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/cvs/rxvt-unicode/src/background.C
Revision: 1.109
Committed: Tue Nov 2 22:01:47 2010 UTC (13 years, 6 months ago) by sf-exg
Content type: text/plain
Branch: MAIN
Changes since 1.108: +4 -0 lines
Log Message:
Fix build when xft is disabled and xrender is enabled.

File Contents

# Content
1 /*----------------------------------------------------------------------*
2 * File: background.C - former xpm.C
3 *----------------------------------------------------------------------*
4 *
5 * All portions of code are copyright by their respective author/s.
6 * Copyright (c) 2005-2008 Marc Lehmann <pcg@goof.com>
7 * Copyright (c) 2007 Sasha Vasko <sasha@aftercode.net>
8 * Copyright (c) 2010 Emanuele Giaquinta <e.giaquinta@glauco.it>
9 *
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2 of the License, or
13 * (at your option) any later version.
14 *
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
23 *---------------------------------------------------------------------*/
24
25 #include <cmath>
26 #include "../config.h" /* NECESSARY */
27 #include "rxvt.h" /* NECESSARY */
28
29 #if XRENDER
30 # include <X11/extensions/Xrender.h>
31 #endif
32
33 #define DO_TIMING_TEST 0
34
35 #if DO_TIMING_TEST
36 # include <sys/time.h>
37 #define TIMING_TEST_START(id) \
38 struct timeval timing_test_##id##_stv; \
39 gettimeofday (&timing_test_##id##_stv, NULL);
40
41 #define TIMING_TEST_PRINT_RESULT(id) \
42 do { \
43 struct timeval tv; \
44 gettimeofday (&tv, NULL); \
45 tv.tv_sec -= (timing_test_##id##_stv).tv_sec; \
46 fprintf (stderr, "%s: %s: %d: elapsed %ld usec\n", #id, __FILE__, __LINE__, \
47 tv.tv_sec * 1000000 + tv.tv_usec - (timing_test_##id##_stv).tv_usec); \
48 } while (0)
49
50 #else
51 #define TIMING_TEST_START(id) do {} while (0)
52 #define TIMING_TEST_PRINT_RESULT(id) do {} while (0)
53 #endif
54
55 /*
56 * Pixmap geometry string interpretation :
57 * Each geometry string contains zero or one scale/position
58 * adjustment and may optionally be followed by a colon and one or more
59 * colon-delimited pixmap operations.
60 * The following table shows the valid geometry strings and their
61 * effects on the background image :
62 *
63 * WxH+X+Y Set scaling to W% by H%, and position to X% by Y%.
64 * W and H are percentages of the terminal window size.
65 * X and Y are also percentages; e.g., +50+50 centers
66 * the image in the window.
67 * WxH+X Assumes Y == X
68 * WxH Assumes Y == X == 50 (centers the image)
69 * W+X+Y Assumes H == W
70 * W+X Assumes H == W and Y == X
71 * W Assumes H == W and Y == X == 50
72 *
73 * Adjusting position only :
74 * =+X+Y Set position to X% by Y% (absolute).
75 * =+X Set position to X% by X%.
76 * +X+Y Adjust position horizontally X% and vertically Y%
77 * from current position (relative).
78 * +X Adjust position horizontally X% and vertically X%
79 * from current position.
80 *
81 * Adjusting scale only :
82 * Wx0 Multiply horizontal scaling factor by W%
83 * 0xH Multiply vertical scaling factor by H%
84 * 0x0 No scaling (show image at normal size).
85 *
86 * Pixmap Operations : (should be prepended by a colon)
87 * tile Tile image. Scaling/position modifiers above will affect
88 * the tile size and origin.
89 * propscale When scaling, scale proportionally. That is, maintain the
90 * proper aspect ratio for the image. Any portion of the
91 * background not covered by the image is filled with the
92 * current background color.
93 * hscale Scale horizontally, tile vertically ?
94 * vscale Tile horizontally, scale vertically ?
95 * scale Scale both up and down
96 * auto Same as 100x100+50+50
97 */
98
99 #ifdef HAVE_BG_PIXMAP
100 bgPixmap_t::bgPixmap_t ()
101 {
102 // this is basically redundant as bgPixmap_t is only used in
103 // zero_initialised-derived structs
104 #ifdef HAVE_AFTERIMAGE
105 original_asim = NULL;
106 #endif
107 #ifdef HAVE_PIXBUF
108 pixbuf = NULL;
109 #endif
110 #ifdef BG_IMAGE_FROM_FILE
111 have_image = false;
112 h_scale = v_scale = 0;
113 h_align = v_align = 0;
114 #endif
115 #ifdef ENABLE_TRANSPARENCY
116 shade = 100;
117 #endif
118 flags = 0;
119 pixmap = None;
120 valid_since = invalid_since = 0;
121 target = 0;
122 }
123
124 void
125 bgPixmap_t::destroy ()
126 {
127 #ifdef HAVE_AFTERIMAGE
128 if (original_asim)
129 safe_asimage_destroy (original_asim);
130 #endif
131
132 #ifdef HAVE_PIXBUF
133 if (pixbuf)
134 g_object_unref (pixbuf);
135 #endif
136
137 if (pixmap && target)
138 XFreePixmap (target->dpy, pixmap);
139 }
140
141 bool
142 bgPixmap_t::window_size_sensitive ()
143 {
144 # ifdef ENABLE_TRANSPARENCY
145 if (flags & isTransparent)
146 return true;
147 # endif
148
149 # ifdef BG_IMAGE_FROM_FILE
150 if (have_image)
151 {
152 if (flags & sizeSensitive)
153 return true;
154 }
155 # endif
156
157 return false;
158 }
159
160 bool
161 bgPixmap_t::window_position_sensitive ()
162 {
163 # ifdef ENABLE_TRANSPARENCY
164 if (flags & isTransparent)
165 return true;
166 # endif
167
168 # ifdef BG_IMAGE_FROM_FILE
169 if (have_image)
170 {
171 if (flags & rootAlign)
172 return true;
173 }
174 # endif
175
176 return false;
177 };
178
179 bool bgPixmap_t::need_client_side_rendering ()
180 {
181 # ifdef HAVE_AFTERIMAGE
182 if (original_asim)
183 return true;
184 # endif
185 return false;
186 }
187
188 # ifdef BG_IMAGE_FROM_FILE
189 static inline bool
190 check_set_scale_value (int geom_flags, int flag, unsigned int &scale, unsigned int new_value)
191 {
192 if (geom_flags & flag)
193 {
194 if (new_value > 1000)
195 new_value = 1000;
196 if (new_value != scale)
197 {
198 scale = new_value;
199 return true;
200 }
201 }
202 return false;
203 }
204
205 static inline bool
206 check_set_align_value (int geom_flags, int flag, int &align, int new_value)
207 {
208 if (geom_flags & flag)
209 {
210 if (new_value < -100)
211 new_value = -100;
212 else if (new_value > 200)
213 new_value = 200;
214 if (new_value != align)
215 {
216 align = new_value;
217 return true;
218 }
219 }
220 return false;
221 }
222
223 static inline int
224 make_align_position (int align, int window_size, int image_size)
225 {
226 int diff = window_size - image_size;
227 int smaller = min (image_size, window_size);
228
229 if (align >= 0 && align <= 100)
230 return diff * align / 100;
231 else if (align > 100 && align <= 200)
232 return ((align - 100) * smaller / 100) + window_size - smaller;
233 else if (align >= -100 && align < 0)
234 return ((align + 100) * smaller / 100) - image_size;
235 return 0;
236 }
237
238 static inline int
239 make_clip_rectangle (int pos, int size, int target_size, int &dst_pos, int &dst_size)
240 {
241 int src_pos = 0;
242 dst_pos = pos;
243 dst_size = size;
244 if (pos < 0)
245 {
246 src_pos = -pos;
247 dst_pos = 0;
248 dst_size += pos;
249 }
250
251 if (dst_pos + dst_size > target_size)
252 dst_size = target_size - dst_pos;
253 return src_pos;
254 }
255
256 bool
257 bgPixmap_t::set_geometry (const char *geom)
258 {
259 int geom_flags = 0, changed = 0;
260 int x = 0, y = 0;
261 unsigned int w = 0, h = 0;
262 unsigned int n;
263 unsigned long new_flags = (flags & (~geometryFlags));
264 const char *p;
265 # define MAXLEN_GEOM 256 /* could be longer than regular geometry string */
266
267 if (geom == NULL)
268 return false;
269
270 char str[MAXLEN_GEOM];
271
272 while (isspace(*geom)) ++geom;
273 if ((p = strchr (geom, ';')) == NULL)
274 p = strchr (geom, '\0');
275
276 n = (p - geom);
277 if (n < MAXLEN_GEOM)
278 {
279 char *ops;
280 new_flags |= geometrySet;
281
282 memcpy (str, geom, n);
283 str[n] = '\0';
284 if (str[0] == ':')
285 ops = &str[0];
286 else if (str[0] != 'x' && str[0] != 'X' && isalpha(str[0]))
287 ops = &str[0];
288 else
289 {
290 char *tmp;
291 ops = strchr (str, ':');
292 if (ops != NULL)
293 {
294 for (tmp = ops-1; tmp >= str && isspace(*tmp); --tmp);
295 *(++tmp) = '\0';
296 if (ops == tmp) ++ops;
297 }
298 }
299
300 if (ops > str || ops == NULL)
301 {
302 /* we have geometry string - let's handle it prior to applying ops */
303 geom_flags = XParseGeometry (str, &x, &y, &w, &h);
304
305 if ((geom_flags & XValue) && !(geom_flags & YValue))
306 {
307 y = x;
308 geom_flags |= YValue;
309 }
310
311 if (flags & geometrySet)
312 {
313 /* new geometry is an adjustment to the old one ! */
314 if ((geom_flags & WidthValue) && (geom_flags & HeightValue))
315 {
316 if (w == 0 && h != 0)
317 {
318 w = h_scale;
319 h = (v_scale * h) / 100;
320 }
321 else if (h == 0 && w != 0)
322 {
323 w = (h_scale * w) / 100;
324 h = v_scale;
325 }
326 }
327 if (geom_flags & XValue)
328 {
329 if (str[0] != '=')
330 {
331 y += v_align;
332 x += h_align;
333 }
334 }
335 }
336 else /* setting up geometry from scratch */
337 {
338 if (!(geom_flags & XValue))
339 {
340 /* use default geometry - centered */
341 x = y = defaultAlign;
342 }
343 else if (!(geom_flags & YValue))
344 y = x;
345
346 if ((geom_flags & (WidthValue|HeightValue)) == 0)
347 {
348 /* use default geometry - scaled */
349 w = h = defaultScale;
350 }
351 else if (geom_flags & WidthValue)
352 {
353 if (!(geom_flags & HeightValue))
354 h = w;
355 }
356 else
357 w = h;
358 }
359 } /* done parsing geometry string */
360 else if (!(flags & geometrySet))
361 {
362 /* default geometry - scaled and centered */
363 x = y = defaultAlign;
364 w = h = defaultScale;
365 }
366
367 if (!(flags & geometrySet))
368 geom_flags |= WidthValue|HeightValue|XValue|YValue;
369
370 if (ops)
371 {
372 while (*ops)
373 {
374 while (*ops == ':' || isspace(*ops)) ++ops;
375
376 # define CHECK_GEOM_OPS(op_str) (strncasecmp (ops, (op_str), sizeof (op_str) - 1) == 0)
377 if (CHECK_GEOM_OPS ("tile"))
378 {
379 w = h = noScale;
380 geom_flags |= WidthValue|HeightValue;
381 }
382 else if (CHECK_GEOM_OPS ("propscale"))
383 {
384 new_flags |= propScale;
385 }
386 else if (CHECK_GEOM_OPS ("hscale"))
387 {
388 if (w == 0) w = windowScale;
389
390 h = noScale;
391 geom_flags |= WidthValue|HeightValue;
392 }
393 else if (CHECK_GEOM_OPS ("vscale"))
394 {
395 if (h == 0) h = windowScale;
396
397 w = noScale;
398 geom_flags |= WidthValue|HeightValue;
399 }
400 else if (CHECK_GEOM_OPS ("scale"))
401 {
402 if (h == 0) h = windowScale;
403 if (w == 0) w = windowScale;
404
405 geom_flags |= WidthValue|HeightValue;
406 }
407 else if (CHECK_GEOM_OPS ("auto"))
408 {
409 w = h = windowScale;
410 x = y = centerAlign;
411 geom_flags |= WidthValue|HeightValue|XValue|YValue;
412 }
413 else if (CHECK_GEOM_OPS ("root"))
414 {
415 new_flags |= rootAlign;
416 w = h = noScale;
417 geom_flags |= WidthValue|HeightValue;
418 }
419 # undef CHECK_GEOM_OPS
420
421 while (*ops != ':' && *ops != '\0') ++ops;
422 } /* done parsing ops */
423 }
424
425 if (check_set_scale_value (geom_flags, WidthValue, h_scale, w)) ++changed;
426 if (check_set_scale_value (geom_flags, HeightValue, v_scale, h)) ++changed;
427 if (check_set_align_value (geom_flags, XValue, h_align, x)) ++changed;
428 if (check_set_align_value (geom_flags, YValue, v_align, y)) ++changed;
429 }
430
431 if (new_flags != flags)
432 {
433 flags = new_flags;
434 changed++;
435 }
436
437 return (changed > 0);
438 }
439
440 void
441 bgPixmap_t::get_image_geometry (int image_width, int image_height, int &w, int &h, int &x, int &y)
442 {
443 int target_width = target->szHint.width;
444 int target_height = target->szHint.height;
445
446 if (flags & propScale)
447 {
448 float scale = (float)target_width / image_width;
449 min_it (scale, (float)target_height / image_height);
450 w = image_width * scale + 0.5;
451 h = image_height * scale + 0.5;
452 }
453 else
454 {
455 w = h_scale * target_width / 100;
456 h = v_scale * target_height / 100;
457 }
458
459 if (!w) w = image_width;
460 if (!h) h = image_height;
461
462 if (flags & rootAlign)
463 {
464 target->get_window_origin (x, y);
465 x = -x;
466 y = -y;
467 }
468 else
469 {
470 x = make_align_position (h_align, target_width, w);
471 y = make_align_position (v_align, target_height, h);
472 }
473
474 flags &= ~sizeSensitive;
475 if ((flags & propScale) || h_scale || v_scale
476 || (!(flags & rootAlign) && (h_align || v_align))
477 || w > target_width || h > target_height)
478 flags |= sizeSensitive;
479 }
480
481 # ifdef HAVE_AFTERIMAGE
482 bool
483 bgPixmap_t::render_image (unsigned long background_flags)
484 {
485 if (target == NULL)
486 return false;
487
488 target->init_asv ();
489
490 ASImage *background = NULL;
491 ARGB32 background_tint = TINT_LEAVE_SAME;
492
493 # ifdef ENABLE_TRANSPARENCY
494 if (background_flags)
495 background = pixmap2ximage (target->asv, pixmap, 0, 0, pmap_width, pmap_height, AllPlanes, 100);
496
497 if (!(background_flags & transpPmapTinted) && (flags & tintNeeded))
498 {
499 ShadingInfo as_shade;
500 as_shade.shading = shade;
501
502 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC);
503 if (flags & tintSet)
504 tint.get (c);
505 as_shade.tintColor.red = c.r;
506 as_shade.tintColor.green = c.g;
507 as_shade.tintColor.blue = c.b;
508
509 background_tint = shading2tint32 (&as_shade);
510 }
511
512 if (!(background_flags & transpPmapBlurred) && (flags & blurNeeded) && background != NULL)
513 {
514 ASImage *tmp = blur_asimage_gauss (target->asv, background, h_blurRadius, v_blurRadius, 0xFFFFFFFF,
515 (original_asim == NULL || tint == TINT_LEAVE_SAME) ? ASA_XImage : ASA_ASImage,
516 100, ASIMAGE_QUALITY_DEFAULT);
517 if (tmp)
518 {
519 destroy_asimage (&background);
520 background = tmp;
521 }
522 }
523 # endif
524
525 ASImage *result = 0;
526
527 int target_width = target->szHint.width;
528 int target_height = target->szHint.height;
529 int new_pmap_width = target_width;
530 int new_pmap_height = target_height;
531
532 int x = 0;
533 int y = 0;
534 int w = 0;
535 int h = 0;
536
537 if (original_asim)
538 get_image_geometry (original_asim->width, original_asim->height, w, h, x, y);
539
540 if (!original_asim
541 || (!(flags & rootAlign)
542 && (x >= target_width
543 || y >= target_height
544 || (x + w <= 0)
545 || (y + h <= 0))))
546 {
547 if (background)
548 {
549 new_pmap_width = background->width;
550 new_pmap_height = background->height;
551 result = background;
552
553 if (background_tint != TINT_LEAVE_SAME)
554 {
555 ASImage *tmp = tile_asimage (target->asv, background, 0, 0,
556 target_width, target_height, background_tint,
557 ASA_XImage, 100, ASIMAGE_QUALITY_DEFAULT);
558 if (tmp)
559 result = tmp;
560 }
561 }
562 else
563 new_pmap_width = new_pmap_height = 0;
564 }
565 else
566 {
567 result = original_asim;
568
569 if ((w != original_asim->width)
570 || (h != original_asim->height))
571 {
572 result = scale_asimage (target->asv, original_asim,
573 w, h,
574 background ? ASA_ASImage : ASA_XImage,
575 100, ASIMAGE_QUALITY_DEFAULT);
576 }
577
578 if (background == NULL)
579 {
580 if (h_scale == 0 || v_scale == 0)
581 {
582 /* if tiling - pixmap has to be sized exactly as the image,
583 but there is no need to make it bigger than the window! */
584 new_pmap_width = min (result->width, target_width);
585 new_pmap_height = min (result->height, target_height);
586
587 /* we also need to tile our image in both directions */
588 ASImage *tmp = tile_asimage (target->asv, result,
589 (int)result->width - x,
590 (int)result->height - y,
591 new_pmap_width,
592 new_pmap_height,
593 TINT_LEAVE_SAME, ASA_XImage,
594 100, ASIMAGE_QUALITY_DEFAULT);
595 if (tmp)
596 {
597 if (result != original_asim)
598 destroy_asimage (&result);
599
600 result = tmp;
601 }
602 }
603 }
604 else
605 {
606 /* if blending background and image - pixmap has to be sized same as target window */
607 ASImageLayer *layers = create_image_layers (2);
608
609 layers[0].im = background;
610 layers[0].clip_width = target_width;
611 layers[0].clip_height = target_height;
612 layers[0].tint = background_tint;
613 layers[1].im = result;
614
615 if (h_scale == 0 || v_scale == 0)
616 {
617 /* tile horizontally */
618 while (x > 0) x -= (int)result->width;
619 layers[1].dst_x = x;
620 layers[1].clip_width = result->width+target_width;
621 }
622 else
623 {
624 /* clip horizontally */
625 layers[1].dst_x = x;
626 layers[1].clip_width = result->width;
627 }
628
629 if (h_scale == 0 || v_scale == 0)
630 {
631 while (y > 0) y -= (int)result->height;
632 layers[1].dst_y = y;
633 layers[1].clip_height = result->height + target_height;
634 }
635 else
636 {
637 layers[1].dst_y = y;
638 layers[1].clip_height = result->height;
639 }
640
641 if (target->rs[Rs_blendtype])
642 {
643 layers[1].merge_scanlines = blend_scanlines_name2func (target->rs[Rs_blendtype]);
644 if (layers[1].merge_scanlines == NULL)
645 layers[1].merge_scanlines = alphablend_scanlines;
646 }
647
648 ASImage *tmp = merge_layers (target->asv, layers, 2, target_width, target_height,
649 ASA_XImage, 0, ASIMAGE_QUALITY_DEFAULT);
650
651 if (tmp)
652 {
653 if (result != original_asim)
654 destroy_asimage (&result);
655
656 result = tmp;
657 }
658
659 free (layers);
660 }
661 }
662
663 bool ret = false;
664
665 if (result)
666 {
667 XGCValues gcv;
668 GC gc;
669
670 if (pixmap)
671 {
672 if (pmap_width != new_pmap_width
673 || pmap_height != new_pmap_height
674 || pmap_depth != target->depth)
675 {
676 XFreePixmap (target->dpy, pixmap);
677 pixmap = None;
678 }
679 }
680
681 /* create Pixmap */
682 if (pixmap == None)
683 {
684 pixmap = XCreatePixmap (target->dpy, target->vt, new_pmap_width, new_pmap_height, target->depth);
685 pmap_width = new_pmap_width;
686 pmap_height = new_pmap_height;
687 pmap_depth = target->depth;
688 }
689 /* fill with background color (if result's not completely overlapping it) */
690 gcv.foreground = target->pix_colors[Color_bg];
691 gc = XCreateGC (target->dpy, target->vt, GCForeground, &gcv);
692
693 int src_x = 0, src_y = 0, dst_x = 0, dst_y = 0;
694 int dst_width = result->width, dst_height = result->height;
695 if (background == NULL)
696 {
697 if (!(h_scale == 0 || v_scale == 0))
698 {
699 src_x = make_clip_rectangle (x, result->width , new_pmap_width , dst_x, dst_width );
700 src_y = make_clip_rectangle (y, result->height, new_pmap_height, dst_y, dst_height);
701 }
702
703 if (dst_x > 0 || dst_y > 0
704 || dst_x + dst_width < new_pmap_width
705 || dst_y + dst_height < new_pmap_height)
706 XFillRectangle (target->dpy, pixmap, gc, 0, 0, new_pmap_width, new_pmap_height);
707 }
708
709 /* put result on pixmap */
710 if (dst_x < new_pmap_width && dst_y < new_pmap_height)
711 asimage2drawable (target->asv, pixmap, result, gc, src_x, src_y, dst_x, dst_y, dst_width, dst_height, True);
712
713 if (result != background && result != original_asim)
714 destroy_asimage (&result);
715
716 XFreeGC (target->dpy, gc);
717
718 ret = true;
719 }
720
721 if (background)
722 destroy_asimage (&background);
723
724 return ret;
725 }
726 # endif /* HAVE_AFTERIMAGE */
727
728 # ifdef HAVE_PIXBUF
729 bool
730 bgPixmap_t::render_image (unsigned long background_flags)
731 {
732 if (target == NULL)
733 return false;
734
735 if (!pixbuf)
736 return false;
737
738 if (background_flags
739 && !(flags & HAS_RENDER))
740 return false;
741
742 GdkPixbuf *result;
743
744 int image_width = gdk_pixbuf_get_width (pixbuf);
745 int image_height = gdk_pixbuf_get_height (pixbuf);
746
747 int target_width = target->szHint.width;
748 int target_height = target->szHint.height;
749 int new_pmap_width = target_width;
750 int new_pmap_height = target_height;
751
752 int x = 0;
753 int y = 0;
754 int w = 0;
755 int h = 0;
756
757 get_image_geometry (image_width, image_height, w, h, x, y);
758
759 if (!(flags & rootAlign)
760 && (x >= target_width
761 || y >= target_height
762 || (x + w <= 0)
763 || (y + h <= 0)))
764 return false;
765
766 result = pixbuf;
767
768 if ((w != image_width)
769 || (h != image_height))
770 {
771 result = gdk_pixbuf_scale_simple (pixbuf,
772 w, h,
773 GDK_INTERP_BILINEAR);
774 }
775
776 bool ret = false;
777
778 if (result)
779 {
780 XGCValues gcv;
781 GC gc;
782 Pixmap root_pmap;
783
784 image_width = gdk_pixbuf_get_width (result);
785 image_height = gdk_pixbuf_get_height (result);
786
787 if (background_flags)
788 {
789 root_pmap = pixmap;
790 pixmap = None;
791 }
792 else
793 {
794 if (h_scale == 0 || v_scale == 0)
795 {
796 new_pmap_width = min (image_width, target_width);
797 new_pmap_height = min (image_height, target_height);
798 }
799 }
800
801 if (pixmap)
802 {
803 if (pmap_width != new_pmap_width
804 || pmap_height != new_pmap_height
805 || pmap_depth != target->depth)
806 {
807 XFreePixmap (target->dpy, pixmap);
808 pixmap = None;
809 }
810 }
811
812 if (pixmap == None)
813 {
814 pixmap = XCreatePixmap (target->dpy, target->vt, new_pmap_width, new_pmap_height, target->depth);
815 pmap_width = new_pmap_width;
816 pmap_height = new_pmap_height;
817 pmap_depth = target->depth;
818 }
819
820 gcv.foreground = target->pix_colors[Color_bg];
821 gc = XCreateGC (target->dpy, target->vt, GCForeground, &gcv);
822
823 if (h_scale == 0 || v_scale == 0)
824 {
825 Pixmap tile = XCreatePixmap (target->dpy, target->vt, image_width, image_height, target->depth);
826 gdk_pixbuf_xlib_render_to_drawable (result, tile, gc,
827 0, 0,
828 0, 0,
829 image_width, image_height,
830 XLIB_RGB_DITHER_NONE,
831 0, 0);
832
833 gcv.tile = tile;
834 gcv.fill_style = FillTiled;
835 gcv.ts_x_origin = x;
836 gcv.ts_y_origin = y;
837 XChangeGC (target->dpy, gc, GCFillStyle | GCTile | GCTileStipXOrigin | GCTileStipYOrigin, &gcv);
838
839 XFillRectangle (target->dpy, pixmap, gc, 0, 0, new_pmap_width, new_pmap_height);
840 XFreePixmap (target->dpy, tile);
841 }
842 else
843 {
844 int src_x, src_y, dst_x, dst_y;
845 int dst_width, dst_height;
846
847 src_x = make_clip_rectangle (x, image_width , new_pmap_width , dst_x, dst_width );
848 src_y = make_clip_rectangle (y, image_height, new_pmap_height, dst_y, dst_height);
849
850 if (dst_x > 0 || dst_y > 0
851 || dst_x + dst_width < new_pmap_width
852 || dst_y + dst_height < new_pmap_height)
853 XFillRectangle (target->dpy, pixmap, gc, 0, 0, new_pmap_width, new_pmap_height);
854
855 if (dst_x < new_pmap_width && dst_y < new_pmap_height)
856 gdk_pixbuf_xlib_render_to_drawable (result, pixmap, gc,
857 src_x, src_y,
858 dst_x, dst_y,
859 dst_width, dst_height,
860 XLIB_RGB_DITHER_NONE,
861 0, 0);
862 }
863
864 #if XRENDER
865 if (background_flags)
866 {
867 Display *dpy = target->dpy;
868 XRenderPictureAttributes pa;
869
870 XRenderPictFormat *src_format = XRenderFindVisualFormat (dpy, target->visual);
871 Picture src = XRenderCreatePicture (dpy, root_pmap, src_format, 0, &pa);
872
873 XRenderPictFormat *dst_format = XRenderFindVisualFormat (dpy, target->visual);
874 Picture dst = XRenderCreatePicture (dpy, pixmap, dst_format, 0, &pa);
875
876 pa.repeat = True;
877 Pixmap mask_pmap = XCreatePixmap (dpy, target->vt, 1, 1, 8);
878 XRenderPictFormat *mask_format = XRenderFindStandardFormat (dpy, PictStandardA8);
879 Picture mask = XRenderCreatePicture (dpy, mask_pmap, mask_format, CPRepeat, &pa);
880 XFreePixmap (dpy, mask_pmap);
881
882 if (src && dst && mask)
883 {
884 XRenderColor mask_c;
885
886 mask_c.alpha = 0x8000;
887 mask_c.red = 0;
888 mask_c.green = 0;
889 mask_c.blue = 0;
890 XRenderFillRectangle (dpy, PictOpSrc, mask, &mask_c, 0, 0, 1, 1);
891 XRenderComposite (dpy, PictOpOver, src, mask, dst, 0, 0, 0, 0, 0, 0, target_width, target_height);
892 }
893
894 XRenderFreePicture (dpy, src);
895 XRenderFreePicture (dpy, dst);
896 XRenderFreePicture (dpy, mask);
897
898 XFreePixmap (dpy, root_pmap);
899 }
900 #endif
901
902 if (result != pixbuf)
903 g_object_unref (result);
904
905 XFreeGC (target->dpy, gc);
906
907 ret = true;
908 }
909
910 return ret;
911 }
912 # endif /* HAVE_PIXBUF */
913
914 bool
915 bgPixmap_t::set_file (const char *file)
916 {
917 if (!file || !*file)
918 return false;
919
920 if (const char *p = strchr (file, ';'))
921 {
922 size_t len = p - file;
923 char *f = rxvt_temp_buf<char> (len + 1);
924 memcpy (f, file, len);
925 f[len] = '\0';
926 file = f;
927 }
928
929 # ifdef HAVE_AFTERIMAGE
930 if (!target->asimman)
931 target->asimman = create_generic_imageman (target->rs[Rs_path]);
932 ASImage *image = get_asimage (target->asimman, file, 0xFFFFFFFF, 100);
933 if (image)
934 {
935 if (original_asim)
936 safe_asimage_destroy (original_asim);
937 original_asim = image;
938 have_image = true;
939 return true;
940 }
941 # endif
942
943 # ifdef HAVE_PIXBUF
944 GdkPixbuf *image = gdk_pixbuf_new_from_file (file, NULL);
945 if (image)
946 {
947 if (pixbuf)
948 g_object_unref (pixbuf);
949 pixbuf = image;
950 have_image = true;
951 return true;
952 }
953 # endif
954
955 return false;
956 }
957
958 # endif /* BG_IMAGE_FROM_FILE */
959
960 # ifdef ENABLE_TRANSPARENCY
961 bool
962 bgPixmap_t::set_transparent ()
963 {
964 if (!(flags & isTransparent))
965 {
966 flags |= isTransparent;
967 return true;
968 }
969
970 return false;
971 }
972
973 bool
974 bgPixmap_t::set_blur_radius (const char *geom)
975 {
976 int changed = 0;
977 unsigned int hr, vr;
978 int junk;
979 int geom_flags = XParseGeometry (geom, &junk, &junk, &hr, &vr);
980
981 if (!(geom_flags & WidthValue))
982 hr = 1;
983 if (!(geom_flags & HeightValue))
984 vr = hr;
985
986 min_it (hr, 128);
987 min_it (vr, 128);
988
989 if (h_blurRadius != hr)
990 {
991 ++changed;
992 h_blurRadius = hr;
993 }
994
995 if (v_blurRadius != vr)
996 {
997 ++changed;
998 v_blurRadius = vr;
999 }
1000
1001 if (v_blurRadius == 0 && h_blurRadius == 0)
1002 flags &= ~blurNeeded;
1003 else
1004 flags |= blurNeeded;
1005
1006 return (changed > 0);
1007 }
1008
1009 static inline unsigned long
1010 compute_tint_shade_flags (rxvt_color *tint, int shade)
1011 {
1012 unsigned long flags = 0;
1013 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC);
1014 bool has_shade = shade != 100;
1015
1016 if (tint)
1017 {
1018 tint->get (c);
1019 # define IS_COMPONENT_WHOLESOME(cmp) ((cmp) <= 0x000700 || (cmp) >= 0x00f700)
1020 if (!has_shade && IS_COMPONENT_WHOLESOME (c.r)
1021 && IS_COMPONENT_WHOLESOME (c.g)
1022 && IS_COMPONENT_WHOLESOME (c.b))
1023 flags |= bgPixmap_t::tintWholesome;
1024 # undef IS_COMPONENT_WHOLESOME
1025 }
1026
1027 if (has_shade)
1028 flags |= bgPixmap_t::tintNeeded;
1029 else if (tint)
1030 {
1031 if ((c.r > 0x000700 || c.g > 0x000700 || c.b > 0x000700)
1032 && (c.r < 0x00f700 || c.g < 0x00f700 || c.b < 0x00f700))
1033 {
1034 flags |= bgPixmap_t::tintNeeded;
1035 }
1036 }
1037
1038 return flags;
1039 }
1040
1041 bool
1042 bgPixmap_t::set_tint (rxvt_color &new_tint)
1043 {
1044 if (!(flags & tintSet) || tint != new_tint)
1045 {
1046 unsigned long new_flags = compute_tint_shade_flags (&new_tint, shade);
1047 tint = new_tint;
1048 flags = (flags & ~tintFlags) | new_flags | tintSet;
1049 return true;
1050 }
1051
1052 return false;
1053 }
1054
1055 bool
1056 bgPixmap_t::unset_tint ()
1057 {
1058 unsigned long new_flags = compute_tint_shade_flags (NULL, shade);
1059
1060 if (new_flags != (flags & tintFlags))
1061 {
1062 flags = (flags & ~tintFlags) | new_flags;
1063 return true;
1064 }
1065
1066 return false;
1067 }
1068
1069 bool
1070 bgPixmap_t::set_shade (const char *shade_str)
1071 {
1072 int new_shade = (shade_str) ? atoi (shade_str) : 100;
1073
1074 clamp_it (new_shade, -100, 200);
1075 if (new_shade < 0)
1076 new_shade = 200 - (100 + new_shade);
1077
1078 if (new_shade != shade)
1079 {
1080 unsigned long new_flags = compute_tint_shade_flags ((flags & tintSet) ? &tint : NULL, new_shade);
1081 shade = new_shade;
1082 flags = (flags & (~tintFlags | tintSet)) | new_flags;
1083 return true;
1084 }
1085
1086 return false;
1087 }
1088
1089 #if XRENDER
1090 static void
1091 get_gaussian_kernel (int radius, int width, double *kernel, XFixed *params)
1092 {
1093 double sigma = radius / 2.0;
1094 double scale = sqrt (2.0 * M_PI) * sigma;
1095 double sum = 0.0;
1096
1097 for (int i = 0; i < width; i++)
1098 {
1099 double x = i - width / 2;
1100 kernel[i] = exp (-(x * x) / (2.0 * sigma * sigma)) / scale;
1101 sum += kernel[i];
1102 }
1103
1104 params[0] = XDoubleToFixed (width);
1105 params[1] = XDoubleToFixed (1);
1106
1107 for (int i = 0; i < width; i++)
1108 params[i+2] = XDoubleToFixed (kernel[i] / sum);
1109 }
1110 #endif
1111
1112 bool
1113 bgPixmap_t::blur_pixmap (Pixmap pixmap, Visual *visual, int width, int height)
1114 {
1115 bool ret = false;
1116 #if XRENDER
1117 int size = max (h_blurRadius, v_blurRadius) * 2 + 1;
1118 double *kernel = (double *)malloc (size * sizeof (double));
1119 XFixed *params = (XFixed *)malloc ((size + 2) * sizeof (XFixed));
1120
1121 Display *dpy = target->dpy;
1122 XRenderPictureAttributes pa;
1123 XRenderPictFormat *format = XRenderFindVisualFormat (dpy, visual);
1124
1125 Picture src = XRenderCreatePicture (dpy, pixmap, format, 0, &pa);
1126 Picture dst = XRenderCreatePicture (dpy, pixmap, format, 0, &pa);
1127
1128 if (kernel && params && src && dst)
1129 {
1130 if (h_blurRadius)
1131 {
1132 size = h_blurRadius * 2 + 1;
1133 get_gaussian_kernel (h_blurRadius, size, kernel, params);
1134
1135 XRenderSetPictureFilter (dpy, src, FilterConvolution, params, size+2);
1136 XRenderComposite (dpy,
1137 PictOpSrc,
1138 src,
1139 None,
1140 dst,
1141 0, 0,
1142 0, 0,
1143 0, 0,
1144 width, height);
1145 }
1146
1147 if (v_blurRadius)
1148 {
1149 size = v_blurRadius * 2 + 1;
1150 get_gaussian_kernel (v_blurRadius, size, kernel, params);
1151 swap (params[0], params[1]);
1152
1153 XRenderSetPictureFilter (dpy, src, FilterConvolution, params, size+2);
1154 XRenderComposite (dpy,
1155 PictOpSrc,
1156 src,
1157 None,
1158 dst,
1159 0, 0,
1160 0, 0,
1161 0, 0,
1162 width, height);
1163 }
1164
1165 ret = true;
1166 }
1167
1168 free (kernel);
1169 free (params);
1170 XRenderFreePicture (dpy, src);
1171 XRenderFreePicture (dpy, dst);
1172 #endif
1173 return ret;
1174 }
1175
1176 bool
1177 bgPixmap_t::tint_pixmap (Pixmap pixmap, Visual *visual, int width, int height)
1178 {
1179 Display *dpy = target->dpy;
1180 bool ret = false;
1181
1182 if (flags & tintWholesome)
1183 {
1184 XGCValues gcv;
1185 GC gc;
1186
1187 /* In this case we can tint image server-side getting significant
1188 * performance improvements, as we eliminate XImage transfer
1189 */
1190 gcv.foreground = Pixel (tint);
1191 gcv.function = GXand;
1192 gcv.fill_style = FillSolid;
1193 gc = XCreateGC (dpy, pixmap, GCFillStyle | GCForeground | GCFunction, &gcv);
1194 if (gc)
1195 {
1196 XFillRectangle (dpy, pixmap, gc, 0, 0, width, height);
1197 ret = true;
1198 XFreeGC (dpy, gc);
1199 }
1200 }
1201 else
1202 {
1203 # if XRENDER
1204 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC);
1205
1206 if (flags & tintSet)
1207 tint.get (c);
1208
1209 if (shade <= 100)
1210 {
1211 c.r = (c.r * shade) / 100;
1212 c.g = (c.g * shade) / 100;
1213 c.b = (c.b * shade) / 100;
1214 }
1215 else
1216 {
1217 c.r = ((0xffff - c.r) * (200 - shade)) / 100;
1218 c.g = ((0xffff - c.g) * (200 - shade)) / 100;
1219 c.b = ((0xffff - c.b) * (200 - shade)) / 100;
1220 }
1221
1222 XRenderPictFormat *solid_format = XRenderFindStandardFormat (dpy, PictStandardARGB32);
1223 XRenderPictFormat *format = XRenderFindVisualFormat (dpy, visual);
1224 XRenderPictureAttributes pa;
1225
1226 Picture back_pic = XRenderCreatePicture (dpy, pixmap, format, 0, &pa);
1227
1228 pa.repeat = True;
1229
1230 Pixmap overlay_pmap = XCreatePixmap (dpy, pixmap, 1, 1, 32);
1231 Picture overlay_pic = XRenderCreatePicture (dpy, overlay_pmap, solid_format, CPRepeat, &pa);
1232 XFreePixmap (dpy, overlay_pmap);
1233
1234 pa.component_alpha = True;
1235 Pixmap mask_pmap = XCreatePixmap (dpy, pixmap, 1, 1, 32);
1236 Picture mask_pic = XRenderCreatePicture (dpy, mask_pmap, solid_format, CPRepeat|CPComponentAlpha, &pa);
1237 XFreePixmap (dpy, mask_pmap);
1238
1239 if (mask_pic && overlay_pic && back_pic)
1240 {
1241 XRenderColor mask_c;
1242
1243 memset (&mask_c, (shade > 100) ? 0xFF : 0x0, sizeof (mask_c));
1244 mask_c.alpha = 0xffff;
1245 XRenderFillRectangle (dpy, PictOpSrc, overlay_pic, &mask_c, 0, 0, 1, 1);
1246
1247 mask_c.alpha = 0;
1248 mask_c.red = 0xffff - c.r;
1249 mask_c.green = 0xffff - c.g;
1250 mask_c.blue = 0xffff - c.b;
1251 XRenderFillRectangle (dpy, PictOpSrc, mask_pic, &mask_c, 0, 0, 1, 1);
1252 XRenderComposite (dpy, PictOpOver, overlay_pic, mask_pic, back_pic, 0, 0, 0, 0, 0, 0, width, height);
1253 ret = true;
1254 }
1255
1256 XRenderFreePicture (dpy, mask_pic);
1257 XRenderFreePicture (dpy, overlay_pic);
1258 XRenderFreePicture (dpy, back_pic);
1259 # endif
1260 }
1261
1262 return ret;
1263 }
1264
1265 /* make_transparency_pixmap()
1266 * Builds a pixmap of the same size as the terminal window that contains
1267 * the tiled portion of the root pixmap that is supposed to be covered by
1268 * our window.
1269 */
1270 unsigned long
1271 bgPixmap_t::make_transparency_pixmap ()
1272 {
1273 unsigned long result = 0;
1274
1275 if (target == NULL)
1276 return 0;
1277
1278 /* root dimensions may change from call to call - but Display structure should
1279 * be always up-to-date, so let's use it :
1280 */
1281 int screen = target->display->screen;
1282 Display *dpy = target->dpy;
1283 int root_depth = DefaultDepth (dpy, screen);
1284 int root_width = DisplayWidth (dpy, screen);
1285 int root_height = DisplayHeight (dpy, screen);
1286 unsigned int root_pmap_width, root_pmap_height;
1287 int window_width = target->szHint.width;
1288 int window_height = target->szHint.height;
1289 int sx, sy;
1290 XGCValues gcv;
1291 GC gc;
1292
1293 target->get_window_origin (sx, sy);
1294
1295 /* check if we are outside of the visible part of the virtual screen : */
1296 if (sx + window_width <= 0 || sy + window_height <= 0
1297 || sx >= root_width || sy >= root_height)
1298 return 0;
1299
1300 // validate root pixmap and get its size
1301 if (root_pixmap != None)
1302 {
1303 Window wdummy;
1304 int idummy;
1305 unsigned int udummy;
1306
1307 target->allowedxerror = -1;
1308
1309 if (!XGetGeometry (dpy, root_pixmap, &wdummy, &idummy, &idummy, &root_pmap_width, &root_pmap_height, &udummy, &udummy))
1310 root_pixmap = None;
1311
1312 target->allowedxerror = 0;
1313 }
1314
1315 Pixmap recoded_root_pmap = root_pixmap;
1316
1317 if (root_pixmap != None && root_depth != target->depth)
1318 {
1319 #if XRENDER
1320 if (flags & HAS_RENDER)
1321 {
1322 XRenderPictureAttributes pa;
1323
1324 XRenderPictFormat *src_format = XRenderFindVisualFormat (dpy, DefaultVisual (dpy, screen));
1325 Picture src = XRenderCreatePicture (dpy, root_pixmap, src_format, 0, &pa);
1326
1327 recoded_root_pmap = XCreatePixmap (dpy, target->vt, root_pmap_width, root_pmap_height, target->depth);
1328 XRenderPictFormat *dst_format = XRenderFindVisualFormat (dpy, target->visual);
1329 Picture dst = XRenderCreatePicture (dpy, recoded_root_pmap, dst_format, 0, &pa);
1330
1331 if (src && dst)
1332 XRenderComposite (dpy, PictOpSrc, src, None, dst, 0, 0, 0, 0, 0, 0, root_pmap_width, root_pmap_height);
1333 else
1334 {
1335 XFreePixmap (dpy, recoded_root_pmap);
1336 root_pixmap = None;
1337 }
1338
1339 XRenderFreePicture (dpy, src);
1340 XRenderFreePicture (dpy, dst);
1341 }
1342 else
1343 #endif
1344 root_pixmap = None;
1345 }
1346
1347 if (root_pixmap == None)
1348 return 0;
1349
1350 Pixmap tiled_root_pmap = XCreatePixmap (dpy, target->vt, window_width, window_height, target->depth);
1351
1352 if (tiled_root_pmap == None) /* something really bad happened - abort */
1353 return 0;
1354
1355 /* straightforward pixmap copy */
1356 gcv.tile = recoded_root_pmap;
1357 gcv.fill_style = FillTiled;
1358
1359 while (sx < 0) sx += (int)root_width;
1360 while (sy < 0) sy += (int)root_height;
1361
1362 gcv.ts_x_origin = -sx;
1363 gcv.ts_y_origin = -sy;
1364 gc = XCreateGC (dpy, target->vt, GCFillStyle | GCTile | GCTileStipXOrigin | GCTileStipYOrigin, &gcv);
1365
1366 if (gc)
1367 {
1368 XFillRectangle (dpy, tiled_root_pmap, gc, 0, 0, window_width, window_height);
1369 result |= transpPmapTiled;
1370 XFreeGC (dpy, gc);
1371 }
1372
1373 if (tiled_root_pmap != None)
1374 {
1375 if (!need_client_side_rendering ())
1376 {
1377 if ((flags & blurNeeded)
1378 && (flags & HAS_RENDER_CONV))
1379 {
1380 if (blur_pixmap (tiled_root_pmap, target->visual, window_width, window_height))
1381 result |= transpPmapBlurred;
1382 }
1383 if ((flags & tintNeeded)
1384 && (flags & (tintWholesome | HAS_RENDER)))
1385 {
1386 if (tint_pixmap (tiled_root_pmap, target->visual, window_width, window_height))
1387 result |= transpPmapTinted;
1388 }
1389 } /* server side rendering completed */
1390
1391 if (pixmap)
1392 XFreePixmap (dpy, pixmap);
1393
1394 pixmap = tiled_root_pmap;
1395 pmap_width = window_width;
1396 pmap_height = window_height;
1397 pmap_depth = target->depth;
1398 }
1399
1400 if (recoded_root_pmap != root_pixmap)
1401 XFreePixmap (dpy, recoded_root_pmap);
1402
1403 return result;
1404 }
1405
1406 void
1407 bgPixmap_t::set_root_pixmap ()
1408 {
1409 Pixmap new_root_pixmap = target->get_pixmap_property (XA_XROOTPMAP_ID);
1410 if (new_root_pixmap == None)
1411 new_root_pixmap = target->get_pixmap_property (XA_ESETROOT_PMAP_ID);
1412
1413 root_pixmap = new_root_pixmap;
1414 }
1415 # endif /* ENABLE_TRANSPARENCY */
1416
1417 # ifndef HAVE_AFTERIMAGE
1418 static void ShadeXImage(Visual *visual, XImage *srcImage, int shade, int rm, int gm, int bm);
1419 # endif
1420
1421 bool
1422 bgPixmap_t::render ()
1423 {
1424 unsigned long background_flags = 0;
1425
1426 if (target == NULL)
1427 return false;
1428
1429 invalidate ();
1430 # ifdef ENABLE_TRANSPARENCY
1431 if (flags & isTransparent)
1432 {
1433 /* we need to re-generate transparency pixmap in that case ! */
1434 background_flags = make_transparency_pixmap ();
1435 if (background_flags == 0)
1436 return false;
1437 else if ((background_flags & transpTransformations) == (flags & transpTransformations))
1438 flags = flags & ~isInvalid;
1439 }
1440 # endif
1441
1442 # ifdef BG_IMAGE_FROM_FILE
1443 if (have_image
1444 || (background_flags & transpTransformations) != (flags & transpTransformations))
1445 {
1446 if (render_image (background_flags))
1447 flags = flags & ~isInvalid;
1448 }
1449 # endif
1450
1451 XImage *result = NULL;
1452
1453 if (background_flags && (flags & isInvalid))
1454 {
1455 result = XGetImage (target->dpy, pixmap, 0, 0, pmap_width, pmap_height, AllPlanes, ZPixmap);
1456 }
1457
1458 if (result)
1459 {
1460 # if !defined(HAVE_AFTERIMAGE) && !XRENDER
1461 /* our own client-side tinting */
1462 if (!(background_flags & transpPmapTinted) && (flags & tintNeeded))
1463 {
1464 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC);
1465 if (flags & tintSet)
1466 tint.get (c);
1467 ShadeXImage (DefaultVisual (target->dpy, target->display->screen), result, shade, c.r, c.g, c.b);
1468 }
1469 # endif
1470
1471 GC gc = XCreateGC (target->dpy, target->vt, 0UL, NULL);
1472
1473 if (gc)
1474 {
1475 XPutImage (target->dpy, pixmap, gc, result, 0, 0, 0, 0, result->width, result->height);
1476
1477 XFreeGC (target->dpy, gc);
1478 flags = flags & ~isInvalid;
1479 }
1480
1481 XDestroyImage (result);
1482 }
1483
1484 if (flags & isInvalid)
1485 {
1486 if (pixmap != None)
1487 {
1488 XFreePixmap (target->dpy, pixmap);
1489 pixmap = None;
1490 }
1491 }
1492
1493 apply ();
1494
1495 valid_since = ev::now ();
1496
1497 return true;
1498 }
1499
1500 void
1501 bgPixmap_t::set_target (rxvt_term *new_target)
1502 {
1503 target = new_target;
1504
1505 flags &= ~(HAS_RENDER | HAS_RENDER_CONV);
1506 #if XRENDER
1507 int major, minor;
1508 if (XRenderQueryVersion (target->dpy, &major, &minor))
1509 flags |= HAS_RENDER;
1510 XFilters *filters = XRenderQueryFilters (target->dpy, target->vt);
1511 if (filters)
1512 {
1513 for (int i = 0; i < filters->nfilter; i++)
1514 if (!strcmp (filters->filter[i], FilterConvolution))
1515 flags |= HAS_RENDER_CONV;
1516
1517 XFree (filters);
1518 }
1519 #endif
1520 }
1521
1522 void
1523 bgPixmap_t::apply ()
1524 {
1525 if (target == NULL)
1526 return;
1527
1528 if (pixmap != None)
1529 {
1530 /* set target's background to pixmap */
1531 # ifdef ENABLE_TRANSPARENCY
1532 if (flags & isTransparent)
1533 {
1534 XSetWindowBackgroundPixmap (target->dpy, target->parent[0], pixmap);
1535 XSetWindowBackgroundPixmap (target->dpy, target->vt, ParentRelative);
1536
1537 if (target->scrollBar.win)
1538 XSetWindowBackgroundPixmap (target->dpy, target->scrollBar.win, ParentRelative);
1539 }
1540 else
1541 # endif
1542 {
1543 /* force old pixmap dereference in case it was transparent before :*/
1544 XSetWindowBackground (target->dpy, target->parent[0], target->pix_colors[Color_border]);
1545 XSetWindowBackgroundPixmap (target->dpy, target->vt, pixmap);
1546 /* do we also need to set scrollbar's background here ? */
1547
1548 if (target->scrollBar.win)
1549 XSetWindowBackground (target->dpy, target->scrollBar.win, target->pix_colors[Color_border]);
1550 }
1551 }
1552 else
1553 {
1554 /* set target background to a pixel */
1555 XSetWindowBackground (target->dpy, target->parent[0], target->pix_colors[Color_border]);
1556 XSetWindowBackground (target->dpy, target->vt, target->pix_colors[Color_bg]);
1557 /* do we also need to set scrollbar's background here ? */
1558 if (target->scrollBar.win)
1559 XSetWindowBackground (target->dpy, target->scrollBar.win, target->pix_colors[Color_border]);
1560 }
1561
1562 /* don't want Expose on the parent or vt. It is better to use
1563 scr_touch or we get a great deal of flicker otherwise: */
1564 XClearWindow (target->dpy, target->parent[0]);
1565
1566 if (target->scrollBar.state && target->scrollBar.win)
1567 {
1568 target->scrollBar.state = STATE_IDLE;
1569 target->scrollBar.show (0);
1570 }
1571
1572 target->want_refresh = 1;
1573 flags |= hasChanged;
1574 }
1575
1576 #endif /* HAVE_BG_PIXMAP */
1577
1578 #if defined(ENABLE_TRANSPARENCY) && !defined(HAVE_AFTERIMAGE) && !XRENDER
1579 /* taken from aterm-0.4.2 */
1580
1581 static void
1582 ShadeXImage(Visual *visual, XImage *srcImage, int shade, int rm, int gm, int bm)
1583 {
1584 int sh_r, sh_g, sh_b;
1585 uint32_t mask_r, mask_g, mask_b;
1586 uint32_t *lookup, *lookup_r, *lookup_g, *lookup_b;
1587 unsigned int lower_lim_r, lower_lim_g, lower_lim_b;
1588 unsigned int upper_lim_r, upper_lim_g, upper_lim_b;
1589 int i;
1590 int host_byte_order = byteorder.big_endian () ? MSBFirst : LSBFirst;
1591
1592 if (visual->c_class != TrueColor || srcImage->format != ZPixmap) return;
1593
1594 /* for convenience */
1595 mask_r = visual->red_mask;
1596 mask_g = visual->green_mask;
1597 mask_b = visual->blue_mask;
1598
1599 /* boring lookup table pre-initialization */
1600 switch (srcImage->depth)
1601 {
1602 case 15:
1603 if ((mask_r != 0x7c00) ||
1604 (mask_g != 0x03e0) ||
1605 (mask_b != 0x001f))
1606 return;
1607 lookup = (uint32_t *) malloc (sizeof (uint32_t)*(32+32+32));
1608 lookup_r = lookup;
1609 lookup_g = lookup+32;
1610 lookup_b = lookup+32+32;
1611 sh_r = 10;
1612 sh_g = 5;
1613 sh_b = 0;
1614 break;
1615 case 16:
1616 if ((mask_r != 0xf800) ||
1617 (mask_g != 0x07e0) ||
1618 (mask_b != 0x001f))
1619 return;
1620 lookup = (uint32_t *) malloc (sizeof (uint32_t)*(32+64+32));
1621 lookup_r = lookup;
1622 lookup_g = lookup+32;
1623 lookup_b = lookup+32+64;
1624 sh_r = 11;
1625 sh_g = 5;
1626 sh_b = 0;
1627 break;
1628 case 24:
1629 if ((mask_r != 0xff0000) ||
1630 (mask_g != 0x00ff00) ||
1631 (mask_b != 0x0000ff))
1632 return;
1633 lookup = (uint32_t *) malloc (sizeof (uint32_t)*(256+256+256));
1634 lookup_r = lookup;
1635 lookup_g = lookup+256;
1636 lookup_b = lookup+256+256;
1637 sh_r = 16;
1638 sh_g = 8;
1639 sh_b = 0;
1640 break;
1641 case 32:
1642 if ((mask_r != 0xff0000) ||
1643 (mask_g != 0x00ff00) ||
1644 (mask_b != 0x0000ff))
1645 return;
1646 lookup = (uint32_t *) malloc (sizeof (uint32_t)*(256+256+256));
1647 lookup_r = lookup;
1648 lookup_g = lookup+256;
1649 lookup_b = lookup+256+256;
1650 sh_r = 16;
1651 sh_g = 8;
1652 sh_b = 0;
1653 break;
1654 default:
1655 return; /* we do not support this color depth */
1656 }
1657
1658 /* prepare limits for color transformation (each channel is handled separately) */
1659 if (shade > 100)
1660 {
1661 shade = 200 - shade;
1662
1663 lower_lim_r = 65535-rm;
1664 lower_lim_g = 65535-gm;
1665 lower_lim_b = 65535-bm;
1666
1667 lower_lim_r = 65535-(unsigned int)(((uint32_t)lower_lim_r)*((uint32_t)shade)/100);
1668 lower_lim_g = 65535-(unsigned int)(((uint32_t)lower_lim_g)*((uint32_t)shade)/100);
1669 lower_lim_b = 65535-(unsigned int)(((uint32_t)lower_lim_b)*((uint32_t)shade)/100);
1670
1671 upper_lim_r = upper_lim_g = upper_lim_b = 65535;
1672 }
1673 else
1674 {
1675
1676 lower_lim_r = lower_lim_g = lower_lim_b = 0;
1677
1678 upper_lim_r = (unsigned int)((((uint32_t)rm)*((uint32_t)shade))/100);
1679 upper_lim_g = (unsigned int)((((uint32_t)gm)*((uint32_t)shade))/100);
1680 upper_lim_b = (unsigned int)((((uint32_t)bm)*((uint32_t)shade))/100);
1681 }
1682
1683 /* fill our lookup tables */
1684 for (i = 0; i <= mask_r>>sh_r; i++)
1685 {
1686 uint32_t tmp;
1687 tmp = ((uint32_t)i)*((uint32_t)(upper_lim_r-lower_lim_r));
1688 tmp += ((uint32_t)(mask_r>>sh_r))*((uint32_t)lower_lim_r);
1689 lookup_r[i] = (tmp/65535)<<sh_r;
1690 }
1691 for (i = 0; i <= mask_g>>sh_g; i++)
1692 {
1693 uint32_t tmp;
1694 tmp = ((uint32_t)i)*((uint32_t)(upper_lim_g-lower_lim_g));
1695 tmp += ((uint32_t)(mask_g>>sh_g))*((uint32_t)lower_lim_g);
1696 lookup_g[i] = (tmp/65535)<<sh_g;
1697 }
1698 for (i = 0; i <= mask_b>>sh_b; i++)
1699 {
1700 uint32_t tmp;
1701 tmp = ((uint32_t)i)*((uint32_t)(upper_lim_b-lower_lim_b));
1702 tmp += ((uint32_t)(mask_b>>sh_b))*((uint32_t)lower_lim_b);
1703 lookup_b[i] = (tmp/65535)<<sh_b;
1704 }
1705
1706 /* apply table to input image (replacing colors by newly calculated ones) */
1707 if (srcImage->bits_per_pixel == 32
1708 && (srcImage->depth == 24 || srcImage->depth == 32)
1709 && srcImage->byte_order == host_byte_order)
1710 {
1711 uint32_t *p1, *pf, *p, *pl;
1712 p1 = (uint32_t *) srcImage->data;
1713 pf = (uint32_t *) (srcImage->data + srcImage->height * srcImage->bytes_per_line);
1714
1715 while (p1 < pf)
1716 {
1717 p = p1;
1718 pl = p1 + srcImage->width;
1719 for (; p < pl; p++)
1720 {
1721 *p = lookup_r[(*p & 0xff0000) >> 16] |
1722 lookup_g[(*p & 0x00ff00) >> 8] |
1723 lookup_b[(*p & 0x0000ff)] |
1724 (*p & 0xff000000);
1725 }
1726 p1 = (uint32_t *) ((char *) p1 + srcImage->bytes_per_line);
1727 }
1728 }
1729 else
1730 {
1731 for (int y = 0; y < srcImage->height; y++)
1732 for (int x = 0; x < srcImage->width; x++)
1733 {
1734 unsigned long pixel = XGetPixel (srcImage, x, y);
1735 pixel = lookup_r[(pixel & mask_r) >> sh_r] |
1736 lookup_g[(pixel & mask_g) >> sh_g] |
1737 lookup_b[(pixel & mask_b) >> sh_b];
1738 XPutPixel (srcImage, x, y, pixel);
1739 }
1740 }
1741
1742 free (lookup);
1743 }
1744 #endif /* defined(ENABLE_TRANSPARENCY) && !defined(HAVE_AFTERIMAGE) */