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qasf/tests: Test ASF Reader filter threading wrt. ReceiveCanBlock.
This commit is contained in:
parent
31add29f54
commit
4e55dfb7c5
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@ -606,6 +606,382 @@ static void test_filter_state(void)
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ok(!ref, "Got ref %ld.\n", ref);
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ok(!ref, "Got ref %ld.\n", ref);
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}
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}
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struct test_sink
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{
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struct strmbase_sink sink;
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DWORD receive_tid;
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HANDLE receive_event;
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BOOL receive_can_block;
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IMemAllocator *allocator;
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};
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static inline struct test_sink *impl_from_IMemInputPin(IMemInputPin *iface)
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{
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return CONTAINING_RECORD(iface, struct test_sink, sink.IMemInputPin_iface);
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}
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static HRESULT WINAPI test_mem_input_pin_QueryInterface(IMemInputPin *iface, REFIID iid, void **out)
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{
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struct test_sink *pin = impl_from_IMemInputPin(iface);
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return IPin_QueryInterface(&pin->sink.pin.IPin_iface, iid, out);
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}
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static ULONG WINAPI test_mem_input_pin_AddRef(IMemInputPin *iface)
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{
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struct test_sink *pin = impl_from_IMemInputPin(iface);
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return IPin_AddRef(&pin->sink.pin.IPin_iface);
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}
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static ULONG WINAPI test_mem_input_pin_Release(IMemInputPin *iface)
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{
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struct test_sink *pin = impl_from_IMemInputPin(iface);
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return IPin_Release(&pin->sink.pin.IPin_iface);
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}
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static HRESULT WINAPI test_mem_input_pin_GetAllocator(IMemInputPin *iface,
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IMemAllocator **allocator)
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{
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struct test_sink *pin = impl_from_IMemInputPin(iface);
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if (!pin->allocator)
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return VFW_E_NO_ALLOCATOR;
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IMemAllocator_AddRef((*allocator = pin->allocator));
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return S_OK;
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}
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static HRESULT WINAPI test_mem_input_pin_NotifyAllocator(IMemInputPin *iface,
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IMemAllocator *allocator, BOOL read_only)
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{
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struct test_sink *pin = impl_from_IMemInputPin(iface);
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IMemAllocator_AddRef((pin->allocator = allocator));
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return S_OK;
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}
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static HRESULT WINAPI test_mem_input_pin_GetAllocatorRequirements(IMemInputPin *iface,
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ALLOCATOR_PROPERTIES *props)
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{
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memset(props, 0, sizeof(*props));
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return S_OK;
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}
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static HRESULT WINAPI test_mem_input_pin_Receive(IMemInputPin *iface,
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IMediaSample *sample)
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{
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struct test_sink *pin = impl_from_IMemInputPin(iface);
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pin->receive_tid = GetCurrentThreadId();
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SetEvent(pin->receive_event);
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todo_wine
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ok(0, "Unexpected call.\n");
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return S_OK;
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}
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static HRESULT WINAPI test_mem_input_pin_ReceiveMultiple(IMemInputPin *iface,
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IMediaSample **samples, LONG count, LONG *processed)
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{
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struct test_sink *pin = impl_from_IMemInputPin(iface);
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pin->receive_tid = GetCurrentThreadId();
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SetEvent(pin->receive_event);
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*processed = count;
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return S_OK;
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}
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static HRESULT WINAPI test_mem_input_pin_ReceiveCanBlock(IMemInputPin *iface)
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{
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struct test_sink *pin = impl_from_IMemInputPin(iface);
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return pin->receive_can_block ? S_OK : S_FALSE;
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}
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static const IMemInputPinVtbl test_mem_input_pin_vtbl =
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{
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test_mem_input_pin_QueryInterface,
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test_mem_input_pin_AddRef,
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test_mem_input_pin_Release,
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test_mem_input_pin_GetAllocator,
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test_mem_input_pin_NotifyAllocator,
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test_mem_input_pin_GetAllocatorRequirements,
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test_mem_input_pin_Receive,
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test_mem_input_pin_ReceiveMultiple,
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test_mem_input_pin_ReceiveCanBlock,
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};
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struct test_filter
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{
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struct strmbase_filter filter;
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struct test_sink video;
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struct test_sink audio;
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};
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static inline struct test_filter *impl_from_strmbase_filter(struct strmbase_filter *iface)
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{
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return CONTAINING_RECORD(iface, struct test_filter, filter);
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}
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static inline struct strmbase_sink *impl_from_strmbase_pin(struct strmbase_pin *iface)
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{
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return CONTAINING_RECORD(iface, struct strmbase_sink, pin);
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}
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static struct strmbase_pin *test_filter_get_pin(struct strmbase_filter *iface, unsigned int index)
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{
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struct test_filter *filter = impl_from_strmbase_filter(iface);
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if (index == 0)
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return &filter->video.sink.pin;
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if (index == 1)
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return &filter->audio.sink.pin;
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return NULL;
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}
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static void test_filter_destroy(struct strmbase_filter *iface)
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{
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struct test_filter *filter = impl_from_strmbase_filter(iface);
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strmbase_sink_cleanup(&filter->audio.sink);
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strmbase_sink_cleanup(&filter->video.sink);
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strmbase_filter_cleanup(&filter->filter);
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}
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static const struct strmbase_filter_ops test_filter_ops =
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{
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.filter_get_pin = test_filter_get_pin,
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.filter_destroy = test_filter_destroy,
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};
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static HRESULT test_sink_query_interface(struct strmbase_pin *iface, REFIID iid, void **out)
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{
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struct strmbase_sink *sink = impl_from_strmbase_pin(iface);
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if (IsEqualGUID(iid, &IID_IMemInputPin))
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*out = &sink->IMemInputPin_iface;
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else
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return E_NOINTERFACE;
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IUnknown_AddRef((IUnknown *)*out);
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return S_OK;
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}
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static const struct strmbase_sink_ops test_sink_ops =
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{
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.base.pin_query_interface = test_sink_query_interface,
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};
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static void test_filter_init(struct test_filter *filter)
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{
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static const GUID clsid = {0xabacab};
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memset(filter, 0, sizeof(*filter));
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strmbase_filter_init(&filter->filter, NULL, &clsid, &test_filter_ops);
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strmbase_sink_init(&filter->video.sink, &filter->filter, L"Video", &test_sink_ops, NULL);
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filter->video.sink.IMemInputPin_iface.lpVtbl = &test_mem_input_pin_vtbl;
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strmbase_sink_init(&filter->audio.sink, &filter->filter, L"Audio", &test_sink_ops, NULL);
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filter->audio.sink.IMemInputPin_iface.lpVtbl = &test_mem_input_pin_vtbl;
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}
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static void test_threading(BOOL receive_can_block)
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{
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static const WAVEFORMATEX pcm_format =
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{
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.wFormatTag = WAVE_FORMAT_MSAUDIO1,
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.nChannels = 1,
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.nSamplesPerSec = 44100,
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.nBlockAlign = 2,
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.nAvgBytesPerSec = 88200,
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.wBitsPerSample = 16,
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.cbSize = 0,
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};
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static const VIDEOINFOHEADER nv12_info =
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{
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.rcSource = {0, 0, 64, 48},
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.rcTarget = {0, 0, 64, 48},
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.bmiHeader =
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{
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.biSize = sizeof(BITMAPINFOHEADER),
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.biWidth = 64,
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.biHeight = 48,
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.biPlanes = 1,
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.biBitCount = 12,
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.biCompression = MAKEFOURCC('N','V','1','2'),
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.biSizeImage = 64 * 48 * 3 / 2,
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},
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};
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static const MSAUDIO1WAVEFORMAT msaudio1_format =
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{
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.wfx.wFormatTag = WAVE_FORMAT_MSAUDIO1,
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.wfx.nChannels = 1,
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.wfx.nSamplesPerSec = 44100,
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.wfx.nBlockAlign = 743,
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.wfx.nAvgBytesPerSec = 16000,
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.wfx.wBitsPerSample = 16,
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.wfx.cbSize = sizeof(MSAUDIO1WAVEFORMAT) - sizeof(WAVEFORMATEX),
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.wEncodeOptions = 1,
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};
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static const VIDEOINFOHEADER2 wmv1_info2 =
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{
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.rcSource = {0, 0, 64, 48},
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.rcTarget = {0, 0, 64, 48},
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.dwBitRate = 189464,
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.dwPictAspectRatioX = 64,
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.dwPictAspectRatioY = 48,
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.bmiHeader =
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{
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.biSize = sizeof(BITMAPINFOHEADER),
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.biWidth = 64,
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.biHeight = 48,
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.biPlanes = 1,
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.biBitCount = 24,
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.biCompression = MAKEFOURCC('W','M','V','1'),
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.biSizeImage = 64 * 48 * 3,
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},
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};
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AM_MEDIA_TYPE audio_mt =
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{
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.majortype = MEDIATYPE_Audio,
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.subtype = MEDIASUBTYPE_MSAUDIO1,
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.bFixedSizeSamples = TRUE,
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.lSampleSize = 743,
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.formattype = FORMAT_WaveFormatEx,
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.cbFormat = sizeof(MSAUDIO1WAVEFORMAT),
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.pbFormat = (BYTE *)&msaudio1_format,
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};
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AM_MEDIA_TYPE video_mt =
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{
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.majortype = MEDIATYPE_Video,
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.subtype = WMMEDIASUBTYPE_WMV1,
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.formattype = FORMAT_VideoInfo2,
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.bTemporalCompression = TRUE,
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.cbFormat = sizeof(VIDEOINFOHEADER2),
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.pbFormat = (BYTE *)&wmv1_info2,
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};
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AM_MEDIA_TYPE wine_audio_mt =
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{
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.majortype = MEDIATYPE_Audio,
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.subtype = MEDIASUBTYPE_PCM,
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.bFixedSizeSamples = TRUE,
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.formattype = FORMAT_WaveFormatEx,
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.cbFormat = sizeof(WAVEFORMATEX),
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.pbFormat = (BYTE *)&pcm_format,
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};
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AM_MEDIA_TYPE wine_video_mt =
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{
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.majortype = MEDIATYPE_Video,
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.subtype = MEDIASUBTYPE_NV12,
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.formattype = FORMAT_VideoInfo,
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.bTemporalCompression = TRUE,
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.cbFormat = sizeof(VIDEOINFOHEADER),
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.pbFormat = (BYTE *)&nv12_info,
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};
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const WCHAR *filename = load_resource(L"test.wmv");
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IBaseFilter *filter = create_asf_reader();
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IFileSourceFilter *file_source;
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struct test_filter test_sink;
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IFilterGraph *graph;
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FILTER_STATE state;
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HRESULT hr;
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IPin *pin;
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DWORD ret;
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ULONG ref;
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winetest_push_context("blocking %u", !!receive_can_block);
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test_filter_init(&test_sink);
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test_sink.video.receive_event = CreateEventW(NULL, FALSE, FALSE, NULL);
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ok(!!test_sink.video.receive_event, "CreateEventW failed, error %lu\n", GetLastError());
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test_sink.audio.receive_event = CreateEventW(NULL, FALSE, FALSE, NULL);
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ok(!!test_sink.audio.receive_event, "CreateEventW failed, error %lu\n", GetLastError());
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test_sink.video.receive_can_block = receive_can_block;
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test_sink.audio.receive_can_block = receive_can_block;
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hr = IBaseFilter_QueryInterface(filter, &IID_IFileSourceFilter, (void **)&file_source);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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hr = IFileSourceFilter_Load(file_source, filename, NULL);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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IFileSourceFilter_Release(file_source);
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hr = CoCreateInstance(&CLSID_FilterGraph, NULL, CLSCTX_INPROC_SERVER,
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&IID_IFilterGraph, (void **)&graph);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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hr = IFilterGraph_AddFilter(graph, filter, NULL);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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IFilterGraph_Release(graph);
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hr = IBaseFilter_FindPin(filter, L"Raw Video 0", &pin);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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hr = IPin_Connect(pin, &test_sink.video.sink.pin.IPin_iface, &video_mt);
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todo_wine
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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if (hr != S_OK)
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{
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hr = IPin_Connect(pin, &test_sink.video.sink.pin.IPin_iface, &wine_video_mt);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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}
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IPin_Release(pin);
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hr = IBaseFilter_FindPin(filter, L"Raw Audio 1", &pin);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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hr = IPin_Connect(pin, &test_sink.audio.sink.pin.IPin_iface, &audio_mt);
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todo_wine
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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if (hr != S_OK)
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{
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hr = IPin_Connect(pin, &test_sink.audio.sink.pin.IPin_iface, &wine_audio_mt);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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}
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IPin_Release(pin);
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hr = IBaseFilter_Run(filter, GetTickCount() * 10000);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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hr = IBaseFilter_GetState(filter, 0, &state);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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ok(state == State_Running, "Got state %#x.\n", state);
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ret = WaitForSingleObject(test_sink.video.receive_event, 500);
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ok(!ret, "Wait timed out.\n");
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ret = WaitForSingleObject(test_sink.audio.receive_event, 500);
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ok(!ret, "Wait timed out.\n");
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ok(test_sink.video.receive_tid != GetCurrentThreadId(), "got wrong thread\n");
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ok(test_sink.audio.receive_tid != GetCurrentThreadId(), "got wrong thread\n");
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if (receive_can_block)
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{
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todo_wine
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ok(test_sink.audio.receive_tid != test_sink.video.receive_tid, "got wrong thread\n");
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}
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else
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ok(test_sink.audio.receive_tid == test_sink.video.receive_tid, "got wrong thread\n");
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hr = IBaseFilter_Stop(filter);
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ok(hr == S_OK, "Got hr %#lx.\n", hr);
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||||||
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hr = IBaseFilter_GetState(filter, 0, &state);
|
||||||
|
ok(hr == S_OK, "Got hr %#lx.\n", hr);
|
||||||
|
ok(state == State_Stopped, "Got state %#x.\n", state);
|
||||||
|
|
||||||
|
hr = IPin_Disconnect(&test_sink.video.sink.pin.IPin_iface);
|
||||||
|
ok(hr == S_OK, "Got hr %#lx.\n", hr);
|
||||||
|
hr = IPin_Disconnect(&test_sink.audio.sink.pin.IPin_iface);
|
||||||
|
ok(hr == S_OK, "Got hr %#lx.\n", hr);
|
||||||
|
|
||||||
|
ref = IBaseFilter_Release(filter);
|
||||||
|
ok(!ref, "Got ref %ld.\n", ref);
|
||||||
|
|
||||||
|
if (test_sink.video.allocator)
|
||||||
|
IMemAllocator_Release(test_sink.video.allocator);
|
||||||
|
if (test_sink.audio.allocator)
|
||||||
|
IMemAllocator_Release(test_sink.audio.allocator);
|
||||||
|
|
||||||
|
CloseHandle(test_sink.video.receive_event);
|
||||||
|
CloseHandle(test_sink.audio.receive_event);
|
||||||
|
|
||||||
|
ref = IBaseFilter_Release(&test_sink.filter.IBaseFilter_iface);
|
||||||
|
ok(!ref, "Got outstanding refcount %ld.\n", ref);
|
||||||
|
|
||||||
|
winetest_pop_context();
|
||||||
|
}
|
||||||
|
|
||||||
START_TEST(asfreader)
|
START_TEST(asfreader)
|
||||||
{
|
{
|
||||||
CoInitializeEx(NULL, COINIT_MULTITHREADED);
|
CoInitializeEx(NULL, COINIT_MULTITHREADED);
|
||||||
|
@ -614,6 +990,8 @@ START_TEST(asfreader)
|
||||||
test_aggregation();
|
test_aggregation();
|
||||||
test_filesourcefilter();
|
test_filesourcefilter();
|
||||||
test_filter_state();
|
test_filter_state();
|
||||||
|
test_threading(FALSE);
|
||||||
|
test_threading(TRUE);
|
||||||
|
|
||||||
CoUninitialize();
|
CoUninitialize();
|
||||||
}
|
}
|
||||||
|
|
Loading…
Reference in a new issue