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kc3-lang/ftgl/src/FTPixmapGlyph.cpp

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  • Author : henry
    Date : 2004-10-03 22:50:30
    Hash : 8bdfef74
    Message : Adding support for turning off display lists in FTGL

  • src/FTPixmapGlyph.cpp
  • #include    "FTPixmapGlyph.h"
    
    FTPixmapGlyph::FTPixmapGlyph( FT_GlyphSlot glyph)
    :   FTGlyph( glyph),
        destWidth(0),
        destHeight(0),
        data(0)
    {
        err = FT_Render_Glyph( glyph, FT_RENDER_MODE_NORMAL);
        if( err || ft_glyph_format_bitmap != glyph->format)
        {
            return;
        }
    
        FT_Bitmap bitmap = glyph->bitmap;
    
        //check the pixel mode
        //ft_pixel_mode_grays
            
        int srcWidth = bitmap.width;
        int srcHeight = bitmap.rows;
        
       // FIXME What about dest alignment?
        destWidth = srcWidth;
        destHeight = srcHeight;
        
        if( destWidth && destHeight)
        {
            data = new unsigned char[destWidth * destHeight * 4];
        
            // Get the current glColor.
            float ftglColour[4];
            glGetFloatv( GL_CURRENT_COLOR, ftglColour);
    
            unsigned char redComponent =   static_cast<unsigned char>( ftglColour[0] * 255.0f);
            unsigned char greenComponent = static_cast<unsigned char>( ftglColour[1] * 255.0f);
            unsigned char blueComponent =  static_cast<unsigned char>( ftglColour[2] * 255.0f);
    
            unsigned char* src = bitmap.buffer;
    
            unsigned char* dest = data + ((destHeight - 1) * destWidth) * 4;
            size_t destStep = destWidth * 4 * 2;
    
            if( ftglColour[3] == 1.0f)
            {
                for( int y = 0; y < srcHeight; ++y)
                {
                    for( int x = 0; x < srcWidth; ++x)
                    {
                        *dest++ = redComponent;
                        *dest++ = greenComponent;
                        *dest++ = blueComponent;
                        *dest++ = *src++;
                    }
                    dest -= destStep;
                }
            }
            else
            {
                for( int y = 0; y < srcHeight; ++y)
                {
                    for( int x = 0; x < srcWidth; ++x)
                    {
                        *dest++ = redComponent;
                        *dest++ = greenComponent;
                        *dest++ = blueComponent;
                        *dest++ = static_cast<unsigned char>(ftglColour[3] * *src++);
                    }
                    dest -= destStep;
                }
            }
            destHeight = srcHeight;
        }
    
        pos.x = glyph->bitmap_left;
        pos.y = srcHeight - glyph->bitmap_top;
    }
    
    
    FTPixmapGlyph::~FTPixmapGlyph()
    {
        delete [] data;
    }
    
    
    float FTPixmapGlyph::Render( const FTPoint& pen)
    {
        glBitmap( 0, 0, 0.0f, 0.0f, pen.x + pos.x, pen.y - pos.y, (const GLubyte*)0);
        
        if( data)
        {
            glPixelStorei( GL_UNPACK_ROW_LENGTH, 0);
            glDrawPixels( destWidth, destHeight, GL_RGBA, GL_UNSIGNED_BYTE, (const GLvoid*)data);
        }
            
        glBitmap( 0, 0, 0.0f, 0.0f, -pos.x, pos.y, (const GLubyte*)0);
    
        return advance;
    }