Fix the calculation of the input image shift when using subpixel regions

This commit is contained in:
Jorge Rodriguez 2015-11-10 11:25:59 -08:00
parent 3f73dfd7ce
commit a1ef3a1060
2 changed files with 101 additions and 3 deletions

View File

@ -2229,8 +2229,8 @@ static void stbir__calculate_transform(stbir__info *info, float s0, float t0, fl
info->horizontal_scale = ((float)info->output_w / info->input_w) / (s1 - s0);
info->vertical_scale = ((float)info->output_h / info->input_h) / (t1 - t0);
info->horizontal_shift = s0 * info->input_w / (s1 - s0);
info->vertical_shift = t0 * info->input_h / (t1 - t0);
info->horizontal_shift = s0 * info->output_w / (s1 - s0);
info->vertical_shift = t0 * info->output_h / (t1 - t0);
}
}

View File

@ -1,4 +1,5 @@
#include <malloc.h>
#include <stdlib.h>
#include <stdio.h>
#if defined(_WIN32) && _MSC_VER > 1200
#define STBIR_ASSERT(x) \
@ -356,6 +357,54 @@ void test_subpixel(const char* file, float width_percent, float height_percent,
free(output_data);
}
void test_subpixel_region(const char* file, float width_percent, float height_percent, float s0, float t0, float s1, float t1)
{
int w, h, n;
unsigned char* input_data = stbi_load(file, &w, &h, &n, 0);
if (input_data == NULL)
return;
int new_w = (int)(w * width_percent);
int new_h = (int)(h * height_percent);
unsigned char* output_data = (unsigned char*)malloc(new_w * new_h * n * sizeof(unsigned char));
stbir_resize_region(input_data, w, h, 0, output_data, new_w, new_h, 0, STBIR_TYPE_UINT8, n, STBIR_ALPHA_CHANNEL_NONE, 0, STBIR_EDGE_CLAMP, STBIR_EDGE_CLAMP, STBIR_FILTER_BOX, STBIR_FILTER_CATMULLROM, STBIR_COLORSPACE_SRGB, &g_context, s0, t0, s1, t1);
stbi_image_free(input_data);
char output[200];
sprintf(output, "test-output/subpixel-region-%d-%d-%f-%f-%f-%f-%s", new_w, new_h, s0, t0, s1, t1, file);
stbi_write_png(output, new_w, new_h, n, output_data, 0);
free(output_data);
}
void test_subpixel_command(const char* file, float width_percent, float height_percent, float x_scale, float y_scale, float x_offset, float y_offset)
{
int w, h, n;
unsigned char* input_data = stbi_load(file, &w, &h, &n, 0);
if (input_data == NULL)
return;
int new_w = (int)(w * width_percent);
int new_h = (int)(h * height_percent);
unsigned char* output_data = (unsigned char*)malloc(new_w * new_h * n * sizeof(unsigned char));
stbir_resize_subpixel(input_data, w, h, 0, output_data, new_w, new_h, 0, STBIR_TYPE_UINT8, n, STBIR_ALPHA_CHANNEL_NONE, 0, STBIR_EDGE_CLAMP, STBIR_EDGE_CLAMP, STBIR_FILTER_BOX, STBIR_FILTER_CATMULLROM, STBIR_COLORSPACE_SRGB, &g_context, x_scale, y_scale, x_offset, y_offset);
stbi_image_free(input_data);
char output[200];
sprintf(output, "test-output/subpixel-command-%d-%d-%f-%f-%f-%f-%s", new_w, new_h, x_scale, y_scale, x_offset, y_offset, file);
stbi_write_png(output, new_w, new_h, n, output_data, 0);
free(output_data);
}
unsigned int* pixel(unsigned int* buffer, int x, int y, int c, int w, int n)
{
return &buffer[y*w*n + x*n + c];
@ -880,6 +929,55 @@ void test_suite(int argc, char **argv)
stbir_resize(image88, 8, 8, 0, output88, 16, 4, 0, STBIR_TYPE_UINT8, 1, STBIR_ALPHA_CHANNEL_NONE, 0, STBIR_EDGE_CLAMP, STBIR_EDGE_CLAMP, STBIR_FILTER_BOX, STBIR_FILTER_CATMULLROM, STBIR_COLORSPACE_SRGB, &g_context);
stbir_resize(image88, 8, 8, 0, output88, 16, 4, 0, STBIR_TYPE_UINT8, 1, STBIR_ALPHA_CHANNEL_NONE, 0, STBIR_EDGE_CLAMP, STBIR_EDGE_CLAMP, STBIR_FILTER_CATMULLROM, STBIR_FILTER_BOX, STBIR_COLORSPACE_SRGB, &g_context);
int barbara_width, barbara_height, barbara_channels;
stbi_image_free(stbi_load(barbara, &barbara_width, &barbara_height, &barbara_channels, 0));
int res = 10;
// Downscaling
for (int i = 0; i <= res; i++)
{
float t = (float)i/res;
float scale = 0.5;
float out_scale = 2.0/3;
float x_shift = (barbara_width*out_scale - barbara_width*scale) * t;
float y_shift = (barbara_height*out_scale - barbara_height*scale) * t;
test_subpixel_command(barbara, scale, scale, out_scale, out_scale, x_shift, y_shift);
}
// Upscaling
for (int i = 0; i <= res; i++)
{
float t = (float)i/res;
float scale = 2;
float out_scale = 3;
float x_shift = (barbara_width*out_scale - barbara_width*scale) * t;
float y_shift = (barbara_height*out_scale - barbara_height*scale) * t;
test_subpixel_command(barbara, scale, scale, out_scale, out_scale, x_shift, y_shift);
}
// Downscaling
for (int i = 0; i <= res; i++)
{
float t = (float)i/res / 2;
test_subpixel_region(barbara, 0.25f, 0.25f, t, t, t+0.5f, t+0.5f);
}
// No scaling
for (int i = 0; i <= res; i++)
{
float t = (float)i/res / 2;
test_subpixel_region(barbara, 0.5f, 0.5f, t, t, t+0.5f, t+0.5f);
}
// Upscaling
for (int i = 0; i <= res; i++)
{
float t = (float)i/res / 2;
test_subpixel_region(barbara, 1, 1, t, t, t+0.5f, t+0.5f);
}
for (i = 0; i < 10; i++)
test_subpixel(barbara, 0.5f, 0.5f, (float)i / 10, 1);