443 lines
13 KiB
C
443 lines
13 KiB
C
/*
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* WAVE Parser Filter
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*
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* Copyright 2005 Christian Costa
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
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*/
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#include "quartz_private.h"
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#include "pin.h"
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#include "uuids.h"
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#include "aviriff.h"
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#include "vfwmsgs.h"
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#include "mmsystem.h"
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#include "wine/unicode.h"
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#include "wine/debug.h"
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#include <math.h>
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#include <assert.h>
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#include "parser.h"
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WINE_DEFAULT_DEBUG_CHANNEL(quartz);
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static const WCHAR wcsOutputPinName[] = {'o','u','t','p','u','t',' ','p','i','n',0};
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typedef struct WAVEParserImpl
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{
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ParserImpl Parser;
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LONGLONG StartOfFile; /* in media time */
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LONGLONG EndOfFile;
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DWORD nAvgBytesPerSec;
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DWORD nBlockAlign;
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} WAVEParserImpl;
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static inline WAVEParserImpl *impl_from_IMediaSeeking( IMediaSeeking *iface )
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{
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return CONTAINING_RECORD(iface, WAVEParserImpl, Parser.sourceSeeking.IMediaSeeking_iface);
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}
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static inline WAVEParserImpl *impl_from_IBaseFilter( IBaseFilter *iface )
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{
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return CONTAINING_RECORD(iface, WAVEParserImpl, Parser.filter.IBaseFilter_iface);
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}
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static LONGLONG bytepos_to_duration(WAVEParserImpl *This, LONGLONG bytepos)
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{
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LONGLONG duration = BYTES_FROM_MEDIATIME(bytepos - This->StartOfFile);
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duration *= 10000000;
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duration /= This->nAvgBytesPerSec;
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return duration;
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}
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static LONGLONG duration_to_bytepos(WAVEParserImpl *This, LONGLONG duration)
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{
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LONGLONG bytepos;
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bytepos = This->nAvgBytesPerSec;
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bytepos *= duration;
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bytepos /= 10000000;
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bytepos -= bytepos % This->nBlockAlign;
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bytepos += BYTES_FROM_MEDIATIME(This->StartOfFile);
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return MEDIATIME_FROM_BYTES(bytepos);
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}
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static HRESULT WAVEParser_Sample(LPVOID iface, IMediaSample * pSample, DWORD_PTR cookie)
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{
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WAVEParserImpl *This = iface;
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LPBYTE pbSrcStream = NULL;
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ULONG cbSrcStream = 0;
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REFERENCE_TIME tStart, tStop;
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HRESULT hr;
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IMediaSample *newsample = NULL;
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Parser_OutputPin *pOutputPin;
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PullPin *pin = This->Parser.pInputPin;
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IMediaSample_GetPointer(pSample, &pbSrcStream);
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hr = IMediaSample_GetTime(pSample, &tStart, &tStop);
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cbSrcStream = IMediaSample_GetActualDataLength(pSample);
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/* Flush occurring */
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if (cbSrcStream == 0)
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{
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TRACE(".. Why do I need you?\n");
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return S_OK;
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}
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pOutputPin = unsafe_impl_Parser_OutputPin_from_IPin(This->Parser.ppPins[1]);
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if (SUCCEEDED(hr))
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hr = IMemAllocator_GetBuffer(pin->pAlloc, &newsample, NULL, NULL, 0);
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if (SUCCEEDED(hr))
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{
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LONGLONG rtSampleStart = pin->rtNext;
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/* Add 4 for the next header, which should hopefully work */
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LONGLONG rtSampleStop = rtSampleStart + MEDIATIME_FROM_BYTES(IMediaSample_GetSize(newsample));
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if (rtSampleStop > pin->rtStop)
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rtSampleStop = MEDIATIME_FROM_BYTES(ALIGNUP(BYTES_FROM_MEDIATIME(pin->rtStop), pin->cbAlign));
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IMediaSample_SetTime(newsample, &rtSampleStart, &rtSampleStop);
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pin->rtCurrent = pin->rtNext;
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pin->rtNext = rtSampleStop;
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IMediaSample_SetPreroll(newsample, FALSE);
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IMediaSample_SetDiscontinuity(newsample, FALSE);
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IMediaSample_SetSyncPoint(newsample, TRUE);
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hr = IAsyncReader_Request(pin->pReader, newsample, 0);
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}
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if (SUCCEEDED(hr))
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{
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REFERENCE_TIME tAviStart, tAviStop;
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IMediaSample_SetSyncPoint(pSample, TRUE);
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pOutputPin->dwSamplesProcessed++;
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tAviStart = bytepos_to_duration(This, tStart);
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tAviStop = bytepos_to_duration(This, tStart + MEDIATIME_FROM_BYTES(IMediaSample_GetActualDataLength(pSample)));
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IMediaSample_SetTime(pSample, &tAviStart, &tAviStop);
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hr = BaseOutputPinImpl_Deliver(&pOutputPin->pin, pSample);
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if (hr != S_OK && hr != S_FALSE && hr != VFW_E_WRONG_STATE)
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ERR("Error sending sample (%x)\n", hr);
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else if (hr != S_OK)
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/* Unset progression if denied! */
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This->Parser.pInputPin->rtCurrent = tStart;
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}
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if (tStop >= This->EndOfFile || (bytepos_to_duration(This, tStop) >= This->Parser.sourceSeeking.llStop) || hr == VFW_E_NOT_CONNECTED)
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{
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unsigned int i;
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TRACE("End of file reached\n");
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for (i = 0; i < This->Parser.cStreams; i++)
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{
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IPin* ppin;
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HRESULT hr;
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TRACE("Send End Of Stream to output pin %u\n", i);
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hr = IPin_ConnectedTo(This->Parser.ppPins[i+1], &ppin);
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if (SUCCEEDED(hr))
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{
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hr = IPin_EndOfStream(ppin);
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IPin_Release(ppin);
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}
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if (FAILED(hr))
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{
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ERR("%x\n", hr);
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break;
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}
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}
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/* Force the pullpin thread to stop */
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hr = S_FALSE;
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}
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return hr;
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}
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static HRESULT WAVEParser_QueryAccept(LPVOID iface, const AM_MEDIA_TYPE * pmt)
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{
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if (!IsEqualIID(&pmt->majortype, &MEDIATYPE_Stream))
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return S_FALSE;
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if (IsEqualIID(&pmt->subtype, &MEDIASUBTYPE_WAVE))
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return S_OK;
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if (IsEqualIID(&pmt->subtype, &MEDIASUBTYPE_AU) || IsEqualIID(&pmt->subtype, &MEDIASUBTYPE_AIFF))
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FIXME("AU and AIFF files not supported yet!\n");
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return S_FALSE;
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}
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static HRESULT WINAPI WAVEParserImpl_seek(IMediaSeeking *iface)
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{
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WAVEParserImpl *This = impl_from_IMediaSeeking(iface);
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PullPin *pPin = This->Parser.pInputPin;
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IPin *victim = NULL;
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LONGLONG newpos, curpos, endpos, bytepos;
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newpos = This->Parser.sourceSeeking.llCurrent;
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curpos = bytepos_to_duration(This, pPin->rtCurrent);
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endpos = bytepos_to_duration(This, This->EndOfFile);
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bytepos = duration_to_bytepos(This, newpos);
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if (newpos > endpos)
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{
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WARN("Requesting position %x%08x beyond end of stream %x%08x\n", (DWORD)(newpos>>32), (DWORD)newpos, (DWORD)(endpos>>32), (DWORD)endpos);
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return E_INVALIDARG;
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}
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if (curpos/1000000 == newpos/1000000)
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{
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TRACE("Requesting position %x%08x same as current position %x%08x\n", (DWORD)(newpos>>32), (DWORD)newpos, (DWORD)(curpos>>32), (DWORD)curpos);
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return S_OK;
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}
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TRACE("Moving sound to %08u bytes!\n", (DWORD)BYTES_FROM_MEDIATIME(bytepos));
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EnterCriticalSection(&pPin->thread_lock);
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IPin_BeginFlush(&pPin->pin.IPin_iface);
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/* Make sure this is done while stopped, BeginFlush takes care of this */
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EnterCriticalSection(&This->Parser.filter.csFilter);
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IPin_ConnectedTo(This->Parser.ppPins[1], &victim);
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if (victim)
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{
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IPin_NewSegment(victim, newpos, endpos, pPin->dRate);
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IPin_Release(victim);
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}
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pPin->rtStart = pPin->rtCurrent = bytepos;
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unsafe_impl_Parser_OutputPin_from_IPin(This->Parser.ppPins[1])->dwSamplesProcessed = 0;
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LeaveCriticalSection(&This->Parser.filter.csFilter);
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TRACE("Done flushing\n");
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IPin_EndFlush(&pPin->pin.IPin_iface);
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LeaveCriticalSection(&pPin->thread_lock);
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return S_OK;
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}
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static HRESULT WAVEParser_InputPin_PreConnect(IPin * iface, IPin * pConnectPin, ALLOCATOR_PROPERTIES *props)
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{
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PullPin *This = impl_PullPin_from_IPin(iface);
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HRESULT hr;
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RIFFLIST list;
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RIFFCHUNK chunk;
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LONGLONG pos = 0; /* in bytes */
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PIN_INFO piOutput;
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AM_MEDIA_TYPE amt;
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WAVEParserImpl * pWAVEParser = impl_from_IBaseFilter(This->pin.pinInfo.pFilter);
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piOutput.dir = PINDIR_OUTPUT;
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piOutput.pFilter = &pWAVEParser->Parser.filter.IBaseFilter_iface;
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lstrcpynW(piOutput.achName, wcsOutputPinName, ARRAY_SIZE(piOutput.achName));
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hr = IAsyncReader_SyncRead(This->pReader, pos, sizeof(list), (BYTE *)&list);
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pos += sizeof(list);
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if (list.fcc != FOURCC_RIFF)
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{
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ERR("Input stream not a RIFF file\n");
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return E_FAIL;
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}
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if (list.cb > 1 * 1024 * 1024 * 1024) /* cannot be more than 1Gb in size */
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{
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ERR("Input stream violates RIFF spec\n");
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return E_FAIL;
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}
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if (list.fccListType != mmioFOURCC('W','A','V','E'))
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{
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ERR("Input stream not an WAVE RIFF file\n");
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return E_FAIL;
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}
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hr = IAsyncReader_SyncRead(This->pReader, pos, sizeof(chunk), (BYTE *)&chunk);
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pos += sizeof(chunk);
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if (chunk.fcc != mmioFOURCC('f','m','t',' '))
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{
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ERR("Expected 'fmt ' chunk, but got %.04s\n", (LPSTR)&chunk.fcc);
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return E_FAIL;
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}
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amt.majortype = MEDIATYPE_Audio;
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amt.formattype = FORMAT_WaveFormatEx;
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amt.cbFormat = chunk.cb;
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amt.pbFormat = CoTaskMemAlloc(amt.cbFormat);
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amt.pUnk = NULL;
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IAsyncReader_SyncRead(This->pReader, pos, amt.cbFormat, amt.pbFormat);
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amt.subtype = MEDIATYPE_Audio;
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amt.subtype.Data1 = ((WAVEFORMATEX*)amt.pbFormat)->wFormatTag;
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pos += chunk.cb;
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hr = IAsyncReader_SyncRead(This->pReader, pos, sizeof(chunk), (BYTE *)&chunk);
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if (chunk.fcc == mmioFOURCC('f','a','c','t'))
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{
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FIXME("'fact' chunk not supported yet\n");
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pos += sizeof(chunk) + chunk.cb;
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hr = IAsyncReader_SyncRead(This->pReader, pos, sizeof(chunk), (BYTE *)&chunk);
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}
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if (chunk.fcc != mmioFOURCC('d','a','t','a'))
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{
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ERR("Expected 'data' chunk, but got %.04s\n", (LPSTR)&chunk.fcc);
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return E_FAIL;
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}
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if (hr == S_OK)
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{
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pWAVEParser->StartOfFile = MEDIATIME_FROM_BYTES(pos + sizeof(RIFFCHUNK));
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pWAVEParser->EndOfFile = MEDIATIME_FROM_BYTES(pos + chunk.cb + sizeof(RIFFCHUNK));
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}
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if (hr != S_OK)
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return E_FAIL;
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props->cbAlign = ((WAVEFORMATEX*)amt.pbFormat)->nBlockAlign;
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props->cbPrefix = 0;
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props->cbBuffer = 4096;
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props->cBuffers = 3;
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pWAVEParser->nBlockAlign = ((WAVEFORMATEX*)amt.pbFormat)->nBlockAlign;
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pWAVEParser->nAvgBytesPerSec = ((WAVEFORMATEX*)amt.pbFormat)->nAvgBytesPerSec;
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hr = Parser_AddPin(&(pWAVEParser->Parser), &piOutput, props, &amt);
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CoTaskMemFree(amt.pbFormat);
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pWAVEParser->Parser.sourceSeeking.llCurrent = 0;
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pWAVEParser->Parser.sourceSeeking.llStop = pWAVEParser->Parser.sourceSeeking.llDuration = bytepos_to_duration(pWAVEParser, pWAVEParser->EndOfFile);
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TRACE("Duration: %u seconds\n", (DWORD)(pWAVEParser->Parser.sourceSeeking.llDuration / (LONGLONG)10000000));
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This->rtStop = pWAVEParser->EndOfFile;
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This->rtStart = pWAVEParser->StartOfFile;
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TRACE("WAVE File ok\n");
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return hr;
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}
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static HRESULT WAVEParser_Cleanup(LPVOID iface)
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{
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WAVEParserImpl *This = iface;
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TRACE("(%p)->()\n", This);
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return S_OK;
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}
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static HRESULT WAVEParser_first_request(LPVOID iface)
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{
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WAVEParserImpl *This = iface;
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PullPin *pin = This->Parser.pInputPin;
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HRESULT hr;
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IMediaSample *sample;
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if (pin->rtCurrent >= pin->rtStop)
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{
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/* Last sample has already been queued, request nothing more */
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TRACE("Done!\n");
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return S_OK;
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}
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hr = IMemAllocator_GetBuffer(pin->pAlloc, &sample, NULL, NULL, 0);
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pin->rtNext = pin->rtCurrent;
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if (SUCCEEDED(hr))
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{
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LONGLONG rtSampleStart = pin->rtNext;
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/* Add 4 for the next header, which should hopefully work */
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LONGLONG rtSampleStop = rtSampleStart + MEDIATIME_FROM_BYTES(IMediaSample_GetSize(sample));
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Parser_OutputPin *outpin = unsafe_impl_Parser_OutputPin_from_IPin(This->Parser.ppPins[1]);
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if (rtSampleStop > pin->rtStop)
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rtSampleStop = MEDIATIME_FROM_BYTES(ALIGNUP(BYTES_FROM_MEDIATIME(pin->rtStop), pin->cbAlign));
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IMediaSample_SetTime(sample, &rtSampleStart, &rtSampleStop);
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pin->rtCurrent = pin->rtNext;
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pin->rtNext = rtSampleStop;
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IMediaSample_SetPreroll(sample, FALSE);
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if (!outpin->dwSamplesProcessed++)
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IMediaSample_SetDiscontinuity(sample, TRUE);
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else
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IMediaSample_SetDiscontinuity(sample, FALSE);
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hr = IAsyncReader_Request(pin->pReader, sample, 0);
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}
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if (FAILED(hr))
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ERR("Horsemen of the apocalypse came to bring error 0x%08x %p\n", hr, sample);
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return hr;
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}
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static HRESULT WAVEParser_disconnect(LPVOID iface)
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{
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/* TODO: Find and plug memory leaks */
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return S_OK;
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}
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static const IBaseFilterVtbl WAVEParser_Vtbl =
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{
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Parser_QueryInterface,
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Parser_AddRef,
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Parser_Release,
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Parser_GetClassID,
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Parser_Stop,
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Parser_Pause,
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Parser_Run,
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Parser_GetState,
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Parser_SetSyncSource,
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Parser_GetSyncSource,
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Parser_EnumPins,
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BaseFilterImpl_FindPin,
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Parser_QueryFilterInfo,
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Parser_JoinFilterGraph,
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Parser_QueryVendorInfo
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};
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HRESULT WAVEParser_create(IUnknown * pUnkOuter, LPVOID * ppv)
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{
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HRESULT hr;
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WAVEParserImpl * This;
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TRACE("(%p, %p)\n", pUnkOuter, ppv);
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*ppv = NULL;
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if (pUnkOuter)
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return CLASS_E_NOAGGREGATION;
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/* Note: This memory is managed by the transform filter once created */
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This = CoTaskMemAlloc(sizeof(WAVEParserImpl));
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hr = Parser_Create(&(This->Parser), &WAVEParser_Vtbl, &CLSID_WAVEParser, WAVEParser_Sample, WAVEParser_QueryAccept, WAVEParser_InputPin_PreConnect, WAVEParser_Cleanup, WAVEParser_disconnect, WAVEParser_first_request, NULL, NULL, WAVEParserImpl_seek, NULL);
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if (FAILED(hr))
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return hr;
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*ppv = &This->Parser.filter.IBaseFilter_iface;
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return hr;
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}
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