mirror of
https://github.com/CookiePLMonster/SilentPatch.git
synced 2024-11-22 13:32:36 +01:00
199 lines
5.3 KiB
C++
199 lines
5.3 KiB
C++
#include "StdAfxSA.h"
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#include "WaveDecoderSA.h"
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extern void* pMalloc;
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extern unsigned int nBlockSize;
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extern unsigned int nLastMallocSize;
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bool CAEWaveDecoder::Initialise()
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{
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auto* pTheStream = GetStream();
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struct {
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char sectionID[4];
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unsigned int sectionSize;
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} chunkHeader;
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// Find fmt section
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pTheStream->Seek(12, FILE_BEGIN);
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pTheStream->FillBuffer(&chunkHeader, sizeof(chunkHeader));
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nOffsetToData = 12 + sizeof(chunkHeader);
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while ( chunkHeader.sectionID[0] != 'f' || chunkHeader.sectionID[1] != 'm' || chunkHeader.sectionID[2] != 't' || chunkHeader.sectionID[3] != ' ' )
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{
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nOffsetToData += sizeof(chunkHeader) + chunkHeader.sectionSize;
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pTheStream->Seek(chunkHeader.sectionSize, FILE_CURRENT);
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pTheStream->FillBuffer(&chunkHeader, sizeof(chunkHeader));
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}
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// Read fmt header
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pTheStream->FillBuffer(&formatChunk, sizeof(FormatChunk));
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nOffsetToData += sizeof(FormatChunk);
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// Now skip through the rest of a chunk
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if ( chunkHeader.sectionSize - sizeof(FormatChunk) > 0 )
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{
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nOffsetToData += chunkHeader.sectionSize - sizeof(FormatChunk);
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pTheStream->Seek(chunkHeader.sectionSize - sizeof(FormatChunk), FILE_CURRENT);
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}
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// Find data chunk
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nOffsetToData += sizeof(chunkHeader);
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pTheStream->FillBuffer(&chunkHeader, sizeof(chunkHeader));
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while ( chunkHeader.sectionID[0] != 'd' || chunkHeader.sectionID[1] != 'a' || chunkHeader.sectionID[2] != 't' || chunkHeader.sectionID[3] != 'a' )
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{
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nOffsetToData += sizeof(chunkHeader) + chunkHeader.sectionSize;
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pTheStream->Seek(chunkHeader.sectionSize, FILE_CURRENT);
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pTheStream->FillBuffer(&chunkHeader, sizeof(chunkHeader));
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}
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nDataSize = chunkHeader.sectionSize;
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return formatChunk.sampleRate <= 48000 && formatChunk.numChannels <= 2 && (formatChunk.bitsPerSample == 8 || formatChunk.bitsPerSample == 16 || formatChunk.bitsPerSample == 24);
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}
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unsigned int CAEWaveDecoder::FillBuffer(void* pBuf, unsigned long nLen)
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{
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if ( formatChunk.bitsPerSample == 8 )
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{
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if ( formatChunk.numChannels == 2 )
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{
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// Stereo
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if ( nLen / 2 > nLastMallocSize )
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{
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if ( pMalloc )
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operator delete(pMalloc);
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nLastMallocSize = nLen / 2;
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pMalloc = operator new(nLastMallocSize);
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}
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unsigned int nBytesWritten = GetStream()->FillBuffer(pMalloc, nLen / 2);
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signed short* pOutBuf = static_cast<signed short*>(pBuf);
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unsigned char* pInBuf = static_cast<unsigned char*>(pMalloc);
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// Convert to 16-bit
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for ( unsigned int i = 0; i < nBytesWritten; i++ )
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{
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pOutBuf[i] = (static_cast<signed char>(pInBuf[i]) - 128) << 8;
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}
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return nBytesWritten * 2;
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}
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else
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{
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// Mono
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if ( nLen / 4 > nLastMallocSize )
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{
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if ( pMalloc )
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operator delete(pMalloc);
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nLastMallocSize = nLen / 4;
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pMalloc = operator new(nLastMallocSize);
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}
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unsigned int nBytesWritten = GetStream()->FillBuffer(pMalloc, nLen / 4);
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signed short* pOutBuf = static_cast<signed short*>(pBuf);
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unsigned char* pInBuf = static_cast<unsigned char*>(pMalloc);
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// Convert to 16-bit
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for ( unsigned int i = 0; i < nBytesWritten; i++ )
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{
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pOutBuf[i * 2] = pOutBuf[i * 2 + 1] = (static_cast<signed char>(pInBuf[i]) - 128) << 8;
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}
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return nBytesWritten * 4;
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}
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}
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else if ( formatChunk.bitsPerSample == 24 )
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{
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if ( formatChunk.numChannels == 2 )
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{
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// Stereo
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if ( nLen * 3 / 2 > nLastMallocSize )
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{
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if ( pMalloc )
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operator delete(pMalloc);
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nLastMallocSize = nLen * 3 / 2;
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pMalloc = operator new(nLastMallocSize);
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}
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unsigned int nBytesWritten = GetStream()->FillBuffer(pMalloc, nLen * 3 / 2);
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unsigned char* pOutBuf = static_cast<unsigned char*>(pBuf);
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unsigned char* pInBuf = static_cast<unsigned char*>(pMalloc);
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const unsigned int nNumSamples = nBytesWritten / 3;
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// Convert to 16-bit
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for ( unsigned int i = 0; i < nNumSamples; i++ )
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{
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pOutBuf[i*2] = pInBuf[i*3 + 1];
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pOutBuf[i*2 + 1] = pInBuf[i*3 + 2];
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}
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return nNumSamples * 2;
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}
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else
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{
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if ( nLen * 3 / 4 > nLastMallocSize )
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{
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if ( pMalloc )
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operator delete(pMalloc);
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nLastMallocSize = nLen * 3 / 4;
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pMalloc = operator new(nLastMallocSize);
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}
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unsigned int nBytesWritten = GetStream()->FillBuffer(pMalloc, nLen * 3 / 4);
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unsigned char* pOutBuf = static_cast<unsigned char*>(pBuf);
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unsigned char* pInBuf = static_cast<unsigned char*>(pMalloc);
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const unsigned int nNumSamples = nBytesWritten / 3;
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// Convert to 16-bit
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for ( unsigned int i = 0; i < nNumSamples; i++ )
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{
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pOutBuf[i*4] = pOutBuf[i*4 + 2] = pInBuf[i*3 + 1];
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pOutBuf[i*4 + 1] = pOutBuf[i*4 + 3] = pInBuf[i*3 + 2];
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}
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return nNumSamples * 4;
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}
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}
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else
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{
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// 16-bit
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if ( formatChunk.numChannels == 2 )
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{
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// Stereo, optimised fetch
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return GetStream()->FillBuffer(pBuf, nLen);
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}
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else
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{
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// Mono
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if ( nLen / 2 > nLastMallocSize )
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{
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if ( pMalloc )
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operator delete(pMalloc);
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nLastMallocSize = nLen / 2;
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pMalloc = operator new(nLastMallocSize);
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}
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unsigned int nBytesWritten = GetStream()->FillBuffer(pMalloc, nLen / 2);
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signed short* pOutBuf = static_cast<signed short*>(pBuf);
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signed short* pInBuf = static_cast<signed short*>(pMalloc);
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const unsigned int nNumSamples = nBytesWritten / 2;
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for ( unsigned int i = 0; i < nNumSamples; i++ )
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{
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pOutBuf[i*2] = pOutBuf[i*2 + 1] = pInBuf[i];
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}
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return nBytesWritten * 2;
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}
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}
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} |