rev |
line source |
eleni@0
|
1 #include <GL/glew.h>
|
eleni@0
|
2 #include <GL/glut.h>
|
elene@9
|
3 #include <GL/glui.h>
|
eleni@0
|
4
|
eleni@0
|
5 #include <stdio.h>
|
eleni@0
|
6 #include <assert.h>
|
eleni@0
|
7
|
elene@9
|
8 #include <vector>
|
elene@9
|
9
|
elene@9
|
10 #include "mesh.h"
|
elene@6
|
11 #include "volume.h"
|
eleni@1
|
12
|
elene@10
|
13 static bool init(void);
|
elene@10
|
14 static GLUI *create_ui(void);
|
elene@10
|
15 static void display(void);
|
elene@10
|
16 static void reshape(int x, int y);
|
elene@10
|
17 static void keyboard(unsigned char key, int x, int y);
|
elene@10
|
18 static void keyboard_up(unsigned char key, int x, int y);
|
elene@10
|
19 static void mouse(int button, int state, int x, int y);
|
elene@10
|
20 static void motion(int x, int y);
|
eleni@0
|
21
|
eleni@0
|
22 static int win_xsz, win_ysz;
|
elene@9
|
23 static float cam_phi, cam_theta, cam_dist = 6;
|
elene@9
|
24 static std::vector<bool> key_state(256);
|
eleni@0
|
25
|
elene@11
|
26 static const char *vol_fname = "data/test1.vol";
|
elene@6
|
27
|
elene@6
|
28 static Volume *vol;
|
elene@9
|
29 static Mesh *mesh;
|
elene@9
|
30 static float cur_z, thres = 0.5;
|
elene@9
|
31
|
elene@9
|
32 static int use_orig_vol_res = 1;
|
elene@9
|
33 static int vol_res[3]; // volume sampling resolution x/y/z
|
elene@9
|
34
|
elene@9
|
35 static GLUI *ui;
|
eleni@1
|
36
|
eleni@0
|
37 int main(int argc, char **argv)
|
eleni@0
|
38 {
|
eleni@0
|
39 glutInit(&argc, argv);
|
elene@7
|
40 glutInitWindowSize(512, 512);
|
elene@11
|
41 glutInitDisplayMode(GLUT_RGB | GLUT_DEPTH | GLUT_DOUBLE);
|
eleni@0
|
42
|
elene@11
|
43 if(argv[1])
|
elene@11
|
44 vol_fname = argv[1];
|
eleni@0
|
45
|
eleni@0
|
46 glutCreateWindow("My Colonoscopie OEO!");
|
eleni@0
|
47
|
eleni@0
|
48 glutDisplayFunc(display);
|
eleni@0
|
49 glutReshapeFunc(reshape);
|
eleni@0
|
50 glutKeyboardFunc(keyboard);
|
elene@9
|
51 glutKeyboardUpFunc(keyboard_up);
|
eleni@0
|
52 glutMouseFunc(mouse);
|
eleni@0
|
53 glutMotionFunc(motion);
|
eleni@0
|
54
|
eleni@0
|
55 glewInit();
|
eleni@1
|
56 if(!init()) {
|
eleni@1
|
57 fprintf(stderr, "Failed to initialize La votre Colonoscopie\n");
|
eleni@1
|
58 return 1;
|
eleni@1
|
59 }
|
eleni@0
|
60
|
eleni@0
|
61 //call init
|
eleni@0
|
62
|
eleni@0
|
63 glutMainLoop();
|
eleni@0
|
64 return 0;
|
eleni@0
|
65 }
|
eleni@0
|
66
|
elene@10
|
67 static bool init()
|
elene@9
|
68 {
|
elene@11
|
69 glEnable(GL_DEPTH_TEST);
|
elene@11
|
70 glEnable(GL_NORMALIZE);
|
elene@11
|
71
|
elene@11
|
72 glEnable(GL_LIGHTING); //TODO: shaders
|
elene@11
|
73 glEnable(GL_LIGHT0);
|
elene@11
|
74 glLightModeli(GL_LIGHT_MODEL_TWO_SIDE, 1);
|
elene@11
|
75
|
elene@9
|
76 vol = new Volume;
|
elene@11
|
77 if(!vol->load(vol_fname)) {
|
elene@11
|
78 fprintf(stderr, "Failed to load %s", vol_fname);
|
elene@9
|
79 return false;
|
elene@9
|
80 }
|
elene@9
|
81 mesh = new Mesh;
|
elene@9
|
82 cur_z = 0.5;
|
elene@9
|
83
|
elene@9
|
84 vol_res[0] = vol->get_slice(0)->get_width();
|
elene@9
|
85 vol_res[1] = vol->get_slice(0)->get_height();
|
elene@9
|
86 vol_res[2] = vol->get_slice_count();
|
elene@9
|
87
|
elene@9
|
88 if(!(ui = create_ui())) {
|
elene@9
|
89 return false;
|
elene@9
|
90 }
|
elene@9
|
91
|
elene@9
|
92 return true;
|
elene@9
|
93 }
|
elene@9
|
94
|
elene@9
|
95 static GLUI_Spinner *res_spin[3];
|
elene@9
|
96 static void toggle_use_orig(int id)
|
elene@9
|
97 {
|
elene@9
|
98 for(int i=0; i<3; i++) {
|
elene@9
|
99 if(use_orig_vol_res) {
|
elene@9
|
100 res_spin[i]->disable();
|
elene@9
|
101 } else {
|
elene@9
|
102 res_spin[i]->enable();
|
elene@9
|
103 }
|
elene@9
|
104 }
|
elene@9
|
105 }
|
elene@9
|
106 static void thres_change(int id)
|
elene@9
|
107 {
|
elene@9
|
108 static float prev_thres = thres;
|
elene@9
|
109
|
elene@9
|
110 if(prev_thres != thres) {
|
elene@9
|
111 prev_thres = thres;
|
elene@9
|
112 mesh->clear();
|
elene@9
|
113 }
|
elene@9
|
114 }
|
elene@10
|
115 static GLUI *create_ui()
|
elene@9
|
116 {
|
elene@9
|
117 GLUI *ui = GLUI_Master.create_glui("ui");
|
elene@9
|
118 assert(ui);
|
elene@9
|
119
|
elene@9
|
120 ui->set_main_gfx_window(glutGetWindow());
|
elene@9
|
121
|
elene@9
|
122 GLUI_Spinner *thres_spin = ui->add_spinner("iso threshold", GLUI_SPINNER_FLOAT, &thres, 0, thres_change);
|
elene@9
|
123 thres_spin->set_float_limits(0, 1);
|
elene@9
|
124
|
elene@9
|
125 GLUI_Panel *res_panel = ui->add_panel("volume resolution");
|
elene@9
|
126
|
elene@9
|
127 ui->add_checkbox_to_panel(res_panel, "original resolution", &use_orig_vol_res, 0, toggle_use_orig);
|
elene@9
|
128
|
elene@9
|
129 static const char *res_spin_name[] = {"x", "y", "z"};
|
elene@9
|
130 for(int i=0; i<3; i++) {
|
elene@9
|
131 res_spin[i] = ui->add_spinner_to_panel(res_panel, res_spin_name[i], GLUI_SPINNER_INT, vol_res + i);
|
elene@9
|
132 res_spin[i]->set_int_limits(8, 256); // TODO limits as arguments or config
|
elene@9
|
133 res_spin[i]->disable();
|
elene@9
|
134 }
|
elene@9
|
135
|
elene@9
|
136 return ui;
|
elene@9
|
137 }
|
elene@9
|
138
|
elene@10
|
139 static void display(void)
|
eleni@0
|
140 {
|
elene@9
|
141 glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
|
elene@9
|
142
|
elene@9
|
143 glMatrixMode(GL_MODELVIEW);
|
elene@9
|
144 glLoadIdentity();
|
elene@9
|
145 glTranslatef(0, 0, -cam_dist);
|
elene@9
|
146 glRotatef(cam_phi, 1, 0, 0);
|
elene@9
|
147 glRotatef(cam_theta, 0, 1, 0);
|
elene@9
|
148
|
elene@9
|
149 /*
|
elene@6
|
150 glBindTexture(GL_TEXTURE_3D, vol->get_texture());
|
elene@6
|
151 glEnable(GL_TEXTURE_3D);
|
eleni@1
|
152 glBegin(GL_QUADS);
|
elene@6
|
153 glTexCoord3f(0, 0, cur_z); glVertex3f(-1, -1, 0);
|
elene@6
|
154 glTexCoord3f(0, 1, cur_z); glVertex3f(-1, 1, 0);
|
elene@6
|
155 glTexCoord3f(1, 1, cur_z); glVertex3f(1, 1, 0);
|
elene@6
|
156 glTexCoord3f(1, 0, cur_z); glVertex3f(1, -1, 0);
|
eleni@1
|
157 glEnd();
|
elene@6
|
158 glDisable(GL_TEXTURE_3D);
|
elene@9
|
159 */
|
eleni@0
|
160
|
elene@9
|
161 if(mesh->is_empty()) {
|
elene@9
|
162 printf("recalculating isosurface ... ");
|
elene@9
|
163 fflush(stdout);
|
elene@9
|
164 vol->create_mesh(mesh, thres);
|
elene@9
|
165 printf("done.\n");
|
elene@9
|
166 }
|
elene@9
|
167 mesh->draw();
|
elene@9
|
168
|
elene@9
|
169 //TODO: draw threshold
|
eleni@0
|
170 glutSwapBuffers();
|
eleni@0
|
171 assert(glGetError() == GL_NO_ERROR);
|
eleni@0
|
172 }
|
eleni@0
|
173
|
elene@10
|
174 static void reshape(int x, int y)
|
eleni@0
|
175 {
|
eleni@0
|
176 glViewport(0, 0, x, y);
|
elene@9
|
177 glMatrixMode(GL_PROJECTION);
|
elene@9
|
178 glLoadIdentity();
|
elene@9
|
179 gluPerspective(45, (float)x / (float)y, 0.5, 500);
|
elene@9
|
180
|
eleni@0
|
181 if(x != win_xsz || y != win_ysz) {
|
eleni@0
|
182 win_xsz = x;
|
eleni@0
|
183 win_ysz = y;
|
eleni@0
|
184 }
|
eleni@0
|
185 }
|
eleni@0
|
186
|
elene@10
|
187 static void keyboard(unsigned char key, int x, int y)
|
eleni@0
|
188 {
|
elene@9
|
189 key_state[(int)key] = true;
|
elene@9
|
190
|
eleni@0
|
191 switch(key) {
|
eleni@0
|
192 case 27:
|
eleni@0
|
193 exit(0);
|
elene@9
|
194 case 'w':
|
elene@9
|
195 {
|
elene@9
|
196 static bool wire;
|
elene@9
|
197 wire = !wire;
|
elene@9
|
198 glPolygonMode(GL_FRONT_AND_BACK, wire ? GL_LINE : GL_FILL);
|
elene@9
|
199 }
|
elene@9
|
200 break;
|
eleni@0
|
201 default:
|
eleni@0
|
202 break;
|
eleni@0
|
203 }
|
eleni@0
|
204 }
|
eleni@0
|
205
|
elene@10
|
206 static void keyboard_up(unsigned char key, int x, int y)
|
elene@9
|
207 {
|
elene@9
|
208 key_state[(int) key] = false;
|
elene@9
|
209 }
|
elene@9
|
210
|
eleni@0
|
211 static int prev_x, prev_y;
|
elene@9
|
212 static bool bn_state[32];
|
elene@9
|
213 static float prev_thres;
|
elene@9
|
214
|
elene@10
|
215 static void mouse(int bn, int state, int x, int y)
|
eleni@0
|
216 {
|
eleni@0
|
217 prev_x = x;
|
eleni@0
|
218 prev_y = y;
|
elene@9
|
219
|
elene@9
|
220 bn_state[bn - GLUT_LEFT_BUTTON] = (state == GLUT_DOWN);
|
elene@9
|
221
|
elene@9
|
222 if(state == GLUT_DOWN) {
|
elene@9
|
223 prev_thres = thres;
|
elene@9
|
224 }
|
elene@9
|
225 else {
|
elene@9
|
226 if(thres != prev_thres) {
|
elene@9
|
227 mesh->clear();
|
elene@9
|
228 }
|
elene@9
|
229 }
|
eleni@0
|
230 }
|
eleni@0
|
231
|
elene@10
|
232 static void motion(int x, int y)
|
eleni@0
|
233 {
|
eleni@0
|
234 int dx = x - prev_x;
|
eleni@0
|
235 int dy = y - prev_y;
|
elene@9
|
236
|
elene@9
|
237 if(!dx && !dy)
|
elene@9
|
238 return;
|
elene@9
|
239
|
eleni@0
|
240 prev_x = x;
|
eleni@0
|
241 prev_y = y;
|
elene@6
|
242
|
elene@9
|
243 if(key_state[(int)'t']) {
|
elene@9
|
244 thres = (float)x / (float)win_xsz;
|
elene@9
|
245 printf("threshold: %f\n", thres);
|
elene@9
|
246
|
elene@9
|
247 glutPostRedisplay();
|
elene@9
|
248 return;
|
elene@9
|
249 }
|
elene@9
|
250
|
elene@9
|
251 // camera
|
elene@9
|
252 if(bn_state[0]) {
|
elene@9
|
253 if(key_state[(int)'z']) {
|
elene@9
|
254 //zoom the camera
|
elene@9
|
255
|
elene@9
|
256 cam_dist += dy * 0.1;
|
elene@9
|
257
|
elene@9
|
258 if(cam_dist < 0)
|
elene@9
|
259 cam_dist = 0;
|
elene@9
|
260 }
|
elene@9
|
261 else {
|
elene@9
|
262 //rotate the camera
|
elene@9
|
263
|
elene@9
|
264 cam_phi += dy * 0.5;
|
elene@9
|
265 cam_theta += dx * 0.5;
|
elene@9
|
266
|
elene@9
|
267 if(cam_phi > 90)
|
elene@9
|
268 cam_phi = 90;
|
elene@9
|
269 if(cam_phi < -90)
|
elene@9
|
270 cam_phi = -90;
|
elene@9
|
271 }
|
elene@9
|
272
|
elene@6
|
273 glutPostRedisplay();
|
elene@6
|
274 }
|
eleni@0
|
275 }
|