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468 lines
12 KiB
468 lines
12 KiB
// Copyright (c) Microsoft Corporation 1994-1996. All Rights Reserved
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// Timecode decoder, David Maymudes, November 1996
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//
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//
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#include <streams.h>
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#include <mmsystem.h>
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// XXX using backslashes since makedepend is broken!
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#include "..\timecode.h"
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#include "..\ltcdcode.h"
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#include "..\tchelper.h"
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#ifdef FILTER_DLL
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// define the GUIDs for streams and my CLSID in this file
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#include <initguid.h>
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#endif
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extern const AMOVIESETUP_FILTER sudTCDecode;
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// Class ID for CTCDecode objects
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//
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// 6a08cf9f-0e18-11cf-a24d-0020afd79767
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DEFINE_GUID(CLSID_TCDecoder,
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0x6a08cf9f, 0x0e18, 0x11cf, 0xa2, 0x4d, 0x0, 0x20, 0xaf, 0xd7, 0x97, 0x67);
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const int TIMECODE_SIZE = 50; // max size of a timecode string
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class CTCDecode : public CTransformFilter
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{
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public:
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CTCDecode(TCHAR *, LPUNKNOWN, HRESULT *);
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~CTCDecode();
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DECLARE_IUNKNOWN
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HRESULT Transform(IMediaSample * pIn, IMediaSample * pOut);
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HRESULT Receive( IMediaSample *pInSample );
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// check if you can support mtIn
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HRESULT CheckInputType(const CMediaType* mtIn);
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// check if you can support the transform from this input to
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// this output
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HRESULT CheckTransform(const CMediaType* mtIn, const CMediaType* mtOut);
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// called from CBaseOutputPin to prepare the allocator's count
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// of buffers and sizes
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HRESULT DecideBufferSize(IMemAllocator * pAllocator,
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ALLOCATOR_PROPERTIES *pProperties);
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// optional overrides - we want to know when streaming starts and stops
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HRESULT StartStreaming();
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HRESULT StopStreaming();
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// overriden to suggest OUTPUT pin media types
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HRESULT GetMediaType(int iPosition, CMediaType *pMediaType);
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// this goes in the factory template table to create new instances
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static CUnknown * CreateInstance(LPUNKNOWN, HRESULT *);
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STDMETHODIMP NonDelegatingQueryInterface(REFIID riid,void **ppv);
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private:
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LTCdecoder decoder;
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DWORD m_nSamplesPerSec;
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DWORD m_nBlockAlign;
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LONGLONG _sampleNumber;
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};
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//*****************************************************************************
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//*****************************************************************************
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// setup data
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const AMOVIESETUP_MEDIATYPE
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sudInTypes = { &MEDIATYPE_Audio // clsMajorType
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, &MEDIASUBTYPE_NULL }; // clsMinorType
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const AMOVIESETUP_MEDIATYPE
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sudOutTypes = { &MEDIATYPE_Text // clsMajorType
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, &MEDIASUBTYPE_NULL }; // clsMinorType
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const AMOVIESETUP_PIN sudpPins [] =
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{
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{ L"Input" // strName
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, FALSE // bRendered
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, FALSE // bOutput
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, FALSE // bZero
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, FALSE // bMany
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, &CLSID_NULL // clsConnectsToFilter
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, L"Output" // strConnectsToPin
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, 1 // nTypes
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, &sudInTypes // lpTypes
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},
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{ L"Output" // strName
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, FALSE // bRendered
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, TRUE // bOutput
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, FALSE // bZero
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, FALSE // bMany
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, &CLSID_NULL // clsConnectsToFilter
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, L"Input" // strConnectsToPin
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, 1 // nTypes
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, &sudOutTypes // lpTypes
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}
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};
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const AMOVIESETUP_FILTER sudTCDecode =
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{ &CLSID_TCDecoder // clsID
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, L"Timecode decoder" // strName
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, MERIT_NORMAL // dwMerit
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, 2 // nPins
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, sudpPins }; // lpPin
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//*****************************************************************************
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//*****************************************************************************
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//*****************************************************************************
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#ifdef FILTER_DLL
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// List of class IDs and creator functions for class factory
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CFactoryTemplate g_Templates[] =
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{
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{ L"Timecode Decoder"
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, &CLSID_TCDecoder
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, CTCDecode::CreateInstance
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, NULL
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, &sudTCDecode
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}
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};
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int g_cTemplates = sizeof(g_Templates) / sizeof(g_Templates[0]);
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//*****************************************************************************
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//*****************************************************************************
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//*****************************************************************************
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// exported entry points for registration and unregistration (in this case they
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// only call through to default implmentations).
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//
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STDAPI DllRegisterServer()
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{
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return AMovieDllRegisterServer2( TRUE );
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}
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STDAPI DllUnregisterServer()
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{
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return AMovieDllRegisterServer2( FALSE );
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}
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#endif
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//*****************************************************************************
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//*****************************************************************************
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//*****************************************************************************
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//
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// CreateInstance()
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//
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//
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CUnknown *CTCDecode::CreateInstance(LPUNKNOWN pUnk, HRESULT * phr)
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{
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DbgLog((LOG_TRACE, 2, TEXT("CTCDecode::CreateInstance")));
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return new CTCDecode(TEXT("LTC decoder"), pUnk, phr);
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}
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//*****************************************************************************
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//
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// NonDelegatingQueryInterface()
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//
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//
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STDMETHODIMP CTCDecode::NonDelegatingQueryInterface( REFIID riid, void **ppv )
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{
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return CTransformFilter::NonDelegatingQueryInterface(riid, ppv);
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}
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//*****************************************************************************
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//
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// CTCDecode()
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//
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//
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CTCDecode::CTCDecode( TCHAR *pName, LPUNKNOWN pUnk, HRESULT *phr )
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: CTransformFilter( pName,
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pUnk,
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CLSID_TCDecoder)
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{
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_sampleNumber = 0;
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DbgLog((LOG_TRACE,3,TEXT("CTCDecode")));
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}
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//*****************************************************************************
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//
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// ~CTCDecode()
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//
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//
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CTCDecode::~CTCDecode()
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{
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DbgLog((LOG_TRACE,3,TEXT("~CTCDecode")));
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}
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//*****************************************************************************
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//
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// CheckInputType()
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//
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//
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HRESULT CTCDecode::CheckInputType(const CMediaType* pmtIn)
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{
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DbgLog((LOG_TRACE, 3, TEXT("CTCDecode::CheckInputType")));
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DisplayType("pmtIn details:", pmtIn);
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WAVEFORMATEX * pwfx = (WAVEFORMATEX *)pmtIn->Format();
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if (pmtIn->majortype != MEDIATYPE_Audio) {
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DbgLog((LOG_ERROR, 1, TEXT("*** CheckInputType only takes audio")));
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return E_INVALIDARG;
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}
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if( *pmtIn->FormatType() != FORMAT_WaveFormatEx ) {
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DbgLog((LOG_ERROR, 1, TEXT(" pmtOut->FormatType != FORMAT_WaveFormatEx!")));
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return E_INVALIDARG;
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}
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if (pmtIn->FormatLength() < sizeof(PCMWAVEFORMAT)) {
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DbgLog((LOG_ERROR, 1, TEXT("*** pmtIn->FormatLength < PCMWAVEFORMAT")));
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return E_INVALIDARG;
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}
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// only accept mono 16 bit data
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if (pwfx->wFormatTag != WAVE_FORMAT_PCM || pwfx->wBitsPerSample != 16 ||
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pwfx->nChannels != 1)
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return E_INVALIDARG;
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return S_OK;
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}
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//*****************************************************************************
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//
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// GetMediaType()
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//
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HRESULT CTCDecode::GetMediaType( int iPosition, CMediaType *pmt )
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{
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DbgLog((LOG_TRACE, 3, TEXT("CTCDecode::GetMediaType")));
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DbgLog((LOG_TRACE, 3, TEXT(" iPosition = %d"),iPosition));
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if( iPosition != 0 ) {
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return E_INVALIDARG;
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}
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pmt->SetType( &MEDIATYPE_Text );
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pmt->SetSubtype( &GUID_NULL );
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pmt->SetFormatType( &GUID_NULL );
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return S_OK;
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}
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//*****************************************************************************
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//
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// CheckTransform()
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//
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//
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HRESULT CTCDecode::CheckTransform(const CMediaType* pmtIn,
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const CMediaType* pmtOut)
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{
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HRESULT hr = CheckInputType(pmtIn);
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if (FAILED(hr))
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return hr;
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DisplayType("pmtOut:", pmtOut);
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if (pmtOut->majortype != MEDIATYPE_Text) {
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DbgLog((LOG_ERROR, 1, TEXT("*** output type must be text")));
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return E_INVALIDARG;
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}
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return S_OK;
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}
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//*****************************************************************************
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//
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// DecideBufferSize()
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//
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HRESULT CTCDecode::DecideBufferSize( IMemAllocator * pAllocator,
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ALLOCATOR_PROPERTIES *pProperties )
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{
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DbgLog((LOG_TRACE, 3, TEXT("CTCDecode::DecideBufferSize")));
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if (pProperties->cBuffers < 4)
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pProperties->cBuffers = 4;
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if (pProperties->cbBuffer < TIMECODE_SIZE)
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pProperties->cbBuffer = TIMECODE_SIZE;
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if (pProperties->cbAlign < 1)
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pProperties->cbAlign = 1;
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ALLOCATOR_PROPERTIES Actual;
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HRESULT hr = pAllocator->SetProperties(pProperties,&Actual);
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if (FAILED(hr)) {
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return hr;
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}
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return S_OK;
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}
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//*****************************************************************************
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//
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// StartStreaming()
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//
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//
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HRESULT CTCDecode::StartStreaming()
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{
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CAutoLock lock(&m_csFilter);
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DbgLog((LOG_TRACE, 3, TEXT("CTCDecode::StartStreaming")));
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WAVEFORMATEX *pwfx = (WAVEFORMATEX *)m_pInput->CurrentMediaType().Format();
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m_nSamplesPerSec = pwfx->nSamplesPerSec ;
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m_nBlockAlign = pwfx->nBlockAlign ;
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// !!! decoder.Reset();
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return S_OK;
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}
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//*****************************************************************************
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//
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// StopStreaming()
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//
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//
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HRESULT CTCDecode::StopStreaming()
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{
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CAutoLock lock(&m_csFilter);
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DbgLog((LOG_TRACE, 3, TEXT("CTCDecode::StopStreaming")));
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return NOERROR;
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}
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HRESULT CTCDecode::Transform( IMediaSample *pIn, IMediaSample *pOut )
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{
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DbgLog((LOG_ERROR, 1, TEXT("*** CTCDecode->Transform() called!")));
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ASSERT(0); // !!! shouldn't be called!
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return E_FAIL;
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}
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HRESULT CTCDecode::Receive( IMediaSample *pInSample )
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{
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HRESULT hr = NOERROR;
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REFERENCE_TIME inBufStartTime; // start/stop time of input buffer
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REFERENCE_TIME inBufStopTime;
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REFERENCE_TIME tcStartTime; // start/stop time of the timecode
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REFERENCE_TIME tcStopTime;
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LONGLONG startTCsample, stopTCsample; // 1st, last sample of timecode
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BYTE *pbSample;
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LONG cbSampleLength, cbLeft;
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DbgLog((LOG_TRACE, 4, TEXT("CTCDecode::Receive")));
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// get input start and stop times
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pInSample->GetTime(&inBufStartTime, &inBufStopTime);
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pInSample->GetPointer( &pbSample );
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DbgLog((LOG_TRACE, 3, TEXT("Total Sample: Start = %s End = %s"),
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(LPCTSTR)CDisp((LONGLONG)(inBufStartTime),CDISP_HEX),
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(LPCTSTR)CDisp((LONGLONG)(inBufStopTime),CDISP_HEX)));
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cbSampleLength = pInSample->GetActualDataLength() / m_nBlockAlign;
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cbLeft = cbSampleLength;
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// sample number of the last sample in buf
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LONGLONG lastSampleNumber= _sampleNumber + cbSampleLength;
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DbgLog((LOG_TRACE, 4, TEXT(" cbSampleLength = %d"),cbSampleLength));
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while (cbLeft > 0) {
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TimeCode tc;
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LONGLONG syncSample; // the audio sample that this tc corresponds to
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if (decoder.decodeBuffer((short **) &pbSample, (int *) &cbLeft)) {
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IMediaSample *pOutSample;
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decoder.getTimeCode(&tc);
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decoder.getStartStopSample(&startTCsample, &stopTCsample);
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hr = m_pOutput->GetDeliveryBuffer( &pOutSample, NULL, NULL, 0 );
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if( FAILED(hr) )
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{
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DbgLog((LOG_ERROR, 1, TEXT("GetDeliveryBuffer(pOutSample) failed, hr = %u"),hr));
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return hr;
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}
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pOutSample->SetSyncPoint( pInSample->IsSyncPoint() == S_OK );
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// not really right....
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pOutSample->SetDiscontinuity( pInSample->IsDiscontinuity() == S_OK );
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tcStartTime = extrapolate(_sampleNumber, inBufStartTime, // begin bf
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lastSampleNumber, inBufStopTime, // end bf
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startTCsample); // samnumber of desired time
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tcStopTime = extrapolate(_sampleNumber, inBufStartTime, // begin bf
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lastSampleNumber, inBufStopTime, // end bf
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stopTCsample); // samnumber of desired time
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// !!! really should be last tStop of the last timecode sent....
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// XXX realy? I am not so sure...
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pOutSample->SetTime(&tcStartTime, &tcStopTime);
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DbgLog((LOG_TRACE, 4, TEXT(" Breaking up: Start = %s End = %s"),
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(LPCTSTR)CDisp((LONGLONG)(tcStartTime),CDISP_HEX),
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(LPCTSTR)CDisp((LONGLONG)(tcStopTime),CDISP_HEX)));
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BYTE *pbOut;
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pOutSample->GetPointer( &pbOut );
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tc.GetString((char *) pbOut);
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pOutSample->SetActualDataLength(lstrlen((char *) pbOut) + 1);
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hr = m_pOutput->Deliver(pOutSample);
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// release the output buffer. If the connected pin still needs it,
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// it will have addrefed it itself.
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pOutSample->Release();
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if (FAILED(hr))
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return hr;
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}
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}
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// sample count of 1st sample in decode buffer
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// needed because the synch will occur in a PREVIOUS buffer (or 1st samp)
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_sampleNumber += cbSampleLength;
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return S_OK;
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}
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// !!! do we need special EOS handling?
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