The function to stop recording an AEC dump was missing from the PeerConnectionFactory interface (only a start function was provided). This CL adds the missing stop function. BUG=webrtc:4741 Review URL: https://codereview.webrtc.org/1415733005 Cr-Commit-Position: refs/heads/master@{#10372}
649 lines
20 KiB
C++
649 lines
20 KiB
C++
/*
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* libjingle
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* Copyright 2004 Google Inc.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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* 3. The name of the author may not be used to endorse or promote products
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* derived from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
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* EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
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* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
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* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
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* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "talk/session/media/channelmanager.h"
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <algorithm>
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#include "talk/app/webrtc/mediacontroller.h"
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#include "talk/media/base/capturemanager.h"
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#include "talk/media/base/device.h"
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#include "talk/media/base/hybriddataengine.h"
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#include "talk/media/base/rtpdataengine.h"
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#include "talk/media/base/videocapturer.h"
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#ifdef HAVE_SCTP
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#include "talk/media/sctp/sctpdataengine.h"
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#endif
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#include "talk/session/media/srtpfilter.h"
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#include "webrtc/base/bind.h"
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#include "webrtc/base/common.h"
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#include "webrtc/base/logging.h"
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#include "webrtc/base/sigslotrepeater.h"
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#include "webrtc/base/stringencode.h"
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#include "webrtc/base/stringutils.h"
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namespace cricket {
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enum {
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MSG_VIDEOCAPTURESTATE = 1,
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};
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using rtc::Bind;
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static const int kNotSetOutputVolume = -1;
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struct CaptureStateParams : public rtc::MessageData {
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CaptureStateParams(cricket::VideoCapturer* c, cricket::CaptureState s)
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: capturer(c),
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state(s) {}
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cricket::VideoCapturer* capturer;
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cricket::CaptureState state;
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};
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static DataEngineInterface* ConstructDataEngine() {
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#ifdef HAVE_SCTP
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return new HybridDataEngine(new RtpDataEngine(), new SctpDataEngine());
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#else
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return new RtpDataEngine();
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#endif
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}
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ChannelManager::ChannelManager(MediaEngineInterface* me,
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DataEngineInterface* dme,
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CaptureManager* cm,
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rtc::Thread* worker_thread) {
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Construct(me, dme, cm, worker_thread);
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}
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ChannelManager::ChannelManager(MediaEngineInterface* me,
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rtc::Thread* worker_thread) {
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Construct(me,
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ConstructDataEngine(),
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new CaptureManager(),
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worker_thread);
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}
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void ChannelManager::Construct(MediaEngineInterface* me,
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DataEngineInterface* dme,
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CaptureManager* cm,
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rtc::Thread* worker_thread) {
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media_engine_.reset(me);
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data_media_engine_.reset(dme);
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capture_manager_.reset(cm);
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initialized_ = false;
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main_thread_ = rtc::Thread::Current();
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worker_thread_ = worker_thread;
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// Get the default audio options from the media engine.
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audio_options_ = media_engine_->GetAudioOptions();
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audio_output_volume_ = kNotSetOutputVolume;
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local_renderer_ = NULL;
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capturing_ = false;
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enable_rtx_ = false;
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capture_manager_->SignalCapturerStateChange.connect(
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this, &ChannelManager::OnVideoCaptureStateChange);
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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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// If srtp is initialized (done by the Channel) then we must call
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// srtp_shutdown to free all crypto kernel lists. But we need to make sure
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// shutdown always called at the end, after channels are destroyed.
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// ChannelManager d'tor is always called last, it's safe place to call
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// shutdown.
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ShutdownSrtp();
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}
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// Some deletes need to be on the worker thread for thread safe destruction,
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// this includes the media engine and capture manager.
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worker_thread_->Invoke<void>(Bind(
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&ChannelManager::DestructorDeletes_w, this));
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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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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::GetSupportedAudioCodecs(
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std::vector<AudioCodec>* codecs) const {
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codecs->clear();
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for (std::vector<AudioCodec>::const_iterator it =
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media_engine_->audio_codecs().begin();
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it != media_engine_->audio_codecs().end(); ++it) {
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codecs->push_back(*it);
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}
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}
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void ChannelManager::GetSupportedAudioRtpHeaderExtensions(
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RtpHeaderExtensions* ext) const {
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*ext = media_engine_->audio_rtp_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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codecs->clear();
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std::vector<VideoCodec>::const_iterator it;
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for (it = media_engine_->video_codecs().begin();
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it != media_engine_->video_codecs().end(); ++it) {
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if (!enable_rtx_ && _stricmp(kRtxCodecName, it->name.c_str()) == 0) {
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continue;
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}
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codecs->push_back(*it);
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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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*ext = media_engine_->video_rtp_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_media_engine_->data_codecs();
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}
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bool ChannelManager::Init() {
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ASSERT(!initialized_);
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if (initialized_) {
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return false;
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}
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ASSERT(worker_thread_ != NULL);
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if (!worker_thread_) {
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return false;
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}
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if (worker_thread_ != rtc::Thread::Current()) {
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// Do not allow invoking calls to other threads on the worker thread.
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worker_thread_->Invoke<bool>(rtc::Bind(
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&rtc::Thread::SetAllowBlockingCalls, worker_thread_, false));
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}
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initialized_ = worker_thread_->Invoke<bool>(Bind(
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&ChannelManager::InitMediaEngine_w, this));
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ASSERT(initialized_);
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if (!initialized_) {
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return false;
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}
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if (!SetAudioOptions(audio_options_)) {
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LOG(LS_WARNING) << "Failed to SetAudioOptions with options: "
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<< audio_options_.ToString();
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}
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// If audio_output_volume_ has been set via SetOutputVolume(), set the
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// audio output volume of the engine.
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if (kNotSetOutputVolume != audio_output_volume_ &&
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!SetOutputVolume(audio_output_volume_)) {
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LOG(LS_WARNING) << "Failed to SetOutputVolume to "
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<< audio_output_volume_;
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}
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// Now apply the default video codec that has been set earlier.
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if (default_video_encoder_config_.max_codec.id != 0) {
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SetDefaultVideoEncoderConfig(default_video_encoder_config_);
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}
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return initialized_;
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}
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bool ChannelManager::InitMediaEngine_w() {
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ASSERT(worker_thread_ == rtc::Thread::Current());
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return (media_engine_->Init(worker_thread_));
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}
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void ChannelManager::Terminate() {
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ASSERT(initialized_);
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if (!initialized_) {
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return;
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}
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worker_thread_->Invoke<void>(Bind(&ChannelManager::Terminate_w, this));
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initialized_ = false;
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}
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void ChannelManager::DestructorDeletes_w() {
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ASSERT(worker_thread_ == rtc::Thread::Current());
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media_engine_.reset(NULL);
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capture_manager_.reset(NULL);
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}
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void ChannelManager::Terminate_w() {
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ASSERT(worker_thread_ == rtc::Thread::Current());
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// Need to destroy the voice/video channels
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while (!video_channels_.empty()) {
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DestroyVideoChannel_w(video_channels_.back());
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}
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while (!voice_channels_.empty()) {
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DestroyVoiceChannel_w(voice_channels_.back());
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}
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media_engine_->Terminate();
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}
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VoiceChannel* ChannelManager::CreateVoiceChannel(
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webrtc::MediaControllerInterface* media_controller,
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TransportController* transport_controller,
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const std::string& content_name,
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bool rtcp,
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const AudioOptions& options) {
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return worker_thread_->Invoke<VoiceChannel*>(
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Bind(&ChannelManager::CreateVoiceChannel_w, this, media_controller,
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transport_controller, content_name, rtcp, options));
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}
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VoiceChannel* ChannelManager::CreateVoiceChannel_w(
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webrtc::MediaControllerInterface* media_controller,
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TransportController* transport_controller,
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const std::string& content_name,
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bool rtcp,
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const AudioOptions& options) {
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ASSERT(initialized_);
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ASSERT(worker_thread_ == rtc::Thread::Current());
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ASSERT(nullptr != media_controller);
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VoiceMediaChannel* media_channel =
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media_engine_->CreateChannel(media_controller->call_w(), options);
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if (!media_channel)
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return nullptr;
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VoiceChannel* voice_channel =
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new VoiceChannel(worker_thread_, media_engine_.get(), media_channel,
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transport_controller, content_name, rtcp);
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if (!voice_channel->Init()) {
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delete voice_channel;
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return nullptr;
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}
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voice_channels_.push_back(voice_channel);
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return voice_channel;
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}
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void ChannelManager::DestroyVoiceChannel(VoiceChannel* voice_channel) {
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if (voice_channel) {
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worker_thread_->Invoke<void>(
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Bind(&ChannelManager::DestroyVoiceChannel_w, this, voice_channel));
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}
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}
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void ChannelManager::DestroyVoiceChannel_w(VoiceChannel* voice_channel) {
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// Destroy voice channel.
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ASSERT(initialized_);
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ASSERT(worker_thread_ == rtc::Thread::Current());
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VoiceChannels::iterator it = std::find(voice_channels_.begin(),
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voice_channels_.end(), voice_channel);
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ASSERT(it != voice_channels_.end());
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if (it == voice_channels_.end())
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return;
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voice_channels_.erase(it);
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delete voice_channel;
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}
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VideoChannel* ChannelManager::CreateVideoChannel(
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webrtc::MediaControllerInterface* media_controller,
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TransportController* transport_controller,
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const std::string& content_name,
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bool rtcp,
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const VideoOptions& options) {
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return worker_thread_->Invoke<VideoChannel*>(
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Bind(&ChannelManager::CreateVideoChannel_w, this, media_controller,
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transport_controller, content_name, rtcp, options));
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}
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VideoChannel* ChannelManager::CreateVideoChannel_w(
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webrtc::MediaControllerInterface* media_controller,
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TransportController* transport_controller,
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const std::string& content_name,
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bool rtcp,
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const VideoOptions& options) {
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ASSERT(initialized_);
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ASSERT(worker_thread_ == rtc::Thread::Current());
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ASSERT(nullptr != media_controller);
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VideoMediaChannel* media_channel =
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media_engine_->CreateVideoChannel(media_controller->call_w(), options);
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if (media_channel == NULL) {
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return NULL;
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}
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VideoChannel* video_channel = new VideoChannel(
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worker_thread_, media_channel, transport_controller, content_name, rtcp);
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if (!video_channel->Init()) {
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delete video_channel;
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return NULL;
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}
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video_channels_.push_back(video_channel);
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return video_channel;
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}
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void ChannelManager::DestroyVideoChannel(VideoChannel* video_channel) {
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if (video_channel) {
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worker_thread_->Invoke<void>(
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Bind(&ChannelManager::DestroyVideoChannel_w, this, video_channel));
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}
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}
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void ChannelManager::DestroyVideoChannel_w(VideoChannel* video_channel) {
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// Destroy video channel.
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ASSERT(initialized_);
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ASSERT(worker_thread_ == rtc::Thread::Current());
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VideoChannels::iterator it = std::find(video_channels_.begin(),
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video_channels_.end(), video_channel);
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ASSERT(it != video_channels_.end());
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if (it == video_channels_.end())
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return;
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video_channels_.erase(it);
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delete video_channel;
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}
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DataChannel* ChannelManager::CreateDataChannel(
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TransportController* transport_controller,
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const std::string& content_name,
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bool rtcp,
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DataChannelType channel_type) {
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return worker_thread_->Invoke<DataChannel*>(
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Bind(&ChannelManager::CreateDataChannel_w, this, transport_controller,
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content_name, rtcp, channel_type));
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}
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DataChannel* ChannelManager::CreateDataChannel_w(
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TransportController* transport_controller,
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const std::string& content_name,
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bool rtcp,
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DataChannelType data_channel_type) {
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// This is ok to alloc from a thread other than the worker thread.
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ASSERT(initialized_);
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DataMediaChannel* media_channel = data_media_engine_->CreateChannel(
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data_channel_type);
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if (!media_channel) {
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LOG(LS_WARNING) << "Failed to create data channel of type "
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<< data_channel_type;
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return NULL;
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}
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DataChannel* data_channel = new DataChannel(
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worker_thread_, media_channel, transport_controller, content_name, rtcp);
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if (!data_channel->Init()) {
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LOG(LS_WARNING) << "Failed to init data channel.";
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delete data_channel;
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return NULL;
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}
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data_channels_.push_back(data_channel);
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return data_channel;
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}
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void ChannelManager::DestroyDataChannel(DataChannel* data_channel) {
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if (data_channel) {
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worker_thread_->Invoke<void>(
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Bind(&ChannelManager::DestroyDataChannel_w, this, data_channel));
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}
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}
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void ChannelManager::DestroyDataChannel_w(DataChannel* data_channel) {
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// Destroy data channel.
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ASSERT(initialized_);
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DataChannels::iterator it = std::find(data_channels_.begin(),
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data_channels_.end(), data_channel);
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ASSERT(it != data_channels_.end());
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if (it == data_channels_.end())
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return;
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data_channels_.erase(it);
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delete data_channel;
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}
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bool ChannelManager::SetAudioOptions(const AudioOptions& options) {
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// "Get device ids from DeviceManager" - these are the defaults returned.
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Device in_dev("", -1);
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Device out_dev("", -1);
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// If we're initialized, pass the settings to the media engine.
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bool ret = true;
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if (initialized_) {
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ret = worker_thread_->Invoke<bool>(
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Bind(&ChannelManager::SetAudioOptions_w, this,
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options, &in_dev, &out_dev));
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}
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// If all worked well, save the values for use in GetAudioOptions.
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if (ret) {
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audio_options_ = options;
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}
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return ret;
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}
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bool ChannelManager::SetAudioOptions_w(
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const AudioOptions& options,
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const Device* in_dev, const Device* out_dev) {
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ASSERT(worker_thread_ == rtc::Thread::Current());
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ASSERT(initialized_);
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// Set audio options
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bool ret = media_engine_->SetAudioOptions(options);
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// Set the audio devices
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if (ret) {
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ret = media_engine_->SetSoundDevices(in_dev, out_dev);
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}
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return ret;
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}
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bool ChannelManager::GetOutputVolume(int* level) {
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if (!initialized_) {
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return false;
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}
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return worker_thread_->Invoke<bool>(
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Bind(&MediaEngineInterface::GetOutputVolume, media_engine_.get(), level));
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}
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bool ChannelManager::SetOutputVolume(int level) {
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bool ret = level >= 0 && level <= 255;
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if (initialized_) {
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ret &= worker_thread_->Invoke<bool>(
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Bind(&MediaEngineInterface::SetOutputVolume,
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media_engine_.get(), level));
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}
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if (ret) {
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audio_output_volume_ = level;
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}
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return ret;
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}
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bool ChannelManager::SetDefaultVideoEncoderConfig(const VideoEncoderConfig& c) {
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bool ret = true;
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if (initialized_) {
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ret = worker_thread_->Invoke<bool>(
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Bind(&MediaEngineInterface::SetDefaultVideoEncoderConfig,
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media_engine_.get(), c));
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}
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if (ret) {
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default_video_encoder_config_ = c;
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}
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return ret;
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}
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void ChannelManager::SetVoiceLogging(int level, const char* filter) {
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if (initialized_) {
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worker_thread_->Invoke<void>(
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Bind(&MediaEngineInterface::SetVoiceLogging,
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media_engine_.get(), level, filter));
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} else {
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media_engine_->SetVoiceLogging(level, filter);
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}
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}
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void ChannelManager::SetVideoLogging(int level, const char* filter) {
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if (initialized_) {
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worker_thread_->Invoke<void>(
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Bind(&MediaEngineInterface::SetVideoLogging,
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media_engine_.get(), level, filter));
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} else {
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media_engine_->SetVideoLogging(level, filter);
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}
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}
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std::vector<cricket::VideoFormat> ChannelManager::GetSupportedFormats(
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VideoCapturer* capturer) const {
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ASSERT(capturer != NULL);
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std::vector<VideoFormat> formats;
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|
worker_thread_->Invoke<void>(rtc::Bind(&ChannelManager::GetSupportedFormats_w,
|
|
this, capturer, &formats));
|
|
return formats;
|
|
}
|
|
|
|
void ChannelManager::GetSupportedFormats_w(
|
|
VideoCapturer* capturer,
|
|
std::vector<cricket::VideoFormat>* out_formats) const {
|
|
const std::vector<VideoFormat>* formats = capturer->GetSupportedFormats();
|
|
if (formats != NULL)
|
|
*out_formats = *formats;
|
|
}
|
|
|
|
// The following are done in the new "CaptureManager" style that
|
|
// all local video capturers, processors, and managers should move
|
|
// to.
|
|
// TODO(pthatcher): Add more of the CaptureManager interface.
|
|
bool ChannelManager::StartVideoCapture(
|
|
VideoCapturer* capturer, const VideoFormat& video_format) {
|
|
return initialized_ && worker_thread_->Invoke<bool>(
|
|
Bind(&CaptureManager::StartVideoCapture,
|
|
capture_manager_.get(), capturer, video_format));
|
|
}
|
|
|
|
bool ChannelManager::MuteToBlackThenPause(
|
|
VideoCapturer* video_capturer, bool muted) {
|
|
if (!initialized_) {
|
|
return false;
|
|
}
|
|
worker_thread_->Invoke<void>(
|
|
Bind(&VideoCapturer::MuteToBlackThenPause, video_capturer, muted));
|
|
return true;
|
|
}
|
|
|
|
bool ChannelManager::StopVideoCapture(
|
|
VideoCapturer* capturer, const VideoFormat& video_format) {
|
|
return initialized_ && worker_thread_->Invoke<bool>(
|
|
Bind(&CaptureManager::StopVideoCapture,
|
|
capture_manager_.get(), capturer, video_format));
|
|
}
|
|
|
|
bool ChannelManager::RestartVideoCapture(
|
|
VideoCapturer* video_capturer,
|
|
const VideoFormat& previous_format,
|
|
const VideoFormat& desired_format,
|
|
CaptureManager::RestartOptions options) {
|
|
return initialized_ && worker_thread_->Invoke<bool>(
|
|
Bind(&CaptureManager::RestartVideoCapture, capture_manager_.get(),
|
|
video_capturer, previous_format, desired_format, options));
|
|
}
|
|
|
|
bool ChannelManager::AddVideoRenderer(
|
|
VideoCapturer* capturer, VideoRenderer* renderer) {
|
|
return initialized_ && worker_thread_->Invoke<bool>(
|
|
Bind(&CaptureManager::AddVideoRenderer,
|
|
capture_manager_.get(), capturer, renderer));
|
|
}
|
|
|
|
bool ChannelManager::RemoveVideoRenderer(
|
|
VideoCapturer* capturer, VideoRenderer* renderer) {
|
|
return initialized_ && worker_thread_->Invoke<bool>(
|
|
Bind(&CaptureManager::RemoveVideoRenderer,
|
|
capture_manager_.get(), capturer, renderer));
|
|
}
|
|
|
|
bool ChannelManager::IsScreencastRunning() const {
|
|
return initialized_ && worker_thread_->Invoke<bool>(
|
|
Bind(&ChannelManager::IsScreencastRunning_w, this));
|
|
}
|
|
|
|
bool ChannelManager::IsScreencastRunning_w() const {
|
|
VideoChannels::const_iterator it = video_channels_.begin();
|
|
for ( ; it != video_channels_.end(); ++it) {
|
|
if ((*it) && (*it)->IsScreencasting()) {
|
|
return true;
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
|
|
void ChannelManager::OnVideoCaptureStateChange(VideoCapturer* capturer,
|
|
CaptureState result) {
|
|
// TODO(whyuan): Check capturer and signal failure only for camera video, not
|
|
// screencast.
|
|
capturing_ = result == CS_RUNNING;
|
|
main_thread_->Post(this, MSG_VIDEOCAPTURESTATE,
|
|
new CaptureStateParams(capturer, result));
|
|
}
|
|
|
|
void ChannelManager::OnMessage(rtc::Message* message) {
|
|
switch (message->message_id) {
|
|
case MSG_VIDEOCAPTURESTATE: {
|
|
CaptureStateParams* data =
|
|
static_cast<CaptureStateParams*>(message->pdata);
|
|
SignalVideoCaptureStateChange(data->capturer, data->state);
|
|
delete data;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
bool ChannelManager::StartAecDump(rtc::PlatformFile file) {
|
|
return worker_thread_->Invoke<bool>(
|
|
Bind(&MediaEngineInterface::StartAecDump, media_engine_.get(), file));
|
|
}
|
|
|
|
void ChannelManager::StopAecDump() {
|
|
worker_thread_->Invoke<void>(
|
|
Bind(&MediaEngineInterface::StopAecDump, media_engine_.get()));
|
|
}
|
|
|
|
bool ChannelManager::StartRtcEventLog(rtc::PlatformFile file) {
|
|
return worker_thread_->Invoke<bool>(
|
|
Bind(&MediaEngineInterface::StartRtcEventLog, media_engine_.get(), file));
|
|
}
|
|
|
|
void ChannelManager::StopRtcEventLog() {
|
|
worker_thread_->Invoke<void>(
|
|
Bind(&MediaEngineInterface::StopRtcEventLog, media_engine_.get()));
|
|
}
|
|
|
|
} // namespace cricket
|