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@ -65,7 +65,7 @@ struct CBuildInfo
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TColorMaskVect ColorMasks;
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// how to shift right the size of the src Bitmap for the .hlsinfo
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uint LowDefShift;
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uint OptimizeTextures; // 0 = don't optimize, 1 = check, 2 = optimize
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uint OptimizeTextures; // 0 = don't check, 1 = check
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};
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@ -351,7 +351,7 @@ int main(int argc, char* argv[])
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}
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catch (const NLMISC::EUnknownVar &)
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{
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// don't optimize files by default
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// don't check files by default
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bi.OptimizeTextures = 0;
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}
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}
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@ -667,55 +667,12 @@ static void BuildColoredVersionForOneBitmap(const CBuildInfo &bi, const std::str
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throw NLMISC::Exception("Failed to load bitmap");
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}
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// if bitmap is RGBA but has an alpha channel fully transparent,
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// if bitmap is RGBA but has an alpha channel fully opaque (255),
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// we can save it as RGB to optimize it
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if (bi.OptimizeTextures > 0 && depth == 32)
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uint8 value = 0;
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if (bi.OptimizeTextures > 0 && depth == 32 && srcBitmap.isAlphaUniform(&value) && value == 255)
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{
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uint8 value = 0;
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// texture can be converted if all alphas are 255
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if (srcBitmap.isAlphaUniform(&value) && value == 255)
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{
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if (bi.OptimizeTextures > 1)
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{
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// make bitmap opaque
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srcBitmap.makeOpaque();
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// original depth is now 24 bits, since we discarded alpha channel
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depth = 24;
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NLMISC::COFile os;
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if (os.open(fullInputBitmapPath))
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{
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nlwarning("Optimizing texture %s...", fullInputBitmapPath.c_str());
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std::string ext = CFile::getExtension(fullInputBitmapPath);
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// resave the texture in optimized same format
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if (ext == "png")
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{
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srcBitmap.writePNG(os, 24);
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}
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else if (ext == "tga")
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{
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srcBitmap.writeTGA(os, 24);
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}
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else
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{
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nlwarning("Don't support %s format for texture, unable to save it", ext.c_str());
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}
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}
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else
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{
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nlwarning("Unable to save texture %s", fullInputBitmapPath.c_str());
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}
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}
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else
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{
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nlwarning("Texture %s can be optimized", fullInputBitmapPath.c_str());
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}
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}
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nlwarning("Texture %s can be optimized, run textures_optimizer", fullInputBitmapPath.c_str());
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}
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if (srcBitmap.PixelFormat != NLMISC::CBitmap::RGBA)
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@ -794,36 +751,10 @@ static void BuildColoredVersionForOneBitmap(const CBuildInfo &bi, const std::str
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throw NLMISC::Exception("Failed to load mask");
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}
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// convert color mask to grayscale (red is the new gray value)
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if (li.Mask.getPixelFormat() == CBitmap::RGBA)
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// display a warning if checks enabled
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if (li.Mask.getPixelFormat() == CBitmap::RGBA && bi.OptimizeTextures > 0 && !li.Mask.isGrayscale())
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{
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// display a warning if checks enabled
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if (bi.OptimizeTextures > 0 && !li.Mask.isGrayscale())
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{
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nlwarning("Mask %s is using colors, results may by incorrect! Use OptimizeTextures = 2 to fix it.", maskFileName.c_str());
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}
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// get a pointer on original data
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uint32 size = li.Mask.getPixels().size();
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uint32 *data = (uint32*)li.Mask.getPixels().getPtr();
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uint32 *endData = (uint32*)((uint8*)data + size);
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NLMISC::CRGBA *color = NULL;
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// process all pixels
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while(data < endData)
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{
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color = (NLMISC::CRGBA*)data;
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// copy red value to green and blue,
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// because only red is used for mask
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color->B = color->G = color->R;
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// make opaque
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color->A = 255;
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++data;
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}
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nlwarning("Mask %s is using colors, results may by incorrect! Run textures_optimizer to fix it.", maskFileName.c_str());
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}
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// convert image to real grayscale
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@ -832,40 +763,6 @@ static void BuildColoredVersionForOneBitmap(const CBuildInfo &bi, const std::str
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li.Mask.convertToType(NLMISC::CBitmap::Luminance);
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}
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// masks can be converted to grayscale files
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if (bi.OptimizeTextures > 0 && maskDepth > 8)
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{
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if (bi.OptimizeTextures > 1)
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{
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NLMISC::COFile os;
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if (os.open(maskFileName))
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{
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std::string ext = NLMISC::toLower(CFile::getExtension(maskFileName));
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nlwarning("Optimizing mask %s...", maskFileName.c_str());
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// resave the texture in optimized same format
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if (ext == "png")
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{
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li.Mask.writePNG(os, 8);
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}
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else if (ext == "tga")
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{
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li.Mask.writeTGA(os, 8);
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}
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else
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{
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nlwarning("Don't support %s format for mask, unable to save it", ext.c_str());
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}
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}
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}
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else
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{
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nlwarning("Mask %s can be optimized", maskFileName.c_str());
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}
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}
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/// make sure the mask has the same size
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if (li.Mask.getWidth() != srcBitmap.getWidth()
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|| li.Mask.getHeight() != srcBitmap.getHeight())
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