2004-12-09 00:46:07 +00:00
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#ifdef _WIN32
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#include "boinc_win.h"
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2005-11-21 18:34:44 +00:00
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#else
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#include "config.h"
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2004-12-09 00:46:07 +00:00
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#endif
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#include "bmplib.h"
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// Returns true for success -- false otherwise
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bool DIB_BITMAP::set_size(int width, int height, int channels)
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{
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// If DIB_BITMAP has already been set -- clear it out first
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FreeDIB_BMP();
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// Create a temporary compatible device context
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HDC temp_hdc = CreateCompatibleDC(NULL);
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// Error Check
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if(!temp_hdc)
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return false;
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bmp_width = width; // Set the width
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bmp_height = height; // Set the height
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bmp_channels = channels; // Set the channels (3 == 24-bit, 4 == 32-bit)
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// Set stride -- The stride is the TRUE number of bytes in a line of pixels
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// Windows makes all the .bmps DWORD aligned (divisible evenly by 4)
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// So if you bitmap say was 103x103 pixels, Windows would add 1 "padding byte" to it
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// so in memory it would be 104x103 pixels. The "padding bytes" do not get blit (drawn)
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// to the screen, they're just there so again everything is DWORD aligned which makes
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// blitting (drawing to the screen) easier for the OS
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bmp_stride = bmp_width * bmp_channels;
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while((bmp_stride % 4) != 0) // Ensure bmp_stride is DWORD aligned
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bmp_stride++;
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BITMAPINFO bmp_info = {0};
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// Initialize the parameters that we care about
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bmp_info.bmiHeader.biSize = sizeof(BITMAPINFOHEADER);
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bmp_info.bmiHeader.biWidth = width;
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bmp_info.bmiHeader.biHeight = height;
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bmp_info.bmiHeader.biPlanes = 1; // Always equal 1
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bmp_info.bmiHeader.biBitCount = channels * 8;
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bmp_info.bmiHeader.biCompression = BI_RGB; // No compression
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bmp_info.bmiHeader.biClrUsed = 0; // Always equals 0 with a 24 or 32-bit .bmp
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// Create a DIBSection -- This returns us two things, an HBITMAP handle and
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// a memory pointer (pointer to the pixels) in surface_bits
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hbitmap = CreateDIBSection(temp_hdc, &bmp_info, DIB_RGB_COLORS,
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(void**)&surface_bits, 0, 0);
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// Release our temporary HDC
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DeleteDC(temp_hdc);
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// Error Check -- Make sure the call to CreateDIBSection() DID NOT fail
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if(!hbitmap)
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return false;
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return true; // We're sized :)
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} // end of set_size(int width, int height, int channels)
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bool DIB_BITMAP::loadBMP(const char *file_name)
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{
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// If DIB_BITMAP has already been set -- clear it out first
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FreeDIB_BMP();
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// Error Check -- Make sure they passed in a valid file name
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if(!file_name)
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return false;
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FILE *bmp_file = fopen(file_name, "rb");
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// Error Check -- Make sure the file could be opened
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if(!bmp_file)
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return false;
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BITMAPFILEHEADER bmp_fileheader;
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// Read the BITMAPFILEHEADER
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if(!fread(&bmp_fileheader, sizeof(BITMAPFILEHEADER), 1, bmp_file))
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{
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fclose(bmp_file);
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return false;
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}
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// Check the type field to make sure we have a .bmp file
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if(memcmp(&bmp_fileheader.bfType, "BM", 2))
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{
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fclose(bmp_file);
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return false;
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}
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BITMAPINFOHEADER bmp_infoheader;
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// Read the BITMAPINFOHEADER.
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if(!fread(&bmp_infoheader, sizeof(BITMAPINFOHEADER), 1, bmp_file))
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{
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fclose(bmp_file);
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return false;
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}
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// We only support 24-bit and 32-bit .bmps so make sure that's what we have
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if((bmp_infoheader.biBitCount != 24) && (bmp_infoheader.biBitCount != 32))
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{
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fclose(bmp_file);
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return false;
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}
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// Set the size of our DIB_BITMAP, once we do this we're ready to store the pixel
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// data in it
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if(set_size(bmp_infoheader.biWidth,bmp_infoheader.biHeight,bmp_infoheader.biBitCount / 8) == false)
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{
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fclose(bmp_file);
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return false;
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}
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// Jump to the location where the pixel data is stored
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if(fseek(bmp_file, bmp_fileheader.bfOffBits, SEEK_SET))
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{
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fclose(bmp_file);
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return false;
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}
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unsigned int bytesPerLine = bmp_width * bmp_channels; // Bytes per line (number of bytes
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// in a scan line)
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// Calculate how many "padding" bytes there are -- WE DO NOT want to read in the
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// padding bytes (we will just skip over those)
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// **Remember** Windows adds padding bytes to ensure ALL .bmps are DWORD aligned
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// (divisible evenly by 4)
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unsigned int padding = bmp_stride - bytesPerLine;
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// Loop over all the scan lines (all the rows of pixels in the image)
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for(int y = bmp_height-1; y >= 0; y--)
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{
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// Get the "current" line pointer
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uchar *LinePtr = getLinePtr(y);
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// Read the precise number of bytes that the scan line requires into the bitmap
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if(!fread(LinePtr, bytesPerLine, 1, bmp_file))
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{
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fclose(bmp_file);
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return false;
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}
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// Skip over any padding bytes.
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if(fseek(bmp_file, padding, SEEK_CUR))
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{
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fclose(bmp_file);
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return false;
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}
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} // end of for (int y = 0; y < bmp_infoheader.biHeight; y++)
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fclose(bmp_file);
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return true; // If we get here .bmp was read in successfully
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} // end of loadBMP(char *file_name, HDC hdc)
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// Returns the address in memory of the specified line. This gives you a pointer to at least
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// width * channels bytes. Lines are numbered such that when the bitmap
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// is displayed line zero is at the top.
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uchar* DIB_BITMAP::getLinePtr(int which_line)
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{
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return (surface_bits + bmp_stride * which_line);
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}
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// Release the memory
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void DIB_BITMAP::FreeDIB_BMP()
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{
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// If we created an HBITMAP, delete it
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if(hbitmap)
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DeleteObject(hbitmap);
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// Zero out all data associated with DIB_BITMAP
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hbitmap = NULL;
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surface_bits = NULL;
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bmp_width = bmp_height = bmp_channels = bmp_stride = 0;
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return;
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}
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// Deconstructor
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DIB_BITMAP::~DIB_BITMAP() { FreeDIB_BMP(); }
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2004-12-16 03:28:40 +00:00
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2005-01-02 18:29:53 +00:00
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const char *BOINC_RCSID_1051ce617a = "$Id$";
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