004 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 "pc/channelmanager.h"
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#include <algorithm>
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#include <utility>
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#include "media/base/rtpdataengine.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/ptr_util.h"
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#include "rtc_base/stringutils.h"
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#include "rtc_base/trace_event.h"
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namespace cricket {
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ChannelManager::ChannelManager(
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std::unique_ptr<MediaEngineInterface> media_engine,
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std::unique_ptr<DataEngineInterface> data_engine,
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rtc::Thread* worker_thread,
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rtc::Thread* network_thread)
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: media_engine_(std::move(media_engine)),
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data_engine_(std::move(data_engine)),
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main_thread_(rtc::Thread::Current()),
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worker_thread_(worker_thread),
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network_thread_(network_thread) {
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RTC_DCHECK(data_engine_);
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RTC_DCHECK(worker_thread_);
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RTC_DCHECK(network_thread_);
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}
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ChannelManager::~ChannelManager() {
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if (initialized_) {
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Terminate();
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}
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// The media engine needs to be deleted on the worker thread for thread safe
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// destruction,
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worker_thread_->Invoke<void>(RTC_FROM_HERE, [&] { media_engine_.reset(); });
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}
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bool ChannelManager::SetVideoRtxEnabled(bool enable) {
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// To be safe, this call is only allowed before initialization. Apps like
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// Flute only have a singleton ChannelManager and we don't want this flag to
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// be toggled between calls or when there's concurrent calls. We expect apps
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// to enable this at startup and retain that setting for the lifetime of the
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// app.
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if (!initialized_) {
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enable_rtx_ = enable;
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return true;
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} else {
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RTC_LOG(LS_WARNING) << "Cannot toggle rtx after initialization!";
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return false;
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}
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}
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void ChannelManager::GetSupportedAudioSendCodecs(
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std::vector<AudioCodec>* codecs) const {
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if (!media_engine_) {
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return;
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}
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*codecs = media_engine_->audio_send_codecs();
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}
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void ChannelManager::GetSupportedAudioReceiveCodecs(
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std::vector<AudioCodec>* codecs) const {
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if (!media_engine_) {
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return;
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}
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*codecs = media_engine_->audio_recv_codecs();
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}
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void ChannelManager::GetSupportedAudioRtpHeaderExtensions(
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RtpHeaderExtensions* ext) const {
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if (!media_engine_) {
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return;
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}
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*ext = media_engine_->GetAudioCapabilities().header_extensions;
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}
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void ChannelManager::GetSupportedVideoCodecs(
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std::vector<VideoCodec>* codecs) const {
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if (!media_engine_) {
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return;
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}
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codecs->clear();
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std::vector<VideoCodec> video_codecs = media_engine_->video_codecs();
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for (const auto& video_codec : video_codecs) {
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if (!enable_rtx_ &&
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_stricmp(kRtxCodecName, video_codec.name.c_str()) == 0) {
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continue;
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}
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codecs->push_back(video_codec);
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}
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}
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void ChannelManager::GetSupportedVideoRtpHeaderExtensions(
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RtpHeaderExtensions* ext) const {
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if (!media_engine_) {
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return;
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}
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*ext = media_engine_->GetVideoCapabilities().header_extensions;
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}
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void ChannelManager::GetSupportedDataCodecs(
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std::vector<DataCodec>* codecs) const {
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*codecs = data_engine_->data_codecs();
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}
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bool ChannelManager::Init() {
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RTC_DCHECK(!initialized_);
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if (initialized_) {
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return false;
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}
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RTC_DCHECK(network_thread_);
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RTC_DCHECK(worker_thread_);
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if (!network_thread_->IsCurrent()) {
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// Do not allow invoking calls to other threads on the network thread.
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network_thread_->Invoke<void>(
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RTC_FROM_HERE, [&] { network_thread_->SetAllowBlockingCalls(false); });
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}
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if (media_engine_) {
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initialized_ = worker_thread_->Invoke<bool>(
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RTC_FROM_HERE, [&] { return media_engine_->Init(); });
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RTC_DCHECK(initialized_);
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} else {
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initialized_ = true;
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}
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return initialized_;
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}
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void ChannelManager::Terminate() {
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RTC_DCHECK(initialized_);
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if (!initialized_) {
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return;
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}
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// Need to destroy the channels on the worker thread.
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worker_thread_->Invoke<void>(RTC_FROM_HERE, [&] {
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video_channels_.clear();
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voice_channels_.clear();
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data_channels_.clear();
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});
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initialized_ = false;
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}
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VoiceChannel* ChannelManager::CreateVoiceChannel(
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webrtc::Call* call,
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const cricket::MediaConfig& media_config,
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DtlsTransportInternal* rtp_transport,
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DtlsTransportInternal* rtcp_transport,
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rtc::Thread* signaling_thread,
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const std::string& content_name,
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bool srtp_required,
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const AudioOptions& options) {
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return worker_thread_->Invoke<VoiceChannel*>(RTC_FROM_HERE, [&] {
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return CreateVoiceChannel_w(
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call, media_config, rtp_transport, rtcp_transport, rtp_transport,
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rtcp_transport, signaling_thread, content_name, srtp_required, options);
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});
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}
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VoiceChannel* ChannelManager::CreateVoiceChannel(
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webrtc::Call* call,
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const cricket::MediaConfig& media_config,
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rtc::PacketTransportInternal* rtp_transport,
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rtc::PacketTransportInternal* rtcp_transport,
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rtc::Thread* signaling_thread,
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const std::string& content_name,
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bool srtp_required,
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const AudioOptions& options) {
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return worker_thread_->Invoke<VoiceChannel*>(RTC_FROM_HERE, [&] {
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return CreateVoiceChannel_w(call, media_config, nullptr, nullptr,
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rtp_transport, rtcp_transport, signaling_thread,
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content_name, srtp_required, options);
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});
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}
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VoiceChannel* ChannelManager::CreateVoiceChannel_w(
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webrtc::Call* call,
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const cricket::MediaConfig& media_config,
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DtlsTransportInternal* rtp_dtls_transport,
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DtlsTransportInternal* rtcp_dtls_transport,
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rtc::PacketTransportInternal* rtp_packet_transport,
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rtc::PacketTransportInternal* rtcp_packet_transport,
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rtc::Thread* signaling_thread,
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const std::string& content_name,
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bool srtp_required,
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const AudioOptions& options) {
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RTC_DCHECK_RUN_ON(worker_thread_);
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RTC_DCHECK(initialized_);
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RTC_DCHECK(call);
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if (!media_engine_) {
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return nullptr;
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}
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VoiceMediaChannel* media_channel = media_engine_->CreateChannel(
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call, media_config, options);
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if (!media_channel) {
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return nullptr;
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}
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auto voice_channel = rtc::MakeUnique<VoiceChannel>(
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worker_thread_, network_thread_, signaling_thread, media_engine_.get(),
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rtc::WrapUnique(media_channel), content_name,
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rtcp_packet_transport == nullptr, srtp_required);
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voice_channel->Init_w(rtp_dtls_transport, rtcp_dtls_transport,
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rtp_packet_transport, rtcp_packet_transport);
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VoiceChannel* voice_channel_ptr = voice_channel.get();
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voice_channels_.push_back(std::move(voice_channel));
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return voice_channel_ptr;
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}
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void ChannelManager::DestroyVoiceChannel(VoiceChannel* voice_channel) {
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TRACE_EVENT0("webrtc", "ChannelManager::DestroyVoiceChannel");
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if (!voice_channel) {
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return;
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}
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if (!worker_thread_->IsCurrent()) {
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worker_thread_->Invoke<void>(RTC_FROM_HERE,
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[&] { DestroyVoiceChannel(voice_channel); });
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return;
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}
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RTC_DCHECK(initialized_);
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auto it = std::find_if(voice_channels_.begin(), voice_channels_.end(),
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[&](const std::unique_ptr<VoiceChannel>& p) {
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return p.get() == voice_channel;
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});
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RTC_DCHECK(it != voice_channels_.end());
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if (it == voice_channels_.end()) {
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return;
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}
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voice_channels_.erase(it);
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}
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VideoChannel* ChannelManager::CreateVideoChannel(
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webrtc::Call* call,
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const cricket::MediaConfig& media_config,
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DtlsTransportInternal* rtp_transport,
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DtlsTransportInternal* rtcp_transport,
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rtc::Thread* signaling_thread,
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const std::string& content_name,
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bool srtp_required,
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const VideoOptions& options) {
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return worker_thread_->Invoke<VideoChannel*>(RTC_FROM_HERE, [&] {
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return CreateVideoChannel_w(
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call, media_config, rtp_transport, rtcp_transport, rtp_transport,
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rtcp_transport, signaling_thread, content_name, srtp_required, options);
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});
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}
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VideoChannel* ChannelManager::CreateVideoChannel(
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webrtc::Call* call,
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const cricket::MediaConfig& media_config,
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rtc::PacketTransportInternal* rtp_transport,
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rtc::PacketTransportInternal* rtcp_transport,
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rtc::Thread* signaling_thread,
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const std::string& content_name,
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bool srtp_required,
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const VideoOptions& options) {
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return worker_thread_->Invoke<VideoChannel*>(RTC_FROM_HERE, [&] {
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return CreateVideoChannel_w(call, media_config, nullptr, nullptr,
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rtp_transport, rtcp_transport, signaling_thread,
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content_name, srtp_required, options);
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});
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}
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VideoChannel* ChannelManager::CreateVideoChannel_w(
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webrtc::Call* call,
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const cricket::MediaConfig& media_config,
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DtlsTransportInternal* rtp_dtls_transport,
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DtlsTransportInternal* rtcp_dtls_transport,
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rtc::PacketTransportInternal* rtp_packet_transport,
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rtc::PacketTransportInternal* rtcp_packet_transport,
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rtc::Thread* signaling_thread,
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const std::string& content_name,
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bool srtp_required,
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const VideoOptions& options) {
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RTC_DCHECK_RUN_ON(worker_thread_);
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RTC_DCHECK(initialized_);
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RTC_DCHECK(call);
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RTC_DCHECK(media_engine_);
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VideoMediaChannel* media_channel = media_engine_->CreateVideoChannel(
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call, media_config, options);
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if (!media_channel) {
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return nullptr;
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}
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auto video_channel = rtc::MakeUnique<VideoChannel>(
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worker_thread_, network_thread_, signaling_thread,
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rtc::WrapUnique(media_channel), content_name,
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rtcp_packet_transport == nullptr, srtp_required);
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video_channel->Init_w(rtp_dtls_transport, rtcp_dtls_transport,
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rtp_packet_transport, rtcp_packet_transport);
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VideoChannel* video_channel_ptr = video_channel.get();
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video_channels_.push_back(std::move(video_channel));
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return video_channel_ptr;
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}
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void ChannelManager::DestroyVideoChannel(VideoChannel* video_channel) {
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TRACE_EVENT0("webrtc", "ChannelManager::DestroyVideoChannel");
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if (!video_channel) {
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return;
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}
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if (!worker_thread_->IsCurrent()) {
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worker_thread_->Invoke<void>(RTC_FROM_HERE,
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[&] { DestroyVideoChannel(video_channel); });
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return;
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}
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RTC_DCHECK(initialized_);
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auto it = std::find_if(video_channels_.begin(), video_channels_.end(),
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[&](const std::unique_ptr<VideoChannel>& p) {
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return p.get() == video_channel;
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});
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RTC_DCHECK(it != video_channels_.end());
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if (it == video_channels_.end()) {
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return;
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}
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video_channels_.erase(it);
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}
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RtpDataChannel* ChannelManager::CreateRtpDataChannel(
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const cricket::MediaConfig& media_config,
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DtlsTransportInternal* rtp_transport,
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DtlsTransportInternal* rtcp_transport,
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rtc::Thread* signaling_thread,
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const std::string& content_name,
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bool srtp_required) {
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if (!worker_thread_->IsCurrent()) {
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return worker_thread_->Invoke<RtpDataChannel*>(RTC_FROM_HERE, [&] {
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return CreateRtpDataChannel(media_config, rtp_transport, rtcp_transport,
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signaling_thread, content_name,
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srtp_required);
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});
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}
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// This is ok to alloc from a thread other than the worker thread.
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RTC_DCHECK(initialized_);
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DataMediaChannel* media_channel = data_engine_->CreateChannel(media_config);
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if (!media_channel) {
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RTC_LOG(LS_WARNING) << "Failed to create RTP data channel.";
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return nullptr;
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}
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auto data_channel = rtc::MakeUnique<RtpDataChannel>(
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worker_thread_, network_thread_, signaling_thread,
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rtc::WrapUnique(media_channel), content_name, rtcp_transport == nullptr,
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srtp_required);
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data_channel->Init_w(rtp_transport, rtcp_transport, rtp_transport,
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rtcp_transport);
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RtpDataChannel* data_channel_ptr = data_channel.get();
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data_channels_.push_back(std::move(data_channel));
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return data_channel_ptr;
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}
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void ChannelManager::DestroyRtpDataChannel(RtpDataChannel* data_channel) {
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TRACE_EVENT0("webrtc", "ChannelManager::DestroyRtpDataChannel");
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if (!data_channel) {
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return;
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}
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if (!worker_thread_->IsCurrent()) {
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worker_thread_->Invoke<void>(
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RTC_FROM_HERE, [&] { return DestroyRtpDataChannel(data_channel); });
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return;
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}
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RTC_DCHECK(initialized_);
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auto it = std::find_if(data_channels_.begin(), data_channels_.end(),
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[&](const std::unique_ptr<RtpDataChannel>& p) {
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return p.get() == data_channel;
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});
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RTC_DCHECK(it != data_channels_.end());
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if (it == data_channels_.end()) {
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return;
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}
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data_channels_.erase(it);
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}
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bool ChannelManager::StartAecDump(rtc::PlatformFile file,
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int64_t max_size_bytes) {
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return worker_thread_->Invoke<bool>(RTC_FROM_HERE, [&] {
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return media_engine_->StartAecDump(file, max_size_bytes);
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});
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}
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void ChannelManager::StopAecDump() {
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worker_thread_->Invoke<void>(RTC_FROM_HERE,
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[&] { media_engine_->StopAecDump(); });
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}
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} // namespace cricket
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