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Avoid executing "configure" until after realize
[grits] / src / grits-opengl.c
1 /*
2  * Copyright (C) 2009-2010 Andy Spencer <andy753421@gmail.com>
3  *
4  * This program is free software: you can redistribute it and/or modify
5  * it under the terms of the GNU General Public License as published by
6  * the Free Software Foundation, either version 3 of the License, or
7  * (at your option) any later version.
8  *
9  * This program is distributed in the hope that it will be useful,
10  * but WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12  * GNU General Public License for more details.
13  *
14  * You should have received a copy of the GNU General Public License
15  * along with this program.  If not, see <http://www.gnu.org/licenses/>.
16  */
17
18 /**
19  * SECTION:gis-opengl
20  * @short_description: OpenGL based virtual globe
21  *
22  * #GisOpenGL is the core rendering engine used by libgis. Theoretically other
23  * renderers could be writte, but they have not been. GisOpenGL uses the ROAM
24  * algorithm for updating surface mesh the planet. The only thing GisOpenGL can
25  * actually render on it's own is a wireframe of a sphere.
26  *
27  * GisOpenGL relies on #GtkGlExt and requires (at least) OpenGL 2.0.
28  */
29
30 #include <config.h>
31 #include <math.h>
32 #include <string.h>
33 #include <gdk/gdkkeysyms.h>
34 #include <gtk/gtk.h>
35 #include <gtk/gtkgl.h>
36 #include <GL/gl.h>
37 #include <GL/glu.h>
38
39 #include "gis-opengl.h"
40 #include "gis-util.h"
41 #include "roam.h"
42
43 #include "objects/gis-object.h"
44 #include "objects/gis-marker.h"
45 #include "objects/gis-callback.h"
46
47 // #define ROAM_DEBUG
48
49 /* Tessellation, "finding intersecting triangles" */
50 /* http://research.microsoft.com/pubs/70307/tr-2006-81.pdf */
51 /* http://www.opengl.org/wiki/Alpha_Blending */
52
53 /***********
54  * Helpers *
55  ***********/
56 static void _set_visuals(GisOpenGL *opengl)
57 {
58         glMatrixMode(GL_MODELVIEW);
59         glLoadIdentity();
60
61         /* Camera 1 */
62         double lat, lon, elev, rx, ry, rz;
63         gis_viewer_get_location(GIS_VIEWER(opengl), &lat, &lon, &elev);
64         gis_viewer_get_rotation(GIS_VIEWER(opengl), &rx, &ry, &rz);
65         glRotatef(rx, 1, 0, 0);
66         glRotatef(rz, 0, 0, 1);
67
68         /* Lighting */
69 #ifdef ROAM_DEBUG
70         float light_ambient[]  = {0.7f, 0.7f, 0.7f, 1.0f};
71         float light_diffuse[]  = {2.0f, 2.0f, 2.0f, 1.0f};
72 #else
73         float light_ambient[]  = {0.2f, 0.2f, 0.2f, 1.0f};
74         float light_diffuse[]  = {5.0f, 5.0f, 5.0f, 1.0f};
75 #endif
76         float light_position[] = {-13*EARTH_R, 1*EARTH_R, 3*EARTH_R, 1.0f};
77         glLightfv(GL_LIGHT0, GL_AMBIENT,  light_ambient);
78         glLightfv(GL_LIGHT0, GL_DIFFUSE,  light_diffuse);
79         glLightfv(GL_LIGHT0, GL_POSITION, light_position);
80         glEnable(GL_LIGHT0);
81         glEnable(GL_LIGHTING);
82
83         float material_ambient[]  = {0.2, 0.2, 0.2, 1.0};
84         float material_diffuse[]  = {0.8, 0.8, 0.8, 1.0};
85         float material_specular[] = {0.1, 0.1, 0.1, 1.0};
86         float material_emission[] = {0.0, 0.0, 0.0, 1.0};
87         glMaterialfv(GL_FRONT_AND_BACK, GL_AMBIENT,  material_ambient);
88         glMaterialfv(GL_FRONT_AND_BACK, GL_DIFFUSE,  material_diffuse);
89         glMaterialfv(GL_FRONT_AND_BACK, GL_SPECULAR, material_specular);
90         glMaterialfv(GL_FRONT_AND_BACK, GL_EMISSION, material_emission);
91         glDisable(GL_TEXTURE_2D);
92         glDisable(GL_COLOR_MATERIAL);
93
94         /* Camera 2 */
95         glTranslatef(0, 0, -elev2rad(elev));
96         glRotatef(lat, 1, 0, 0);
97         glRotatef(-lon, 0, 1, 0);
98
99         glDisable(GL_ALPHA_TEST);
100
101         glBlendFunc(GL_SRC_ALPHA, GL_ONE_MINUS_SRC_ALPHA);
102         glEnable(GL_BLEND);
103
104 #ifndef ROAM_DEBUG
105         glCullFace(GL_BACK);
106         glEnable(GL_CULL_FACE);
107 #endif
108
109         glClearDepth(1.0);
110         glDepthFunc(GL_LEQUAL);
111         glEnable(GL_DEPTH_TEST);
112
113         glEnable(GL_LINE_SMOOTH);
114
115         glPolygonMode(GL_FRONT_AND_BACK, GL_FILL);
116         //glShadeModel(GL_FLAT);
117
118         g_mutex_lock(opengl->sphere_lock);
119         roam_sphere_update_view(opengl->sphere);
120         g_mutex_unlock(opengl->sphere_lock);
121 }
122
123
124 /********************
125  * Object handleing *
126  ********************/
127 static void _draw_tile(GisOpenGL *opengl, GisTile *tile, GList *triangles)
128 {
129         if (!tile || !tile->data)
130                 return;
131         if (!triangles)
132                 g_warning("GisOpenGL: _draw_tiles - No triangles to draw: edges=%f,%f,%f,%f",
133                         tile->edge.n, tile->edge.s, tile->edge.e, tile->edge.w);
134         //g_message("drawing %4d triangles for tile edges=%7.2f,%7.2f,%7.2f,%7.2f",
135         //              g_list_length(triangles), tile->edge.n, tile->edge.s, tile->edge.e, tile->edge.w);
136         gdouble n = tile->edge.n;
137         gdouble s = tile->edge.s;
138         gdouble e = tile->edge.e;
139         gdouble w = tile->edge.w;
140
141         gdouble londist = e - w;
142         gdouble latdist = n - s;
143
144         gdouble xscale = tile->coords.e - tile->coords.w;
145         gdouble yscale = tile->coords.s - tile->coords.n;
146
147         for (GList *cur = triangles; cur; cur = cur->next) {
148                 RoamTriangle *tri = cur->data;
149
150                 gdouble lat[3] = {tri->p.r->lat, tri->p.m->lat, tri->p.l->lat};
151                 gdouble lon[3] = {tri->p.r->lon, tri->p.m->lon, tri->p.l->lon};
152
153                 if (lon[0] < -90 || lon[1] < -90 || lon[2] < -90) {
154                         if (lon[0] > 90) lon[0] -= 360;
155                         if (lon[1] > 90) lon[1] -= 360;
156                         if (lon[2] > 90) lon[2] -= 360;
157                 }
158
159                 gdouble xy[3][2] = {
160                         {(lon[0]-w)/londist, 1-(lat[0]-s)/latdist},
161                         {(lon[1]-w)/londist, 1-(lat[1]-s)/latdist},
162                         {(lon[2]-w)/londist, 1-(lat[2]-s)/latdist},
163                 };
164
165                 //if ((lat[0] == 90 && (xy[0][0] < 0 || xy[0][0] > 1)) ||
166                 //    (lat[1] == 90 && (xy[1][0] < 0 || xy[1][0] > 1)) ||
167                 //    (lat[2] == 90 && (xy[2][0] < 0 || xy[2][0] > 1)))
168                 //      g_message("w,e=%4.f,%4.f   "
169                 //                "lat,lon,x,y="
170                 //                "%4.1f,%4.0f,%4.2f,%4.2f   "
171                 //                "%4.1f,%4.0f,%4.2f,%4.2f   "
172                 //                "%4.1f,%4.0f,%4.2f,%4.2f   ",
173                 //              w,e,
174                 //              lat[0], lon[0], xy[0][0], xy[0][1],
175                 //              lat[1], lon[1], xy[1][0], xy[1][1],
176                 //              lat[2], lon[2], xy[2][0], xy[2][1]);
177
178                 /* Fix poles */
179                 if (lat[0] == 90 || lat[0] == -90) xy[0][0] = 0.5;
180                 if (lat[1] == 90 || lat[1] == -90) xy[1][0] = 0.5;
181                 if (lat[2] == 90 || lat[2] == -90) xy[2][0] = 0.5;
182
183                 /* Scale to tile coords */
184                 for (int i = 0; i < 3; i++) {
185                         xy[i][0] = tile->coords.w + xy[i][0]*xscale;
186                         xy[i][1] = tile->coords.n + xy[i][1]*yscale;
187                 }
188
189                 glEnable(GL_TEXTURE_2D);
190                 glEnable(GL_POLYGON_OFFSET_FILL);
191                 glBindTexture(GL_TEXTURE_2D, *(guint*)tile->data);
192                 glPolygonOffset(0, -tile->zindex);
193                 glBegin(GL_TRIANGLES);
194                 glNormal3dv(tri->p.r->norm); glTexCoord2dv(xy[0]); glVertex3dv((double*)tri->p.r);
195                 glNormal3dv(tri->p.m->norm); glTexCoord2dv(xy[1]); glVertex3dv((double*)tri->p.m);
196                 glNormal3dv(tri->p.l->norm); glTexCoord2dv(xy[2]); glVertex3dv((double*)tri->p.l);
197                 glEnd();
198         }
199 }
200
201 static void _draw_tiles(GisOpenGL *opengl, GisTile *tile)
202 {
203         /* Only draw children if possible */
204         gboolean has_children = FALSE;
205         GisTile *child;
206         gis_tile_foreach(tile, child)
207                 if (child && child->data)
208                         has_children = TRUE;
209
210         GList *triangles = NULL;
211         if (has_children) {
212                 /* TODO: simplify this */
213                 const gdouble rows = G_N_ELEMENTS(tile->children);
214                 const gdouble cols = G_N_ELEMENTS(tile->children[0]);
215                 const gdouble lat_dist = tile->edge.n - tile->edge.s;
216                 const gdouble lon_dist = tile->edge.e - tile->edge.w;
217                 const gdouble lat_step = lat_dist / rows;
218                 const gdouble lon_step = lon_dist / cols;
219                 int row, col;
220                 gis_tile_foreach_index(tile, row, col) {
221                         GisTile *child = tile->children[row][col];
222                         if (child && child->data) {
223                                 _draw_tiles(opengl, child);
224                         } else {
225                                 const gdouble n = tile->edge.n-(lat_step*(row+0));
226                                 const gdouble s = tile->edge.n-(lat_step*(row+1));
227                                 const gdouble e = tile->edge.w+(lon_step*(col+1));
228                                 const gdouble w = tile->edge.w+(lon_step*(col+0));
229                                 GList *these = roam_sphere_get_intersect(opengl->sphere,
230                                                 FALSE, n, s, e, w);
231                                 triangles = g_list_concat(triangles, these);
232                         }
233                 }
234         } else {
235                 triangles = roam_sphere_get_intersect(opengl->sphere, FALSE,
236                                 tile->edge.n, tile->edge.s, tile->edge.e, tile->edge.w);
237         }
238         if (triangles)
239                 _draw_tile(opengl, tile, triangles);
240         g_list_free(triangles);
241 }
242
243 static void _draw_marker(GisOpenGL *opengl, GisMarker *marker)
244 {
245         GisPoint *point = gis_object_center(marker);
246         gdouble px, py, pz;
247         gis_viewer_project(GIS_VIEWER(opengl),
248                         point->lat, point->lon, point->elev,
249                         &px, &py, &pz);
250
251         gint win_width  = GTK_WIDGET(opengl)->allocation.width;
252         gint win_height = GTK_WIDGET(opengl)->allocation.height;
253         py = win_height - py;
254         if (pz > 1)
255                 return;
256
257         //g_debug("GisOpenGL: draw_marker - %s pz=%f ", marker->label, pz);
258
259         cairo_surface_t *surface = cairo_get_target(marker->cairo);
260         gdouble width  = cairo_image_surface_get_width(surface);
261         gdouble height = cairo_image_surface_get_height(surface);
262
263         glMatrixMode(GL_PROJECTION); glLoadIdentity();
264         glMatrixMode(GL_MODELVIEW);  glLoadIdentity();
265         glOrtho(0, win_width, win_height, 0, -1, 1);
266         glTranslated(px - marker->xoff,
267                      py - marker->yoff, 0);
268
269         glDisable(GL_LIGHTING);
270         glDisable(GL_COLOR_MATERIAL);
271         glDisable(GL_DEPTH_TEST);
272         glEnable(GL_TEXTURE_2D);
273         glBindTexture(GL_TEXTURE_2D, marker->tex);
274         glDisable(GL_CULL_FACE);
275         glBegin(GL_QUADS);
276         glTexCoord2f(1, 0); glVertex3f(width, 0     , 0);
277         glTexCoord2f(1, 1); glVertex3f(width, height, 0);
278         glTexCoord2f(0, 1); glVertex3f(0    , height, 0);
279         glTexCoord2f(0, 0); glVertex3f(0    , 0     , 0);
280         glEnd();
281 }
282
283 static void _draw_callback(GisOpenGL *opengl, GisCallback *callback)
284 {
285         callback->callback(callback, callback->user_data);
286 }
287
288 static void _draw_object(GisOpenGL *opengl, GisObject *object)
289 {
290         //g_debug("GisOpenGL: draw_object");
291         /* Skip hidden objects */
292         if (object->hidden)
293                 return;
294
295         /* Skip out of range objects */
296         if (object->lod > 0) {
297                 /* LOD test */
298                 gdouble eye[3], obj[3];
299                 gis_viewer_get_location(GIS_VIEWER(opengl), &eye[0], &eye[1], &eye[2]);
300                 gdouble elev = eye[2];
301                 lle2xyz(eye[0], eye[1], eye[2], &eye[0], &eye[1], &eye[2]);
302                 lle2xyz(object->center.lat, object->center.lon, object->center.elev,
303                         &obj[0], &obj[1], &obj[2]);
304                 gdouble dist = distd(obj, eye);
305                 if (object->lod < dist)
306                         return;
307
308                 /* Horizon testing */
309                 gdouble c = EARTH_R+elev;
310                 gdouble a = EARTH_R;
311                 gdouble horizon = sqrt(c*c - a*a);
312                 if (dist > horizon)
313                         return;
314         }
315
316         /* Draw */
317         glMatrixMode(GL_PROJECTION); glPushMatrix();
318         glMatrixMode(GL_MODELVIEW);  glPushMatrix();
319         glPushAttrib(GL_ALL_ATTRIB_BITS);
320         if (GIS_IS_MARKER(object)) {
321                 _draw_marker(opengl, GIS_MARKER(object));
322         } else if (GIS_IS_CALLBACK(object)) {
323                 _draw_callback(opengl, GIS_CALLBACK(object));
324         } else if (GIS_IS_TILE(object)) {
325                 glEnable(GL_DEPTH_TEST);
326                 glDepthFunc(GL_LESS);
327                 g_mutex_lock(opengl->sphere_lock);
328                 _draw_tiles(opengl, GIS_TILE(object));
329                 g_mutex_unlock(opengl->sphere_lock);
330         }
331         glPopAttrib();
332         glMatrixMode(GL_PROJECTION); glPopMatrix();
333         glMatrixMode(GL_MODELVIEW);  glPopMatrix();
334 }
335
336 static void _load_object(GisOpenGL *opengl, GisObject *object)
337 {
338         //g_debug("GisOpenGL: load_object");
339         if (GIS_IS_MARKER(object)) {
340                 GisMarker *marker = GIS_MARKER(object);
341                 cairo_surface_t *surface = cairo_get_target(marker->cairo);
342                 gdouble width  = cairo_image_surface_get_width(surface);
343                 gdouble height = cairo_image_surface_get_height(surface);
344
345                 glEnable(GL_TEXTURE_2D);
346                 glGenTextures(1, &marker->tex);
347                 glBindTexture(GL_TEXTURE_2D, marker->tex);
348
349                 glPixelStorei(GL_UNPACK_ALIGNMENT, 1);
350                 glPixelStorei(GL_PACK_ALIGNMENT, 1);
351                 glTexImage2D(GL_TEXTURE_2D, 0, 4, width, height, 0, GL_RGBA, GL_UNSIGNED_BYTE,
352                                 cairo_image_surface_get_data(surface));
353                 glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST);
354                 glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_NEAREST);
355                 //g_debug("load_texture: %d", marker->tex);
356         }
357 }
358
359 static void _unload_object(GisOpenGL *opengl, GisObject *object)
360 {
361         //g_debug("GisOpenGL: unload_object");
362         if (GIS_IS_MARKER(object)) {
363                 GisMarker *marker = GIS_MARKER(object);
364                 glDeleteTextures(1, &marker->tex);
365         }
366 }
367
368
369 /*************
370  * Callbacks *
371  *************/
372 /* The unsorted/sroted GLists are blank head nodes,
373  * This way us we can remove objects from the level just by fixing up links
374  * I.e. we don't need to do a lookup to remove an object if we have its GList */
375 struct RenderLevel {
376         GList unsorted;
377         GList sorted;
378 };
379
380 static gboolean on_configure(GisOpenGL *opengl, GdkEventConfigure *event, gpointer _)
381 {
382         g_debug("GisOpenGL: on_configure");
383
384         /* wait for "realize" */
385         if (!gdk_gl_context_get_current())
386                 return FALSE;
387
388         double width  = GTK_WIDGET(opengl)->allocation.width;
389         double height = GTK_WIDGET(opengl)->allocation.height;
390
391         /* Setup OpenGL Window */
392         glViewport(0, 0, width, height);
393         glMatrixMode(GL_PROJECTION);
394         glLoadIdentity();
395         double ang = atan(height/FOV_DIST);
396         gluPerspective(rad2deg(ang)*2, width/height, 1000, 10*EARTH_R);
397
398 #ifndef ROAM_DEBUG
399         g_mutex_lock(opengl->sphere_lock);
400         roam_sphere_update_errors(opengl->sphere);
401         g_mutex_unlock(opengl->sphere_lock);
402 #endif
403
404         return FALSE;
405 }
406
407 static void on_realize(GisOpenGL *opengl, gpointer _)
408 {
409         g_debug("GisOpenGL: on_realize");
410
411         GdkGLContext   *glcontext  = gtk_widget_get_gl_context(GTK_WIDGET(opengl));
412         GdkGLDrawable  *gldrawable = gtk_widget_get_gl_drawable(GTK_WIDGET(opengl));
413         if (!gdk_gl_drawable_gl_begin(gldrawable, glcontext))
414                 g_assert_not_reached();
415
416         _set_visuals(opengl);
417         on_configure(opengl, NULL, NULL);
418 }
419
420 static gboolean _draw_level(gpointer key, gpointer value, gpointer user_data)
421 {
422         g_debug("GisOpenGL: _draw_level - level=%-4d", (int)key);
423         GisOpenGL *opengl = user_data;
424         struct RenderLevel *level = value;
425         int nsorted = 0, nunsorted = 0;
426         GList *cur = NULL;
427
428         /* Draw opaque objects without sorting */
429         glDepthMask(TRUE);
430         glClear(GL_DEPTH_BUFFER_BIT);
431         for (cur = level->unsorted.next; cur; cur = cur->next, nunsorted++)
432                 _draw_object(opengl, GIS_OBJECT(cur->data));
433
434         /* Freeze depth buffer and draw transparent objects sorted */
435         /* TODO: sorting */
436         //glDepthMask(FALSE);
437         glAlphaFunc(GL_GREATER, 0.1);
438         for (cur = level->sorted.next; cur; cur = cur->next, nsorted++)
439                 _draw_object(opengl, GIS_OBJECT(cur->data));
440
441         /* TODO: Prune empty levels */
442
443         g_debug("GisOpenGL: _draw_level - drew %d,%d objects",
444                         nunsorted, nsorted);
445         return FALSE;
446 }
447
448 static gboolean on_expose(GisOpenGL *opengl, GdkEventExpose *event, gpointer _)
449 {
450         g_debug("GisOpenGL: on_expose - begin");
451
452         glClear(GL_COLOR_BUFFER_BIT);
453
454         _set_visuals(opengl);
455 #ifdef ROAM_DEBUG
456         glColor4f(0.0, 0.0, 9.0, 0.6);
457         glDisable(GL_TEXTURE_2D);
458         glPolygonMode(GL_FRONT_AND_BACK, GL_LINE);
459         roam_sphere_draw(opengl->sphere);
460         //roam_sphere_draw_normals(opengl->sphere);
461 #else
462         g_mutex_lock(opengl->objects_lock);
463         g_tree_foreach(opengl->objects, _draw_level, opengl);
464         g_mutex_unlock(opengl->objects_lock);
465         if (opengl->wireframe) {
466                 glClear(GL_DEPTH_BUFFER_BIT);
467                 glPolygonMode(GL_FRONT_AND_BACK, GL_LINE);
468                 roam_sphere_draw(opengl->sphere);
469         }
470 #endif
471
472         GdkGLDrawable *gldrawable = gtk_widget_get_gl_drawable(GTK_WIDGET(opengl));
473         gdk_gl_drawable_swap_buffers(gldrawable);
474
475         g_debug("GisOpenGL: on_expose - end\n");
476         return FALSE;
477 }
478
479 static gboolean on_key_press(GisOpenGL *opengl, GdkEventKey *event, gpointer _)
480 {
481         g_debug("GisOpenGL: on_key_press - key=%x, state=%x, plus=%x",
482                         event->keyval, event->state, GDK_plus);
483
484         guint kv = event->keyval;
485         /* Testing */
486         if (kv == GDK_w) {
487                 opengl->wireframe = !opengl->wireframe;
488                 gtk_widget_queue_draw(GTK_WIDGET(opengl));
489         }
490 #ifdef ROAM_DEBUG
491         else if (kv == GDK_n) roam_sphere_split_one(opengl->sphere);
492         else if (kv == GDK_p) roam_sphere_merge_one(opengl->sphere);
493         else if (kv == GDK_r) roam_sphere_split_merge(opengl->sphere);
494         else if (kv == GDK_u) roam_sphere_update_errors(opengl->sphere);
495         gtk_widget_queue_draw(GTK_WIDGET(opengl));
496 #endif
497         return FALSE;
498 }
499
500 static gboolean _update_errors_cb(gpointer _opengl)
501 {
502         GisOpenGL *opengl = _opengl;
503         g_mutex_lock(opengl->sphere_lock);
504         roam_sphere_update_errors(opengl->sphere);
505         g_mutex_unlock(opengl->sphere_lock);
506         opengl->ue_source = 0;
507         return FALSE;
508 }
509 static void on_view_changed(GisOpenGL *opengl,
510                 gdouble _1, gdouble _2, gdouble _3)
511 {
512         g_debug("GisOpenGL: on_view_changed");
513         _set_visuals(opengl);
514 #ifndef ROAM_DEBUG
515         if (!opengl->ue_source)
516                 opengl->ue_source = g_idle_add_full(G_PRIORITY_HIGH_IDLE+30,
517                                 _update_errors_cb, opengl, NULL);
518         //roam_sphere_update_errors(opengl->sphere);
519 #endif
520 }
521
522 static gboolean on_idle(GisOpenGL *opengl)
523 {
524         //g_debug("GisOpenGL: on_idle");
525         g_mutex_lock(opengl->sphere_lock);
526         if (roam_sphere_split_merge(opengl->sphere))
527                 gtk_widget_queue_draw(GTK_WIDGET(opengl));
528         g_mutex_unlock(opengl->sphere_lock);
529         return TRUE;
530 }
531
532
533 /*********************
534  * GisViewer methods *
535  *********************/
536 /**
537  * gis_opengl_new:
538  * @plugins: the plugins store to use
539  * @prefs:   the preferences object to use
540  *
541  * Create a new OpenGL renderer.
542  *
543  * Returns: the new #GisOpenGL
544  */
545 GisViewer *gis_opengl_new(GisPlugins *plugins, GisPrefs *prefs)
546 {
547         g_debug("GisOpenGL: new");
548         GisViewer *opengl = g_object_new(GIS_TYPE_OPENGL, NULL);
549         gis_viewer_setup(opengl, plugins, prefs);
550         return opengl;
551 }
552
553 static void gis_opengl_center_position(GisViewer *_opengl, gdouble lat, gdouble lon, gdouble elev)
554 {
555         glRotatef(lon, 0, 1, 0);
556         glRotatef(-lat, 1, 0, 0);
557         glTranslatef(0, 0, elev2rad(elev));
558 }
559
560 static void gis_opengl_project(GisViewer *_opengl,
561                 gdouble lat, gdouble lon, gdouble elev,
562                 gdouble *px, gdouble *py, gdouble *pz)
563 {
564         GisOpenGL *opengl = GIS_OPENGL(_opengl);
565         gdouble x, y, z;
566         lle2xyz(lat, lon, elev, &x, &y, &z);
567         gluProject(x, y, z,
568                 opengl->sphere->view->model,
569                 opengl->sphere->view->proj,
570                 opengl->sphere->view->view,
571                 px, py, pz);
572 }
573
574 static void gis_opengl_set_height_func(GisViewer *_opengl, GisTile *tile,
575                 RoamHeightFunc height_func, gpointer user_data, gboolean update)
576 {
577         GisOpenGL *opengl = GIS_OPENGL(_opengl);
578         if (!tile)
579                 return;
580         /* TODO: get points? */
581         g_mutex_lock(opengl->sphere_lock);
582         GList *triangles = roam_sphere_get_intersect(opengl->sphere, TRUE,
583                         tile->edge.n, tile->edge.s, tile->edge.e, tile->edge.w);
584         for (GList *cur = triangles; cur; cur = cur->next) {
585                 RoamTriangle *tri = cur->data;
586                 RoamPoint *points[] = {tri->p.l, tri->p.m, tri->p.r, tri->split};
587                 for (int i = 0; i < G_N_ELEMENTS(points); i++) {
588                         if (tile->edge.n >= points[i]->lat && points[i]->lat >= tile->edge.s &&
589                             tile->edge.e >= points[i]->lon && points[i]->lon >= tile->edge.w) {
590                                 points[i]->height_func = height_func;
591                                 points[i]->height_data = user_data;
592                                 roam_point_update_height(points[i]);
593                         }
594                 }
595         }
596         g_list_free(triangles);
597         g_mutex_unlock(opengl->sphere_lock);
598 }
599
600 static void _gis_opengl_clear_height_func_rec(RoamTriangle *root)
601 {
602         if (!root)
603                 return;
604         RoamPoint *points[] = {root->p.l, root->p.m, root->p.r, root->split};
605         for (int i = 0; i < G_N_ELEMENTS(points); i++) {
606                 points[i]->height_func = NULL;
607                 points[i]->height_data = NULL;
608                 roam_point_update_height(points[i]);
609         }
610         _gis_opengl_clear_height_func_rec(root->kids[0]);
611         _gis_opengl_clear_height_func_rec(root->kids[1]);
612 }
613
614 static void gis_opengl_clear_height_func(GisViewer *_opengl)
615 {
616         GisOpenGL *opengl = GIS_OPENGL(_opengl);
617         for (int i = 0; i < G_N_ELEMENTS(opengl->sphere->roots); i++)
618                 _gis_opengl_clear_height_func_rec(opengl->sphere->roots[i]);
619 }
620
621 static gpointer gis_opengl_add(GisViewer *_opengl, GisObject *object,
622                 gint key, gboolean sort)
623 {
624         g_assert(GIS_IS_OPENGL(_opengl));
625         GisOpenGL *opengl = GIS_OPENGL(_opengl);
626         g_mutex_lock(opengl->objects_lock);
627         _load_object(opengl, object);
628         struct RenderLevel *level = g_tree_lookup(opengl->objects, (gpointer)key);
629         if (!level) {
630                 level = g_new0(struct RenderLevel, 1);
631                 g_tree_insert(opengl->objects, (gpointer)key, level);
632         }
633         GList *list = sort ? &level->sorted : &level->unsorted;
634         /* Put the link in the list */
635         GList *link = g_new0(GList, 1);
636         link->data = object;
637         link->prev = list;
638         link->next = list->next;
639         if (list->next)
640                 list->next->prev = link;
641         list->next = link;
642         g_mutex_unlock(opengl->objects_lock);
643         return link;
644 }
645
646 static GisObject *gis_opengl_remove(GisViewer *_opengl, gpointer _link)
647 {
648         g_assert(GIS_IS_OPENGL(_opengl));
649         GisOpenGL *opengl = GIS_OPENGL(_opengl);
650         g_mutex_lock(opengl->objects_lock);
651         GList *link = _link;
652         GisObject *object = link->data;
653         _unload_object(opengl, object);
654         /* Just unlink and free it, link->prev is assured */
655         link->prev->next = link->next;
656         if (link->next)
657                 link->next->prev = link->prev;
658         g_free(link);
659         g_object_unref(object);
660         g_mutex_unlock(opengl->objects_lock);
661         return object;
662 }
663
664 /****************
665  * GObject code *
666  ****************/
667 static int _objects_cmp(gconstpointer _a, gconstpointer _b, gpointer _)
668 {
669         gint a = (int)_a, b = (int)_b;
670         return a < b ? -1 :
671                a > b ?  1 : 0;
672 }
673 static void _objects_free(gpointer value)
674 {
675         struct RenderLevel *level = value;
676         if (level->sorted.next)
677                 g_list_free(level->sorted.next);
678         if (level->unsorted.next)
679                 g_list_free(level->unsorted.next);
680         g_free(level);
681 }
682
683 G_DEFINE_TYPE(GisOpenGL, gis_opengl, GIS_TYPE_VIEWER);
684 static void gis_opengl_init(GisOpenGL *opengl)
685 {
686         g_debug("GisOpenGL: init");
687         /* OpenGL setup */
688         GdkGLConfig *glconfig = gdk_gl_config_new_by_mode(
689                         GDK_GL_MODE_RGBA   | GDK_GL_MODE_DEPTH |
690                         GDK_GL_MODE_DOUBLE | GDK_GL_MODE_ALPHA);
691         if (!glconfig)
692                 g_error("Failed to create glconfig");
693         if (!gtk_widget_set_gl_capability(GTK_WIDGET(opengl),
694                                 glconfig, NULL, TRUE, GDK_GL_RGBA_TYPE))
695                 g_error("GL lacks required capabilities");
696         g_object_unref(glconfig);
697
698         opengl->objects = g_tree_new_full(_objects_cmp, NULL, NULL, _objects_free);
699         opengl->objects_lock = g_mutex_new();
700         opengl->sphere = roam_sphere_new(opengl);
701         opengl->sphere_lock = g_mutex_new();
702
703 #ifndef ROAM_DEBUG
704         opengl->sm_source[0] = g_timeout_add_full(G_PRIORITY_HIGH_IDLE+30, 33,  (GSourceFunc)on_idle, opengl, NULL);
705         opengl->sm_source[1] = g_timeout_add_full(G_PRIORITY_HIGH_IDLE+10, 500, (GSourceFunc)on_idle, opengl, NULL);
706 #endif
707
708         gtk_widget_add_events(GTK_WIDGET(opengl), GDK_KEY_PRESS_MASK);
709         g_signal_connect(opengl, "realize",          G_CALLBACK(on_realize),      NULL);
710         g_signal_connect(opengl, "configure-event",  G_CALLBACK(on_configure),    NULL);
711         g_signal_connect(opengl, "expose-event",     G_CALLBACK(on_expose),       NULL);
712
713         g_signal_connect(opengl, "key-press-event",  G_CALLBACK(on_key_press),    NULL);
714
715         g_signal_connect(opengl, "location-changed", G_CALLBACK(on_view_changed), NULL);
716         g_signal_connect(opengl, "rotation-changed", G_CALLBACK(on_view_changed), NULL);
717 }
718 static void gis_opengl_dispose(GObject *_opengl)
719 {
720         g_debug("GisOpenGL: dispose");
721         GisOpenGL *opengl = GIS_OPENGL(_opengl);
722         if (opengl->sm_source[0]) {
723                 g_source_remove(opengl->sm_source[0]);
724                 opengl->sm_source[0] = 0;
725         }
726         if (opengl->sm_source[1]) {
727                 g_source_remove(opengl->sm_source[1]);
728                 opengl->sm_source[1] = 0;
729         }
730         if (opengl->ue_source) {
731                 g_source_remove(opengl->ue_source);
732                 opengl->ue_source = 0;
733         }
734         G_OBJECT_CLASS(gis_opengl_parent_class)->dispose(_opengl);
735 }
736 static void gis_opengl_finalize(GObject *_opengl)
737 {
738         g_debug("GisOpenGL: finalize");
739         GisOpenGL *opengl = GIS_OPENGL(_opengl);
740         roam_sphere_free(opengl->sphere);
741         g_tree_destroy(opengl->objects);
742         g_mutex_free(opengl->objects_lock);
743         g_mutex_free(opengl->sphere_lock);
744         G_OBJECT_CLASS(gis_opengl_parent_class)->finalize(_opengl);
745 }
746 static void gis_opengl_class_init(GisOpenGLClass *klass)
747 {
748         g_debug("GisOpenGL: class_init");
749         GObjectClass *gobject_class = G_OBJECT_CLASS(klass);
750         gobject_class->finalize = gis_opengl_finalize;
751         gobject_class->dispose = gis_opengl_dispose;
752
753         GisViewerClass *viewer_class = GIS_VIEWER_CLASS(klass);
754         viewer_class->center_position   = gis_opengl_center_position;
755         viewer_class->project           = gis_opengl_project;
756         viewer_class->clear_height_func = gis_opengl_clear_height_func;
757         viewer_class->set_height_func   = gis_opengl_set_height_func;
758         viewer_class->add               = gis_opengl_add;
759         viewer_class->remove            = gis_opengl_remove;
760 }