mirror of
https://github.com/mozilla/gecko-dev.git
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329 lines
12 KiB
C++
329 lines
12 KiB
C++
/* vim:set ts=2 sw=2 sts=2 et cindent: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "DirectShowUtils.h"
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#include "dmodshow.h"
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#include "wmcodecdsp.h"
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#include "dmoreg.h"
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#include "nsAutoPtr.h"
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#include "mozilla/ArrayUtils.h"
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#include "mozilla/RefPtr.h"
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#include "nsPrintfCString.h"
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#define WARN(...) NS_WARNING(nsPrintfCString(__VA_ARGS__).get())
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namespace mozilla {
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#if defined(PR_LOGGING)
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// Create a table which maps GUIDs to a string representation of the GUID.
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// This is useful for debugging purposes, for logging the GUIDs of media types.
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// This is only available when logging is enabled, i.e. not in release builds.
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struct GuidToName {
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const char* name;
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const GUID guid;
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};
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#pragma push_macro("OUR_GUID_ENTRY")
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#undef OUR_GUID_ENTRY
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#define OUR_GUID_ENTRY(name, l, w1, w2, b1, b2, b3, b4, b5, b6, b7, b8) \
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{ #name, {l, w1, w2, {b1, b2, b3, b4, b5, b6, b7, b8}} },
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static const GuidToName GuidToNameTable[] = {
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#include <uuids.h>
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};
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#pragma pop_macro("OUR_GUID_ENTRY")
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const char*
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GetDirectShowGuidName(const GUID& aGuid)
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{
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const size_t len = ArrayLength(GuidToNameTable);
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for (unsigned i = 0; i < len; i++) {
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if (IsEqualGUID(aGuid, GuidToNameTable[i].guid)) {
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return GuidToNameTable[i].name;
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}
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}
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return "Unknown";
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}
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#endif // PR_LOGGING
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void
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RemoveGraphFromRunningObjectTable(DWORD aRotRegister)
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{
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nsRefPtr<IRunningObjectTable> runningObjectTable;
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if (SUCCEEDED(GetRunningObjectTable(0, getter_AddRefs(runningObjectTable)))) {
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runningObjectTable->Revoke(aRotRegister);
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}
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}
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HRESULT
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AddGraphToRunningObjectTable(IUnknown *aUnkGraph, DWORD *aOutRotRegister)
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{
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HRESULT hr;
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nsRefPtr<IMoniker> moniker;
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nsRefPtr<IRunningObjectTable> runningObjectTable;
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hr = GetRunningObjectTable(0, getter_AddRefs(runningObjectTable));
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NS_ENSURE_TRUE(SUCCEEDED(hr), hr);
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const size_t STRING_LENGTH = 256;
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WCHAR wsz[STRING_LENGTH];
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StringCchPrintfW(wsz,
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STRING_LENGTH,
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L"FilterGraph %08x pid %08x",
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(DWORD_PTR)aUnkGraph,
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GetCurrentProcessId());
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hr = CreateItemMoniker(L"!", wsz, getter_AddRefs(moniker));
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NS_ENSURE_TRUE(SUCCEEDED(hr), hr);
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hr = runningObjectTable->Register(ROTFLAGS_REGISTRATIONKEEPSALIVE,
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aUnkGraph,
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moniker,
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aOutRotRegister);
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NS_ENSURE_TRUE(SUCCEEDED(hr), hr);
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return S_OK;
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}
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const char*
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GetGraphNotifyString(long evCode)
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{
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#define CASE(x) case x: return #x
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switch(evCode) {
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CASE(EC_ACTIVATE); // A video window is being activated or deactivated.
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CASE(EC_BANDWIDTHCHANGE); // Not supported.
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CASE(EC_BUFFERING_DATA); // The graph is buffering data, or has stopped buffering data.
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CASE(EC_BUILT); // Send by the Video Control when a graph has been built. Not forwarded to applications.
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CASE(EC_CLOCK_CHANGED); // The reference clock has changed.
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CASE(EC_CLOCK_UNSET); // The clock provider was disconnected.
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CASE(EC_CODECAPI_EVENT); // Sent by an encoder to signal an encoding event.
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CASE(EC_COMPLETE); // All data from a particular stream has been rendered.
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CASE(EC_CONTENTPROPERTY_CHANGED); // Not supported.
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CASE(EC_DEVICE_LOST); // A Plug and Play device was removed or has become available again.
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CASE(EC_DISPLAY_CHANGED); // The display mode has changed.
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CASE(EC_END_OF_SEGMENT); // The end of a segment has been reached.
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CASE(EC_EOS_SOON); // Not supported.
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CASE(EC_ERROR_STILLPLAYING); // An asynchronous command to run the graph has failed.
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CASE(EC_ERRORABORT); // An operation was aborted because of an error.
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CASE(EC_ERRORABORTEX); // An operation was aborted because of an error.
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CASE(EC_EXTDEVICE_MODE_CHANGE); // Not supported.
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CASE(EC_FILE_CLOSED); // The source file was closed because of an unexpected event.
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CASE(EC_FULLSCREEN_LOST); // The video renderer is switching out of full-screen mode.
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CASE(EC_GRAPH_CHANGED); // The filter graph has changed.
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CASE(EC_LENGTH_CHANGED); // The length of a source has changed.
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CASE(EC_LOADSTATUS); // Notifies the application of progress when opening a network file.
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CASE(EC_MARKER_HIT); // Not supported.
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CASE(EC_NEED_RESTART); // A filter is requesting that the graph be restarted.
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CASE(EC_NEW_PIN); // Not supported.
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CASE(EC_NOTIFY_WINDOW); // Notifies a filter of the video renderer's window.
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CASE(EC_OLE_EVENT); // A filter is passing a text string to the application.
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CASE(EC_OPENING_FILE); // The graph is opening a file, or has finished opening a file.
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CASE(EC_PALETTE_CHANGED); // The video palette has changed.
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CASE(EC_PAUSED); // A pause request has completed.
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CASE(EC_PLEASE_REOPEN); // The source file has changed.
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CASE(EC_PREPROCESS_COMPLETE); // Sent by the WM ASF Writer filter when it completes the pre-processing for multipass encoding.
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CASE(EC_PROCESSING_LATENCY); // Indicates the amount of time that a component is taking to process each sample.
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CASE(EC_QUALITY_CHANGE); // The graph is dropping samples, for quality control.
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//CASE(EC_RENDER_FINISHED); // Not supported.
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CASE(EC_REPAINT); // A video renderer requires a repaint.
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CASE(EC_SAMPLE_LATENCY); // Specifies how far behind schedule a component is for processing samples.
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//CASE(EC_SAMPLE_NEEDED); // Requests a new input sample from the Enhanced Video Renderer (EVR) filter.
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CASE(EC_SCRUB_TIME); // Specifies the time stamp for the most recent frame step.
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CASE(EC_SEGMENT_STARTED); // A new segment has started.
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CASE(EC_SHUTTING_DOWN); // The filter graph is shutting down, prior to being destroyed.
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CASE(EC_SNDDEV_IN_ERROR); // A device error has occurred in an audio capture filter.
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CASE(EC_SNDDEV_OUT_ERROR); // A device error has occurred in an audio renderer filter.
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CASE(EC_STARVATION); // A filter is not receiving enough data.
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CASE(EC_STATE_CHANGE); // The filter graph has changed state.
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CASE(EC_STATUS); // Contains two arbitrary status strings.
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CASE(EC_STEP_COMPLETE); // A filter performing frame stepping has stepped the specified number of frames.
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CASE(EC_STREAM_CONTROL_STARTED); // A stream-control start command has taken effect.
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CASE(EC_STREAM_CONTROL_STOPPED); // A stream-control stop command has taken effect.
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CASE(EC_STREAM_ERROR_STILLPLAYING); // An error has occurred in a stream. The stream is still playing.
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CASE(EC_STREAM_ERROR_STOPPED); // A stream has stopped because of an error.
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CASE(EC_TIMECODE_AVAILABLE); // Not supported.
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CASE(EC_UNBUILT); // Send by the Video Control when a graph has been torn down. Not forwarded to applications.
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CASE(EC_USERABORT); // The user has terminated playback.
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CASE(EC_VIDEO_SIZE_CHANGED); // The native video size has changed.
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CASE(EC_VIDEOFRAMEREADY); // A video frame is ready for display.
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CASE(EC_VMR_RECONNECTION_FAILED); // Sent by the VMR-7 and the VMR-9 when it was unable to accept a dynamic format change request from the upstream decoder.
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CASE(EC_VMR_RENDERDEVICE_SET); // Sent when the VMR has selected its rendering mechanism.
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CASE(EC_VMR_SURFACE_FLIPPED); // Sent when the VMR-7's allocator presenter has called the DirectDraw Flip method on the surface being presented.
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CASE(EC_WINDOW_DESTROYED); // The video renderer was destroyed or removed from the graph.
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CASE(EC_WMT_EVENT); // Sent by the WM ASF Reader filter when it reads ASF files protected by digital rights management (DRM).
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CASE(EC_WMT_INDEX_EVENT); // Sent when an application uses the WM ASF Writer to index Windows Media Video files.
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CASE(S_OK); // Success.
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CASE(VFW_S_AUDIO_NOT_RENDERED); // Partial success; the audio was not rendered.
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CASE(VFW_S_DUPLICATE_NAME); // Success; the Filter Graph Manager modified a filter name to avoid duplication.
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CASE(VFW_S_PARTIAL_RENDER); // Partial success; some of the streams in this movie are in an unsupported format.
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CASE(VFW_S_VIDEO_NOT_RENDERED); // Partial success; the video was not rendered.
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CASE(E_ABORT); // Operation aborted.
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CASE(E_OUTOFMEMORY); // Insufficient memory.
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CASE(E_POINTER); // Null pointer argument.
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CASE(VFW_E_CANNOT_CONNECT); // No combination of intermediate filters could be found to make the connection.
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CASE(VFW_E_CANNOT_RENDER); // No combination of filters could be found to render the stream.
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CASE(VFW_E_NO_ACCEPTABLE_TYPES); // There is no common media type between these pins.
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CASE(VFW_E_NOT_IN_GRAPH);
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default:
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return "Unknown Code";
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};
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#undef CASE
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}
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HRESULT
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CreateAndAddFilter(IGraphBuilder* aGraph,
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REFGUID aFilterClsId,
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LPCWSTR aFilterName,
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IBaseFilter **aOutFilter)
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{
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NS_ENSURE_TRUE(aGraph, E_POINTER);
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NS_ENSURE_TRUE(aOutFilter, E_POINTER);
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HRESULT hr;
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nsRefPtr<IBaseFilter> filter;
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hr = CoCreateInstance(aFilterClsId,
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nullptr,
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CLSCTX_INPROC_SERVER,
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IID_IBaseFilter,
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getter_AddRefs(filter));
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if (FAILED(hr)) {
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// Object probably not available on this system.
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WARN("CoCreateInstance failed, hr=%x", hr);
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return hr;
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}
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hr = aGraph->AddFilter(filter, aFilterName);
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if (FAILED(hr)) {
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WARN("AddFilter failed, hr=%x", hr);
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return hr;
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}
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filter.forget(aOutFilter);
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return S_OK;
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}
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HRESULT
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AddMP3DMOWrapperFilter(IGraphBuilder* aGraph,
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IBaseFilter **aOutFilter)
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{
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NS_ENSURE_TRUE(aGraph, E_POINTER);
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NS_ENSURE_TRUE(aOutFilter, E_POINTER);
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HRESULT hr;
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// Create the wrapper filter.
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nsRefPtr<IBaseFilter> filter;
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hr = CoCreateInstance(CLSID_DMOWrapperFilter,
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nullptr,
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CLSCTX_INPROC_SERVER,
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IID_IBaseFilter,
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getter_AddRefs(filter));
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if (FAILED(hr)) {
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WARN("CoCreateInstance failed, hr=%x", hr);
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return hr;
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}
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// Query for IDMOWrapperFilter.
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nsRefPtr<IDMOWrapperFilter> dmoWrapper;
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hr = filter->QueryInterface(IID_IDMOWrapperFilter,
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getter_AddRefs(dmoWrapper));
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if (FAILED(hr)) {
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WARN("QueryInterface failed, hr=%x", hr);
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return hr;
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}
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hr = dmoWrapper->Init(CLSID_CMP3DecMediaObject, DMOCATEGORY_AUDIO_DECODER);
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if (FAILED(hr)) {
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// Can't instantiate MP3 DMO. It doesn't exist on Windows XP, we're
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// probably hitting that. Don't log warning to console, this is an
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// expected error.
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WARN("dmoWrapper Init failed, hr=%x", hr);
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return hr;
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}
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// Add the wrapper filter to graph.
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hr = aGraph->AddFilter(filter, L"MP3 Decoder DMO");
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if (FAILED(hr)) {
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WARN("AddFilter failed, hr=%x", hr);
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return hr;
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}
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filter.forget(aOutFilter);
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return S_OK;
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}
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// Match a pin by pin direction and connection state.
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HRESULT
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MatchUnconnectedPin(IPin* aPin,
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PIN_DIRECTION aPinDir,
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bool *aOutMatches)
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{
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NS_ENSURE_TRUE(aPin, E_POINTER);
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NS_ENSURE_TRUE(aOutMatches, E_POINTER);
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// Ensure the pin is unconnected.
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RefPtr<IPin> peer;
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HRESULT hr = aPin->ConnectedTo(byRef(peer));
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if (hr != VFW_E_NOT_CONNECTED) {
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*aOutMatches = false;
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return hr;
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}
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// Ensure the pin is of the specified direction.
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PIN_DIRECTION pinDir;
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hr = aPin->QueryDirection(&pinDir);
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NS_ENSURE_TRUE(SUCCEEDED(hr), hr);
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*aOutMatches = (pinDir == aPinDir);
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return S_OK;
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}
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// Return the first unconnected input pin or output pin.
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TemporaryRef<IPin>
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GetUnconnectedPin(IBaseFilter* aFilter, PIN_DIRECTION aPinDir)
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{
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RefPtr<IEnumPins> enumPins;
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HRESULT hr = aFilter->EnumPins(byRef(enumPins));
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NS_ENSURE_TRUE(SUCCEEDED(hr), nullptr);
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// Test each pin to see if it matches the direction we're looking for.
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RefPtr<IPin> pin;
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while (S_OK == enumPins->Next(1, byRef(pin), nullptr)) {
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bool matches = FALSE;
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if (SUCCEEDED(MatchUnconnectedPin(pin, aPinDir, &matches)) &&
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matches) {
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return pin;
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}
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}
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return nullptr;
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}
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HRESULT
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ConnectFilters(IGraphBuilder* aGraph,
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IBaseFilter* aOutputFilter,
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IBaseFilter* aInputFilter)
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{
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RefPtr<IPin> output = GetUnconnectedPin(aOutputFilter, PINDIR_OUTPUT);
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NS_ENSURE_TRUE(output, E_FAIL);
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RefPtr<IPin> input = GetUnconnectedPin(aInputFilter, PINDIR_INPUT);
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NS_ENSURE_TRUE(output, E_FAIL);
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return aGraph->Connect(output, input);
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}
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} // namespace mozilla
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// avoid redefined macro in unified build
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#undef WARN
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