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Comparing rxvt-unicode/src/background.C (file contents):
Revision 1.58 by sf-exg, Fri Sep 3 22:57:31 2010 UTC vs.
Revision 1.161 by sf-exg, Thu Aug 11 08:39:10 2011 UTC

1/*----------------------------------------------------------------------* 1/*----------------------------------------------------------------------*
2 * File: background.C - former xpm.C 2 * File: background.C - former xpm.C
3 *----------------------------------------------------------------------* 3 *----------------------------------------------------------------------*
4 * 4 *
5 * All portions of code are copyright by their respective author/s. 5 * All portions of code are copyright by their respective author/s.
6 * Copyright (c) 2005-2008 Marc Lehmann <pcg@goof.com> 6 * Copyright (c) 2005-2008 Marc Lehmann <schmorp@schmorp.de>
7 * Copyright (c) 2007 Sasha Vasko <sasha@aftercode.net> 7 * Copyright (c) 2007 Sasha Vasko <sasha@aftercode.net>
8 * Copyright (c) 2010 Emanuele Giaquinta <e.giaquinta@glauco.it>
8 * 9 *
9 * This program is free software; you can redistribute it and/or modify 10 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by 11 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 2 of the License, or 12 * the Free Software Foundation; either version 2 of the License, or
12 * (at your option) any later version. 13 * (at your option) any later version.
19 * You should have received a copy of the GNU General Public License 20 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software 21 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. 22 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
22 *---------------------------------------------------------------------*/ 23 *---------------------------------------------------------------------*/
23 24
25#include <cmath>
24#include "../config.h" /* NECESSARY */ 26#include "../config.h" /* NECESSARY */
25#include "rxvt.h" /* NECESSARY */ 27#include "rxvt.h" /* NECESSARY */
26 28
27#define DO_TIMING_TEST 0 29#if XRENDER
30# include <X11/extensions/Xrender.h>
31#endif
28 32
29#if DO_TIMING_TEST 33#ifndef FilterConvolution
30# include <sys/time.h> 34#define FilterConvolution "convolution"
31#define TIMING_TEST_START(id) \
32 struct timeval timing_test_##id##_stv; \
33 gettimeofday (&timing_test_##id##_stv, NULL);
34
35#define TIMING_TEST_PRINT_RESULT(id) \
36 do { \
37 struct timeval tv; \
38 gettimeofday (&tv, NULL); \
39 tv.tv_sec -= (timing_test_##id##_stv).tv_sec; \
40 fprintf (stderr, "%s: %s: %d: elapsed %ld usec\n", #id, __FILE__, __LINE__, \
41 tv.tv_sec * 1000000 + tv.tv_usec - (timing_test_##id##_stv).tv_usec); \
42 } while (0)
43
44#else
45#define TIMING_TEST_START(id) do {} while (0)
46#define TIMING_TEST_PRINT_RESULT(id) do {} while (0)
47#endif 35#endif
48 36
49/* 37/*
50 * Pixmap geometry string interpretation : 38 * Pixmap geometry string interpretation :
51 * Each geometry string contains zero or one scale/position 39 * Each geometry string contains zero or one scale/position
56 * 44 *
57 * WxH+X+Y Set scaling to W% by H%, and position to X% by Y%. 45 * WxH+X+Y Set scaling to W% by H%, and position to X% by Y%.
58 * W and H are percentages of the terminal window size. 46 * W and H are percentages of the terminal window size.
59 * X and Y are also percentages; e.g., +50+50 centers 47 * X and Y are also percentages; e.g., +50+50 centers
60 * the image in the window. 48 * the image in the window.
61 * WxH+X Assumes Y == X
62 * WxH Assumes Y == X == 50 (centers the image)
63 * W+X+Y Assumes H == W
64 * W+X Assumes H == W and Y == X
65 * W Assumes H == W and Y == X == 50
66 *
67 * Adjusting position only :
68 * =+X+Y Set position to X% by Y% (absolute).
69 * =+X Set position to X% by X%.
70 * +X+Y Adjust position horizontally X% and vertically Y%
71 * from current position (relative).
72 * +X Adjust position horizontally X% and vertically X%
73 * from current position.
74 *
75 * Adjusting scale only :
76 * Wx0 Multiply horizontal scaling factor by W%
77 * 0xH Multiply vertical scaling factor by H%
78 * 0x0 No scaling (show image at normal size).
79 * 49 *
80 * Pixmap Operations : (should be prepended by a colon) 50 * Pixmap Operations : (should be prepended by a colon)
81 * tile Tile image. Scaling/position modifiers above will affect
82 * the tile size and origin.
83 * propscale When scaling, scale proportionally. That is, maintain the
84 * proper aspect ratio for the image. Any portion of the
85 * background not covered by the image is filled with the
86 * current background color.
87 * hscale Scale horizontally, tile vertically ?
88 * vscale Tile horizontally, scale vertically ?
89 * scale Scale both up and down
90 * auto Same as 100x100+50+50
91 */ 51 */
92 52
93#ifdef HAVE_BG_PIXMAP 53#ifdef HAVE_BG_PIXMAP
94bgPixmap_t::bgPixmap_t ()
95{
96 // this is basically redundant as bgPixmap_t is only used in
97 // zero_initialised-derived structs
98#ifdef HAVE_AFTERIMAGE
99 original_asim = NULL;
100#endif
101#ifdef HAVE_PIXBUF
102 pixbuf = NULL;
103#endif
104#ifdef BG_IMAGE_FROM_FILE
105 have_image = false;
106 h_scale = v_scale = 0;
107 h_align = v_align = 0;
108#endif
109 flags = 0;
110 pixmap = None;
111 valid_since = invalid_since = 0;
112 target = 0;
113}
114
115void 54void
116bgPixmap_t::destroy () 55rxvt_term::bg_destroy ()
117{ 56{
118#ifdef HAVE_AFTERIMAGE 57#ifdef HAVE_AFTERIMAGE
119 if (original_asim) 58 if (original_asim)
120 safe_asimage_destroy (original_asim); 59 safe_asimage_destroy (original_asim);
60 if (asv)
61 destroy_asvisual (asv, 0);
62 if (asimman)
63 destroy_image_manager (asimman, 0);
121#endif 64#endif
122 65
123#ifdef HAVE_PIXBUF 66#ifdef HAVE_PIXBUF
124 if (pixbuf) 67 if (pixbuf)
125 g_object_unref (pixbuf); 68 g_object_unref (pixbuf);
126#endif 69#endif
127 70
128 if (pixmap && target) 71 if (bg_pixmap)
129 XFreePixmap (target->dpy, pixmap); 72 XFreePixmap (dpy, bg_pixmap);
130} 73}
131 74
132bool 75bool
133bgPixmap_t::window_size_sensitive () 76rxvt_term::bg_set_position (int x, int y)
77{
78
79 if (target_x != x
80 || target_y != y)
81 {
82 target_x = x;
83 target_y = y;
84 return true;
85 }
86 return false;
87}
88
89bool
90rxvt_term::bg_window_size_sensitive ()
134{ 91{
135# ifdef ENABLE_TRANSPARENCY 92# ifdef ENABLE_TRANSPARENCY
136 if (flags & isTransparent) 93 if (bg_flags & BG_IS_TRANSPARENT)
137 return true; 94 return true;
138# endif 95# endif
139 96
140# ifdef BG_IMAGE_FROM_FILE 97# ifdef BG_IMAGE_FROM_FILE
141 if (have_image) 98 if (bg_flags & BG_IS_FROM_FILE)
142 { 99 {
143 if (h_scale != 0 || v_scale != 0 100 if (bg_flags & BG_IS_SIZE_SENSITIVE)
144 || h_align != 0 || v_align != 0)
145 return true; 101 return true;
146 } 102 }
147# endif 103# endif
148 104
149 return false; 105 return false;
150} 106}
151 107
152bool 108bool
153bgPixmap_t::window_position_sensitive () 109rxvt_term::bg_window_position_sensitive ()
154{ 110{
155# ifdef ENABLE_TRANSPARENCY 111# ifdef ENABLE_TRANSPARENCY
156 if (flags & isTransparent) 112 if (bg_flags & BG_IS_TRANSPARENT)
157 return true; 113 return true;
158# endif 114# endif
159 115
160# ifdef BG_IMAGE_FROM_FILE 116# ifdef BG_IMAGE_FROM_FILE
161 if (have_image) 117 if (bg_flags & BG_IS_FROM_FILE)
162 { 118 {
163 if (h_align == rootAlign || v_align == rootAlign) 119 if (bg_flags & BG_ROOT_ALIGN)
164 return true; 120 return true;
165 } 121 }
166# endif 122# endif
167 123
168 return false;
169};
170
171bool bgPixmap_t::need_client_side_rendering ()
172{
173# ifdef HAVE_AFTERIMAGE
174 if (original_asim)
175 return true;
176# endif
177# ifdef ENABLE_TRANSPARENCY
178 if (flags & isTransparent)
179 {
180# ifdef HAVE_AFTERIMAGE // can't blur without libAI anyways
181 if ((flags & blurNeeded) && !(flags & blurServerSide))
182 return true;
183# endif
184 if ((flags & tintNeeded) && !(flags & tintServerSide))
185 return true;
186 }
187# endif
188 return false; 124 return false;
189} 125}
190 126
191# ifdef BG_IMAGE_FROM_FILE 127# ifdef BG_IMAGE_FROM_FILE
192static inline bool 128static inline bool
208static inline bool 144static inline bool
209check_set_align_value (int geom_flags, int flag, int &align, int new_value) 145check_set_align_value (int geom_flags, int flag, int &align, int new_value)
210{ 146{
211 if (geom_flags & flag) 147 if (geom_flags & flag)
212 { 148 {
213 if (new_value != bgPixmap_t::rootAlign)
214 {
215 if (new_value < -100) 149 if (new_value < -100)
216 new_value = -100; 150 new_value = -100;
217 else if (new_value > 200) 151 else if (new_value > 200)
218 new_value = 200; 152 new_value = 200;
219 }
220 if (new_value != align) 153 if (new_value != align)
221 { 154 {
222 align = new_value; 155 align = new_value;
223 return true; 156 return true;
224 } 157 }
230make_align_position (int align, int window_size, int image_size) 163make_align_position (int align, int window_size, int image_size)
231{ 164{
232 int diff = window_size - image_size; 165 int diff = window_size - image_size;
233 int smaller = min (image_size, window_size); 166 int smaller = min (image_size, window_size);
234 167
235 if (align >= 0 && align <= 50) 168 if (align >= 0 && align <= 100)
236 return diff * align / 100; 169 return diff * align / 100;
237 else if (align > 50 && align <= 100)
238 return window_size - image_size - diff * (100 - align) / 100;
239 else if (align > 100 && align <= 200 ) 170 else if (align > 100 && align <= 200)
240 return ((align - 100) * smaller / 100) + window_size - smaller; 171 return ((align - 100) * smaller / 100) + window_size - smaller;
241 else if (align > -100 && align < 0) 172 else if (align >= -100 && align < 0)
242 return ((align + 100) * smaller / 100) - image_size; 173 return ((align + 100) * smaller / 100) - image_size;
243 return 0; 174 return 0;
244} 175}
245 176
246static inline int 177static inline int
247make_clip_rectangle (int pos, int size, int target_size, int &dst_pos, int &dst_size) 178make_clip_rectangle (int pos, int size, int target_size, int &dst_pos, int &dst_size)
248{ 179{
249 int src_pos = 0; 180 int src_pos = 0;
250 dst_pos = 0; 181 dst_pos = pos;
251 dst_size = size; 182 dst_size = size;
252 if (pos < 0 && size > target_size) 183 if (pos < 0)
253 { 184 {
254 src_pos = -pos; 185 src_pos = -pos;
186 dst_pos = 0;
255 dst_size += pos; 187 dst_size += pos;
256 } 188 }
257 else if (pos > 0)
258 dst_pos = pos;
259 189
260 if (dst_pos + dst_size > target_size) 190 if (dst_pos + dst_size > target_size)
261 dst_size = target_size - dst_pos; 191 dst_size = target_size - dst_pos;
262 return src_pos; 192 return src_pos;
263} 193}
264 194
265bool 195bool
266bgPixmap_t::set_geometry (const char *geom) 196rxvt_term::bg_set_geometry (const char *geom, bool update)
267{ 197{
198 bool changed = false;
268 int geom_flags = 0, changed = 0; 199 int geom_flags = 0;
269 int x = 0, y = 0; 200 int x = 0, y = 0;
270 unsigned int w = 0, h = 0; 201 unsigned int w = 0, h = 0;
271 unsigned int n; 202 unsigned int n;
272 unsigned long new_flags = (flags & (~geometryFlags)); 203 unsigned long new_flags = (bg_flags & (~BG_GEOMETRY_FLAGS));
273 const char *p; 204 const char *ops;
274# define MAXLEN_GEOM 256 /* could be longer than regular geometry string */
275 205
276 if (geom == NULL) 206 if (geom == NULL)
277 return false; 207 return false;
278 208
279 char str[MAXLEN_GEOM]; 209 char str[256];
280 210
281 while (isspace(*geom)) ++geom;
282 if ((p = strchr (geom, ';')) == NULL)
283 p = strchr (geom, '\0'); 211 ops = strchr (geom, ':');
284 212 if (ops == NULL)
213 n = strlen (geom);
214 else
285 n = (p - geom); 215 n = ops - geom;
286 if (n < MAXLEN_GEOM)
287 {
288 char *ops;
289 new_flags |= geometrySet;
290 216
217 if (n >= sizeof (str))
218 return false;
219
291 memcpy (str, geom, n); 220 memcpy (str, geom, n);
292 str[n] = '\0'; 221 str[n] = '\0';
293 if (str[0] == ':') 222 rxvt_strtrim (str);
294 ops = &str[0];
295 else if (str[0] != 'x' && str[0] != 'X' && isalpha(str[0]))
296 ops = &str[0];
297 else
298 {
299 char *tmp;
300 ops = strchr (str, ':');
301 if (ops != NULL)
302 {
303 for (tmp = ops-1; tmp >= str && isspace(*tmp); --tmp);
304 *(++tmp) = '\0';
305 if (ops == tmp) ++ops;
306 }
307 }
308 223
309 if (ops > str || ops == NULL) 224 if (str[0])
310 { 225 {
311 /* we have geometry string - let's handle it prior to applying ops */ 226 /* we have geometry string - let's handle it prior to applying ops */
312 geom_flags = XParseGeometry (str, &x, &y, &w, &h); 227 geom_flags = XParseGeometry (str, &x, &y, &w, &h);
313
314 if ((geom_flags & XValue) && !(geom_flags & YValue))
315 {
316 y = x;
317 geom_flags |= YValue;
318 }
319
320 if (flags & geometrySet)
321 {
322 /* new geometry is an adjustment to the old one ! */
323 if ((geom_flags & WidthValue) && (geom_flags & HeightValue))
324 {
325 if (w == 0 && h != 0)
326 {
327 w = h_scale;
328 h = (v_scale * h) / 100;
329 }
330 else if (h == 0 && w != 0)
331 {
332 w = (h_scale * w) / 100;
333 h = v_scale;
334 }
335 }
336 if (geom_flags & XValue)
337 {
338 if (str[0] != '=')
339 {
340 y += v_align;
341 x += h_align;
342 }
343 }
344 }
345 else /* setting up geometry from scratch */
346 {
347 if (!(geom_flags & XValue))
348 {
349 /* use default geometry - centered */
350 x = y = defaultAlign;
351 }
352 else if (!(geom_flags & YValue))
353 y = x;
354
355 if ((geom_flags & (WidthValue|HeightValue)) == 0)
356 {
357 /* use default geometry - scaled */
358 w = h = defaultScale;
359 }
360 else if (geom_flags & WidthValue)
361 {
362 if (!(geom_flags & HeightValue))
363 h = w;
364 }
365 else
366 w = h;
367 }
368 } /* done parsing geometry string */ 228 } /* done parsing geometry string */
369 else if (!(flags & geometrySet)) 229
370 { 230 if (!update)
371 /* default geometry - scaled and centered */ 231 {
232 if (!(geom_flags & XValue))
372 x = y = defaultAlign; 233 x = y = defaultAlign;
234 else if (!(geom_flags & YValue))
235 y = x;
236
237 if (!(geom_flags & (WidthValue|HeightValue)))
373 w = h = defaultScale; 238 w = h = defaultScale;
374 } 239 else if (!(geom_flags & HeightValue))
240 h = w;
241 else if (!(geom_flags & WidthValue))
242 w = h;
375 243
376 if (!(flags & geometrySet))
377 geom_flags |= WidthValue|HeightValue|XValue|YValue; 244 geom_flags |= WidthValue|HeightValue|XValue|YValue;
245 }
378 246
379 if (ops) 247 if (ops)
380 { 248 {
381 while (*ops) 249 char **arr = rxvt_strsplit (':', ops + 1);
250
251 for (int i = 0; arr[i]; i++)
382 { 252 {
383 while (*ops == ':' || isspace(*ops)) ++ops; 253 if (!strcasecmp (arr[i], "style=tiled"))
384
385# define CHECK_GEOM_OPS(op_str) (strncasecmp (ops, (op_str), sizeof (op_str) - 1) == 0)
386 if (CHECK_GEOM_OPS ("tile"))
387 { 254 {
255 new_flags = BG_TILE;
388 w = h = noScale; 256 w = h = noScale;
257 x = y = 0;
258 geom_flags = WidthValue|HeightValue|XValue|YValue;
259 }
260 else if (!strcasecmp (arr[i], "style=aspect-stretched"))
261 {
262 new_flags = BG_PROP_SCALE;
263 x = y = centerAlign;
264 geom_flags = XValue|YValue;
265 }
266 else if (!strcasecmp (arr[i], "style=stretched"))
267 {
268 new_flags = 0;
269 w = h = windowScale;
270 geom_flags = WidthValue|HeightValue;
271 }
272 else if (!strcasecmp (arr[i], "style=centered"))
273 {
274 new_flags = 0;
275 w = h = noScale;
276 x = y = centerAlign;
277 geom_flags = WidthValue|HeightValue|XValue|YValue;
278 }
279 else if (!strcasecmp (arr[i], "style=root-tiled"))
280 {
281 new_flags = BG_TILE|BG_ROOT_ALIGN;
282 w = h = noScale;
283 geom_flags = WidthValue|HeightValue;
284 }
285 else if (!strcasecmp (arr[i], "op=tile"))
286 new_flags |= BG_TILE;
287 else if (!strcasecmp (arr[i], "op=pscale"))
288 new_flags |= BG_PROP_SCALE;
289 else if (!strcasecmp (arr[i], "op=root"))
290 new_flags |= BG_ROOT_ALIGN;
291
292 // deprecated
293 else if (!strcasecmp (arr[i], "tile"))
294 {
295 new_flags |= BG_TILE;
296 w = h = noScale;
389 geom_flags |= WidthValue|HeightValue; 297 geom_flags |= WidthValue|HeightValue;
390 } 298 }
391 else if (CHECK_GEOM_OPS ("propscale")) 299 else if (!strcasecmp (arr[i], "propscale"))
392 { 300 {
393 if (w == 0 && h == 0) 301 new_flags |= BG_PROP_SCALE;
302 }
303 else if (!strcasecmp (arr[i], "hscale"))
394 { 304 {
395 w = windowScale; 305 w = windowScale;
396 geom_flags |= WidthValue;
397 }
398 new_flags |= propScale;
399 }
400 else if (CHECK_GEOM_OPS ("hscale"))
401 {
402 if (w == 0) w = windowScale;
403
404 h = noScale; 306 h = noScale;
405 geom_flags |= WidthValue|HeightValue; 307 geom_flags |= WidthValue|HeightValue;
406 } 308 }
407 else if (CHECK_GEOM_OPS ("vscale")) 309 else if (!strcasecmp (arr[i], "vscale"))
408 { 310 {
409 if (h == 0) h = windowScale; 311 h = windowScale;
410
411 w = noScale; 312 w = noScale;
412 geom_flags |= WidthValue|HeightValue; 313 geom_flags |= WidthValue|HeightValue;
413 } 314 }
414 else if (CHECK_GEOM_OPS ("scale")) 315 else if (!strcasecmp (arr[i], "scale"))
415 { 316 {
416 if (h == 0) h = windowScale;
417 if (w == 0) w = windowScale; 317 w = h = windowScale;
418
419 geom_flags |= WidthValue|HeightValue; 318 geom_flags |= WidthValue|HeightValue;
420 } 319 }
421 else if (CHECK_GEOM_OPS ("auto")) 320 else if (!strcasecmp (arr[i], "auto"))
422 { 321 {
423 w = h = windowScale; 322 w = h = windowScale;
424 x = y = centerAlign; 323 x = y = centerAlign;
425 geom_flags |= WidthValue|HeightValue|XValue|YValue; 324 geom_flags |= WidthValue|HeightValue|XValue|YValue;
426 } 325 }
427 else if (CHECK_GEOM_OPS ("root")) 326 else if (!strcasecmp (arr[i], "root"))
428 { 327 {
328 new_flags |= BG_TILE|BG_ROOT_ALIGN;
429 w = h = noScale; 329 w = h = noScale;
430 x = y = rootAlign;
431 geom_flags |= WidthValue|HeightValue|XValue|YValue; 330 geom_flags |= WidthValue|HeightValue;
432 } 331 }
433# undef CHECK_GEOM_OPS
434
435 while (*ops != ':' && *ops != '\0') ++ops;
436 } /* done parsing ops */ 332 } /* done parsing ops */
437 }
438 333
334 rxvt_free_strsplit (arr);
335 }
336
439 if (check_set_scale_value (geom_flags, WidthValue, h_scale, w)) ++changed; 337 if (check_set_scale_value (geom_flags, WidthValue, h_scale, w)) changed = true;
440 if (check_set_scale_value (geom_flags, HeightValue, v_scale, h)) ++changed; 338 if (check_set_scale_value (geom_flags, HeightValue, v_scale, h)) changed = true;
441 if (check_set_align_value (geom_flags, XValue, h_align, x)) ++changed; 339 if (check_set_align_value (geom_flags, XValue, h_align, x)) changed = true;
442 if (check_set_align_value (geom_flags, YValue, v_align, y)) ++changed; 340 if (check_set_align_value (geom_flags, YValue, v_align, y)) changed = true;
443 }
444 341
445 if (new_flags != flags) 342 if (new_flags != bg_flags)
446 { 343 {
447 flags = new_flags; 344 bg_flags = new_flags;
448 changed++; 345 changed = true;
449 } 346 }
450 347
451 //fprintf (stderr, "flags = %lX, scale = %ux%u, align=%+d%+d\n",
452 // flags, h_scale, v_scale, h_align, v_align);
453 return (changed > 0); 348 return changed;
349}
350
351void
352rxvt_term::get_image_geometry (int image_width, int image_height, int &w, int &h, int &x, int &y)
353{
354 int target_width = szHint.width;
355 int target_height = szHint.height;
356
357 if (bg_flags & BG_PROP_SCALE)
358 {
359 float scale = (float)target_width / image_width;
360 min_it (scale, (float)target_height / image_height);
361 w = image_width * scale + 0.5;
362 h = image_height * scale + 0.5;
363 }
364 else
365 {
366 w = h_scale * target_width / 100;
367 h = v_scale * target_height / 100;
368 }
369
370 if (!w) w = image_width;
371 if (!h) h = image_height;
372
373 if (bg_flags & BG_ROOT_ALIGN)
374 {
375 x = -target_x;
376 y = -target_y;
377 }
378 else
379 {
380 x = make_align_position (h_align, target_width, w);
381 y = make_align_position (v_align, target_height, h);
382 }
383
384 bg_flags &= ~BG_IS_SIZE_SENSITIVE;
385 if (!(bg_flags & BG_TILE)
386 || (bg_flags & BG_PROP_SCALE) || h_scale || v_scale
387 || (!(bg_flags & BG_ROOT_ALIGN) && (h_align || v_align))
388 || w > target_width || h > target_height)
389 bg_flags |= BG_IS_SIZE_SENSITIVE;
454} 390}
455 391
456# ifdef HAVE_AFTERIMAGE 392# ifdef HAVE_AFTERIMAGE
457bool 393bool
458bgPixmap_t::render_image (unsigned long background_flags) 394rxvt_term::render_image (unsigned long tr_flags)
459{ 395{
460 if (target == NULL)
461 return false;
462
463 target->init_asv (); 396 init_asv ();
464 397
465 ASImage *background = NULL; 398 ASImage *background = NULL;
466 ARGB32 background_tint = TINT_LEAVE_SAME; 399 ARGB32 background_tint = TINT_LEAVE_SAME;
467 400
468# ifdef ENABLE_TRANSPARENCY 401# ifdef ENABLE_TRANSPARENCY
469 if (background_flags) 402 if (tr_flags)
470 background = pixmap2ximage (target->asv, pixmap, 0, 0, pmap_width, pmap_height, AllPlanes, 100); 403 background = pixmap2ximage (asv, bg_pixmap, 0, 0, bg_pmap_width, bg_pmap_height, AllPlanes, 100);
471 404
472 if (!(background_flags & transpPmapTinted) && (flags & tintNeeded)) 405 if (tr_flags & BG_NEEDS_TINT)
473 { 406 {
474 ShadingInfo as_shade; 407 ShadingInfo as_shade;
475 as_shade.shading = (shade == 0) ? 100 : shade; 408 as_shade.shading = shade;
476 409
477 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC); 410 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC);
478 if (flags & tintSet) 411 if (bg_flags & BG_TINT_SET)
479 tint.get (c); 412 tint.get (c);
480 as_shade.tintColor.red = c.r; 413 as_shade.tintColor.red = c.r;
481 as_shade.tintColor.green = c.g; 414 as_shade.tintColor.green = c.g;
482 as_shade.tintColor.blue = c.b; 415 as_shade.tintColor.blue = c.b;
483 416
484 background_tint = shading2tint32 (&as_shade); 417 background_tint = shading2tint32 (&as_shade);
485 } 418 }
486 419
487 if (!(background_flags & transpPmapBlured) && (flags & blurNeeded) && background != NULL) 420 if ((tr_flags & BG_NEEDS_BLUR) && background != NULL)
488 { 421 {
489 ASImage *tmp = blur_asimage_gauss (target->asv, background, h_blurRadius, v_blurRadius, 0xFFFFFFFF, 422 ASImage *tmp = blur_asimage_gauss (asv, background, h_blurRadius, v_blurRadius, 0xFFFFFFFF,
490 (original_asim == NULL || tint == TINT_LEAVE_SAME) ? ASA_XImage : ASA_ASImage, 423 (original_asim == NULL || tint == TINT_LEAVE_SAME) ? ASA_XImage : ASA_ASImage,
491 100, ASIMAGE_QUALITY_DEFAULT); 424 100, ASIMAGE_QUALITY_DEFAULT);
492 if (tmp) 425 if (tmp)
493 { 426 {
494 destroy_asimage (&background); 427 destroy_asimage (&background);
497 } 430 }
498# endif 431# endif
499 432
500 ASImage *result = 0; 433 ASImage *result = 0;
501 434
502 int target_width = target->szHint.width; 435 int target_width = szHint.width;
503 int target_height = target->szHint.height; 436 int target_height = szHint.height;
504 int new_pmap_width = target_width; 437 int new_pmap_width = target_width;
505 int new_pmap_height = target_height; 438 int new_pmap_height = target_height;
506 439
507 int x = 0; 440 int x = 0;
508 int y = 0; 441 int y = 0;
509 int w = h_scale * target_width / 100; 442 int w = 0;
510 int h = v_scale * target_height / 100; 443 int h = 0;
511
512 TIMING_TEST_START (asim);
513 444
514 if (original_asim) 445 if (original_asim)
515 { 446 get_image_geometry (original_asim->width, original_asim->height, w, h, x, y);
516 if (h_align == rootAlign || v_align == rootAlign)
517 {
518 target->get_window_origin (x, y);
519 x = -x;
520 y = -y;
521 }
522
523 if (h_align != rootAlign)
524 x = make_align_position (h_align, target_width, w > 0 ? w : (int)original_asim->width);
525
526 if (v_align != rootAlign)
527 y = make_align_position (v_align, target_height, h > 0 ? h : (int)original_asim->height);
528 }
529 447
530 if (!original_asim 448 if (!original_asim
449 || (!(bg_flags & BG_ROOT_ALIGN)
531 || x >= target_width 450 && (x >= target_width
532 || y >= target_height 451 || y >= target_height
533 || (w > 0 && x + w <= 0) 452 || (x + w <= 0)
534 || (h > 0 && y + h <= 0)) 453 || (y + h <= 0))))
535 { 454 {
536 if (background) 455 if (background)
537 { 456 {
538 new_pmap_width = background->width; 457 new_pmap_width = background->width;
539 new_pmap_height = background->height; 458 new_pmap_height = background->height;
540 result = background; 459 result = background;
541 460
542 if (background_tint != TINT_LEAVE_SAME) 461 if (background_tint != TINT_LEAVE_SAME)
543 { 462 {
544 ASImage *tmp = tile_asimage (target->asv, background, 0, 0, 463 ASImage *tmp = tile_asimage (asv, background, 0, 0,
545 target_width, target_height, background_tint, 464 target_width, target_height, background_tint,
546 ASA_XImage, 100, ASIMAGE_QUALITY_DEFAULT); 465 ASA_XImage, 100, ASIMAGE_QUALITY_DEFAULT);
547 if (tmp) 466 if (tmp)
548 result = tmp; 467 result = tmp;
549 } 468 }
553 } 472 }
554 else 473 else
555 { 474 {
556 result = original_asim; 475 result = original_asim;
557 476
558 if ((w > 0 && w != original_asim->width) 477 if ((w != original_asim->width)
559 || (h > 0 && h != original_asim->height)) 478 || (h != original_asim->height))
560 { 479 {
561 result = scale_asimage (target->asv, original_asim, 480 result = scale_asimage (asv, original_asim,
562 w > 0 ? w : original_asim->width, 481 w, h,
563 h > 0 ? h : original_asim->height,
564 background ? ASA_ASImage : ASA_XImage, 482 background ? ASA_ASImage : ASA_XImage,
565 100, ASIMAGE_QUALITY_DEFAULT); 483 100, ASIMAGE_QUALITY_DEFAULT);
566 } 484 }
567 485
568 if (background == NULL) 486 if (background == NULL)
569 { 487 {
570 if (h_scale == 0 || v_scale == 0) 488 if (bg_flags & BG_TILE)
571 { 489 {
572 /* if tiling - pixmap has to be sized exactly as the image, 490 /* if tiling - pixmap has to be sized exactly as the image,
573 but there is no need to make it bigger than the window! */ 491 but there is no need to make it bigger than the window! */
574 new_pmap_width = min (result->width, target_width); 492 new_pmap_width = min (result->width, target_width);
575 new_pmap_height = min (result->height, target_height); 493 new_pmap_height = min (result->height, target_height);
576 494
577 /* we also need to tile our image in both directions */ 495 /* we also need to tile our image in both directions */
578 ASImage *tmp = tile_asimage (target->asv, result, 496 ASImage *tmp = tile_asimage (asv, result,
579 (int)result->width - x, 497 (int)result->width - x,
580 (int)result->height - y, 498 (int)result->height - y,
581 new_pmap_width, 499 new_pmap_width,
582 new_pmap_height, 500 new_pmap_height,
583 TINT_LEAVE_SAME, ASA_XImage, 501 TINT_LEAVE_SAME, ASA_XImage,
600 layers[0].clip_width = target_width; 518 layers[0].clip_width = target_width;
601 layers[0].clip_height = target_height; 519 layers[0].clip_height = target_height;
602 layers[0].tint = background_tint; 520 layers[0].tint = background_tint;
603 layers[1].im = result; 521 layers[1].im = result;
604 522
605 if (w <= 0) 523 if (bg_flags & BG_TILE)
606 { 524 {
607 /* tile horizontally */ 525 /* tile horizontally */
608 while (x > 0) x -= (int)result->width; 526 while (x > 0) x -= (int)result->width;
609 layers[1].dst_x = x; 527 layers[1].dst_x = x;
610 layers[1].clip_width = result->width+target_width; 528 layers[1].clip_width = result->width+target_width;
614 /* clip horizontally */ 532 /* clip horizontally */
615 layers[1].dst_x = x; 533 layers[1].dst_x = x;
616 layers[1].clip_width = result->width; 534 layers[1].clip_width = result->width;
617 } 535 }
618 536
619 if (h <= 0) 537 if (bg_flags & BG_TILE)
620 { 538 {
621 while (y > 0) y -= (int)result->height; 539 while (y > 0) y -= (int)result->height;
622 layers[1].dst_y = y; 540 layers[1].dst_y = y;
623 layers[1].clip_height = result->height + target_height; 541 layers[1].clip_height = result->height + target_height;
624 } 542 }
626 { 544 {
627 layers[1].dst_y = y; 545 layers[1].dst_y = y;
628 layers[1].clip_height = result->height; 546 layers[1].clip_height = result->height;
629 } 547 }
630 548
631 if (target->rs[Rs_blendtype]) 549 if (rs[Rs_blendtype])
632 { 550 {
633 layers[1].merge_scanlines = blend_scanlines_name2func (target->rs[Rs_blendtype]); 551 layers[1].merge_scanlines = blend_scanlines_name2func (rs[Rs_blendtype]);
634 if (layers[1].merge_scanlines == NULL) 552 if (layers[1].merge_scanlines == NULL)
635 layers[1].merge_scanlines = alphablend_scanlines; 553 layers[1].merge_scanlines = alphablend_scanlines;
636 } 554 }
637 555
638 ASImage *tmp = merge_layers (target->asv, layers, 2, target_width, target_height, 556 ASImage *tmp = merge_layers (asv, layers, 2, target_width, target_height,
639 ASA_XImage, 0, ASIMAGE_QUALITY_DEFAULT); 557 ASA_XImage, 0, ASIMAGE_QUALITY_DEFAULT);
640 558
641 if (tmp) 559 if (tmp)
642 { 560 {
643 if (result != original_asim) 561 if (result != original_asim)
647 } 565 }
648 566
649 free (layers); 567 free (layers);
650 } 568 }
651 } 569 }
652 TIMING_TEST_PRINT_RESULT (asim);
653 570
654 bool ret = false; 571 bool ret = false;
655 572
656 if (result) 573 if (result)
657 { 574 {
658 XGCValues gcv; 575 XGCValues gcv;
659 GC gc; 576 GC gc;
660 577
661 if (pixmap)
662 {
663 if (pmap_width != new_pmap_width
664 || pmap_height != new_pmap_height
665 || pmap_depth != target->depth)
666 {
667 XFreePixmap (target->dpy, pixmap);
668 pixmap = None;
669 }
670 }
671
672 /* create Pixmap */ 578 /* create Pixmap */
673 if (pixmap == None) 579 if (bg_pixmap == None
580 || bg_pmap_width != new_pmap_width
581 || bg_pmap_height != new_pmap_height)
674 { 582 {
583 if (bg_pixmap)
584 XFreePixmap (dpy, bg_pixmap);
675 pixmap = XCreatePixmap (target->dpy, target->vt, new_pmap_width, new_pmap_height, target->depth); 585 bg_pixmap = XCreatePixmap (dpy, vt, new_pmap_width, new_pmap_height, depth);
676 pmap_width = new_pmap_width; 586 bg_pmap_width = new_pmap_width;
677 pmap_height = new_pmap_height; 587 bg_pmap_height = new_pmap_height;
678 pmap_depth = target->depth;
679 } 588 }
680 /* fill with background color (if result's not completely overlapping it) */ 589 /* fill with background color (if result's not completely overlapping it) */
681 gcv.foreground = target->pix_colors[Color_bg]; 590 gcv.foreground = pix_colors[Color_bg];
682 gc = XCreateGC (target->dpy, target->vt, GCForeground, &gcv); 591 gc = XCreateGC (dpy, vt, GCForeground, &gcv);
683 592
684 int src_x = 0, src_y = 0, dst_x = 0, dst_y = 0; 593 int src_x = 0, src_y = 0, dst_x = 0, dst_y = 0;
685 int dst_width = result->width, dst_height = result->height; 594 int dst_width = result->width, dst_height = result->height;
686 if (background == NULL) 595 if (background == NULL)
687 { 596 {
688 if (!(h_scale == 0 || v_scale == 0)) 597 if (!(bg_flags & BG_TILE))
689 { 598 {
690 src_x = make_clip_rectangle (x, result->width , new_pmap_width , dst_x, dst_width ); 599 src_x = make_clip_rectangle (x, result->width , new_pmap_width , dst_x, dst_width );
691 src_y = make_clip_rectangle (y, result->height, new_pmap_height, dst_y, dst_height); 600 src_y = make_clip_rectangle (y, result->height, new_pmap_height, dst_y, dst_height);
692 } 601 }
693 602
694 if (dst_x > 0 || dst_y > 0 603 if (dst_x > 0 || dst_y > 0
695 || dst_x + dst_width < new_pmap_width 604 || dst_x + dst_width < new_pmap_width
696 || dst_y + dst_height < new_pmap_height) 605 || dst_y + dst_height < new_pmap_height)
697 XFillRectangle (target->dpy, pixmap, gc, 0, 0, new_pmap_width, new_pmap_height); 606 XFillRectangle (dpy, bg_pixmap, gc, 0, 0, new_pmap_width, new_pmap_height);
698 } 607 }
699 608
700 /* put result on pixmap */ 609 /* put result on pixmap */
701 if (dst_x < new_pmap_width && dst_y < new_pmap_height) 610 if (dst_x < new_pmap_width && dst_y < new_pmap_height)
702 asimage2drawable (target->asv, pixmap, result, gc, src_x, src_y, dst_x, dst_y, dst_width, dst_height, True); 611 asimage2drawable (asv, bg_pixmap, result, gc, src_x, src_y, dst_x, dst_y, dst_width, dst_height, True);
703 612
704 if (result != background && result != original_asim) 613 if (result != background && result != original_asim)
705 destroy_asimage (&result); 614 destroy_asimage (&result);
706 615
707 XFreeGC (target->dpy, gc); 616 XFreeGC (dpy, gc);
708 TIMING_TEST_PRINT_RESULT (asim);
709 617
710 ret = true; 618 ret = true;
711 } 619 }
712 620
713 if (background) 621 if (background)
717} 625}
718# endif /* HAVE_AFTERIMAGE */ 626# endif /* HAVE_AFTERIMAGE */
719 627
720# ifdef HAVE_PIXBUF 628# ifdef HAVE_PIXBUF
721bool 629bool
722bgPixmap_t::render_image (unsigned long background_flags) 630rxvt_term::pixbuf_to_pixmap (GdkPixbuf *pixbuf, Pixmap pixmap, GC gc,
631 int src_x, int src_y, int dst_x, int dst_y,
632 unsigned int width, unsigned int height)
723{ 633{
724 if (target == NULL) 634 XImage *ximage;
635 char *data, *line;
636 int bytes_per_pixel;
637 int width_r, width_g, width_b;
638 int sh_r, sh_g, sh_b;
639 int rowstride;
640 int channels;
641 unsigned char *row;
642
643 if (visual->c_class != TrueColor)
725 return false; 644 return false;
726 645
646 if (depth == 24 || depth == 32)
647 bytes_per_pixel = 4;
648 else if (depth == 15 || depth == 16)
649 bytes_per_pixel = 2;
650 else
651 return false;
652
653 width_r = ecb_popcount32 (visual->red_mask);
654 width_g = ecb_popcount32 (visual->green_mask);
655 width_b = ecb_popcount32 (visual->blue_mask);
656
657 if (width_r > 8 || width_g > 8 || width_b > 8)
658 return false;
659
660 sh_r = ecb_ctz32 (visual->red_mask);
661 sh_g = ecb_ctz32 (visual->green_mask);
662 sh_b = ecb_ctz32 (visual->blue_mask);
663
664 if (width > INT_MAX / height / bytes_per_pixel)
665 return false;
666
667 data = (char *)malloc (width * height * bytes_per_pixel);
668 if (!data)
669 return false;
670
671 ximage = XCreateImage (dpy, visual, depth, ZPixmap, 0, data,
672 width, height, bytes_per_pixel * 8, 0);
673 if (!ximage)
674 {
675 free (data);
676 return false;
677 }
678
679 ximage->byte_order = ecb_big_endian () ? MSBFirst : LSBFirst;
680
681 rowstride = gdk_pixbuf_get_rowstride (pixbuf);
682 channels = gdk_pixbuf_get_n_channels (pixbuf);
683 row = gdk_pixbuf_get_pixels (pixbuf) + src_y * rowstride + src_x * channels;
684 line = data;
685
686 for (int y = 0; y < height; y++)
687 {
688 for (int x = 0; x < width; x++)
689 {
690 unsigned char *pixel = row + x * channels;
691 uint32_t value;
692
693 value = ((pixel[0] >> (8 - width_r)) << sh_r)
694 | ((pixel[1] >> (8 - width_g)) << sh_g)
695 | ((pixel[2] >> (8 - width_b)) << sh_b);
696
697 if (bytes_per_pixel == 4)
698 ((uint32_t *)line)[x] = value;
699 else
700 ((uint16_t *)line)[x] = value;
701 }
702
703 row += rowstride;
704 line += ximage->bytes_per_line;
705 }
706
707 XPutImage (dpy, pixmap, gc, ximage, 0, 0, dst_x, dst_y, width, height);
708 XDestroyImage (ximage);
709 return true;
710}
711
712bool
713rxvt_term::render_image (unsigned long tr_flags)
714{
727 if (!pixbuf) 715 if (!pixbuf)
728 return false; 716 return false;
729 717
730 // TODO: add alpha blending 718 if (tr_flags
731 if (background_flags) 719 && !(bg_flags & BG_HAS_RENDER))
732 return false; 720 return false;
733 721
734 GdkPixbuf *result; 722 GdkPixbuf *result;
735 723
736 int image_width = gdk_pixbuf_get_width (pixbuf); 724 int image_width = gdk_pixbuf_get_width (pixbuf);
737 int image_height = gdk_pixbuf_get_height (pixbuf); 725 int image_height = gdk_pixbuf_get_height (pixbuf);
738 726
739 int target_width = target->szHint.width; 727 int target_width = szHint.width;
740 int target_height = target->szHint.height; 728 int target_height = szHint.height;
741 int new_pmap_width = target_width; 729 int new_pmap_width = target_width;
742 int new_pmap_height = target_height; 730 int new_pmap_height = target_height;
743 731
744 int x = 0; 732 int x = 0;
745 int y = 0; 733 int y = 0;
746 int w = h_scale * target_width / 100; 734 int w = 0;
747 int h = v_scale * target_height / 100; 735 int h = 0;
748 736
749 if (h_align == rootAlign || v_align == rootAlign) 737 get_image_geometry (image_width, image_height, w, h, x, y);
750 {
751 target->get_window_origin (x, y);
752 x = -x;
753 y = -y;
754 }
755 738
756 if (h_align != rootAlign) 739 if (!(bg_flags & BG_ROOT_ALIGN)
757 x = make_align_position (h_align, target_width, w > 0 ? w : image_width);
758
759 if (v_align != rootAlign)
760 y = make_align_position (v_align, target_height, h > 0 ? h : image_height);
761
762 if (x >= target_width 740 && (x >= target_width
763 || y >= target_height 741 || y >= target_height
764 || (w > 0 && x + w <= 0) 742 || (x + w <= 0)
765 || (h > 0 && y + h <= 0)) 743 || (y + h <= 0)))
766 return false; 744 return false;
767 745
768 result = pixbuf; 746 result = pixbuf;
769 747
770 if ((w > 0 && w != image_width) 748 if ((w != image_width)
771 || (h > 0 && h != image_height)) 749 || (h != image_height))
772 { 750 {
773 result = gdk_pixbuf_scale_simple (pixbuf, 751 result = gdk_pixbuf_scale_simple (pixbuf,
774 w > 0 ? w : image_width, 752 w, h,
775 h > 0 ? h : image_height,
776 GDK_INTERP_BILINEAR); 753 GDK_INTERP_BILINEAR);
777 } 754 }
778 755
756 if (!result)
757 return false;
758
779 bool ret = false; 759 bool ret = false;
780 760
781 if (result)
782 {
783 XGCValues gcv; 761 XGCValues gcv;
784 GC gc; 762 GC gc;
763 Pixmap root_pmap;
785 764
786 image_width = gdk_pixbuf_get_width (result); 765 image_width = gdk_pixbuf_get_width (result);
787 image_height = gdk_pixbuf_get_height (result); 766 image_height = gdk_pixbuf_get_height (result);
788 767
789 if (h_scale == 0 || v_scale == 0) 768 if (tr_flags)
769 {
770 root_pmap = bg_pixmap;
771 bg_pixmap = None;
772 }
773 else
774 {
775 if (bg_flags & BG_TILE)
790 { 776 {
791 new_pmap_width = min (image_width, target_width); 777 new_pmap_width = min (image_width, target_width);
792 new_pmap_height = min (image_height, target_height); 778 new_pmap_height = min (image_height, target_height);
793 } 779 }
780 }
794 781
782 if (bg_pixmap == None
783 || bg_pmap_width != new_pmap_width
784 || bg_pmap_height != new_pmap_height)
785 {
795 if (pixmap) 786 if (bg_pixmap)
796 {
797 if (pmap_width != new_pmap_width
798 || pmap_height != new_pmap_height
799 || pmap_depth != target->depth)
800 {
801 XFreePixmap (target->dpy, pixmap); 787 XFreePixmap (dpy, bg_pixmap);
802 pixmap = None;
803 }
804 }
805
806 if (pixmap == None)
807 {
808 pixmap = XCreatePixmap (target->dpy, target->vt, new_pmap_width, new_pmap_height, target->depth); 788 bg_pixmap = XCreatePixmap (dpy, vt, new_pmap_width, new_pmap_height, depth);
809 pmap_width = new_pmap_width; 789 bg_pmap_width = new_pmap_width;
810 pmap_height = new_pmap_height; 790 bg_pmap_height = new_pmap_height;
811 pmap_depth = target->depth; 791 }
792
793 gcv.foreground = pix_colors[Color_bg];
794 gc = XCreateGC (dpy, vt, GCForeground, &gcv);
795
796 if (gc)
797 {
798 if (bg_flags & BG_TILE)
812 } 799 {
813
814 gcv.foreground = target->pix_colors[Color_bg];
815 gc = XCreateGC (target->dpy, target->vt, GCForeground, &gcv);
816
817 if (h_scale == 0 || v_scale == 0)
818 {
819 Pixmap tile = XCreatePixmap (target->dpy, target->vt, image_width, image_height, target->depth); 800 Pixmap tile = XCreatePixmap (dpy, vt, image_width, image_height, depth);
820 gdk_pixbuf_xlib_render_to_drawable (result, tile, gc, 801 pixbuf_to_pixmap (result, tile, gc,
821 0, 0, 802 0, 0,
822 0, 0, 803 0, 0,
823 image_width, image_height, 804 image_width, image_height);
824 XLIB_RGB_DITHER_NONE,
825 0, 0);
826 805
827 gcv.tile = tile; 806 gcv.tile = tile;
828 gcv.fill_style = FillTiled; 807 gcv.fill_style = FillTiled;
829 gcv.ts_x_origin = x; 808 gcv.ts_x_origin = x;
830 gcv.ts_y_origin = y; 809 gcv.ts_y_origin = y;
831 XChangeGC (target->dpy, gc, GCFillStyle | GCTile | GCTileStipXOrigin | GCTileStipYOrigin, &gcv); 810 XChangeGC (dpy, gc, GCFillStyle | GCTile | GCTileStipXOrigin | GCTileStipYOrigin, &gcv);
832 811
833 XFillRectangle (target->dpy, pixmap, gc, 0, 0, new_pmap_width, new_pmap_height); 812 XFillRectangle (dpy, bg_pixmap, gc, 0, 0, new_pmap_width, new_pmap_height);
834 XFreePixmap (target->dpy, tile); 813 XFreePixmap (dpy, tile);
835 } 814 }
836 else 815 else
837 { 816 {
838 int src_x, src_y, dst_x, dst_y; 817 int src_x, src_y, dst_x, dst_y;
839 int dst_width, dst_height; 818 int dst_width, dst_height;
842 src_y = make_clip_rectangle (y, image_height, new_pmap_height, dst_y, dst_height); 821 src_y = make_clip_rectangle (y, image_height, new_pmap_height, dst_y, dst_height);
843 822
844 if (dst_x > 0 || dst_y > 0 823 if (dst_x > 0 || dst_y > 0
845 || dst_x + dst_width < new_pmap_width 824 || dst_x + dst_width < new_pmap_width
846 || dst_y + dst_height < new_pmap_height) 825 || dst_y + dst_height < new_pmap_height)
847 XFillRectangle (target->dpy, pixmap, gc, 0, 0, new_pmap_width, new_pmap_height); 826 XFillRectangle (dpy, bg_pixmap, gc, 0, 0, new_pmap_width, new_pmap_height);
848 827
849 if (dst_x < new_pmap_width && dst_y < new_pmap_height) 828 if (dst_x < new_pmap_width && dst_y < new_pmap_height)
850 gdk_pixbuf_xlib_render_to_drawable (result, pixmap, gc, 829 pixbuf_to_pixmap (result, bg_pixmap, gc,
851 src_x, src_y, 830 src_x, src_y,
852 dst_x, dst_y, 831 dst_x, dst_y,
853 dst_width, dst_height, 832 dst_width, dst_height);
854 XLIB_RGB_DITHER_NONE, 833 }
855 0, 0); 834
835#if XRENDER
836 if (tr_flags)
856 } 837 {
838 XRenderPictureAttributes pa;
857 839
858 if (result != pixbuf) 840 XRenderPictFormat *src_format = XRenderFindVisualFormat (dpy, visual);
859 g_object_unref (result); 841 Picture src = XRenderCreatePicture (dpy, root_pmap, src_format, 0, &pa);
860 842
843 XRenderPictFormat *dst_format = XRenderFindVisualFormat (dpy, visual);
844 Picture dst = XRenderCreatePicture (dpy, bg_pixmap, dst_format, 0, &pa);
845
846 pa.repeat = True;
847 Pixmap mask_pmap = XCreatePixmap (dpy, vt, 1, 1, 8);
848 XRenderPictFormat *mask_format = XRenderFindStandardFormat (dpy, PictStandardA8);
849 Picture mask = XRenderCreatePicture (dpy, mask_pmap, mask_format, CPRepeat, &pa);
850 XFreePixmap (dpy, mask_pmap);
851
852 XRenderColor mask_c;
853
854 mask_c.alpha = 0x8000;
855 mask_c.red = 0;
856 mask_c.green = 0;
857 mask_c.blue = 0;
858 XRenderFillRectangle (dpy, PictOpSrc, mask, &mask_c, 0, 0, 1, 1);
859 XRenderComposite (dpy, PictOpOver, src, mask, dst, 0, 0, 0, 0, 0, 0, target_width, target_height);
860
861 XRenderFreePicture (dpy, src);
862 XRenderFreePicture (dpy, dst);
863 XRenderFreePicture (dpy, mask);
864 }
865#endif
866
861 XFreeGC (target->dpy, gc); 867 XFreeGC (dpy, gc);
862 868
863 ret = true; 869 ret = true;
864 } 870 }
865 871
872 if (result != pixbuf)
873 g_object_unref (result);
874
875 if (tr_flags)
876 XFreePixmap (dpy, root_pmap);
877
866 return ret; 878 return ret;
867} 879}
868# endif /* HAVE_PIXBUF */ 880# endif /* HAVE_PIXBUF */
869 881
870bool 882bool
871bgPixmap_t::set_file (const char *file) 883rxvt_term::bg_set_file (const char *file)
872{ 884{
873 assert (file); 885 if (!file || !*file)
886 return false;
874 887
875 if (*file)
876 {
877 if (const char *p = strchr (file, ';')) 888 if (const char *p = strchr (file, ';'))
878 { 889 {
879 size_t len = p - file; 890 size_t len = p - file;
880 char *f = rxvt_temp_buf<char> (len + 1); 891 char *f = rxvt_temp_buf<char> (len + 1);
881 memcpy (f, file, len); 892 memcpy (f, file, len);
882 f[len] = '\0'; 893 f[len] = '\0';
883 file = f; 894 file = f;
884 } 895 }
885 896
886# ifdef HAVE_AFTERIMAGE 897# ifdef HAVE_AFTERIMAGE
887 if (!target->asimman) 898 if (!asimman)
888 target->asimman = create_generic_imageman (target->rs[Rs_path]); 899 asimman = create_generic_imageman (rs[Rs_path]);
889 original_asim = get_asimage (target->asimman, file, 0xFFFFFFFF, 100); 900 ASImage *image = get_asimage (asimman, file, 0xFFFFFFFF, 100);
901 if (image)
902 {
890 if (original_asim) 903 if (original_asim)
891 have_image = true; 904 safe_asimage_destroy (original_asim);
892 return have_image; 905 original_asim = image;
906 bg_flags |= BG_IS_FROM_FILE | BG_CLIENT_RENDER;
907 return true;
908 }
893# endif 909# endif
894 910
895# ifdef HAVE_PIXBUF 911# ifdef HAVE_PIXBUF
896 pixbuf = gdk_pixbuf_new_from_file (file, NULL); 912 GdkPixbuf *image = gdk_pixbuf_new_from_file (file, NULL);
913 if (image)
914 {
897 if (pixbuf) 915 if (pixbuf)
898 have_image = true; 916 g_object_unref (pixbuf);
899 return have_image; 917 pixbuf = image;
918 bg_flags |= BG_IS_FROM_FILE;
919 return true;
920 }
900# endif 921# endif
901 }
902 922
903 return false; 923 return false;
904} 924}
905 925
906# endif /* BG_IMAGE_FROM_FILE */ 926# endif /* BG_IMAGE_FROM_FILE */
907 927
908# ifdef ENABLE_TRANSPARENCY 928# ifdef ENABLE_TRANSPARENCY
909bool 929bool
910bgPixmap_t::set_transparent () 930rxvt_term::bg_set_transparent ()
911{ 931{
912 if (!(flags & isTransparent)) 932 if (!(bg_flags & BG_IS_TRANSPARENT))
913 { 933 {
914 flags |= isTransparent; 934 bg_flags |= BG_IS_TRANSPARENT;
915 return true; 935 return true;
916 } 936 }
917 937
918 return false; 938 return false;
919} 939}
920 940
921bool 941bool
922bgPixmap_t::set_blur_radius (const char *geom) 942rxvt_term::bg_set_blur (const char *geom)
923{ 943{
924 int changed = 0; 944 bool changed = false;
925 unsigned int hr, vr; 945 unsigned int hr, vr;
926 int junk; 946 int junk;
927 int geom_flags = XParseGeometry (geom, &junk, &junk, &hr, &vr); 947 int geom_flags = XParseGeometry (geom, &junk, &junk, &hr, &vr);
928 948
929 if (!(geom_flags & WidthValue)) 949 if (!(geom_flags & WidthValue))
930 hr = 1; 950 hr = 1;
931 if (!(geom_flags & HeightValue)) 951 if (!(geom_flags & HeightValue))
932 vr = hr; 952 vr = hr;
933 953
954 min_it (hr, 128);
955 min_it (vr, 128);
956
934 if (h_blurRadius != hr) 957 if (h_blurRadius != hr)
935 { 958 {
936 ++changed; 959 changed = true;
937 h_blurRadius = hr; 960 h_blurRadius = hr;
938 } 961 }
939 962
940 if (v_blurRadius != vr) 963 if (v_blurRadius != vr)
941 { 964 {
942 ++changed; 965 changed = true;
943 v_blurRadius = vr; 966 v_blurRadius = vr;
944 } 967 }
945 968
946 if (v_blurRadius == 0 && h_blurRadius == 0) 969 if (v_blurRadius == 0 && h_blurRadius == 0)
947 flags &= ~blurNeeded; 970 bg_flags &= ~BG_NEEDS_BLUR;
948 else 971 else
949 flags |= blurNeeded; 972 bg_flags |= BG_NEEDS_BLUR;
950 973
951 return (changed > 0); 974 return changed;
952} 975}
953 976
954static inline unsigned long 977void
955compute_tint_shade_flags (rxvt_color *tint, int shade) 978rxvt_term::set_tint_shade_flags ()
956{ 979{
957 unsigned long flags = 0;
958 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC); 980 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC);
959 bool has_shade = (shade > 0 && shade < 100) || (shade > 100 && shade < 200); 981 bool has_shade = shade != 100;
960 982
961 if (tint) 983 bg_flags &= ~BG_TINT_FLAGS;
984
985 if (bg_flags & BG_TINT_SET)
962 { 986 {
963 tint->get (c); 987 tint.get (c);
964# define IS_COMPONENT_WHOLESOME(cmp) ((cmp) <= 0x000700 || (cmp) >= 0x00f700)
965 if (!has_shade && IS_COMPONENT_WHOLESOME (c.r)
966 && IS_COMPONENT_WHOLESOME (c.g)
967 && IS_COMPONENT_WHOLESOME (c.b))
968 flags |= bgPixmap_t::tintWholesome;
969# undef IS_COMPONENT_WHOLESOME
970 }
971
972 if (has_shade) 988 if (!has_shade
973 flags |= bgPixmap_t::tintNeeded; 989 && (c.r <= 0x00ff || c.r >= 0xff00)
974 else if (tint) 990 && (c.g <= 0x00ff || c.g >= 0xff00)
991 && (c.b <= 0x00ff || c.b >= 0xff00))
992 bg_flags |= BG_TINT_BITAND;
975 { 993 }
976 if ((c.r > 0x000700 || c.g > 0x000700 || c.b > 0x000700) 994
977 && (c.r < 0x00f700 || c.g < 0x00f700 || c.b < 0x00f700)) 995 if (has_shade || (bg_flags & BG_TINT_SET))
978 { 996 bg_flags |= BG_NEEDS_TINT;
979 flags |= bgPixmap_t::tintNeeded; 997}
998
999bool
1000rxvt_term::bg_set_tint (rxvt_color &new_tint)
1001{
1002 if (!(bg_flags & BG_TINT_SET) || tint != new_tint)
1003 {
1004 tint = new_tint;
1005 bg_flags |= BG_TINT_SET;
1006 set_tint_shade_flags ();
1007 return true;
1008 }
1009
1010 return false;
1011}
1012
1013bool
1014rxvt_term::bg_set_shade (const char *shade_str)
1015{
1016 int new_shade = (shade_str) ? atoi (shade_str) : 100;
1017
1018 clamp_it (new_shade, -100, 200);
1019 if (new_shade < 0)
1020 new_shade = 200 - (100 + new_shade);
1021
1022 if (new_shade != shade)
1023 {
1024 shade = new_shade;
1025 set_tint_shade_flags ();
1026 return true;
1027 }
1028
1029 return false;
1030}
1031
1032#if XRENDER
1033static void
1034get_gaussian_kernel (int radius, int width, double *kernel, XFixed *params)
1035{
1036 double sigma = radius / 2.0;
1037 double scale = sqrt (2.0 * M_PI) * sigma;
1038 double sum = 0.0;
1039
1040 for (int i = 0; i < width; i++)
1041 {
1042 double x = i - width / 2;
1043 kernel[i] = exp (-(x * x) / (2.0 * sigma * sigma)) / scale;
1044 sum += kernel[i];
1045 }
1046
1047 params[0] = XDoubleToFixed (width);
1048 params[1] = XDoubleToFixed (1);
1049
1050 for (int i = 0; i < width; i++)
1051 params[i+2] = XDoubleToFixed (kernel[i] / sum);
1052}
1053#endif
1054
1055bool
1056rxvt_term::blur_pixmap (Pixmap pixmap, Visual *visual, int width, int height)
1057{
1058 bool ret = false;
1059#if XRENDER
1060 int size = max (h_blurRadius, v_blurRadius) * 2 + 1;
1061 double *kernel = (double *)malloc (size * sizeof (double));
1062 XFixed *params = (XFixed *)malloc ((size + 2) * sizeof (XFixed));
1063
1064 XRenderPictureAttributes pa;
1065 XRenderPictFormat *format = XRenderFindVisualFormat (dpy, visual);
1066
1067 Picture src = XRenderCreatePicture (dpy, pixmap, format, 0, &pa);
1068 Picture dst = XRenderCreatePicture (dpy, pixmap, format, 0, &pa);
1069
1070 if (kernel && params)
1071 {
1072 if (h_blurRadius)
980 } 1073 {
981 } 1074 size = h_blurRadius * 2 + 1;
1075 get_gaussian_kernel (h_blurRadius, size, kernel, params);
982 1076
983 if (flags & bgPixmap_t::tintNeeded) 1077 XRenderSetPictureFilter (dpy, src, FilterConvolution, params, size+2);
1078 XRenderComposite (dpy,
1079 PictOpSrc,
1080 src,
1081 None,
1082 dst,
1083 0, 0,
1084 0, 0,
1085 0, 0,
1086 width, height);
1087 }
1088
1089 if (v_blurRadius)
1090 {
1091 size = v_blurRadius * 2 + 1;
1092 get_gaussian_kernel (v_blurRadius, size, kernel, params);
1093 ::swap (params[0], params[1]);
1094
1095 XRenderSetPictureFilter (dpy, src, FilterConvolution, params, size+2);
1096 XRenderComposite (dpy,
1097 PictOpSrc,
1098 src,
1099 None,
1100 dst,
1101 0, 0,
1102 0, 0,
1103 0, 0,
1104 width, height);
1105 }
1106
1107 ret = true;
984 { 1108 }
985 if (flags & bgPixmap_t::tintWholesome) 1109
986 flags |= bgPixmap_t::tintServerSide; 1110 free (kernel);
1111 free (params);
1112 XRenderFreePicture (dpy, src);
1113 XRenderFreePicture (dpy, dst);
1114#endif
1115 return ret;
1116}
1117
1118bool
1119rxvt_term::tint_pixmap (Pixmap pixmap, Visual *visual, int width, int height)
1120{
1121 bool ret = false;
1122
1123 if (bg_flags & BG_TINT_BITAND)
1124 {
1125 XGCValues gcv;
1126 GC gc;
1127
1128 /* In this case we can tint image server-side getting significant
1129 * performance improvements, as we eliminate XImage transfer
1130 */
1131 gcv.foreground = Pixel (tint);
1132 gcv.function = GXand;
1133 gcv.fill_style = FillSolid;
1134 gc = XCreateGC (dpy, pixmap, GCFillStyle | GCForeground | GCFunction, &gcv);
1135 if (gc)
1136 {
1137 XFillRectangle (dpy, pixmap, gc, 0, 0, width, height);
1138 ret = true;
1139 XFreeGC (dpy, gc);
1140 }
1141 }
1142 else
1143 {
1144# if XRENDER
1145 rgba c (rgba::MAX_CC, rgba::MAX_CC, rgba::MAX_CC);
1146
1147 if (bg_flags & BG_TINT_SET)
1148 tint.get (c);
1149
1150 if (shade <= 100)
1151 {
1152 c.r = c.r * shade / 100;
1153 c.g = c.g * shade / 100;
1154 c.b = c.b * shade / 100;
1155 }
987 else 1156 else
988 { 1157 {
989#if XFT 1158 c.r = c.r * (200 - shade) / 100;
990 flags |= bgPixmap_t::tintServerSide; 1159 c.g = c.g * (200 - shade) / 100;
991#endif 1160 c.b = c.b * (200 - shade) / 100;
1161 }
1162
1163 XRenderPictFormat *solid_format = XRenderFindStandardFormat (dpy, PictStandardARGB32);
1164 XRenderPictFormat *format = XRenderFindVisualFormat (dpy, visual);
1165 XRenderPictureAttributes pa;
1166
1167 Picture back_pic = XRenderCreatePicture (dpy, pixmap, format, 0, &pa);
1168
1169 pa.repeat = True;
1170
1171 Pixmap overlay_pmap = XCreatePixmap (dpy, pixmap, 1, 1, 32);
1172 Picture overlay_pic = XRenderCreatePicture (dpy, overlay_pmap, solid_format, CPRepeat, &pa);
1173 XFreePixmap (dpy, overlay_pmap);
1174
1175 pa.component_alpha = True;
1176 Pixmap mask_pmap = XCreatePixmap (dpy, pixmap, 1, 1, 32);
1177 Picture mask_pic = XRenderCreatePicture (dpy, mask_pmap, solid_format, CPRepeat | CPComponentAlpha, &pa);
1178 XFreePixmap (dpy, mask_pmap);
1179
1180 XRenderColor mask_c;
1181
1182 mask_c.alpha = 0xffff;
1183 mask_c.red =
1184 mask_c.green =
1185 mask_c.blue = 0;
1186 XRenderFillRectangle (dpy, PictOpSrc, overlay_pic, &mask_c, 0, 0, 1, 1);
1187
1188 mask_c.alpha = 0;
1189 mask_c.red = 0xffff - c.r;
1190 mask_c.green = 0xffff - c.g;
1191 mask_c.blue = 0xffff - c.b;
1192 XRenderFillRectangle (dpy, PictOpSrc, mask_pic, &mask_c, 0, 0, 1, 1);
1193 XRenderComposite (dpy, PictOpOver, overlay_pic, mask_pic, back_pic, 0, 0, 0, 0, 0, 0, width, height);
1194
1195 if (shade > 100)
992 } 1196 {
993 } 1197 mask_c.red = mask_c.green = mask_c.blue = 0xffff * (shade - 100) / 100;
1198 mask_c.alpha = 0;
1199 XRenderFillRectangle (dpy, PictOpSrc, overlay_pic, &mask_c, 0, 0, 1, 1);
994 1200
995 return flags; 1201 XRenderComposite (dpy, PictOpOver, overlay_pic, None, back_pic, 0, 0, 0, 0, 0, 0, width, height);
996} 1202 }
997 1203
998bool
999bgPixmap_t::set_tint (rxvt_color &new_tint)
1000{
1001 if (tint != new_tint)
1002 {
1003 unsigned long new_flags = compute_tint_shade_flags (&new_tint, shade);
1004 tint = new_tint;
1005 flags = (flags & ~tintFlags) | new_flags | tintSet;
1006 return true; 1204 ret = true;
1007 }
1008 1205
1009 return false; 1206 XRenderFreePicture (dpy, mask_pic);
1010} 1207 XRenderFreePicture (dpy, overlay_pic);
1011 1208 XRenderFreePicture (dpy, back_pic);
1012bool 1209# endif
1013bgPixmap_t::unset_tint ()
1014{
1015 unsigned long new_flags = compute_tint_shade_flags (NULL, shade);
1016
1017 if (new_flags != (flags & tintFlags))
1018 { 1210 }
1019 flags = (flags & ~tintFlags) | new_flags;
1020 return true;
1021 }
1022 1211
1023 return false; 1212 return ret;
1024} 1213}
1025 1214
1026bool 1215/*
1027bgPixmap_t::set_shade (const char *shade_str) 1216 * Builds a pixmap of the same size as the terminal window that contains
1028{
1029 int new_shade = (shade_str) ? atoi (shade_str) : 0;
1030
1031 if (new_shade < 0 && new_shade > -100)
1032 new_shade = 200 - (100 + new_shade);
1033 else if (new_shade == 100)
1034 new_shade = 0;
1035
1036 if (new_shade != shade)
1037 {
1038 unsigned long new_flags = compute_tint_shade_flags ((flags & tintSet) ? &tint : NULL, new_shade);
1039 shade = new_shade;
1040 flags = (flags & (~tintFlags | tintSet)) | new_flags;
1041 return true;
1042 }
1043
1044 return false;
1045}
1046
1047/* make_transparency_pixmap()
1048 * Builds a pixmap sized the same as terminal window, with depth same as the root window
1049 * that pixmap contains tiled portion of the root pixmap that is supposed to be covered by 1217 * the tiled portion of the root pixmap that is supposed to be covered by
1050 * our window. 1218 * our window.
1051 */ 1219 */
1052unsigned long 1220unsigned long
1053bgPixmap_t::make_transparency_pixmap () 1221rxvt_term::make_transparency_pixmap ()
1054{ 1222{
1055 unsigned long result = 0; 1223 unsigned long result = 0;
1056
1057 if (target == NULL)
1058 return 0;
1059 1224
1060 /* root dimensions may change from call to call - but Display structure should 1225 /* root dimensions may change from call to call - but Display structure should
1061 * be always up-to-date, so let's use it : 1226 * be always up-to-date, so let's use it :
1062 */ 1227 */
1063 Window root = target->display->root;
1064 int screen = target->display->screen; 1228 int screen = display->screen;
1065 Display *dpy = target->dpy; 1229 int root_depth = DefaultDepth (dpy, screen);
1066 int root_width = DisplayWidth (dpy, screen); 1230 int root_width = DisplayWidth (dpy, screen);
1067 int root_height = DisplayHeight (dpy, screen); 1231 int root_height = DisplayHeight (dpy, screen);
1068 unsigned int root_pmap_width, root_pmap_height; 1232 unsigned int root_pmap_width, root_pmap_height;
1069 int window_width = target->szHint.width; 1233 int window_width = szHint.width;
1070 int window_height = target->szHint.height; 1234 int window_height = szHint.height;
1071 int sx, sy; 1235 int sx, sy;
1072 XGCValues gcv; 1236 XGCValues gcv;
1237 GC gc;
1073 1238
1074 TIMING_TEST_START (tp); 1239 sx = target_x;
1075 target->get_window_origin (sx, sy); 1240 sy = target_y;
1076 1241
1077 /* check if we are outside of the visible part of the virtual screen : */ 1242 /* check if we are outside of the visible part of the virtual screen : */
1078 if (sx + window_width <= 0 || sy + window_height <= 0 1243 if (sx + window_width <= 0 || sy + window_height <= 0
1079 || sx >= root_width || sy >= root_height) 1244 || sx >= root_width || sy >= root_height)
1080 return 0; 1245 return 0;
1081 1246
1247 // validate root pixmap and get its size
1082 if (root_pixmap != None) 1248 if (root_pixmap != None)
1083 { 1249 {
1084 /* we want to validate the pixmap and get it's size at the same time : */ 1250 Window wdummy;
1085 int junk; 1251 int idummy;
1086 unsigned int ujunk; 1252 unsigned int udummy;
1087 /* root pixmap may be bad - allow a error */ 1253
1088 target->allowedxerror = -1; 1254 allowedxerror = -1;
1089 1255
1090 if (!XGetGeometry (dpy, root_pixmap, &root, &junk, &junk, &root_pmap_width, &root_pmap_height, &ujunk, &ujunk)) 1256 if (!XGetGeometry (dpy, root_pixmap, &wdummy, &idummy, &idummy, &root_pmap_width, &root_pmap_height, &udummy, &udummy))
1091 root_pixmap = None; 1257 root_pixmap = None;
1092 1258
1093 target->allowedxerror = 0; 1259 allowedxerror = 0;
1260 }
1261
1262 Pixmap recoded_root_pmap = root_pixmap;
1263
1264 if (root_pixmap != None && root_depth != depth)
1094 } 1265 {
1266#if XRENDER
1267 if (bg_flags & BG_HAS_RENDER)
1268 {
1269 recoded_root_pmap = XCreatePixmap (dpy, vt, root_pmap_width, root_pmap_height, depth);
1095 1270
1096 Pixmap tiled_root_pmap = XCreatePixmap (dpy, root, window_width, window_height, root_depth); 1271 XRenderPictureAttributes pa;
1097 GC gc = NULL;
1098 1272
1099 if (tiled_root_pmap == None) /* something really bad happened - abort */ 1273 XRenderPictFormat *src_format = XRenderFindVisualFormat (dpy, DefaultVisual (dpy, screen));
1274 Picture src = XRenderCreatePicture (dpy, root_pixmap, src_format, 0, &pa);
1275
1276 XRenderPictFormat *dst_format = XRenderFindVisualFormat (dpy, visual);
1277 Picture dst = XRenderCreatePicture (dpy, recoded_root_pmap, dst_format, 0, &pa);
1278
1279 XRenderComposite (dpy, PictOpSrc, src, None, dst, 0, 0, 0, 0, 0, 0, root_pmap_width, root_pmap_height);
1280
1281 XRenderFreePicture (dpy, src);
1282 XRenderFreePicture (dpy, dst);
1283 }
1284 else
1285#endif
1286 recoded_root_pmap = None;
1287 }
1288
1289 if (recoded_root_pmap == None)
1100 return 0; 1290 return 0;
1101 1291
1102 if (root_pixmap == None) 1292 if (bg_pixmap == None
1293 || bg_pmap_width != window_width
1294 || bg_pmap_height != window_height)
1103 { 1295 {
1104 /* use tricks to obtain the root background image :*/ 1296 if (bg_pixmap)
1105 /* we want to create Overrideredirect window overlapping out window
1106 with background type of Parent Relative and then grab it */
1107 XSetWindowAttributes attr;
1108 Window src;
1109 bool success = false;
1110
1111 attr.background_pixmap = ParentRelative;
1112 attr.backing_store = Always;
1113 attr.event_mask = ExposureMask;
1114 attr.override_redirect = True;
1115 src = XCreateWindow (dpy, root, sx, sy, window_width, window_height, 0,
1116 CopyFromParent, CopyFromParent, CopyFromParent,
1117 CWBackPixmap|CWBackingStore|CWOverrideRedirect|CWEventMask,
1118 &attr);
1119
1120 if (src != None)
1121 {
1122 XEvent event;
1123 int ev_count = 0;
1124 XGrabServer (dpy);
1125 XMapRaised (dpy, src);
1126 XSync (dpy, False);
1127
1128 /* XSync should get window where it's properly exposed,
1129 * but to be on the safe side - let's check for the actual event to arrive : */
1130 while (XCheckWindowEvent (dpy, src, ExposureMask, &event))
1131 ++ev_count;
1132
1133 if (ev_count > 0);
1134 {
1135 /* hooray! - we can grab the image! */
1136 gc = XCreateGC (dpy, root, 0, NULL);
1137 if (gc)
1138 {
1139 XCopyArea (dpy, src, tiled_root_pmap, gc, 0, 0, window_width, window_height, 0, 0);
1140 success = true;
1141 }
1142 }
1143
1144 XDestroyWindow (dpy, src);
1145 XUngrabServer (dpy);
1146 //fprintf (stderr, "%s:%d: ev_count = %d\n", __FUNCTION__, __LINE__, ev_count);
1147 }
1148
1149 if (!success)
1150 {
1151 XFreePixmap (dpy, tiled_root_pmap); 1297 XFreePixmap (dpy, bg_pixmap);
1152 tiled_root_pmap = None; 1298 bg_pixmap = XCreatePixmap (dpy, vt, window_width, window_height, depth);
1153 } 1299 bg_pmap_width = window_width;
1154 else 1300 bg_pmap_height = window_height;
1155 result |= transpPmapTiled;
1156 }
1157 else
1158 { 1301 }
1302
1159 /* straightforward pixmap copy */ 1303 /* straightforward pixmap copy */
1304 while (sx < 0) sx += root_width;
1305 while (sy < 0) sy += root_height;
1306
1160 gcv.tile = root_pixmap; 1307 gcv.tile = recoded_root_pmap;
1161 gcv.fill_style = FillTiled; 1308 gcv.fill_style = FillTiled;
1162
1163 while (sx < 0) sx += (int)root_width;
1164 while (sy < 0) sy += (int)root_height;
1165
1166 gcv.ts_x_origin = -sx; 1309 gcv.ts_x_origin = -sx;
1167 gcv.ts_y_origin = -sy; 1310 gcv.ts_y_origin = -sy;
1168 gc = XCreateGC (dpy, root, GCFillStyle | GCTile | GCTileStipXOrigin | GCTileStipYOrigin, &gcv); 1311 gc = XCreateGC (dpy, vt, GCFillStyle | GCTile | GCTileStipXOrigin | GCTileStipYOrigin, &gcv);
1312
1313 if (gc)
1314 {
1315 XFillRectangle (dpy, bg_pixmap, gc, 0, 0, window_width, window_height);
1316 result |= BG_IS_VALID | (bg_flags & BG_EFFECTS_FLAGS);
1317 XFreeGC (dpy, gc);
1318
1319 if (!(bg_flags & BG_CLIENT_RENDER))
1320 {
1321 if ((bg_flags & BG_NEEDS_BLUR)
1322 && (bg_flags & BG_HAS_RENDER_CONV))
1323 {
1324 if (blur_pixmap (bg_pixmap, visual, window_width, window_height))
1325 result &= ~BG_NEEDS_BLUR;
1326 }
1327 if ((bg_flags & BG_NEEDS_TINT)
1328 && (bg_flags & (BG_TINT_BITAND | BG_HAS_RENDER)))
1329 {
1330 if (tint_pixmap (bg_pixmap, visual, window_width, window_height))
1331 result &= ~BG_NEEDS_TINT;
1332 }
1333 } /* server side rendering completed */
1334 }
1335
1336 if (recoded_root_pmap != root_pixmap)
1337 XFreePixmap (dpy, recoded_root_pmap);
1338
1339 return result;
1340}
1341
1342void
1343rxvt_term::bg_set_root_pixmap ()
1344{
1345 Pixmap new_root_pixmap = get_pixmap_property (xa[XA_XROOTPMAP_ID]);
1346 if (new_root_pixmap == None)
1347 new_root_pixmap = get_pixmap_property (xa[XA_ESETROOT_PMAP_ID]);
1348
1349 root_pixmap = new_root_pixmap;
1350}
1351# endif /* ENABLE_TRANSPARENCY */
1352
1353#if defined(ENABLE_TRANSPARENCY) && !defined(HAVE_AFTERIMAGE)
1354static void shade_ximage (Visual *visual, XImage *ximage, int shade, const rgba &c);
1355# endif
1356
1357bool
1358rxvt_term::bg_render ()
1359{
1360 unsigned long tr_flags = 0;
1361
1362 bg_invalidate ();
1363# ifdef ENABLE_TRANSPARENCY
1364 if (bg_flags & BG_IS_TRANSPARENT)
1365 {
1366 /* we need to re-generate transparency pixmap in that case ! */
1367 tr_flags = make_transparency_pixmap ();
1368 if (tr_flags == 0)
1369 return false;
1370 else if (!(tr_flags & BG_EFFECTS_FLAGS))
1371 bg_flags |= BG_IS_VALID;
1372 }
1373# endif
1374
1375# ifdef BG_IMAGE_FROM_FILE
1376 if ((bg_flags & BG_IS_FROM_FILE)
1377 || (tr_flags & BG_EFFECTS_FLAGS))
1378 {
1379 if (render_image (tr_flags))
1380 bg_flags |= BG_IS_VALID;
1381 }
1382# endif
1383
1384# if defined(ENABLE_TRANSPARENCY) && !defined(HAVE_AFTERIMAGE)
1385 XImage *result = NULL;
1386
1387 if (tr_flags && !(bg_flags & BG_IS_VALID))
1388 {
1389 result = XGetImage (dpy, bg_pixmap, 0, 0, bg_pmap_width, bg_pmap_height, AllPlanes, ZPixmap);
1390 }
1391
1392 if (result)
1393 {
1394 /* our own client-side tinting */
1395 if (tr_flags & BG_NEEDS_TINT)
1396 {
1397 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC);
1398 if (bg_flags & BG_TINT_SET)
1399 tint.get (c);
1400 shade_ximage (DefaultVisual (dpy, display->screen), result, shade, c);
1401 }
1402
1403 GC gc = XCreateGC (dpy, vt, 0UL, NULL);
1169 1404
1170 if (gc) 1405 if (gc)
1171 { 1406 {
1172 XFillRectangle (dpy, tiled_root_pmap, gc, 0, 0, window_width, window_height); 1407 XPutImage (dpy, bg_pixmap, gc, result, 0, 0, 0, 0, result->width, result->height);
1173 result |= transpPmapTiled;
1174 }
1175 }
1176 TIMING_TEST_PRINT_RESULT (tp);
1177 1408
1178 if (tiled_root_pmap != None) 1409 XFreeGC (dpy, gc);
1179 { 1410 bg_flags |= BG_IS_VALID;
1180 if (!need_client_side_rendering ())
1181 { 1411 }
1182 if ((flags & tintNeeded))
1183 {
1184 if (flags & tintWholesome)
1185 {
1186 /* In this case we can tint image server-side getting significant
1187 * performance improvements, as we eliminate XImage transfer
1188 */
1189 gcv.foreground = Pixel (tint);
1190 gcv.function = GXand;
1191 gcv.fill_style = FillSolid;
1192 if (gc)
1193 XChangeGC (dpy, gc, GCFillStyle | GCForeground | GCFunction, &gcv);
1194 else
1195 gc = XCreateGC (dpy, root, GCFillStyle | GCForeground | GCFunction, &gcv);
1196 if (gc)
1197 {
1198 XFillRectangle (dpy, tiled_root_pmap, gc, 0, 0, window_width, window_height);
1199 result |= transpPmapTinted;
1200 }
1201 }
1202 else
1203 {
1204# if XFT
1205 Picture back_pic = 0;
1206 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC);
1207 1412
1208 if (flags & tintSet) 1413 XDestroyImage (result);
1209 tint.get (c);
1210
1211 if (shade > 0 && shade < 100)
1212 {
1213 c.r = (c.r * shade) / 100;
1214 c.g = (c.g * shade) / 100;
1215 c.b = (c.b * shade) / 100;
1216 }
1217 else if (shade > 100 && shade < 200)
1218 {
1219 c.r = (c.r * (200 - shade)) / 100;
1220 c.g = (c.g * (200 - shade)) / 100;
1221 c.b = (c.b * (200 - shade)) / 100;
1222 }
1223
1224 XRenderPictFormat pf;
1225 pf.type = PictTypeDirect;
1226 pf.depth = 32;
1227 pf.direct.redMask = 0xff;
1228 pf.direct.greenMask = 0xff;
1229 pf.direct.blueMask = 0xff;
1230 pf.direct.alphaMask = 0xff;
1231
1232 XRenderPictFormat *solid_format = XRenderFindFormat (dpy,
1233 (PictFormatType|
1234 PictFormatDepth|
1235 PictFormatRedMask|
1236 PictFormatGreenMask|
1237 PictFormatBlueMask|
1238 PictFormatAlphaMask),
1239 &pf,
1240 0);
1241 XRenderPictFormat *root_format = XRenderFindVisualFormat (dpy, DefaultVisualOfScreen (ScreenOfDisplay (dpy, target->display->screen)));
1242 XRenderPictureAttributes pa ;
1243
1244 back_pic = XRenderCreatePicture (dpy, tiled_root_pmap, root_format, 0, &pa);
1245
1246 pa.repeat = True;
1247
1248 Pixmap overlay_pmap = XCreatePixmap (dpy, root, 1, 1, 32);
1249 Picture overlay_pic = XRenderCreatePicture (dpy, overlay_pmap, solid_format, CPRepeat, &pa);
1250 XFreePixmap (dpy, overlay_pmap);
1251
1252 pa.component_alpha = True;
1253 Pixmap mask_pmap = XCreatePixmap (dpy, root, 1, 1, 32);
1254 Picture mask_pic = XRenderCreatePicture (dpy, mask_pmap, solid_format, CPRepeat|CPComponentAlpha, &pa);
1255 XFreePixmap (dpy, mask_pmap);
1256
1257 if (mask_pic && overlay_pic && back_pic)
1258 {
1259 XRenderColor mask_c;
1260
1261 memset (&mask_c, (shade > 100) ? 0xFF : 0x0, sizeof (mask_c));
1262 mask_c.alpha = 0xffff;
1263 XRenderFillRectangle (dpy, PictOpSrc, overlay_pic, &mask_c, 0, 0, 1, 1);
1264
1265 mask_c.alpha = 0;
1266 mask_c.red = 0xffff - c.r;
1267 mask_c.green = 0xffff - c.g;
1268 mask_c.blue = 0xffff - c.b;
1269 XRenderFillRectangle (dpy, PictOpSrc, mask_pic, &mask_c, 0, 0, 1, 1);
1270 XRenderComposite (dpy, PictOpOver, overlay_pic, mask_pic, back_pic, 0, 0, 0, 0, 0, 0, window_width, window_height);
1271 result |= transpPmapTinted;
1272 }
1273
1274 XRenderFreePicture (dpy, mask_pic);
1275 XRenderFreePicture (dpy, overlay_pic);
1276 XRenderFreePicture (dpy, back_pic);
1277# if DO_TIMING_TEST
1278 XSync (dpy, False);
1279# endif
1280# endif
1281 }
1282 }
1283 } /* server side rendering completed */
1284
1285 if (pixmap)
1286 XFreePixmap (dpy, pixmap);
1287
1288 pixmap = tiled_root_pmap;
1289 pmap_width = window_width;
1290 pmap_height = window_height;
1291 pmap_depth = root_depth;
1292 }
1293
1294 if (gc)
1295 XFreeGC (dpy, gc);
1296
1297 TIMING_TEST_PRINT_RESULT (tp);
1298
1299 return result;
1300}
1301
1302bool
1303bgPixmap_t::set_root_pixmap ()
1304{
1305 Pixmap new_root_pixmap = target->get_pixmap_property (XA_XROOTPMAP_ID);
1306 if (new_root_pixmap == None)
1307 new_root_pixmap = target->get_pixmap_property (XA_ESETROOT_PMAP_ID);
1308
1309 if (new_root_pixmap != root_pixmap)
1310 { 1414 }
1311 root_pixmap = new_root_pixmap;
1312 return true;
1313 }
1314
1315 return false;
1316}
1317# endif /* ENABLE_TRANSPARENCY */
1318
1319# ifndef HAVE_AFTERIMAGE
1320static void ShadeXImage(rxvt_term *term, XImage *srcImage, int shade, int rm, int gm, int bm);
1321# endif 1415# endif
1322 1416
1323bool 1417 if (!(bg_flags & BG_IS_VALID))
1324bgPixmap_t::render ()
1325{
1326 unsigned long background_flags = 0;
1327
1328 if (target == NULL)
1329 return false;
1330
1331 TIMING_TEST_START (tp);
1332
1333 invalidate ();
1334# ifdef ENABLE_TRANSPARENCY
1335 if (flags & isTransparent)
1336 {
1337 /* we need to re-generate transparency pixmap in that case ! */
1338 background_flags = make_transparency_pixmap ();
1339 if (background_flags == 0)
1340 return false;
1341 else if ((background_flags & transpTransformations) == (flags & transpTransformations)
1342 && pmap_depth == target->depth)
1343 flags = flags & ~isInvalid;
1344 } 1418 {
1345# endif
1346
1347# ifdef BG_IMAGE_FROM_FILE
1348 if (have_image
1349 || (background_flags & transpTransformations) != (flags & transpTransformations))
1350 {
1351 if (render_image (background_flags))
1352 flags = flags & ~isInvalid;
1353 }
1354# endif
1355
1356 XImage *result = NULL;
1357
1358 if (background_flags && (flags & isInvalid))
1359 {
1360 result = XGetImage (target->dpy, pixmap, 0, 0, pmap_width, pmap_height, AllPlanes, ZPixmap);
1361 }
1362
1363 if (result)
1364 {
1365# if !defined(HAVE_AFTERIMAGE) && !XFT
1366 /* our own client-side tinting */
1367 /* ATTENTION: We ASSUME that XFT will let us do all the tinting necessary server-side.
1368 This may need to be changed in need_client_side_rendering() logic is altered !!! */
1369 if (!(background_flags & transpPmapTinted) && (flags & tintNeeded))
1370 {
1371 rgba c (rgba::MAX_CC,rgba::MAX_CC,rgba::MAX_CC);
1372 if (flags & tintSet)
1373 tint.get (c);
1374 ShadeXImage (target, result, shade, c.r, c.g, c.b);
1375 }
1376# endif
1377
1378 GC gc = XCreateGC (target->dpy, target->vt, 0UL, NULL);
1379
1380 if (gc)
1381 {
1382 if (/*pmap_depth != target->depth &&*/ pixmap != None)
1383 {
1384 XFreePixmap (target->dpy, pixmap);
1385 pixmap = None;
1386 }
1387
1388 if (pixmap == None)
1389 {
1390 pixmap = XCreatePixmap (target->dpy, target->vt, result->width, result->height, target->depth);
1391 pmap_width = result->width;
1392 pmap_height = result->height;
1393 pmap_depth = target->depth;
1394 }
1395
1396 if (pmap_depth != result->depth)
1397 {
1398 /* Bad Match error will ensue ! stupid X !!!! */
1399 if (result->depth == 24 && pmap_depth == 32)
1400 result->depth = 32;
1401 else if (result->depth == 32 && pmap_depth == 24)
1402 result->depth = 24;
1403 else
1404 {
1405 /* TODO: implement image recoding */
1406 }
1407 }
1408
1409 if (pmap_depth == result->depth)
1410 XPutImage (target->dpy, pixmap, gc, result, 0, 0, 0, 0, result->width, result->height);
1411
1412 XFreeGC (target->dpy, gc);
1413 flags = flags & ~isInvalid;
1414 }
1415
1416 XDestroyImage (result);
1417 }
1418
1419 if (flags & isInvalid)
1420 {
1421 if (pixmap != None) 1419 if (bg_pixmap != None)
1422 { 1420 {
1423 XFreePixmap (target->dpy, pixmap); 1421 XFreePixmap (dpy, bg_pixmap);
1424 pixmap = None; 1422 bg_pixmap = None;
1425 } 1423 }
1426 } 1424 }
1427 1425
1428 apply (); 1426 scr_recolour (false);
1427 bg_flags |= BG_NEEDS_REFRESH;
1429 1428
1430 XSync (target->dpy, False);
1431 valid_since = ev::now (); 1429 bg_valid_since = ev::now ();
1432
1433 TIMING_TEST_PRINT_RESULT (tp);
1434 1430
1435 return true; 1431 return true;
1436} 1432}
1437 1433
1438bool
1439bgPixmap_t::set_target (rxvt_term *new_target)
1440{
1441 if (new_target)
1442 if (target != new_target)
1443 {
1444 target = new_target;
1445# ifdef ENABLE_TRANSPARENCY
1446 root_depth = DefaultDepthOfScreen (ScreenOfDisplay (target->dpy, target->display->screen));
1447# endif
1448 return true;
1449 }
1450
1451 return false;
1452}
1453
1454void 1434void
1455bgPixmap_t::apply () 1435rxvt_term::bg_init ()
1456{ 1436{
1457 if (target)
1458 {
1459 flags &= ~isVtOrigin;
1460
1461 if (pixmap != None)
1462 {
1463 /* set target's background to pixmap */
1464# ifdef ENABLE_TRANSPARENCY 1437#ifdef ENABLE_TRANSPARENCY
1465 if (flags & isTransparent) 1438 shade = 100;
1466 {
1467 XSetWindowBackgroundPixmap (target->dpy, target->parent[0], pixmap);
1468 XSetWindowBackgroundPixmap (target->dpy, target->vt, ParentRelative);
1469
1470 if (target->scrollBar.win)
1471 XSetWindowBackgroundPixmap (target->dpy, target->scrollBar.win, ParentRelative);
1472 }
1473 else
1474# endif 1439#endif
1475 {
1476 flags |= isVtOrigin;
1477 /* force old pixmap dereference in case it was transparent before :*/
1478 XSetWindowBackground (target->dpy, target->parent[0], target->pix_colors[Color_border]);
1479 XSetWindowBackgroundPixmap (target->dpy, target->vt, pixmap);
1480 /* do we also need to set scrollbar's background here ? */
1481 1440
1482 if (target->scrollBar.win) 1441 bg_flags &= ~(BG_HAS_RENDER | BG_HAS_RENDER_CONV);
1483 XSetWindowBackground (target->dpy, target->scrollBar.win, target->pix_colors[Color_border]); 1442#if XRENDER
1484 } 1443 int major, minor;
1485 } 1444 if (XRenderQueryVersion (dpy, &major, &minor))
1486 else 1445 bg_flags |= BG_HAS_RENDER;
1487 { 1446 XFilters *filters = XRenderQueryFilters (dpy, vt);
1488 /* set target background to a pixel */ 1447 if (filters)
1489 XSetWindowBackground (target->dpy, target->parent[0], target->pix_colors[Color_border]);
1490 XSetWindowBackground (target->dpy, target->vt, target->pix_colors[Color_bg]);
1491 /* do we also need to set scrollbar's background here ? */
1492 if (target->scrollBar.win)
1493 XSetWindowBackground (target->dpy, target->scrollBar.win, target->pix_colors[Color_border]);
1494 }
1495
1496 /* don't want Expose on the parent or vt. It is better to use
1497 scr_touch or we get a great deal of flicker otherwise: */
1498 XClearWindow (target->dpy, target->parent[0]);
1499
1500 if (target->scrollBar.state && target->scrollBar.win)
1501 {
1502 target->scrollBar.state = STATE_IDLE;
1503 target->scrollBar.show (0);
1504 }
1505
1506 target->want_refresh = 1;
1507 flags |= hasChanged;
1508 } 1448 {
1449 for (int i = 0; i < filters->nfilter; i++)
1450 if (!strcmp (filters->filter[i], FilterConvolution))
1451 bg_flags |= BG_HAS_RENDER_CONV;
1452
1453 XFree (filters);
1454 }
1455#endif
1509} 1456}
1510 1457
1511#endif /* HAVE_BG_PIXMAP */ 1458#endif /* HAVE_BG_PIXMAP */
1512 1459
1513#if defined(ENABLE_TRANSPARENCY) && !defined(HAVE_AFTERIMAGE) && !XFT 1460#if defined(ENABLE_TRANSPARENCY) && !defined(HAVE_AFTERIMAGE)
1514/* taken from aterm-0.4.2 */ 1461/* taken from aterm-0.4.2 */
1515 1462
1516typedef uint32_t RUINT32T;
1517
1518static void 1463static void
1519ShadeXImage(rxvt_term *term, XImage *srcImage, int shade, int rm, int gm, int bm) 1464shade_ximage (Visual *visual, XImage *ximage, int shade, const rgba &c)
1520{ 1465{
1521 int sh_r, sh_g, sh_b; 1466 int sh_r, sh_g, sh_b;
1522 RUINT32T mask_r, mask_g, mask_b; 1467 uint32_t mask_r, mask_g, mask_b;
1523 RUINT32T *lookup, *lookup_r, *lookup_g, *lookup_b; 1468 uint32_t *lookup, *lookup_r, *lookup_g, *lookup_b;
1524 unsigned int lower_lim_r, lower_lim_g, lower_lim_b; 1469 rgba low;
1525 unsigned int upper_lim_r, upper_lim_g, upper_lim_b; 1470 rgba high;
1526 int i; 1471 int i;
1472 int host_byte_order = ecb_big_endian () ? MSBFirst : LSBFirst;
1527 1473
1528 Visual *visual = term->visual;
1529
1530 if (visual->c_class != TrueColor || srcImage->format != ZPixmap) return ; 1474 if (visual->c_class != TrueColor || ximage->format != ZPixmap) return;
1531
1532 if (shade == 0)
1533 shade = 100;
1534 1475
1535 /* for convenience */ 1476 /* for convenience */
1536 mask_r = visual->red_mask; 1477 mask_r = visual->red_mask;
1537 mask_g = visual->green_mask; 1478 mask_g = visual->green_mask;
1538 mask_b = visual->blue_mask; 1479 mask_b = visual->blue_mask;
1539 1480
1540 /* boring lookup table pre-initialization */ 1481 /* boring lookup table pre-initialization */
1541 switch (srcImage->bits_per_pixel) { 1482 switch (ximage->depth)
1483 {
1542 case 15: 1484 case 15:
1543 if ((mask_r != 0x7c00) || 1485 if ((mask_r != 0x7c00) ||
1544 (mask_g != 0x03e0) || 1486 (mask_g != 0x03e0) ||
1545 (mask_b != 0x001f)) 1487 (mask_b != 0x001f))
1546 return; 1488 return;
1547 lookup = (RUINT32T *) malloc (sizeof (RUINT32T)*(32+32+32)); 1489 lookup = (uint32_t *) malloc (sizeof (uint32_t)*(32+32+32));
1548 lookup_r = lookup; 1490 lookup_r = lookup;
1549 lookup_g = lookup+32; 1491 lookup_g = lookup+32;
1550 lookup_b = lookup+32+32; 1492 lookup_b = lookup+32+32;
1551 sh_r = 10; 1493 sh_r = 10;
1552 sh_g = 5; 1494 sh_g = 5;
1553 sh_b = 0; 1495 sh_b = 0;
1554 break; 1496 break;
1555 case 16: 1497 case 16:
1556 if ((mask_r != 0xf800) || 1498 if ((mask_r != 0xf800) ||
1557 (mask_g != 0x07e0) || 1499 (mask_g != 0x07e0) ||
1558 (mask_b != 0x001f)) 1500 (mask_b != 0x001f))
1559 return; 1501 return;
1560 lookup = (RUINT32T *) malloc (sizeof (RUINT32T)*(32+64+32)); 1502 lookup = (uint32_t *) malloc (sizeof (uint32_t)*(32+64+32));
1561 lookup_r = lookup; 1503 lookup_r = lookup;
1562 lookup_g = lookup+32; 1504 lookup_g = lookup+32;
1563 lookup_b = lookup+32+64; 1505 lookup_b = lookup+32+64;
1564 sh_r = 11; 1506 sh_r = 11;
1565 sh_g = 5; 1507 sh_g = 5;
1566 sh_b = 0; 1508 sh_b = 0;
1567 break; 1509 break;
1568 case 24: 1510 case 24:
1569 if ((mask_r != 0xff0000) || 1511 if ((mask_r != 0xff0000) ||
1570 (mask_g != 0x00ff00) || 1512 (mask_g != 0x00ff00) ||
1571 (mask_b != 0x0000ff)) 1513 (mask_b != 0x0000ff))
1572 return; 1514 return;
1573 lookup = (RUINT32T *) malloc (sizeof (RUINT32T)*(256+256+256)); 1515 lookup = (uint32_t *) malloc (sizeof (uint32_t)*(256+256+256));
1574 lookup_r = lookup; 1516 lookup_r = lookup;
1575 lookup_g = lookup+256; 1517 lookup_g = lookup+256;
1576 lookup_b = lookup+256+256; 1518 lookup_b = lookup+256+256;
1577 sh_r = 16; 1519 sh_r = 16;
1578 sh_g = 8; 1520 sh_g = 8;
1579 sh_b = 0; 1521 sh_b = 0;
1580 break; 1522 break;
1581 case 32: 1523 case 32:
1582 if ((mask_r != 0xff0000) || 1524 if ((mask_r != 0xff0000) ||
1583 (mask_g != 0x00ff00) || 1525 (mask_g != 0x00ff00) ||
1584 (mask_b != 0x0000ff)) 1526 (mask_b != 0x0000ff))
1585 return; 1527 return;
1586 lookup = (RUINT32T *) malloc (sizeof (RUINT32T)*(256+256+256)); 1528 lookup = (uint32_t *) malloc (sizeof (uint32_t)*(256+256+256));
1587 lookup_r = lookup; 1529 lookup_r = lookup;
1588 lookup_g = lookup+256; 1530 lookup_g = lookup+256;
1589 lookup_b = lookup+256+256; 1531 lookup_b = lookup+256+256;
1590 sh_r = 16; 1532 sh_r = 16;
1591 sh_g = 8; 1533 sh_g = 8;
1592 sh_b = 0; 1534 sh_b = 0;
1593 break; 1535 break;
1594 default: 1536 default:
1595 return; /* we do not support this color depth */ 1537 return; /* we do not support this color depth */
1596 } 1538 }
1597 1539
1598 /* prepare limits for color transformation (each channel is handled separately) */ 1540 /* prepare limits for color transformation (each channel is handled separately) */
1599 if (shade < 0) { 1541 if (shade > 100)
1542 {
1600 shade = -shade; 1543 shade = 200 - shade;
1601 if (shade < 0) shade = 0;
1602 if (shade > 100) shade = 100;
1603 1544
1604 lower_lim_r = 65535-rm; 1545 high.r = c.r * shade / 100;
1605 lower_lim_g = 65535-gm; 1546 high.g = c.g * shade / 100;
1606 lower_lim_b = 65535-bm; 1547 high.b = c.b * shade / 100;
1607 1548
1608 lower_lim_r = 65535-(unsigned int)(((RUINT32T)lower_lim_r)*((RUINT32T)shade)/100); 1549 low.r = 65535 * (100 - shade) / 100;
1609 lower_lim_g = 65535-(unsigned int)(((RUINT32T)lower_lim_g)*((RUINT32T)shade)/100); 1550 low.g = 65535 * (100 - shade) / 100;
1610 lower_lim_b = 65535-(unsigned int)(((RUINT32T)lower_lim_b)*((RUINT32T)shade)/100); 1551 low.b = 65535 * (100 - shade) / 100;
1611
1612 upper_lim_r = upper_lim_g = upper_lim_b = 65535;
1613 } else {
1614 if (shade < 0) shade = 0;
1615 if (shade > 100) shade = 100;
1616
1617 lower_lim_r = lower_lim_g = lower_lim_b = 0;
1618
1619 upper_lim_r = (unsigned int)((((RUINT32T)rm)*((RUINT32T)shade))/100);
1620 upper_lim_g = (unsigned int)((((RUINT32T)gm)*((RUINT32T)shade))/100);
1621 upper_lim_b = (unsigned int)((((RUINT32T)bm)*((RUINT32T)shade))/100);
1622 } 1552 }
1623 1553 else
1624 /* switch red and blue bytes if necessary, we need it for some weird XServers like XFree86 3.3.3.1 */
1625 if ((srcImage->bits_per_pixel == 24) && (mask_r >= 0xFF0000 ))
1626 { 1554 {
1627 unsigned int tmp; 1555 high.r = c.r * shade / 100;
1556 high.g = c.g * shade / 100;
1557 high.b = c.b * shade / 100;
1628 1558
1629 tmp = lower_lim_r; 1559 low.r = low.g = low.b = 0;
1630 lower_lim_r = lower_lim_b;
1631 lower_lim_b = tmp;
1632
1633 tmp = upper_lim_r;
1634 upper_lim_r = upper_lim_b;
1635 upper_lim_b = tmp;
1636 } 1560 }
1637 1561
1638 /* fill our lookup tables */ 1562 /* fill our lookup tables */
1639 for (i = 0; i <= mask_r>>sh_r; i++) 1563 for (i = 0; i <= mask_r>>sh_r; i++)
1640 { 1564 {
1641 RUINT32T tmp; 1565 uint32_t tmp;
1642 tmp = ((RUINT32T)i)*((RUINT32T)(upper_lim_r-lower_lim_r)); 1566 tmp = i * high.r;
1643 tmp += ((RUINT32T)(mask_r>>sh_r))*((RUINT32T)lower_lim_r); 1567 tmp += (mask_r>>sh_r) * low.r;
1644 lookup_r[i] = (tmp/65535)<<sh_r; 1568 lookup_r[i] = (tmp/65535)<<sh_r;
1645 } 1569 }
1646 for (i = 0; i <= mask_g>>sh_g; i++) 1570 for (i = 0; i <= mask_g>>sh_g; i++)
1647 { 1571 {
1648 RUINT32T tmp; 1572 uint32_t tmp;
1649 tmp = ((RUINT32T)i)*((RUINT32T)(upper_lim_g-lower_lim_g)); 1573 tmp = i * high.g;
1650 tmp += ((RUINT32T)(mask_g>>sh_g))*((RUINT32T)lower_lim_g); 1574 tmp += (mask_g>>sh_g) * low.g;
1651 lookup_g[i] = (tmp/65535)<<sh_g; 1575 lookup_g[i] = (tmp/65535)<<sh_g;
1652 } 1576 }
1653 for (i = 0; i <= mask_b>>sh_b; i++) 1577 for (i = 0; i <= mask_b>>sh_b; i++)
1654 { 1578 {
1655 RUINT32T tmp; 1579 uint32_t tmp;
1656 tmp = ((RUINT32T)i)*((RUINT32T)(upper_lim_b-lower_lim_b)); 1580 tmp = i * high.b;
1657 tmp += ((RUINT32T)(mask_b>>sh_b))*((RUINT32T)lower_lim_b); 1581 tmp += (mask_b>>sh_b) * low.b;
1658 lookup_b[i] = (tmp/65535)<<sh_b; 1582 lookup_b[i] = (tmp/65535)<<sh_b;
1659 } 1583 }
1660 1584
1661 /* apply table to input image (replacing colors by newly calculated ones) */ 1585 /* apply table to input image (replacing colors by newly calculated ones) */
1662 switch (srcImage->bits_per_pixel) 1586 if (ximage->bits_per_pixel == 32
1587 && (ximage->depth == 24 || ximage->depth == 32)
1588 && ximage->byte_order == host_byte_order)
1663 { 1589 {
1664 case 15:
1665 {
1666 unsigned short *p1, *pf, *p, *pl; 1590 uint32_t *p1, *pf, *p, *pl;
1667 p1 = (unsigned short *) srcImage->data; 1591 p1 = (uint32_t *) ximage->data;
1668 pf = (unsigned short *) (srcImage->data + srcImage->height * srcImage->bytes_per_line); 1592 pf = (uint32_t *) (ximage->data + ximage->height * ximage->bytes_per_line);
1593
1669 while (p1 < pf) 1594 while (p1 < pf)
1670 { 1595 {
1671 p = p1; 1596 p = p1;
1672 pl = p1 + srcImage->width; 1597 pl = p1 + ximage->width;
1673 for (; p < pl; p++) 1598 for (; p < pl; p++)
1674 { 1599 {
1675 *p = lookup_r[(*p & 0x7c00)>>10] |
1676 lookup_g[(*p & 0x03e0)>> 5] |
1677 lookup_b[(*p & 0x001f)];
1678 }
1679 p1 = (unsigned short *) ((char *) p1 + srcImage->bytes_per_line);
1680 }
1681 break;
1682 }
1683 case 16:
1684 {
1685 unsigned short *p1, *pf, *p, *pl;
1686 p1 = (unsigned short *) srcImage->data;
1687 pf = (unsigned short *) (srcImage->data + srcImage->height * srcImage->bytes_per_line);
1688 while (p1 < pf)
1689 {
1690 p = p1;
1691 pl = p1 + srcImage->width;
1692 for (; p < pl; p++)
1693 {
1694 *p = lookup_r[(*p & 0xf800)>>11] |
1695 lookup_g[(*p & 0x07e0)>> 5] |
1696 lookup_b[(*p & 0x001f)];
1697 }
1698 p1 = (unsigned short *) ((char *) p1 + srcImage->bytes_per_line);
1699 }
1700 break;
1701 }
1702 case 24:
1703 {
1704 unsigned char *p1, *pf, *p, *pl;
1705 p1 = (unsigned char *) srcImage->data;
1706 pf = (unsigned char *) (srcImage->data + srcImage->height * srcImage->bytes_per_line);
1707 while (p1 < pf)
1708 {
1709 p = p1;
1710 pl = p1 + srcImage->width * 3;
1711 for (; p < pl; p += 3)
1712 {
1713 p[0] = lookup_r[(p[0] & 0xff0000)>>16];
1714 p[1] = lookup_r[(p[1] & 0x00ff00)>> 8];
1715 p[2] = lookup_r[(p[2] & 0x0000ff)];
1716 }
1717 p1 = (unsigned char *) ((char *) p1 + srcImage->bytes_per_line);
1718 }
1719 break;
1720 }
1721 case 32:
1722 {
1723 RUINT32T *p1, *pf, *p, *pl;
1724 p1 = (RUINT32T *) srcImage->data;
1725 pf = (RUINT32T *) (srcImage->data + srcImage->height * srcImage->bytes_per_line);
1726
1727 while (p1 < pf)
1728 {
1729 p = p1;
1730 pl = p1 + srcImage->width;
1731 for (; p < pl; p++)
1732 {
1733 *p = lookup_r[(*p & 0xff0000)>>16] | 1600 *p = lookup_r[(*p & 0xff0000) >> 16] |
1734 lookup_g[(*p & 0x00ff00)>> 8] | 1601 lookup_g[(*p & 0x00ff00) >> 8] |
1735 lookup_b[(*p & 0x0000ff)] | 1602 lookup_b[(*p & 0x0000ff)] |
1736 (*p & ~0xffffff); 1603 (*p & 0xff000000);
1604 }
1605 p1 = (uint32_t *) ((char *) p1 + ximage->bytes_per_line);
1606 }
1607 }
1608 else
1609 {
1610 for (int y = 0; y < ximage->height; y++)
1611 for (int x = 0; x < ximage->width; x++)
1612 {
1613 unsigned long pixel = XGetPixel (ximage, x, y);
1614 pixel = lookup_r[(pixel & mask_r) >> sh_r] |
1615 lookup_g[(pixel & mask_g) >> sh_g] |
1616 lookup_b[(pixel & mask_b) >> sh_b];
1617 XPutPixel (ximage, x, y, pixel);
1737 } 1618 }
1738 p1 = (RUINT32T *) ((char *) p1 + srcImage->bytes_per_line);
1739 } 1619 }
1740 break;
1741 }
1742 }
1743 1620
1744 free (lookup); 1621 free (lookup);
1745} 1622}
1746#endif /* defined(ENABLE_TRANSPARENCY) && !defined(HAVE_AFTERIMAGE) */ 1623#endif /* defined(ENABLE_TRANSPARENCY) && !defined(HAVE_AFTERIMAGE) */

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