forked from Mirrorlandia_minetest/minetest
Fix compiler warnings from "Add an option to colorize to respect the destination alpha"
Fix warnings added by commit 01ae43c48009f816f4649fae2f7f6997452aa6cf Fixes #3952
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01ae43c480
commit
24b32ab09d
@ -553,16 +553,11 @@ static void blit_with_alpha(video::IImage *src, video::IImage *dst,
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static void blit_with_alpha_overlay(video::IImage *src, video::IImage *dst,
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static void blit_with_alpha_overlay(video::IImage *src, video::IImage *dst,
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v2s32 src_pos, v2s32 dst_pos, v2u32 size);
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v2s32 src_pos, v2s32 dst_pos, v2u32 size);
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// Like blit_with_alpha overlay, but uses an int to calculate the ratio
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// and modifies any destination pixels that are not fully transparent
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static void blit_with_interpolate_overlay(video::IImage *src, video::IImage *dst,
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v2s32 src_pos, v2s32 dst_pos, v2u32 size, int ratio);
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// Apply a color to an image. Uses an int (0-255) to calculate the ratio.
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// Apply a color to an image. Uses an int (0-255) to calculate the ratio.
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// If the ratio is 255 or -1 and keep_alpha is true, then it multiples the
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// If the ratio is 255 or -1 and keep_alpha is true, then it multiples the
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// color alpha with the destination alpha.
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// color alpha with the destination alpha.
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// Otherwise, any pixels that are not fully transparent get the color alpha.
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// Otherwise, any pixels that are not fully transparent get the color alpha.
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static void apply_colorize(video::IImage *dst, v2s32 dst_pos, v2u32 size,
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static void apply_colorize(video::IImage *dst, v2u32 dst_pos, v2u32 size,
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video::SColor color, int ratio, bool keep_alpha);
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video::SColor color, int ratio, bool keep_alpha);
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// Apply a mask to an image
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// Apply a mask to an image
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@ -1656,7 +1651,7 @@ bool TextureSource::generateImagePart(std::string part_of_name,
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else if (ratio_str == "alpha")
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else if (ratio_str == "alpha")
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keep_alpha = true;
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keep_alpha = true;
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apply_colorize(baseimg, v2s32(0, 0), baseimg->getDimension(), color, ratio, keep_alpha);
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apply_colorize(baseimg, v2u32(0, 0), baseimg->getDimension(), color, ratio, keep_alpha);
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}
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}
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else if (str_starts_with(part_of_name, "[applyfiltersformesh"))
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else if (str_starts_with(part_of_name, "[applyfiltersformesh"))
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{
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{
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@ -1753,37 +1748,10 @@ static void blit_with_alpha_overlay(video::IImage *src, video::IImage *dst,
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}
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}
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}
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}
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/*
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Draw an image on top of an another one, using the specified ratio
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modify all partially-opaque pixels in the destination.
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*/
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static void blit_with_interpolate_overlay(video::IImage *src, video::IImage *dst,
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v2s32 src_pos, v2s32 dst_pos, v2u32 size, int ratio)
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{
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for (u32 y0 = 0; y0 < size.Y; y0++)
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for (u32 x0 = 0; x0 < size.X; x0++)
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{
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s32 src_x = src_pos.X + x0;
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s32 src_y = src_pos.Y + y0;
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s32 dst_x = dst_pos.X + x0;
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s32 dst_y = dst_pos.Y + y0;
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video::SColor src_c = src->getPixel(src_x, src_y);
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video::SColor dst_c = dst->getPixel(dst_x, dst_y);
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if (dst_c.getAlpha() > 0 && src_c.getAlpha() != 0)
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{
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if (ratio == -1)
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dst_c = src_c.getInterpolated(dst_c, (float)src_c.getAlpha()/255.0f);
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else
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dst_c = src_c.getInterpolated(dst_c, (float)ratio/255.0f);
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dst->setPixel(dst_x, dst_y, dst_c);
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}
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}
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}
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/*
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/*
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Apply color to destination
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Apply color to destination
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*/
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*/
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static void apply_colorize(video::IImage *dst, v2s32 dst_pos, v2u32 size,
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static void apply_colorize(video::IImage *dst, v2u32 dst_pos, v2u32 size,
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video::SColor color, int ratio, bool keep_alpha)
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video::SColor color, int ratio, bool keep_alpha)
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{
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{
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u32 alpha = color.getAlpha();
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u32 alpha = color.getAlpha();
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@ -1791,8 +1759,8 @@ static void apply_colorize(video::IImage *dst, v2s32 dst_pos, v2u32 size,
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if ((ratio == -1 && alpha == 255) || ratio == 255) { // full replacement of color
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if ((ratio == -1 && alpha == 255) || ratio == 255) { // full replacement of color
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if (keep_alpha) { // replace the color with alpha = dest alpha * color alpha
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if (keep_alpha) { // replace the color with alpha = dest alpha * color alpha
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dst_c = color;
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dst_c = color;
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for (s32 y = dst_pos.Y; y < dst_pos.Y + size.Y; y++)
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for (u32 y = dst_pos.Y; y < dst_pos.Y + size.Y; y++)
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for (s32 x = dst_pos.X; x < dst_pos.X + size.X; x++) {
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for (u32 x = dst_pos.X; x < dst_pos.X + size.X; x++) {
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u32 dst_alpha = dst->getPixel(x, y).getAlpha();
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u32 dst_alpha = dst->getPixel(x, y).getAlpha();
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if (dst_alpha > 0) {
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if (dst_alpha > 0) {
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dst_c.setAlpha(dst_alpha * alpha / 255);
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dst_c.setAlpha(dst_alpha * alpha / 255);
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@ -1800,15 +1768,15 @@ static void apply_colorize(video::IImage *dst, v2s32 dst_pos, v2u32 size,
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}
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}
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}
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}
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} else { // replace the color including the alpha
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} else { // replace the color including the alpha
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for (s32 y = dst_pos.Y; y < dst_pos.Y + size.Y; y++)
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for (u32 y = dst_pos.Y; y < dst_pos.Y + size.Y; y++)
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for (s32 x = dst_pos.X; x < dst_pos.X + size.X; x++)
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for (u32 x = dst_pos.X; x < dst_pos.X + size.X; x++)
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if (dst->getPixel(x, y).getAlpha() > 0)
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if (dst->getPixel(x, y).getAlpha() > 0)
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dst->setPixel(x, y, color);
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dst->setPixel(x, y, color);
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}
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}
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} else { // interpolate between the color and destination
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} else { // interpolate between the color and destination
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float interp = (ratio == -1 ? color.getAlpha() / 255.0f : ratio / 255.0f);
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float interp = (ratio == -1 ? color.getAlpha() / 255.0f : ratio / 255.0f);
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for (s32 y = dst_pos.Y; y < dst_pos.Y + size.Y; y++)
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for (u32 y = dst_pos.Y; y < dst_pos.Y + size.Y; y++)
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for (s32 x = dst_pos.X; x < dst_pos.X + size.X; x++) {
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for (u32 x = dst_pos.X; x < dst_pos.X + size.X; x++) {
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dst_c = dst->getPixel(x, y);
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dst_c = dst->getPixel(x, y);
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if (dst_c.getAlpha() > 0) {
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if (dst_c.getAlpha() > 0) {
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dst_c = color.getInterpolated(dst_c, interp);
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dst_c = color.getInterpolated(dst_c, interp);
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