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Only imagediff calls png_diff, so it makes sense to move that function out of the cairo-test and into the utility.
251 lines
8.2 KiB
C
251 lines
8.2 KiB
C
/* imagediff - Compare two images
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*
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* Copyright © 2004 Richard D. Worth
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*
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* Permission to use, copy, modify, distribute, and sell this software
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* and its documentation for any purpose is hereby granted without
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* fee, provided that the above copyright notice appear in all copies
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* and that both that copyright notice and this permission notice
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* appear in supporting documentation, and that the name of Richard Worth
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* not be used in advertising or publicity pertaining to distribution
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* of the software without specific, written prior permission.
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* Richard Worth makes no representations about the suitability of this
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* software for any purpose. It is provided "as is" without express
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* or implied warranty.
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*
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* RICHARD WORTH DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE,
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* INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN
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* NO EVENT SHALL RICHARD WORTH BE LIABLE FOR ANY SPECIAL, INDIRECT OR
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* CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS
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* OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT,
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* NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
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* CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*
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* Author: Richard D. Worth <richard@theworths.org> */
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#if HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <stdio.h>
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#include <stdlib.h>
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#ifdef HAVE_UNISTD_H
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#include <unistd.h>
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#endif
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#include <errno.h>
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#include <string.h>
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#include <pixman.h>
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#include "cairo-test.h"
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#include "pdiff.h"
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#include "buffer-diff.h"
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#include "xmalloc.h"
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/* Don't allow any differences greater than this value, even if pdiff
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* claims that the images are identical */
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#define PERCEPTUAL_DIFF_THRESHOLD 25
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/* Compare two buffers, returning the number of pixels that are
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* different and the maximum difference of any single color channel in
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* result_ret.
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*
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* This function should be rewritten to compare all formats supported by
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* cairo_format_t instead of taking a mask as a parameter.
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*/
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static void
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buffer_diff_core (const unsigned char *_buf_a, int stride_a,
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const unsigned char *_buf_b, int stride_b,
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unsigned char *_buf_diff, int stride_diff,
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int width,
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int height,
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uint32_t mask,
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buffer_diff_result_t *result_ret)
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{
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const uint32_t *buf_a = (const uint32_t*) _buf_a;
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const uint32_t *buf_b = (const uint32_t*) _buf_b;
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uint32_t *buf_diff = (uint32_t*) _buf_diff;
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int x, y;
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buffer_diff_result_t result = {0, 0};
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stride_a /= sizeof (uint32_t);
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stride_b /= sizeof (uint32_t);
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stride_diff /= sizeof (uint32_t);
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for (y = 0; y < height; y++)
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{
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const uint32_t *row_a = buf_a + y * stride_a;
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const uint32_t *row_b = buf_b + y * stride_b;
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uint32_t *row = buf_diff + y * stride_diff;
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for (x = 0; x < width; x++)
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{
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/* check if the pixels are the same */
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if ((row_a[x] & mask) != (row_b[x] & mask)) {
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int channel;
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uint32_t diff_pixel = 0;
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/* calculate a difference value for all 4 channels */
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for (channel = 0; channel < 4; channel++) {
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int value_a = (row_a[x] >> (channel*8)) & 0xff;
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int value_b = (row_b[x] >> (channel*8)) & 0xff;
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unsigned int diff;
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diff = abs (value_a - value_b);
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if (diff > result.max_diff)
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result.max_diff = diff;
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diff *= 4; /* emphasize */
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if (diff)
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diff += 128; /* make sure it's visible */
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if (diff > 255)
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diff = 255;
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diff_pixel |= diff << (channel*8);
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}
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result.pixels_changed++;
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row[x] = diff_pixel;
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} else {
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row[x] = 0;
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}
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row[x] |= 0xff000000; /* Set ALPHA to 100% (opaque) */
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}
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}
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*result_ret = result;
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}
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/* Compares two image surfaces
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*
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* Provides number of pixels changed and maximum single-channel
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* difference in result.
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*
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* Also fills in a "diff" surface intended to visually show where the
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* images differ.
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*/
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static void
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compare_surfaces (const cairo_test_context_t *ctx,
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cairo_surface_t *surface_a,
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cairo_surface_t *surface_b,
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cairo_surface_t *surface_diff,
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buffer_diff_result_t *result)
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{
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/* These default values were taken straight from the
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* perceptualdiff program. We'll probably want to tune these as
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* necessary. */
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double gamma = 2.2;
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double luminance = 100.0;
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double field_of_view = 45.0;
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int discernible_pixels_changed;
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/* First, we run cairo's old buffer_diff algorithm which looks for
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* pixel-perfect images, (we do this first since the test suite
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* runs about 3x slower if we run pdiff_compare first).
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*/
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buffer_diff_core (cairo_image_surface_get_data (surface_a),
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cairo_image_surface_get_stride (surface_a),
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cairo_image_surface_get_data (surface_b),
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cairo_image_surface_get_stride (surface_b),
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cairo_image_surface_get_data (surface_diff),
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cairo_image_surface_get_stride (surface_diff),
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cairo_image_surface_get_width (surface_a),
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cairo_image_surface_get_height (surface_a),
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cairo_surface_get_content (surface_a) & CAIRO_CONTENT_ALPHA ? 0xffffffff : 0x00ffffff,
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result);
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if (result->pixels_changed == 0)
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return;
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cairo_test_log (ctx,
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"%d pixels differ (with maximum difference of %d) from reference image\n",
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result->pixels_changed, result->max_diff);
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/* Then, if there are any different pixels, we give the pdiff code
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* a crack at the images. If it decides that there are no visually
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* discernible differences in any pixels, then we accept this
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* result as good enough.
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*
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* Only let pdiff have a crack at the comparison if the max difference
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* is lower than a threshold, otherwise some problems could be masked.
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*/
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if (result->max_diff < PERCEPTUAL_DIFF_THRESHOLD) {
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discernible_pixels_changed = pdiff_compare (surface_a, surface_b,
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gamma, luminance, field_of_view);
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if (discernible_pixels_changed == 0) {
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result->pixels_changed = 0;
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cairo_test_log (ctx,
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"But perceptual diff finds no visually discernible difference.\n"
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"Accepting result.\n");
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}
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}
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}
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void
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buffer_diff_noalpha (const unsigned char *buf_a,
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const unsigned char *buf_b,
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unsigned char *buf_diff,
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int width,
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int height,
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int stride,
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buffer_diff_result_t *result)
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{
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buffer_diff_core(buf_a, stride,
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buf_b, stride,
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buf_diff, stride,
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width, height,
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0x00ffffff,
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result);
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}
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static cairo_bool_t
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same_size (cairo_surface_t *a, cairo_surface_t *b)
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{
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unsigned int width_a, height_a;
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unsigned int width_b, height_b;
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width_a = cairo_image_surface_get_width (a);
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height_a = cairo_image_surface_get_height (a);
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width_b = cairo_image_surface_get_width (b);
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height_b = cairo_image_surface_get_height (b);
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return width_a == width_b && height_a == height_b;
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}
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/* Image comparison code courtesy of Richard Worth <richard@theworths.org>
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* Returns number of pixels changed, (or -1 on error).
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* Also saves a "diff" image intended to visually show where the
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* images differ.
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*
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* The return value simply indicates whether a check was successfully
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* made, (as opposed to a file-not-found condition or similar). It
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* does not indicate anything about how much the images differ. For
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* that, see result.
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*
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* One failure mode is if the two images provided do not have the same
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* dimensions. In this case, this function will return
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* CAIRO_STATUS_SURFACE_TYPE_MISMATCH (which is a bit of an abuse, but
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* oh well).
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*/
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cairo_status_t
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image_diff (const cairo_test_context_t *ctx,
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cairo_surface_t *surface_a,
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cairo_surface_t *surface_b,
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cairo_surface_t *surface_diff,
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buffer_diff_result_t *result)
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{
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if (cairo_surface_status (surface_a))
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return cairo_surface_status (surface_a);
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if (cairo_surface_status (surface_b))
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return cairo_surface_status (surface_b);
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if (cairo_surface_status (surface_diff))
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return cairo_surface_status (surface_diff);
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if (! same_size (surface_a, surface_b) ||
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! same_size (surface_a, surface_diff))
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{
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cairo_test_log (ctx, "Error: Image size mismatch\n");
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return CAIRO_STATUS_SURFACE_TYPE_MISMATCH;
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}
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compare_surfaces (ctx, surface_a, surface_b, surface_diff, result);
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return CAIRO_STATUS_SUCCESS;
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}
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