amstream: Implement AMAudioStream::EndOfStream().
Signed-off-by: Anton Baskanov <baskanov@gmail.com> Signed-off-by: Zebediah Figura <z.figura12@gmail.com> Signed-off-by: Alexandre Julliard <julliard@winehq.org>
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@ -46,6 +46,7 @@ struct audio_stream
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AM_MEDIA_TYPE mt;
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AM_MEDIA_TYPE mt;
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WAVEFORMATEX format;
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WAVEFORMATEX format;
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FILTER_STATE state;
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FILTER_STATE state;
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BOOL eos;
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};
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};
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typedef struct {
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typedef struct {
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@ -347,6 +348,9 @@ static HRESULT WINAPI audio_IAMMediaStream_SetState(IAMMediaStream *iface, FILTE
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EnterCriticalSection(&stream->cs);
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EnterCriticalSection(&stream->cs);
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if (stream->state == State_Stopped)
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stream->eos = FALSE;
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stream->state = state;
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stream->state = state;
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LeaveCriticalSection(&stream->cs);
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LeaveCriticalSection(&stream->cs);
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@ -919,8 +923,23 @@ static HRESULT WINAPI audio_sink_QueryInternalConnections(IPin *iface, IPin **pi
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static HRESULT WINAPI audio_sink_EndOfStream(IPin *iface)
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static HRESULT WINAPI audio_sink_EndOfStream(IPin *iface)
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{
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{
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FIXME("iface %p, stub!\n", iface);
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struct audio_stream *stream = impl_from_IPin(iface);
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return E_NOTIMPL;
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TRACE("stream %p.\n", stream);
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EnterCriticalSection(&stream->cs);
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if (stream->eos)
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{
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LeaveCriticalSection(&stream->cs);
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return E_FAIL;
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}
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stream->eos = TRUE;
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LeaveCriticalSection(&stream->cs);
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return S_OK;
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}
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}
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static HRESULT WINAPI audio_sink_BeginFlush(IPin *iface)
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static HRESULT WINAPI audio_sink_BeginFlush(IPin *iface)
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@ -2381,10 +2381,21 @@ static HRESULT testsource_query_accept(struct strmbase_pin *iface, const AM_MEDI
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return S_OK;
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return S_OK;
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}
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}
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static HRESULT WINAPI testsource_DecideAllocator(struct strmbase_source *iface,
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static HRESULT WINAPI testsource_DecideBufferSize(struct strmbase_source *iface,
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IMemInputPin *peer, IMemAllocator **allocator)
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IMemAllocator *alloc, ALLOCATOR_PROPERTIES *requested)
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{
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{
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return S_OK;
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ALLOCATOR_PROPERTIES actual;
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if (!requested->cbAlign)
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requested->cbAlign = 1;
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if (requested->cbBuffer < 4096)
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requested->cbBuffer = 4096;
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if (!requested->cBuffers)
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requested->cBuffers = 2;
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return IMemAllocator_SetProperties(alloc, requested, &actual);
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}
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}
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static const struct strmbase_source_ops testsource_ops =
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static const struct strmbase_source_ops testsource_ops =
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@ -2392,7 +2403,8 @@ static const struct strmbase_source_ops testsource_ops =
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.base.pin_query_accept = testsource_query_accept,
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.base.pin_query_accept = testsource_query_accept,
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.base.pin_get_media_type = strmbase_pin_get_media_type,
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.base.pin_get_media_type = strmbase_pin_get_media_type,
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.pfnAttemptConnection = BaseOutputPinImpl_AttemptConnection,
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.pfnAttemptConnection = BaseOutputPinImpl_AttemptConnection,
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.pfnDecideAllocator = testsource_DecideAllocator,
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.pfnDecideBufferSize = testsource_DecideBufferSize,
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.pfnDecideAllocator = BaseOutputPinImpl_DecideAllocator,
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};
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};
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static void testfilter_init(struct testfilter *filter)
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static void testfilter_init(struct testfilter *filter)
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@ -2814,6 +2826,84 @@ static void test_audiostream_set_state(void)
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ok(!ref, "Got outstanding refcount %d.\n", ref);
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ok(!ref, "Got outstanding refcount %d.\n", ref);
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}
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}
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void test_audiostream_end_of_stream(void)
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{
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static const WAVEFORMATEX format =
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{
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.wFormatTag = WAVE_FORMAT_PCM,
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.nChannels = 1,
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.nSamplesPerSec = 11025,
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.wBitsPerSample = 16,
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.nBlockAlign = 2,
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.nAvgBytesPerSec = 2 * 11025,
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};
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const AM_MEDIA_TYPE mt =
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{
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.majortype = MEDIATYPE_Audio,
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.subtype = MEDIASUBTYPE_PCM,
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.formattype = FORMAT_WaveFormatEx,
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.cbFormat = sizeof(WAVEFORMATEX),
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.pbFormat = (BYTE *)&format,
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};
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IAMMultiMediaStream *mmstream = create_ammultimediastream();
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struct testfilter source;
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IGraphBuilder *graph;
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IMediaStream *stream;
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HRESULT hr;
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ULONG ref;
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IPin *pin;
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hr = IAMMultiMediaStream_Initialize(mmstream, STREAMTYPE_READ, 0, NULL);
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ok(hr == S_OK, "Got hr %#x.\n", hr);
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hr = IAMMultiMediaStream_AddMediaStream(mmstream, NULL, &MSPID_PrimaryAudio, 0, &stream);
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ok(hr == S_OK, "Got hr %#x.\n", hr);
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hr = IMediaStream_QueryInterface(stream, &IID_IPin, (void **)&pin);
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ok(hr == S_OK, "Got hr %#x.\n", hr);
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hr = IAMMultiMediaStream_GetFilterGraph(mmstream, &graph);
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ok(hr == S_OK, "Got hr %#x.\n", hr);
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ok(!!graph, "Expected non-NULL graph.\n");
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testfilter_init(&source);
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hr = IGraphBuilder_AddFilter(graph, &source.filter.IBaseFilter_iface, NULL);
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ok(hr == S_OK, "Got hr %#x.\n", hr);
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hr = IGraphBuilder_ConnectDirect(graph, &source.source.pin.IPin_iface, pin, &mt);
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ok(hr == S_OK, "Got hr %#x.\n", hr);
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hr = IPin_EndOfStream(pin);
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ok(hr == S_OK, "Got hr %#x.\n", hr);
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hr = IPin_EndOfStream(pin);
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ok(hr == E_FAIL, "Got hr %#x.\n", hr);
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hr = IAMMultiMediaStream_SetState(mmstream, STREAMSTATE_RUN);
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ok(hr == S_OK, "Got hr %#x.\n", hr);
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hr = IPin_EndOfStream(pin);
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ok(hr == S_OK, "Got hr %#x.\n", hr);
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hr = IPin_EndOfStream(pin);
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ok(hr == E_FAIL, "Got hr %#x.\n", hr);
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hr = IAMMultiMediaStream_SetState(mmstream, STREAMSTATE_STOP);
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ok(hr == S_OK, "Got hr %#x.\n", hr);
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hr = IPin_EndOfStream(pin);
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ok(hr == E_FAIL, "Got hr %#x.\n", hr);
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IGraphBuilder_Disconnect(graph, pin);
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IGraphBuilder_Disconnect(graph, &source.source.pin.IPin_iface);
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ref = IAMMultiMediaStream_Release(mmstream);
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ok(!ref, "Got outstanding refcount %d.\n", ref);
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ref = IGraphBuilder_Release(graph);
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ok(!ref, "Got outstanding refcount %d.\n", ref);
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IPin_Release(pin);
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ref = IMediaStream_Release(stream);
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ok(!ref, "Got outstanding refcount %d.\n", ref);
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}
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void test_mediastreamfilter_get_state(void)
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void test_mediastreamfilter_get_state(void)
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{
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{
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IAMMultiMediaStream *mmstream = create_ammultimediastream();
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IAMMultiMediaStream *mmstream = create_ammultimediastream();
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@ -2986,6 +3076,7 @@ START_TEST(amstream)
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test_audiostream_set_format();
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test_audiostream_set_format();
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test_audiostream_receive_connection();
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test_audiostream_receive_connection();
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test_audiostream_set_state();
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test_audiostream_set_state();
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test_audiostream_end_of_stream();
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test_mediastreamfilter_get_state();
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test_mediastreamfilter_get_state();
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test_mediastreamfilter_stop_pause_run();
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test_mediastreamfilter_stop_pause_run();
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