Change-Id: Ia8c1c38aba1544603fada8c414cc856f365fd15b Reviewed-by: Akseli Salovaara <akseli.salovaara@digia.com> Reviewed-by: Sergio Ahumada <sergio.ahumada@digia.com>
702 lines
19 KiB
C++
702 lines
19 KiB
C++
/****************************************************************************
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**
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** Copyright (C) 2013 Digia Plc and/or its subsidiary(-ies).
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** Contact: http://www.qt-project.org/legal
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**
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** This file is part of the Qt Toolkit.
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**
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** $QT_BEGIN_LICENSE:LGPL$
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** Commercial License Usage
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** Licensees holding valid commercial Qt licenses may use this file in
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** accordance with the commercial license agreement provided with the
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** Software or, alternatively, in accordance with the terms contained in
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** a written agreement between you and Digia. For licensing terms and
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** conditions see http://qt.digia.com/licensing. For further information
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** use the contact form at http://qt.digia.com/contact-us.
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**
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** GNU Lesser General Public License Usage
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** Alternatively, this file may be used under the terms of the GNU Lesser
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** General Public License version 2.1 as published by the Free Software
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** Foundation and appearing in the file LICENSE.LGPL included in the
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** packaging of this file. Please review the following information to
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** ensure the GNU Lesser General Public License version 2.1 requirements
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** will be met: http://www.gnu.org/licenses/old-licenses/lgpl-2.1.html.
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**
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** In addition, as a special exception, Digia gives you certain additional
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** rights. These rights are described in the Digia Qt LGPL Exception
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** version 1.1, included in the file LGPL_EXCEPTION.txt in this package.
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**
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** GNU General Public License Usage
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** Alternatively, this file may be used under the terms of the GNU
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** General Public License version 3.0 as published by the Free Software
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** Foundation and appearing in the file LICENSE.GPL included in the
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** packaging of this file. Please review the following information to
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** ensure the GNU General Public License version 3.0 requirements will be
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** met: http://www.gnu.org/copyleft/gpl.html.
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**
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**
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** $QT_END_LICENSE$
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**
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****************************************************************************/
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#include "mftvideo.h"
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#include "mfvideoprobecontrol.h"
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#include <private/qmemoryvideobuffer_p.h>
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#include <Mferror.h>
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#include <strmif.h>
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#include <uuids.h>
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#include <InitGuid.h>
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#include <d3d9.h>
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#include <qdebug.h>
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// This MFT sends all samples it processes to connected video probes.
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// Sample is sent to probes in ProcessInput.
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// In ProcessOutput this MFT simply returns the original sample.
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// The implementation is based on a boilerplate from the MF SDK example.
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MFTransform::MFTransform():
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m_cRef(1),
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m_inputType(0),
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m_outputType(0),
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m_sample(0),
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m_bytesPerLine(0)
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{
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}
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MFTransform::~MFTransform()
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{
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if (m_inputType)
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m_inputType->Release();
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if (m_outputType)
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m_outputType->Release();
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for (int i = 0; i < m_mediaTypes.size(); ++i)
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m_mediaTypes[i]->Release();
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}
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void MFTransform::addProbe(MFVideoProbeControl *probe)
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{
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QMutexLocker locker(&m_videoProbeMutex);
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if (m_videoProbes.contains(probe))
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return;
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m_videoProbes.append(probe);
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}
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void MFTransform::removeProbe(MFVideoProbeControl *probe)
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{
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QMutexLocker locker(&m_videoProbeMutex);
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m_videoProbes.removeOne(probe);
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}
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void MFTransform::addSupportedMediaType(IMFMediaType *type)
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{
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if (!type)
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return;
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QMutexLocker locker(&m_mutex);
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m_mediaTypes.append(type);
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}
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STDMETHODIMP MFTransform::QueryInterface(REFIID riid, void** ppv)
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{
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if (!ppv)
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return E_POINTER;
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if (riid == IID_IMFTransform) {
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*ppv = static_cast<IMFTransform*>(this);
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} else if (riid == IID_IUnknown) {
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*ppv = static_cast<IUnknown*>(this);
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} else {
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*ppv = NULL;
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return E_NOINTERFACE;
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}
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AddRef();
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return S_OK;
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}
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STDMETHODIMP_(ULONG) MFTransform::AddRef()
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{
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return InterlockedIncrement(&m_cRef);
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}
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STDMETHODIMP_(ULONG) MFTransform::Release()
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{
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ULONG cRef = InterlockedDecrement(&m_cRef);
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if (cRef == 0) {
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delete this;
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}
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return cRef;
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}
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STDMETHODIMP MFTransform::GetStreamLimits(DWORD *pdwInputMinimum, DWORD *pdwInputMaximum, DWORD *pdwOutputMinimum, DWORD *pdwOutputMaximum)
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{
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if (!pdwInputMinimum || !pdwInputMaximum || !pdwOutputMinimum || !pdwOutputMaximum)
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return E_POINTER;
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*pdwInputMinimum = 1;
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*pdwInputMaximum = 1;
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*pdwOutputMinimum = 1;
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*pdwOutputMaximum = 1;
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return S_OK;
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}
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STDMETHODIMP MFTransform::GetStreamCount(DWORD *pcInputStreams, DWORD *pcOutputStreams)
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{
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if (!pcInputStreams || !pcOutputStreams)
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return E_POINTER;
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*pcInputStreams = 1;
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*pcOutputStreams = 1;
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return S_OK;
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}
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STDMETHODIMP MFTransform::GetStreamIDs(DWORD dwInputIDArraySize, DWORD *pdwInputIDs, DWORD dwOutputIDArraySize, DWORD *pdwOutputIDs)
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{
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// streams are numbered consecutively
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Q_UNUSED(dwInputIDArraySize);
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Q_UNUSED(pdwInputIDs);
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Q_UNUSED(dwOutputIDArraySize);
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Q_UNUSED(pdwOutputIDs);
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return E_NOTIMPL;
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}
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STDMETHODIMP MFTransform::GetInputStreamInfo(DWORD dwInputStreamID, MFT_INPUT_STREAM_INFO *pStreamInfo)
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{
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QMutexLocker locker(&m_mutex);
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if (dwInputStreamID > 0)
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return MF_E_INVALIDSTREAMNUMBER;
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if (!pStreamInfo)
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return E_POINTER;
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pStreamInfo->cbSize = 0;
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pStreamInfo->hnsMaxLatency = 0;
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pStreamInfo->dwFlags = MFT_INPUT_STREAM_WHOLE_SAMPLES | MFT_INPUT_STREAM_SINGLE_SAMPLE_PER_BUFFER;
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pStreamInfo->cbMaxLookahead = 0;
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pStreamInfo->cbAlignment = 0;
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return S_OK;
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}
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STDMETHODIMP MFTransform::GetOutputStreamInfo(DWORD dwOutputStreamID, MFT_OUTPUT_STREAM_INFO *pStreamInfo)
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{
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QMutexLocker locker(&m_mutex);
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if (dwOutputStreamID > 0)
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return MF_E_INVALIDSTREAMNUMBER;
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if (!pStreamInfo)
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return E_POINTER;
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pStreamInfo->cbSize = 0;
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pStreamInfo->dwFlags = MFT_OUTPUT_STREAM_WHOLE_SAMPLES | MFT_OUTPUT_STREAM_SINGLE_SAMPLE_PER_BUFFER;
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pStreamInfo->cbAlignment = 0;
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return S_OK;
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}
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STDMETHODIMP MFTransform::GetAttributes(IMFAttributes **pAttributes)
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{
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// This MFT does not support attributes.
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Q_UNUSED(pAttributes);
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return E_NOTIMPL;
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}
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STDMETHODIMP MFTransform::GetInputStreamAttributes(DWORD dwInputStreamID, IMFAttributes **pAttributes)
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{
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// This MFT does not support input stream attributes.
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Q_UNUSED(dwInputStreamID);
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Q_UNUSED(pAttributes);
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return E_NOTIMPL;
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}
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STDMETHODIMP MFTransform::GetOutputStreamAttributes(DWORD dwOutputStreamID, IMFAttributes **pAttributes)
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{
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// This MFT does not support output stream attributes.
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Q_UNUSED(dwOutputStreamID);
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Q_UNUSED(pAttributes);
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return E_NOTIMPL;
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}
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STDMETHODIMP MFTransform::DeleteInputStream(DWORD dwStreamID)
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{
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// This MFT has a fixed number of input streams.
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Q_UNUSED(dwStreamID);
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return E_NOTIMPL;
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}
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STDMETHODIMP MFTransform::AddInputStreams(DWORD cStreams, DWORD *adwStreamIDs)
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{
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// This MFT has a fixed number of input streams.
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Q_UNUSED(cStreams);
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Q_UNUSED(adwStreamIDs);
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return E_NOTIMPL;
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}
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STDMETHODIMP MFTransform::GetInputAvailableType(DWORD dwInputStreamID, DWORD dwTypeIndex, IMFMediaType **ppType)
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{
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// This MFT does not have a list of preferred input types
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Q_UNUSED(dwInputStreamID);
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Q_UNUSED(dwTypeIndex);
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Q_UNUSED(ppType);
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return E_NOTIMPL;
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}
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STDMETHODIMP MFTransform::GetOutputAvailableType(DWORD dwOutputStreamID,DWORD dwTypeIndex, IMFMediaType **ppType)
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{
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// This MFT does not have a list of preferred output types
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Q_UNUSED(dwOutputStreamID);
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Q_UNUSED(dwTypeIndex);
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Q_UNUSED(ppType);
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return E_NOTIMPL;
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}
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STDMETHODIMP MFTransform::SetInputType(DWORD dwInputStreamID, IMFMediaType *pType, DWORD dwFlags)
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{
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if (dwInputStreamID > 0)
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return MF_E_INVALIDSTREAMNUMBER;
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QMutexLocker locker(&m_mutex);
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if (m_sample)
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return MF_E_TRANSFORM_CANNOT_CHANGE_MEDIATYPE_WHILE_PROCESSING;
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if (!isMediaTypeSupported(pType))
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return MF_E_INVALIDMEDIATYPE;
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DWORD flags = 0;
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if (pType && !m_inputType && m_outputType && m_outputType->IsEqual(pType, &flags) != S_OK)
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return MF_E_INVALIDMEDIATYPE;
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if (dwFlags == MFT_SET_TYPE_TEST_ONLY)
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return pType ? S_OK : E_POINTER;
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if (m_inputType) {
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m_inputType->Release();
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// Input type has changed, discard output type (if it's set) so it's reset later on
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if (m_outputType && m_outputType->IsEqual(pType, &flags) != S_OK) {
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m_outputType->Release();
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m_outputType = 0;
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}
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}
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m_inputType = pType;
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if (m_inputType)
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m_inputType->AddRef();
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return S_OK;
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}
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STDMETHODIMP MFTransform::SetOutputType(DWORD dwOutputStreamID, IMFMediaType *pType, DWORD dwFlags)
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{
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if (dwOutputStreamID > 0)
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return MF_E_INVALIDSTREAMNUMBER;
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QMutexLocker locker(&m_mutex);
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if (m_sample)
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return MF_E_TRANSFORM_CANNOT_CHANGE_MEDIATYPE_WHILE_PROCESSING;
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if (!isMediaTypeSupported(pType))
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return MF_E_INVALIDMEDIATYPE;
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DWORD flags = 0;
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if (pType && !m_outputType && m_inputType && m_inputType->IsEqual(pType, &flags) != S_OK)
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return MF_E_INVALIDMEDIATYPE;
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if (dwFlags == MFT_SET_TYPE_TEST_ONLY)
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return pType ? S_OK : E_POINTER;
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if (m_outputType) {
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m_outputType->Release();
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// Output type has changed, discard input type (if it's set) so it's reset later on
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if (m_inputType && m_inputType->IsEqual(pType, &flags) != S_OK) {
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m_inputType->Release();
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m_inputType = 0;
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}
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}
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m_outputType = pType;
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if (m_outputType) {
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m_outputType->AddRef();
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m_format = videoFormatForMFMediaType(m_outputType, &m_bytesPerLine);
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}
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return S_OK;
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}
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STDMETHODIMP MFTransform::GetInputCurrentType(DWORD dwInputStreamID, IMFMediaType **ppType)
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{
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if (dwInputStreamID > 0)
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return MF_E_INVALIDSTREAMNUMBER;
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if (ppType == NULL)
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return E_POINTER;
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QMutexLocker locker(&m_mutex);
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if (!m_inputType)
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return MF_E_TRANSFORM_TYPE_NOT_SET;
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*ppType = m_inputType;
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(*ppType)->AddRef();
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return S_OK;
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}
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STDMETHODIMP MFTransform::GetOutputCurrentType(DWORD dwOutputStreamID, IMFMediaType **ppType)
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{
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if (dwOutputStreamID > 0)
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return MF_E_INVALIDSTREAMNUMBER;
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if (ppType == NULL)
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return E_POINTER;
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QMutexLocker locker(&m_mutex);
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if (!m_outputType) {
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if (m_inputType) {
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*ppType = m_inputType;
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(*ppType)->AddRef();
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return S_OK;
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}
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return MF_E_TRANSFORM_TYPE_NOT_SET;
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}
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*ppType = m_outputType;
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(*ppType)->AddRef();
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return S_OK;
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}
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STDMETHODIMP MFTransform::GetInputStatus(DWORD dwInputStreamID, DWORD *pdwFlags)
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{
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if (dwInputStreamID > 0)
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return MF_E_INVALIDSTREAMNUMBER;
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if (!pdwFlags)
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return E_POINTER;
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QMutexLocker locker(&m_mutex);
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if (!m_inputType)
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return MF_E_TRANSFORM_TYPE_NOT_SET;
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if (m_sample)
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*pdwFlags = 0;
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else
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*pdwFlags = MFT_INPUT_STATUS_ACCEPT_DATA;
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return S_OK;
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}
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STDMETHODIMP MFTransform::GetOutputStatus(DWORD *pdwFlags)
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{
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if (!pdwFlags)
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return E_POINTER;
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QMutexLocker locker(&m_mutex);
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if (!m_outputType)
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return MF_E_TRANSFORM_TYPE_NOT_SET;
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if (m_sample)
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*pdwFlags = MFT_OUTPUT_STATUS_SAMPLE_READY;
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else
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*pdwFlags = 0;
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return S_OK;
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}
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STDMETHODIMP MFTransform::SetOutputBounds(LONGLONG hnsLowerBound, LONGLONG hnsUpperBound)
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{
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Q_UNUSED(hnsLowerBound);
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Q_UNUSED(hnsUpperBound);
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return E_NOTIMPL;
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}
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STDMETHODIMP MFTransform::ProcessEvent(DWORD dwInputStreamID, IMFMediaEvent *pEvent)
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{
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// This MFT ignores all events, and the pipeline should send all events downstream.
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Q_UNUSED(dwInputStreamID);
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Q_UNUSED(pEvent);
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return E_NOTIMPL;
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}
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STDMETHODIMP MFTransform::ProcessMessage(MFT_MESSAGE_TYPE eMessage, ULONG_PTR ulParam)
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{
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Q_UNUSED(ulParam);
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HRESULT hr = S_OK;
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switch (eMessage)
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{
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case MFT_MESSAGE_COMMAND_FLUSH:
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hr = OnFlush();
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break;
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case MFT_MESSAGE_COMMAND_DRAIN:
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// Drain: Tells the MFT not to accept any more input until
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// all of the pending output has been processed. That is our
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// default behevior already, so there is nothing to do.
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break;
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case MFT_MESSAGE_SET_D3D_MANAGER:
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// The pipeline should never send this message unless the MFT
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// has the MF_SA_D3D_AWARE attribute set to TRUE. However, if we
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// do get this message, it's invalid and we don't implement it.
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hr = E_NOTIMPL;
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break;
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// The remaining messages do not require any action from this MFT.
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case MFT_MESSAGE_NOTIFY_BEGIN_STREAMING:
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case MFT_MESSAGE_NOTIFY_END_STREAMING:
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case MFT_MESSAGE_NOTIFY_END_OF_STREAM:
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case MFT_MESSAGE_NOTIFY_START_OF_STREAM:
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break;
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}
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return hr;
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}
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STDMETHODIMP MFTransform::ProcessInput(DWORD dwInputStreamID, IMFSample *pSample, DWORD dwFlags)
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{
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if (dwInputStreamID > 0)
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return MF_E_INVALIDSTREAMNUMBER;
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if (dwFlags != 0)
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return E_INVALIDARG; // dwFlags is reserved and must be zero.
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QMutexLocker locker(&m_mutex);
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if (!m_inputType || !m_outputType)
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return MF_E_TRANSFORM_TYPE_NOT_SET;
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if (m_sample)
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return MF_E_NOTACCEPTING;
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// Validate the number of buffers. There should only be a single buffer to hold the video frame.
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DWORD dwBufferCount = 0;
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HRESULT hr = pSample->GetBufferCount(&dwBufferCount);
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if (FAILED(hr))
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return hr;
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if (dwBufferCount == 0)
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return E_FAIL;
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if (dwBufferCount > 1)
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return MF_E_SAMPLE_HAS_TOO_MANY_BUFFERS;
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m_sample = pSample;
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m_sample->AddRef();
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QMutexLocker lockerProbe(&m_videoProbeMutex);
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if (!m_videoProbes.isEmpty()) {
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QVideoFrame frame = makeVideoFrame();
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foreach (MFVideoProbeControl* probe, m_videoProbes)
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probe->bufferProbed(frame);
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}
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return S_OK;
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}
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STDMETHODIMP MFTransform::ProcessOutput(DWORD dwFlags, DWORD cOutputBufferCount, MFT_OUTPUT_DATA_BUFFER *pOutputSamples, DWORD *pdwStatus)
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{
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if (dwFlags != 0)
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return E_INVALIDARG;
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if (pOutputSamples == NULL || pdwStatus == NULL)
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return E_POINTER;
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if (cOutputBufferCount != 1)
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return E_INVALIDARG;
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QMutexLocker locker(&m_mutex);
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if (!m_sample)
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return MF_E_TRANSFORM_NEED_MORE_INPUT;
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if (pOutputSamples[0].pSample)
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pOutputSamples[0].pSample->Release();
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pOutputSamples[0].pSample = m_sample;
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pOutputSamples[0].pSample->AddRef();
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pOutputSamples[0].dwStatus = 0;
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*pdwStatus = 0;
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m_sample->Release();
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m_sample = 0;
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return S_OK;
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}
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|
HRESULT MFTransform::OnFlush()
|
|
{
|
|
QMutexLocker locker(&m_mutex);
|
|
|
|
if (m_sample) {
|
|
m_sample->Release();
|
|
m_sample = 0;
|
|
}
|
|
return S_OK;
|
|
}
|
|
|
|
QVideoFrame::PixelFormat MFTransform::formatFromSubtype(const GUID& subtype)
|
|
{
|
|
if (subtype == MFVideoFormat_ARGB32)
|
|
return QVideoFrame::Format_ARGB32;
|
|
else if (subtype == MFVideoFormat_RGB32)
|
|
return QVideoFrame::Format_RGB32;
|
|
else if (subtype == MFVideoFormat_RGB24)
|
|
return QVideoFrame::Format_RGB24;
|
|
else if (subtype == MFVideoFormat_RGB565)
|
|
return QVideoFrame::Format_RGB565;
|
|
else if (subtype == MFVideoFormat_RGB555)
|
|
return QVideoFrame::Format_RGB555;
|
|
else if (subtype == MFVideoFormat_AYUV)
|
|
return QVideoFrame::Format_AYUV444;
|
|
else if (subtype == MFVideoFormat_I420)
|
|
return QVideoFrame::Format_YUV420P;
|
|
else if (subtype == MFVideoFormat_UYVY)
|
|
return QVideoFrame::Format_UYVY;
|
|
else if (subtype == MFVideoFormat_YV12)
|
|
return QVideoFrame::Format_YV12;
|
|
else if (subtype == MFVideoFormat_NV12)
|
|
return QVideoFrame::Format_NV12;
|
|
|
|
return QVideoFrame::Format_Invalid;
|
|
}
|
|
|
|
QVideoSurfaceFormat MFTransform::videoFormatForMFMediaType(IMFMediaType *mediaType, int *bytesPerLine)
|
|
{
|
|
UINT32 stride;
|
|
if (FAILED(mediaType->GetUINT32(MF_MT_DEFAULT_STRIDE, &stride))) {
|
|
*bytesPerLine = 0;
|
|
return QVideoSurfaceFormat();
|
|
}
|
|
|
|
*bytesPerLine = (int)stride;
|
|
|
|
QSize size;
|
|
UINT32 width, height;
|
|
if (FAILED(MFGetAttributeSize(mediaType, MF_MT_FRAME_SIZE, &width, &height)))
|
|
return QVideoSurfaceFormat();
|
|
|
|
size.setWidth(width);
|
|
size.setHeight(height);
|
|
|
|
GUID subtype = GUID_NULL;
|
|
if (FAILED(mediaType->GetGUID(MF_MT_SUBTYPE, &subtype)))
|
|
return QVideoSurfaceFormat();
|
|
|
|
QVideoFrame::PixelFormat pixelFormat = formatFromSubtype(subtype);
|
|
QVideoSurfaceFormat format(size, pixelFormat);
|
|
|
|
UINT32 num, den;
|
|
if (SUCCEEDED(MFGetAttributeRatio(mediaType, MF_MT_PIXEL_ASPECT_RATIO, &num, &den))) {
|
|
format.setPixelAspectRatio(num, den);
|
|
}
|
|
if (SUCCEEDED(MFGetAttributeRatio(mediaType, MF_MT_FRAME_RATE, &num, &den))) {
|
|
format.setFrameRate(qreal(num)/den);
|
|
}
|
|
|
|
return format;
|
|
}
|
|
|
|
QVideoFrame MFTransform::makeVideoFrame()
|
|
{
|
|
QVideoFrame frame;
|
|
|
|
if (!m_format.isValid())
|
|
return frame;
|
|
|
|
IMFMediaBuffer *buffer = 0;
|
|
|
|
do {
|
|
if (FAILED(m_sample->ConvertToContiguousBuffer(&buffer)))
|
|
break;
|
|
|
|
QByteArray array = dataFromBuffer(buffer, m_format.frameHeight(), &m_bytesPerLine);
|
|
if (array.isEmpty())
|
|
break;
|
|
|
|
// Wrapping IMFSample or IMFMediaBuffer in a QVideoFrame is not possible because we cannot hold
|
|
// IMFSample for a "long" time without affecting the rest of the topology.
|
|
// If IMFSample is held for more than 5 frames decoder starts to reuse it even though it hasn't been released it yet.
|
|
// That is why we copy data from IMFMediaBuffer here.
|
|
frame = QVideoFrame(new QMemoryVideoBuffer(array, m_bytesPerLine), m_format.frameSize(), m_format.pixelFormat());
|
|
|
|
LONGLONG startTime = -1;
|
|
if (SUCCEEDED(m_sample->GetSampleTime(&startTime))) {
|
|
frame.setStartTime(startTime);
|
|
|
|
LONGLONG duration = -1;
|
|
if (SUCCEEDED(m_sample->GetSampleDuration(&duration)))
|
|
frame.setEndTime(startTime + duration);
|
|
}
|
|
} while (false);
|
|
|
|
if (buffer)
|
|
buffer->Release();
|
|
|
|
return frame;
|
|
}
|
|
|
|
QByteArray MFTransform::dataFromBuffer(IMFMediaBuffer *buffer, int height, int *bytesPerLine)
|
|
{
|
|
QByteArray array;
|
|
BYTE *bytes;
|
|
DWORD length;
|
|
HRESULT hr = buffer->Lock(&bytes, NULL, &length);
|
|
if (SUCCEEDED(hr)) {
|
|
array = QByteArray((const char *)bytes, (int)length);
|
|
buffer->Unlock();
|
|
} else {
|
|
// try to lock as Direct3DSurface
|
|
IDirect3DSurface9 *surface = 0;
|
|
do {
|
|
if (FAILED(MFGetService(buffer, MR_BUFFER_SERVICE, IID_IDirect3DSurface9, (void**)&surface)))
|
|
break;
|
|
|
|
D3DLOCKED_RECT rect;
|
|
if (FAILED(surface->LockRect(&rect, NULL, D3DLOCK_READONLY)))
|
|
break;
|
|
|
|
if (bytesPerLine)
|
|
*bytesPerLine = (int)rect.Pitch;
|
|
|
|
array = QByteArray((const char *)rect.pBits, rect.Pitch * height);
|
|
surface->UnlockRect();
|
|
} while (false);
|
|
|
|
if (surface) {
|
|
surface->Release();
|
|
surface = 0;
|
|
}
|
|
}
|
|
|
|
return array;
|
|
}
|
|
|
|
bool MFTransform::isMediaTypeSupported(IMFMediaType *type)
|
|
{
|
|
// if the list is empty, it supports all formats
|
|
if (!type || m_mediaTypes.isEmpty())
|
|
return true;
|
|
|
|
for (int i = 0; i < m_mediaTypes.size(); ++i) {
|
|
DWORD flags = 0;
|
|
m_mediaTypes.at(i)->IsEqual(type, &flags);
|
|
if (flags & MF_MEDIATYPE_EQUAL_FORMAT_TYPES)
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|