240 lines
5.9 KiB
C++
240 lines
5.9 KiB
C++
#include "main.h"
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#include "ExtendedRead.h"
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extern WM_MEDIA_TYPE *NewMediaType(IWMOutputMediaProps *props);
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ExtendedReadStruct::ExtendedReadStruct() : buffer(0), reader(0), streamNum(0), bufferUsed(0), endOfFile(false), length(0)
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{}
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ExtendedReadStruct::ExtendedReadStruct(IWMSyncReader *_reader) : buffer(0), reader(0), streamNum(0), bufferUsed(0), endOfFile(false), length(0)
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{
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reader = _reader;
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reader->AddRef();
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}
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#define CBCLASS ExtendedReadStruct
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START_DISPATCH;
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CB(IFC_AUDIOSTREAM_READAUDIO, ReadAudio)
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END_DISPATCH;
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ExtendedReadStruct::~ExtendedReadStruct()
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{
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if (reader)
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{
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reader->Close();
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reader->Release();
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}
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if (buffer)
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buffer->Release();
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}
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size_t ExtendedReadStruct::ReadAudio(void *_buffer, size_t len)
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{
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__int8 *dest = reinterpret_cast<__int8 *>(_buffer);
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int bytesCopied = 0;
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/*
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while we still have bytes left
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{
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read a buffer
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copy buffer to user passed buffer
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if we have stuff left in the buffer, save it and return
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if we hit EOF, return
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}
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*/
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size_t frameSize = (BitSize()/8)*Channels();
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len -= (len % frameSize); // only do whole frames
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while (len)
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{
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if (buffer)
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{
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BYTE *bufferBytes;
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DWORD bufferTotal;
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buffer->GetBufferAndLength(&bufferBytes, &bufferTotal);
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if (bufferUsed < bufferTotal)
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{
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size_t toCopy = min(bufferTotal - bufferUsed, len);
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memcpy(dest, bufferBytes + bufferUsed, toCopy);
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bufferUsed += toCopy;
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len -= toCopy;
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dest += toCopy;
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bytesCopied += toCopy;
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if (bufferUsed == bufferTotal)
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{
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bufferUsed = 0;
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buffer->Release();
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buffer = 0;
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}
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}
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}
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else if (!endOfFile)
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{
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QWORD sampleTime, duration;
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DWORD flags;
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DWORD outputNum;
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WORD streamNum2;
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HRESULT hr;
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hr = reader->GetNextSample(streamNum, &buffer, &sampleTime, &duration, &flags, & outputNum, &streamNum2);
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if (hr == NS_E_NO_MORE_SAMPLES)
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endOfFile = true;
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}
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else
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return bytesCopied;
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}
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return bytesCopied;
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}
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bool ExtendedReadStruct::Open(const wchar_t *filename)
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{
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//mod.InitWM();
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if (!reader)
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{
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if (!SUCCEEDED(WMCreateSyncReader(NULL, 0, &reader)))
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{
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reader = 0;
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return false;
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}
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}
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if (SUCCEEDED(reader->Open(filename)))
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{
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return true;
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}
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else
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{
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reader->Release();
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reader = 0;
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return false;
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}
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}
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bool ExtendedReadStruct::FindOutput(int bits, int channels)
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{
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DWORD numOutputs, output, format, numFormats;
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IWMOutputMediaProps *formatProperties;
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GUID mediaType;
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DWORD audioOutputNum;
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if (FAILED((reader->GetOutputCount(&numOutputs))))
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return false;
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for (output = 0;output < numOutputs;output++)
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{
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HRESULT hr;
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DWORD speakerConfig;
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switch (channels)
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{
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case 1:
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speakerConfig = DSSPEAKER_MONO;
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break;
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case 2:
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speakerConfig = DSSPEAKER_STEREO;
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break;
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case 0:
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default:
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speakerConfig = config_audio_num_channels; // TODO: force max channels?
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}
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hr = reader->SetOutputSetting(output, g_wszSpeakerConfig, WMT_TYPE_DWORD, (BYTE *) & speakerConfig, sizeof(speakerConfig));
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assert(hr == S_OK);
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BOOL discreteChannels = TRUE;
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hr = reader->SetOutputSetting(output, g_wszEnableDiscreteOutput, WMT_TYPE_BOOL, (BYTE *) & discreteChannels , sizeof(discreteChannels));
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assert(hr == S_OK);
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if (FAILED(reader->GetOutputFormatCount(output, &numFormats)))
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continue;
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for (format = 0;format < numFormats;format++)
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{
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reader->GetOutputFormat(output, format, &formatProperties);
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formatProperties->GetType(&mediaType);
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if (mediaType != WMMEDIATYPE_Audio)
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continue;
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WM_MEDIA_TYPE *mediaType = NewMediaType(formatProperties);
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if (mediaType->subtype == WMMEDIASUBTYPE_PCM)
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{
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if (bits)
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{
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WAVEFORMATEXTENSIBLE *waveFormat = (WAVEFORMATEXTENSIBLE *) mediaType->pbFormat;
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if (waveFormat->Format.cbSize >= 22)
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waveFormat->Samples.wValidBitsPerSample = bits;
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waveFormat->Format.wBitsPerSample = bits;
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waveFormat->Format.nBlockAlign = (waveFormat->Format.wBitsPerSample / 8) * waveFormat->Format.nChannels;
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waveFormat->Format.nAvgBytesPerSec = waveFormat->Format.nSamplesPerSec * waveFormat->Format.nBlockAlign;
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if (FAILED(formatProperties->SetMediaType(mediaType)))
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{
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// blah, just use the default settings then
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delete[] mediaType;
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mediaType = NewMediaType(formatProperties);
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}
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}
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AudioFormat::Open(mediaType);
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delete[] mediaType;
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audioOutputNum = output;
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reader->SetOutputProps(audioOutputNum, formatProperties);
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reader->GetStreamNumberForOutput(audioOutputNum, &streamNum);
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formatProperties->Release();
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reader->SetReadStreamSamples(streamNum, FALSE);
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IWMHeaderInfo *headerInfo = 0;
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reader->QueryInterface(&headerInfo);
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WMT_ATTR_DATATYPE type = WMT_TYPE_QWORD;
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WORD byteLength = sizeof(QWORD);
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WORD blah = 0;
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headerInfo->GetAttributeByName(&blah, g_wszWMDuration, &type, (BYTE *)&length, &byteLength);
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headerInfo->Release();
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return true;
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}
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delete[] mediaType;
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formatProperties->Release();
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}
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}
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return false;
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}
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extern "C"
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__declspec(dllexport) intptr_t winampGetExtendedRead_openW(const wchar_t *fn, int *size, int *bps, int *nch, int *srate)
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{
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ExtendedReadStruct *read = new ExtendedReadStruct;
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if (read->Open(fn)
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&& read->FindOutput(*bps, *nch))
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{
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*nch = read->Channels();
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*bps = read->BitSize();
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*srate = read->SampleRate();
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__int64 bytespersec = ((*nch) * (*bps / 8) * (*srate));
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__int64 s = (bytespersec * ((__int64)read->length)) / (__int64)(1000 * 10000);
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*size = (int)s;
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return reinterpret_cast<intptr_t>(read);
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}
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else
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{
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delete read;
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return 0;
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}
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}
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extern "C"
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__declspec(dllexport) intptr_t winampGetExtendedRead_getData(intptr_t handle, char *dest, int len, int *killswitch)
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{
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ExtendedReadStruct *read = reinterpret_cast<ExtendedReadStruct *>(handle);
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return read->ReadAudio(dest, len);
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}
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extern "C"
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__declspec(dllexport) void winampGetExtendedRead_close(intptr_t handle)
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{
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ExtendedReadStruct *read = reinterpret_cast<ExtendedReadStruct *>(handle);
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delete read;
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} |