992febb997
git-svn-id: http://webrtc.googlecode.com/svn/trunk@7089 4adac7df-926f-26a2-2b94-8c16560cd09d
325 lines
14 KiB
C++
325 lines
14 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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#ifndef TALK_SESSION_MEDIA_CHANNELMANAGER_H_
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#define TALK_SESSION_MEDIA_CHANNELMANAGER_H_
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#include <string>
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#include <vector>
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#include "talk/media/base/capturemanager.h"
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#include "talk/media/base/mediaengine.h"
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#include "talk/p2p/base/session.h"
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#include "talk/session/media/voicechannel.h"
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#include "webrtc/base/criticalsection.h"
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#include "webrtc/base/fileutils.h"
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#include "webrtc/base/sigslotrepeater.h"
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#include "webrtc/base/thread.h"
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namespace cricket {
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const int kDefaultAudioDelayOffset = 0;
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class Soundclip;
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class VideoProcessor;
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class VoiceChannel;
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class VoiceProcessor;
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// ChannelManager allows the MediaEngine to run on a separate thread, and takes
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// care of marshalling calls between threads. It also creates and keeps track of
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// voice and video channels; by doing so, it can temporarily pause all the
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// channels when a new audio or video device is chosen. The voice and video
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// channels are stored in separate vectors, to easily allow operations on just
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// voice or just video channels.
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// ChannelManager also allows the application to discover what devices it has
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// using device manager.
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class ChannelManager : public rtc::MessageHandler,
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public sigslot::has_slots<> {
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public:
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#if !defined(DISABLE_MEDIA_ENGINE_FACTORY)
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// Creates the channel manager, and specifies the worker thread to use.
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explicit ChannelManager(rtc::Thread* worker);
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#endif
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// For testing purposes. Allows the media engine and data media
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// engine and dev manager to be mocks. The ChannelManager takes
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// ownership of these objects.
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ChannelManager(MediaEngineInterface* me,
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DataEngineInterface* dme,
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DeviceManagerInterface* dm,
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CaptureManager* cm,
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rtc::Thread* worker);
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// Same as above, but gives an easier default DataEngine.
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ChannelManager(MediaEngineInterface* me,
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DeviceManagerInterface* dm,
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rtc::Thread* worker);
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~ChannelManager();
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// Accessors for the worker thread, allowing it to be set after construction,
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// but before Init. set_worker_thread will return false if called after Init.
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rtc::Thread* worker_thread() const { return worker_thread_; }
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bool set_worker_thread(rtc::Thread* thread) {
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if (initialized_) return false;
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worker_thread_ = thread;
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return true;
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}
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// Gets capabilities. Can be called prior to starting the media engine.
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int GetCapabilities();
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// Retrieves the list of supported audio & video codec types.
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// Can be called before starting the media engine.
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void GetSupportedAudioCodecs(std::vector<AudioCodec>* codecs) const;
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void GetSupportedAudioRtpHeaderExtensions(RtpHeaderExtensions* ext) const;
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void GetSupportedVideoCodecs(std::vector<VideoCodec>* codecs) const;
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void GetSupportedVideoRtpHeaderExtensions(RtpHeaderExtensions* ext) const;
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void GetSupportedDataCodecs(std::vector<DataCodec>* codecs) const;
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// Indicates whether the media engine is started.
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bool initialized() const { return initialized_; }
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// Starts up the media engine.
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bool Init();
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// Shuts down the media engine.
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void Terminate();
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// The operations below all occur on the worker thread.
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// Creates a voice channel, to be associated with the specified session.
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VoiceChannel* CreateVoiceChannel(
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BaseSession* session, const std::string& content_name, bool rtcp);
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// Destroys a voice channel created with the Create API.
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void DestroyVoiceChannel(VoiceChannel* voice_channel);
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// Creates a video channel, synced with the specified voice channel, and
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// associated with the specified session.
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VideoChannel* CreateVideoChannel(
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BaseSession* session, const std::string& content_name, bool rtcp,
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VoiceChannel* voice_channel);
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// Destroys a video channel created with the Create API.
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void DestroyVideoChannel(VideoChannel* video_channel);
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DataChannel* CreateDataChannel(
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BaseSession* session, const std::string& content_name,
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bool rtcp, DataChannelType data_channel_type);
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// Destroys a data channel created with the Create API.
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void DestroyDataChannel(DataChannel* data_channel);
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// Creates a soundclip.
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Soundclip* CreateSoundclip();
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// Destroys a soundclip created with the Create API.
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void DestroySoundclip(Soundclip* soundclip);
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// Indicates whether any channels exist.
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bool has_channels() const {
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return (!voice_channels_.empty() || !video_channels_.empty() ||
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!soundclips_.empty());
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}
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// Configures the audio and video devices. A null pointer can be passed to
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// GetAudioOptions() for any parameter of no interest.
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bool GetAudioOptions(std::string* wave_in_device,
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std::string* wave_out_device,
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AudioOptions* options);
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bool SetAudioOptions(const std::string& wave_in_device,
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const std::string& wave_out_device,
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const AudioOptions& options);
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// Sets Engine-specific audio options according to enabled experiments.
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bool SetEngineAudioOptions(const AudioOptions& options);
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bool GetOutputVolume(int* level);
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bool SetOutputVolume(int level);
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bool IsSameCapturer(const std::string& capturer_name,
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VideoCapturer* capturer);
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// TODO(noahric): Nearly everything called "device" in this API is actually a
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// device name, so this should really be GetCaptureDeviceName, and the
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// next method should be GetCaptureDevice.
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bool GetCaptureDevice(std::string* cam_device);
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// Gets the current capture Device.
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bool GetVideoCaptureDevice(Device* device);
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// Create capturer based on what has been set in SetCaptureDevice().
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VideoCapturer* CreateVideoCapturer();
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// Create capturer from a screen.
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VideoCapturer* CreateScreenCapturer(const ScreencastId& screenid);
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bool SetCaptureDevice(const std::string& cam_device);
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bool SetDefaultVideoEncoderConfig(const VideoEncoderConfig& config);
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// RTX will be enabled/disabled in engines that support it. The supporting
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// engines will start offering an RTX codec. Must be called before Init().
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bool SetVideoRtxEnabled(bool enable);
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// Starts/stops the local microphone and enables polling of the input level.
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bool SetLocalMonitor(bool enable);
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bool monitoring() const { return monitoring_; }
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bool capturing() const { return capturing_; }
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// Configures the logging output of the mediaengine(s).
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void SetVoiceLogging(int level, const char* filter);
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void SetVideoLogging(int level, const char* filter);
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// The channel manager handles the Tx side for Video processing,
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// as well as Tx and Rx side for Voice processing.
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// (The Rx Video processing will go throug the simplerenderingmanager,
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// to be implemented).
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bool RegisterVideoProcessor(VideoCapturer* capturer,
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VideoProcessor* processor);
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bool UnregisterVideoProcessor(VideoCapturer* capturer,
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VideoProcessor* processor);
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bool RegisterVoiceProcessor(uint32 ssrc,
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VoiceProcessor* processor,
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MediaProcessorDirection direction);
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bool UnregisterVoiceProcessor(uint32 ssrc,
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VoiceProcessor* processor,
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MediaProcessorDirection direction);
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// The following are done in the new "CaptureManager" style that
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// all local video capturers, processors, and managers should move to.
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// TODO(pthatcher): Make methods nicer by having start return a handle that
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// can be used for stop and restart, rather than needing to pass around
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// formats a a pseudo-handle.
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bool StartVideoCapture(VideoCapturer* video_capturer,
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const VideoFormat& video_format);
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// When muting, produce black frames then pause the camera.
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// When unmuting, start the camera. Camera starts unmuted.
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bool MuteToBlackThenPause(VideoCapturer* video_capturer, bool muted);
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bool StopVideoCapture(VideoCapturer* video_capturer,
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const VideoFormat& video_format);
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bool RestartVideoCapture(VideoCapturer* video_capturer,
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const VideoFormat& previous_format,
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const VideoFormat& desired_format,
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CaptureManager::RestartOptions options);
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bool AddVideoRenderer(VideoCapturer* capturer, VideoRenderer* renderer);
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bool RemoveVideoRenderer(VideoCapturer* capturer, VideoRenderer* renderer);
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bool IsScreencastRunning() const;
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// The operations below occur on the main thread.
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bool GetAudioInputDevices(std::vector<std::string>* names);
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bool GetAudioOutputDevices(std::vector<std::string>* names);
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bool GetVideoCaptureDevices(std::vector<std::string>* names);
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void SetVideoCaptureDeviceMaxFormat(const std::string& usb_id,
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const VideoFormat& max_format);
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// Starts AEC dump using existing file.
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bool StartAecDump(rtc::PlatformFile file);
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sigslot::repeater0<> SignalDevicesChange;
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sigslot::signal2<VideoCapturer*, CaptureState> SignalVideoCaptureStateChange;
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// Returns the current selected device. Note: Subtly different from
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// GetCaptureDevice(). See member video_device_ for more details.
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// This API is mainly a hook used by unittests.
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const std::string& video_device_name() const { return video_device_name_; }
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// TODO(hellner): Remove this function once the engine capturer has been
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// removed.
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VideoFormat GetStartCaptureFormat();
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protected:
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// Adds non-transient parameters which can only be changed through the
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// options store.
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bool SetAudioOptions(const std::string& wave_in_device,
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const std::string& wave_out_device,
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const AudioOptions& options,
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int delay_offset);
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int audio_delay_offset() const { return audio_delay_offset_; }
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// This is here so that ChannelManager subclasses can set the video
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// capturer factories to use.
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DeviceManagerInterface* device_manager() { return device_manager_.get(); }
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private:
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typedef std::vector<VoiceChannel*> VoiceChannels;
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typedef std::vector<VideoChannel*> VideoChannels;
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typedef std::vector<DataChannel*> DataChannels;
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typedef std::vector<Soundclip*> Soundclips;
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void Construct(MediaEngineInterface* me,
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DataEngineInterface* dme,
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DeviceManagerInterface* dm,
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CaptureManager* cm,
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rtc::Thread* worker_thread);
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void Terminate_w();
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VoiceChannel* CreateVoiceChannel_w(
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BaseSession* session, const std::string& content_name, bool rtcp);
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void DestroyVoiceChannel_w(VoiceChannel* voice_channel);
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VideoChannel* CreateVideoChannel_w(
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BaseSession* session, const std::string& content_name, bool rtcp,
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VoiceChannel* voice_channel);
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void DestroyVideoChannel_w(VideoChannel* video_channel);
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DataChannel* CreateDataChannel_w(
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BaseSession* session, const std::string& content_name,
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bool rtcp, DataChannelType data_channel_type);
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void DestroyDataChannel_w(DataChannel* data_channel);
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Soundclip* CreateSoundclip_w();
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void DestroySoundclip_w(Soundclip* soundclip);
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bool SetAudioOptions_w(const AudioOptions& options, int delay_offset,
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const Device* in_dev, const Device* out_dev);
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bool SetEngineAudioOptions_w(const AudioOptions& options);
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bool SetCaptureDevice_w(const Device* cam_device);
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void OnVideoCaptureStateChange(VideoCapturer* capturer,
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CaptureState result);
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bool RegisterVideoProcessor_w(VideoCapturer* capturer,
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VideoProcessor* processor);
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bool UnregisterVideoProcessor_w(VideoCapturer* capturer,
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VideoProcessor* processor);
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bool IsScreencastRunning_w() const;
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virtual void OnMessage(rtc::Message *message);
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rtc::scoped_ptr<MediaEngineInterface> media_engine_;
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rtc::scoped_ptr<DataEngineInterface> data_media_engine_;
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rtc::scoped_ptr<DeviceManagerInterface> device_manager_;
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rtc::scoped_ptr<CaptureManager> capture_manager_;
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bool initialized_;
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rtc::Thread* main_thread_;
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rtc::Thread* worker_thread_;
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VoiceChannels voice_channels_;
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VideoChannels video_channels_;
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DataChannels data_channels_;
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Soundclips soundclips_;
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std::string audio_in_device_;
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std::string audio_out_device_;
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AudioOptions audio_options_;
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int audio_delay_offset_;
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int audio_output_volume_;
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std::string camera_device_;
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VideoEncoderConfig default_video_encoder_config_;
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VideoRenderer* local_renderer_;
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bool enable_rtx_;
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bool capturing_;
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bool monitoring_;
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// String containing currently set device. Note that this string is subtly
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// different from camera_device_. E.g. camera_device_ will list unplugged
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// but selected devices while this sting will be empty or contain current
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// selected device.
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// TODO(hellner): refactor the code such that there is no need to keep two
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// strings for video devices that have subtle differences in behavior.
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std::string video_device_name_;
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};
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} // namespace cricket
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#endif // TALK_SESSION_MEDIA_CHANNELMANAGER_H_
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