blob: 04c1cfcbcb4bb70730b012e2099d506390994044 [file] [log] [blame]
Rob Bradfordbf33b1c2012-12-03 19:44:15 +00001/*
2 * Copyright © 2012 Intel Corporation
3 *
Bryce Harrington1f6b0d12015-06-10 22:48:59 -07004 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
Rob Bradfordbf33b1c2012-12-03 19:44:15 +000010 *
Bryce Harrington1f6b0d12015-06-10 22:48:59 -070011 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
21 * DEALINGS IN THE SOFTWARE.
Rob Bradfordbf33b1c2012-12-03 19:44:15 +000022 */
23
Andrew Wedgbury9cd661e2014-04-07 12:40:35 +010024#include "config.h"
25
Rob Bradfordbf33b1c2012-12-03 19:44:15 +000026#include <stdint.h>
27#include <stdio.h>
28#include <stdlib.h>
29#include <string.h>
30#include <cairo.h>
31#include <math.h>
32#include <assert.h>
33
34#include <linux/input.h>
35#include <wayland-client.h>
36
37#include "window.h"
Jon Cruz35b2eaa2015-06-15 15:37:08 -070038#include "shared/helpers.h"
Jon Cruz4678bab2015-06-15 15:37:07 -070039#include "shared/matrix.h"
Rob Bradfordbf33b1c2012-12-03 19:44:15 +000040
Rob Bradfordbf33b1c2012-12-03 19:44:15 +000041/* Our points for the calibration must be not be on a line */
42static const struct {
43 float x_ratio, y_ratio;
44} test_ratios[] = {
45 { 0.20, 0.40 },
46 { 0.80, 0.60 },
47 { 0.40, 0.80 }
48};
49
50struct calibrator {
51 struct tests {
52 int32_t drawn_x, drawn_y;
53 int32_t clicked_x, clicked_y;
54 } tests[ARRAY_LENGTH(test_ratios)];
55 int current_test;
56
57 struct display *display;
58 struct window *window;
59 struct widget *widget;
60};
61
62/*
63 * Calibration algorithm:
64 *
65 * The equation we want to apply at event time where x' and y' are the
66 * calibrated co-ordinates.
67 *
68 * x' = Ax + By + C
69 * y' = Dx + Ey + F
70 *
71 * For example "zero calibration" would be A=1.0 B=0.0 C=0.0, D=0.0, E=1.0,
72 * and F=0.0.
73 *
74 * With 6 unknowns we need 6 equations to find the constants:
75 *
76 * x1' = Ax1 + By1 + C
77 * y1' = Dx1 + Ey1 + F
78 * ...
79 * x3' = Ax3 + By3 + C
80 * y3' = Dx3 + Ey3 + F
81 *
82 * In matrix form:
83 *
84 * x1' x1 y1 1 A
85 * x2' = x2 y2 1 x B
86 * x3' x3 y3 1 C
87 *
88 * So making the matrix M we can find the constants with:
89 *
90 * A x1'
91 * B = M^-1 x x2'
92 * C x3'
93 *
94 * (and similarly for D, E and F)
95 *
96 * For the calibration the desired values x, y are the same values at which
97 * we've drawn at.
98 *
99 */
100static void
101finish_calibration (struct calibrator *calibrator)
102{
103 struct weston_matrix m;
104 struct weston_matrix inverse;
105 struct weston_vector x_calib, y_calib;
106 int i;
107
108
109 /*
110 * x1 y1 1 0
111 * x2 y2 1 0
112 * x3 y3 1 0
113 * 0 0 0 1
114 */
115 memset(&m, 0, sizeof(m));
116 for (i = 0; i < (int)ARRAY_LENGTH(test_ratios); i++) {
117 m.d[i] = calibrator->tests[i].clicked_x;
118 m.d[i + 4] = calibrator->tests[i].clicked_y;
119 m.d[i + 8] = 1;
120 }
121 m.d[15] = 1;
122
123 weston_matrix_invert(&inverse, &m);
124
125 memset(&x_calib, 0, sizeof(x_calib));
126 memset(&y_calib, 0, sizeof(y_calib));
127
128 for (i = 0; i < (int)ARRAY_LENGTH(test_ratios); i++) {
129 x_calib.f[i] = calibrator->tests[i].drawn_x;
130 y_calib.f[i] = calibrator->tests[i].drawn_y;
131 }
132
133 /* Multiples into the vector */
134 weston_matrix_transform(&inverse, &x_calib);
135 weston_matrix_transform(&inverse, &y_calib);
136
137 printf ("Calibration values: %f %f %f %f %f %f\n",
138 x_calib.f[0], x_calib.f[1], x_calib.f[2],
139 y_calib.f[0], y_calib.f[1], y_calib.f[2]);
140
141 exit(0);
142}
143
144
145static void
146button_handler(struct widget *widget,
147 struct input *input, uint32_t time,
148 uint32_t button,
149 enum wl_pointer_button_state state, void *data)
150{
151 struct calibrator *calibrator = data;
152 int32_t x, y;
153
154 if (state == WL_POINTER_BUTTON_STATE_PRESSED && button == BTN_LEFT) {
155 input_get_position(input, &x, &y);
156 calibrator->tests[calibrator->current_test].clicked_x = x;
157 calibrator->tests[calibrator->current_test].clicked_y = y;
158
159 calibrator->current_test--;
160 if (calibrator->current_test < 0)
161 finish_calibration(calibrator);
162 }
163
164 widget_schedule_redraw(widget);
165}
166
167static void
Rusty Lynch1084da52013-08-15 09:10:08 -0700168touch_handler(struct widget *widget, struct input *input, uint32_t serial,
169 uint32_t time, int32_t id, float x, float y, void *data)
Rusty Lynch3ba12632013-08-08 21:24:19 -0700170{
171 struct calibrator *calibrator = data;
172
173 calibrator->tests[calibrator->current_test].clicked_x = x;
174 calibrator->tests[calibrator->current_test].clicked_y = y;
175 calibrator->current_test--;
176
177 if (calibrator->current_test < 0)
178 finish_calibration(calibrator);
179
180 widget_schedule_redraw(widget);
181}
182
183static void
Rob Bradfordbf33b1c2012-12-03 19:44:15 +0000184redraw_handler(struct widget *widget, void *data)
185{
186 struct calibrator *calibrator = data;
187 struct rectangle allocation;
188 cairo_surface_t *surface;
189 cairo_t *cr;
190 int32_t drawn_x, drawn_y;
191
192 widget_get_allocation(calibrator->widget, &allocation);
193 surface = window_get_surface(calibrator->window);
194
195 cr = cairo_create(surface);
196 cairo_set_operator(cr, CAIRO_OPERATOR_SOURCE);
197 cairo_set_source_rgba(cr, 1.0, 1.0, 1.0, 1.0);
198 cairo_paint(cr);
199
200 drawn_x = test_ratios[calibrator->current_test].x_ratio * allocation.width;
201 drawn_y = test_ratios[calibrator->current_test].y_ratio * allocation.height;
202
203 calibrator->tests[calibrator->current_test].drawn_x = drawn_x;
204 calibrator->tests[calibrator->current_test].drawn_y = drawn_y;
205
206 cairo_translate(cr, drawn_x, drawn_y);
207 cairo_set_line_width(cr, 2.0);
208 cairo_set_source_rgb(cr, 1.0, 0.0, 0.0);
209 cairo_move_to(cr, 0, -10.0);
210 cairo_line_to(cr, 0, 10.0);
211 cairo_stroke(cr);
212 cairo_move_to(cr, -10.0, 0);
213 cairo_line_to(cr, 10.0, 0.0);
214 cairo_stroke(cr);
215
216 cairo_destroy(cr);
217 cairo_surface_destroy(surface);
218}
219
220static struct calibrator *
221calibrator_create(struct display *display)
222{
223 struct calibrator *calibrator;
224
225 calibrator = malloc(sizeof *calibrator);
226 if (calibrator == NULL)
227 return NULL;
228
229 calibrator->window = window_create(display);
230 calibrator->widget = window_add_widget(calibrator->window, calibrator);
231 window_set_title(calibrator->window, "Wayland calibrator");
232 calibrator->display = display;
233
234 calibrator->current_test = ARRAY_LENGTH(test_ratios) - 1;
235
236 widget_set_button_handler(calibrator->widget, button_handler);
Rusty Lynch3ba12632013-08-08 21:24:19 -0700237 widget_set_touch_down_handler(calibrator->widget, touch_handler);
Rob Bradfordbf33b1c2012-12-03 19:44:15 +0000238 widget_set_redraw_handler(calibrator->widget, redraw_handler);
239
240 window_set_fullscreen(calibrator->window, 1);
241
242 return calibrator;
243}
244
245static void
246calibrator_destroy(struct calibrator *calibrator)
247{
248 widget_destroy(calibrator->widget);
249 window_destroy(calibrator->window);
250 free(calibrator);
251}
252
253
254int
255main(int argc, char *argv[])
256{
257 struct display *display;
258 struct calibrator *calibrator;
259
Kristian Høgsberg4172f662013-02-20 15:27:49 -0500260 display = display_create(&argc, argv);
Rob Bradfordbf33b1c2012-12-03 19:44:15 +0000261
262 if (display == NULL) {
263 fprintf(stderr, "failed to create display: %m\n");
264 return -1;
265 }
266
267 calibrator = calibrator_create(display);
268
269 if (!calibrator)
270 return -1;
271
272 display_run(display);
273
274 calibrator_destroy(calibrator);
275 display_destroy(display);
276
277 return 0;
278}
279