442 lines
11 KiB
C++
442 lines
11 KiB
C++
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/* $Header: /cvs/root/winamp/vlb/aacdecoderapi.cpp,v 1.1 2009/04/28 20:21:07 audiodsp Exp $ */
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/***************************************************************************\
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*
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* Copyright 2000-2002 Dolby Laboratories, Inc. All Rights
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* Reserved. Do not copy. Do not distribute.
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* Confidential information.
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*
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* (C) copyright Fraunhofer - IIS (1998)
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* All Rights Reserved
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*
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* filename: aacdecode.cpp
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* project : MPEG-2 AAC Decoder
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* contents/description: AAC decoder API
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*
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\***************************************************************************/
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#include "aacdecoderapi.h"
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#include "aacdecoder.h"
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#include "plainfile.h"
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#include "bitbuffer.h"
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#include "streaminfo.h"
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#include "DataIO.h"
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// sample frequency table
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// converts sample frequency index to actual sample frequency
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const unsigned int CAacDecoderApi::sfTab[16] =
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{
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96000,
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88200,
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64000,
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48000,
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44100,
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32000,
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24000,
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22050,
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16000,
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12000,
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11025,
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8000,
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0, // reserved
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0, // reserved
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0, // reserved
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0 // reserved
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};
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DECLARE_EXCEPTION(ESyncError, AAC_SYNCERROR, "Synchronization Error!") ;
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CAacDecoderApi::CAacDecoderApi (DataIOControl *paacInput) :
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cbValid(0),
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cbActual(0),
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decoder(NULL),
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input(NULL),
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buffer(NULL),
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info(NULL)
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{
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info = new CStreamInfo;
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input = new CPlainFile(paacInput);
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buffer = new CDolbyBitBuffer;
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decoder = input->IsAdifHeaderPresent () ? new CAacDecoder (*input) : new CAacDecoder (*buffer);
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decoder->FrameInit(*info);
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}
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CAacDecoderApi::~CAacDecoderApi ()
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{
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delete decoder;
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delete input;
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delete buffer;
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delete info;
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}
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long CAacDecoderApi::Synchronize(AACStreamParameters *pAACStreamParameters)
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{
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long lReturn = ERR_SYNC_ERROR;
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int iResyncCount = 5;
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if (input->IsAdifHeaderPresent ())
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{
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/* Cannot resync to an ADIF stream! */
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lReturn = ERR_NO_ERROR;
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}
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else
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{
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#if defined (_DEBUG)
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// cout << "Resynchronizing" << endl;
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#endif
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buffer->ClearBytesSkipped();
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while(lReturn != ERR_NO_ERROR && lReturn != ERR_END_OF_FILE && iResyncCount)
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{
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//Reset the block count:
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buffer->ResetBlocks();
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try
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{
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if (!cbValid)
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{
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cbValid = input->Read (readbuf, cbSize);
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if (!cbValid)
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buffer->SetEOF();
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else
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cbActual = cbValid;
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}
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buffer->Feed(readbuf, cbActual, cbValid);
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if (buffer->IsDecodableFrame(*info))
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{
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lReturn = ERR_NO_ERROR;
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}
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else
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{
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throw ESyncError();
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}
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//Try to decode the first Raw Data Block to Get Dolby Info:
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unsigned int uiValidBits1;
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unsigned int uiValidBits2;
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unsigned int uiBitsUsed;
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uiValidBits1 = buffer->GetBitState();
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decoder->DecodeFrame(NULL, *info); //this is only for ADTS!
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uiValidBits2 = buffer->GetBitState();
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uiBitsUsed = uiValidBits1 - uiValidBits2;
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buffer->PushBack((int)uiBitsUsed);
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if (!info->GetProtectionAbsent())
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{
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unsigned int CRCsyndrome;
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buffer->IsCrcConsistent(&CRCsyndrome);
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}
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}
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catch(CAacException& e)
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{
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/* If an exception was thrown, we have to clear this flag so that the next
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* call to IsDecodableFrame() will not simply return 'true' without actually
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* sync'ing and parsing the header.
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*/
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buffer->ClearFrameReadButNotDecoded();
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lReturn = TranslateException(e);
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iResyncCount--;
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}
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catch (...)
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{
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/* All exceptions thrown should be derived from CAacException and therefore
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* should be caught above. Just in case, though we'll add this catch() statement
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* to catch things like access violations, etc.
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*/
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lReturn = ERR_UNEXPECTED_ERROR;
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break;
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}
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}
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}
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if (!lReturn)
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{
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if (FillStreamParameters(pAACStreamParameters))
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{
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lReturn = WARN_STREAM_PARAM_CHANGE;
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}
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/* frame_length is used here to pass up the # of bytes
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* processed. This is actually the # of bytes skipped
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* during the Synchronization() call.
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*/
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pAACStreamParameters->frame_length = buffer->GetBytesSkipped();
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/* Clear the number of bytes skipped so that bytes_skipped
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* no longer accumulates across calls to IsDecodableFrame()
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*/
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buffer->ClearBytesSkipped();
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}
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return lReturn;
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}
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long CAacDecoderApi::DecodeFrame (AudioIOControl *poAudioIO,
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AACStreamParameters *pAACStreamParameters)
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{
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long lReturn = ERR_NO_ERROR;
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buffer->ClearBytesSkipped();
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try
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{
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if (!input->IsAdifHeaderPresent ())
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{
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if (!cbValid)
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{
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cbValid = input->Read (readbuf, cbSize);
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if (!cbValid)
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buffer->SetEOF();
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else
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cbActual = cbValid;
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}
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//
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// feed up to 'cbActual' bytes into decoder buffer
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//
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buffer->Feed(readbuf, cbActual, cbValid);
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//
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// sync
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//
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if (!buffer->IsDecodableFrame(*info))
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{
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lReturn = ERR_INVALID_BITSTREAM;
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}
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/* Parse the entire frame so that CRC can be verified *before* performing the decode. */
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unsigned int uiValidBits1;
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unsigned int uiValidBits2;
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unsigned int uiBitsUsed;
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uiValidBits1 = buffer->GetBitState();
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/* (NULL == parse frame only) */
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decoder->DecodeFrame(NULL, *info); //
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uiValidBits2 = buffer->GetBitState();
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uiBitsUsed = uiValidBits1 - uiValidBits2;
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/* This function performs a final sanity check for frame synchronization.
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* It will read in the next 15 bits looking for the 0xFFF frame
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* sync word, id, and layer. If it does not find a legal sync, it will throw an
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* ESyncError() exception.
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*/
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VerifySync();
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/* Push back entire frame (this does not include the header) before calling DecodeFrame() a second
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* time to actually decode.
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*/
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buffer->PushBack((int)uiBitsUsed);
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/* Verify CRC prior to actual decode. */
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if (!info->GetProtectionAbsent())
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{
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unsigned int CRCsyndrome;
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/* If the CRC is invalid, this function will throw an ECRCError() */
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buffer->IsCrcConsistent(&CRCsyndrome);
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}
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}
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/* Perform actual decode. */
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decoder->DecodeFrame(poAudioIO, *info);
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if (FillStreamParameters(pAACStreamParameters))
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{
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/* Output parameter (Fs, NumChans, etc.) has changed */
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lReturn = WARN_STREAM_PARAM_CHANGE;
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}
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}
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catch (CAacException& e)
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{
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/* Map the exception to a return code. */
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lReturn = TranslateException(e);
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/* frame_length is used here to pass up the # of bytes
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* processed. An error has occurred so no bytes were
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* processed. CAacDecoderAPI::Synchronication() will
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* be called next to search for next syncword and return
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* the number of bytes processed (i.e. bytes skipped).
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*/
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pAACStreamParameters->frame_length = 0;
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}
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catch (...)
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{
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/* All exceptions thrown should be derived from CAacException and therefore
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* should be caught above. Just in case, though we'll add this catch() statement
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* to catch things like access violations, etc.
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*/
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lReturn = ERR_UNEXPECTED_ERROR;
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/* frame_length is used here to pass up the # of bytes
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* processed. An error has occurred so no bytes were
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* processed. CAacDecoderAPI::Synchronication() will
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* be called next to search for next syncword and return
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* the number of bytes processed (i.e. bytes skipped).
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*/
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pAACStreamParameters->frame_length = 0;
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}
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return lReturn;
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}
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/********** PRIVATE METHODS ***********/
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long CAacDecoderApi::TranslateException(CAacException& e)
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{
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long lReturn = ERR_SUBROUTINE_ERROR; /* Default to generic subroutine error. */
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static const int ErrorMap[][2] =
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{
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{AAC_UNIMPLEMENTED, ERR_SUBROUTINE_ERROR },
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{AAC_NOTADIFHEADER, ERR_INVALID_ADIF_HEADER },
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{AAC_DOESNOTEXIST, ERR_INVALID_BITSTREAM },
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{AAC_ENDOFSTREAM, ERR_END_OF_FILE },
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{AAC_SYNCERROR, ERR_SYNC_ERROR },
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{AAC_CRCERROR, WARN_CRC_FAILED },
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{AAC_INPUT_BUFFER_EMPTY, ERR_SYNC_ERROR },
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{AAC_INVALIDCODEBOOK, ERR_SUBROUTINE_ERROR },
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#ifdef MAIN_PROFILE
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{AAC_INVALIDPREDICTORRESET, ERR_SUBROUTINE_ERROR },
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#endif
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{AAC_UNSUPPORTEDWINDOWSHAPE,ERR_SUBROUTINE_ERROR },
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{AAC_DOLBY_NOT_SUPPORTED, ERR_SUBROUTINE_ERROR },
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{AAC_ILLEGAL_PROFILE, ERR_ILLEGAL_PROFILE }
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};
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#if defined (_DEBUG)
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// cout << e.Explain() << endl;
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#endif
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for (int i = 0; i < sizeof(ErrorMap) / (2 * sizeof(int)); i++)
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{
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if (e.What() == ErrorMap[i][0])
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{
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lReturn = ErrorMap[i][1];
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break;
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}
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}
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return lReturn;
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}
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void CAacDecoderApi::VerifySync(void)
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{
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/* This function performs a final sanity check for frame synchronization.
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* It will read in the next 16 bits looking for one of two things:
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*
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* 1) The 0xFFF frame sync word plus 1-bit ID and 2-bit layer.
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* 2) 0x5249 (RI) of a RIFF header (in the case of concatenated RIFF+ADTS files).
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*
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* If it does not find a legal sync, it will throw an ESyncError() exception.
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* Either way, all bits read will be pushed back.
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*/
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int nSyncWord = buffer->Get(16);
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buffer->PushBack(16);
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/* When looking for ADTS sync, examine only the 15 MS bits because the LSB is the
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* 'protection absent' flag.
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*/
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if (!buffer->EndOf() && (nSyncWord & 0xFFFE) != 0xFFF8 && (nSyncWord != 0x5249))
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{
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throw ESyncError();
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}
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}
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bool CAacDecoderApi::FillStreamParameters(AACStreamParameters *pAACStreamParameters)
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{
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bool bParamChanged = false; //Assume no audio parameter change.
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static int nPreviousFs = 0;
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static int nPreviousNumChannels = 0;
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if (input->IsAdifHeaderPresent ())
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{
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pAACStreamParameters->stream_format = ADIF;
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}
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else if (input->IsRiffHeaderPresent ())
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{
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pAACStreamParameters->stream_format = RIFFADTS;
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}
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else
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{
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pAACStreamParameters->stream_format = ADTS;
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}
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if(decoder->HasDolbySpectralExtension() && decoder->HasDoubleLengthXForm())
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{
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// When UseDblLengthXfrm is set, the function info->GetSamplingRate
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// will double the sampling rate that it returns. Therefore,
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// pAACStreamParameters->sampling_frequency gets set to the correct
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// sampling rate in the code line below this one.
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info->SetUseDblLengthXfrm(true);
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}
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else
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{
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info->SetUseDblLengthXfrm(false);
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}
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pAACStreamParameters->sampling_frequency = info->GetSamplingRate();
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pAACStreamParameters->num_channels = info->GetChannels();
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pAACStreamParameters->bitrate = info->GetBitRate();
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/* frame_length is used here to pass up the # of bytes
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* processed. bytes_skipped needs to be added in here
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* to account for concatenated RIFF+ADTS files.
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*/
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pAACStreamParameters->frame_length = info->GetFrameLength() + buffer->GetBytesSkipped();
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pAACStreamParameters->protection_absent = info->GetProtectionAbsent();
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pAACStreamParameters->copyright = info->GetOriginalCopy();
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pAACStreamParameters->original_copy = info->GetHome();
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if (nPreviousFs && nPreviousNumChannels)
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{
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if (pAACStreamParameters->sampling_frequency != nPreviousFs)
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{
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bParamChanged = true;
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}
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if (pAACStreamParameters->num_channels != nPreviousNumChannels)
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{
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bParamChanged = true;
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/* Reset the number of channels to 0 so that AacDecoder::DecodeFrame() can
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* re-add them as it parses the new bitstream.
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*/
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decoder->GetAdifHeader()->GetProgramConfig(0).ResetNonMCConfig();
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}
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}
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nPreviousFs = pAACStreamParameters->sampling_frequency;
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nPreviousNumChannels = pAACStreamParameters->num_channels;
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return bParamChanged;
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}
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