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https://gitlab.winehq.org/wine/wine-gecko.git
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33bb32f549
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
303 lines
9.3 KiB
C++
303 lines
9.3 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* 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(WebMReader_h_)
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#define WebMReader_h_
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#include <stdint.h>
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#include "nsDeque.h"
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#include "MediaDecoderReader.h"
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#include "nsAutoRef.h"
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#include "nestegg/nestegg.h"
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#define VPX_DONT_DEFINE_STDINT_TYPES
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#include "vpx/vpx_codec.h"
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#include "mozilla/layers/LayersTypes.h"
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#ifdef MOZ_TREMOR
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#include "tremor/ivorbiscodec.h"
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#else
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#include "vorbis/codec.h"
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#endif
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#include "OpusParser.h"
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// Holds a nestegg_packet, and its file offset. This is needed so we
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// know the offset in the file we've played up to, in order to calculate
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// whether it's likely we can play through to the end without needing
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// to stop to buffer, given the current download rate.
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class NesteggPacketHolder {
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public:
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NesteggPacketHolder(nestegg_packet* aPacket, int64_t aOffset)
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: mPacket(aPacket), mOffset(aOffset)
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{
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MOZ_COUNT_CTOR(NesteggPacketHolder);
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}
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~NesteggPacketHolder() {
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MOZ_COUNT_DTOR(NesteggPacketHolder);
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nestegg_free_packet(mPacket);
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}
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nestegg_packet* mPacket;
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// Offset in bytes. This is the offset of the end of the Block
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// which contains the packet.
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int64_t mOffset;
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private:
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// Copy constructor and assignment operator not implemented. Don't use them!
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NesteggPacketHolder(const NesteggPacketHolder &aOther);
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NesteggPacketHolder& operator= (NesteggPacketHolder const& aOther);
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};
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template <>
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class nsAutoRefTraits<NesteggPacketHolder> : public nsPointerRefTraits<NesteggPacketHolder>
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{
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public:
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static void Release(NesteggPacketHolder* aHolder) { delete aHolder; }
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};
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namespace mozilla {
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class WebMBufferedState;
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static const unsigned NS_PER_USEC = 1000;
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static const double NS_PER_S = 1e9;
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// Thread and type safe wrapper around nsDeque.
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class PacketQueueDeallocator : public nsDequeFunctor {
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virtual void* operator() (void* aObject) {
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delete static_cast<NesteggPacketHolder*>(aObject);
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return nullptr;
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}
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};
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// Typesafe queue for holding nestegg packets. It has
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// ownership of the items in the queue and will free them
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// when destroyed.
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class WebMPacketQueue : private nsDeque {
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public:
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WebMPacketQueue()
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: nsDeque(new PacketQueueDeallocator())
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{}
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~WebMPacketQueue() {
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Reset();
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}
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inline int32_t GetSize() {
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return nsDeque::GetSize();
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}
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inline void Push(NesteggPacketHolder* aItem) {
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NS_ASSERTION(aItem, "NULL pushed to WebMPacketQueue");
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nsDeque::Push(aItem);
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}
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inline void PushFront(NesteggPacketHolder* aItem) {
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NS_ASSERTION(aItem, "NULL pushed to WebMPacketQueue");
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nsDeque::PushFront(aItem);
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}
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inline NesteggPacketHolder* PopFront() {
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return static_cast<NesteggPacketHolder*>(nsDeque::PopFront());
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}
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void Reset() {
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while (GetSize() > 0) {
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delete PopFront();
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}
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}
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};
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class WebMReader;
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// Class to handle various video decode paths
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class WebMVideoDecoder
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{
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public:
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virtual nsresult Init(unsigned int aWidth = 0, unsigned int aHeight = 0) = 0;
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virtual nsresult Flush() { return NS_OK; }
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virtual void Shutdown() = 0;
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virtual bool DecodeVideoFrame(bool &aKeyframeSkip,
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int64_t aTimeThreshold) = 0;
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WebMVideoDecoder() {}
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virtual ~WebMVideoDecoder() {}
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};
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class WebMReader : public MediaDecoderReader
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{
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public:
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explicit WebMReader(AbstractMediaDecoder* aDecoder);
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protected:
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~WebMReader();
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public:
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virtual nsRefPtr<ShutdownPromise> Shutdown() override;
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virtual nsresult Init(MediaDecoderReader* aCloneDonor) override;
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virtual nsresult ResetDecode() override;
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virtual bool DecodeAudioData() override;
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virtual bool DecodeVideoFrame(bool &aKeyframeSkip,
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int64_t aTimeThreshold) override;
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virtual bool HasAudio() override
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{
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NS_ASSERTION(mDecoder->OnDecodeThread(), "Should be on decode thread.");
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return mHasAudio;
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}
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virtual bool HasVideo() override
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{
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NS_ASSERTION(mDecoder->OnDecodeThread(), "Should be on decode thread.");
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return mHasVideo;
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}
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virtual nsresult ReadMetadata(MediaInfo* aInfo,
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MetadataTags** aTags) override;
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virtual nsRefPtr<SeekPromise>
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Seek(int64_t aTime, int64_t aEndTime) override;
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virtual nsresult GetBuffered(dom::TimeRanges* aBuffered) override;
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virtual void NotifyDataArrived(const char* aBuffer, uint32_t aLength,
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int64_t aOffset) override;
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virtual int64_t GetEvictionOffset(double aTime) override;
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virtual bool IsMediaSeekable() override;
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// Value passed to NextPacket to determine if we are reading a video or an
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// audio packet.
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enum TrackType {
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VIDEO = 0,
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AUDIO = 1
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};
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// Read a packet from the nestegg file. Returns nullptr if all packets for
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// the particular track have been read. Pass VIDEO or AUDIO to indicate the
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// type of the packet we want to read.
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nsReturnRef<NesteggPacketHolder> NextPacket(TrackType aTrackType);
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// Pushes a packet to the front of the video packet queue.
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virtual void PushVideoPacket(NesteggPacketHolder* aItem);
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int GetVideoCodec();
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nsIntRect GetPicture();
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nsIntSize GetInitialFrame();
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uint64_t GetLastVideoFrameTime();
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void SetLastVideoFrameTime(uint64_t aFrameTime);
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layers::LayersBackend GetLayersBackendType() { return mLayersBackendType; }
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FlushableMediaTaskQueue* GetVideoTaskQueue() { return mVideoTaskQueue; }
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protected:
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// Setup opus decoder
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bool InitOpusDecoder();
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// Decode a nestegg packet of audio data. Push the audio data on the
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// audio queue. Returns true when there's more audio to decode,
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// false if the audio is finished, end of file has been reached,
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// or an un-recoverable read error has occured. The reader's monitor
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// must be held during this call. The caller is responsible for freeing
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// aPacket.
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bool DecodeAudioPacket(nestegg_packet* aPacket, int64_t aOffset);
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bool DecodeVorbis(const unsigned char* aData, size_t aLength,
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int64_t aOffset, uint64_t aTstampUsecs,
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int32_t* aTotalFrames);
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bool DecodeOpus(const unsigned char* aData, size_t aLength,
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int64_t aOffset, uint64_t aTstampUsecs,
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nestegg_packet* aPacket);
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// Release context and set to null. Called when an error occurs during
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// reading metadata or destruction of the reader itself.
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void Cleanup();
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virtual nsresult SeekInternal(int64_t aTime);
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// Initializes mLayersBackendType if possible.
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void InitLayersBackendType();
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bool ShouldSkipVideoFrame(int64_t aTimeThreshold);
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private:
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// Get the timestamp of keyframe greater than aTimeThreshold.
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int64_t GetNextKeyframeTime(int64_t aTimeThreshold);
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// Push the packets into aOutput which's timestamp is less than aEndTime.
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// Return false if we reach the end of stream or something wrong.
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bool FilterPacketByTime(int64_t aEndTime, WebMPacketQueue& aOutput);
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// libnestegg context for webm container. Access on state machine thread
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// or decoder thread only.
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nestegg* mContext;
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// The video decoder
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nsAutoPtr<WebMVideoDecoder> mVideoDecoder;
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// Vorbis decoder state
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vorbis_info mVorbisInfo;
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vorbis_comment mVorbisComment;
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vorbis_dsp_state mVorbisDsp;
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vorbis_block mVorbisBlock;
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int64_t mPacketCount;
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// Opus decoder state
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nsAutoPtr<OpusParser> mOpusParser;
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OpusMSDecoder *mOpusDecoder;
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uint16_t mSkip; // Samples left to trim before playback.
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uint64_t mSeekPreroll; // Nanoseconds to discard after seeking.
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// Queue of video and audio packets that have been read but not decoded. These
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// must only be accessed from the state machine thread.
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WebMPacketQueue mVideoPackets;
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WebMPacketQueue mAudioPackets;
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// Index of video and audio track to play
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uint32_t mVideoTrack;
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uint32_t mAudioTrack;
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// Time in microseconds of the start of the first audio frame we've decoded.
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int64_t mAudioStartUsec;
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// Number of audio frames we've decoded since decoding began at mAudioStartMs.
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uint64_t mAudioFrames;
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// Number of microseconds that must be discarded from the start of the Stream.
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uint64_t mCodecDelay;
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// Calculate the frame duration from the last decodeable frame using the
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// previous frame's timestamp. In NS.
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uint64_t mLastVideoFrameTime;
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// Parser state and computed offset-time mappings. Shared by multiple
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// readers when decoder has been cloned. Main thread only.
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nsRefPtr<WebMBufferedState> mBufferedState;
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// Size of the frame initially present in the stream. The picture region
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// is defined as a ratio relative to this.
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nsIntSize mInitialFrame;
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// Picture region, as relative to the initial frame size.
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nsIntRect mPicture;
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// Codec ID of audio track
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int mAudioCodec;
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// Codec ID of video track
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int mVideoCodec;
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layers::LayersBackend mLayersBackendType;
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// For hardware video decoding.
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nsRefPtr<FlushableMediaTaskQueue> mVideoTaskQueue;
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// Booleans to indicate if we have audio and/or video data
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bool mHasVideo;
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bool mHasAudio;
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// Opus padding should only be discarded on the final packet. Once this
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// is set to true, if the reader attempts to decode any further packets it
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// will raise an error so we can indicate that the file is invalid.
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bool mPaddingDiscarded;
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};
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} // namespace mozilla
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#endif
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