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I'm writing a DX9 renderer and currently working on the ability to play AVI movie files. I've been able to retrieve any specified frame using AVIStreamGetFrame(), which returns a packed DIB, and from there I want to be able to copy that bitmap data to an already existing IDirect3DTexture9 *.

My issue is a lack of understanding of the bitmap file format and knowing how to convert the pixel data given from a BITMAPINFOHEADER to a format that IDirect3DTexture9 can interpret.

I first create my DX9 texture like this:

LPBITMAPINFO bmpInfo = m_pVideoData->GetVideoFormat();
                  D3DFMT_A8R8G8B8,   // <- DETERMINE HOW?
                  D3DPOOL_MANAGED,   // <- OR D3DPOOL_SYSTEMMEM? 

Questions I have here are listed as comments above. When I get the BITMAPINFO and for instance it reads bmpInfo.bmiHeader.biBitCount = 8 (or 16, etc.) does this mean I need to change the D3DFMT_* accordingly?

Later on when I get a LPBITMAPINFOHEADER for the frame I want to render, I'm lost on what to do with pBits returned from the IDirect3DTexture9::LockRect() function. Here is what I have so far:

// Retrieve a frame from the video data as a BITMAPINFOHEADER
m_pVideoData->GetVideoFrame(0, 0, &pBmpInfoHeader);

if(FAILED(m_pD3DTexture->LockRect(0, &rect, NULL, 0)))
DWORD* pDest = (DWORD*)rect.pBits;
// Now what to copy from pBmpInfoHeader?

Are there any API calls that do this for me that I haven't seen? Or does anyone know of an easier way than this? Thanks for reading/helping.

share|improve this question
up vote 1 down vote accepted

Got it to work!

Couple notes to consider. My AVI file (a single frame/bitmap in this case) was in a 16 bit format, therefore I had to create my destination texture with D3DFMT_X1R5G5B5. Also, bitmaps are stored upside down, so I had to reverse my pointer and read each row backwards.

Here's the code:

// Retrieve a frame from the video data as a BITMAPINFOHEADER
m_pVideoData->GetVideoFrame(0, 0, &pBmpInfoHeader);

// Get dimentions
long nWidth = pBmpInfoHeader->biWidth;
long nHeight = pBmpInfoHeader->biHeight;

// Bitmap width correction (might not be needed...)
if (nWidth % 4 != 0)
    nWidth = nWidth + (4 - nWidth%4);

// Get Pixel data (should be after the header in memory)
WORD bitCount = pBmpInfoHeader->biBitCount;
DWORD size = nWidth * nHeight * bitCount/8;
BYTE *pPixelSrc = (BYTE *)pBmpInfoHeader + sizeof(pBmpInfoHeader);

// Lock the texture so we can write this frame's texel data
if(FAILED(m_pD3DTexture->LockRect(0, &lock, NULL, 0)))

int iNumBytesPerRowSrc = pBmpInfoHeader->biWidth * (pBmpInfoHeader->biBitCount/8);  
int iNumBytesPerRowDst = lock.Pitch;
int iNumBytesToCopyPerRow = min(iNumBytesPerRowSrc, iNumBytesPerRowDst);

// Bitmap data is stored upside down
// Start at the end and work backwards
pPixelSrc += (iNumBytesPerRowSrc * nHeight);

// Store a pointer to the texture pixel data and write new data
BYTE* ucTexDst = (BYTE *)lock.pBits;
for(int y = 0; y < nHeight; ++y)
    pPixelSrc -= iNumBytesPerRowSrc;
    memcpy(ucTexDst, pPixelSrc, iNumBytesToCopyPerRow);
    ucTexDst += iNumBytesPerRowDst;

// Unlock texture so gfx card can resume its business
share|improve this answer
Thanks. This solution helped me patch some old code. – Jesse Chisholm Sep 15 '14 at 16:23

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