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📄 taudiofilteroutput.cpp.svn-base

📁 ffshow源码
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/* * Copyright (c) 2004-2006 Milan Cutka * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA */#include "stdafx.h"#include "TaudioFilterOutput.h"#include "ToutputAudioSettings.h"#include "Tconfig.h"#include "IffdshowBase.h"#include "IffdshowDecAudio.h"#include "Tlibavcodec.h"#include "libavcodec/ac3.h"#include "liba52/a52.h"TaudioFilterOutput::TaudioFilterOutput(IffdshowBase *Ideci,Tfilters *Iparent):TaudioFilter(Ideci,Iparent){ libavcodec=NULL;avctx=NULL; oldsf.freq=0; ac3inited=false; ac3buf=(uint8_t*)malloc(AC3_MAX_CODED_FRAME_SIZE);}TaudioFilterOutput::~TaudioFilterOutput(){ free(ac3buf); if (libavcodec) libavcodec->Release();}void TaudioFilterOutput::done(void){ if (avctx)  {   if (ac3inited) libavcodec->avcodec_close(avctx);   libavcodec->av_free(avctx);   avctx=NULL;  } ac3inputbuf.clear(); ac3inited=false;}int TaudioFilterOutput::getSupportedFormats(const TfilterSettingsAudio *cfg0,bool *honourPreferred) const{ *honourPreferred=false; const ToutputAudioSettings *cfg=(ToutputAudioSettings*)cfg0; if (cfg->outsfs==TsampleFormat::SF_AC3 || cfg->outsfs==TsampleFormat::SF_LPCM16)  return TsampleFormat::SF_PCM16; else  return cfg->outsfs;}bool TaudioFilterOutput::getOutputFmt(TsampleFormat &fmt,const TfilterSettingsAudio *cfg0){ const ToutputAudioSettings *cfg=(ToutputAudioSettings*)cfg0; if (cfg->outsfs==TsampleFormat::SF_LPCM16)  fmt.sf=TsampleFormat::SF_LPCM16; if (cfg->outsfs==TsampleFormat::SF_AC3)  fmt.sf=TsampleFormat::SF_AC3; else  if ((fmt.sf&cfg->outsfs)==0)    fmt.sf=TsampleFormat::sf_bestMatch(fmt.sf,cfg->outsfs); return true;  }HRESULT TaudioFilterOutput::process(TfilterQueue::iterator it,TsampleFormat &fmt,void *samples,size_t numsamples,const TfilterSettingsAudio *cfg0){ const ToutputAudioSettings *cfg=(ToutputAudioSettings*)cfg0; samples=init(cfg,fmt,samples,numsamples); if (cfg->outsfs==TsampleFormat::SF_LPCM16)  {   fmt.sf=TsampleFormat::SF_LPCM16;   int16_t *samples16=(int16_t*)samples;   for (size_t i=0;i<numsamples*fmt.nchannels;i++)    bswap(samples16[i]);  }  else if (cfg->outsfs==TsampleFormat::SF_AC3 && parent->config->isDecoder[IDFF_MOVIE_LAVC])  {   if (!libavcodec) deci->getLibavcodec(&libavcodec);   if (oldsf!=fmt)    {     done();     oldsf=fmt;     int channelmask=fmt.makeChannelMask();     struct Tac3channels      {       int ac3mode;       int speakers[6];       int mask;      };     static const Tac3channels ac3channels[]=      {       A52_MONO   ,SPEAKER_FRONT_CENTER,0                   ,0                  ,0                  ,0                 ,0,SPEAKER_FRONT_CENTER,        A52_STEREO ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_RIGHT ,0                  ,0                  ,0                 ,0,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT,       A52_3F     ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_CENTER,SPEAKER_FRONT_RIGHT,0                  ,0                 ,0,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER,       A52_2F1R   ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_RIGHT ,SPEAKER_BACK_CENTER,0                  ,0                 ,0,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_BACK_CENTER,       A52_3F1R   ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_CENTER,SPEAKER_FRONT_RIGHT,SPEAKER_BACK_CENTER,0                 ,0,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER|SPEAKER_BACK_CENTER,       A52_2F2R   ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_RIGHT ,SPEAKER_BACK_LEFT  ,SPEAKER_BACK_RIGHT ,0                 ,0,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_BACK_LEFT|SPEAKER_BACK_RIGHT,       A52_3F2R   ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_CENTER,SPEAKER_FRONT_RIGHT,SPEAKER_BACK_LEFT  ,SPEAKER_BACK_RIGHT,0,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER|SPEAKER_BACK_LEFT|SPEAKER_BACK_RIGHT,       A52_MONO  |A52_LFE ,SPEAKER_FRONT_CENTER,SPEAKER_LOW_FREQUENCY,0                    ,0                    ,0                    ,0                    ,SPEAKER_FRONT_CENTER|SPEAKER_LOW_FREQUENCY,        A52_STEREO|A52_LFE ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_RIGHT  ,SPEAKER_LOW_FREQUENCY,0                    ,0                    ,0                    ,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_LOW_FREQUENCY,       A52_3F    |A52_LFE ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_CENTER ,SPEAKER_FRONT_RIGHT  ,SPEAKER_LOW_FREQUENCY,0                    ,0                    ,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER|SPEAKER_LOW_FREQUENCY,       A52_2F1R  |A52_LFE ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_RIGHT  ,SPEAKER_BACK_CENTER  ,SPEAKER_LOW_FREQUENCY,0                    ,0                    ,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_BACK_CENTER|SPEAKER_LOW_FREQUENCY,       A52_3F1R  |A52_LFE ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_CENTER ,SPEAKER_FRONT_RIGHT  ,SPEAKER_BACK_CENTER  ,SPEAKER_LOW_FREQUENCY,0                    ,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER|SPEAKER_BACK_CENTER|SPEAKER_LOW_FREQUENCY,       A52_2F2R  |A52_LFE ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_RIGHT  ,SPEAKER_BACK_LEFT    ,SPEAKER_BACK_RIGHT   ,SPEAKER_LOW_FREQUENCY,0                    ,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_BACK_LEFT|SPEAKER_BACK_RIGHT|SPEAKER_LOW_FREQUENCY,       A52_3F2R  |A52_LFE ,SPEAKER_FRONT_LEFT  ,SPEAKER_FRONT_CENTER ,SPEAKER_FRONT_RIGHT  ,SPEAKER_BACK_LEFT    ,SPEAKER_BACK_RIGHT   ,SPEAKER_LOW_FREQUENCY,SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER|SPEAKER_BACK_LEFT|SPEAKER_BACK_RIGHT|SPEAKER_LOW_FREQUENCY,      };     for (int i=0;i<countof(ac3channels);i++)      if (channelmask==ac3channels[i].mask)       {        AVCodec *avcodec=libavcodec->avcodec_find_encoder(CODEC_ID_AC3);        avctx=libavcodec->avcodec_alloc_context();        avctx->sample_rate=fmt.freq;        avctx->channels=fmt.nchannels;        avctx->bit_rate=cfg->outAC3bitrate*1000;        avctx->ac3mode=ac3channels[i].ac3mode&~A52_LFE;        avctx->ac3lfe=ac3channels[i].ac3mode&A52_LFE?1:0;        for (unsigned int j=0;j<fmt.nchannels;j++)         avctx->ac3channels[j]=fmt.findSpeaker(ac3channels[i].speakers[j]);        ac3inited=libavcodec->avcodec_open(avctx,avcodec)>=0;        break;       }    }   if (ac3inited)    {     ac3inputbuf.append(samples,numsamples*fmt.blockAlign());     TbyteBuffer::iterator inputsamples=ac3inputbuf.begin();     int inputsize=(int)ac3inputbuf.size();     int ac3framesize=avctx->frame_size*fmt.blockAlign();     while (inputsize>ac3framesize)      {       int ret=libavcodec->avcodec_encode_audio(avctx,ac3buf,AC3_MAX_CODED_FRAME_SIZE,(const short*)&*inputsamples);       HRESULT hr;       if ((hr=deciA->deliverSampleSPDIF(ac3buf,ret,avctx->bit_rate,0x0001,false))!=S_OK)        {         numsamples=0;         return hr;        }       inputsamples+=ac3framesize;inputsize-=ac3framesize;      }     if (inputsamples!=ac3inputbuf.begin())      ac3inputbuf.erase(ac3inputbuf.begin(),inputsamples);     numsamples=0;    }  } return parent->deliverSamples(++it,fmt,samples,numsamples);}void TaudioFilterOutput::onSeek(void){ ac3inputbuf.clear();}

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