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42bdeaf52c
Original repo is here: https://github.com/microsoft/Windows-classic-samples Part-of: <https://gitlab.freedesktop.org/gstreamer/gstreamer/-/merge_requests/1577>
304 lines
9.6 KiB
C++
304 lines
9.6 KiB
C++
//------------------------------------------------------------------------------
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// File: Transfrm.h
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//
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// Desc: DirectShow base classes - defines classes from which simple
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// transform codecs may be derived.
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//
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// Copyright (c) 1992-2001 Microsoft Corporation. All rights reserved.
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//------------------------------------------------------------------------------
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// It assumes the codec has one input and one output stream, and has no
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// interest in memory management, interface negotiation or anything else.
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//
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// derive your class from this, and supply Transform and the media type/format
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// negotiation functions. Implement that class, compile and link and
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// you're done.
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#ifndef __TRANSFRM__
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#define __TRANSFRM__
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// ======================================================================
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// This is the com object that represents a simple transform filter. It
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// supports IBaseFilter, IMediaFilter and two pins through nested interfaces
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// ======================================================================
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class CTransformFilter;
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// ==================================================
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// Implements the input pin
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// ==================================================
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class CTransformInputPin : public CBaseInputPin
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{
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friend class CTransformFilter;
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protected:
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CTransformFilter *m_pTransformFilter;
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public:
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CTransformInputPin(
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__in_opt LPCTSTR pObjectName,
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__inout CTransformFilter *pTransformFilter,
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__inout HRESULT * phr,
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__in_opt LPCWSTR pName);
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#ifdef UNICODE
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CTransformInputPin(
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__in_opt LPCSTR pObjectName,
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__inout CTransformFilter *pTransformFilter,
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__inout HRESULT * phr,
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__in_opt LPCWSTR pName);
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#endif
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STDMETHODIMP QueryId(__deref_out LPWSTR * Id)
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{
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return AMGetWideString(L"In", Id);
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}
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// Grab and release extra interfaces if required
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HRESULT CheckConnect(IPin *pPin);
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HRESULT BreakConnect();
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HRESULT CompleteConnect(IPin *pReceivePin);
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// check that we can support this output type
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HRESULT CheckMediaType(const CMediaType* mtIn);
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// set the connection media type
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HRESULT SetMediaType(const CMediaType* mt);
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// --- IMemInputPin -----
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// here's the next block of data from the stream.
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// AddRef it yourself if you need to hold it beyond the end
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// of this call.
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STDMETHODIMP Receive(IMediaSample * pSample);
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// provide EndOfStream that passes straight downstream
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// (there is no queued data)
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STDMETHODIMP EndOfStream(void);
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// passes it to CTransformFilter::BeginFlush
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STDMETHODIMP BeginFlush(void);
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// passes it to CTransformFilter::EndFlush
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STDMETHODIMP EndFlush(void);
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STDMETHODIMP NewSegment(
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REFERENCE_TIME tStart,
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REFERENCE_TIME tStop,
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double dRate);
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// Check if it's OK to process samples
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virtual HRESULT CheckStreaming();
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// Media type
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public:
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CMediaType& CurrentMediaType() { return m_mt; };
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};
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// ==================================================
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// Implements the output pin
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// ==================================================
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class CTransformOutputPin : public CBaseOutputPin
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{
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friend class CTransformFilter;
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protected:
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CTransformFilter *m_pTransformFilter;
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public:
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// implement IMediaPosition by passing upstream
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IUnknown * m_pPosition;
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CTransformOutputPin(
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__in_opt LPCTSTR pObjectName,
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__inout CTransformFilter *pTransformFilter,
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__inout HRESULT * phr,
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__in_opt LPCWSTR pName);
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#ifdef UNICODE
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CTransformOutputPin(
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__in_opt LPCSTR pObjectName,
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__inout CTransformFilter *pTransformFilter,
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__inout HRESULT * phr,
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__in_opt LPCWSTR pName);
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#endif
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~CTransformOutputPin();
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// override to expose IMediaPosition
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STDMETHODIMP NonDelegatingQueryInterface(REFIID riid, __deref_out void **ppv);
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// --- CBaseOutputPin ------------
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STDMETHODIMP QueryId(__deref_out LPWSTR * Id)
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{
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return AMGetWideString(L"Out", Id);
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}
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// Grab and release extra interfaces if required
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HRESULT CheckConnect(IPin *pPin);
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HRESULT BreakConnect();
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HRESULT CompleteConnect(IPin *pReceivePin);
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// check that we can support this output type
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HRESULT CheckMediaType(const CMediaType* mtOut);
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// set the connection media type
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HRESULT SetMediaType(const CMediaType *pmt);
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// called from CBaseOutputPin during connection to ask for
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// the count and size of buffers we need.
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HRESULT DecideBufferSize(
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IMemAllocator * pAlloc,
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__inout ALLOCATOR_PROPERTIES *pProp);
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// returns the preferred formats for a pin
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HRESULT GetMediaType(int iPosition, __inout CMediaType *pMediaType);
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// inherited from IQualityControl via CBasePin
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STDMETHODIMP Notify(IBaseFilter * pSender, Quality q);
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// Media type
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public:
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CMediaType& CurrentMediaType() { return m_mt; };
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};
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class AM_NOVTABLE CTransformFilter : public CBaseFilter
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{
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public:
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// map getpin/getpincount for base enum of pins to owner
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// override this to return more specialised pin objects
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virtual int GetPinCount();
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virtual CBasePin * GetPin(int n);
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STDMETHODIMP FindPin(LPCWSTR Id, __deref_out IPin **ppPin);
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// override state changes to allow derived transform filter
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// to control streaming start/stop
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STDMETHODIMP Stop();
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STDMETHODIMP Pause();
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public:
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CTransformFilter(__in_opt LPCTSTR , __inout_opt LPUNKNOWN, REFCLSID clsid);
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#ifdef UNICODE
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CTransformFilter(__in_opt LPCSTR , __inout_opt LPUNKNOWN, REFCLSID clsid);
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#endif
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~CTransformFilter();
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// =================================================================
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// ----- override these bits ---------------------------------------
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// =================================================================
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// These must be supplied in a derived class
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virtual HRESULT Transform(IMediaSample * pIn, IMediaSample *pOut);
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// check if you can support mtIn
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virtual HRESULT CheckInputType(const CMediaType* mtIn) PURE;
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// check if you can support the transform from this input to this output
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virtual HRESULT CheckTransform(const CMediaType* mtIn, const CMediaType* mtOut) PURE;
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// this goes in the factory template table to create new instances
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// static CCOMObject * CreateInstance(__inout_opt LPUNKNOWN, HRESULT *);
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// call the SetProperties function with appropriate arguments
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virtual HRESULT DecideBufferSize(
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IMemAllocator * pAllocator,
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__inout ALLOCATOR_PROPERTIES *pprop) PURE;
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// override to suggest OUTPUT pin media types
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virtual HRESULT GetMediaType(int iPosition, __inout CMediaType *pMediaType) PURE;
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// =================================================================
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// ----- Optional Override Methods -----------------------
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// =================================================================
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// you can also override these if you want to know about streaming
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virtual HRESULT StartStreaming();
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virtual HRESULT StopStreaming();
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// override if you can do anything constructive with quality notifications
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virtual HRESULT AlterQuality(Quality q);
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// override this to know when the media type is actually set
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virtual HRESULT SetMediaType(PIN_DIRECTION direction,const CMediaType *pmt);
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// chance to grab extra interfaces on connection
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virtual HRESULT CheckConnect(PIN_DIRECTION dir,IPin *pPin);
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virtual HRESULT BreakConnect(PIN_DIRECTION dir);
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virtual HRESULT CompleteConnect(PIN_DIRECTION direction,IPin *pReceivePin);
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// chance to customize the transform process
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virtual HRESULT Receive(IMediaSample *pSample);
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// Standard setup for output sample
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HRESULT InitializeOutputSample(IMediaSample *pSample, __deref_out IMediaSample **ppOutSample);
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// if you override Receive, you may need to override these three too
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virtual HRESULT EndOfStream(void);
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virtual HRESULT BeginFlush(void);
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virtual HRESULT EndFlush(void);
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virtual HRESULT NewSegment(
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REFERENCE_TIME tStart,
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REFERENCE_TIME tStop,
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double dRate);
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#ifdef PERF
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// Override to register performance measurement with a less generic string
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// You should do this to avoid confusion with other filters
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virtual void RegisterPerfId()
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{m_idTransform = MSR_REGISTER(TEXT("Transform"));}
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#endif // PERF
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// implementation details
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protected:
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#ifdef PERF
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int m_idTransform; // performance measuring id
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#endif
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BOOL m_bEOSDelivered; // have we sent EndOfStream
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BOOL m_bSampleSkipped; // Did we just skip a frame
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BOOL m_bQualityChanged; // Have we degraded?
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// critical section protecting filter state.
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CCritSec m_csFilter;
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// critical section stopping state changes (ie Stop) while we're
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// processing a sample.
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//
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// This critical section is held when processing
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// events that occur on the receive thread - Receive() and EndOfStream().
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//
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// If you want to hold both m_csReceive and m_csFilter then grab
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// m_csFilter FIRST - like CTransformFilter::Stop() does.
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CCritSec m_csReceive;
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// these hold our input and output pins
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friend class CTransformInputPin;
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friend class CTransformOutputPin;
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CTransformInputPin *m_pInput;
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CTransformOutputPin *m_pOutput;
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};
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#endif /* __TRANSFRM__ */
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