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Introduction
This article shows the steps involved in creating and configuring DirectShow�s Video Mixing Renderer Filter 9 (VMR9). The two video streams, one on top of the other, are rendered on a single surface. This surface, in our case, is a PictureBox
control. Each stream's alpha value, position and height/width can be adjusted at runtime.
How VMR9 is different
The following diagrams show the difference between rendering two videos with VMR9 and without VMR9.
Without VMR9
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We notice that simply rendering two videos will result in two separate Video Renderers, which means that the videos are being played on two separate surfaces.
With VMR9
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In this case, the VMR9 filter directs both video streams into its own input pins. This means there is only one renderer, and thus a single rendering surface for both video streams.
The Working
To enhance reusability and readability factors, the functionality of the VMR9 filter has been encapsulated inside a class named myVMR9
.
The myVMR9 class
This class has the following private data members:
VMR9NormalizedRect *r;
IVMRWindowlessControl9 *pWC;
IVMRMixerControl9 *pMix;
IGraphBuilder *pGB;
IBaseFilter *pVmr;
IVMRFilterConfig9 *pConfig;
IMediaControl *pMC;
IMediaSeeking *pMS;
The constructor
The constructor receives a PictureBox
's coordinates of type System::Drawing::Rectangle
, along with its handler of type HWND
. These two attributes are used by VMR9 for rendering purposes.
public: myVMR9(System::Drawing::Rectangle rect, HWND hwnd)
{
r = new VMR9NormalizedRect;
r->left = 0;
r->top = 0;
r->right = 1;
r->bottom = 1;
pWC = NULL;
pMix = NULL;
pGB = NULL;
pVmr = NULL;
pConfig = NULL;
pMC = NULL;
pMS = NULL;
CoCreateInstance(CLSID_FilterGraph, NULL, CLSCTX_INPROC_SERVER,
IID_IGraphBuilder, (void **)&pGB);
CoCreateInstance(CLSID_VideoMixingRenderer9, NULL, CLSCTX_INPROC,
IID_IBaseFilter, (void**)&pVmr);
pGB->AddFilter(pVmr, L"Video");
pVmr->QueryInterface(IID_IVMRFilterConfig9, (void**)&pConfig);
pConfig->SetRenderingMode(VMR9Mode_Windowless);
pVmr->QueryInterface(IID_IVMRWindowlessControl9, (void**)&pWC);
RECT rcDest = {0};
rcDest.bottom = rect.Bottom;
rcDest.left = rect.Left;
rcDest.right = rect.Right;
rcDest.top = rect.Top;
pWC->SetVideoPosition(NULL, &rcDest);
pWC->SetVideoClippingWindow(hwnd);
pVmr->QueryInterface(IID_IVMRMixerControl9, (void**)&pMix);
pGB->QueryInterface(IID_IMediaSeeking, (void **)&pMS);
pGB->QueryInterface(IID_IMediaControl, (void **)&pMC);
}
The methods
HRESULT play()
{
pMC->Run(); return
S_OK;
}
HRESULT pause()
{
pMC->Pause();
return S_OK;
}
HRESULT stop()
{
LONGLONG pos = 0;
pMC->Stop();
pMS->SetPositions(&pos, AM_SEEKING_AbsolutePositioning,
NULL,AM_SEEKING_NoPositioning);
pMC->Pause();
return S_OK;
}
HRESULT close()
{
SAFE_RELEASE(pWC);
SAFE_RELEASE(pMix);
SAFE_RELEASE(pGB);
SAFE_RELEASE(pVmr);
SAFE_RELEASE(pConfig);
SAFE_RELEASE(pMC);
SAFE_RELEASE(pMS);
return S_OK;
}
HRESULT setAlpha(DWORD stream, float alpha)
{
pMix->SetAlpha(stream, alpha);
return S_OK;
}
HRESULT setX(DWORD stream, float x)
{
r->right = x + (r->right - r->left);
r->left = x;
pMix->SetOutputRect(stream, r);
return S_OK;
}
HRESULT setY(DWORD stream, float y)
{
r->bottom = y + (r->bottom - r->top);
r->top = y;
pMix->SetOutputRect(stream, r);
return S_OK;
}
HRESULT setW(DWORD stream, float w)
{
r->right = r->left + w;
pMix->SetOutputRect(stream, r);
return S_OK;
}
HRESULT setH(DWORD stream, float h)
{
r->bottom = r->top + h;
pMix->SetOutputRect(stream, r);
return S_OK;
}
HRESULT renderFiles(String* file1, String* file2)
{
LPCTSTR lFile;
lFile =
static_cast<LPCTSTR>(const_cast<void*>(static_cast<const void*>
(System::Runtime::InteropServices::Marshal::StringToHGlobalAuto(file1))));
pGB->RenderFile((LPCWSTR)lFile, NULL);
lFile =
static_cast<LPCTSTR>(const_cast<void*>(static_cast<const void*>
(System::Runtime::InteropServices::Marshal::StringToHGlobalAuto(file2))));
pGB->RenderFile((LPCWSTR)lFile, NULL);
System::Runtime::InteropServices::Marshal::FreeHGlobal
(static_cast<IntPtr>(const_cast<void*>
(static_cast<const void*>(lFile))));
pMC->StopWhenReady();
return S_OK;
}
Now that the VMR9's functionality has been separated from the GUI, Button and TrackBar handlers can simply create a pointer to a myVMR9
object and call the required methods.
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Additional Information
- The second video stream opened is on top of the first one, i.e., file-2 video is rendered on top of file-1 video. Therefore, if the first video's alpha value is a 100% and the second video's alpha value is 50%, then both videos will be equally (50%) visible.
- It should be noted that the values of Width and Height of trackbars can run into negative values. So when a video stream's width is -100%, it is laterally inverted. Similarly, when a video stream's height is -100%, the video is upside down.