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https://gitlab.winehq.org/wine/wine-gecko.git
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0606ce8b72
--HG-- extra : rebase_source : 0efa4353ea22ffd52d550331623098d275382148
306 lines
9.7 KiB
C++
306 lines
9.7 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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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 file,
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* You can obtain one at http://mozilla.org/MPL/2.0/. */
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#ifndef MOZILLA_STREAMBUFFER_H_
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#define MOZILLA_STREAMBUFFER_H_
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#include "MediaSegment.h"
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#include "nsAutoPtr.h"
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namespace mozilla {
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/**
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* Media time relative to the start of a StreamBuffer.
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*/
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typedef MediaTime StreamTime;
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const StreamTime STREAM_TIME_MAX = MEDIA_TIME_MAX;
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/**
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* Track rate in Hz. Maximum 1 << MEDIA_TIME_FRAC_BITS Hz. This ensures
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* calculations below don't overflow.
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*/
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typedef int32_t TrackRate;
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const TrackRate TRACK_RATE_MAX = 1 << MEDIA_TIME_FRAC_BITS;
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/**
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* Unique ID for track within a StreamBuffer. Tracks from different
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* StreamBuffers may have the same ID; this matters when appending StreamBuffers,
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* since tracks with the same ID are matched. Only IDs greater than 0 are allowed.
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*/
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typedef int32_t TrackID;
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const TrackID TRACK_NONE = 0;
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inline TrackTicks TimeToTicksRoundUp(TrackRate aRate, StreamTime aTime)
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{
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NS_ASSERTION(0 < aRate && aRate <= TRACK_RATE_MAX, "Bad rate");
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NS_ASSERTION(0 <= aTime && aTime <= STREAM_TIME_MAX, "Bad time");
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return (aTime*aRate + (1 << MEDIA_TIME_FRAC_BITS) - 1) >> MEDIA_TIME_FRAC_BITS;
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}
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inline TrackTicks TimeToTicksRoundDown(TrackRate aRate, StreamTime aTime)
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{
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NS_ASSERTION(0 < aRate && aRate <= TRACK_RATE_MAX, "Bad rate");
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NS_ASSERTION(0 <= aTime && aTime <= STREAM_TIME_MAX, "Bad time");
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return (aTime*aRate) >> MEDIA_TIME_FRAC_BITS;
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}
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inline StreamTime TicksToTimeRoundUp(TrackRate aRate, TrackTicks aTicks)
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{
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NS_ASSERTION(0 < aRate && aRate <= TRACK_RATE_MAX, "Bad rate");
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NS_ASSERTION(0 <= aTicks && aTicks <= TRACK_TICKS_MAX, "Bad samples");
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return ((aTicks << MEDIA_TIME_FRAC_BITS) + aRate - 1)/aRate;
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}
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inline StreamTime TicksToTimeRound(TrackRate aRate, TrackTicks aTicks)
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{
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NS_ASSERTION(0 < aRate && aRate <= TRACK_RATE_MAX, "Bad rate");
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NS_ASSERTION(0 <= aTicks && aTicks <= TRACK_TICKS_MAX, "Bad samples");
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return ((aTicks << MEDIA_TIME_FRAC_BITS) + aRate/2)/aRate;
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}
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inline StreamTime TicksToTimeRoundDown(TrackRate aRate, TrackTicks aTicks)
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{
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NS_ASSERTION(0 < aRate && aRate <= TRACK_RATE_MAX, "Bad rate");
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NS_ASSERTION(0 <= aTicks && aTicks <= TRACK_TICKS_MAX, "Bad samples");
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return (aTicks << MEDIA_TIME_FRAC_BITS)/aRate;
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}
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/**
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* This object contains the decoded data for a stream's tracks.
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* A StreamBuffer can be appended to. Logically a StreamBuffer only gets longer,
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* but we also have the ability to "forget" data before a certain time that
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* we know won't be used again. (We prune a whole number of seconds internally.)
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*
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* StreamBuffers should only be used from one thread at a time.
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*
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* A StreamBuffer has a set of tracks that can be of arbitrary types ---
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* the data for each track is a MediaSegment. The set of tracks can vary
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* over the timeline of the StreamBuffer.
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*/
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class StreamBuffer {
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public:
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/**
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* Every track has a start time --- when it started in the StreamBuffer.
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* It has an end flag; when false, no end point is known; when true,
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* the track ends when the data we have for the track runs out.
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* Tracks have a unique ID assigned at creation. This allows us to identify
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* the same track across StreamBuffers. A StreamBuffer should never have
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* two tracks with the same ID (even if they don't overlap in time).
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* TODO Tracks can also be enabled and disabled over time.
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* TODO Add TimeVarying<TrackTicks,bool> mEnabled.
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* Takes ownership of aSegment.
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*/
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class Track {
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public:
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Track(TrackID aID, TrackRate aRate, TrackTicks aStart, MediaSegment* aSegment)
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: mStart(aStart),
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mSegment(aSegment),
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mRate(aRate),
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mID(aID),
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mEnded(false)
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{
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MOZ_COUNT_CTOR(Track);
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NS_ASSERTION(aID > TRACK_NONE, "Bad track ID");
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NS_ASSERTION(0 < aRate && aRate <= TRACK_RATE_MAX, "Invalid rate");
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NS_ASSERTION(0 <= aStart && aStart <= aSegment->GetDuration(), "Bad start position");
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}
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~Track()
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{
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MOZ_COUNT_DTOR(Track);
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}
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template <class T> T* Get() const
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{
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if (mSegment->GetType() == T::StaticType()) {
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return static_cast<T*>(mSegment.get());
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}
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return nullptr;
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}
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MediaSegment* GetSegment() const { return mSegment; }
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TrackRate GetRate() const { return mRate; }
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TrackID GetID() const { return mID; }
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bool IsEnded() const { return mEnded; }
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TrackTicks GetStart() const { return mStart; }
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TrackTicks GetEnd() const { return mSegment->GetDuration(); }
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StreamTime GetEndTimeRoundDown() const
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{
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return mozilla::TicksToTimeRoundDown(mRate, mSegment->GetDuration());
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}
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StreamTime GetStartTimeRoundDown() const
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{
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return mozilla::TicksToTimeRoundDown(mRate, mStart);
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}
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TrackTicks TimeToTicksRoundDown(StreamTime aTime) const
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{
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return mozilla::TimeToTicksRoundDown(mRate, aTime);
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}
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StreamTime TicksToTimeRoundDown(TrackTicks aTicks) const
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{
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return mozilla::TicksToTimeRoundDown(mRate, aTicks);
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}
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MediaSegment::Type GetType() const { return mSegment->GetType(); }
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void SetEnded() { mEnded = true; }
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void AppendFrom(Track* aTrack)
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{
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NS_ASSERTION(!mEnded, "Can't append to ended track");
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NS_ASSERTION(aTrack->mID == mID, "IDs must match");
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NS_ASSERTION(aTrack->mStart == 0, "Source track must start at zero");
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NS_ASSERTION(aTrack->mSegment->GetType() == GetType(), "Track types must match");
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NS_ASSERTION(aTrack->mRate == mRate, "Track rates must match");
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mSegment->AppendFrom(aTrack->mSegment);
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mEnded = aTrack->mEnded;
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}
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MediaSegment* RemoveSegment()
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{
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return mSegment.forget();
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}
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void ForgetUpTo(TrackTicks aTime)
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{
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mSegment->ForgetUpTo(aTime);
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}
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protected:
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friend class StreamBuffer;
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// Start offset is in ticks at rate mRate
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TrackTicks mStart;
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// The segment data starts at the start of the owning StreamBuffer, i.e.,
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// there's mStart silence/no video at the beginning.
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nsAutoPtr<MediaSegment> mSegment;
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TrackRate mRate; // rate in ticks per second
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// Unique ID
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TrackID mID;
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// True when the track ends with the data in mSegment
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bool mEnded;
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};
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class CompareTracksByID {
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public:
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bool Equals(Track* aA, Track* aB) const {
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return aA->GetID() == aB->GetID();
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}
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bool LessThan(Track* aA, Track* aB) const {
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return aA->GetID() < aB->GetID();
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}
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};
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StreamBuffer()
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: mTracksKnownTime(0), mForgottenTime(0)
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{
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MOZ_COUNT_CTOR(StreamBuffer);
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}
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~StreamBuffer()
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{
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MOZ_COUNT_DTOR(StreamBuffer);
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}
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/**
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* Takes ownership of aSegment. Don't do this while iterating, or while
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* holding a Track reference.
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* aSegment must have aStart worth of null data.
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*/
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Track& AddTrack(TrackID aID, TrackRate aRate, TrackTicks aStart, MediaSegment* aSegment)
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{
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NS_ASSERTION(TimeToTicksRoundDown(aRate, mTracksKnownTime) <= aStart,
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"Start time too early");
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NS_ASSERTION(!FindTrack(aID), "Track with this ID already exists");
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return **mTracks.InsertElementSorted(new Track(aID, aRate, aStart, aSegment),
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CompareTracksByID());
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}
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void AdvanceKnownTracksTime(StreamTime aKnownTime)
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{
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NS_ASSERTION(aKnownTime >= mTracksKnownTime, "Can't move tracks-known time earlier");
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mTracksKnownTime = aKnownTime;
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}
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/**
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* The end time for the StreamBuffer is the latest time for which we have
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* data for all tracks that haven't ended by that time.
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*/
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StreamTime GetEnd() const;
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/**
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* Returns the earliest time >= 0 at which all tracks have ended
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* and all their data has been played out and no new tracks can be added,
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* or STREAM_TIME_MAX if there is no such time.
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*/
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StreamTime GetAllTracksEnd() const;
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#ifdef DEBUG
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void DumpTrackInfo() const;
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#endif
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Track* FindTrack(TrackID aID);
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class TrackIter {
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public:
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/**
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* Iterate through the tracks of aBuffer in order of ID.
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*/
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TrackIter(const StreamBuffer& aBuffer) :
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mBuffer(&aBuffer.mTracks), mIndex(0), mMatchType(false) {}
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/**
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* Iterate through the tracks of aBuffer with type aType, in order of ID.
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*/
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TrackIter(const StreamBuffer& aBuffer, MediaSegment::Type aType) :
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mBuffer(&aBuffer.mTracks), mIndex(0), mType(aType), mMatchType(true) { FindMatch(); }
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bool IsEnded() { return mIndex >= mBuffer->Length(); }
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void Next()
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{
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++mIndex;
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FindMatch();
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}
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Track* get() { return mBuffer->ElementAt(mIndex); }
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Track& operator*() { return *mBuffer->ElementAt(mIndex); }
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Track* operator->() { return mBuffer->ElementAt(mIndex); }
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private:
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void FindMatch()
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{
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if (!mMatchType)
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return;
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while (mIndex < mBuffer->Length() &&
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mBuffer->ElementAt(mIndex)->GetType() != mType) {
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++mIndex;
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}
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}
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const nsTArray<nsAutoPtr<Track> >* mBuffer;
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uint32_t mIndex;
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MediaSegment::Type mType;
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bool mMatchType;
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};
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friend class TrackIter;
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/**
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* Forget stream data before aTime; they will no longer be needed.
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* Also can forget entire tracks that have ended at or before aTime.
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* Can't be used to forget beyond GetEnd().
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*/
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void ForgetUpTo(StreamTime aTime);
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/**
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* Returns the latest time passed to ForgetUpTo.
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*/
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StreamTime GetForgottenDuration()
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{
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return mForgottenTime;
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}
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protected:
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// Any new tracks added will start at or after this time. In other words, the track
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// list is complete and correct for all times less than this time.
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StreamTime mTracksKnownTime;
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StreamTime mForgottenTime;
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// All known tracks for this StreamBuffer
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nsTArray<nsAutoPtr<Track> > mTracks;
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};
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}
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#endif /* MOZILLA_STREAMBUFFER_H_ */
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