]> Dogcows Code - chaz/openbox/blob - render/image.c
use g_debug for debug messages
[chaz/openbox] / render / image.c
1 /* -*- indent-tabs-mode: nil; tab-width: 4; c-basic-offset: 4; -*-
2
3 image.c for the Openbox window manager
4 Copyright (c) 2006 Mikael Magnusson
5 Copyright (c) 2003-2007 Dana Jansens
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 See the COPYING file for a copy of the GNU General Public License.
18 */
19
20 #include "geom.h"
21 #include "image.h"
22 #include "color.h"
23 #include "imagecache.h"
24
25 #include <glib.h>
26
27 #define FRACTION 12
28 #define FLOOR(i) ((i) & (~0UL << FRACTION))
29 #define AVERAGE(a, b) (((((a) ^ (b)) & 0xfefefefeL) >> 1) + ((a) & (b)))
30
31 void RrImagePicInit(RrImagePic *pic, gint w, gint h, RrPixel32 *data)
32 {
33 gint i;
34
35 pic->width = w;
36 pic->height = h;
37 pic->data = data;
38 pic->sum = 0;
39 for (i = w*h; i > 0; --i)
40 pic->sum += *(data++);
41 }
42
43 static void RrImagePicFree(RrImagePic *pic)
44 {
45 if (pic) {
46 g_free(pic->data);
47 g_free(pic);
48 }
49 }
50
51 /*! Add a picture to an Image, that is, add another copy of the image at
52 another size. This may add it to the "originals" list or to the
53 "resized" list. */
54 static void AddPicture(RrImage *self, RrImagePic ***list, gint *len,
55 RrImagePic *pic)
56 {
57 gint i;
58
59 g_assert(pic->width > 0 && pic->height > 0);
60
61 g_assert(g_hash_table_lookup(self->cache->table, pic) == NULL);
62
63 /* grow the list */
64 *list = g_renew(RrImagePic*, *list, ++*len);
65
66 /* move everything else down one */
67 for (i = *len-1; i > 0; --i)
68 (*list)[i] = (*list)[i-1];
69
70 /* set the new picture up at the front of the list */
71 (*list)[0] = pic;
72
73 /* add the picture as a key to point to this image in the cache */
74 g_hash_table_insert(self->cache->table, (*list)[0], self);
75
76 #ifdef DEBUG
77 g_debug("Adding %s picture to the cache:\n "
78 "Image 0x%x, w %d h %d Hash %u",
79 (*list == self->original ? "ORIGINAL" : "RESIZED"),
80 (guint)self, pic->width, pic->height, RrImagePicHash(pic));
81 #endif
82 }
83
84 /*! Remove a picture from an Image. This may remove it from the "originals"
85 list or the "resized" list. */
86 static void RemovePicture(RrImage *self, RrImagePic ***list,
87 gint i, gint *len)
88 {
89 gint j;
90
91 #ifdef DEBUG
92 g_debug("Removing %s picture from the cache:\n "
93 "Image 0x%x, w %d h %d Hash %u",
94 (*list == self->original ? "ORIGINAL" : "RESIZED"),
95 (guint)self, (*list)[i]->width, (*list)[i]->height,
96 RrImagePicHash((*list)[i]));
97 #endif
98
99 /* remove the picture as a key in the cache */
100 g_hash_table_remove(self->cache->table, (*list)[i]);
101
102 /* free the picture */
103 RrImagePicFree((*list)[i]);
104 /* shift everything down one */
105 for (j = i; j < *len-1; ++j)
106 (*list)[j] = (*list)[j+1];
107 /* shrink the list */
108 *list = g_renew(RrImagePic*, *list, --*len);
109 }
110
111 /*! Given a picture in RGBA format, of a specified size, resize it to the new
112 requested size (but keep its aspect ratio). If the image does not need to
113 be resized (it is already the right size) then this returns NULL. Otherwise
114 it returns a newly allocated RrImagePic with the resized picture inside it
115 */
116 static RrImagePic* ResizeImage(RrPixel32 *src,
117 gulong srcW, gulong srcH,
118 gulong dstW, gulong dstH)
119 {
120 RrPixel32 *dst, *dststart;
121 RrImagePic *pic;
122 gulong dstX, dstY, srcX, srcY;
123 gulong srcX1, srcX2, srcY1, srcY2;
124 gulong ratioX, ratioY;
125 gulong aspectW, aspectH;
126
127 /* keep the aspect ratio */
128 aspectW = dstW;
129 aspectH = (gint)(dstW * ((gdouble)srcH / srcW));
130 if (aspectH > dstH) {
131 aspectH = dstH;
132 aspectW = (gint)(dstH * ((gdouble)srcW / srcH));
133 }
134 dstW = aspectW;
135 dstH = aspectH;
136
137 if (srcW == dstW && srcH == dstH)
138 return NULL; /* no scaling needed ! */
139
140 dststart = dst = g_new(RrPixel32, dstW * dstH);
141
142 ratioX = (srcW << FRACTION) / dstW;
143 ratioY = (srcH << FRACTION) / dstH;
144
145 srcY2 = 0;
146 for (dstY = 0; dstY < dstH; dstY++) {
147 srcY1 = srcY2;
148 srcY2 += ratioY;
149
150 srcX2 = 0;
151 for (dstX = 0; dstX < dstW; dstX++) {
152 gulong red = 0, green = 0, blue = 0, alpha = 0;
153 gulong portionX, portionY, portionXY, sumXY = 0;
154 RrPixel32 pixel;
155
156 srcX1 = srcX2;
157 srcX2 += ratioX;
158
159 for (srcY = srcY1; srcY < srcY2; srcY += (1UL << FRACTION)) {
160 if (srcY == srcY1) {
161 srcY = FLOOR(srcY);
162 portionY = (1UL << FRACTION) - (srcY1 - srcY);
163 if (portionY > srcY2 - srcY1)
164 portionY = srcY2 - srcY1;
165 }
166 else if (srcY == FLOOR(srcY2))
167 portionY = srcY2 - srcY;
168 else
169 portionY = (1UL << FRACTION);
170
171 for (srcX = srcX1; srcX < srcX2; srcX += (1UL << FRACTION)) {
172 if (srcX == srcX1) {
173 srcX = FLOOR(srcX);
174 portionX = (1UL << FRACTION) - (srcX1 - srcX);
175 if (portionX > srcX2 - srcX1)
176 portionX = srcX2 - srcX1;
177 }
178 else if (srcX == FLOOR(srcX2))
179 portionX = srcX2 - srcX;
180 else
181 portionX = (1UL << FRACTION);
182
183 portionXY = (portionX * portionY) >> FRACTION;
184 sumXY += portionXY;
185
186 pixel = *(src + (srcY >> FRACTION) * srcW
187 + (srcX >> FRACTION));
188 red += ((pixel >> RrDefaultRedOffset) & 0xFF)
189 * portionXY;
190 green += ((pixel >> RrDefaultGreenOffset) & 0xFF)
191 * portionXY;
192 blue += ((pixel >> RrDefaultBlueOffset) & 0xFF)
193 * portionXY;
194 alpha += ((pixel >> RrDefaultAlphaOffset) & 0xFF)
195 * portionXY;
196 }
197 }
198
199 g_assert(sumXY != 0);
200 red /= sumXY;
201 green /= sumXY;
202 blue /= sumXY;
203 alpha /= sumXY;
204
205 *dst++ = (red << RrDefaultRedOffset) |
206 (green << RrDefaultGreenOffset) |
207 (blue << RrDefaultBlueOffset) |
208 (alpha << RrDefaultAlphaOffset);
209 }
210 }
211
212 pic = g_new(RrImagePic, 1);
213 RrImagePicInit(pic, dstW, dstH, dststart);
214
215 return pic;
216 }
217
218 /*! This drawns an RGBA picture into the target, within the rectangle specified
219 by the area parameter. If the area's size differs from the source's then it
220 will be centered within the rectangle */
221 void DrawRGBA(RrPixel32 *target, gint target_w, gint target_h,
222 RrPixel32 *source, gint source_w, gint source_h,
223 gint alpha, RrRect *area)
224 {
225 RrPixel32 *dest;
226 gint col, num_pixels;
227 gint dw, dh;
228
229 g_assert(source_w <= area->width && source_h <= area->height);
230 g_assert(area->x + area->width <= target_w);
231 g_assert(area->y + area->height <= target_h);
232
233 /* keep the aspect ratio */
234 dw = area->width;
235 dh = (gint)(dw * ((gdouble)source_h / source_w));
236 if (dh > area->height) {
237 dh = area->height;
238 dw = (gint)(dh * ((gdouble)source_w / source_h));
239 }
240
241 /* copy source -> dest, and apply the alpha channel.
242 center the image if it is smaller than the area */
243 col = 0;
244 num_pixels = dw * dh;
245 dest = target + area->x + (area->width - dw) / 2 +
246 (target_w * (area->y + (area->height - dh) / 2));
247 while (num_pixels-- > 0) {
248 guchar a, r, g, b, bgr, bgg, bgb;
249
250 /* apply the rgba's opacity as well */
251 a = ((*source >> RrDefaultAlphaOffset) * alpha) >> 8;
252 r = *source >> RrDefaultRedOffset;
253 g = *source >> RrDefaultGreenOffset;
254 b = *source >> RrDefaultBlueOffset;
255
256 /* background color */
257 bgr = *dest >> RrDefaultRedOffset;
258 bgg = *dest >> RrDefaultGreenOffset;
259 bgb = *dest >> RrDefaultBlueOffset;
260
261 r = bgr + (((r - bgr) * a) >> 8);
262 g = bgg + (((g - bgg) * a) >> 8);
263 b = bgb + (((b - bgb) * a) >> 8);
264
265 *dest = ((r << RrDefaultRedOffset) |
266 (g << RrDefaultGreenOffset) |
267 (b << RrDefaultBlueOffset));
268
269 dest++;
270 source++;
271
272 if (++col >= dw) {
273 col = 0;
274 dest += target_w - dw;
275 }
276 }
277 }
278
279 /*! Draw an RGBA texture into a target pixel buffer. */
280 void RrImageDrawRGBA(RrPixel32 *target, RrTextureRGBA *rgba,
281 gint target_w, gint target_h,
282 RrRect *area)
283 {
284 RrImagePic *scaled;
285
286 scaled = ResizeImage(rgba->data, rgba->width, rgba->height,
287 area->width, area->height);
288
289 if (scaled) {
290 #ifdef DEBUG
291 g_warning("Scaling an RGBA! You should avoid this and just make "
292 "it the right size yourself!");
293 #endif
294 DrawRGBA(target, target_w, target_h,
295 scaled->data, scaled->width, scaled->height,
296 rgba->alpha, area);
297 }
298 else
299 DrawRGBA(target, target_w, target_h,
300 rgba->data, rgba->width, rgba->height,
301 rgba->alpha, area);
302 }
303
304 /*! Create a new RrImage, which is linked to an image cache */
305 RrImage* RrImageNew(RrImageCache *cache)
306 {
307 RrImage *self;
308
309 g_assert(cache != NULL);
310
311 self = g_new0(RrImage, 1);
312 self->ref = 1;
313 self->cache = cache;
314 return self;
315 }
316
317 void RrImageRef(RrImage *self)
318 {
319 ++self->ref;
320 }
321
322 void RrImageUnref(RrImage *self)
323 {
324 if (self && --self->ref == 0) {
325 #ifdef DEBUG
326 g_debug("Refcount to 0, removing ALL pictures from the cache:\n "
327 "Image 0x%x", (guint)self);
328 #endif
329 while (self->n_original > 0)
330 RemovePicture(self, &self->original, 0, &self->n_original);
331 while (self->n_resized > 0)
332 RemovePicture(self, &self->resized, 0, &self->n_resized);
333 g_free(self);
334 }
335 }
336
337 /*! Add a new picture with the given RGBA pixel data and dimensions into the
338 RrImage. This adds an "original" picture to the image.
339 */
340 void RrImageAddPicture(RrImage *self, RrPixel32 *data, gint w, gint h)
341 {
342 gint i;
343 RrImagePic *pic;
344
345 /* make sure we don't already have this size.. */
346 for (i = 0; i < self->n_original; ++i)
347 if (self->original[i]->width == w && self->original[i]->height == h) {
348 #ifdef DEBUG
349 g_debug("Found duplicate ORIGINAL image:\n "
350 "Image 0x%x, w %d h %d", (guint)self, w, h);
351 #endif
352 return;
353 }
354
355 /* remove any resized pictures of this same size */
356 for (i = 0; i < self->n_resized; ++i)
357 if (self->resized[i]->width == w || self->resized[i]->height == h) {
358 RemovePicture(self, &self->resized, i, &self->n_resized);
359 break;
360 }
361
362 /* add the new picture */
363 pic = g_new(RrImagePic, 1);
364 RrImagePicInit(pic, w, h, g_memdup(data, w*h*sizeof(RrPixel32)));
365 AddPicture(self, &self->original, &self->n_original, pic);
366 }
367
368 /*! Remove the picture from the RrImage which has the given dimensions. This
369 removes an "original" picture from the image.
370 */
371 void RrImageRemovePicture(RrImage *self, gint w, gint h)
372 {
373 gint i;
374
375 /* remove any resized pictures of this same size */
376 for (i = 0; i < self->n_original; ++i)
377 if (self->original[i]->width == w && self->original[i]->height == h) {
378 RemovePicture(self, &self->original, i, &self->n_original);
379 break;
380 }
381 }
382
383 /*! Draw an RrImage texture into a target pixel buffer. If the RrImage does
384 not contain a picture of the appropriate size, then one of its "original"
385 pictures will be resized and used (and stored in the RrImage as a "resized"
386 picture).
387 */
388 void RrImageDrawImage(RrPixel32 *target, RrTextureImage *img,
389 gint target_w, gint target_h,
390 RrRect *area)
391 {
392 gint i, min_diff, min_i, min_aspect_diff, min_aspect_i;
393 RrImage *self;
394 RrImagePic *pic;
395 gboolean free_pic;
396
397 self = img->image;
398 pic = NULL;
399 free_pic = FALSE;
400
401 /* is there an original of this size? (only w or h has to be right cuz
402 we maintain aspect ratios) */
403 for (i = 0; i < self->n_original; ++i)
404 if (self->original[i]->width == area->width ||
405 self->original[i]->height == area->height)
406 {
407 pic = self->original[i];
408 break;
409 }
410
411 /* is there a resize of this size? */
412 for (i = 0; i < self->n_resized; ++i)
413 if (self->resized[i]->width == area->width ||
414 self->resized[i]->height == area->height)
415 {
416 gint j;
417 RrImagePic *saved;
418
419 /* save the selected one */
420 saved = self->resized[i];
421
422 /* shift all the others down */
423 for (j = i; j > 0; --j)
424 self->resized[j] = self->resized[j-1];
425
426 /* and move the selected one to the top of the list */
427 self->resized[0] = saved;
428
429 pic = self->resized[0];
430 break;
431 }
432
433 if (!pic) {
434 gdouble aspect;
435
436 /* find an original with a close size */
437 min_diff = min_aspect_diff = -1;
438 min_i = min_aspect_i = 0;
439 aspect = ((gdouble)area->width) / area->height;
440 for (i = 0; i < self->n_original; ++i) {
441 gint diff;
442 gint wdiff, hdiff;
443 gdouble myasp;
444
445 /* our size difference metric.. */
446 wdiff = self->original[i]->width - area->width;
447 hdiff = self->original[i]->height - area->height;
448 diff = (wdiff * wdiff) + (hdiff * hdiff);
449
450 /* find the smallest difference */
451 if (min_diff < 0 || diff < min_diff) {
452 min_diff = diff;
453 min_i = i;
454 }
455 /* and also find the smallest difference with the same aspect
456 ratio (and prefer this one) */
457 myasp = ((gdouble)self->original[i]->width) /
458 self->original[i]->height;
459 if (ABS(aspect - myasp) < 0.0000001 &&
460 (min_aspect_diff < 0 || diff < min_aspect_diff))
461 {
462 min_aspect_diff = diff;
463 min_aspect_i = i;
464 }
465 }
466
467 /* use the aspect ratio correct source if there is one */
468 if (min_aspect_i >= 0)
469 min_i = min_aspect_i;
470
471 /* resize the original to the given area */
472 pic = ResizeImage(self->original[min_i]->data,
473 self->original[min_i]->width,
474 self->original[min_i]->height,
475 area->width, area->height);
476
477 /* add the resized image to the image, as the first in the resized
478 list */
479 if (self->n_resized >= self->cache->max_resized_saved)
480 /* remove the last one (last used one) */
481 RemovePicture(self, &self->resized, self->n_resized - 1,
482 &self->n_resized);
483 if (self->cache->max_resized_saved)
484 /* add it to the top of the resized list */
485 AddPicture(self, &self->resized, &self->n_resized, pic);
486 else
487 free_pic = TRUE; /* don't leak mem! */
488 }
489
490 g_assert(pic != NULL);
491
492 DrawRGBA(target, target_w, target_h,
493 pic->data, pic->width, pic->height,
494 img->alpha, area);
495 if (free_pic)
496 RrImagePicFree(pic);
497 }
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