mirror of
https://github.com/mozilla/gecko-dev.git
synced 2024-11-07 12:15:51 +00:00
652 lines
18 KiB
C++
652 lines
18 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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#include "SourceBuffer.h"
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#include "AsyncEventRunner.h"
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#include "MediaData.h"
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#include "MediaSourceUtils.h"
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#include "TrackBuffer.h"
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#include "mozilla/ErrorResult.h"
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#include "mozilla/FloatingPoint.h"
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#include "mozilla/Preferences.h"
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#include "mozilla/dom/MediaSourceBinding.h"
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#include "mozilla/dom/TimeRanges.h"
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#include "nsError.h"
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#include "nsIEventTarget.h"
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#include "nsIRunnable.h"
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#include "nsThreadUtils.h"
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#include "prlog.h"
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#include <time.h>
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#include "TimeUnits.h"
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struct JSContext;
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class JSObject;
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#ifdef PR_LOGGING
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extern PRLogModuleInfo* GetMediaSourceLog();
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extern PRLogModuleInfo* GetMediaSourceAPILog();
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#define MSE_DEBUG(arg, ...) PR_LOG(GetMediaSourceLog(), PR_LOG_DEBUG, ("SourceBuffer(%p:%s)::%s: " arg, this, mType.get(), __func__, ##__VA_ARGS__))
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#define MSE_DEBUGV(arg, ...) PR_LOG(GetMediaSourceLog(), PR_LOG_DEBUG + 1, ("SourceBuffer(%p:%s)::%s: " arg, this, mType.get(), __func__, ##__VA_ARGS__))
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#define MSE_API(arg, ...) PR_LOG(GetMediaSourceAPILog(), PR_LOG_DEBUG, ("SourceBuffer(%p:%s)::%s: " arg, this, mType.get(), __func__, ##__VA_ARGS__))
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#else
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#define MSE_DEBUG(...)
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#define MSE_DEBUGV(...)
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#define MSE_API(...)
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#endif
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namespace mozilla {
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namespace dom {
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class AppendDataRunnable : public nsRunnable {
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public:
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AppendDataRunnable(SourceBuffer* aSourceBuffer,
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LargeDataBuffer* aData,
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double aTimestampOffset,
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uint32_t aUpdateID)
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: mSourceBuffer(aSourceBuffer)
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, mData(aData)
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, mTimestampOffset(aTimestampOffset)
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, mUpdateID(aUpdateID)
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{
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}
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NS_IMETHOD Run() MOZ_OVERRIDE MOZ_FINAL {
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mSourceBuffer->AppendData(mData, mTimestampOffset, mUpdateID);
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return NS_OK;
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}
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private:
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nsRefPtr<SourceBuffer> mSourceBuffer;
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nsRefPtr<LargeDataBuffer> mData;
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double mTimestampOffset;
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uint32_t mUpdateID;
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};
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class RangeRemovalRunnable : public nsRunnable {
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public:
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RangeRemovalRunnable(SourceBuffer* aSourceBuffer,
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double aStart,
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double aEnd)
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: mSourceBuffer(aSourceBuffer)
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, mStart(aStart)
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, mEnd(aEnd)
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{ }
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NS_IMETHOD Run() MOZ_OVERRIDE MOZ_FINAL {
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if (!mSourceBuffer->mUpdating) {
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// abort was called in between.
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return NS_OK;
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}
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mSourceBuffer->DoRangeRemoval(mStart, mEnd);
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mSourceBuffer->StopUpdating();
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return NS_OK;
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}
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private:
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nsRefPtr<SourceBuffer> mSourceBuffer;
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double mStart;
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double mEnd;
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};
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void
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SourceBuffer::SetMode(SourceBufferAppendMode aMode, ErrorResult& aRv)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MSE_API("SetMode(aMode=%d)", aMode);
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if (!IsAttached() || mUpdating) {
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aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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return;
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}
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if (aMode == SourceBufferAppendMode::Sequence) {
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aRv.Throw(NS_ERROR_DOM_NOT_SUPPORTED_ERR);
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return;
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}
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MOZ_ASSERT(mMediaSource->ReadyState() != MediaSourceReadyState::Closed);
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if (mMediaSource->ReadyState() == MediaSourceReadyState::Ended) {
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mMediaSource->SetReadyState(MediaSourceReadyState::Open);
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}
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// TODO: Test append state.
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// TODO: If aMode is "sequence", set sequence start time.
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mAppendMode = aMode;
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}
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void
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SourceBuffer::SetTimestampOffset(double aTimestampOffset, ErrorResult& aRv)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MSE_API("SetTimestampOffset(aTimestampOffset=%f)", aTimestampOffset);
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if (!IsAttached() || mUpdating) {
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aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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return;
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}
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MOZ_ASSERT(mMediaSource->ReadyState() != MediaSourceReadyState::Closed);
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if (mMediaSource->ReadyState() == MediaSourceReadyState::Ended) {
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mMediaSource->SetReadyState(MediaSourceReadyState::Open);
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}
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// TODO: Test append state.
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// TODO: If aMode is "sequence", set sequence start time.
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mTimestampOffset = aTimestampOffset;
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}
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already_AddRefed<TimeRanges>
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SourceBuffer::GetBuffered(ErrorResult& aRv)
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{
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MOZ_ASSERT(NS_IsMainThread());
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if (!IsAttached()) {
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aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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return nullptr;
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}
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nsRefPtr<TimeRanges> ranges = new TimeRanges();
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double highestEndTime = mTrackBuffer->Buffered(ranges);
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if (mMediaSource->ReadyState() == MediaSourceReadyState::Ended) {
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// Set the end time on the last range to highestEndTime by adding a
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// new range spanning the current end time to highestEndTime, which
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// Normalize() will then merge with the old last range.
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ranges->Add(ranges->GetEndTime(), highestEndTime);
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ranges->Normalize();
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}
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MSE_DEBUGV("ranges=%s", DumpTimeRanges(ranges).get());
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return ranges.forget();
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}
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void
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SourceBuffer::SetAppendWindowStart(double aAppendWindowStart, ErrorResult& aRv)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MSE_API("SetAppendWindowStart(aAppendWindowStart=%f)", aAppendWindowStart);
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if (!IsAttached() || mUpdating) {
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aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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return;
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}
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if (aAppendWindowStart < 0 || aAppendWindowStart >= mAppendWindowEnd) {
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aRv.Throw(NS_ERROR_DOM_INVALID_ACCESS_ERR);
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return;
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}
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mAppendWindowStart = aAppendWindowStart;
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}
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void
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SourceBuffer::SetAppendWindowEnd(double aAppendWindowEnd, ErrorResult& aRv)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MSE_API("SetAppendWindowEnd(aAppendWindowEnd=%f)", aAppendWindowEnd);
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if (!IsAttached() || mUpdating) {
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aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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return;
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}
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if (IsNaN(aAppendWindowEnd) ||
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aAppendWindowEnd <= mAppendWindowStart) {
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aRv.Throw(NS_ERROR_DOM_INVALID_ACCESS_ERR);
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return;
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}
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mAppendWindowEnd = aAppendWindowEnd;
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}
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void
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SourceBuffer::AppendBuffer(const ArrayBuffer& aData, ErrorResult& aRv)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MSE_API("AppendBuffer(ArrayBuffer)");
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aData.ComputeLengthAndData();
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AppendData(aData.Data(), aData.Length(), aRv);
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}
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void
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SourceBuffer::AppendBuffer(const ArrayBufferView& aData, ErrorResult& aRv)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MSE_API("AppendBuffer(ArrayBufferView)");
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aData.ComputeLengthAndData();
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AppendData(aData.Data(), aData.Length(), aRv);
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}
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void
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SourceBuffer::Abort(ErrorResult& aRv)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MSE_API("Abort()");
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if (!IsAttached()) {
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aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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return;
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}
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if (mMediaSource->ReadyState() != MediaSourceReadyState::Open) {
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aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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return;
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}
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AbortBufferAppend();
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mTrackBuffer->ResetParserState();
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mAppendWindowStart = 0;
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mAppendWindowEnd = PositiveInfinity<double>();
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// Discard the current decoder so no new data will be added to it.
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MSE_DEBUG("Discarding decoder");
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mTrackBuffer->DiscardCurrentDecoder();
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}
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void
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SourceBuffer::AbortBufferAppend()
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{
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if (mUpdating) {
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mPendingAppend.DisconnectIfExists();
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// TODO: Abort segment parser loop, and stream append loop algorithms.
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// cancel any pending buffer append.
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mTrackBuffer->AbortAppendData();
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AbortUpdating();
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}
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}
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void
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SourceBuffer::Remove(double aStart, double aEnd, ErrorResult& aRv)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MSE_API("Remove(aStart=%f, aEnd=%f)", aStart, aEnd);
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if (!IsAttached()) {
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aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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return;
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}
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if (mUpdating) {
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aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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return;
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}
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if (IsNaN(mMediaSource->Duration()) ||
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aStart < 0 || aStart > mMediaSource->Duration() ||
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aEnd <= aStart || IsNaN(aEnd)) {
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aRv.Throw(NS_ERROR_DOM_INVALID_ACCESS_ERR);
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return;
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}
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if (mMediaSource->ReadyState() == MediaSourceReadyState::Ended) {
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mMediaSource->SetReadyState(MediaSourceReadyState::Open);
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}
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StartUpdating();
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nsRefPtr<nsIRunnable> task = new RangeRemovalRunnable(this, aStart, aEnd);
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NS_DispatchToMainThread(task);
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}
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void
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SourceBuffer::RangeRemoval(double aStart, double aEnd)
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{
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StartUpdating();
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DoRangeRemoval(aStart, aEnd);
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nsRefPtr<nsIRunnable> task =
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NS_NewRunnableMethod(this, &SourceBuffer::StopUpdating);
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NS_DispatchToMainThread(task);
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}
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void
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SourceBuffer::DoRangeRemoval(double aStart, double aEnd)
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{
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MSE_DEBUG("DoRangeRemoval(%f, %f)", aStart, aEnd);
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if (mTrackBuffer && !IsInfinite(aStart)) {
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mTrackBuffer->RangeRemoval(media::Microseconds::FromSeconds(aStart),
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media::Microseconds::FromSeconds(aEnd));
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}
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}
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void
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SourceBuffer::Detach()
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{
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MOZ_ASSERT(NS_IsMainThread());
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MSE_DEBUG("Detach");
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AbortBufferAppend();
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if (mTrackBuffer) {
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mTrackBuffer->Detach();
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}
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mTrackBuffer = nullptr;
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mMediaSource = nullptr;
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}
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void
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SourceBuffer::Ended()
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{
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MOZ_ASSERT(NS_IsMainThread());
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MOZ_ASSERT(IsAttached());
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MSE_DEBUG("Ended");
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mTrackBuffer->EndCurrentDecoder();
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}
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SourceBuffer::SourceBuffer(MediaSource* aMediaSource, const nsACString& aType)
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: DOMEventTargetHelper(aMediaSource->GetParentObject())
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, mMediaSource(aMediaSource)
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, mAppendWindowStart(0)
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, mAppendWindowEnd(PositiveInfinity<double>())
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, mTimestampOffset(0)
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, mAppendMode(SourceBufferAppendMode::Segments)
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, mUpdating(false)
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, mUpdateID(0)
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, mType(aType)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MOZ_ASSERT(aMediaSource);
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mEvictionThreshold = Preferences::GetUint("media.mediasource.eviction_threshold",
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75 * (1 << 20));
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mTrackBuffer = new TrackBuffer(aMediaSource->GetDecoder(), aType);
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MSE_DEBUG("Create mTrackBuffer=%p",
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mTrackBuffer.get());
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}
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SourceBuffer::~SourceBuffer()
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{
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MOZ_ASSERT(NS_IsMainThread());
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MOZ_ASSERT(!mMediaSource);
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MSE_DEBUG("");
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}
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MediaSource*
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SourceBuffer::GetParentObject() const
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{
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return mMediaSource;
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}
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JSObject*
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SourceBuffer::WrapObject(JSContext* aCx)
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{
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return SourceBufferBinding::Wrap(aCx, this);
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}
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void
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SourceBuffer::DispatchSimpleEvent(const char* aName)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MSE_API("Dispatch event '%s'", aName);
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DispatchTrustedEvent(NS_ConvertUTF8toUTF16(aName));
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}
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void
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SourceBuffer::QueueAsyncSimpleEvent(const char* aName)
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{
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MSE_DEBUG("Queuing event '%s'", aName);
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nsCOMPtr<nsIRunnable> event = new AsyncEventRunner<SourceBuffer>(this, aName);
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NS_DispatchToMainThread(event, NS_DISPATCH_NORMAL);
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}
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void
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SourceBuffer::StartUpdating()
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{
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MOZ_ASSERT(NS_IsMainThread());
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MOZ_ASSERT(!mUpdating);
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mUpdating = true;
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mUpdateID++;
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QueueAsyncSimpleEvent("updatestart");
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}
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void
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SourceBuffer::StopUpdating()
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{
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MOZ_ASSERT(NS_IsMainThread());
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if (!mUpdating) {
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// The buffer append algorithm has been interrupted by abort().
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//
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// If the sequence appendBuffer(), abort(), appendBuffer() occurs before
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// the first StopUpdating() runnable runs, then a second StopUpdating()
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// runnable will be scheduled, but still only one (the first) will queue
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// events.
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return;
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}
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mUpdating = false;
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QueueAsyncSimpleEvent("update");
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QueueAsyncSimpleEvent("updateend");
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}
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void
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SourceBuffer::AbortUpdating()
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{
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MOZ_ASSERT(NS_IsMainThread());
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MOZ_ASSERT(mUpdating);
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mUpdating = false;
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QueueAsyncSimpleEvent("abort");
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QueueAsyncSimpleEvent("updateend");
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}
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void
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SourceBuffer::CheckEndTime()
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{
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MOZ_ASSERT(NS_IsMainThread());
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// Check if we need to update mMediaSource duration
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double endTime = GetBufferedEnd();
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double duration = mMediaSource->Duration();
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if (endTime > duration) {
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mMediaSource->SetDuration(endTime, MSRangeRemovalAction::SKIP);
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}
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}
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void
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SourceBuffer::AppendData(const uint8_t* aData, uint32_t aLength, ErrorResult& aRv)
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{
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MSE_DEBUG("AppendData(aLength=%u)", aLength);
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nsRefPtr<LargeDataBuffer> data = PrepareAppend(aData, aLength, aRv);
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if (!data) {
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return;
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}
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StartUpdating();
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MOZ_ASSERT(mAppendMode == SourceBufferAppendMode::Segments,
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"We don't handle timestampOffset for sequence mode yet");
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nsRefPtr<nsIRunnable> task =
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new AppendDataRunnable(this, data, mTimestampOffset, mUpdateID);
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NS_DispatchToMainThread(task);
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}
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void
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SourceBuffer::AppendData(LargeDataBuffer* aData, double aTimestampOffset,
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uint32_t aUpdateID)
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{
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if (!mUpdating || aUpdateID != mUpdateID) {
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// The buffer append algorithm has been interrupted by abort().
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//
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// If the sequence appendBuffer(), abort(), appendBuffer() occurs before
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// the first StopUpdating() runnable runs, then a second StopUpdating()
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// runnable will be scheduled, but still only one (the first) will queue
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// events.
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return;
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}
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MOZ_ASSERT(mMediaSource);
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MOZ_ASSERT(!mPendingAppend.Exists());
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if (!aData->Length()) {
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StopUpdating();
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return;
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}
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mPendingAppend.Begin(mTrackBuffer->AppendData(aData, aTimestampOffset * USECS_PER_S)
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->RefableThen(NS_GetCurrentThread(), __func__, this,
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&SourceBuffer::AppendDataCompletedWithSuccess,
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&SourceBuffer::AppendDataErrored));
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}
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void
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SourceBuffer::AppendDataCompletedWithSuccess(bool aGotMedia)
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{
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mPendingAppend.Complete();
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if (!mUpdating) {
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// The buffer append algorithm has been interrupted by abort().
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return;
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}
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if (mTrackBuffer->HasInitSegment()) {
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mMediaSource->QueueInitializationEvent();
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}
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if (aGotMedia) {
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CheckEndTime();
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}
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StopUpdating();
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}
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void
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SourceBuffer::AppendDataErrored(nsresult aError)
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{
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mPendingAppend.Complete();
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switch (aError) {
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case NS_ERROR_ABORT:
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// Nothing further to do as the trackbuffer has been shutdown.
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// or append was aborted and abort() has handled all the events.
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break;
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default:
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AppendError(true);
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break;
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}
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}
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void
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SourceBuffer::AppendError(bool aDecoderError)
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{
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MOZ_ASSERT(NS_IsMainThread());
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if (!mUpdating) {
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// The buffer append algorithm has been interrupted by abort().
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return;
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}
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mTrackBuffer->ResetParserState();
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mUpdating = false;
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QueueAsyncSimpleEvent("error");
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QueueAsyncSimpleEvent("updateend");
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if (aDecoderError) {
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Optional<MediaSourceEndOfStreamError> decodeError(
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MediaSourceEndOfStreamError::Decode);
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ErrorResult dummy;
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mMediaSource->EndOfStream(decodeError, dummy);
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}
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}
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already_AddRefed<LargeDataBuffer>
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SourceBuffer::PrepareAppend(const uint8_t* aData, uint32_t aLength, ErrorResult& aRv)
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{
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if (!IsAttached() || mUpdating) {
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aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
|
|
return nullptr;
|
|
}
|
|
if (mMediaSource->ReadyState() == MediaSourceReadyState::Ended) {
|
|
mMediaSource->SetReadyState(MediaSourceReadyState::Open);
|
|
}
|
|
|
|
// Eviction uses a byte threshold. If the buffer is greater than the
|
|
// number of bytes then data is evicted. The time range for this
|
|
// eviction is reported back to the media source. It will then
|
|
// evict data before that range across all SourceBuffers it knows
|
|
// about.
|
|
// TODO: Make the eviction threshold smaller for audio-only streams.
|
|
// TODO: Drive evictions off memory pressure notifications.
|
|
// TODO: Consider a global eviction threshold rather than per TrackBuffer.
|
|
double newBufferStartTime = 0.0;
|
|
// Attempt to evict the amount of data we are about to add by lowering the
|
|
// threshold.
|
|
uint32_t toEvict =
|
|
(mEvictionThreshold > aLength) ? mEvictionThreshold - aLength : aLength;
|
|
bool evicted =
|
|
mTrackBuffer->EvictData(mMediaSource->GetDecoder()->GetCurrentTime(),
|
|
toEvict, &newBufferStartTime);
|
|
if (evicted) {
|
|
MSE_DEBUG("AppendData Evict; current buffered start=%f",
|
|
GetBufferedStart());
|
|
|
|
// We notify that we've evicted from the time range 0 through to
|
|
// the current start point.
|
|
mMediaSource->NotifyEvicted(0.0, newBufferStartTime);
|
|
}
|
|
|
|
// See if we have enough free space to append our new data.
|
|
// As we can only evict once we have playable data, we must give a chance
|
|
// to the DASH player to provide a complete media segment.
|
|
if (aLength > mEvictionThreshold ||
|
|
((mTrackBuffer->GetSize() > mEvictionThreshold - aLength) &&
|
|
!mTrackBuffer->HasOnlyIncompleteMedia())) {
|
|
aRv.Throw(NS_ERROR_DOM_QUOTA_EXCEEDED_ERR);
|
|
return nullptr;
|
|
}
|
|
|
|
nsRefPtr<LargeDataBuffer> data = new LargeDataBuffer();
|
|
if (!data->AppendElements(aData, aLength)) {
|
|
aRv.Throw(NS_ERROR_DOM_QUOTA_EXCEEDED_ERR);
|
|
return nullptr;
|
|
}
|
|
// TODO: Test buffer full flag.
|
|
return data.forget();
|
|
}
|
|
|
|
double
|
|
SourceBuffer::GetBufferedStart()
|
|
{
|
|
MOZ_ASSERT(NS_IsMainThread());
|
|
ErrorResult dummy;
|
|
nsRefPtr<TimeRanges> ranges = GetBuffered(dummy);
|
|
return ranges->Length() > 0 ? ranges->GetStartTime() : 0;
|
|
}
|
|
|
|
double
|
|
SourceBuffer::GetBufferedEnd()
|
|
{
|
|
MOZ_ASSERT(NS_IsMainThread());
|
|
ErrorResult dummy;
|
|
nsRefPtr<TimeRanges> ranges = GetBuffered(dummy);
|
|
return ranges->Length() > 0 ? ranges->GetEndTime() : 0;
|
|
}
|
|
|
|
void
|
|
SourceBuffer::Evict(double aStart, double aEnd)
|
|
{
|
|
MOZ_ASSERT(NS_IsMainThread());
|
|
MSE_DEBUG("Evict(aStart=%f, aEnd=%f)", aStart, aEnd);
|
|
double currentTime = mMediaSource->GetDecoder()->GetCurrentTime();
|
|
double evictTime = aEnd;
|
|
const double safety_threshold = 5;
|
|
if (currentTime + safety_threshold >= evictTime) {
|
|
evictTime -= safety_threshold;
|
|
}
|
|
mTrackBuffer->EvictBefore(evictTime);
|
|
}
|
|
|
|
#if defined(DEBUG)
|
|
void
|
|
SourceBuffer::Dump(const char* aPath)
|
|
{
|
|
if (mTrackBuffer) {
|
|
mTrackBuffer->Dump(aPath);
|
|
}
|
|
}
|
|
#endif
|
|
|
|
NS_IMPL_CYCLE_COLLECTION_CLASS(SourceBuffer)
|
|
|
|
NS_IMPL_CYCLE_COLLECTION_UNLINK_BEGIN(SourceBuffer)
|
|
// Tell the TrackBuffer to end its current SourceBufferResource.
|
|
TrackBuffer* track = tmp->mTrackBuffer;
|
|
if (track) {
|
|
track->Detach();
|
|
}
|
|
NS_IMPL_CYCLE_COLLECTION_UNLINK(mMediaSource)
|
|
NS_IMPL_CYCLE_COLLECTION_UNLINK_END_INHERITED(DOMEventTargetHelper)
|
|
|
|
NS_IMPL_CYCLE_COLLECTION_TRAVERSE_BEGIN_INHERITED(SourceBuffer,
|
|
DOMEventTargetHelper)
|
|
NS_IMPL_CYCLE_COLLECTION_TRAVERSE(mMediaSource)
|
|
NS_IMPL_CYCLE_COLLECTION_TRAVERSE_END
|
|
|
|
NS_IMPL_ADDREF_INHERITED(SourceBuffer, DOMEventTargetHelper)
|
|
NS_IMPL_RELEASE_INHERITED(SourceBuffer, DOMEventTargetHelper)
|
|
|
|
NS_INTERFACE_MAP_BEGIN_CYCLE_COLLECTION_INHERITED(SourceBuffer)
|
|
NS_INTERFACE_MAP_END_INHERITING(DOMEventTargetHelper)
|
|
|
|
#undef MSE_DEBUG
|
|
#undef MSE_DEBUGV
|
|
#undef MSE_API
|
|
|
|
} // namespace dom
|
|
|
|
} // namespace mozilla
|