#include "l_bitmap.h"
L_LTDIS_API L_INT L_ConvertFromEMF(pBitmap, uStructSize, hWmf, uWidth, uHeight)
pBITMAPHANDLE pBitmap; |
pointer to a bitmap |
L_UINT uStructSize; |
size in bytes, of the structure pointed to by pBitmap |
L_HENHMETAFILE hWmf; |
handle to the WMF to be converted |
L_UINT uWidth; |
width |
L_UINT uHeight; |
height |
Converts a Windows enhanced metafile (WMF) into a LEAD Technologies bitmap. When this function is completed, there are two copies of the drawing in memory: the EMF and the original LEAD vector. Freeing one will not affect the other.
Parameter |
Description |
pBitmap |
Pointer to the bitmap to be updated with the converted file. |
uStructSize |
Size in bytes, of the structure pointed to by pBitmap, for versioning. Use sizeof(BITMAPHANDLE). |
hWmf |
Handle to the EMF to be converted. |
uWidth |
Amount by which to scale the metafiles original width. |
uHeight |
Amount by which to scale the metafiles original height. |
SUCCESS |
The function was successful. |
< 1 |
An error occurred. Refer to Return Codes. |
This function does not support signed data images. It returns the error code ERROR_SIGNED_DATA_NOT_SUPPORTED if a signed data image is passed to this function.
The enhanced metafile can be loaded at the original dimension or scaled by using the uWidth and uHeight parameters.
If uWidth == 0 and uHeight == 0 - the enhanced metafile is loaded at the size present in the file
If uWidth == 0 and uHeight > 0 - the enhanced metafile is stretched so that it has the height uHeight (preserving the aspect ratio)
If uWidth > 0 and uHeight == 0 - the enhanced metafile is stretched so that it has the width uWidth (preserving the aspect ratio)
If uWidth > 0 and uHeight > 0 - the enhanced metafile is stretched so that it has the width uWidth and height uHeight (the aspect ratio is ignored)
Required DLLs and Libraries
For a listing of the exact DLLs and Libraries needed, based on the toolkit version, refer to Files To Be Included With Your Application. |
Win32, x64.
Functions: |
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This example loads a bitmap, converts it to a EMF, then converts the EMF back to a bitmap
#define MAKE_IMAGE_PATH(pFileName) TEXT("C:\\Users\\Public\\Documents\\LEADTOOLS Images\\")pFileName
L_INT ConvertFromEMFExample(pBITMAPHANDLE pLeadBitmap)
{
L_INT nRet;
BITMAPHANDLE Bitmap; /* Bitmap handle for the initial image */
HENHMETAFILE hEMF;
/* Load a bitmap, keeping its own bits per pixel */
nRet = L_LoadBitmap (MAKE_IMAGE_PATH(TEXT("ImageProcessingDemo\\Image3.cmp")), &Bitmap, sizeof(BITMAPHANDLE), 0, ORDER_BGR, NULL, NULL);
if(nRet != SUCCESS)
return nRet;
/* Convert the initial bitmap to a EMF */
hEMF = L_ConvertToEMF( &Bitmap );
nRet = L_SaveBitmap(MAKE_IMAGE_PATH(TEXT("Result.BMP")), &Bitmap, FILE_BMP, 24, 0, NULL);
if(nRet != SUCCESS)
return nRet;
/* Free the initial bitmap */
if(Bitmap.Flags.Allocated)
L_FreeBitmap(&Bitmap);
/* Convert the EMF to create a new LEAD bitmap and preserve the size */
if(pLeadBitmap->Flags.Allocated)
L_FreeBitmap(pLeadBitmap);
L_ConvertFromEMF(pLeadBitmap, sizeof(BITMAPHANDLE), hEMF, 0, 0);
/* Clean up */
DeleteEnhMetaFile(hEMF);
return SUCCESS;
}
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