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5cccea6f0f
This patch was automatically generated using the following script: function convert() { echo "Converting $1 to $2..." find . \ ! -wholename "*/.git*" \ ! -wholename "obj-ff-dbg*" \ -type f \ \( -iname "*.cpp" \ -o -iname "*.h" \ -o -iname "*.c" \ -o -iname "*.cc" \ -o -iname "*.idl" \ -o -iname "*.ipdl" \ -o -iname "*.ipdlh" \ -o -iname "*.mm" \) | \ xargs -n 1 sed -i -e "s/\b$1\b/$2/g" } convert MOZ_OVERRIDE override convert MOZ_FINAL final
264 lines
9.9 KiB
C++
264 lines
9.9 KiB
C++
/* vim:set ts=2 sw=2 sts=2 et cindent: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#if !defined(RtspMediaResource_h_)
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#define RtspMediaResource_h_
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#include "MediaResource.h"
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#include "mozilla/Monitor.h"
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#include "nsITimer.h"
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#include "VideoUtils.h"
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namespace mozilla {
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class RtspTrackBuffer;
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/* RtspMediaResource
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* RtspMediaResource provides an interface to deliver and control RTSP media
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* data to RtspDecoder.
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*
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* RTSP Flow Start vs HTTP Flow Start:
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* For HTTP (and files stored on disk), once the channel is created and response
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* data is available, HTMLMediaElement::MediaLoadListener::OnStartRequest is
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* called. (Note, this is an asynchronous call following channel->AsyncOpen).
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* The decoder and MediaResource are set up to talk to each other:
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* InitializeDecoderForChannel and FinishDecoderSetup.
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* RtspMediaResource is different from this, in that FinishDecoderSetup is
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* postponed until after the initial connection with the server is made.
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* RtspController, owned by RtspMediaResource, provides the interface to setup
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* the connection, and calls RtspMediaResource::Listener::OnConnected
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* (from nsIStreamingProtocolListener). FinishDecoderSetup is then called to
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* connect RtspMediaResource with RtspDecoder and allow HTMLMediaElement to
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* request playback etc.
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*
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* Playback:
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* When the user presses play/pause, HTMLMediaElement::Play/::Pause is called,
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* subsequently making calls to the decoder state machine. Upon these state
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* changes, the decoder is told to start reading and decoding data. This causes
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* the nsIStreamingMediaController object to send play/pause commands to the
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* server.
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* Data is then delivered to the host and eventually written to the
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* RtspTrackBuffer objects. Note that RtspMediaResource does not know about the
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* play or pause state. It only knows about the data written into its buffers.
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*
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* Data Structures and Flow:
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* Unlike HTTP, RTSP provides separate streams for audio and video.
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* As such, it creates two RtspTrackBuffer objects for the audio and video data.
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* Data is read using the function ReadFrameFromTrack. These buffer objects are
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* ring buffers, implying that data from the network may be discarded if the
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* decoder cannot read at a high enough rate.
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*
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* Data is delivered via RtspMediaResource::Listener::OnMediaDataAvailable.
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* This Listener implements nsIStreamingProtocolListener, and writes the data to
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* the appropriate RtspTrackBuffer. The decoder then reads the data by calling
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* RtspMediaResource::ReadFrameFromTrack. Note that the decoder and decode
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* thread will be blocked until data is available in one of the two buffers.
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*
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* Seeking:
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* Since the frame data received after seek is not continuous with existing
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* frames in RtspTrackBuffer, the buffer must be cleared. If we don't clear the
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* old frame data in RtspTrackBuffer, the decoder's behavior will be
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* unpredictable. So we add |mFrameType| in RtspTrackBuffer to do this:
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* When we are seeking, the mFrameType flag is set, and RtspTrackBuffer will
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* drop the incoming data until the RTSP server completes the seek operation.
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* Note: seeking for RTSP is carried out based on sending the seek time to the
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* server, unlike HTTP in which the seek time is converted to a byte offset.
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* Thus, RtspMediaResource has a SeekTime function which should be called
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* instead of Seek.
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* */
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class RtspMediaResource : public BaseMediaResource
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{
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public:
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RtspMediaResource(MediaDecoder* aDecoder, nsIChannel* aChannel, nsIURI* aURI,
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const nsACString& aContentType);
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virtual ~RtspMediaResource();
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// The following methods can be called on any thread.
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// Get the RtspMediaResource pointer if this MediaResource is a
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// RtspMediaResource. For calling Rtsp specific functions.
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virtual RtspMediaResource* GetRtspPointer() override final {
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return this;
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}
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// Returns the nsIStreamingProtocolController in the RtspMediaResource.
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// RtspMediaExtractor: request it to get mime type for creating decoder.
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// RtspOmxDecoder: request it to send play/pause commands to RTSP server.
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// The lifetime of mMediaStreamController is controlled by RtspMediaResource
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// because the RtspMediaExtractor and RtspOmxDecoder won't hold the reference.
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nsIStreamingProtocolController* GetMediaStreamController() {
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return mMediaStreamController;
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}
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// Even it is a live stream, as long as it provides valid timestamps,
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// we tell state machine it's not a live stream.
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virtual bool IsRealTime() override {
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return !mHasTimestamp;
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}
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// Called by RtspOmxReader, dispatch a runnable to notify mDecoder.
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// Other thread only.
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void SetSuspend(bool aIsSuspend);
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// The following methods can be called on any thread except main thread.
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// Read data from track.
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// Parameters:
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// aToBuffer, aToBufferSize: buffer pointer and buffer size.
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// aReadCount: output actual read bytes.
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// aFrameTime: output frame time stamp.
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// aFrameSize: actual data size in track.
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nsresult ReadFrameFromTrack(uint8_t* aBuffer, uint32_t aBufferSize,
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uint32_t aTrackIdx, uint32_t& aBytes,
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uint64_t& aTime, uint32_t& aFrameSize);
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// Seek to the given time offset
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nsresult SeekTime(int64_t aOffset);
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// The idea of playout delay is to hold frames in the playout buffer
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// (RtspTrackBuffer) for a period of time in order to smooth timing variations
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// caused by the network.
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void EnablePlayoutDelay();
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void DisablePlayoutDelay();
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// dummy
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virtual nsresult ReadAt(int64_t aOffset, char* aBuffer,
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uint32_t aCount, uint32_t* aBytes) override{
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return NS_ERROR_FAILURE;
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}
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// dummy
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virtual void SetReadMode(MediaCacheStream::ReadMode aMode) override {}
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// dummy
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virtual void SetPlaybackRate(uint32_t aBytesPerSecond) override {}
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// dummy
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virtual nsresult Read(char* aBuffer, uint32_t aCount, uint32_t* aBytes)
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override {
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return NS_OK;
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}
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// dummy
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virtual nsresult Seek(int32_t aWhence, int64_t aOffset) override {
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return NS_OK;
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}
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// dummy
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virtual int64_t Tell() override { return 0; }
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// Any thread
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virtual void Pin() override {}
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virtual void Unpin() override {}
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virtual bool IsSuspendedByCache() override { return mIsSuspend; }
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virtual bool IsSuspended() override { return false; }
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virtual bool IsTransportSeekable() override { return true; }
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// dummy
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virtual double GetDownloadRate(bool* aIsReliable) override { *aIsReliable = false; return 0; }
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virtual int64_t GetLength() override {
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if (mIsLiveStream) {
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return -1;
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}
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return 0;
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}
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// dummy
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virtual int64_t GetNextCachedData(int64_t aOffset) override { return 0; }
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// dummy
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virtual int64_t GetCachedDataEnd(int64_t aOffset) override { return 0; }
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// dummy
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virtual bool IsDataCachedToEndOfResource(int64_t aOffset) override {
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return false;
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}
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// dummy
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nsresult GetCachedRanges(nsTArray<MediaByteRange>& aRanges) override {
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return NS_ERROR_FAILURE;
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}
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// The following methods can be called on main thread only.
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virtual nsresult Open(nsIStreamListener** aStreamListener) override;
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virtual nsresult Close() override;
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virtual void Suspend(bool aCloseImmediately) override;
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virtual void Resume() override;
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virtual already_AddRefed<nsIPrincipal> GetCurrentPrincipal() override;
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virtual bool CanClone() override {
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return false;
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}
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virtual already_AddRefed<MediaResource> CloneData(MediaDecoder* aDecoder)
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override {
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return nullptr;
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}
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// dummy
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virtual nsresult ReadFromCache(char* aBuffer, int64_t aOffset,
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uint32_t aCount) override {
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return NS_ERROR_FAILURE;
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}
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virtual size_t SizeOfExcludingThis(
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MallocSizeOf aMallocSizeOf) const override;
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virtual size_t SizeOfIncludingThis(
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MallocSizeOf aMallocSizeOf) const override {
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return aMallocSizeOf(this) + SizeOfExcludingThis(aMallocSizeOf);
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}
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// Listener implements nsIStreamingProtocolListener as
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// mMediaStreamController's callback function.
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// It holds RtspMediaResource reference to notify the connection status and
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// data arrival. The Revoke function releases the reference when
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// RtspMediaResource::OnDisconnected is called.
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class Listener final : public nsIInterfaceRequestor,
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public nsIStreamingProtocolListener
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{
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~Listener() {}
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public:
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explicit Listener(RtspMediaResource* aResource) : mResource(aResource) {}
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NS_DECL_ISUPPORTS
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NS_DECL_NSIINTERFACEREQUESTOR
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NS_DECL_NSISTREAMINGPROTOCOLLISTENER
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void Revoke();
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private:
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nsRefPtr<RtspMediaResource> mResource;
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};
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friend class Listener;
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protected:
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// Main thread access only.
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// These are called on the main thread by Listener.
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nsresult OnMediaDataAvailable(uint8_t aIndex, const nsACString& aData,
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uint32_t aLength, uint32_t aOffset,
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nsIStreamingProtocolMetaData* aMeta);
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nsresult OnConnected(uint8_t aIndex, nsIStreamingProtocolMetaData* aMeta);
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nsresult OnDisconnected(uint8_t aIndex, nsresult aReason);
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nsRefPtr<Listener> mListener;
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private:
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// Notify mDecoder the rtsp stream is suspend. Main thread only.
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void NotifySuspend(bool aIsSuspend);
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bool IsVideoEnabled();
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bool IsVideo(uint8_t tracks, nsIStreamingProtocolMetaData *meta);
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// These two members are created at |RtspMediaResource::OnConnected|.
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nsCOMPtr<nsIStreamingProtocolController> mMediaStreamController;
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nsTArray<nsAutoPtr<RtspTrackBuffer>> mTrackBuffer;
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// A flag that indicates the |RtspMediaResource::OnConnected| has already been
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// called.
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bool mIsConnected;
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// Whether it's a live stream.
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bool mIsLiveStream;
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// Whether it provides timestamps.
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bool mHasTimestamp;
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// Indicate the rtsp controller is suspended or not. Main thread only.
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bool mIsSuspend;
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};
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} // namespace mozilla
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#endif
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