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88ead5d627
Differential Revision: https://phabricator.services.mozilla.com/D65178 --HG-- extra : moz-landing-system : lando
214 lines
8.1 KiB
C++
214 lines
8.1 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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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(MediaDataDemuxer_h)
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# define MediaDataDemuxer_h
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# include "DecoderDoctorLogger.h"
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# include "mozilla/MozPromise.h"
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# include "mozilla/UniquePtr.h"
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# include "MediaData.h"
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# include "MediaInfo.h"
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# include "MediaResult.h"
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# include "TimeUnits.h"
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# include "nsISupportsImpl.h"
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# include "mozilla/RefPtr.h"
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# include "nsTArray.h"
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namespace mozilla {
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class MediaTrackDemuxer;
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class TrackMetadataHolder;
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DDLoggedTypeDeclName(MediaDataDemuxer);
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DDLoggedTypeName(MediaTrackDemuxer);
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// Allows reading the media data: to retrieve the metadata and demux samples.
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// MediaDataDemuxer isn't designed to be thread safe.
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// When used by the MediaFormatDecoder, care is taken to ensure that the demuxer
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// will never be called from more than one thread at once.
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class MediaDataDemuxer : public DecoderDoctorLifeLogger<MediaDataDemuxer> {
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public:
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NS_INLINE_DECL_THREADSAFE_REFCOUNTING(MediaDataDemuxer)
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typedef MozPromise<MediaResult, MediaResult, /* IsExclusive = */ true>
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InitPromise;
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// Initializes the demuxer. Other methods cannot be called unless
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// initialization has completed and succeeded.
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// Typically a demuxer will wait to parse the metadata before resolving the
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// promise. The promise must not be resolved until sufficient data is
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// supplied. For example, an incomplete metadata would cause the promise to be
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// rejected should no more data be coming, while the demuxer would wait
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// otherwise.
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virtual RefPtr<InitPromise> Init() = 0;
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// Returns the number of tracks of aType type available. A value of
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// 0 indicates that no such type is available.
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virtual uint32_t GetNumberTracks(TrackInfo::TrackType aType) const = 0;
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// Returns the MediaTrackDemuxer associated with aTrackNumber aType track.
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// aTrackNumber is not to be confused with the Track ID.
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// aTrackNumber must be constrained between 0 and GetNumberTracks(aType) - 1
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// The actual Track ID is to be retrieved by calling
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// MediaTrackDemuxer::TrackInfo.
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virtual already_AddRefed<MediaTrackDemuxer> GetTrackDemuxer(
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TrackInfo::TrackType aType, uint32_t aTrackNumber) = 0;
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// Returns true if the underlying resource allows seeking.
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virtual bool IsSeekable() const = 0;
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// Returns true if the underlying resource can only seek within buffered
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// ranges.
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virtual bool IsSeekableOnlyInBufferedRanges() const { return false; }
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// Returns the media's crypto information, or nullptr if media isn't
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// encrypted.
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virtual UniquePtr<EncryptionInfo> GetCrypto() { return nullptr; }
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// Notifies the demuxer that the underlying resource has received more data
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// since the demuxer was initialized.
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// The demuxer can use this mechanism to inform all track demuxers that new
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// data is available and to refresh its buffered range.
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virtual void NotifyDataArrived() {}
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// Notifies the demuxer that the underlying resource has had data removed
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// since the demuxer was initialized.
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// The demuxer can use this mechanism to inform all track demuxers to update
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// its buffered range.
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// This will be called should the demuxer be used with MediaSource.
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virtual void NotifyDataRemoved() {}
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// Indicate to MediaFormatReader if it should compute the start time
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// of the demuxed data. If true (default) the first sample returned will be
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// used as reference time base.
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virtual bool ShouldComputeStartTime() const { return true; }
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protected:
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virtual ~MediaDataDemuxer() = default;
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};
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class MediaTrackDemuxer : public DecoderDoctorLifeLogger<MediaTrackDemuxer> {
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public:
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NS_INLINE_DECL_THREADSAFE_REFCOUNTING(MediaTrackDemuxer)
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class SamplesHolder {
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public:
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NS_INLINE_DECL_THREADSAFE_REFCOUNTING(SamplesHolder)
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void AppendSample(RefPtr<MediaRawData>& aSample) {
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MOZ_DIAGNOSTIC_ASSERT(aSample->HasValidTime());
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mSamples.AppendElement(aSample);
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}
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const nsTArray<RefPtr<MediaRawData>>& GetSamples() const {
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return mSamples;
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}
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// This method is only used to do the move semantic for mSamples, do not
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// append any element to the samples we returns. We should always append new
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// sample to mSamples via `AppendSample()`.
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nsTArray<RefPtr<MediaRawData>>& GetMovableSamples() { return mSamples; }
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private:
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~SamplesHolder() = default;
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nsTArray<RefPtr<MediaRawData>> mSamples;
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};
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class SkipFailureHolder {
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public:
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SkipFailureHolder(const MediaResult& aFailure, uint32_t aSkipped)
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: mFailure(aFailure), mSkipped(aSkipped) {}
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MediaResult mFailure;
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uint32_t mSkipped;
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};
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typedef MozPromise<media::TimeUnit, MediaResult, /* IsExclusive = */ true>
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SeekPromise;
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typedef MozPromise<RefPtr<SamplesHolder>, MediaResult,
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/* IsExclusive = */ true>
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SamplesPromise;
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typedef MozPromise<uint32_t, SkipFailureHolder, /* IsExclusive = */ true>
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SkipAccessPointPromise;
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// Returns the TrackInfo (a.k.a Track Description) for this track.
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// The TrackInfo returned will be:
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// TrackInfo::kVideoTrack -> VideoInfo.
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// TrackInfo::kAudioTrack -> AudioInfo.
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// respectively.
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virtual UniquePtr<TrackInfo> GetInfo() const = 0;
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// Seeks to aTime. Upon success, SeekPromise will be resolved with the
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// actual time seeked to. Typically the random access point time
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virtual RefPtr<SeekPromise> Seek(const media::TimeUnit& aTime) = 0;
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// Returns the next aNumSamples sample(s) available.
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// If only a lesser amount of samples is available, only those will be
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// returned.
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// A aNumSamples value of -1 indicates to return all remaining samples.
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// A video sample is typically made of a single video frame while an audio
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// sample will contains multiple audio frames.
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virtual RefPtr<SamplesPromise> GetSamples(int32_t aNumSamples = 1) = 0;
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// Returns true if a call to GetSamples() may block while waiting on the
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// underlying resource to return the data.
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// This is used by the MediaFormatReader to determine if buffering heuristics
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// should be used.
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virtual bool GetSamplesMayBlock() const { return true; }
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// Cancel all pending actions (Seek, GetSamples) and reset current state
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// All pending promises are to be rejected with CANCEL.
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// The next call to GetSamples would return the first sample available in the
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// track.
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virtual void Reset() = 0;
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// Returns timestamp of next random access point or an error if the demuxer
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// can't report this.
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virtual nsresult GetNextRandomAccessPoint(media::TimeUnit* aTime) {
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return NS_ERROR_NOT_IMPLEMENTED;
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}
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// Returns timestamp of previous random access point or an error if the
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// demuxer can't report this.
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virtual nsresult GetPreviousRandomAccessPoint(media::TimeUnit* aTime) {
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return NS_ERROR_NOT_IMPLEMENTED;
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}
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// Skip frames until the next Random Access Point located after
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// aTimeThreshold.
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// The first frame returned by the next call to GetSamples() will be the
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// first random access point found after aTimeThreshold.
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// Upon success, returns the number of frames skipped.
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virtual RefPtr<SkipAccessPointPromise> SkipToNextRandomAccessPoint(
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const media::TimeUnit& aTimeThreshold) = 0;
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// Gets the resource's offset used for the last Seek() or GetSample().
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// A negative value indicates that this functionality isn't supported.
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virtual int64_t GetResourceOffset() const { return -1; }
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virtual TrackInfo::TrackType GetType() const { return GetInfo()->GetType(); }
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virtual media::TimeIntervals GetBuffered() = 0;
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// By default, it is assumed that the entire resource can be evicted once
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// all samples have been demuxed.
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virtual int64_t GetEvictionOffset(const media::TimeUnit& aTime) {
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return INT64_MAX;
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}
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// If the MediaTrackDemuxer and MediaDataDemuxer hold cross references.
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// BreakCycles must be overridden.
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virtual void BreakCycles() {}
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protected:
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virtual ~MediaTrackDemuxer() = default;
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};
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} // namespace mozilla
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#endif // MediaDataDemuxer_h
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