satdump/src-core/common/image/image_utils.cpp
2022-09-23 20:46:41 +02:00

97 lines
No EOL
4.1 KiB
C++

#include "image_utils.h"
namespace image
{
image::Image<uint16_t> blend_images(image::Image<uint16_t> img1, image::Image<uint16_t> img2)
{
size_t width = std::min<int>(img1.width(), img2.width());
size_t height = std::min<int>(img1.height(), img2.height());
image::Image<uint16_t> img_b(width, height, img1.channels());
bool are_rgba = img1.channels() == 4 && img2.channels() == 4;
for (int c = 0; c < img1.channels(); c++)
{
if (are_rgba)
{
for (size_t i = 0; i < height * width; i++)
{
if (img1.channel(3)[i] == 0)
img_b.channel(c)[i] = img2.channel(c)[i];
if (img2.channel(3)[i] == 0)
img_b.channel(c)[i] = img1.channel(c)[i];
else
img_b.channel(c)[i] = c == 3 ? 65535 : (size_t(img1.channel(c)[i]) + size_t(img2.channel(c)[i])) / 2;
}
}
else
{
for (size_t i = 0; i < height * width; i++)
{
if ((img1.channels() == 3 ? (uint64_t)img1.channel(0)[i] + (uint64_t)img1.channel(1)[i] + (uint64_t)img1.channel(2)[i] : img1.channel(c)[i]) == 0)
img_b.channel(c)[i] = img2.channel(c)[i];
if ((img2.channels() == 3 ? (uint64_t)img2.channel(0)[i] + (uint64_t)img2.channel(1)[i] + (uint64_t)img2.channel(2)[i] : img2.channel(c)[i]) == 0)
img_b.channel(c)[i] = img1.channel(c)[i];
else
img_b.channel(c)[i] = (size_t(img1.channel(c)[i]) + size_t(img2.channel(c)[i])) / 2;
}
}
}
return img_b;
}
image::Image<uint16_t> merge_images_opacity(image::Image<uint16_t> img1, image::Image<uint16_t> img2, float op)
{
size_t width = std::min<int>(img1.width(), img2.width());
size_t height = std::min<int>(img1.height(), img2.height());
image::Image<uint16_t> img_b(width, height, img1.channels());
bool are_rgba = img1.channels() == 4 && img2.channels() == 4;
for (int c = 0; c < img1.channels(); c++)
{
for (size_t i = 0; i < height * width; i++)
{
if (are_rgba)
{
if (op == 1.0)
{
if (img2.channel(3)[i] != 0)
img_b.channel(c)[i] = img2.channel(c)[i];
else
img_b.channel(c)[i] = img1.channel(c)[i];
}
else if (op == 0.0)
{
if (img1.channel(3)[i] != 0)
img_b.channel(c)[i] = img1.channel(c)[i];
else
img_b.channel(c)[i] = img2.channel(c)[i];
}
else
img_b.channel(c)[i] = img2.channel(3)[i] != 0
? std::min<int>(65535, img1.channel(c)[i] * (1.0f - op) + img2.channel(c)[i] * op)
: img1.channel(c)[i];
}
else
{
if (op == 1.0)
{
if (img2.channel(c)[i] != 0)
img_b.channel(c)[i] = img2.channel(c)[i];
else
img_b.channel(c)[i] = img1.channel(c)[i];
}
else if (op == 0.0)
{
if (img1.channel(c)[i] != 0)
img_b.channel(c)[i] = img1.channel(c)[i];
else
img_b.channel(c)[i] = img2.channel(c)[i];
}
else
img_b.channel(c)[i] = std::min<int>(65535, img1.channel(c)[i] * (1.0f - op) + img2.channel(c)[i] * op);
}
}
}
return img_b;
}
}