2 * Generic Implementation of IPin Interface
4 * Copyright 2003 Robert Shearman
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21 #include "quartz_private.h"
24 #include "wine/debug.h"
25 #include "wine/unicode.h"
30 WINE_DEFAULT_DEBUG_CHANNEL(quartz
);
32 static const struct IPinVtbl InputPin_Vtbl
;
33 static const struct IPinVtbl OutputPin_Vtbl
;
34 static const struct IMemInputPinVtbl MemInputPin_Vtbl
;
35 static const struct IPinVtbl PullPin_Vtbl
;
37 #define ALIGNDOWN(value,boundary) ((value) & ~(boundary-1))
38 #define ALIGNUP(value,boundary) (ALIGNDOWN(value - 1, boundary) + boundary)
40 #define _IMemInputPin_Offset ((int)(&(((InputPin*)0)->lpVtblMemInput)))
41 #define ICOM_THIS_From_IMemInputPin(impl, iface) impl* This = (impl*)(((char*)iface)-_IMemInputPin_Offset);
43 static void Copy_PinInfo(PIN_INFO
* pDest
, const PIN_INFO
* pSrc
)
45 /* Tempting to just do a memcpy, but the name field is
46 128 characters long! We will probably never exceed 10
47 most of the time, so we are better off copying
48 each field manually */
49 strcpyW(pDest
->achName
, pSrc
->achName
);
50 pDest
->dir
= pSrc
->dir
;
51 pDest
->pFilter
= pSrc
->pFilter
;
52 IBaseFilter_AddRef(pDest
->pFilter
);
55 /* Internal function called as a helper to IPin_Connect */
56 /* specific AM_MEDIA_TYPE - it cannot be NULL */
57 /* NOTE: not part of standard interface */
58 static HRESULT
OutputPin_ConnectSpecific(IPin
* iface
, IPin
* pReceivePin
, const AM_MEDIA_TYPE
* pmt
)
60 ICOM_THIS(OutputPin
, iface
);
62 IMemAllocator
* pMemAlloc
= NULL
;
63 ALLOCATOR_PROPERTIES actual
; /* FIXME: should we put the actual props back in to This? */
65 TRACE("(%p, %p)\n", pReceivePin
, pmt
);
66 dump_AM_MEDIA_TYPE(pmt
);
68 /* FIXME: call queryacceptproc */
70 This
->pin
.pConnectedTo
= pReceivePin
;
71 IPin_AddRef(pReceivePin
);
72 CopyMediaType(&This
->pin
.mtCurrent
, pmt
);
74 hr
= IPin_ReceiveConnection(pReceivePin
, iface
, pmt
);
76 /* get the IMemInputPin interface we will use to deliver samples to the
80 hr
= IPin_QueryInterface(pReceivePin
, &IID_IMemInputPin
, (LPVOID
)&This
->pMemInputPin
);
83 hr
= IMemInputPin_GetAllocator(This
->pMemInputPin
, &pMemAlloc
);
86 hr
= IMemAllocator_SetProperties(pMemAlloc
, &This
->allocProps
, &actual
);
89 IMemAllocator_Release(pMemAlloc
);
91 /* break connection if we couldn't get the allocator */
93 IPin_Disconnect(pReceivePin
);
98 IPin_Release(This
->pin
.pConnectedTo
);
99 This
->pin
.pConnectedTo
= NULL
;
100 DeleteMediaType(&This
->pin
.mtCurrent
);
103 TRACE(" -- %lx\n", hr
);
107 HRESULT
InputPin_Construct(const PIN_INFO
* pPinInfo
, SAMPLEPROC pSampleProc
, LPVOID pUserData
, QUERYACCEPTPROC pQueryAccept
, LPCRITICAL_SECTION pCritSec
, IPin
** ppPin
)
113 if (pPinInfo
->dir
!= PINDIR_INPUT
)
115 ERR("Pin direction(%x) != PINDIR_INPUT\n", pPinInfo
->dir
);
119 pPinImpl
= CoTaskMemAlloc(sizeof(*pPinImpl
));
122 return E_OUTOFMEMORY
;
124 if (SUCCEEDED(InputPin_Init(pPinInfo
, pSampleProc
, pUserData
, pQueryAccept
, pCritSec
, pPinImpl
)))
126 pPinImpl
->pin
.lpVtbl
= &InputPin_Vtbl
;
127 pPinImpl
->lpVtblMemInput
= &MemInputPin_Vtbl
;
129 *ppPin
= (IPin
*)(&pPinImpl
->pin
.lpVtbl
);
135 /* Note that we don't init the vtables here (like C++ constructor) */
136 HRESULT
InputPin_Init(const PIN_INFO
* pPinInfo
, SAMPLEPROC pSampleProc
, LPVOID pUserData
, QUERYACCEPTPROC pQueryAccept
, LPCRITICAL_SECTION pCritSec
, InputPin
* pPinImpl
)
140 /* Common attributes */
141 pPinImpl
->pin
.refCount
= 1;
142 pPinImpl
->pin
.pConnectedTo
= NULL
;
143 pPinImpl
->pin
.fnQueryAccept
= pQueryAccept
;
144 pPinImpl
->pin
.pUserData
= pUserData
;
145 pPinImpl
->pin
.pCritSec
= pCritSec
;
146 Copy_PinInfo(&pPinImpl
->pin
.pinInfo
, pPinInfo
);
148 /* Input pin attributes */
149 pPinImpl
->fnSampleProc
= pSampleProc
;
150 pPinImpl
->pAllocator
= NULL
;
151 pPinImpl
->tStart
= 0;
158 HRESULT
OutputPin_Init(const PIN_INFO
* pPinInfo
, ALLOCATOR_PROPERTIES
* props
, LPVOID pUserData
, QUERYACCEPTPROC pQueryAccept
, LPCRITICAL_SECTION pCritSec
, OutputPin
* pPinImpl
)
162 /* Common attributes */
163 pPinImpl
->pin
.lpVtbl
= &OutputPin_Vtbl
;
164 pPinImpl
->pin
.refCount
= 1;
165 pPinImpl
->pin
.pConnectedTo
= NULL
;
166 pPinImpl
->pin
.fnQueryAccept
= pQueryAccept
;
167 pPinImpl
->pin
.pUserData
= pUserData
;
168 pPinImpl
->pin
.pCritSec
= pCritSec
;
169 Copy_PinInfo(&pPinImpl
->pin
.pinInfo
, pPinInfo
);
171 /* Output pin attributes */
172 pPinImpl
->pMemInputPin
= NULL
;
173 pPinImpl
->pConnectSpecific
= OutputPin_ConnectSpecific
;
176 memcpy(&pPinImpl
->allocProps
, props
, sizeof(pPinImpl
->allocProps
));
177 if (pPinImpl
->allocProps
.cbAlign
== 0)
178 pPinImpl
->allocProps
.cbAlign
= 1;
181 ZeroMemory(&pPinImpl
->allocProps
, sizeof(pPinImpl
->allocProps
));
187 HRESULT
OutputPin_Construct(const PIN_INFO
* pPinInfo
, ALLOCATOR_PROPERTIES
*props
, LPVOID pUserData
, QUERYACCEPTPROC pQueryAccept
, LPCRITICAL_SECTION pCritSec
, IPin
** ppPin
)
189 OutputPin
* pPinImpl
;
193 if (pPinInfo
->dir
!= PINDIR_OUTPUT
)
195 ERR("Pin direction(%x) != PINDIR_OUTPUT\n", pPinInfo
->dir
);
199 pPinImpl
= CoTaskMemAlloc(sizeof(*pPinImpl
));
202 return E_OUTOFMEMORY
;
204 if (SUCCEEDED(OutputPin_Init(pPinInfo
, props
, pUserData
, pQueryAccept
, pCritSec
, pPinImpl
)))
206 pPinImpl
->pin
.lpVtbl
= &OutputPin_Vtbl
;
208 *ppPin
= (IPin
*)(&pPinImpl
->pin
.lpVtbl
);
214 /*** Common pin functions ***/
216 ULONG WINAPI
IPinImpl_AddRef(IPin
* iface
)
218 ICOM_THIS(IPinImpl
, iface
);
222 return InterlockedIncrement(&This
->refCount
);
225 HRESULT WINAPI
IPinImpl_Disconnect(IPin
* iface
)
228 ICOM_THIS(IPinImpl
, iface
);
232 EnterCriticalSection(This
->pCritSec
);
234 if (This
->pConnectedTo
)
236 IPin_Release(This
->pConnectedTo
);
237 This
->pConnectedTo
= NULL
;
243 LeaveCriticalSection(This
->pCritSec
);
248 HRESULT WINAPI
IPinImpl_ConnectedTo(IPin
* iface
, IPin
** ppPin
)
250 ICOM_THIS(IPinImpl
, iface
);
252 /* TRACE("(%p)\n", ppPin);*/
254 *ppPin
= This
->pConnectedTo
;
262 return VFW_E_NOT_CONNECTED
;
265 HRESULT WINAPI
IPinImpl_ConnectionMediaType(IPin
* iface
, AM_MEDIA_TYPE
* pmt
)
268 ICOM_THIS(IPinImpl
, iface
);
270 TRACE("(%p)\n", pmt
);
272 EnterCriticalSection(This
->pCritSec
);
274 if (This
->pConnectedTo
)
276 CopyMediaType(pmt
, &This
->mtCurrent
);
281 ZeroMemory(pmt
, sizeof(*pmt
));
282 hr
= VFW_E_NOT_CONNECTED
;
285 LeaveCriticalSection(This
->pCritSec
);
290 HRESULT WINAPI
IPinImpl_QueryPinInfo(IPin
* iface
, PIN_INFO
* pInfo
)
292 ICOM_THIS(IPinImpl
, iface
);
294 TRACE("(%p)\n", pInfo
);
296 Copy_PinInfo(pInfo
, &This
->pinInfo
);
301 HRESULT WINAPI
IPinImpl_QueryDirection(IPin
* iface
, PIN_DIRECTION
* pPinDir
)
303 ICOM_THIS(IPinImpl
, iface
);
305 TRACE("(%p)\n", pPinDir
);
307 *pPinDir
= This
->pinInfo
.dir
;
312 HRESULT WINAPI
IPinImpl_QueryId(IPin
* iface
, LPWSTR
* Id
)
314 ICOM_THIS(IPinImpl
, iface
);
318 *Id
= CoTaskMemAlloc((strlenW(This
->pinInfo
.achName
) + 1) * sizeof(WCHAR
));
320 return E_OUTOFMEMORY
;
322 strcpyW(*Id
, This
->pinInfo
.achName
);
327 HRESULT WINAPI
IPinImpl_QueryAccept(IPin
* iface
, const AM_MEDIA_TYPE
* pmt
)
329 ICOM_THIS(IPinImpl
, iface
);
331 TRACE("(%p)\n", pmt
);
333 return (This
->fnQueryAccept(This
->pUserData
, pmt
) == S_OK
? S_OK
: S_FALSE
);
336 HRESULT WINAPI
IPinImpl_EnumMediaTypes(IPin
* iface
, IEnumMediaTypes
** ppEnum
)
338 ENUMMEDIADETAILS emd
;
340 TRACE("(%p)\n", ppEnum
);
342 /* override this method to allow enumeration of your types */
344 emd
.pMediaTypes
= NULL
;
346 return IEnumMediaTypesImpl_Construct(&emd
, ppEnum
);
349 HRESULT WINAPI
IPinImpl_QueryInternalConnections(IPin
* iface
, IPin
** apPin
, ULONG
* cPin
)
351 TRACE("(%p, %p)\n", apPin
, cPin
);
353 return E_NOTIMPL
; /* to tell caller that all input pins connected to all output pins */
356 /*** IPin implementation for an input pin ***/
358 HRESULT WINAPI
InputPin_QueryInterface(IPin
* iface
, REFIID riid
, LPVOID
* ppv
)
360 ICOM_THIS(InputPin
, iface
);
362 TRACE("(%s, %p)\n", qzdebugstr_guid(riid
), ppv
);
366 if (IsEqualIID(riid
, &IID_IUnknown
))
367 *ppv
= (LPVOID
)iface
;
368 else if (IsEqualIID(riid
, &IID_IPin
))
369 *ppv
= (LPVOID
)iface
;
370 else if (IsEqualIID(riid
, &IID_IMemInputPin
))
371 *ppv
= (LPVOID
)&This
->lpVtblMemInput
;
375 IUnknown_AddRef((IUnknown
*)(*ppv
));
379 FIXME("No interface for %s!\n", qzdebugstr_guid(riid
));
381 return E_NOINTERFACE
;
384 ULONG WINAPI
InputPin_Release(IPin
* iface
)
386 ICOM_THIS(InputPin
, iface
);
390 if (!InterlockedDecrement(&This
->pin
.refCount
))
392 DeleteMediaType(&This
->pin
.mtCurrent
);
393 if (This
->pAllocator
)
394 IMemAllocator_Release(This
->pAllocator
);
399 return This
->pin
.refCount
;
402 HRESULT WINAPI
InputPin_Connect(IPin
* iface
, IPin
* pConnector
, const AM_MEDIA_TYPE
* pmt
)
404 ERR("Outgoing connection on an input pin! (%p, %p)\n", pConnector
, pmt
);
410 HRESULT WINAPI
InputPin_ReceiveConnection(IPin
* iface
, IPin
* pReceivePin
, const AM_MEDIA_TYPE
* pmt
)
412 ICOM_THIS(InputPin
, iface
);
413 PIN_DIRECTION pindirReceive
;
416 TRACE("(%p, %p)\n", pReceivePin
, pmt
);
417 dump_AM_MEDIA_TYPE(pmt
);
419 EnterCriticalSection(This
->pin
.pCritSec
);
421 if (This
->pin
.pConnectedTo
)
422 hr
= VFW_E_ALREADY_CONNECTED
;
424 if (SUCCEEDED(hr
) && This
->pin
.fnQueryAccept(This
->pin
.pUserData
, pmt
) != S_OK
)
425 hr
= VFW_E_TYPE_NOT_ACCEPTED
; /* FIXME: shouldn't we just map common errors onto
426 * VFW_E_TYPE_NOT_ACCEPTED and pass the value on otherwise? */
430 IPin_QueryDirection(pReceivePin
, &pindirReceive
);
432 if (pindirReceive
!= PINDIR_OUTPUT
)
434 ERR("Can't connect from non-output pin\n");
435 hr
= VFW_E_INVALID_DIRECTION
;
441 CopyMediaType(&This
->pin
.mtCurrent
, pmt
);
442 This
->pin
.pConnectedTo
= pReceivePin
;
443 IPin_AddRef(pReceivePin
);
446 LeaveCriticalSection(This
->pin
.pCritSec
);
451 HRESULT WINAPI
InputPin_EndOfStream(IPin
* iface
)
458 HRESULT WINAPI
InputPin_BeginFlush(IPin
* iface
)
464 HRESULT WINAPI
InputPin_EndFlush(IPin
* iface
)
470 HRESULT WINAPI
InputPin_NewSegment(IPin
* iface
, REFERENCE_TIME tStart
, REFERENCE_TIME tStop
, double dRate
)
472 ICOM_THIS(InputPin
, iface
);
474 TRACE("(%lx%08lx, %lx%08lx, %e)\n", (ULONG
)(tStart
>> 32), (ULONG
)tStart
, (ULONG
)(tStop
>> 32), (ULONG
)tStop
, dRate
);
476 This
->tStart
= tStart
;
483 static const IPinVtbl InputPin_Vtbl
=
485 ICOM_MSVTABLE_COMPAT_DummyRTTIVALUE
486 InputPin_QueryInterface
,
490 InputPin_ReceiveConnection
,
492 IPinImpl_ConnectedTo
,
493 IPinImpl_ConnectionMediaType
,
494 IPinImpl_QueryPinInfo
,
495 IPinImpl_QueryDirection
,
497 IPinImpl_QueryAccept
,
498 IPinImpl_EnumMediaTypes
,
499 IPinImpl_QueryInternalConnections
,
500 InputPin_EndOfStream
,
506 /*** IMemInputPin implementation ***/
508 HRESULT WINAPI
MemInputPin_QueryInterface(IMemInputPin
* iface
, REFIID riid
, LPVOID
* ppv
)
510 ICOM_THIS_From_IMemInputPin(InputPin
, iface
);
512 return IPin_QueryInterface((IPin
*)&This
->pin
, riid
, ppv
);
515 ULONG WINAPI
MemInputPin_AddRef(IMemInputPin
* iface
)
517 ICOM_THIS_From_IMemInputPin(InputPin
, iface
);
519 return IPin_AddRef((IPin
*)&This
->pin
);
522 ULONG WINAPI
MemInputPin_Release(IMemInputPin
* iface
)
524 ICOM_THIS_From_IMemInputPin(InputPin
, iface
);
526 return IPin_Release((IPin
*)&This
->pin
);
529 HRESULT WINAPI
MemInputPin_GetAllocator(IMemInputPin
* iface
, IMemAllocator
** ppAllocator
)
531 ICOM_THIS_From_IMemInputPin(InputPin
, iface
);
533 TRACE("MemInputPin_GetAllocator()\n");
535 *ppAllocator
= This
->pAllocator
;
537 IMemAllocator_AddRef(*ppAllocator
);
539 return *ppAllocator
? S_OK
: VFW_E_NO_ALLOCATOR
;
542 HRESULT WINAPI
MemInputPin_NotifyAllocator(IMemInputPin
* iface
, IMemAllocator
* pAllocator
, BOOL bReadOnly
)
544 ICOM_THIS_From_IMemInputPin(InputPin
, iface
);
548 if (This
->pAllocator
)
549 IMemAllocator_Release(This
->pAllocator
);
550 This
->pAllocator
= pAllocator
;
551 if (This
->pAllocator
)
552 IMemAllocator_AddRef(This
->pAllocator
);
557 HRESULT WINAPI
MemInputPin_GetAllocatorRequirements(IMemInputPin
* iface
, ALLOCATOR_PROPERTIES
* pProps
)
559 TRACE("(%p)\n", pProps
);
561 /* override this method if you have any specific requirements */
566 HRESULT WINAPI
MemInputPin_Receive(IMemInputPin
* iface
, IMediaSample
* pSample
)
568 ICOM_THIS_From_IMemInputPin(InputPin
, iface
);
570 /* this trace commented out for performance reasons */
571 /* TRACE("(%p)\n", pSample);*/
573 return This
->fnSampleProc(This
->pin
.pUserData
, pSample
);
576 HRESULT WINAPI
MemInputPin_ReceiveMultiple(IMemInputPin
* iface
, IMediaSample
** pSamples
, long nSamples
, long *nSamplesProcessed
)
579 TRACE("(%p, %ld, %p)\n", pSamples
, nSamples
, nSamplesProcessed
);
581 for (*nSamplesProcessed
= 0; *nSamplesProcessed
< nSamples
; (*nSamplesProcessed
)++)
583 hr
= IMemInputPin_Receive(iface
, pSamples
[*nSamplesProcessed
]);
591 HRESULT WINAPI
MemInputPin_ReceiveCanBlock(IMemInputPin
* iface
)
595 /* FIXME: we should check whether any output pins will block */
600 static const IMemInputPinVtbl MemInputPin_Vtbl
=
602 ICOM_MSVTABLE_COMPAT_DummyRTTIVALUE
603 MemInputPin_QueryInterface
,
606 MemInputPin_GetAllocator
,
607 MemInputPin_NotifyAllocator
,
608 MemInputPin_GetAllocatorRequirements
,
610 MemInputPin_ReceiveMultiple
,
611 MemInputPin_ReceiveCanBlock
614 HRESULT WINAPI
OutputPin_QueryInterface(IPin
* iface
, REFIID riid
, LPVOID
* ppv
)
616 TRACE("(%s, %p)\n", qzdebugstr_guid(riid
), ppv
);
620 if (IsEqualIID(riid
, &IID_IUnknown
))
621 *ppv
= (LPVOID
)iface
;
622 else if (IsEqualIID(riid
, &IID_IPin
))
623 *ppv
= (LPVOID
)iface
;
627 IUnknown_AddRef((IUnknown
*)(*ppv
));
631 FIXME("No interface for %s!\n", qzdebugstr_guid(riid
));
633 return E_NOINTERFACE
;
636 ULONG WINAPI
OutputPin_Release(IPin
* iface
)
638 ICOM_THIS(OutputPin
, iface
);
642 if (!InterlockedDecrement(&This
->pin
.refCount
))
644 DeleteMediaType(&This
->pin
.mtCurrent
);
648 return This
->pin
.refCount
;
651 HRESULT WINAPI
OutputPin_Connect(IPin
* iface
, IPin
* pReceivePin
, const AM_MEDIA_TYPE
* pmt
)
654 ICOM_THIS(OutputPin
, iface
);
656 TRACE("(%p, %p)\n", pReceivePin
, pmt
);
657 dump_AM_MEDIA_TYPE(pmt
);
659 /* If we try to connect to ourself, we will definitely deadlock.
660 * There are other cases where we could deadlock too, but this
661 * catches the obvious case */
662 assert(pReceivePin
!= iface
);
664 EnterCriticalSection(This
->pin
.pCritSec
);
666 /* if we have been a specific type to connect with, then we can either connect
667 * with that or fail. We cannot choose different AM_MEDIA_TYPE */
668 if (pmt
&& !IsEqualGUID(&pmt
->majortype
, &GUID_NULL
) && !IsEqualGUID(&pmt
->subtype
, &GUID_NULL
))
669 hr
= This
->pConnectSpecific(iface
, pReceivePin
, pmt
);
672 /* negotiate media type */
674 IEnumMediaTypes
* pEnumCandidates
;
675 AM_MEDIA_TYPE
* pmtCandidate
; /* Candidate media type */
677 if (SUCCEEDED(hr
= IPin_EnumMediaTypes(iface
, &pEnumCandidates
)))
679 hr
= VFW_E_NO_ACCEPTABLE_TYPES
; /* Assume the worst, but set to S_OK if connected successfully */
681 /* try this filter's media types first */
682 while (S_OK
== IEnumMediaTypes_Next(pEnumCandidates
, 1, &pmtCandidate
, NULL
))
684 if (( !pmt
|| CompareMediaTypes(pmt
, pmtCandidate
, TRUE
) ) &&
685 (This
->pConnectSpecific(iface
, pReceivePin
, pmtCandidate
) == S_OK
))
688 CoTaskMemFree(pmtCandidate
);
691 CoTaskMemFree(pmtCandidate
);
693 IEnumMediaTypes_Release(pEnumCandidates
);
696 /* then try receiver filter's media types */
697 if (hr
!= S_OK
&& SUCCEEDED(hr
= IPin_EnumMediaTypes(pReceivePin
, &pEnumCandidates
))) /* if we haven't already connected successfully */
699 while (S_OK
== IEnumMediaTypes_Next(pEnumCandidates
, 1, &pmtCandidate
, NULL
))
701 if (( !pmt
|| CompareMediaTypes(pmt
, pmtCandidate
, TRUE
) ) &&
702 (This
->pConnectSpecific(iface
, pReceivePin
, pmtCandidate
) == S_OK
))
705 CoTaskMemFree(pmtCandidate
);
708 CoTaskMemFree(pmtCandidate
);
710 IEnumMediaTypes_Release(pEnumCandidates
);
712 } /* if negotiate media type */
714 LeaveCriticalSection(This
->pin
.pCritSec
);
716 FIXME(" -- %lx\n", hr
);
720 HRESULT WINAPI
OutputPin_ReceiveConnection(IPin
* iface
, IPin
* pReceivePin
, const AM_MEDIA_TYPE
* pmt
)
722 ERR("Incoming connection on an output pin! (%p, %p)\n", pReceivePin
, pmt
);
727 HRESULT WINAPI
OutputPin_Disconnect(IPin
* iface
)
730 ICOM_THIS(OutputPin
, iface
);
734 EnterCriticalSection(This
->pin
.pCritSec
);
736 if (This
->pMemInputPin
)
738 IMemInputPin_Release(This
->pMemInputPin
);
739 This
->pMemInputPin
= NULL
;
741 if (This
->pin
.pConnectedTo
)
743 IPin_Release(This
->pin
.pConnectedTo
);
744 This
->pin
.pConnectedTo
= NULL
;
750 LeaveCriticalSection(This
->pin
.pCritSec
);
755 HRESULT WINAPI
OutputPin_EndOfStream(IPin
* iface
)
759 /* not supposed to do anything in an output pin */
764 HRESULT WINAPI
OutputPin_BeginFlush(IPin
* iface
)
768 /* not supposed to do anything in an output pin */
773 HRESULT WINAPI
OutputPin_EndFlush(IPin
* iface
)
777 /* not supposed to do anything in an output pin */
782 HRESULT WINAPI
OutputPin_NewSegment(IPin
* iface
, REFERENCE_TIME tStart
, REFERENCE_TIME tStop
, double dRate
)
784 TRACE("(%lx%08lx, %lx%08lx, %e)\n", (ULONG
)(tStart
>> 32), (ULONG
)tStart
, (ULONG
)(tStop
>> 32), (ULONG
)tStop
, dRate
);
786 /* not supposed to do anything in an output pin */
791 static const IPinVtbl OutputPin_Vtbl
=
793 ICOM_MSVTABLE_COMPAT_DummyRTTIVALUE
794 OutputPin_QueryInterface
,
798 OutputPin_ReceiveConnection
,
799 OutputPin_Disconnect
,
800 IPinImpl_ConnectedTo
,
801 IPinImpl_ConnectionMediaType
,
802 IPinImpl_QueryPinInfo
,
803 IPinImpl_QueryDirection
,
805 IPinImpl_QueryAccept
,
806 IPinImpl_EnumMediaTypes
,
807 IPinImpl_QueryInternalConnections
,
808 OutputPin_EndOfStream
,
809 OutputPin_BeginFlush
,
814 HRESULT
OutputPin_GetDeliveryBuffer(OutputPin
* This
, IMediaSample
** ppSample
, const REFERENCE_TIME
* tStart
, const REFERENCE_TIME
* tStop
, DWORD dwFlags
)
818 TRACE("(%p, %p, %p, %lx)\n", ppSample
, tStart
, tStop
, dwFlags
);
820 EnterCriticalSection(This
->pin
.pCritSec
);
822 if (!This
->pin
.pConnectedTo
)
823 hr
= VFW_E_NOT_CONNECTED
;
826 IMemInputPin
* pMemInputPin
= NULL
;
827 IMemAllocator
* pAlloc
= NULL
;
829 /* FIXME: should we cache this? */
830 hr
= IPin_QueryInterface(This
->pin
.pConnectedTo
, &IID_IMemInputPin
, (LPVOID
*)&pMemInputPin
);
833 hr
= IMemInputPin_GetAllocator(pMemInputPin
, &pAlloc
);
836 hr
= IMemAllocator_GetBuffer(pAlloc
, ppSample
, (REFERENCE_TIME
*)tStart
, (REFERENCE_TIME
*)tStop
, dwFlags
);
839 hr
= IMediaSample_SetTime(*ppSample
, (REFERENCE_TIME
*)tStart
, (REFERENCE_TIME
*)tStop
);
842 IMemAllocator_Release(pAlloc
);
844 IMemInputPin_Release(pMemInputPin
);
847 LeaveCriticalSection(This
->pin
.pCritSec
);
852 HRESULT
OutputPin_SendSample(OutputPin
* This
, IMediaSample
* pSample
)
855 IMemInputPin
* pMemConnected
= NULL
;
857 EnterCriticalSection(This
->pin
.pCritSec
);
859 if (!This
->pin
.pConnectedTo
)
860 hr
= VFW_E_NOT_CONNECTED
;
863 /* FIXME: should we cache this? - if we do, then we need to keep the local version
864 * and AddRef here instead */
865 hr
= IPin_QueryInterface(This
->pin
.pConnectedTo
, &IID_IMemInputPin
, (LPVOID
*)&pMemConnected
);
868 LeaveCriticalSection(This
->pin
.pCritSec
);
870 if (SUCCEEDED(hr
) && pMemConnected
)
872 /* NOTE: if we are in a critical section when Receive is called
873 * then it causes some problems (most notably with the native Video
874 * Renderer) if we are re-entered for whatever reason */
875 hr
= IMemInputPin_Receive(pMemConnected
, pSample
);
876 IMemInputPin_Release(pMemConnected
);
882 HRESULT
OutputPin_DeliverNewSegment(OutputPin
* This
, REFERENCE_TIME tStart
, REFERENCE_TIME tStop
, double dRate
)
886 EnterCriticalSection(This
->pin
.pCritSec
);
888 if (!This
->pin
.pConnectedTo
)
889 hr
= VFW_E_NOT_CONNECTED
;
891 hr
= IPin_NewSegment(This
->pin
.pConnectedTo
, tStart
, tStop
, dRate
);
893 LeaveCriticalSection(This
->pin
.pCritSec
);
898 HRESULT
OutputPin_CommitAllocator(OutputPin
* This
)
904 EnterCriticalSection(This
->pin
.pCritSec
);
906 if (!This
->pin
.pConnectedTo
)
907 hr
= VFW_E_NOT_CONNECTED
;
910 IMemInputPin
* pMemInputPin
= NULL
;
911 IMemAllocator
* pAlloc
= NULL
;
912 /* FIXME: should we cache this? */
913 hr
= IPin_QueryInterface(This
->pin
.pConnectedTo
, &IID_IMemInputPin
, (LPVOID
*)&pMemInputPin
);
916 hr
= IMemInputPin_GetAllocator(pMemInputPin
, &pAlloc
);
919 hr
= IMemAllocator_Commit(pAlloc
);
922 IMemAllocator_Release(pAlloc
);
925 IMemInputPin_Release(pMemInputPin
);
928 LeaveCriticalSection(This
->pin
.pCritSec
);
933 HRESULT
OutputPin_DeliverDisconnect(OutputPin
* This
)
939 EnterCriticalSection(This
->pin
.pCritSec
);
941 if (!This
->pin
.pConnectedTo
)
942 hr
= VFW_E_NOT_CONNECTED
;
945 IMemInputPin
* pMemInputPin
= NULL
;
946 IMemAllocator
* pAlloc
= NULL
;
947 /* FIXME: should we cache this? */
948 hr
= IPin_QueryInterface(This
->pin
.pConnectedTo
, &IID_IMemInputPin
, (LPVOID
*)&pMemInputPin
);
951 hr
= IMemInputPin_GetAllocator(pMemInputPin
, &pAlloc
);
954 hr
= IMemAllocator_Decommit(pAlloc
);
957 IMemAllocator_Release(pAlloc
);
960 IMemInputPin_Release(pMemInputPin
);
963 hr
= IPin_Disconnect(This
->pin
.pConnectedTo
);
966 LeaveCriticalSection(This
->pin
.pCritSec
);
972 HRESULT
PullPin_Construct(const PIN_INFO
* pPinInfo
, SAMPLEPROC pSampleProc
, LPVOID pUserData
, QUERYACCEPTPROC pQueryAccept
, LPCRITICAL_SECTION pCritSec
, IPin
** ppPin
)
978 if (pPinInfo
->dir
!= PINDIR_INPUT
)
980 ERR("Pin direction(%x) != PINDIR_INPUT\n", pPinInfo
->dir
);
984 pPinImpl
= CoTaskMemAlloc(sizeof(*pPinImpl
));
987 return E_OUTOFMEMORY
;
989 if (SUCCEEDED(PullPin_Init(pPinInfo
, pSampleProc
, pUserData
, pQueryAccept
, pCritSec
, pPinImpl
)))
991 pPinImpl
->pin
.lpVtbl
= &PullPin_Vtbl
;
993 *ppPin
= (IPin
*)(&pPinImpl
->pin
.lpVtbl
);
999 HRESULT
PullPin_Init(const PIN_INFO
* pPinInfo
, SAMPLEPROC pSampleProc
, LPVOID pUserData
, QUERYACCEPTPROC pQueryAccept
, LPCRITICAL_SECTION pCritSec
, PullPin
* pPinImpl
)
1001 /* Common attributes */
1002 pPinImpl
->pin
.refCount
= 1;
1003 pPinImpl
->pin
.pConnectedTo
= NULL
;
1004 pPinImpl
->pin
.fnQueryAccept
= pQueryAccept
;
1005 pPinImpl
->pin
.pUserData
= pUserData
;
1006 pPinImpl
->pin
.pCritSec
= pCritSec
;
1007 Copy_PinInfo(&pPinImpl
->pin
.pinInfo
, pPinInfo
);
1009 /* Input pin attributes */
1010 pPinImpl
->fnSampleProc
= pSampleProc
;
1011 pPinImpl
->fnPreConnect
= NULL
;
1012 pPinImpl
->pAlloc
= NULL
;
1013 pPinImpl
->pReader
= NULL
;
1014 pPinImpl
->hThread
= NULL
;
1015 pPinImpl
->hEventStateChanged
= CreateEventW(NULL
, FALSE
, TRUE
, NULL
);
1017 pPinImpl
->rtStart
= 0;
1018 pPinImpl
->rtStop
= ((LONGLONG
)0x7fffffff << 32) | 0xffffffff;
1023 HRESULT WINAPI
PullPin_ReceiveConnection(IPin
* iface
, IPin
* pReceivePin
, const AM_MEDIA_TYPE
* pmt
)
1025 PIN_DIRECTION pindirReceive
;
1027 ICOM_THIS(PullPin
, iface
);
1029 TRACE("(%p, %p)\n", pReceivePin
, pmt
);
1030 dump_AM_MEDIA_TYPE(pmt
);
1032 EnterCriticalSection(This
->pin
.pCritSec
);
1034 if (This
->pin
.pConnectedTo
)
1035 hr
= VFW_E_ALREADY_CONNECTED
;
1037 if (SUCCEEDED(hr
) && (This
->pin
.fnQueryAccept(This
->pin
.pUserData
, pmt
) != S_OK
))
1038 hr
= VFW_E_TYPE_NOT_ACCEPTED
; /* FIXME: shouldn't we just map common errors onto
1039 * VFW_E_TYPE_NOT_ACCEPTED and pass the value on otherwise? */
1043 IPin_QueryDirection(pReceivePin
, &pindirReceive
);
1045 if (pindirReceive
!= PINDIR_OUTPUT
)
1047 ERR("Can't connect from non-output pin\n");
1048 hr
= VFW_E_INVALID_DIRECTION
;
1054 hr
= IPin_QueryInterface(pReceivePin
, &IID_IAsyncReader
, (LPVOID
*)&This
->pReader
);
1059 ALLOCATOR_PROPERTIES props
;
1061 props
.cbBuffer
= 64 * 1024; /* 64k bytes */
1064 hr
= IAsyncReader_RequestAllocator(This
->pReader
, NULL
, &props
, &This
->pAlloc
);
1067 if (SUCCEEDED(hr
) && This
->fnPreConnect
)
1069 hr
= This
->fnPreConnect(iface
, pReceivePin
);
1074 CopyMediaType(&This
->pin
.mtCurrent
, pmt
);
1075 This
->pin
.pConnectedTo
= pReceivePin
;
1076 IPin_AddRef(pReceivePin
);
1079 LeaveCriticalSection(This
->pin
.pCritSec
);
1083 HRESULT WINAPI
PullPin_QueryInterface(IPin
* iface
, REFIID riid
, LPVOID
* ppv
)
1085 TRACE("(%s, %p)\n", qzdebugstr_guid(riid
), ppv
);
1089 if (IsEqualIID(riid
, &IID_IUnknown
))
1090 *ppv
= (LPVOID
)iface
;
1091 else if (IsEqualIID(riid
, &IID_IPin
))
1092 *ppv
= (LPVOID
)iface
;
1096 IUnknown_AddRef((IUnknown
*)(*ppv
));
1100 FIXME("No interface for %s!\n", qzdebugstr_guid(riid
));
1102 return E_NOINTERFACE
;
1105 ULONG WINAPI
PullPin_Release(IPin
* iface
)
1107 ICOM_THIS(PullPin
, iface
);
1111 if (!InterlockedDecrement(&This
->pin
.refCount
))
1114 PullPin_StopProcessing(This
);
1115 IMemAllocator_Release(This
->pAlloc
);
1116 IAsyncReader_Release(This
->pReader
);
1117 CloseHandle(This
->hEventStateChanged
);
1118 CoTaskMemFree(This
);
1121 return This
->pin
.refCount
;
1124 static DWORD WINAPI
PullPin_Thread_Main(LPVOID pv
)
1127 SleepEx(INFINITE
, TRUE
);
1130 static void CALLBACK
PullPin_Thread_Process(ULONG_PTR iface
)
1132 ICOM_THIS(PullPin
, iface
);
1135 REFERENCE_TIME rtCurrent
;
1136 ALLOCATOR_PROPERTIES allocProps
;
1138 SetEvent(This
->hEventStateChanged
);
1140 hr
= IMemAllocator_GetProperties(This
->pAlloc
, &allocProps
);
1142 rtCurrent
= MEDIATIME_FROM_BYTES(ALIGNDOWN(BYTES_FROM_MEDIATIME(This
->rtStart
), allocProps
.cbAlign
));
1144 while (rtCurrent
< This
->rtStop
)
1146 /* FIXME: to improve performance by quite a bit this should be changed
1147 * so that one sample is processed while one sample is fetched. However,
1148 * it is harder to debug so for the moment it will stay as it is */
1149 IMediaSample
* pSample
= NULL
;
1150 REFERENCE_TIME rtSampleStop
;
1153 hr
= IMemAllocator_GetBuffer(This
->pAlloc
, &pSample
, NULL
, NULL
, 0);
1157 rtSampleStop
= rtCurrent
+ MEDIATIME_FROM_BYTES(IMediaSample_GetSize(pSample
));
1158 if (rtSampleStop
> This
->rtStop
)
1159 rtSampleStop
= MEDIATIME_FROM_BYTES(ALIGNUP(BYTES_FROM_MEDIATIME(This
->rtStop
), allocProps
.cbAlign
));
1160 hr
= IMediaSample_SetTime(pSample
, &rtCurrent
, &rtSampleStop
);
1161 rtCurrent
= rtSampleStop
;
1165 hr
= IAsyncReader_Request(This
->pReader
, pSample
, (ULONG_PTR
)0);
1168 hr
= IAsyncReader_WaitForNext(This
->pReader
, 10000, &pSample
, &dwUser
);
1171 hr
= This
->fnSampleProc(This
->pin
.pUserData
, pSample
);
1173 ERR("Processing error: %lx\n", hr
);
1176 IMemAllocator_ReleaseBuffer(This
->pAlloc
, pSample
);
1180 static void CALLBACK
PullPin_Thread_Stop(ULONG_PTR iface
)
1182 ICOM_THIS(PullPin
, iface
);
1186 EnterCriticalSection(This
->pin
.pCritSec
);
1190 CloseHandle(This
->hThread
);
1191 This
->hThread
= NULL
;
1192 if (FAILED(hr
= IMemAllocator_Decommit(This
->pAlloc
)))
1193 ERR("Allocator decommit failed with error %lx. Possible memory leak\n", hr
);
1195 LeaveCriticalSection(This
->pin
.pCritSec
);
1197 SetEvent(This
->hEventStateChanged
);
1202 HRESULT
PullPin_InitProcessing(PullPin
* This
)
1208 assert(!This
->hThread
);
1210 /* if we are connected */
1213 EnterCriticalSection(This
->pin
.pCritSec
);
1216 assert(!This
->hThread
);
1218 This
->hThread
= CreateThread(NULL
, 0, PullPin_Thread_Main
, NULL
, 0, &dwThreadId
);
1220 hr
= HRESULT_FROM_WIN32(GetLastError());
1223 hr
= IMemAllocator_Commit(This
->pAlloc
);
1225 LeaveCriticalSection(This
->pin
.pCritSec
);
1228 TRACE(" -- %lx\n", hr
);
1233 HRESULT
PullPin_StartProcessing(PullPin
* This
)
1235 /* if we are connected */
1238 assert(This
->hThread
);
1240 ResetEvent(This
->hEventStateChanged
);
1242 if (!QueueUserAPC(PullPin_Thread_Process
, This
->hThread
, (ULONG_PTR
)This
))
1243 return HRESULT_FROM_WIN32(GetLastError());
1249 HRESULT
PullPin_PauseProcessing(PullPin
* This
)
1251 /* make the processing function exit its loop */
1257 HRESULT
PullPin_StopProcessing(PullPin
* This
)
1259 /* if we are connected */
1262 assert(This
->hThread
);
1264 ResetEvent(This
->hEventStateChanged
);
1266 PullPin_PauseProcessing(This
);
1268 if (!QueueUserAPC(PullPin_Thread_Stop
, This
->hThread
, (ULONG_PTR
)This
))
1269 return HRESULT_FROM_WIN32(GetLastError());
1275 HRESULT
PullPin_WaitForStateChange(PullPin
* This
, DWORD dwMilliseconds
)
1277 if (WaitForSingleObject(This
->hEventStateChanged
, dwMilliseconds
) == WAIT_TIMEOUT
)
1282 HRESULT
PullPin_Seek(PullPin
* This
, REFERENCE_TIME rtStart
, REFERENCE_TIME rtStop
)
1284 FIXME("(%lx%08lx, %lx%08lx)\n", (LONG
)(rtStart
>> 32), (LONG
)rtStart
, (LONG
)(rtStop
>> 32), (LONG
)rtStop
);
1286 PullPin_BeginFlush((IPin
*)This
);
1287 /* FIXME: need critical section? */
1288 This
->rtStart
= rtStart
;
1289 This
->rtStop
= rtStop
;
1290 PullPin_EndFlush((IPin
*)This
);
1295 HRESULT WINAPI
PullPin_EndOfStream(IPin
* iface
)
1301 HRESULT WINAPI
PullPin_BeginFlush(IPin
* iface
)
1307 HRESULT WINAPI
PullPin_EndFlush(IPin
* iface
)
1313 HRESULT WINAPI
PullPin_NewSegment(IPin
* iface
, REFERENCE_TIME tStart
, REFERENCE_TIME tStop
, double dRate
)
1319 static const IPinVtbl PullPin_Vtbl
=
1321 ICOM_MSVTABLE_COMPAT_DummyRTTIVALUE
1322 PullPin_QueryInterface
,
1326 PullPin_ReceiveConnection
,
1327 IPinImpl_Disconnect
,
1328 IPinImpl_ConnectedTo
,
1329 IPinImpl_ConnectionMediaType
,
1330 IPinImpl_QueryPinInfo
,
1331 IPinImpl_QueryDirection
,
1333 IPinImpl_QueryAccept
,
1334 IPinImpl_EnumMediaTypes
,
1335 IPinImpl_QueryInternalConnections
,
1336 PullPin_EndOfStream
,