2011-03-29 22:37:42 -07:00
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/* -*- 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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2012-05-21 04:12:37 -07:00
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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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2012-11-14 11:46:40 -08:00
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#if !defined(WaveReader_h_)
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#define WaveReader_h_
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2011-03-29 22:37:42 -07:00
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2012-11-14 11:46:40 -08:00
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#include "MediaDecoderReader.h"
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2011-03-29 22:37:42 -07:00
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2012-03-11 19:19:31 -07:00
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class nsTimeRanges;
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2011-03-29 22:37:42 -07:00
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2012-11-14 11:45:33 -08:00
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namespace mozilla {
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2012-11-14 11:46:40 -08:00
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class WaveReader : public MediaDecoderReader
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{
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public:
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2012-11-19 07:11:21 -08:00
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WaveReader(AbstractMediaDecoder* aDecoder);
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~WaveReader();
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2012-11-14 11:46:40 -08:00
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virtual nsresult Init(MediaDecoderReader* aCloneDonor);
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virtual bool DecodeAudioData();
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virtual bool DecodeVideoFrame(bool &aKeyframeSkip,
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int64_t aTimeThreshold);
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virtual bool HasAudio()
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{
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return true;
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2011-03-29 22:37:42 -07:00
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}
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virtual bool HasVideo()
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{
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return false;
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2011-03-29 22:37:42 -07:00
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}
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2012-11-28 11:40:07 -08:00
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virtual nsresult ReadMetadata(VideoInfo* aInfo,
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MetadataTags** aTags);
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virtual nsresult Seek(int64_t aTime, int64_t aStartTime, int64_t aEndTime, int64_t aCurrentTime);
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virtual nsresult GetBuffered(nsTimeRanges* aBuffered, int64_t aStartTime);
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2012-05-18 10:35:43 -07:00
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// To seek in a buffered range, we just have to seek the stream.
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virtual bool IsSeekableInBufferedRanges() {
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return true;
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}
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2011-03-29 22:37:42 -07:00
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private:
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bool ReadAll(char* aBuf, int64_t aSize, int64_t* aBytesRead = nullptr);
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bool LoadRIFFChunk();
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bool GetNextChunk(uint32_t* aChunk, uint32_t* aChunkSize);
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bool LoadFormatChunk(uint32_t aChunkSize);
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bool FindDataOffset(uint32_t aChunkSize);
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bool LoadListChunk(uint32_t aChunkSize, nsAutoPtr<nsHTMLMediaElement::MetadataTags> &aTags);
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bool LoadAllChunks(nsAutoPtr<nsHTMLMediaElement::MetadataTags> &aTags);
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// Returns the number of seconds that aBytes represents based on the
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// current audio parameters. e.g. 176400 bytes is 1 second at 16-bit
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// stereo 44.1kHz. The time is rounded to the nearest microsecond.
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double BytesToTime(int64_t aBytes) const;
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// Returns the number of bytes that aTime represents based on the current
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// audio parameters. e.g. 1 second is 176400 bytes at 16-bit stereo
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// 44.1kHz.
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int64_t TimeToBytes(double aTime) const;
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2011-09-26 20:31:18 -07:00
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// Rounds aBytes down to the nearest complete audio frame. Assumes
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// beginning of byte range is already frame aligned by caller.
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int64_t RoundDownToFrame(int64_t aBytes) const;
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int64_t GetDataLength();
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int64_t GetPosition();
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/*
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Metadata extracted from the WAVE header. Used to initialize the audio
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stream, and for byte<->time domain conversions.
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*/
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// Number of samples per second. Limited to range [100, 96000] in LoadFormatChunk.
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uint32_t mSampleRate;
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// Number of channels. Limited to range [1, 2] in LoadFormatChunk.
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uint32_t mChannels;
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// Size of a single audio frame, which includes a sample for each channel
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// (interleaved).
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uint32_t mFrameSize;
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// The sample format of the PCM data. AudioStream::SampleFormat doesn't
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// support U8.
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enum {
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FORMAT_U8,
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FORMAT_S16
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} mSampleFormat;
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// Size of PCM data stored in the WAVE as reported by the data chunk in
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// the media.
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int64_t mWaveLength;
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// Start offset of the PCM data in the media stream. Extends mWaveLength
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// bytes.
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int64_t mWavePCMOffset;
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};
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2012-11-14 11:45:33 -08:00
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} // namespace mozilla
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2011-03-29 22:37:42 -07:00
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#endif
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