1428d7b3dSmrg#include <stdint.h>
2428d7b3dSmrg#include <stdio.h>
3428d7b3dSmrg#include <stdlib.h>
4428d7b3dSmrg
5428d7b3dSmrg#include <X11/Xutil.h> /* for XDestroyImage */
6428d7b3dSmrg#include <pixman.h> /* for pixman blt functions */
7428d7b3dSmrg
8428d7b3dSmrg#include "test.h"
9428d7b3dSmrg
10428d7b3dSmrgstatic const uint8_t ops[] = {
11428d7b3dSmrg	PictOpClear,
12428d7b3dSmrg	PictOpSrc,
13428d7b3dSmrg	PictOpDst,
14428d7b3dSmrg};
15428d7b3dSmrg
16428d7b3dSmrgstatic void fill_rect(struct test_display *dpy, Picture p, uint8_t op,
17428d7b3dSmrg		      int x, int y, int w, int h,
18428d7b3dSmrg		      uint8_t red, uint8_t green, uint8_t blue, uint8_t alpha)
19428d7b3dSmrg{
20428d7b3dSmrg	XRenderColor render_color;
21428d7b3dSmrg
22428d7b3dSmrg	render_color.red   = red * alpha;
23428d7b3dSmrg	render_color.green = green * alpha;
24428d7b3dSmrg	render_color.blue  = blue * alpha;
25428d7b3dSmrg	render_color.alpha = alpha << 8;
26428d7b3dSmrg
27428d7b3dSmrg	XRenderFillRectangle(dpy->dpy, op, p, &render_color, x, y, w,h);
28428d7b3dSmrg}
29428d7b3dSmrg
30428d7b3dSmrgstatic void pixel_tests(struct test *t, int reps, int sets, enum target target)
31428d7b3dSmrg{
32428d7b3dSmrg	struct test_target tt;
33428d7b3dSmrg	XImage image;
34428d7b3dSmrg	uint32_t *cells = malloc(t->out.width*t->out.height*4);
35428d7b3dSmrg	struct {
36428d7b3dSmrg		uint16_t x, y;
37428d7b3dSmrg	} *pixels = malloc(reps*sizeof(*pixels));
38428d7b3dSmrg	int r, s;
39428d7b3dSmrg
40428d7b3dSmrg	test_target_create_render(&t->out, target, &tt);
41428d7b3dSmrg
42428d7b3dSmrg	printf("Testing setting of single pixels (%s): ",
43428d7b3dSmrg	       test_target_name(target));
44428d7b3dSmrg	fflush(stdout);
45428d7b3dSmrg
46428d7b3dSmrg	for (s = 0; s < sets; s++) {
47428d7b3dSmrg		for (r = 0; r < reps; r++) {
48428d7b3dSmrg			int x = rand() % (tt.width - 1);
49428d7b3dSmrg			int y = rand() % (tt.height - 1);
50428d7b3dSmrg			int red = rand() % 0xff;
51428d7b3dSmrg			int green = rand() % 0xff;
52428d7b3dSmrg			int blue = rand() % 0xff;
53428d7b3dSmrg			int alpha = rand() % 0xff;
54428d7b3dSmrg
55428d7b3dSmrg			fill_rect(&t->out, tt.picture, PictOpSrc,
56428d7b3dSmrg				  x, y, 1, 1,
57428d7b3dSmrg				  red, green, blue, alpha);
58428d7b3dSmrg
59428d7b3dSmrg			pixels[r].x = x;
60428d7b3dSmrg			pixels[r].y = y;
61428d7b3dSmrg			cells[y*tt.width+x] = color(red, green, blue, alpha);
62428d7b3dSmrg		}
63428d7b3dSmrg
64428d7b3dSmrg		test_init_image(&image, &t->out.shm, tt.format, 1, 1);
65428d7b3dSmrg
66428d7b3dSmrg		for (r = 0; r < reps; r++) {
67428d7b3dSmrg			uint32_t result;
68428d7b3dSmrg			uint32_t x = pixels[r].x;
69428d7b3dSmrg			uint32_t y = pixels[r].y;
70428d7b3dSmrg
71428d7b3dSmrg			XShmGetImage(t->out.dpy, tt.draw, &image,
72428d7b3dSmrg				     x, y, AllPlanes);
73428d7b3dSmrg
74428d7b3dSmrg			result = *(uint32_t *)image.data;
75428d7b3dSmrg			if (!pixel_equal(image.depth, result,
76428d7b3dSmrg					 cells[y*tt.width+x])) {
77428d7b3dSmrg				uint32_t mask = depth_mask(image.depth);
78428d7b3dSmrg				die("failed to set pixel (%d,%d) to %08x [%08x], found %08x [%08x] instead\n",
79428d7b3dSmrg				    x, y,
80428d7b3dSmrg				    cells[y*tt.width+x] & mask,
81428d7b3dSmrg				    cells[y*tt.width+x],
82428d7b3dSmrg				    result & mask);
83428d7b3dSmrg			}
84428d7b3dSmrg		}
85428d7b3dSmrg	}
86428d7b3dSmrg	printf("passed [%d iterations x %d]\n", reps, sets);
87428d7b3dSmrg
88428d7b3dSmrg	test_target_destroy_render(&t->out, &tt);
89428d7b3dSmrg	free(pixels);
90428d7b3dSmrg	free(cells);
91428d7b3dSmrg}
92428d7b3dSmrg
93428d7b3dSmrgstatic void clear(struct test_display *dpy, struct test_target *tt)
94428d7b3dSmrg{
95428d7b3dSmrg	XRenderColor render_color = {0};
96428d7b3dSmrg	XRenderFillRectangle(dpy->dpy, PictOpClear, tt->picture, &render_color,
97428d7b3dSmrg			     0, 0, tt->width, tt->height);
98428d7b3dSmrg}
99428d7b3dSmrg
100428d7b3dSmrgstatic void area_tests(struct test *t, int reps, int sets, enum target target)
101428d7b3dSmrg{
102428d7b3dSmrg	struct test_target tt;
103428d7b3dSmrg	XImage image;
104428d7b3dSmrg	uint32_t *cells = calloc(sizeof(uint32_t), t->out.width*t->out.height);
105428d7b3dSmrg	int r, s, x, y;
106428d7b3dSmrg
107428d7b3dSmrg	printf("Testing area sets (%s): ", test_target_name(target));
108428d7b3dSmrg	fflush(stdout);
109428d7b3dSmrg
110428d7b3dSmrg	test_target_create_render(&t->out, target, &tt);
111428d7b3dSmrg	clear(&t->out, &tt);
112428d7b3dSmrg
113428d7b3dSmrg	test_init_image(&image, &t->out.shm, tt.format, tt.width, tt.height);
114428d7b3dSmrg
115428d7b3dSmrg	for (s = 0; s < sets; s++) {
116428d7b3dSmrg		for (r = 0; r < reps; r++) {
117428d7b3dSmrg			int w = rand() % tt.width;
118428d7b3dSmrg			int h = rand() % tt.height;
119428d7b3dSmrg			int red = rand() % 0xff;
120428d7b3dSmrg			int green = rand() % 0xff;
121428d7b3dSmrg			int blue = rand() % 0xff;
122428d7b3dSmrg			int alpha = rand() % 0xff;
123428d7b3dSmrg
124428d7b3dSmrg			x = rand() % (2*tt.width) - tt.width;
125428d7b3dSmrg			y = rand() % (2*tt.height) - tt.height;
126428d7b3dSmrg
127428d7b3dSmrg			fill_rect(&t->out, tt.picture, PictOpSrc,
128428d7b3dSmrg				  x, y, w, h, red, green, blue, alpha);
129428d7b3dSmrg
130428d7b3dSmrg			if (x < 0)
131428d7b3dSmrg				w += x, x = 0;
132428d7b3dSmrg			if (y < 0)
133428d7b3dSmrg				h += y, y = 0;
134428d7b3dSmrg			if (x >= tt.width || y >= tt.height)
135428d7b3dSmrg				continue;
136428d7b3dSmrg
137428d7b3dSmrg			if (x + w > tt.width)
138428d7b3dSmrg				w = tt.width - x;
139428d7b3dSmrg			if (y + h > tt.height)
140428d7b3dSmrg				h = tt.height - y;
141428d7b3dSmrg			if (w <= 0 || h <= 0)
142428d7b3dSmrg				continue;
143428d7b3dSmrg
144428d7b3dSmrg			pixman_fill(cells, tt.width, 32, x, y, w, h,
145428d7b3dSmrg				    color(red, green, blue, alpha));
146428d7b3dSmrg		}
147428d7b3dSmrg
148428d7b3dSmrg		XShmGetImage(t->out.dpy, tt.draw, &image, 0, 0, AllPlanes);
149428d7b3dSmrg
150428d7b3dSmrg		for (y = 0; y < tt.height; y++) {
151428d7b3dSmrg			for (x = 0; x < tt.width; x++) {
152428d7b3dSmrg				uint32_t result =
153428d7b3dSmrg					*(uint32_t *)(image.data +
154428d7b3dSmrg						      y*image.bytes_per_line +
155428d7b3dSmrg						      image.bits_per_pixel*x/8);
156428d7b3dSmrg				if (!pixel_equal(image.depth, result, cells[y*tt.width+x])) {
157428d7b3dSmrg					uint32_t mask;
158428d7b3dSmrg					if (image.depth == 32)
159428d7b3dSmrg						mask = 0xffffffff;
160428d7b3dSmrg					else
161428d7b3dSmrg						mask = (1 << image.depth) - 1;
162428d7b3dSmrg					die("failed to set pixel (%d,%d) to %08x[%08x], found %08x instead\n",
163428d7b3dSmrg					    x, y,
164428d7b3dSmrg					    cells[y*tt.width+x] & mask,
165428d7b3dSmrg					    cells[y*tt.width+x],
166428d7b3dSmrg					    result & mask);
167428d7b3dSmrg				}
168428d7b3dSmrg			}
169428d7b3dSmrg		}
170428d7b3dSmrg	}
171428d7b3dSmrg
172428d7b3dSmrg	printf("passed [%d iterations x %d]\n", reps, sets);
173428d7b3dSmrg
174428d7b3dSmrg	test_target_destroy_render(&t->out, &tt);
175428d7b3dSmrg	free(cells);
176428d7b3dSmrg}
177428d7b3dSmrg
178428d7b3dSmrgstatic void rect_tests(struct test *t, int reps, int sets, enum target target)
179428d7b3dSmrg{
180428d7b3dSmrg	struct test_target out, ref;
181428d7b3dSmrg	int r, s;
182428d7b3dSmrg
183428d7b3dSmrg	printf("Testing area fills (%s): ", test_target_name(target));
184428d7b3dSmrg	fflush(stdout);
185428d7b3dSmrg
186428d7b3dSmrg	test_target_create_render(&t->out, target, &out);
187428d7b3dSmrg	clear(&t->out, &out);
188428d7b3dSmrg
189428d7b3dSmrg	test_target_create_render(&t->ref, target, &ref);
190428d7b3dSmrg	clear(&t->ref, &ref);
191428d7b3dSmrg
192428d7b3dSmrg	for (s = 0; s < sets; s++) {
193428d7b3dSmrg		for (r = 0; r < reps; r++) {
194428d7b3dSmrg			int x = rand() % (2*out.width) - out.width;
195428d7b3dSmrg			int y = rand() % (2*out.height) - out.height;
196428d7b3dSmrg			int w = rand() % out.width;
197428d7b3dSmrg			int h = rand() % out.height;
198428d7b3dSmrg			int op = ops[rand() % sizeof(ops)];
199428d7b3dSmrg			int red = rand() % 0xff;
200428d7b3dSmrg			int green = rand() % 0xff;
201428d7b3dSmrg			int blue = rand() % 0xff;
202428d7b3dSmrg			int alpha = rand() % 0xff;
203428d7b3dSmrg
204428d7b3dSmrg			fill_rect(&t->out, out.picture,
205428d7b3dSmrg				  op, x, y, w, h,
206428d7b3dSmrg				  red, green, blue, alpha);
207428d7b3dSmrg			fill_rect(&t->ref, ref.picture,
208428d7b3dSmrg				  op, x, y, w, h,
209428d7b3dSmrg				  red, green, blue, alpha);
210428d7b3dSmrg		}
211428d7b3dSmrg
212428d7b3dSmrg		test_compare(t,
213428d7b3dSmrg			     out.draw, out.format,
214428d7b3dSmrg			     ref.draw, ref.format,
215428d7b3dSmrg			     0, 0, out.width, out.height,
216428d7b3dSmrg			     "");
217428d7b3dSmrg	}
218428d7b3dSmrg
219428d7b3dSmrg	printf("passed [%d iterations x %d]\n", reps, sets);
220428d7b3dSmrg
221428d7b3dSmrg	test_target_destroy_render(&t->out, &out);
222428d7b3dSmrg	test_target_destroy_render(&t->ref, &ref);
223428d7b3dSmrg}
224428d7b3dSmrg
225428d7b3dSmrgint main(int argc, char **argv)
226428d7b3dSmrg{
227428d7b3dSmrg	struct test test;
228428d7b3dSmrg	int i;
229428d7b3dSmrg
230428d7b3dSmrg	test_init(&test, argc, argv);
231428d7b3dSmrg
232428d7b3dSmrg	for (i = 0; i <= DEFAULT_ITERATIONS; i++) {
233428d7b3dSmrg		int reps = REPS(i), sets = SETS(i);
234428d7b3dSmrg		enum target t;
235428d7b3dSmrg
236428d7b3dSmrg		for (t = TARGET_FIRST; t <= TARGET_LAST; t++) {
237428d7b3dSmrg			pixel_tests(&test, reps, sets, t);
238428d7b3dSmrg			area_tests(&test, reps, sets, t);
239428d7b3dSmrg			rect_tests(&test, reps, sets, t);
240428d7b3dSmrg		}
241428d7b3dSmrg	}
242428d7b3dSmrg
243428d7b3dSmrg	return 0;
244428d7b3dSmrg}
245