mirror of
https://gitlab.freedesktop.org/cairo/cairo.git
synced 2025-12-20 14:00:10 +01:00
347 lines
9.6 KiB
C
347 lines
9.6 KiB
C
/*
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* Copyright 2014 Intel Corporation
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*
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* Permission is hereby granted, free of charge, to any person
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* obtaining a copy of this software and associated documentation
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* files (the "Software"), to deal in the Software without
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* restriction, including without limitation the rights to use, copy,
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* modify, merge, publish, distribute, sublicense, and/or sell copies
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* of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be
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* included in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
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* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*
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* Author: Chris Wilson <chris@chris-wilson.co.uk>
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*/
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#include "cairo-test.h"
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/* Test the fidelity of the rasterisation, because Cairo is my favourite
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* driver test suite.
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*/
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#define GENERATE_REFERENCE 0
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#include "../src/cairo-fixed-type-private.h"
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#if GENERATE_REFERENCE
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#include <assert.h>
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struct coverage {
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int width, height;
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struct {
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int uncovered_area;
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int covered_height;
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} cells[0];
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};
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static int pfloor (int v)
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{
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return v >> CAIRO_FIXED_FRAC_BITS;
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}
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static int pfrac (int v)
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{
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return v & ((1 << CAIRO_FIXED_FRAC_BITS) - 1);
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}
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static void add_edge (struct coverage *coverage,
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int x1, int y1, int x2, int y2,
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int sign)
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{
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int dx, dy;
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int dxdy_quo, dxdy_rem;
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int xq, xr;
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int y, t;
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if (y2 < y1) {
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t = y1;
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y1 = y2;
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y2 = t;
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t = x1;
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x1 = x2;
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x2 = t;
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sign = -sign;
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}
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dx = x2 - x1;
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dy = y2 - y1;
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if (dy == 0)
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return;
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dy *= 2;
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dxdy_quo = 2*dx / dy;
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dxdy_rem = 2*dx % dy;
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xq = x1 + dxdy_quo / 2;
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xr = dxdy_rem / 2;
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if (xr < 0) {
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xq--;
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xr += dy;
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}
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for (y = MAX(0, y1); y < MIN(y2, 256*coverage->height); y++) {
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int x = xq + (xr >= dy/2);
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if (x < 256*coverage->width) {
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int i = pfloor (y) * coverage->width;
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if (x > 0) {
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i += pfloor (x);
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coverage->cells[i].uncovered_area += sign * pfrac(x);
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}
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coverage->cells[i].covered_height += sign;
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}
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xq += dxdy_quo;
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xr += dxdy_rem;
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if (xr < 0) {
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xq--;
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xr += dy;
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} else if (xr >= dy) {
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xq++;
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xr -= dy;
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}
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}
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}
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static struct coverage *
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coverage_create (int width, int height)
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{
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int size;
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struct coverage *c;
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size = sizeof (struct coverage);
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size += width * height * sizeof (int) * 2;
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c = malloc (size);
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if (c == NULL)
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return c;
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memset(c, 0, size);
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c->width = width;
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c->height = height;
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return c;
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}
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static cairo_surface_t *
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coverage_to_alpha (struct coverage *c)
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{
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cairo_surface_t *image;
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uint8_t *data;
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int x, y, stride;
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image = cairo_image_surface_create (CAIRO_FORMAT_A8, c->width, c->height);
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data = cairo_image_surface_get_data (image);
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stride = cairo_image_surface_get_stride (image);
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cairo_surface_flush (image);
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for (y = 0; y < c->height; y++) {
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uint8_t *row = data + y *stride;
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int cover = 0;
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for (x = 0; x < c->width; x++) {
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int v = y*c->width + x;
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cover += c->cells[v].covered_height * 256;
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v = cover - c->cells[v].uncovered_area;
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v /= 256;
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if (v < 0)
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v = -v;
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row[x] = v - (v >> 8);
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}
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}
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cairo_surface_mark_dirty (image);
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free (c);
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return image;
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}
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#endif
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static cairo_test_status_t
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edge (cairo_t *cr, int width, int height)
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{
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cairo_set_source_rgb (cr, 0.0, 0.0, 0.0);
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cairo_paint (cr);
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cairo_set_operator (cr, CAIRO_OPERATOR_ADD);
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#if GENERATE_REFERENCE
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{
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struct coverage *c;
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cairo_surface_t *mask;
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cairo_set_source_rgb (cr, 1, 0, 0);
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c = coverage_create (width, height);
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add_edge (c, 128*256, 129*256, 129*256, 1*256, 1);
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add_edge (c, 128*256, 129*256, 128*256, 131*256, -1);
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add_edge (c, 128*256, 131*256, 129*256, 259*256, -1);
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add_edge (c, 130*256, 129*256, 129*256, 1*256, -1);
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add_edge (c, 130*256, 129*256, 130*256, 131*256, 1);
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add_edge (c, 130*256, 131*256, 129*256, 259*256, 1);
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mask = coverage_to_alpha (c);
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cairo_mask_surface (cr, mask, 0, 0);
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cairo_surface_destroy (mask);
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c = coverage_create (width, height);
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add_edge (c, 128*256/2, 129*256/2, 129*256/2, 1*256/2, 1);
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add_edge (c, 128*256/2, 129*256/2, 128*256/2, 131*256/2, -1);
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add_edge (c, 128*256/2, 131*256/2, 129*256/2, 259*256/2, -1);
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add_edge (c, 130*256/2, 129*256/2, 129*256/2, 1*256/2, -1);
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add_edge (c, 130*256/2, 129*256/2, 130*256/2, 131*256/2, 1);
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add_edge (c, 130*256/2, 131*256/2, 129*256/2, 259*256/2, 1);
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mask = coverage_to_alpha (c);
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cairo_mask_surface (cr, mask, 0, 0);
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cairo_surface_destroy (mask);
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c = coverage_create (width, height);
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add_edge (c, (192-2)*256, 129*256, 192*256, 1*256, 1);
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add_edge (c, (192-2)*256, 129*256, (192-2)*256, 131*256, -1);
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add_edge (c, (192-2)*256, 131*256, 192*256, 259*256, -1);
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add_edge (c, (192+2)*256, 129*256, 192*256, 1*256, -1);
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add_edge (c, (192+2)*256, 129*256, (192+2)*256, 131*256, 1);
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add_edge (c, (192+2)*256, 131*256, 192*256, 259*256, 1);
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mask = coverage_to_alpha (c);
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cairo_mask_surface (cr, mask, 0, 0);
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cairo_surface_destroy (mask);
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c = coverage_create (width, height);
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add_edge (c, (256-4)*256, 129*256, 256*256, 1*256, 1);
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add_edge (c, (256-4)*256, 129*256, (256-4)*256, 131*256, -1);
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add_edge (c, (256-4)*256, 131*256, 256*256, 259*256, -1);
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add_edge (c, (256+4)*256, 129*256, 256*256, 1*256, -1);
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add_edge (c, (256+4)*256, 129*256, (256+4)*256, 131*256, 1);
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add_edge (c, (256+4)*256, 131*256, 256*256, 259*256, 1);
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mask = coverage_to_alpha (c);
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cairo_mask_surface (cr, mask, 0, 0);
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cairo_surface_destroy (mask);
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cairo_set_source_rgb (cr, 0, 1, 0);
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c = coverage_create (width, height);
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add_edge (c, 1*256, 129*256, 129*256, 128*256, 1);
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add_edge (c, 131*256, 128*256, 259*256, 129*256, 1);
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add_edge (c, 1*256, 129*256, 129*256, 130*256, -1);
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add_edge (c, 131*256, 130*256, 259*256, 129*256, -1);
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mask = coverage_to_alpha (c);
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cairo_mask_surface (cr, mask, 0, 0);
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cairo_surface_destroy (mask);
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c = coverage_create (width, height);
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add_edge (c, 1*256/2, 129*256/2, 129*256/2, 128*256/2, 1);
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add_edge (c, 131*256/2, 128*256/2, 259*256/2, 129*256/2, 1);
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add_edge (c, 1*256/2, 129*256/2, 129*256/2, 130*256/2, -1);
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add_edge (c, 131*256/2, 130*256/2, 259*256/2, 129*256/2, -1);
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mask = coverage_to_alpha (c);
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cairo_mask_surface (cr, mask, 0, 0);
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cairo_surface_destroy (mask);
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c = coverage_create (width, height);
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add_edge (c, 1*256, (192-0)*256, 129*256, (192-2)*256, 1);
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add_edge (c, 131*256, (192-2)*256, 259*256, (192-0)*256, 1);
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add_edge (c, 1*256, (192+0)*256, 129*256, (192+2)*256, -1);
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add_edge (c, 131*256, (192+2)*256, 259*256, (192+0)*256, -1);
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mask = coverage_to_alpha (c);
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cairo_mask_surface (cr, mask, 0, 0);
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cairo_surface_destroy (mask);
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c = coverage_create (width, height);
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add_edge (c, 1*256, (256-0)*256, 129*256, (256-4)*256, 1);
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add_edge (c, 131*256, (256-4)*256, 259*256, (256-0)*256, 1);
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add_edge (c, 1*256, (256+0)*256, 129*256, (256+4)*256, -1);
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add_edge (c, 131*256, (256+4)*256, 259*256, (256+0)*256, -1);
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mask = coverage_to_alpha (c);
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cairo_mask_surface (cr, mask, 0, 0);
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cairo_surface_destroy (mask);
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}
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#else
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cairo_set_source_rgb (cr, 1, 0, 0);
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cairo_move_to (cr, 129, 1);
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cairo_line_to (cr, 128, 129);
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cairo_line_to (cr, 128, 131);
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cairo_line_to (cr, 129, 259);
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cairo_line_to (cr, 130, 131);
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cairo_line_to (cr, 130, 129);
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cairo_fill (cr);
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cairo_move_to (cr, 129/2., 1/2.);
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cairo_line_to (cr, 128/2., 129/2.);
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cairo_line_to (cr, 128/2., 131/2.);
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cairo_line_to (cr, 129/2., 259/2.);
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cairo_line_to (cr, 130/2., 131/2.);
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cairo_line_to (cr, 130/2., 129/2.);
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cairo_fill (cr);
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cairo_move_to (cr, 192, 1);
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cairo_line_to (cr, 192-2, 129);
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cairo_line_to (cr, 192-2, 131);
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cairo_line_to (cr, 192, 259);
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cairo_line_to (cr, 192+2, 131);
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cairo_line_to (cr, 192+2, 129);
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cairo_fill (cr);
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cairo_move_to (cr, 256, 1);
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cairo_line_to (cr, 256-4, 129);
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cairo_line_to (cr, 256-4, 131);
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cairo_line_to (cr, 256, 259);
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cairo_line_to (cr, 256+4, 131);
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cairo_line_to (cr, 256+4, 129);
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cairo_fill (cr);
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cairo_set_source_rgb (cr, 0, 1, 0);
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cairo_move_to (cr, 1, 129);
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cairo_line_to (cr, 129, 128);
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cairo_line_to (cr, 131, 128);
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cairo_line_to (cr, 259, 129);
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cairo_line_to (cr, 131, 130);
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cairo_line_to (cr, 129, 130);
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cairo_fill (cr);
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cairo_move_to (cr, 1/2., 129/2.);
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cairo_line_to (cr, 129/2., 128/2.);
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cairo_line_to (cr, 131/2., 128/2.);
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cairo_line_to (cr, 259/2., 129/2.);
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cairo_line_to (cr, 131/2., 130/2.);
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cairo_line_to (cr, 129/2., 130/2.);
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cairo_fill (cr);
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cairo_move_to (cr, 1, 192);
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cairo_line_to (cr, 129, 192-2);
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cairo_line_to (cr, 131, 192-2);
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cairo_line_to (cr, 259, 192);
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cairo_line_to (cr, 131, 192+2);
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cairo_line_to (cr, 129, 192+2);
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cairo_fill (cr);
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cairo_move_to (cr, 1, 256);
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cairo_line_to (cr, 129, 256-4);
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cairo_line_to (cr, 131, 256-4);
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cairo_line_to (cr, 259, 256);
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cairo_line_to (cr, 131, 256+4);
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cairo_line_to (cr, 129, 256+4);
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cairo_fill (cr);
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#endif
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return CAIRO_TEST_SUCCESS;
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}
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CAIRO_TEST (simple_edge,
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"Check the fidelity of the rasterisation.",
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NULL, /* keywords */
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"target=raster", /* requirements */
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260, 260,
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NULL, edge)
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