mirror of
https://github.com/CookiePLMonster/SilentPatch.git
synced 2024-12-28 23:03:01 +05:00
246 lines
7.7 KiB
C++
246 lines
7.7 KiB
C++
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#include "StdAfxSA.h"
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#include "FLACDecoderSA.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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static unsigned int nSamplesLeftToProcess = 0;
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FLAC__StreamDecoderReadStatus CAEFLACDecoder::read_cb(const FLAC__StreamDecoder* decoder, FLAC__byte buffer[], size_t* bytes, void* client_data)
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{
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UNREFERENCED_PARAMETER(decoder);
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CAEFLACDecoder* pClientData = static_cast<CAEFLACDecoder*>(client_data);
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ReadFile(pClientData->GetStream()->GetFile(), buffer, *bytes, reinterpret_cast<LPDWORD>(bytes), nullptr); //*bytes = pClientData->GetStream()->FillBuffer(buffer, *bytes);
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//*bytes = pClientData->GetStream()->FillBuffer(buffer, *bytes);
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//bEOFFlag = GetLastError() == ERROR_HANDLE_EOF;
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auto result = *bytes ? FLAC__STREAM_DECODER_READ_STATUS_CONTINUE : FLAC__STREAM_DECODER_READ_STATUS_END_OF_STREAM;
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return result;
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}
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FLAC__StreamDecoderWriteStatus CAEFLACDecoder::write_cb(const FLAC__StreamDecoder *decoder, const FLAC__Frame *frame, const FLAC__int32 *const buffer[], void *client_data)
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{
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CAEFLACDecoder* pClientData = static_cast<CAEFLACDecoder*>(client_data);
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// Obtain current sample
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pClientData->nCurrentSample = frame->header.number_type == FLAC__FRAME_NUMBER_TYPE_SAMPLE_NUMBER ?
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frame->header.number.sample_number :
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frame->header.number.frame_number * frame->header.blocksize;
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// Mono/stereo?
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unsigned int nNumChannelsToAlloc = pClientData->pStreamInfo->data.stream_info.channels > 1 ? 2 : 1;
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if ( frame->header.blocksize * sizeof(FLAC__int32) * nNumChannelsToAlloc > nLastMallocSize )
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{
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// Realloc needed
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if ( pMalloc )
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operator delete(pMalloc);
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nLastMallocSize = frame->header.blocksize * sizeof(FLAC__int32) * nNumChannelsToAlloc;
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pMalloc = operator new(nLastMallocSize); // TODO: More channels?
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}
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nBlockSize = frame->header.blocksize;
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memcpy(pMalloc, buffer[0], nBlockSize * sizeof(FLAC__int32));
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if ( nNumChannelsToAlloc > 1 )
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memcpy(static_cast<FLAC__int32*>(pMalloc)+nBlockSize, buffer[1], nBlockSize * sizeof(FLAC__int32));
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return FLAC__STREAM_DECODER_WRITE_STATUS_CONTINUE;
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}
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void CAEFLACDecoder::meta_cb(const FLAC__StreamDecoder* decoder, const FLAC__StreamMetadata *metadata, void *client_data)
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{
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if ( metadata->type == FLAC__METADATA_TYPE_STREAMINFO )
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{
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// Cache the header
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CAEFLACDecoder* pClientData = static_cast<CAEFLACDecoder*>(client_data);
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pClientData->pStreamInfo = FLAC__metadata_object_clone(metadata);
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}
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}
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FLAC__StreamDecoderSeekStatus CAEFLACDecoder::seek_cb(const FLAC__StreamDecoder *decoder, FLAC__uint64 absolute_byte_offset, void *client_data)
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{
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CAEFLACDecoder* pClientData = static_cast<CAEFLACDecoder*>(client_data);
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LARGE_INTEGER li;
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li.QuadPart = absolute_byte_offset;
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li.LowPart = SetFilePointer(pClientData->GetStream()->GetFile(), li.LowPart, &li.HighPart, FILE_BEGIN);
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return li.LowPart == INVALID_SET_FILE_POINTER && GetLastError() != NO_ERROR ? FLAC__STREAM_DECODER_SEEK_STATUS_ERROR : FLAC__STREAM_DECODER_SEEK_STATUS_OK;
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}
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FLAC__StreamDecoderTellStatus CAEFLACDecoder::tell_cb(const FLAC__StreamDecoder *decoder, FLAC__uint64 *absolute_byte_offset, void *client_data)
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{
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CAEFLACDecoder* pClientData = static_cast<CAEFLACDecoder*>(client_data);
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LARGE_INTEGER li;
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li.QuadPart = 0;
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li.LowPart = SetFilePointer(pClientData->GetStream()->GetFile(), 0, &li.HighPart, FILE_CURRENT);
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*absolute_byte_offset = li.QuadPart;
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return li.LowPart == INVALID_SET_FILE_POINTER && GetLastError() != NO_ERROR ? FLAC__STREAM_DECODER_TELL_STATUS_ERROR : FLAC__STREAM_DECODER_TELL_STATUS_OK;
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}
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FLAC__StreamDecoderLengthStatus CAEFLACDecoder::length_cb(const FLAC__StreamDecoder *decoder, FLAC__uint64 *stream_length, void *client_data)
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{
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CAEFLACDecoder* pClientData = static_cast<CAEFLACDecoder*>(client_data);
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LARGE_INTEGER li;
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BOOL bResult = GetFileSizeEx(pClientData->GetStream()->GetFile(), &li);
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*stream_length = li.QuadPart;
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return bResult ? FLAC__STREAM_DECODER_LENGTH_STATUS_OK: FLAC__STREAM_DECODER_LENGTH_STATUS_ERROR;
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}
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FLAC__bool CAEFLACDecoder::eof_cb(const FLAC__StreamDecoder* decoder, void* client_data)
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{
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// Not implemented
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UNREFERENCED_PARAMETER(decoder);
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UNREFERENCED_PARAMETER(client_data);
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return false;
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}
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void CAEFLACDecoder::error_cb(const FLAC__StreamDecoder* decoder, FLAC__StreamDecoderErrorStatus status, void* client_data)
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{
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// Not implemented
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UNREFERENCED_PARAMETER(decoder);
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UNREFERENCED_PARAMETER(status);
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UNREFERENCED_PARAMETER(client_data);
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}
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bool CAEFLACDecoder::Initialise()
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{
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pFLACDecoder = FLAC__stream_decoder_new();
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if ( FLAC__stream_decoder_init_stream(pFLACDecoder, read_cb, seek_cb, tell_cb, length_cb, eof_cb, write_cb, meta_cb, error_cb, this) == FLAC__STREAM_DECODER_INIT_STATUS_OK )
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{
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FLAC__stream_decoder_process_until_end_of_metadata(pFLACDecoder);
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return pStreamInfo->data.stream_info.sample_rate <= 48000 && (pStreamInfo->data.stream_info.bits_per_sample == 8 || pStreamInfo->data.stream_info.bits_per_sample == 16 || pStreamInfo->data.stream_info.bits_per_sample == 24);
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}
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return false;
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}
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unsigned int CAEFLACDecoder::FillBuffer(void* pBuf, unsigned long nLen)
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{
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unsigned int nBytesDecoded = 0;
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FLAC__int16* pBuffer = static_cast<FLAC__int16*>(pBuf);
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const unsigned int nSampleRate = pStreamInfo->data.stream_info.bits_per_sample;
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const bool bStereo = pStreamInfo->data.stream_info.channels > 1;
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while ( nBytesDecoded < nLen )
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{
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unsigned int nToWrite;
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// No samples left from a previous fetch?
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if ( !nSamplesLeftToProcess )
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{
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FLAC__stream_decoder_process_single(pFLACDecoder);
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if ( (nLen - nBytesDecoded) / 4 >= nBlockSize )
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nToWrite = nBlockSize;
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else
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nToWrite = (nLen - nBytesDecoded) / 4;
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nSamplesLeftToProcess = nBlockSize;
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}
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else
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nToWrite = nSamplesLeftToProcess;
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FLAC__int32* pCurrentPtr[2] = { static_cast<FLAC__int32*>(pMalloc), static_cast<FLAC__int32*>(pMalloc)+nBlockSize };
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const unsigned int ExtraIndex = nBlockSize - nSamplesLeftToProcess;
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// Write channels
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if ( nSampleRate == 8 )
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{
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// 8-bit
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if ( bStereo )
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{
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for ( unsigned int i = 0; i < nToWrite; i++, nSamplesLeftToProcess-- )
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{
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pBuffer[0] = pCurrentPtr[0][ExtraIndex+i] << 8;
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pBuffer[1] = pCurrentPtr[1][ExtraIndex+i] << 8;
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pBuffer += 2;
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}
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}
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else
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{
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for ( unsigned int i = 0; i < nToWrite; i++, nSamplesLeftToProcess-- )
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{
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pBuffer[0] = pBuffer[1] = pCurrentPtr[0][ExtraIndex+i] << 8;
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pBuffer += 2;
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}
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}
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}
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else if ( nSampleRate == 24 )
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{
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// 24-bit
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if ( bStereo )
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{
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for ( unsigned int i = 0; i < nToWrite; i++, nSamplesLeftToProcess-- )
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{
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pBuffer[0] = pCurrentPtr[0][ExtraIndex+i] >> 8;
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pBuffer[1] = pCurrentPtr[1][ExtraIndex+i] >> 8;
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pBuffer += 2;
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}
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}
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else
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{
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for ( unsigned int i = 0; i < nToWrite; i++, nSamplesLeftToProcess-- )
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{
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pBuffer[0] = pBuffer[1] = pCurrentPtr[0][ExtraIndex+i] >> 8;
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pBuffer += 2;
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}
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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 ( bStereo )
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{
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for ( unsigned int i = 0; i < nToWrite; i++, nSamplesLeftToProcess-- )
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{
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pBuffer[0] = pCurrentPtr[0][ExtraIndex+i];
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pBuffer[1] = pCurrentPtr[1][ExtraIndex+i];
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pBuffer += 2;
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}
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}
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else
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{
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for ( unsigned int i = 0; i < nToWrite; i++, nSamplesLeftToProcess-- )
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{
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pBuffer[0] = pBuffer[1] = pCurrentPtr[0][ExtraIndex+i];
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pBuffer += 2;
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}
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}
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}
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nBytesDecoded += nToWrite*4;
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if ( FLAC__stream_decoder_get_state(pFLACDecoder) == FLAC__STREAM_DECODER_END_OF_STREAM )
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break;
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}
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return nBytesDecoded;
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}
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CAEFLACDecoder::~CAEFLACDecoder()
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{
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nSamplesLeftToProcess = 0;
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if ( pFLACDecoder )
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{
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FLAC__stream_decoder_finish(pFLACDecoder);
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FLAC__stream_decoder_delete(pFLACDecoder);
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FLAC__metadata_object_delete(pStreamInfo);
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pFLACDecoder = nullptr;
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}
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}
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