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1 /**************************************************************************
2 *
3 * Tint2 : area
4 *
5 * Copyright (C) 2008 thierry lorthiois (lorthiois@bbsoft.fr)
6 *
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License version 2
9 * as published by the Free Software Foundation.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
18 **************************************************************************/
19
20 #include <X11/Xlib.h>
21 #include <X11/Xutil.h>
22 #include <X11/Xatom.h>
23 #include <X11/extensions/Xrender.h>
24 #include <stdio.h>
25 #include <stdlib.h>
26 #include <string.h>
27 #include <pango/pangocairo.h>
28
29 #include "area.h"
30 #include "server.h"
31 #include "panel.h"
32
33
34 /************************************************************
35 * !!! This design is experimental and not yet fully implemented !!!!!!!!!!!!!
36 *
37 * DATA ORGANISATION :
38 * Areas in tint2 are similar to widgets in a GUI.
39 * All graphical objects (panel, taskbar, task, systray, clock, ...) 'inherit' an abstract class 'Area'.
40 * This class 'Area' manage the background, border, size, position and padding.
41 * Area is at the begining of each object (&object == &area).
42 *
43 * tint2 define one panel per monitor. And each panel have a tree of Area.
44 * The root of the tree is Panel.Area. And task, clock, systray, taskbar,... are nodes.
45 *
46 * The tree give the localisation of each object :
47 * - tree's root is in the background while tree's leafe are foreground objects
48 * - position of a node/Area depend on the layout : parent's position (posx, posy), size of previous brothers and parent's padding
49 * - size of a node/Area depend on the content (SIZE_BY_CONTENT objects) or on the layout (SIZE_BY_LAYOUT objects)
50 *
51 * DRAWING AND LAYERING ENGINE :
52 * Redrawing an object (like the clock) could come from an 'external event' (date change)
53 * or from a 'layering event' (position change).
54 * The following 'drawing engine' take care of :
55 * - posx/posy of all Area
56 * - 'layering event' propagation between object
57 * 1) browse tree SIZE_BY_CONTENT
58 * - resize SIZE_BY_CONTENT node : children are resized before parent
59 * - if 'size' changed then 'resize = 1' on the parent
60 * 2) browse tree SIZE_BY_LAYOUT and POSITION
61 * - resize SIZE_BY_LAYOUT node : parent is resized before children
62 * - if 'size' changed then 'resize = 1' on childs with SIZE_BY_LAYOUT
63 * - calculate position (posx,posy) : parent is calculated before children
64 * - if 'position' changed then 'redraw = 1'
65 * 3) browse tree REDRAW
66 * - redraw needed objects : parent is drawn before children
67 *
68 * CONFIGURE PANEL'S LAYOUT :
69 * 'panel_items' parameter (in config) define the list and the order of nodes in tree's panel.
70 * 'panel_items = SC' define a panel with just Systray and Clock.
71 * So the tree 'Panel.Area' will have 2 childs (Systray and Clock).
72 *
73 ************************************************************/
74
75 void init_rendering(void *obj, int pos)
76 {
77 Area *a = (Area*)obj;
78
79 // initialize fixed position/size
80 GSList *l;
81 for (l = a->list; l ; l = l->next) {
82 Area *child = ((Area*)l->data);
83 if (panel_horizontal) {
84 child->posy = pos + a->bg->border.width + a->paddingy;
85 child->height = a->height - (2 * (a->bg->border.width + a->paddingy));
86 init_rendering(child, child->posy);
87 }
88 else {
89 child->posx = pos + a->bg->border.width + a->paddingy;
90 child->width = a->width - (2 * (a->bg->border.width + a->paddingy));
91 init_rendering(child, child->posx);
92 }
93 }
94 }
95
96
97 void rendering(void *obj)
98 {
99 Panel *panel = (Panel*)obj;
100
101 size_by_content(&panel->area);
102 size_by_layout(&panel->area, 0, 0);
103
104 refresh(&panel->area);
105 }
106
107
108 void size_by_content (Area *a)
109 {
110 // don't resize hiden objects
111 if (!a->on_screen) return;
112
113 // children node are resized before its parent
114 GSList *l;
115 for (l = a->list; l ; l = l->next)
116 size_by_content(l->data);
117
118 // calculate area's size
119 if (a->resize && a->size_mode == SIZE_BY_CONTENT) {
120 a->resize = 0;
121
122 if (a->_resize) {
123 if (a->_resize(a)) {
124 // 'size' changed => 'resize = 1' on the parent and redraw object
125 ((Area*)a->parent)->resize = 1;
126 }
127 a->redraw = 1;
128 }
129 }
130 }
131
132
133 void size_by_layout (Area *a, int pos, int level)
134 {
135 // don't resize hiden objects
136 if (!a->on_screen) return;
137
138 // parent node is resized before its children
139 // calculate area's size
140 GSList *l;
141 if (a->resize && a->size_mode == SIZE_BY_LAYOUT) {
142 a->resize = 0;
143
144 if (a->_resize) {
145 if (a->_resize(a)) {
146 // if 'size' changed then 'resize = 1' on childs with SIZE_BY_LAYOUT
147 for (l = a->list; l ; l = l->next) {
148 if (((Area*)l->data)->size_mode == SIZE_BY_LAYOUT)
149 ((Area*)l->data)->resize = 1;
150 }
151 }
152 }
153 }
154
155 // update position of childs
156 pos += a->paddingxlr + a->bg->border.width;
157 int i=0;
158 for (l = a->list; l ; l = l->next) {
159 Area *child = ((Area*)l->data);
160 if (!child->on_screen) continue;
161 i++;
162
163 if (panel_horizontal) {
164 if (pos != child->posx) {
165 // pos changed => redraw
166 child->posx = pos;
167 child->redraw = 1;
168 }
169 }
170 else {
171 if (pos != child->posy) {
172 // pos changed => redraw
173 child->posy = pos;
174 child->redraw = 1;
175 }
176 }
177 //printf("level %d, object %d, pos %d\n", level, i, pos);
178
179 size_by_layout(child, pos, level+1);
180
181 if (panel_horizontal)
182 pos += child->width + a->paddingx;
183 else
184 pos += child->height + a->paddingx;
185 }
186 }
187
188
189 void refresh (Area *a)
190 {
191 // don't draw and resize hide objects
192 if (!a->on_screen) return;
193
194 // don't draw transparent objects (without foreground and without background)
195 if (a->redraw) {
196 a->redraw = 0;
197 // force redraw of child
198 GSList *l;
199 for (l = a->list ; l ; l = l->next)
200 ((Area*)l->data)->redraw = 1;
201 // set_redraw(l->data);
202
203 //printf("draw area posx %d, width %d\n", a->posx, a->width);
204 draw(a);
205 }
206
207 // draw current Area
208 if (a->pix == 0) printf("empty area posx %d, width %d\n", a->posx, a->width);
209 XCopyArea (server.dsp, a->pix, ((Panel *)a->panel)->temp_pmap, server.gc, 0, 0, a->width, a->height, a->posx, a->posy);
210
211 // and then refresh child object
212 GSList *l;
213 for (l = a->list; l ; l = l->next)
214 refresh(l->data);
215 }
216
217
218 int resize_by_layout(void *obj)
219 {
220 Area *child, *a = (Area*)obj;
221 int size, nb_by_content=0, nb_by_layout=0;
222
223 printf("resize_by_layout\n");
224 if (panel_horizontal) {
225 // detect free size for SIZE_BY_LAYOUT's Area
226 size = a->width - (2 * (a->paddingxlr + a->bg->border.width));
227 GSList *l;
228 for (l = a->list ; l ; l = l->next) {
229 child = (Area*)l->data;
230 if (child->on_screen && child->size_mode == SIZE_BY_CONTENT) {
231 size -= child->width;
232 nb_by_content++;
233 }
234 if (child->on_screen && child->size_mode == SIZE_BY_LAYOUT)
235 nb_by_layout++;
236 }
237 if (nb_by_content+nb_by_layout)
238 size -= ((nb_by_content+nb_by_layout-1) * a->paddingx);
239 //printf("resize_panel : size_panel %d, size_layout %d\n", panel->area.width, size);
240
241 int width=0, modulo=0;
242 if (nb_by_layout) {
243 width = size / nb_by_layout;
244 modulo = size % nb_by_layout;
245 }
246
247 // resize SIZE_BY_LAYOUT objects
248 for (l = a->list ; l ; l = l->next) {
249 child = (Area*)l->data;
250 if (child->on_screen && child->size_mode == SIZE_BY_LAYOUT) {
251 child->width = width;
252 child->resize = 1;
253 if (modulo) {
254 child->width++;
255 modulo--;
256 }
257 }
258 }
259 }
260 else {
261 // detect free size for SIZE_BY_LAYOUT's Area
262 size = a->height - (2 * (a->paddingxlr + a->bg->border.width));
263 GSList *l;
264 for (l = a->list ; l ; l = l->next) {
265 child = (Area*)l->data;
266 if (child->on_screen && child->size_mode == SIZE_BY_CONTENT) {
267 size -= child->height;
268 nb_by_content++;
269 }
270 if (child->on_screen && child->size_mode == SIZE_BY_LAYOUT)
271 nb_by_layout++;
272 }
273 if (nb_by_content+nb_by_layout)
274 size -= ((nb_by_content+nb_by_layout-1) * a->paddingx);
275
276 int height=0, modulo=0;
277 if (nb_by_layout) {
278 height = size / nb_by_layout;
279 modulo = size % nb_by_layout;
280 }
281
282 // resize SIZE_BY_LAYOUT objects
283 for (l = a->list ; l ; l = l->next) {
284 child = (Area*)l->data;
285 if (child->on_screen && child->size_mode == SIZE_BY_LAYOUT) {
286 child->height = height;
287 child->resize = 1;
288 if (modulo) {
289 child->height++;
290 modulo--;
291 }
292 }
293 }
294 }
295 return 0;
296 }
297
298
299 void set_redraw (Area *a)
300 {
301 a->redraw = 1;
302
303 GSList *l;
304 for (l = a->list ; l ; l = l->next)
305 set_redraw(l->data);
306 }
307
308 void hide(Area *a)
309 {
310 Area *parent = (Area*)a->parent;
311
312 a->on_screen = 0;
313 parent->resize = 1;
314 if (panel_horizontal)
315 a->width = 0;
316 else
317 a->height = 0;
318 }
319
320 void show(Area *a)
321 {
322 Area *parent = (Area*)a->parent;
323
324 a->on_screen = 1;
325 parent->resize = 1;
326 a->resize = 1;
327 }
328
329 void draw (Area *a)
330 {
331 if (a->pix) XFreePixmap (server.dsp, a->pix);
332 a->pix = XCreatePixmap (server.dsp, server.root_win, a->width, a->height, server.depth);
333
334 // add layer of root pixmap (or clear pixmap if real_transparency==true)
335 if (server.real_transparency)
336 clear_pixmap(a->pix, 0 ,0, a->width, a->height);
337 XCopyArea (server.dsp, ((Panel *)a->panel)->temp_pmap, a->pix, server.gc, a->posx, a->posy, a->width, a->height, 0, 0);
338
339 cairo_surface_t *cs;
340 cairo_t *c;
341
342 cs = cairo_xlib_surface_create (server.dsp, a->pix, server.visual, a->width, a->height);
343 c = cairo_create (cs);
344
345 draw_background (a, c);
346
347 if (a->_draw_foreground)
348 a->_draw_foreground(a, c);
349
350 cairo_destroy (c);
351 cairo_surface_destroy (cs);
352 }
353
354
355 void draw_background (Area *a, cairo_t *c)
356 {
357 if (a->bg->back.alpha > 0.0) {
358 //printf(" draw_background (%d %d) RGBA (%lf, %lf, %lf, %lf)\n", a->posx, a->posy, pix->back.color[0], pix->back.color[1], pix->back.color[2], pix->back.alpha);
359 draw_rect(c, a->bg->border.width, a->bg->border.width, a->width-(2.0 * a->bg->border.width), a->height-(2.0*a->bg->border.width), a->bg->border.rounded - a->bg->border.width/1.571);
360 cairo_set_source_rgba(c, a->bg->back.color[0], a->bg->back.color[1], a->bg->back.color[2], a->bg->back.alpha);
361 cairo_fill(c);
362 }
363
364 if (a->bg->border.width > 0 && a->bg->border.alpha > 0.0) {
365 cairo_set_line_width (c, a->bg->border.width);
366
367 // draw border inside (x, y, width, height)
368 draw_rect(c, a->bg->border.width/2.0, a->bg->border.width/2.0, a->width - a->bg->border.width, a->height - a->bg->border.width, a->bg->border.rounded);
369 /*
370 // convert : radian = degre * M_PI/180
371 // definir le degrade dans un carre de (0,0) (100,100)
372 // ensuite ce degrade est extrapoler selon le ratio width/height
373 // dans repere (0, 0) (100, 100)
374 double X0, Y0, X1, Y1, degre;
375 // x = X * (a->width / 100), y = Y * (a->height / 100)
376 double x0, y0, x1, y1;
377 X0 = 0;
378 Y0 = 100;
379 X1 = 100;
380 Y1 = 0;
381 degre = 45;
382 // et ensuite faire la changement d'unite du repere
383 // car ce qui doit reste inchangee est les traits et pas la direction
384
385 // il faut d'abord appliquer une rotation de 90 (et -180 si l'angle est superieur a 180)
386 // ceci peut etre applique une fois pour toute au depart
387 // ensuite calculer l'angle dans le nouveau repare
388 // puis faire une rotation de 90
389 x0 = X0 * ((double)a->width / 100);
390 x1 = X1 * ((double)a->width / 100);
391 y0 = Y0 * ((double)a->height / 100);
392 y1 = Y1 * ((double)a->height / 100);
393
394 x0 = X0 * ((double)a->height / 100);
395 x1 = X1 * ((double)a->height / 100);
396 y0 = Y0 * ((double)a->width / 100);
397 y1 = Y1 * ((double)a->width / 100);
398
399 cairo_pattern_t *linpat;
400 linpat = cairo_pattern_create_linear (x0, y0, x1, y1);
401 cairo_pattern_add_color_stop_rgba (linpat, 0, a->border.color[0], a->border.color[1], a->border.color[2], a->border.alpha);
402 cairo_pattern_add_color_stop_rgba (linpat, 1, a->border.color[0], a->border.color[1], a->border.color[2], 0);
403 cairo_set_source (c, linpat);
404 */
405 cairo_set_source_rgba (c, a->bg->border.color[0], a->bg->border.color[1], a->bg->border.color[2], a->bg->border.alpha);
406
407 cairo_stroke (c);
408 //cairo_pattern_destroy (linpat);
409 }
410 }
411
412
413 void remove_area (Area *a)
414 {
415 Area *parent = (Area*)a->parent;
416
417 parent->list = g_slist_remove(parent->list, a);
418 set_redraw (parent);
419
420 }
421
422
423 void add_area (Area *a)
424 {
425 Area *parent = (Area*)a->parent;
426
427 parent->list = g_slist_remove(parent->list, a);
428 set_redraw (parent);
429
430 }
431
432
433 void free_area (Area *a)
434 {
435 GSList *l0;
436 for (l0 = a->list; l0 ; l0 = l0->next)
437 free_area (l0->data);
438
439 if (a->list) {
440 g_slist_free(a->list);
441 a->list = 0;
442 }
443 if (a->pix) {
444 XFreePixmap (server.dsp, a->pix);
445 a->pix = 0;
446 }
447 }
448
449
450 void draw_rect(cairo_t *c, double x, double y, double w, double h, double r)
451 {
452 if (r > 0.0) {
453 double c1 = 0.55228475 * r;
454
455 cairo_move_to(c, x+r, y);
456 cairo_rel_line_to(c, w-2*r, 0);
457 cairo_rel_curve_to(c, c1, 0.0, r, c1, r, r);
458 cairo_rel_line_to(c, 0, h-2*r);
459 cairo_rel_curve_to(c, 0.0, c1, c1-r, r, -r, r);
460 cairo_rel_line_to (c, -w +2*r, 0);
461 cairo_rel_curve_to (c, -c1, 0, -r, -c1, -r, -r);
462 cairo_rel_line_to (c, 0, -h + 2 * r);
463 cairo_rel_curve_to (c, 0, -c1, r - c1, -r, r, -r);
464 }
465 else
466 cairo_rectangle(c, x, y, w, h);
467 }
468
469
470 void clear_pixmap(Pixmap p, int x, int y, int w, int h)
471 {
472 Picture pict = XRenderCreatePicture(server.dsp, p, XRenderFindVisualFormat(server.dsp, server.visual), 0, 0);
473 XRenderColor col = { .red=0, .green=0, .blue=0, .alpha=0 };
474 XRenderFillRectangle(server.dsp, PictOpSrc, pict, &col, x, y, w, h);
475 XRenderFreePicture(server.dsp, pict);
476 }
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