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1 /* Functions for image support on window system.
2 Copyright (C) 1989, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000,
3 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008
4 Free Software Foundation, Inc.
5
6 This file is part of GNU Emacs.
7
8 GNU Emacs is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3, or (at your option)
11 any later version.
12
13 GNU Emacs is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with GNU Emacs; see the file COPYING. If not, write to
20 the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
21 Boston, MA 02110-1301, USA. */
22
23 #include <config.h>
24 #include <stdio.h>
25 #include <math.h>
26 #include <ctype.h>
27
28 #ifdef HAVE_UNISTD_H
29 #include <unistd.h>
30 #endif
31
32 /* This makes the fields of a Display accessible, in Xlib header files. */
33
34 #define XLIB_ILLEGAL_ACCESS
35
36 #include "lisp.h"
37 #include "frame.h"
38 #include "window.h"
39 #include "dispextern.h"
40 #include "blockinput.h"
41 #include "systime.h"
42 #include <epaths.h>
43 #include "charset.h"
44 #include "coding.h"
45 #include "termhooks.h"
46
47 #ifdef HAVE_X_WINDOWS
48 #include "xterm.h"
49 #include <sys/types.h>
50 #include <sys/stat.h>
51
52 #define COLOR_TABLE_SUPPORT 1
53
54 typedef struct x_bitmap_record Bitmap_Record;
55 #define GET_PIXEL(ximg, x, y) XGetPixel(ximg, x, y)
56 #define NO_PIXMAP None
57
58 #define RGB_PIXEL_COLOR unsigned long
59
60 #define PIX_MASK_RETAIN 0
61 #define PIX_MASK_DRAW 1
62 #endif /* HAVE_X_WINDOWS */
63
64
65 #ifdef HAVE_NTGUI
66 #include "w32term.h"
67
68 /* W32_TODO : Color tables on W32. */
69 #undef COLOR_TABLE_SUPPORT
70
71 typedef struct w32_bitmap_record Bitmap_Record;
72 #define GET_PIXEL(ximg, x, y) GetPixel(ximg, x, y)
73 #define NO_PIXMAP 0
74
75 #define RGB_PIXEL_COLOR COLORREF
76
77 #define PIX_MASK_RETAIN 0
78 #define PIX_MASK_DRAW 1
79
80 #define FRAME_X_VISUAL(f) FRAME_X_DISPLAY_INFO (f)->visual
81 #define x_defined_color w32_defined_color
82 #define DefaultDepthOfScreen(screen) (one_w32_display_info.n_cbits)
83 #endif /* HAVE_NTGUI */
84
85
86 #ifdef MAC_OS
87 #include "macterm.h"
88 #include <sys/stat.h>
89 #ifndef MAC_OSX
90 #include <alloca.h>
91 #include <sys/param.h>
92 #endif
93 #if TARGET_API_MAC_CARBON
94 #ifdef MAC_OSX
95 #include <QuickTime/QuickTime.h>
96 #else /* not MAC_OSX */
97 #include <QuickTime.h>
98 #endif /* not MAC_OSX */
99 #else /* not TARGET_API_MAC_CARBON */
100 #include <Windows.h>
101 #include <Gestalt.h>
102 #include <TextUtils.h>
103 #include <ImageCompression.h>
104 #include <QuickTimeComponents.h>
105 #endif /* not TARGET_API_MAC_CARBON */
106
107 /* MAC_TODO : Color tables on Mac. */
108 #undef COLOR_TABLE_SUPPORT
109
110 #define ZPixmap 0 /* arbitrary */
111 typedef struct mac_bitmap_record Bitmap_Record;
112
113 #define GET_PIXEL(ximg, x, y) XGetPixel(ximg, x, y)
114 #define NO_PIXMAP 0
115
116 #define RGB_PIXEL_COLOR unsigned long
117
118 /* A black pixel in a mask bitmap/pixmap means ``draw a source
119 pixel''. A white pixel means ``retain the current pixel''. */
120 #define PIX_MASK_DRAW RGB_TO_ULONG(0,0,0)
121 #define PIX_MASK_RETAIN RGB_TO_ULONG(255,255,255)
122
123 #define FRAME_X_VISUAL(f) FRAME_X_DISPLAY_INFO (f)->visual
124 #define x_defined_color mac_defined_color
125 #define DefaultDepthOfScreen(screen) (one_mac_display_info.n_planes)
126
127 #endif /* MAC_OS */
128
129
130 /* Search path for bitmap files. */
131
132 Lisp_Object Vx_bitmap_file_path;
133
134
135 static void x_disable_image P_ ((struct frame *, struct image *));
136 static void x_edge_detection P_ ((struct frame *, struct image *, Lisp_Object,
137 Lisp_Object));
138
139 static void init_color_table P_ ((void));
140 static unsigned long lookup_rgb_color P_ ((struct frame *f, int r, int g, int b));
141 #ifdef COLOR_TABLE_SUPPORT
142 static void free_color_table P_ ((void));
143 static unsigned long *colors_in_color_table P_ ((int *n));
144 static unsigned long lookup_pixel_color P_ ((struct frame *f, unsigned long p));
145 #endif
146
147 /* Code to deal with bitmaps. Bitmaps are referenced by their bitmap
148 id, which is just an int that this section returns. Bitmaps are
149 reference counted so they can be shared among frames.
150
151 Bitmap indices are guaranteed to be > 0, so a negative number can
152 be used to indicate no bitmap.
153
154 If you use x_create_bitmap_from_data, then you must keep track of
155 the bitmaps yourself. That is, creating a bitmap from the same
156 data more than once will not be caught. */
157
158 #ifdef MAC_OS
159
160 static XImagePtr
161 XGetImage (display, pixmap, x, y, width, height, plane_mask, format)
162 Display *display; /* not used */
163 Pixmap pixmap;
164 int x, y; /* not used */
165 unsigned int width, height; /* not used */
166 unsigned long plane_mask; /* not used */
167 int format; /* not used */
168 {
169 #if GLYPH_DEBUG
170 xassert (x == 0 && y == 0);
171 {
172 Rect ri, rp;
173 SetRect (&ri, 0, 0, width, height);
174 xassert (EqualRect (&ri, GetPixBounds (GetGWorldPixMap (pixmap), &rp)));
175 }
176 xassert (! (pixelsLocked & GetPixelsState (GetGWorldPixMap (pixmap))));
177 #endif
178
179 LockPixels (GetGWorldPixMap (pixmap));
180
181 return pixmap;
182 }
183
184 static void
185 XPutPixel (ximage, x, y, pixel)
186 XImagePtr ximage;
187 int x, y;
188 unsigned long pixel;
189 {
190 PixMapHandle pixmap = GetGWorldPixMap (ximage);
191 short depth = GetPixDepth (pixmap);
192
193 #if defined (WORDS_BIG_ENDIAN) || !USE_CG_DRAWING
194 if (depth == 32)
195 {
196 char *base_addr = GetPixBaseAddr (pixmap);
197 short row_bytes = GetPixRowBytes (pixmap);
198
199 ((unsigned long *) (base_addr + y * row_bytes))[x] = 0xff000000 | pixel;
200 }
201 else
202 #endif
203 if (depth == 1)
204 {
205 char *base_addr = GetPixBaseAddr (pixmap);
206 short row_bytes = GetPixRowBytes (pixmap);
207
208 if (pixel == PIX_MASK_DRAW)
209 base_addr[y * row_bytes + x / 8] |= (1 << 7) >> (x & 7);
210 else
211 base_addr[y * row_bytes + x / 8] &= ~((1 << 7) >> (x & 7));
212 }
213 else
214 {
215 CGrafPtr old_port;
216 GDHandle old_gdh;
217 RGBColor color;
218
219 GetGWorld (&old_port, &old_gdh);
220 SetGWorld (ximage, NULL);
221
222 color.red = RED16_FROM_ULONG (pixel);
223 color.green = GREEN16_FROM_ULONG (pixel);
224 color.blue = BLUE16_FROM_ULONG (pixel);
225
226 SetCPixel (x, y, &color);
227
228 SetGWorld (old_port, old_gdh);
229 }
230 }
231
232 static unsigned long
233 XGetPixel (ximage, x, y)
234 XImagePtr ximage;
235 int x, y;
236 {
237 PixMapHandle pixmap = GetGWorldPixMap (ximage);
238 short depth = GetPixDepth (pixmap);
239
240 #if defined (WORDS_BIG_ENDIAN) || !USE_CG_DRAWING
241 if (depth == 32)
242 {
243 char *base_addr = GetPixBaseAddr (pixmap);
244 short row_bytes = GetPixRowBytes (pixmap);
245
246 return ((unsigned long *) (base_addr + y * row_bytes))[x] & 0x00ffffff;
247 }
248 else
249 #endif
250 if (depth == 1)
251 {
252 char *base_addr = GetPixBaseAddr (pixmap);
253 short row_bytes = GetPixRowBytes (pixmap);
254
255 if (base_addr[y * row_bytes + x / 8] & (1 << (~x & 7)))
256 return PIX_MASK_DRAW;
257 else
258 return PIX_MASK_RETAIN;
259 }
260 else
261 {
262 CGrafPtr old_port;
263 GDHandle old_gdh;
264 RGBColor color;
265
266 GetGWorld (&old_port, &old_gdh);
267 SetGWorld (ximage, NULL);
268
269 GetCPixel (x, y, &color);
270
271 SetGWorld (old_port, old_gdh);
272 return RGB_TO_ULONG (color.red >> 8, color.green >> 8, color.blue >> 8);
273 }
274 }
275
276 static void
277 XDestroyImage (ximg)
278 XImagePtr ximg;
279 {
280 UnlockPixels (GetGWorldPixMap (ximg));
281 }
282
283 #if USE_CG_DRAWING
284 static CGImageRef
285 mac_create_cg_image_from_image (f, img)
286 struct frame *f;
287 struct image *img;
288 {
289 Pixmap mask;
290 CGImageRef result = NULL;
291
292 BLOCK_INPUT;
293 if (img->mask)
294 mask = img->mask;
295 else
296 {
297 mask = XCreatePixmap (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
298 img->width, img->height, 1);
299 if (mask)
300 {
301 CGrafPtr old_port;
302 GDHandle old_gdh;
303 Rect r;
304
305 GetGWorld (&old_port, &old_gdh);
306 SetGWorld (mask, NULL);
307 BackColor (blackColor); /* Don't mask. */
308 SetRect (&r, 0, 0, img->width, img->height);
309 EraseRect (&r);
310 SetGWorld (old_port, old_gdh);
311 }
312 }
313 if (mask)
314 {
315 CreateCGImageFromPixMaps (GetGWorldPixMap (img->pixmap),
316 GetGWorldPixMap (mask), &result);
317 if (mask != img->mask)
318 XFreePixmap (FRAME_X_DISPLAY (f), mask);
319 }
320 UNBLOCK_INPUT;
321
322 return result;
323 }
324 #endif /* USE_CG_DRAWING */
325 #endif /* MAC_OS */
326
327
328 /* Functions to access the contents of a bitmap, given an id. */
329
330 int
331 x_bitmap_height (f, id)
332 FRAME_PTR f;
333 int id;
334 {
335 return FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].height;
336 }
337
338 int
339 x_bitmap_width (f, id)
340 FRAME_PTR f;
341 int id;
342 {
343 return FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].width;
344 }
345
346 #if defined (HAVE_X_WINDOWS) || defined (HAVE_NTGUI)
347 int
348 x_bitmap_pixmap (f, id)
349 FRAME_PTR f;
350 int id;
351 {
352 return (int) FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].pixmap;
353 }
354 #endif
355
356 #ifdef HAVE_X_WINDOWS
357 int
358 x_bitmap_mask (f, id)
359 FRAME_PTR f;
360 int id;
361 {
362 return FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].mask;
363 }
364 #endif
365
366 /* Allocate a new bitmap record. Returns index of new record. */
367
368 static int
369 x_allocate_bitmap_record (f)
370 FRAME_PTR f;
371 {
372 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
373 int i;
374
375 if (dpyinfo->bitmaps == NULL)
376 {
377 dpyinfo->bitmaps_size = 10;
378 dpyinfo->bitmaps
379 = (Bitmap_Record *) xmalloc (dpyinfo->bitmaps_size * sizeof (Bitmap_Record));
380 dpyinfo->bitmaps_last = 1;
381 return 1;
382 }
383
384 if (dpyinfo->bitmaps_last < dpyinfo->bitmaps_size)
385 return ++dpyinfo->bitmaps_last;
386
387 for (i = 0; i < dpyinfo->bitmaps_size; ++i)
388 if (dpyinfo->bitmaps[i].refcount == 0)
389 return i + 1;
390
391 dpyinfo->bitmaps_size *= 2;
392 dpyinfo->bitmaps
393 = (Bitmap_Record *) xrealloc (dpyinfo->bitmaps,
394 dpyinfo->bitmaps_size * sizeof (Bitmap_Record));
395 return ++dpyinfo->bitmaps_last;
396 }
397
398 /* Add one reference to the reference count of the bitmap with id ID. */
399
400 void
401 x_reference_bitmap (f, id)
402 FRAME_PTR f;
403 int id;
404 {
405 ++FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].refcount;
406 }
407
408 /* Create a bitmap for frame F from a HEIGHT x WIDTH array of bits at BITS. */
409
410 int
411 x_create_bitmap_from_data (f, bits, width, height)
412 struct frame *f;
413 char *bits;
414 unsigned int width, height;
415 {
416 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
417 int id;
418
419 #ifdef HAVE_X_WINDOWS
420 Pixmap bitmap;
421 bitmap = XCreateBitmapFromData (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
422 bits, width, height);
423 if (! bitmap)
424 return -1;
425 #endif /* HAVE_X_WINDOWS */
426
427 #ifdef HAVE_NTGUI
428 Pixmap bitmap;
429 bitmap = CreateBitmap (width, height,
430 FRAME_X_DISPLAY_INFO (XFRAME (frame))->n_planes,
431 FRAME_X_DISPLAY_INFO (XFRAME (frame))->n_cbits,
432 bits);
433 if (! bitmap)
434 return -1;
435 #endif /* HAVE_NTGUI */
436
437 #ifdef MAC_OS
438 /* MAC_TODO: for now fail if width is not mod 16 (toolbox requires it) */
439 if (width % 16 != 0)
440 return -1;
441 #endif
442
443 id = x_allocate_bitmap_record (f);
444 #ifdef MAC_OS
445 dpyinfo->bitmaps[id - 1].bitmap_data = (char *) xmalloc (height * width);
446 bcopy (bits, dpyinfo->bitmaps[id - 1].bitmap_data, height * width);
447 #endif /* MAC_OS */
448
449 dpyinfo->bitmaps[id - 1].file = NULL;
450 dpyinfo->bitmaps[id - 1].height = height;
451 dpyinfo->bitmaps[id - 1].width = width;
452 dpyinfo->bitmaps[id - 1].refcount = 1;
453
454 #ifdef HAVE_X_WINDOWS
455 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
456 dpyinfo->bitmaps[id - 1].have_mask = 0;
457 dpyinfo->bitmaps[id - 1].depth = 1;
458 #endif /* HAVE_X_WINDOWS */
459
460 #ifdef HAVE_NTGUI
461 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
462 dpyinfo->bitmaps[id - 1].hinst = NULL;
463 dpyinfo->bitmaps[id - 1].depth = 1;
464 #endif /* HAVE_NTGUI */
465
466 return id;
467 }
468
469 /* Create bitmap from file FILE for frame F. */
470
471 int
472 x_create_bitmap_from_file (f, file)
473 struct frame *f;
474 Lisp_Object file;
475 {
476 #ifdef MAC_OS
477 return -1; /* MAC_TODO : bitmap support */
478 #endif /* MAC_OS */
479
480 #ifdef HAVE_NTGUI
481 return -1; /* W32_TODO : bitmap support */
482 #endif /* HAVE_NTGUI */
483
484 #ifdef HAVE_X_WINDOWS
485 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
486 unsigned int width, height;
487 Pixmap bitmap;
488 int xhot, yhot, result, id;
489 Lisp_Object found;
490 int fd;
491 char *filename;
492
493 /* Look for an existing bitmap with the same name. */
494 for (id = 0; id < dpyinfo->bitmaps_last; ++id)
495 {
496 if (dpyinfo->bitmaps[id].refcount
497 && dpyinfo->bitmaps[id].file
498 && !strcmp (dpyinfo->bitmaps[id].file, (char *) SDATA (file)))
499 {
500 ++dpyinfo->bitmaps[id].refcount;
501 return id + 1;
502 }
503 }
504
505 /* Search bitmap-file-path for the file, if appropriate. */
506 fd = openp (Vx_bitmap_file_path, file, Qnil, &found, Qnil);
507 if (fd < 0)
508 return -1;
509 emacs_close (fd);
510
511 filename = (char *) SDATA (found);
512
513 result = XReadBitmapFile (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
514 filename, &width, &height, &bitmap, &xhot, &yhot);
515 if (result != BitmapSuccess)
516 return -1;
517
518 id = x_allocate_bitmap_record (f);
519 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
520 dpyinfo->bitmaps[id - 1].have_mask = 0;
521 dpyinfo->bitmaps[id - 1].refcount = 1;
522 dpyinfo->bitmaps[id - 1].file = (char *) xmalloc (SBYTES (file) + 1);
523 dpyinfo->bitmaps[id - 1].depth = 1;
524 dpyinfo->bitmaps[id - 1].height = height;
525 dpyinfo->bitmaps[id - 1].width = width;
526 strcpy (dpyinfo->bitmaps[id - 1].file, SDATA (file));
527
528 return id;
529 #endif /* HAVE_X_WINDOWS */
530 }
531
532 /* Free bitmap B. */
533
534 static void
535 free_bitmap_record (dpyinfo, bm)
536 Display_Info *dpyinfo;
537 Bitmap_Record *bm;
538 {
539 #ifdef HAVE_X_WINDOWS
540 XFreePixmap (dpyinfo->display, bm->pixmap);
541 if (bm->have_mask)
542 XFreePixmap (dpyinfo->display, bm->mask);
543 #endif /* HAVE_X_WINDOWS */
544
545 #ifdef HAVE_NTGUI
546 DeleteObject (bm->pixmap);
547 #endif /* HAVE_NTGUI */
548
549 #ifdef MAC_OS
550 xfree (bm->bitmap_data); /* Added ++kfs */
551 bm->bitmap_data = NULL;
552 #endif /* MAC_OS */
553
554 if (bm->file)
555 {
556 xfree (bm->file);
557 bm->file = NULL;
558 }
559 }
560
561 /* Remove reference to bitmap with id number ID. */
562
563 void
564 x_destroy_bitmap (f, id)
565 FRAME_PTR f;
566 int id;
567 {
568 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
569
570 if (id > 0)
571 {
572 Bitmap_Record *bm = &dpyinfo->bitmaps[id - 1];
573
574 if (--bm->refcount == 0)
575 {
576 BLOCK_INPUT;
577 free_bitmap_record (dpyinfo, bm);
578 UNBLOCK_INPUT;
579 }
580 }
581 }
582
583 /* Free all the bitmaps for the display specified by DPYINFO. */
584
585 void
586 x_destroy_all_bitmaps (dpyinfo)
587 Display_Info *dpyinfo;
588 {
589 int i;
590 Bitmap_Record *bm = dpyinfo->bitmaps;
591
592 for (i = 0; i < dpyinfo->bitmaps_last; i++, bm++)
593 if (bm->refcount > 0)
594 free_bitmap_record (dpyinfo, bm);
595
596 dpyinfo->bitmaps_last = 0;
597 }
598
599
600 #ifdef HAVE_X_WINDOWS
601
602 /* Useful functions defined in the section
603 `Image type independent image structures' below. */
604
605 static unsigned long four_corners_best P_ ((XImagePtr ximg,
606 int *corners,
607 unsigned long width,
608 unsigned long height));
609
610 static int x_create_x_image_and_pixmap P_ ((struct frame *f, int width, int height,
611 int depth, XImagePtr *ximg,
612 Pixmap *pixmap));
613
614 static void x_destroy_x_image P_ ((XImagePtr ximg));
615
616
617 /* Create a mask of a bitmap. Note is this not a perfect mask.
618 It's nicer with some borders in this context */
619
620 int
621 x_create_bitmap_mask (f, id)
622 struct frame *f;
623 int id;
624 {
625 Pixmap pixmap, mask;
626 XImagePtr ximg, mask_img;
627 unsigned long width, height;
628 int result;
629 unsigned long bg;
630 unsigned long x, y, xp, xm, yp, ym;
631 GC gc;
632
633 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
634
635 if (!(id > 0))
636 return -1;
637
638 pixmap = x_bitmap_pixmap (f, id);
639 width = x_bitmap_width (f, id);
640 height = x_bitmap_height (f, id);
641
642 BLOCK_INPUT;
643 ximg = XGetImage (FRAME_X_DISPLAY (f), pixmap, 0, 0, width, height,
644 ~0, ZPixmap);
645
646 if (!ximg)
647 {
648 UNBLOCK_INPUT;
649 return -1;
650 }
651
652 result = x_create_x_image_and_pixmap (f, width, height, 1, &mask_img, &mask);
653
654 UNBLOCK_INPUT;
655 if (!result)
656 {
657 XDestroyImage (ximg);
658 return -1;
659 }
660
661 bg = four_corners_best (ximg, NULL, width, height);
662
663 for (y = 0; y < ximg->height; ++y)
664 {
665 for (x = 0; x < ximg->width; ++x)
666 {
667 xp = x != ximg->width - 1 ? x + 1 : 0;
668 xm = x != 0 ? x - 1 : ximg->width - 1;
669 yp = y != ximg->height - 1 ? y + 1 : 0;
670 ym = y != 0 ? y - 1 : ximg->height - 1;
671 if (XGetPixel (ximg, x, y) == bg
672 && XGetPixel (ximg, x, yp) == bg
673 && XGetPixel (ximg, x, ym) == bg
674 && XGetPixel (ximg, xp, y) == bg
675 && XGetPixel (ximg, xp, yp) == bg
676 && XGetPixel (ximg, xp, ym) == bg
677 && XGetPixel (ximg, xm, y) == bg
678 && XGetPixel (ximg, xm, yp) == bg
679 && XGetPixel (ximg, xm, ym) == bg)
680 XPutPixel (mask_img, x, y, 0);
681 else
682 XPutPixel (mask_img, x, y, 1);
683 }
684 }
685
686 xassert (interrupt_input_blocked);
687 gc = XCreateGC (FRAME_X_DISPLAY (f), mask, 0, NULL);
688 XPutImage (FRAME_X_DISPLAY (f), mask, gc, mask_img, 0, 0, 0, 0,
689 width, height);
690 XFreeGC (FRAME_X_DISPLAY (f), gc);
691
692 dpyinfo->bitmaps[id - 1].have_mask = 1;
693 dpyinfo->bitmaps[id - 1].mask = mask;
694
695 XDestroyImage (ximg);
696 x_destroy_x_image (mask_img);
697
698 return 0;
699 }
700
701 #endif /* HAVE_X_WINDOWS */
702
703
704 /***********************************************************************
705 Image types
706 ***********************************************************************/
707
708 /* Value is the number of elements of vector VECTOR. */
709
710 #define DIM(VECTOR) (sizeof (VECTOR) / sizeof *(VECTOR))
711
712 /* List of supported image types. Use define_image_type to add new
713 types. Use lookup_image_type to find a type for a given symbol. */
714
715 static struct image_type *image_types;
716
717 /* A list of symbols, one for each supported image type. */
718
719 Lisp_Object Vimage_types;
720
721 /* An alist of image types and libraries that implement the type. */
722
723 Lisp_Object Vimage_library_alist;
724
725 /* Cache for delayed-loading image types. */
726
727 static Lisp_Object Vimage_type_cache;
728
729 /* The symbol `xbm' which is used as the type symbol for XBM images. */
730
731 Lisp_Object Qxbm;
732
733 /* Keywords. */
734
735 extern Lisp_Object QCwidth, QCheight, QCforeground, QCbackground, QCfile;
736 extern Lisp_Object QCdata, QCtype;
737 extern Lisp_Object Qcenter;
738 Lisp_Object QCascent, QCmargin, QCrelief, Qcount;
739 Lisp_Object QCconversion, QCcolor_symbols, QCheuristic_mask;
740 Lisp_Object QCindex, QCmatrix, QCcolor_adjustment, QCmask;
741
742 /* Other symbols. */
743
744 Lisp_Object Qlaplace, Qemboss, Qedge_detection, Qheuristic;
745
746 /* Time in seconds after which images should be removed from the cache
747 if not displayed. */
748
749 Lisp_Object Vimage_cache_eviction_delay;
750
751 /* Function prototypes. */
752
753 static Lisp_Object define_image_type P_ ((struct image_type *type, int loaded));
754 static struct image_type *lookup_image_type P_ ((Lisp_Object symbol));
755 static void image_error P_ ((char *format, Lisp_Object, Lisp_Object));
756 static void x_laplace P_ ((struct frame *, struct image *));
757 static void x_emboss P_ ((struct frame *, struct image *));
758 static int x_build_heuristic_mask P_ ((struct frame *, struct image *,
759 Lisp_Object));
760
761 #define CACHE_IMAGE_TYPE(type, status) \
762 do { Vimage_type_cache = Fcons (Fcons (type, status), Vimage_type_cache); } while (0)
763
764 #define ADD_IMAGE_TYPE(type) \
765 do { Vimage_types = Fcons (type, Vimage_types); } while (0)
766
767 /* Define a new image type from TYPE. This adds a copy of TYPE to
768 image_types and caches the loading status of TYPE. */
769
770 static Lisp_Object
771 define_image_type (type, loaded)
772 struct image_type *type;
773 int loaded;
774 {
775 Lisp_Object success;
776
777 if (!loaded)
778 success = Qnil;
779 else
780 {
781 /* Make a copy of TYPE to avoid a bus error in a dumped Emacs.
782 The initialized data segment is read-only. */
783 struct image_type *p = (struct image_type *) xmalloc (sizeof *p);
784 bcopy (type, p, sizeof *p);
785 p->next = image_types;
786 image_types = p;
787 success = Qt;
788 }
789
790 CACHE_IMAGE_TYPE (*type->type, success);
791 return success;
792 }
793
794
795 /* Look up image type SYMBOL, and return a pointer to its image_type
796 structure. Value is null if SYMBOL is not a known image type. */
797
798 static INLINE struct image_type *
799 lookup_image_type (symbol)
800 Lisp_Object symbol;
801 {
802 struct image_type *type;
803
804 /* We must initialize the image-type if it hasn't been already. */
805 if (NILP (Finit_image_library (symbol, Vimage_library_alist)))
806 return 0; /* unimplemented */
807
808 for (type = image_types; type; type = type->next)
809 if (EQ (symbol, *type->type))
810 break;
811
812 return type;
813 }
814
815
816 /* Value is non-zero if OBJECT is a valid Lisp image specification. A
817 valid image specification is a list whose car is the symbol
818 `image', and whose rest is a property list. The property list must
819 contain a value for key `:type'. That value must be the name of a
820 supported image type. The rest of the property list depends on the
821 image type. */
822
823 int
824 valid_image_p (object)
825 Lisp_Object object;
826 {
827 int valid_p = 0;
828
829 if (IMAGEP (object))
830 {
831 Lisp_Object tem;
832
833 for (tem = XCDR (object); CONSP (tem); tem = XCDR (tem))
834 if (EQ (XCAR (tem), QCtype))
835 {
836 tem = XCDR (tem);
837 if (CONSP (tem) && SYMBOLP (XCAR (tem)))
838 {
839 struct image_type *type;
840 type = lookup_image_type (XCAR (tem));
841 if (type)
842 valid_p = type->valid_p (object);
843 }
844
845 break;
846 }
847 }
848
849 return valid_p;
850 }
851
852
853 /* Log error message with format string FORMAT and argument ARG.
854 Signaling an error, e.g. when an image cannot be loaded, is not a
855 good idea because this would interrupt redisplay, and the error
856 message display would lead to another redisplay. This function
857 therefore simply displays a message. */
858
859 static void
860 image_error (format, arg1, arg2)
861 char *format;
862 Lisp_Object arg1, arg2;
863 {
864 add_to_log (format, arg1, arg2);
865 }
866
867
868 \f
869 /***********************************************************************
870 Image specifications
871 ***********************************************************************/
872
873 enum image_value_type
874 {
875 IMAGE_DONT_CHECK_VALUE_TYPE,
876 IMAGE_STRING_VALUE,
877 IMAGE_STRING_OR_NIL_VALUE,
878 IMAGE_SYMBOL_VALUE,
879 IMAGE_POSITIVE_INTEGER_VALUE,
880 IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR,
881 IMAGE_NON_NEGATIVE_INTEGER_VALUE,
882 IMAGE_ASCENT_VALUE,
883 IMAGE_INTEGER_VALUE,
884 IMAGE_FUNCTION_VALUE,
885 IMAGE_NUMBER_VALUE,
886 IMAGE_BOOL_VALUE
887 };
888
889 /* Structure used when parsing image specifications. */
890
891 struct image_keyword
892 {
893 /* Name of keyword. */
894 char *name;
895
896 /* The type of value allowed. */
897 enum image_value_type type;
898
899 /* Non-zero means key must be present. */
900 int mandatory_p;
901
902 /* Used to recognize duplicate keywords in a property list. */
903 int count;
904
905 /* The value that was found. */
906 Lisp_Object value;
907 };
908
909
910 static int parse_image_spec P_ ((Lisp_Object, struct image_keyword *,
911 int, Lisp_Object));
912 static Lisp_Object image_spec_value P_ ((Lisp_Object, Lisp_Object, int *));
913
914
915 /* Parse image spec SPEC according to KEYWORDS. A valid image spec
916 has the format (image KEYWORD VALUE ...). One of the keyword/
917 value pairs must be `:type TYPE'. KEYWORDS is a vector of
918 image_keywords structures of size NKEYWORDS describing other
919 allowed keyword/value pairs. Value is non-zero if SPEC is valid. */
920
921 static int
922 parse_image_spec (spec, keywords, nkeywords, type)
923 Lisp_Object spec;
924 struct image_keyword *keywords;
925 int nkeywords;
926 Lisp_Object type;
927 {
928 int i;
929 Lisp_Object plist;
930
931 if (!IMAGEP (spec))
932 return 0;
933
934 plist = XCDR (spec);
935 while (CONSP (plist))
936 {
937 Lisp_Object key, value;
938
939 /* First element of a pair must be a symbol. */
940 key = XCAR (plist);
941 plist = XCDR (plist);
942 if (!SYMBOLP (key))
943 return 0;
944
945 /* There must follow a value. */
946 if (!CONSP (plist))
947 return 0;
948 value = XCAR (plist);
949 plist = XCDR (plist);
950
951 /* Find key in KEYWORDS. Error if not found. */
952 for (i = 0; i < nkeywords; ++i)
953 if (strcmp (keywords[i].name, SDATA (SYMBOL_NAME (key))) == 0)
954 break;
955
956 if (i == nkeywords)
957 continue;
958
959 /* Record that we recognized the keyword. If a keywords
960 was found more than once, it's an error. */
961 keywords[i].value = value;
962 ++keywords[i].count;
963
964 if (keywords[i].count > 1)
965 return 0;
966
967 /* Check type of value against allowed type. */
968 switch (keywords[i].type)
969 {
970 case IMAGE_STRING_VALUE:
971 if (!STRINGP (value))
972 return 0;
973 break;
974
975 case IMAGE_STRING_OR_NIL_VALUE:
976 if (!STRINGP (value) && !NILP (value))
977 return 0;
978 break;
979
980 case IMAGE_SYMBOL_VALUE:
981 if (!SYMBOLP (value))
982 return 0;
983 break;
984
985 case IMAGE_POSITIVE_INTEGER_VALUE:
986 if (!INTEGERP (value) || XINT (value) <= 0)
987 return 0;
988 break;
989
990 case IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR:
991 if (INTEGERP (value) && XINT (value) >= 0)
992 break;
993 if (CONSP (value)
994 && INTEGERP (XCAR (value)) && INTEGERP (XCDR (value))
995 && XINT (XCAR (value)) >= 0 && XINT (XCDR (value)) >= 0)
996 break;
997 return 0;
998
999 case IMAGE_ASCENT_VALUE:
1000 if (SYMBOLP (value) && EQ (value, Qcenter))
1001 break;
1002 else if (INTEGERP (value)
1003 && XINT (value) >= 0
1004 && XINT (value) <= 100)
1005 break;
1006 return 0;
1007
1008 case IMAGE_NON_NEGATIVE_INTEGER_VALUE:
1009 if (!INTEGERP (value) || XINT (value) < 0)
1010 return 0;
1011 break;
1012
1013 case IMAGE_DONT_CHECK_VALUE_TYPE:
1014 break;
1015
1016 case IMAGE_FUNCTION_VALUE:
1017 value = indirect_function (value);
1018 if (SUBRP (value)
1019 || COMPILEDP (value)
1020 || (CONSP (value) && EQ (XCAR (value), Qlambda)))
1021 break;
1022 return 0;
1023
1024 case IMAGE_NUMBER_VALUE:
1025 if (!INTEGERP (value) && !FLOATP (value))
1026 return 0;
1027 break;
1028
1029 case IMAGE_INTEGER_VALUE:
1030 if (!INTEGERP (value))
1031 return 0;
1032 break;
1033
1034 case IMAGE_BOOL_VALUE:
1035 if (!NILP (value) && !EQ (value, Qt))
1036 return 0;
1037 break;
1038
1039 default:
1040 abort ();
1041 break;
1042 }
1043
1044 if (EQ (key, QCtype) && !EQ (type, value))
1045 return 0;
1046 }
1047
1048 /* Check that all mandatory fields are present. */
1049 for (i = 0; i < nkeywords; ++i)
1050 if (keywords[i].mandatory_p && keywords[i].count == 0)
1051 return 0;
1052
1053 return NILP (plist);
1054 }
1055
1056
1057 /* Return the value of KEY in image specification SPEC. Value is nil
1058 if KEY is not present in SPEC. if FOUND is not null, set *FOUND
1059 to 1 if KEY was found in SPEC, set it to 0 otherwise. */
1060
1061 static Lisp_Object
1062 image_spec_value (spec, key, found)
1063 Lisp_Object spec, key;
1064 int *found;
1065 {
1066 Lisp_Object tail;
1067
1068 xassert (valid_image_p (spec));
1069
1070 for (tail = XCDR (spec);
1071 CONSP (tail) && CONSP (XCDR (tail));
1072 tail = XCDR (XCDR (tail)))
1073 {
1074 if (EQ (XCAR (tail), key))
1075 {
1076 if (found)
1077 *found = 1;
1078 return XCAR (XCDR (tail));
1079 }
1080 }
1081
1082 if (found)
1083 *found = 0;
1084 return Qnil;
1085 }
1086
1087
1088 DEFUN ("image-size", Fimage_size, Simage_size, 1, 3, 0,
1089 doc: /* Return the size of image SPEC as pair (WIDTH . HEIGHT).
1090 PIXELS non-nil means return the size in pixels, otherwise return the
1091 size in canonical character units.
1092 FRAME is the frame on which the image will be displayed. FRAME nil
1093 or omitted means use the selected frame. */)
1094 (spec, pixels, frame)
1095 Lisp_Object spec, pixels, frame;
1096 {
1097 Lisp_Object size;
1098
1099 size = Qnil;
1100 if (valid_image_p (spec))
1101 {
1102 struct frame *f = check_x_frame (frame);
1103 int id = lookup_image (f, spec);
1104 struct image *img = IMAGE_FROM_ID (f, id);
1105 int width = img->width + 2 * img->hmargin;
1106 int height = img->height + 2 * img->vmargin;
1107
1108 if (NILP (pixels))
1109 size = Fcons (make_float ((double) width / FRAME_COLUMN_WIDTH (f)),
1110 make_float ((double) height / FRAME_LINE_HEIGHT (f)));
1111 else
1112 size = Fcons (make_number (width), make_number (height));
1113 }
1114 else
1115 error ("Invalid image specification");
1116
1117 return size;
1118 }
1119
1120
1121 DEFUN ("image-mask-p", Fimage_mask_p, Simage_mask_p, 1, 2, 0,
1122 doc: /* Return t if image SPEC has a mask bitmap.
1123 FRAME is the frame on which the image will be displayed. FRAME nil
1124 or omitted means use the selected frame. */)
1125 (spec, frame)
1126 Lisp_Object spec, frame;
1127 {
1128 Lisp_Object mask;
1129
1130 mask = Qnil;
1131 if (valid_image_p (spec))
1132 {
1133 struct frame *f = check_x_frame (frame);
1134 int id = lookup_image (f, spec);
1135 struct image *img = IMAGE_FROM_ID (f, id);
1136 if (img->mask)
1137 mask = Qt;
1138 }
1139 else
1140 error ("Invalid image specification");
1141
1142 return mask;
1143 }
1144
1145 DEFUN ("image-extension-data", Fimage_extension_data, Simage_extension_data, 1, 2, 0,
1146 doc: /* Return extension data for image SPEC.
1147 FRAME is the frame on which the image will be displayed. FRAME nil
1148 or omitted means use the selected frame. */)
1149 (spec, frame)
1150 Lisp_Object spec, frame;
1151 {
1152 Lisp_Object ext;
1153
1154 ext = Qnil;
1155 if (valid_image_p (spec))
1156 {
1157 struct frame *f = check_x_frame (frame);
1158 int id = lookup_image (f, spec);
1159 struct image *img = IMAGE_FROM_ID (f, id);
1160 ext = img->data.lisp_val;
1161 }
1162
1163 return ext;
1164 }
1165
1166 \f
1167 /***********************************************************************
1168 Image type independent image structures
1169 ***********************************************************************/
1170
1171 static struct image *make_image P_ ((Lisp_Object spec, unsigned hash));
1172 static void free_image P_ ((struct frame *f, struct image *img));
1173 static int check_image_size P_ ((struct frame *f, int width, int height));
1174
1175 #define MAX_IMAGE_SIZE 6.0
1176 Lisp_Object Vmax_image_size;
1177
1178 /* Allocate and return a new image structure for image specification
1179 SPEC. SPEC has a hash value of HASH. */
1180
1181 static struct image *
1182 make_image (spec, hash)
1183 Lisp_Object spec;
1184 unsigned hash;
1185 {
1186 struct image *img = (struct image *) xmalloc (sizeof *img);
1187 Lisp_Object file = image_spec_value (spec, QCfile, NULL);
1188
1189 xassert (valid_image_p (spec));
1190 bzero (img, sizeof *img);
1191 img->dependencies = NILP (file) ? Qnil : list1 (file);
1192 img->type = lookup_image_type (image_spec_value (spec, QCtype, NULL));
1193 xassert (img->type != NULL);
1194 img->spec = spec;
1195 img->data.lisp_val = Qnil;
1196 img->ascent = DEFAULT_IMAGE_ASCENT;
1197 img->hash = hash;
1198 img->corners[BOT_CORNER] = -1; /* Full image */
1199 return img;
1200 }
1201
1202
1203 /* Free image IMG which was used on frame F, including its resources. */
1204
1205 static void
1206 free_image (f, img)
1207 struct frame *f;
1208 struct image *img;
1209 {
1210 if (img)
1211 {
1212 struct image_cache *c = FRAME_IMAGE_CACHE (f);
1213
1214 /* Remove IMG from the hash table of its cache. */
1215 if (img->prev)
1216 img->prev->next = img->next;
1217 else
1218 c->buckets[img->hash % IMAGE_CACHE_BUCKETS_SIZE] = img->next;
1219
1220 if (img->next)
1221 img->next->prev = img->prev;
1222
1223 c->images[img->id] = NULL;
1224
1225 /* Free resources, then free IMG. */
1226 img->type->free (f, img);
1227 xfree (img);
1228 }
1229 }
1230
1231 /* Return 1 if the given widths and heights are valid for display;
1232 otherwise, return 0. */
1233
1234 int
1235 check_image_size (f, width, height)
1236 struct frame *f;
1237 int width;
1238 int height;
1239 {
1240 int w, h;
1241
1242 if (width <= 0 || height <= 0)
1243 return 0;
1244
1245 if (INTEGERP (Vmax_image_size))
1246 w = h = XINT (Vmax_image_size);
1247 else if (FLOATP (Vmax_image_size))
1248 {
1249 if (f != NULL)
1250 {
1251 w = FRAME_PIXEL_WIDTH (f);
1252 h = FRAME_PIXEL_HEIGHT (f);
1253 }
1254 else
1255 w = h = 1024; /* Arbitrary size for unknown frame. */
1256 w = (int) (XFLOAT_DATA (Vmax_image_size) * w);
1257 h = (int) (XFLOAT_DATA (Vmax_image_size) * h);
1258 }
1259 else
1260 return 1;
1261
1262 return (width <= w && height <= h);
1263 }
1264
1265 /* Prepare image IMG for display on frame F. Must be called before
1266 drawing an image. */
1267
1268 void
1269 prepare_image_for_display (f, img)
1270 struct frame *f;
1271 struct image *img;
1272 {
1273 EMACS_TIME t;
1274
1275 /* We're about to display IMG, so set its timestamp to `now'. */
1276 EMACS_GET_TIME (t);
1277 img->timestamp = EMACS_SECS (t);
1278
1279 /* If IMG doesn't have a pixmap yet, load it now, using the image
1280 type dependent loader function. */
1281 if (img->pixmap == NO_PIXMAP && !img->load_failed_p)
1282 img->load_failed_p = img->type->load (f, img) == 0;
1283
1284 #if defined (MAC_OS) && USE_CG_DRAWING
1285 if (!img->load_failed_p && img->data.ptr_val == NULL)
1286 {
1287 img->data.ptr_val = mac_create_cg_image_from_image (f, img);
1288 if (img->data.ptr_val == NULL)
1289 {
1290 img->load_failed_p = 1;
1291 img->type->free (f, img);
1292 }
1293 }
1294 #endif
1295 }
1296
1297
1298 /* Value is the number of pixels for the ascent of image IMG when
1299 drawn in face FACE. */
1300
1301 int
1302 image_ascent (img, face, slice)
1303 struct image *img;
1304 struct face *face;
1305 struct glyph_slice *slice;
1306 {
1307 int height;
1308 int ascent;
1309
1310 if (slice->height == img->height)
1311 height = img->height + img->vmargin;
1312 else if (slice->y == 0)
1313 height = slice->height + img->vmargin;
1314 else
1315 height = slice->height;
1316
1317 if (img->ascent == CENTERED_IMAGE_ASCENT)
1318 {
1319 if (face->font)
1320 {
1321 #ifdef HAVE_NTGUI
1322 /* W32 specific version. Why?. ++kfs */
1323 ascent = height / 2 - (FONT_DESCENT (face->font)
1324 - FONT_BASE (face->font)) / 2;
1325 #else
1326 /* This expression is arranged so that if the image can't be
1327 exactly centered, it will be moved slightly up. This is
1328 because a typical font is `top-heavy' (due to the presence
1329 uppercase letters), so the image placement should err towards
1330 being top-heavy too. It also just generally looks better. */
1331 ascent = (height + face->font->ascent - face->font->descent + 1) / 2;
1332 #endif /* HAVE_NTGUI */
1333 }
1334 else
1335 ascent = height / 2;
1336 }
1337 else
1338 ascent = (int) (height * img->ascent / 100.0);
1339
1340 return ascent;
1341 }
1342
1343 \f
1344 /* Image background colors. */
1345
1346 /* Find the "best" corner color of a bitmap.
1347 On W32, XIMG is assumed to a device context with the bitmap selected. */
1348
1349 static RGB_PIXEL_COLOR
1350 four_corners_best (ximg, corners, width, height)
1351 XImagePtr_or_DC ximg;
1352 int *corners;
1353 unsigned long width, height;
1354 {
1355 RGB_PIXEL_COLOR corner_pixels[4], best;
1356 int i, best_count;
1357
1358 if (corners && corners[BOT_CORNER] >= 0)
1359 {
1360 /* Get the colors at the corner_pixels of ximg. */
1361 corner_pixels[0] = GET_PIXEL (ximg, corners[LEFT_CORNER], corners[TOP_CORNER]);
1362 corner_pixels[1] = GET_PIXEL (ximg, corners[RIGHT_CORNER] - 1, corners[TOP_CORNER]);
1363 corner_pixels[2] = GET_PIXEL (ximg, corners[RIGHT_CORNER] - 1, corners[BOT_CORNER] - 1);
1364 corner_pixels[3] = GET_PIXEL (ximg, corners[LEFT_CORNER], corners[BOT_CORNER] - 1);
1365 }
1366 else
1367 {
1368 /* Get the colors at the corner_pixels of ximg. */
1369 corner_pixels[0] = GET_PIXEL (ximg, 0, 0);
1370 corner_pixels[1] = GET_PIXEL (ximg, width - 1, 0);
1371 corner_pixels[2] = GET_PIXEL (ximg, width - 1, height - 1);
1372 corner_pixels[3] = GET_PIXEL (ximg, 0, height - 1);
1373 }
1374 /* Choose the most frequently found color as background. */
1375 for (i = best_count = 0; i < 4; ++i)
1376 {
1377 int j, n;
1378
1379 for (j = n = 0; j < 4; ++j)
1380 if (corner_pixels[i] == corner_pixels[j])
1381 ++n;
1382
1383 if (n > best_count)
1384 best = corner_pixels[i], best_count = n;
1385 }
1386
1387 return best;
1388 }
1389
1390 /* Portability macros */
1391
1392 #ifdef HAVE_NTGUI
1393
1394 #define Destroy_Image(img_dc, prev) \
1395 do { SelectObject (img_dc, prev); DeleteDC (img_dc); } while (0)
1396
1397 #define Free_Pixmap(display, pixmap) \
1398 DeleteObject (pixmap)
1399
1400 #else
1401
1402 #define Destroy_Image(ximg, dummy) \
1403 XDestroyImage (ximg)
1404
1405 #define Free_Pixmap(display, pixmap) \
1406 XFreePixmap (display, pixmap)
1407
1408 #endif /* HAVE_NTGUI */
1409
1410
1411 /* Return the `background' field of IMG. If IMG doesn't have one yet,
1412 it is guessed heuristically. If non-zero, XIMG is an existing
1413 XImage object (or device context with the image selected on W32) to
1414 use for the heuristic. */
1415
1416 RGB_PIXEL_COLOR
1417 image_background (img, f, ximg)
1418 struct image *img;
1419 struct frame *f;
1420 XImagePtr_or_DC ximg;
1421 {
1422 if (! img->background_valid)
1423 /* IMG doesn't have a background yet, try to guess a reasonable value. */
1424 {
1425 int free_ximg = !ximg;
1426 #ifdef HAVE_NTGUI
1427 HGDIOBJ prev;
1428 #endif /* HAVE_NTGUI */
1429
1430 if (free_ximg)
1431 {
1432 #ifndef HAVE_NTGUI
1433 ximg = XGetImage (FRAME_X_DISPLAY (f), img->pixmap,
1434 0, 0, img->width, img->height, ~0, ZPixmap);
1435 #else
1436 HDC frame_dc = get_frame_dc (f);
1437 ximg = CreateCompatibleDC (frame_dc);
1438 release_frame_dc (f, frame_dc);
1439 prev = SelectObject (ximg, img->pixmap);
1440 #endif /* !HAVE_NTGUI */
1441 }
1442
1443 img->background = four_corners_best (ximg, img->corners, img->width, img->height);
1444
1445 if (free_ximg)
1446 Destroy_Image (ximg, prev);
1447
1448 img->background_valid = 1;
1449 }
1450
1451 return img->background;
1452 }
1453
1454 /* Return the `background_transparent' field of IMG. If IMG doesn't
1455 have one yet, it is guessed heuristically. If non-zero, MASK is an
1456 existing XImage object to use for the heuristic. */
1457
1458 int
1459 image_background_transparent (img, f, mask)
1460 struct image *img;
1461 struct frame *f;
1462 XImagePtr_or_DC mask;
1463 {
1464 if (! img->background_transparent_valid)
1465 /* IMG doesn't have a background yet, try to guess a reasonable value. */
1466 {
1467 if (img->mask)
1468 {
1469 int free_mask = !mask;
1470 #ifdef HAVE_NTGUI
1471 HGDIOBJ prev;
1472 #endif /* HAVE_NTGUI */
1473
1474 if (free_mask)
1475 {
1476 #ifndef HAVE_NTGUI
1477 mask = XGetImage (FRAME_X_DISPLAY (f), img->mask,
1478 0, 0, img->width, img->height, ~0, ZPixmap);
1479 #else
1480 HDC frame_dc = get_frame_dc (f);
1481 mask = CreateCompatibleDC (frame_dc);
1482 release_frame_dc (f, frame_dc);
1483 prev = SelectObject (mask, img->mask);
1484 #endif /* HAVE_NTGUI */
1485 }
1486
1487 img->background_transparent
1488 = (four_corners_best (mask, img->corners, img->width, img->height) == PIX_MASK_RETAIN);
1489
1490 if (free_mask)
1491 Destroy_Image (mask, prev);
1492 }
1493 else
1494 img->background_transparent = 0;
1495
1496 img->background_transparent_valid = 1;
1497 }
1498
1499 return img->background_transparent;
1500 }
1501
1502 \f
1503 /***********************************************************************
1504 Helper functions for X image types
1505 ***********************************************************************/
1506
1507 static void x_clear_image_1 P_ ((struct frame *, struct image *, int,
1508 int, int));
1509 static void x_clear_image P_ ((struct frame *f, struct image *img));
1510 static unsigned long x_alloc_image_color P_ ((struct frame *f,
1511 struct image *img,
1512 Lisp_Object color_name,
1513 unsigned long dflt));
1514
1515
1516 /* Clear X resources of image IMG on frame F. PIXMAP_P non-zero means
1517 free the pixmap if any. MASK_P non-zero means clear the mask
1518 pixmap if any. COLORS_P non-zero means free colors allocated for
1519 the image, if any. */
1520
1521 static void
1522 x_clear_image_1 (f, img, pixmap_p, mask_p, colors_p)
1523 struct frame *f;
1524 struct image *img;
1525 int pixmap_p, mask_p, colors_p;
1526 {
1527 if (pixmap_p && img->pixmap)
1528 {
1529 Free_Pixmap (FRAME_X_DISPLAY (f), img->pixmap);
1530 img->pixmap = NO_PIXMAP;
1531 img->background_valid = 0;
1532 }
1533
1534 if (mask_p && img->mask)
1535 {
1536 Free_Pixmap (FRAME_X_DISPLAY (f), img->mask);
1537 img->mask = NO_PIXMAP;
1538 img->background_transparent_valid = 0;
1539 }
1540
1541 if (colors_p && img->ncolors)
1542 {
1543 /* MAC_TODO: color table support. */
1544 /* W32_TODO: color table support. */
1545 #ifdef HAVE_X_WINDOWS
1546 x_free_colors (f, img->colors, img->ncolors);
1547 #endif /* HAVE_X_WINDOWS */
1548 xfree (img->colors);
1549 img->colors = NULL;
1550 img->ncolors = 0;
1551 }
1552
1553 #if defined (MAC_OS) && USE_CG_DRAWING
1554 if (img->data.ptr_val)
1555 {
1556 CGImageRelease (img->data.ptr_val);
1557 img->data.ptr_val = NULL;
1558 }
1559 #endif
1560 }
1561
1562 /* Free X resources of image IMG which is used on frame F. */
1563
1564 static void
1565 x_clear_image (f, img)
1566 struct frame *f;
1567 struct image *img;
1568 {
1569 BLOCK_INPUT;
1570 x_clear_image_1 (f, img, 1, 1, 1);
1571 UNBLOCK_INPUT;
1572 }
1573
1574
1575 /* Allocate color COLOR_NAME for image IMG on frame F. If color
1576 cannot be allocated, use DFLT. Add a newly allocated color to
1577 IMG->colors, so that it can be freed again. Value is the pixel
1578 color. */
1579
1580 static unsigned long
1581 x_alloc_image_color (f, img, color_name, dflt)
1582 struct frame *f;
1583 struct image *img;
1584 Lisp_Object color_name;
1585 unsigned long dflt;
1586 {
1587 XColor color;
1588 unsigned long result;
1589
1590 xassert (STRINGP (color_name));
1591
1592 if (x_defined_color (f, SDATA (color_name), &color, 1))
1593 {
1594 /* This isn't called frequently so we get away with simply
1595 reallocating the color vector to the needed size, here. */
1596 ++img->ncolors;
1597 img->colors =
1598 (unsigned long *) xrealloc (img->colors,
1599 img->ncolors * sizeof *img->colors);
1600 img->colors[img->ncolors - 1] = color.pixel;
1601 result = color.pixel;
1602 }
1603 else
1604 result = dflt;
1605
1606 return result;
1607 }
1608
1609
1610 \f
1611 /***********************************************************************
1612 Image Cache
1613 ***********************************************************************/
1614
1615 static struct image *search_image_cache P_ ((struct frame *, Lisp_Object, unsigned));
1616 static void cache_image P_ ((struct frame *f, struct image *img));
1617 static void postprocess_image P_ ((struct frame *, struct image *));
1618
1619 /* Return a new, initialized image cache that is allocated from the
1620 heap. Call free_image_cache to free an image cache. */
1621
1622 struct image_cache *
1623 make_image_cache ()
1624 {
1625 struct image_cache *c = (struct image_cache *) xmalloc (sizeof *c);
1626 int size;
1627
1628 bzero (c, sizeof *c);
1629 c->size = 50;
1630 c->images = (struct image **) xmalloc (c->size * sizeof *c->images);
1631 size = IMAGE_CACHE_BUCKETS_SIZE * sizeof *c->buckets;
1632 c->buckets = (struct image **) xmalloc (size);
1633 bzero (c->buckets, size);
1634 return c;
1635 }
1636
1637
1638 /* Find an image matching SPEC in the cache, and return it. If no
1639 image is found, return NULL. */
1640 static struct image *
1641 search_image_cache (f, spec, hash)
1642 struct frame *f;
1643 Lisp_Object spec;
1644 unsigned hash;
1645 {
1646 struct image *img;
1647 struct image_cache *c = FRAME_IMAGE_CACHE (f);
1648 int i = hash % IMAGE_CACHE_BUCKETS_SIZE;
1649
1650 if (!c) return NULL;
1651
1652 /* If the image spec does not specify a background color, the cached
1653 image must have the same background color as the current frame.
1654 The foreground color must also match, for the sake of monochrome
1655 images.
1656
1657 In fact, we could ignore the foreground color matching condition
1658 for color images, or if the image spec specifies :foreground;
1659 similarly we could ignore the background color matching condition
1660 for formats that don't use transparency (such as jpeg), or if the
1661 image spec specifies :background. However, the extra memory
1662 usage is probably negligible in practice, so we don't bother. */
1663
1664 for (img = c->buckets[i]; img; img = img->next)
1665 if (img->hash == hash
1666 && !NILP (Fequal (img->spec, spec))
1667 && img->frame_foreground == FRAME_FOREGROUND_PIXEL (f)
1668 && img->frame_background == FRAME_BACKGROUND_PIXEL (f))
1669 break;
1670 return img;
1671 }
1672
1673
1674 /* Search frame F for an image with spec SPEC, and free it. */
1675
1676 static void
1677 uncache_image (f, spec)
1678 struct frame *f;
1679 Lisp_Object spec;
1680 {
1681 struct image *img = search_image_cache (f, spec, sxhash (spec, 0));
1682 if (img)
1683 free_image (f, img);
1684 }
1685
1686
1687 /* Free image cache of frame F. Be aware that X frames share images
1688 caches. */
1689
1690 void
1691 free_image_cache (f)
1692 struct frame *f;
1693 {
1694 struct image_cache *c = FRAME_IMAGE_CACHE (f);
1695 if (c)
1696 {
1697 int i;
1698
1699 /* Cache should not be referenced by any frame when freed. */
1700 xassert (c->refcount == 0);
1701
1702 for (i = 0; i < c->used; ++i)
1703 free_image (f, c->images[i]);
1704 xfree (c->images);
1705 xfree (c->buckets);
1706 xfree (c);
1707 FRAME_IMAGE_CACHE (f) = NULL;
1708 }
1709 }
1710
1711
1712 /* Clear image cache of frame F. FILTER=t means free all images.
1713 FILTER=nil means clear only images that haven't been
1714 displayed for some time.
1715 Else, only free the images which have FILTER in their `dependencies'.
1716 Should be called from time to time to reduce the number of loaded images.
1717 If image-cache-eviction-delay is non-nil, this frees images in the cache
1718 which weren't displayed for at least that many seconds. */
1719
1720 void
1721 clear_image_cache (struct frame *f, Lisp_Object filter)
1722 {
1723 struct image_cache *c = FRAME_IMAGE_CACHE (f);
1724
1725 if (c && (!NILP (filter) || INTEGERP (Vimage_cache_eviction_delay)))
1726 {
1727 EMACS_TIME t;
1728 unsigned long old;
1729 int i, nfreed;
1730
1731 EMACS_GET_TIME (t);
1732 old = EMACS_SECS (t) - XFASTINT (Vimage_cache_eviction_delay);
1733
1734 /* Block input so that we won't be interrupted by a SIGIO
1735 while being in an inconsistent state. */
1736 BLOCK_INPUT;
1737
1738 for (i = nfreed = 0; i < c->used; ++i)
1739 {
1740 struct image *img = c->images[i];
1741 if (img != NULL
1742 && (NILP (filter) ? img->timestamp < old
1743 : (EQ (Qt, filter)
1744 || !NILP (Fmember (filter, img->dependencies)))))
1745 {
1746 free_image (f, img);
1747 ++nfreed;
1748 }
1749 }
1750
1751 /* We may be clearing the image cache because, for example,
1752 Emacs was iconified for a longer period of time. In that
1753 case, current matrices may still contain references to
1754 images freed above. So, clear these matrices. */
1755 if (nfreed)
1756 {
1757 Lisp_Object tail, frame;
1758
1759 FOR_EACH_FRAME (tail, frame)
1760 {
1761 struct frame *f = XFRAME (frame);
1762 if (FRAME_IMAGE_CACHE (f) == c)
1763 clear_current_matrices (f);
1764 }
1765
1766 ++windows_or_buffers_changed;
1767 }
1768
1769 UNBLOCK_INPUT;
1770 }
1771 }
1772
1773 void
1774 clear_image_caches (Lisp_Object filter)
1775 {
1776 /* FIXME: We want to do
1777 * struct terminal *t;
1778 * for (t = terminal_list; t; t = t->next_terminal)
1779 * clear_image_cache (t, filter); */
1780 Lisp_Object tail, frame;
1781 FOR_EACH_FRAME (tail, frame)
1782 if (FRAME_WINDOW_P (XFRAME (frame)))
1783 clear_image_cache (XFRAME (frame), filter);
1784 }
1785
1786 DEFUN ("clear-image-cache", Fclear_image_cache, Sclear_image_cache,
1787 0, 1, 0,
1788 doc: /* Clear the image cache.
1789 FILTER nil or a frame means clear all images in the selected frame.
1790 FILTER t means clear the image caches of all frames.
1791 Anything else, means only clear those images which refer to FILTER,
1792 which is then usually a filename. */)
1793 (filter)
1794 Lisp_Object filter;
1795 {
1796 if (!(EQ (filter, Qnil) || FRAMEP (filter)))
1797 clear_image_caches (filter);
1798 else
1799 clear_image_cache (check_x_frame (filter), Qt);
1800
1801 return Qnil;
1802 }
1803
1804
1805 DEFUN ("image-refresh", Fimage_refresh, Simage_refresh,
1806 1, 2, 0,
1807 doc: /* Refresh the image with specification SPEC on frame FRAME.
1808 If SPEC specifies an image file, the displayed image is updated with
1809 the current contents of that file.
1810 FRAME nil or omitted means use the selected frame.
1811 FRAME t means refresh the image on all frames. */)
1812 (spec, frame)
1813 Lisp_Object spec, frame;
1814 {
1815 if (!valid_image_p (spec))
1816 error ("Invalid image specification");
1817
1818 if (EQ (frame, Qt))
1819 {
1820 Lisp_Object tail;
1821 FOR_EACH_FRAME (tail, frame)
1822 {
1823 struct frame *f = XFRAME (frame);
1824 if (FRAME_WINDOW_P (f))
1825 uncache_image (f, spec);
1826 }
1827 }
1828 else
1829 uncache_image (check_x_frame (frame), spec);
1830
1831 return Qnil;
1832 }
1833
1834
1835 /* Compute masks and transform image IMG on frame F, as specified
1836 by the image's specification, */
1837
1838 static void
1839 postprocess_image (f, img)
1840 struct frame *f;
1841 struct image *img;
1842 {
1843 /* Manipulation of the image's mask. */
1844 if (img->pixmap)
1845 {
1846 Lisp_Object conversion, spec;
1847 Lisp_Object mask;
1848
1849 spec = img->spec;
1850
1851 /* `:heuristic-mask t'
1852 `:mask heuristic'
1853 means build a mask heuristically.
1854 `:heuristic-mask (R G B)'
1855 `:mask (heuristic (R G B))'
1856 means build a mask from color (R G B) in the
1857 image.
1858 `:mask nil'
1859 means remove a mask, if any. */
1860
1861 mask = image_spec_value (spec, QCheuristic_mask, NULL);
1862 if (!NILP (mask))
1863 x_build_heuristic_mask (f, img, mask);
1864 else
1865 {
1866 int found_p;
1867
1868 mask = image_spec_value (spec, QCmask, &found_p);
1869
1870 if (EQ (mask, Qheuristic))
1871 x_build_heuristic_mask (f, img, Qt);
1872 else if (CONSP (mask)
1873 && EQ (XCAR (mask), Qheuristic))
1874 {
1875 if (CONSP (XCDR (mask)))
1876 x_build_heuristic_mask (f, img, XCAR (XCDR (mask)));
1877 else
1878 x_build_heuristic_mask (f, img, XCDR (mask));
1879 }
1880 else if (NILP (mask) && found_p && img->mask)
1881 {
1882 Free_Pixmap (FRAME_X_DISPLAY (f), img->mask);
1883 img->mask = NO_PIXMAP;
1884 }
1885 }
1886
1887
1888 /* Should we apply an image transformation algorithm? */
1889 conversion = image_spec_value (spec, QCconversion, NULL);
1890 if (EQ (conversion, Qdisabled))
1891 x_disable_image (f, img);
1892 else if (EQ (conversion, Qlaplace))
1893 x_laplace (f, img);
1894 else if (EQ (conversion, Qemboss))
1895 x_emboss (f, img);
1896 else if (CONSP (conversion)
1897 && EQ (XCAR (conversion), Qedge_detection))
1898 {
1899 Lisp_Object tem;
1900 tem = XCDR (conversion);
1901 if (CONSP (tem))
1902 x_edge_detection (f, img,
1903 Fplist_get (tem, QCmatrix),
1904 Fplist_get (tem, QCcolor_adjustment));
1905 }
1906 }
1907 }
1908
1909
1910 /* Return the id of image with Lisp specification SPEC on frame F.
1911 SPEC must be a valid Lisp image specification (see valid_image_p). */
1912
1913 int
1914 lookup_image (f, spec)
1915 struct frame *f;
1916 Lisp_Object spec;
1917 {
1918 struct image_cache *c;
1919 struct image *img;
1920 unsigned hash;
1921 struct gcpro gcpro1;
1922 EMACS_TIME now;
1923
1924 /* F must be a window-system frame, and SPEC must be a valid image
1925 specification. */
1926 xassert (FRAME_WINDOW_P (f));
1927 xassert (valid_image_p (spec));
1928
1929 c = FRAME_IMAGE_CACHE (f);
1930
1931 GCPRO1 (spec);
1932
1933 /* Look up SPEC in the hash table of the image cache. */
1934 hash = sxhash (spec, 0);
1935 img = search_image_cache (f, spec, hash);
1936 if (img && img->load_failed_p)
1937 {
1938 free_image (f, img);
1939 img = NULL;
1940 }
1941
1942 /* If not found, create a new image and cache it. */
1943 if (img == NULL)
1944 {
1945 extern Lisp_Object Qpostscript;
1946
1947 BLOCK_INPUT;
1948 img = make_image (spec, hash);
1949 cache_image (f, img);
1950 img->load_failed_p = img->type->load (f, img) == 0;
1951 img->frame_foreground = FRAME_FOREGROUND_PIXEL (f);
1952 img->frame_background = FRAME_BACKGROUND_PIXEL (f);
1953
1954 /* If we can't load the image, and we don't have a width and
1955 height, use some arbitrary width and height so that we can
1956 draw a rectangle for it. */
1957 if (img->load_failed_p)
1958 {
1959 Lisp_Object value;
1960
1961 value = image_spec_value (spec, QCwidth, NULL);
1962 img->width = (INTEGERP (value)
1963 ? XFASTINT (value) : DEFAULT_IMAGE_WIDTH);
1964 value = image_spec_value (spec, QCheight, NULL);
1965 img->height = (INTEGERP (value)
1966 ? XFASTINT (value) : DEFAULT_IMAGE_HEIGHT);
1967 }
1968 else
1969 {
1970 /* Handle image type independent image attributes
1971 `:ascent ASCENT', `:margin MARGIN', `:relief RELIEF',
1972 `:background COLOR'. */
1973 Lisp_Object ascent, margin, relief, bg;
1974
1975 ascent = image_spec_value (spec, QCascent, NULL);
1976 if (INTEGERP (ascent))
1977 img->ascent = XFASTINT (ascent);
1978 else if (EQ (ascent, Qcenter))
1979 img->ascent = CENTERED_IMAGE_ASCENT;
1980
1981 margin = image_spec_value (spec, QCmargin, NULL);
1982 if (INTEGERP (margin) && XINT (margin) >= 0)
1983 img->vmargin = img->hmargin = XFASTINT (margin);
1984 else if (CONSP (margin) && INTEGERP (XCAR (margin))
1985 && INTEGERP (XCDR (margin)))
1986 {
1987 if (XINT (XCAR (margin)) > 0)
1988 img->hmargin = XFASTINT (XCAR (margin));
1989 if (XINT (XCDR (margin)) > 0)
1990 img->vmargin = XFASTINT (XCDR (margin));
1991 }
1992
1993 relief = image_spec_value (spec, QCrelief, NULL);
1994 if (INTEGERP (relief))
1995 {
1996 img->relief = XINT (relief);
1997 img->hmargin += eabs (img->relief);
1998 img->vmargin += eabs (img->relief);
1999 }
2000
2001 if (! img->background_valid)
2002 {
2003 bg = image_spec_value (img->spec, QCbackground, NULL);
2004 if (!NILP (bg))
2005 {
2006 img->background
2007 = x_alloc_image_color (f, img, bg,
2008 FRAME_BACKGROUND_PIXEL (f));
2009 img->background_valid = 1;
2010 }
2011 }
2012
2013 /* Do image transformations and compute masks, unless we
2014 don't have the image yet. */
2015 if (!EQ (*img->type->type, Qpostscript))
2016 postprocess_image (f, img);
2017 }
2018
2019 UNBLOCK_INPUT;
2020 }
2021
2022 /* We're using IMG, so set its timestamp to `now'. */
2023 EMACS_GET_TIME (now);
2024 img->timestamp = EMACS_SECS (now);
2025
2026 UNGCPRO;
2027
2028 /* Value is the image id. */
2029 return img->id;
2030 }
2031
2032
2033 /* Cache image IMG in the image cache of frame F. */
2034
2035 static void
2036 cache_image (f, img)
2037 struct frame *f;
2038 struct image *img;
2039 {
2040 struct image_cache *c = FRAME_IMAGE_CACHE (f);
2041 int i;
2042
2043 /* Find a free slot in c->images. */
2044 for (i = 0; i < c->used; ++i)
2045 if (c->images[i] == NULL)
2046 break;
2047
2048 /* If no free slot found, maybe enlarge c->images. */
2049 if (i == c->used && c->used == c->size)
2050 {
2051 c->size *= 2;
2052 c->images = (struct image **) xrealloc (c->images,
2053 c->size * sizeof *c->images);
2054 }
2055
2056 /* Add IMG to c->images, and assign IMG an id. */
2057 c->images[i] = img;
2058 img->id = i;
2059 if (i == c->used)
2060 ++c->used;
2061
2062 /* Add IMG to the cache's hash table. */
2063 i = img->hash % IMAGE_CACHE_BUCKETS_SIZE;
2064 img->next = c->buckets[i];
2065 if (img->next)
2066 img->next->prev = img;
2067 img->prev = NULL;
2068 c->buckets[i] = img;
2069 }
2070
2071
2072 /* Call FN on every image in the image cache of frame F. Used to mark
2073 Lisp Objects in the image cache. */
2074
2075 /* Mark Lisp objects in image IMG. */
2076
2077 static void
2078 mark_image (img)
2079 struct image *img;
2080 {
2081 mark_object (img->spec);
2082 mark_object (img->dependencies);
2083
2084 if (!NILP (img->data.lisp_val))
2085 mark_object (img->data.lisp_val);
2086 }
2087
2088
2089 void
2090 mark_image_cache (struct image_cache *c)
2091 {
2092 if (c)
2093 {
2094 int i;
2095 for (i = 0; i < c->used; ++i)
2096 if (c->images[i])
2097 mark_image (c->images[i]);
2098 }
2099 }
2100
2101
2102 \f
2103 /***********************************************************************
2104 X / MAC / W32 support code
2105 ***********************************************************************/
2106
2107 #ifdef HAVE_NTGUI
2108
2109 /* Macro for defining functions that will be loaded from image DLLs. */
2110 #define DEF_IMGLIB_FN(func) int (FAR CDECL *fn_##func)()
2111
2112 /* Macro for loading those image functions from the library. */
2113 #define LOAD_IMGLIB_FN(lib,func) { \
2114 fn_##func = (void *) GetProcAddress (lib, #func); \
2115 if (!fn_##func) return 0; \
2116 }
2117
2118 /* Load a DLL implementing an image type.
2119 The `image-library-alist' variable associates a symbol,
2120 identifying an image type, to a list of possible filenames.
2121 The function returns NULL if no library could be loaded for
2122 the given image type, or if the library was previously loaded;
2123 else the handle of the DLL. */
2124 static HMODULE
2125 w32_delayed_load (Lisp_Object libraries, Lisp_Object type)
2126 {
2127 HMODULE library = NULL;
2128
2129 if (CONSP (libraries) && NILP (Fassq (type, Vimage_type_cache)))
2130 {
2131 Lisp_Object dlls = Fassq (type, libraries);
2132
2133 if (CONSP (dlls))
2134 for (dlls = XCDR (dlls); CONSP (dlls); dlls = XCDR (dlls))
2135 {
2136 CHECK_STRING_CAR (dlls);
2137 if (library = LoadLibrary (SDATA (XCAR (dlls))))
2138 break;
2139 }
2140 }
2141
2142 return library;
2143 }
2144
2145 #endif /* HAVE_NTGUI */
2146
2147 static int x_create_x_image_and_pixmap P_ ((struct frame *, int, int, int,
2148 XImagePtr *, Pixmap *));
2149 static void x_destroy_x_image P_ ((XImagePtr));
2150 static void x_put_x_image P_ ((struct frame *, XImagePtr, Pixmap, int, int));
2151
2152
2153 /* Create an XImage and a pixmap of size WIDTH x HEIGHT for use on
2154 frame F. Set *XIMG and *PIXMAP to the XImage and Pixmap created.
2155 Set (*XIMG)->data to a raster of WIDTH x HEIGHT pixels allocated
2156 via xmalloc. Print error messages via image_error if an error
2157 occurs. Value is non-zero if successful.
2158
2159 On W32, a DEPTH of zero signifies a 24 bit image, otherwise DEPTH
2160 should indicate the bit depth of the image. */
2161
2162 static int
2163 x_create_x_image_and_pixmap (f, width, height, depth, ximg, pixmap)
2164 struct frame *f;
2165 int width, height, depth;
2166 XImagePtr *ximg;
2167 Pixmap *pixmap;
2168 {
2169 #ifdef HAVE_X_WINDOWS
2170 Display *display = FRAME_X_DISPLAY (f);
2171 Window window = FRAME_X_WINDOW (f);
2172 Screen *screen = FRAME_X_SCREEN (f);
2173
2174 xassert (interrupt_input_blocked);
2175
2176 if (depth <= 0)
2177 depth = DefaultDepthOfScreen (screen);
2178 *ximg = XCreateImage (display, DefaultVisualOfScreen (screen),
2179 depth, ZPixmap, 0, NULL, width, height,
2180 depth > 16 ? 32 : depth > 8 ? 16 : 8, 0);
2181 if (*ximg == NULL)
2182 {
2183 image_error ("Unable to allocate X image", Qnil, Qnil);
2184 return 0;
2185 }
2186
2187 /* Allocate image raster. */
2188 (*ximg)->data = (char *) xmalloc ((*ximg)->bytes_per_line * height);
2189
2190 /* Allocate a pixmap of the same size. */
2191 *pixmap = XCreatePixmap (display, window, width, height, depth);
2192 if (*pixmap == NO_PIXMAP)
2193 {
2194 x_destroy_x_image (*ximg);
2195 *ximg = NULL;
2196 image_error ("Unable to create X pixmap", Qnil, Qnil);
2197 return 0;
2198 }
2199
2200 return 1;
2201 #endif /* HAVE_X_WINDOWS */
2202
2203 #ifdef HAVE_NTGUI
2204
2205 BITMAPINFOHEADER *header;
2206 HDC hdc;
2207 int scanline_width_bits;
2208 int remainder;
2209 int palette_colors = 0;
2210
2211 if (depth == 0)
2212 depth = 24;
2213
2214 if (depth != 1 && depth != 4 && depth != 8
2215 && depth != 16 && depth != 24 && depth != 32)
2216 {
2217 image_error ("Invalid image bit depth specified", Qnil, Qnil);
2218 return 0;
2219 }
2220
2221 scanline_width_bits = width * depth;
2222 remainder = scanline_width_bits % 32;
2223
2224 if (remainder)
2225 scanline_width_bits += 32 - remainder;
2226
2227 /* Bitmaps with a depth less than 16 need a palette. */
2228 /* BITMAPINFO structure already contains the first RGBQUAD. */
2229 if (depth < 16)
2230 palette_colors = 1 << depth - 1;
2231
2232 *ximg = xmalloc (sizeof (XImage) + palette_colors * sizeof (RGBQUAD));
2233 if (*ximg == NULL)
2234 {
2235 image_error ("Unable to allocate memory for XImage", Qnil, Qnil);
2236 return 0;
2237 }
2238
2239 header = &((*ximg)->info.bmiHeader);
2240 bzero (&((*ximg)->info), sizeof (BITMAPINFO));
2241 header->biSize = sizeof (*header);
2242 header->biWidth = width;
2243 header->biHeight = -height; /* negative indicates a top-down bitmap. */
2244 header->biPlanes = 1;
2245 header->biBitCount = depth;
2246 header->biCompression = BI_RGB;
2247 header->biClrUsed = palette_colors;
2248
2249 /* TODO: fill in palette. */
2250 if (depth == 1)
2251 {
2252 (*ximg)->info.bmiColors[0].rgbBlue = 0;
2253 (*ximg)->info.bmiColors[0].rgbGreen = 0;
2254 (*ximg)->info.bmiColors[0].rgbRed = 0;
2255 (*ximg)->info.bmiColors[0].rgbReserved = 0;
2256 (*ximg)->info.bmiColors[1].rgbBlue = 255;
2257 (*ximg)->info.bmiColors[1].rgbGreen = 255;
2258 (*ximg)->info.bmiColors[1].rgbRed = 255;
2259 (*ximg)->info.bmiColors[1].rgbReserved = 0;
2260 }
2261
2262 hdc = get_frame_dc (f);
2263
2264 /* Create a DIBSection and raster array for the bitmap,
2265 and store its handle in *pixmap. */
2266 *pixmap = CreateDIBSection (hdc, &((*ximg)->info),
2267 (depth < 16) ? DIB_PAL_COLORS : DIB_RGB_COLORS,
2268 /* casting avoids a GCC warning */
2269 (void **)&((*ximg)->data), NULL, 0);
2270
2271 /* Realize display palette and garbage all frames. */
2272 release_frame_dc (f, hdc);
2273
2274 if (*pixmap == NULL)
2275 {
2276 DWORD err = GetLastError ();
2277 Lisp_Object errcode;
2278 /* All system errors are < 10000, so the following is safe. */
2279 XSETINT (errcode, (int) err);
2280 image_error ("Unable to create bitmap, error code %d", errcode, Qnil);
2281 x_destroy_x_image (*ximg);
2282 return 0;
2283 }
2284
2285 return 1;
2286
2287 #endif /* HAVE_NTGUI */
2288
2289 #ifdef MAC_OS
2290 Display *display = FRAME_X_DISPLAY (f);
2291 Window window = FRAME_X_WINDOW (f);
2292
2293 xassert (interrupt_input_blocked);
2294
2295 /* Allocate a pixmap of the same size. */
2296 *pixmap = XCreatePixmap (display, window, width, height, depth);
2297 if (*pixmap == NO_PIXMAP)
2298 {
2299 *ximg = NULL;
2300 image_error ("Unable to create X pixmap", Qnil, Qnil);
2301 return 0;
2302 }
2303
2304 LockPixels (GetGWorldPixMap (*pixmap));
2305 *ximg = *pixmap;
2306 return 1;
2307
2308 #endif /* MAC_OS */
2309 }
2310
2311
2312 /* Destroy XImage XIMG. Free XIMG->data. */
2313
2314 static void
2315 x_destroy_x_image (ximg)
2316 XImagePtr ximg;
2317 {
2318 xassert (interrupt_input_blocked);
2319 if (ximg)
2320 {
2321 #ifdef HAVE_X_WINDOWS
2322 xfree (ximg->data);
2323 ximg->data = NULL;
2324 XDestroyImage (ximg);
2325 #endif /* HAVE_X_WINDOWS */
2326 #ifdef HAVE_NTGUI
2327 /* Data will be freed by DestroyObject. */
2328 ximg->data = NULL;
2329 xfree (ximg);
2330 #endif /* HAVE_NTGUI */
2331 #ifdef MAC_OS
2332 XDestroyImage (ximg);
2333 #endif /* MAC_OS */
2334 }
2335 }
2336
2337
2338 /* Put XImage XIMG into pixmap PIXMAP on frame F. WIDTH and HEIGHT
2339 are width and height of both the image and pixmap. */
2340
2341 static void
2342 x_put_x_image (f, ximg, pixmap, width, height)
2343 struct frame *f;
2344 XImagePtr ximg;
2345 Pixmap pixmap;
2346 int width, height;
2347 {
2348 #ifdef HAVE_X_WINDOWS
2349 GC gc;
2350
2351 xassert (interrupt_input_blocked);
2352 gc = XCreateGC (FRAME_X_DISPLAY (f), pixmap, 0, NULL);
2353 XPutImage (FRAME_X_DISPLAY (f), pixmap, gc, ximg, 0, 0, 0, 0, width, height);
2354 XFreeGC (FRAME_X_DISPLAY (f), gc);
2355 #endif /* HAVE_X_WINDOWS */
2356
2357 #ifdef HAVE_NTGUI
2358 #if 0 /* I don't think this is necessary looking at where it is used. */
2359 HDC hdc = get_frame_dc (f);
2360 SetDIBits (hdc, pixmap, 0, height, ximg->data, &(ximg->info), DIB_RGB_COLORS);
2361 release_frame_dc (f, hdc);
2362 #endif
2363 #endif /* HAVE_NTGUI */
2364
2365 #ifdef MAC_OS
2366 xassert (ximg == pixmap);
2367 #endif /* MAC_OS */
2368 }
2369
2370 \f
2371 /***********************************************************************
2372 File Handling
2373 ***********************************************************************/
2374
2375 static unsigned char *slurp_file P_ ((char *, int *));
2376
2377
2378 /* Find image file FILE. Look in data-directory/images, then
2379 x-bitmap-file-path. Value is the encoded full name of the file
2380 found, or nil if not found. */
2381
2382 Lisp_Object
2383 x_find_image_file (file)
2384 Lisp_Object file;
2385 {
2386 Lisp_Object file_found, search_path;
2387 struct gcpro gcpro1, gcpro2;
2388 int fd;
2389
2390 file_found = Qnil;
2391 /* TODO I think this should use something like image-load-path
2392 instead. Unfortunately, that can contain non-string elements. */
2393 search_path = Fcons (Fexpand_file_name (build_string ("images"),
2394 Vdata_directory),
2395 Vx_bitmap_file_path);
2396 GCPRO2 (file_found, search_path);
2397
2398 /* Try to find FILE in data-directory/images, then x-bitmap-file-path. */
2399 fd = openp (search_path, file, Qnil, &file_found, Qnil);
2400
2401 if (fd == -1)
2402 file_found = Qnil;
2403 else
2404 {
2405 file_found = ENCODE_FILE (file_found);
2406 close (fd);
2407 }
2408
2409 UNGCPRO;
2410 return file_found;
2411 }
2412
2413
2414 /* Read FILE into memory. Value is a pointer to a buffer allocated
2415 with xmalloc holding FILE's contents. Value is null if an error
2416 occurred. *SIZE is set to the size of the file. */
2417
2418 static unsigned char *
2419 slurp_file (file, size)
2420 char *file;
2421 int *size;
2422 {
2423 FILE *fp = NULL;
2424 unsigned char *buf = NULL;
2425 struct stat st;
2426
2427 if (stat (file, &st) == 0
2428 && (fp = fopen (file, "rb")) != NULL
2429 && (buf = (unsigned char *) xmalloc (st.st_size),
2430 fread (buf, 1, st.st_size, fp) == st.st_size))
2431 {
2432 *size = st.st_size;
2433 fclose (fp);
2434 }
2435 else
2436 {
2437 if (fp)
2438 fclose (fp);
2439 if (buf)
2440 {
2441 xfree (buf);
2442 buf = NULL;
2443 }
2444 }
2445
2446 return buf;
2447 }
2448
2449
2450 \f
2451 #ifdef MAC_OS
2452
2453 /***********************************************************************
2454 MAC Image Load Functions
2455 ***********************************************************************/
2456
2457 static int image_load_quicktime P_ ((struct frame *, struct image *img,
2458 OSType));
2459 #ifdef MAC_OSX
2460 static int image_load_quartz2d P_ ((struct frame *, struct image *img, int));
2461 #endif
2462
2463 static OSErr
2464 find_image_fsspec (specified_file, file, fss)
2465 Lisp_Object specified_file, *file;
2466 FSSpec *fss;
2467 {
2468 OSErr err;
2469 AEDesc desc;
2470
2471 *file = x_find_image_file (specified_file);
2472 if (!STRINGP (*file))
2473 return fnfErr; /* file or directory not found;
2474 incomplete pathname */
2475 /* Try to open the image file. */
2476 err = AECoercePtr (TYPE_FILE_NAME, SDATA (*file),
2477 SBYTES (*file), typeFSS, &desc);
2478 if (err == noErr)
2479 {
2480 #if TARGET_API_MAC_CARBON
2481 err = AEGetDescData (&desc, fss, sizeof (FSSpec));
2482 #else
2483 *fss = *(FSSpec *)(*(desc.dataHandle));
2484 #endif
2485 AEDisposeDesc (&desc);
2486 }
2487 return err;
2488 }
2489
2490 static int
2491 image_load_qt_1 (f, img, type, fss, dh)
2492 struct frame *f;
2493 struct image *img;
2494 OSType type;
2495 const FSSpec *fss;
2496 Handle dh;
2497 {
2498 ComponentResult err;
2499 GraphicsImportComponent gi;
2500 Rect rect;
2501 int width, height;
2502 ImageDescriptionHandle desc_handle;
2503 short draw_all_pixels;
2504 Lisp_Object specified_bg;
2505 XColor color;
2506 XImagePtr ximg;
2507 RGBColor bg_color;
2508
2509 err = OpenADefaultComponent (GraphicsImporterComponentType, type, &gi);
2510 if (err != noErr)
2511 {
2512 image_error ("Cannot get importer component for `%s'", img->spec, Qnil);
2513 return 0;
2514 }
2515 if (dh == NULL)
2516 {
2517 /* read from file system spec */
2518 err = GraphicsImportSetDataFile (gi, fss);
2519 if (err != noErr)
2520 {
2521 image_error ("Cannot set fsspec to graphics importer for '%s'",
2522 img->spec, Qnil);
2523 goto error;
2524 }
2525 }
2526 else
2527 {
2528 /* read from data handle */
2529 err = GraphicsImportSetDataHandle (gi, dh);
2530 if (err != noErr)
2531 {
2532 image_error ("Cannot set data handle to graphics importer for `%s'",
2533 img->spec, Qnil);
2534 goto error;
2535 }
2536 }
2537 err = GraphicsImportGetImageDescription (gi, &desc_handle);
2538 if (err != noErr || desc_handle == NULL)
2539 {
2540 image_error ("Error reading `%s'", img->spec, Qnil);
2541 goto error;
2542 }
2543 width = img->width = (*desc_handle)->width;
2544 height = img->height = (*desc_handle)->height;
2545 DisposeHandle ((Handle)desc_handle);
2546
2547 if (!check_image_size (f, width, height))
2548 {
2549 image_error ("Invalid image size", Qnil, Qnil);
2550 goto error;
2551 }
2552
2553 err = GraphicsImportDoesDrawAllPixels (gi, &draw_all_pixels);
2554 #if 0
2555 /* Don't check the error code here. It may have an undocumented
2556 value -32766. */
2557 if (err != noErr)
2558 {
2559 image_error ("Error reading `%s'", img->spec, Qnil);
2560 goto error;
2561 }
2562 #endif
2563 if (draw_all_pixels != graphicsImporterDrawsAllPixels)
2564 {
2565 specified_bg = image_spec_value (img->spec, QCbackground, NULL);
2566 if (!STRINGP (specified_bg) ||
2567 !mac_defined_color (f, SDATA (specified_bg), &color, 0))
2568 {
2569 color.pixel = FRAME_BACKGROUND_PIXEL (f);
2570 color.red = RED16_FROM_ULONG (color.pixel);
2571 color.green = GREEN16_FROM_ULONG (color.pixel);
2572 color.blue = BLUE16_FROM_ULONG (color.pixel);
2573 }
2574 }
2575
2576 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
2577 goto error;
2578 if (draw_all_pixels != graphicsImporterDrawsAllPixels)
2579 {
2580 CGrafPtr old_port;
2581 GDHandle old_gdh;
2582
2583 GetGWorld (&old_port, &old_gdh);
2584 SetGWorld (ximg, NULL);
2585 bg_color.red = color.red;
2586 bg_color.green = color.green;
2587 bg_color.blue = color.blue;
2588 RGBBackColor (&bg_color);
2589 #if TARGET_API_MAC_CARBON
2590 GetPortBounds (ximg, &rect);
2591 EraseRect (&rect);
2592 #else
2593 EraseRect (&(ximg->portRect));
2594 #endif
2595 SetGWorld (old_port, old_gdh);
2596 }
2597 GraphicsImportSetGWorld (gi, ximg, NULL);
2598 GraphicsImportDraw (gi);
2599 CloseComponent (gi);
2600
2601 /* Maybe fill in the background field while we have ximg handy. */
2602 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
2603 IMAGE_BACKGROUND (img, f, ximg);
2604
2605 /* Put the image into the pixmap. */
2606 x_put_x_image (f, ximg, img->pixmap, width, height);
2607 x_destroy_x_image (ximg);
2608 return 1;
2609
2610 error:
2611 CloseComponent (gi);
2612 return 0;
2613 }
2614
2615
2616 /* Load an image using the QuickTime Graphics Importer.
2617 Note: The alpha channel does not work for PNG images. */
2618 static int
2619 image_load_quicktime (f, img, type)
2620 struct frame *f;
2621 struct image *img;
2622 OSType type;
2623 {
2624 Lisp_Object specified_file;
2625 Lisp_Object specified_data;
2626 OSErr err;
2627
2628 specified_file = image_spec_value (img->spec, QCfile, NULL);
2629 specified_data = image_spec_value (img->spec, QCdata, NULL);
2630
2631 if (NILP (specified_data))
2632 {
2633 /* Read from a file */
2634 Lisp_Object file;
2635 FSSpec fss;
2636
2637 err = find_image_fsspec (specified_file, &file, &fss);
2638 if (err != noErr)
2639 {
2640 if (err == fnfErr)
2641 image_error ("Cannot find image file `%s'", specified_file, Qnil);
2642 else
2643 image_error ("Cannot open `%s'", file, Qnil);
2644 return 0;
2645 }
2646 return image_load_qt_1 (f, img, type, &fss, NULL);
2647 }
2648 else
2649 {
2650 /* Memory source! */
2651 int success_p;
2652 Handle dh;
2653
2654 err = PtrToHand (SDATA (specified_data), &dh, SBYTES (specified_data));
2655 if (err != noErr)
2656 {
2657 image_error ("Cannot allocate data handle for `%s'",
2658 img->spec, Qnil);
2659 return 0;
2660 }
2661 success_p = image_load_qt_1 (f, img, type, NULL, dh);
2662 DisposeHandle (dh);
2663 return success_p;
2664 }
2665 }
2666
2667
2668 #ifdef MAC_OSX
2669 /* Load a PNG/JPEG image using Quartz 2D decoding routines.
2670 CGImageCreateWithPNGDataProvider is provided after Mac OS X 10.2.
2671 So don't use this function directly but determine at runtime
2672 whether it exists. */
2673 typedef CGImageRef (*CGImageCreateWithPNGDataProviderProcType)
2674 (CGDataProviderRef, const float [], bool, CGColorRenderingIntent);
2675 static CGImageCreateWithPNGDataProviderProcType MyCGImageCreateWithPNGDataProvider;
2676
2677
2678 static void
2679 init_image_func_pointer ()
2680 {
2681 if (NSIsSymbolNameDefined ("_CGImageCreateWithPNGDataProvider"))
2682 {
2683 MyCGImageCreateWithPNGDataProvider
2684 = (CGImageCreateWithPNGDataProviderProcType)
2685 NSAddressOfSymbol (NSLookupAndBindSymbol
2686 ("_CGImageCreateWithPNGDataProvider"));
2687 }
2688 else
2689 MyCGImageCreateWithPNGDataProvider = NULL;
2690 }
2691
2692
2693 static int
2694 image_load_quartz2d (f, img, png_p)
2695 struct frame *f;
2696 struct image *img;
2697 int png_p;
2698 {
2699 Lisp_Object file, specified_file;
2700 Lisp_Object specified_data, specified_bg;
2701 struct gcpro gcpro1;
2702 CGDataProviderRef source;
2703 CGImageRef image;
2704 int width, height;
2705 XColor color;
2706 XImagePtr ximg = NULL;
2707 CGContextRef context;
2708 CGRect rectangle;
2709
2710 /* Open the file. */
2711 specified_file = image_spec_value (img->spec, QCfile, NULL);
2712 specified_data = image_spec_value (img->spec, QCdata, NULL);
2713
2714 file = Qnil;
2715 GCPRO1 (file);
2716
2717 if (NILP (specified_data))
2718 {
2719 CFStringRef path;
2720 CFURLRef url;
2721
2722 file = x_find_image_file (specified_file);
2723 if (!STRINGP (file))
2724 {
2725 image_error ("Cannot find image file `%s'", specified_file, Qnil);
2726 UNGCPRO;
2727 return 0;
2728 }
2729 path = cfstring_create_with_utf8_cstring (SDATA (file));
2730 url = CFURLCreateWithFileSystemPath (NULL, path,
2731 kCFURLPOSIXPathStyle, 0);
2732 CFRelease (path);
2733 source = CGDataProviderCreateWithURL (url);
2734 CFRelease (url);
2735 }
2736 else
2737 source = CGDataProviderCreateWithData (NULL, SDATA (specified_data),
2738 SBYTES (specified_data), NULL);
2739
2740 if (png_p)
2741 image = (*MyCGImageCreateWithPNGDataProvider) (source, NULL, FALSE,
2742 kCGRenderingIntentDefault);
2743 else
2744 image = CGImageCreateWithJPEGDataProvider (source, NULL, FALSE,
2745 kCGRenderingIntentDefault);
2746
2747 CGDataProviderRelease (source);
2748 if (image == NULL)
2749 {
2750 UNGCPRO;
2751 image_error ("Error reading image `%s'", img->spec, Qnil);
2752 return 0;
2753 }
2754 width = img->width = CGImageGetWidth (image);
2755 height = img->height = CGImageGetHeight (image);
2756
2757 if (!check_image_size (f, width, height))
2758 {
2759 CGImageRelease (image);
2760 UNGCPRO;
2761 image_error ("Invalid image size", Qnil, Qnil);
2762 return 0;
2763 }
2764
2765 if (png_p)
2766 {
2767 specified_bg = image_spec_value (img->spec, QCbackground, NULL);
2768 if (!STRINGP (specified_bg) ||
2769 !mac_defined_color (f, SDATA (specified_bg), &color, 0))
2770 {
2771 color.pixel = FRAME_BACKGROUND_PIXEL (f);
2772 color.red = RED16_FROM_ULONG (color.pixel);
2773 color.green = GREEN16_FROM_ULONG (color.pixel);
2774 color.blue = BLUE16_FROM_ULONG (color.pixel);
2775 }
2776 }
2777
2778 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
2779 {
2780 CGImageRelease (image);
2781 UNGCPRO;
2782 return 0;
2783 }
2784 rectangle = CGRectMake (0, 0, width, height);
2785 QDBeginCGContext (ximg, &context);
2786 if (png_p)
2787 {
2788 CGContextSetRGBFillColor (context, color.red / 65535.0,
2789 color.green / 65535.0,
2790 color.blue / 65535.0, 1.0);
2791 CGContextFillRect (context, rectangle);
2792 }
2793 CGContextDrawImage (context, rectangle, image);
2794 QDEndCGContext (ximg, &context);
2795 CGImageRelease (image);
2796
2797 /* Maybe fill in the background field while we have ximg handy. */
2798 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
2799 IMAGE_BACKGROUND (img, f, ximg);
2800
2801 /* Put the image into the pixmap. */
2802 x_put_x_image (f, ximg, img->pixmap, width, height);
2803 x_destroy_x_image (ximg);
2804 UNGCPRO;
2805 return 1;
2806 }
2807 #endif
2808
2809 #endif /* MAC_OS */
2810
2811 \f
2812 /***********************************************************************
2813 XBM images
2814 ***********************************************************************/
2815
2816 static int xbm_scan P_ ((unsigned char **, unsigned char *, char *, int *));
2817 static int xbm_load P_ ((struct frame *f, struct image *img));
2818 static int xbm_load_image P_ ((struct frame *f, struct image *img,
2819 unsigned char *, unsigned char *));
2820 static int xbm_image_p P_ ((Lisp_Object object));
2821 static int xbm_read_bitmap_data P_ ((struct frame *f,
2822 unsigned char *, unsigned char *,
2823 int *, int *, unsigned char **));
2824 static int xbm_file_p P_ ((Lisp_Object));
2825
2826
2827 /* Indices of image specification fields in xbm_format, below. */
2828
2829 enum xbm_keyword_index
2830 {
2831 XBM_TYPE,
2832 XBM_FILE,
2833 XBM_WIDTH,
2834 XBM_HEIGHT,
2835 XBM_DATA,
2836 XBM_FOREGROUND,
2837 XBM_BACKGROUND,
2838 XBM_ASCENT,
2839 XBM_MARGIN,
2840 XBM_RELIEF,
2841 XBM_ALGORITHM,
2842 XBM_HEURISTIC_MASK,
2843 XBM_MASK,
2844 XBM_LAST
2845 };
2846
2847 /* Vector of image_keyword structures describing the format
2848 of valid XBM image specifications. */
2849
2850 static struct image_keyword xbm_format[XBM_LAST] =
2851 {
2852 {":type", IMAGE_SYMBOL_VALUE, 1},
2853 {":file", IMAGE_STRING_VALUE, 0},
2854 {":width", IMAGE_POSITIVE_INTEGER_VALUE, 0},
2855 {":height", IMAGE_POSITIVE_INTEGER_VALUE, 0},
2856 {":data", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
2857 {":foreground", IMAGE_STRING_OR_NIL_VALUE, 0},
2858 {":background", IMAGE_STRING_OR_NIL_VALUE, 0},
2859 {":ascent", IMAGE_ASCENT_VALUE, 0},
2860 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
2861 {":relief", IMAGE_INTEGER_VALUE, 0},
2862 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
2863 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
2864 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0}
2865 };
2866
2867 /* Structure describing the image type XBM. */
2868
2869 static struct image_type xbm_type =
2870 {
2871 &Qxbm,
2872 xbm_image_p,
2873 xbm_load,
2874 x_clear_image,
2875 NULL
2876 };
2877
2878 /* Tokens returned from xbm_scan. */
2879
2880 enum xbm_token
2881 {
2882 XBM_TK_IDENT = 256,
2883 XBM_TK_NUMBER
2884 };
2885
2886
2887 /* Return non-zero if OBJECT is a valid XBM-type image specification.
2888 A valid specification is a list starting with the symbol `image'
2889 The rest of the list is a property list which must contain an
2890 entry `:type xbm..
2891
2892 If the specification specifies a file to load, it must contain
2893 an entry `:file FILENAME' where FILENAME is a string.
2894
2895 If the specification is for a bitmap loaded from memory it must
2896 contain `:width WIDTH', `:height HEIGHT', and `:data DATA', where
2897 WIDTH and HEIGHT are integers > 0. DATA may be:
2898
2899 1. a string large enough to hold the bitmap data, i.e. it must
2900 have a size >= (WIDTH + 7) / 8 * HEIGHT
2901
2902 2. a bool-vector of size >= WIDTH * HEIGHT
2903
2904 3. a vector of strings or bool-vectors, one for each line of the
2905 bitmap.
2906
2907 4. a string containing an in-memory XBM file. WIDTH and HEIGHT
2908 may not be specified in this case because they are defined in the
2909 XBM file.
2910
2911 Both the file and data forms may contain the additional entries
2912 `:background COLOR' and `:foreground COLOR'. If not present,
2913 foreground and background of the frame on which the image is
2914 displayed is used. */
2915
2916 static int
2917 xbm_image_p (object)
2918 Lisp_Object object;
2919 {
2920 struct image_keyword kw[XBM_LAST];
2921
2922 bcopy (xbm_format, kw, sizeof kw);
2923 if (!parse_image_spec (object, kw, XBM_LAST, Qxbm))
2924 return 0;
2925
2926 xassert (EQ (kw[XBM_TYPE].value, Qxbm));
2927
2928 if (kw[XBM_FILE].count)
2929 {
2930 if (kw[XBM_WIDTH].count || kw[XBM_HEIGHT].count || kw[XBM_DATA].count)
2931 return 0;
2932 }
2933 else if (kw[XBM_DATA].count && xbm_file_p (kw[XBM_DATA].value))
2934 {
2935 /* In-memory XBM file. */
2936 if (kw[XBM_WIDTH].count || kw[XBM_HEIGHT].count || kw[XBM_FILE].count)
2937 return 0;
2938 }
2939 else
2940 {
2941 Lisp_Object data;
2942 int width, height;
2943
2944 /* Entries for `:width', `:height' and `:data' must be present. */
2945 if (!kw[XBM_WIDTH].count
2946 || !kw[XBM_HEIGHT].count
2947 || !kw[XBM_DATA].count)
2948 return 0;
2949
2950 data = kw[XBM_DATA].value;
2951 width = XFASTINT (kw[XBM_WIDTH].value);
2952 height = XFASTINT (kw[XBM_HEIGHT].value);
2953
2954 /* Check type of data, and width and height against contents of
2955 data. */
2956 if (VECTORP (data))
2957 {
2958 int i;
2959
2960 /* Number of elements of the vector must be >= height. */
2961 if (XVECTOR (data)->size < height)
2962 return 0;
2963
2964 /* Each string or bool-vector in data must be large enough
2965 for one line of the image. */
2966 for (i = 0; i < height; ++i)
2967 {
2968 Lisp_Object elt = XVECTOR (data)->contents[i];
2969
2970 if (STRINGP (elt))
2971 {
2972 if (SCHARS (elt)
2973 < (width + BITS_PER_CHAR - 1) / BITS_PER_CHAR)
2974 return 0;
2975 }
2976 else if (BOOL_VECTOR_P (elt))
2977 {
2978 if (XBOOL_VECTOR (elt)->size < width)
2979 return 0;
2980 }
2981 else
2982 return 0;
2983 }
2984 }
2985 else if (STRINGP (data))
2986 {
2987 if (SCHARS (data)
2988 < (width + BITS_PER_CHAR - 1) / BITS_PER_CHAR * height)
2989 return 0;
2990 }
2991 else if (BOOL_VECTOR_P (data))
2992 {
2993 if (XBOOL_VECTOR (data)->size < width * height)
2994 return 0;
2995 }
2996 else
2997 return 0;
2998 }
2999
3000 return 1;
3001 }
3002
3003
3004 /* Scan a bitmap file. FP is the stream to read from. Value is
3005 either an enumerator from enum xbm_token, or a character for a
3006 single-character token, or 0 at end of file. If scanning an
3007 identifier, store the lexeme of the identifier in SVAL. If
3008 scanning a number, store its value in *IVAL. */
3009
3010 static int
3011 xbm_scan (s, end, sval, ival)
3012 unsigned char **s, *end;
3013 char *sval;
3014 int *ival;
3015 {
3016 unsigned int c;
3017
3018 loop:
3019
3020 /* Skip white space. */
3021 while (*s < end && (c = *(*s)++, isspace (c)))
3022 ;
3023
3024 if (*s >= end)
3025 c = 0;
3026 else if (isdigit (c))
3027 {
3028 int value = 0, digit;
3029
3030 if (c == '0' && *s < end)
3031 {
3032 c = *(*s)++;
3033 if (c == 'x' || c == 'X')
3034 {
3035 while (*s < end)
3036 {
3037 c = *(*s)++;
3038 if (isdigit (c))
3039 digit = c - '0';
3040 else if (c >= 'a' && c <= 'f')
3041 digit = c - 'a' + 10;
3042 else if (c >= 'A' && c <= 'F')
3043 digit = c - 'A' + 10;
3044 else
3045 break;
3046 value = 16 * value + digit;
3047 }
3048 }
3049 else if (isdigit (c))
3050 {
3051 value = c - '0';
3052 while (*s < end
3053 && (c = *(*s)++, isdigit (c)))
3054 value = 8 * value + c - '0';
3055 }
3056 }
3057 else
3058 {
3059 value = c - '0';
3060 while (*s < end
3061 && (c = *(*s)++, isdigit (c)))
3062 value = 10 * value + c - '0';
3063 }
3064
3065 if (*s < end)
3066 *s = *s - 1;
3067 *ival = value;
3068 c = XBM_TK_NUMBER;
3069 }
3070 else if (isalpha (c) || c == '_')
3071 {
3072 *sval++ = c;
3073 while (*s < end
3074 && (c = *(*s)++, (isalnum (c) || c == '_')))
3075 *sval++ = c;
3076 *sval = 0;
3077 if (*s < end)
3078 *s = *s - 1;
3079 c = XBM_TK_IDENT;
3080 }
3081 else if (c == '/' && **s == '*')
3082 {
3083 /* C-style comment. */
3084 ++*s;
3085 while (**s && (**s != '*' || *(*s + 1) != '/'))
3086 ++*s;
3087 if (**s)
3088 {
3089 *s += 2;
3090 goto loop;
3091 }
3092 }
3093
3094 return c;
3095 }
3096
3097 #ifdef HAVE_NTGUI
3098
3099 /* Create a Windows bitmap from X bitmap data. */
3100 static HBITMAP
3101 w32_create_pixmap_from_bitmap_data (int width, int height, char *data)
3102 {
3103 static unsigned char swap_nibble[16]
3104 = { 0x0, 0x8, 0x4, 0xc, /* 0000 1000 0100 1100 */
3105 0x2, 0xa, 0x6, 0xe, /* 0010 1010 0110 1110 */
3106 0x1, 0x9, 0x5, 0xd, /* 0001 1001 0101 1101 */
3107 0x3, 0xb, 0x7, 0xf }; /* 0011 1011 0111 1111 */
3108 int i, j, w1, w2;
3109 unsigned char *bits, *p;
3110 HBITMAP bmp;
3111
3112 w1 = (width + 7) / 8; /* nb of 8bits elt in X bitmap */
3113 w2 = ((width + 15) / 16) * 2; /* nb of 16bits elt in W32 bitmap */
3114 bits = (unsigned char *) alloca (height * w2);
3115 bzero (bits, height * w2);
3116 for (i = 0; i < height; i++)
3117 {
3118 p = bits + i*w2;
3119 for (j = 0; j < w1; j++)
3120 {
3121 /* Bitswap XBM bytes to match how Windows does things. */
3122 unsigned char c = *data++;
3123 *p++ = (unsigned char)((swap_nibble[c & 0xf] << 4)
3124 | (swap_nibble[(c>>4) & 0xf]));
3125 }
3126 }
3127 bmp = CreateBitmap (width, height, 1, 1, (char *) bits);
3128
3129 return bmp;
3130 }
3131
3132 static void
3133 convert_mono_to_color_image (f, img, foreground, background)
3134 struct frame *f;
3135 struct image *img;
3136 COLORREF foreground, background;
3137 {
3138 HDC hdc, old_img_dc, new_img_dc;
3139 HGDIOBJ old_prev, new_prev;
3140 HBITMAP new_pixmap;
3141
3142 hdc = get_frame_dc (f);
3143 old_img_dc = CreateCompatibleDC (hdc);
3144 new_img_dc = CreateCompatibleDC (hdc);
3145 new_pixmap = CreateCompatibleBitmap (hdc, img->width, img->height);
3146 release_frame_dc (f, hdc);
3147 old_prev = SelectObject (old_img_dc, img->pixmap);
3148 new_prev = SelectObject (new_img_dc, new_pixmap);
3149 /* Windows convention for mono bitmaps is black = background,
3150 white = foreground. */
3151 SetTextColor (new_img_dc, background);
3152 SetBkColor (new_img_dc, foreground);
3153
3154 BitBlt (new_img_dc, 0, 0, img->width, img->height, old_img_dc,
3155 0, 0, SRCCOPY);
3156
3157 SelectObject (old_img_dc, old_prev);
3158 SelectObject (new_img_dc, new_prev);
3159 DeleteDC (old_img_dc);
3160 DeleteDC (new_img_dc);
3161 DeleteObject (img->pixmap);
3162 if (new_pixmap == 0)
3163 fprintf (stderr, "Failed to convert image to color.\n");
3164 else
3165 img->pixmap = new_pixmap;
3166 }
3167
3168 #define XBM_BIT_SHUFFLE(b) (~(b))
3169
3170 #else
3171
3172 #define XBM_BIT_SHUFFLE(b) (b)
3173
3174 #endif /* HAVE_NTGUI */
3175
3176
3177 static void
3178 Create_Pixmap_From_Bitmap_Data (f, img, data, fg, bg, non_default_colors)
3179 struct frame *f;
3180 struct image *img;
3181 char *data;
3182 RGB_PIXEL_COLOR fg, bg;
3183 int non_default_colors;
3184 {
3185 #ifdef HAVE_NTGUI
3186 img->pixmap
3187 = w32_create_pixmap_from_bitmap_data (img->width, img->height, data);
3188
3189 /* If colors were specified, transfer the bitmap to a color one. */
3190 if (non_default_colors)
3191 convert_mono_to_color_image (f, img, fg, bg);
3192 #else
3193 img->pixmap
3194 = XCreatePixmapFromBitmapData (FRAME_X_DISPLAY (f),
3195 FRAME_X_WINDOW (f),
3196 data,
3197 img->width, img->height,
3198 fg, bg,
3199 DefaultDepthOfScreen (FRAME_X_SCREEN (f)));
3200 #endif /* HAVE_NTGUI */
3201 }
3202
3203
3204
3205 /* Replacement for XReadBitmapFileData which isn't available under old
3206 X versions. CONTENTS is a pointer to a buffer to parse; END is the
3207 buffer's end. Set *WIDTH and *HEIGHT to the width and height of
3208 the image. Return in *DATA the bitmap data allocated with xmalloc.
3209 Value is non-zero if successful. DATA null means just test if
3210 CONTENTS looks like an in-memory XBM file. */
3211
3212 static int
3213 xbm_read_bitmap_data (f, contents, end, width, height, data)
3214 struct frame *f;
3215 unsigned char *contents, *end;
3216 int *width, *height;
3217 unsigned char **data;
3218 {
3219 unsigned char *s = contents;
3220 char buffer[BUFSIZ];
3221 int padding_p = 0;
3222 int v10 = 0;
3223 int bytes_per_line, i, nbytes;
3224 unsigned char *p;
3225 int value;
3226 int LA1;
3227
3228 #define match() \
3229 LA1 = xbm_scan (&s, end, buffer, &value)
3230
3231 #define expect(TOKEN) \
3232 if (LA1 != (TOKEN)) \
3233 goto failure; \
3234 else \
3235 match ()
3236
3237 #define expect_ident(IDENT) \
3238 if (LA1 == XBM_TK_IDENT && strcmp (buffer, (IDENT)) == 0) \
3239 match (); \
3240 else \
3241 goto failure
3242
3243 *width = *height = -1;
3244 if (data)
3245 *data = NULL;
3246 LA1 = xbm_scan (&s, end, buffer, &value);
3247
3248 /* Parse defines for width, height and hot-spots. */
3249 while (LA1 == '#')
3250 {
3251 match ();
3252 expect_ident ("define");
3253 expect (XBM_TK_IDENT);
3254
3255 if (LA1 == XBM_TK_NUMBER)
3256 {
3257 char *p = strrchr (buffer, '_');
3258 p = p ? p + 1 : buffer;
3259 if (strcmp (p, "width") == 0)
3260 *width = value;
3261 else if (strcmp (p, "height") == 0)
3262 *height = value;
3263 }
3264 expect (XBM_TK_NUMBER);
3265 }
3266
3267 if (!check_image_size (f, *width, *height))
3268 goto failure;
3269 else if (data == NULL)
3270 goto success;
3271
3272 /* Parse bits. Must start with `static'. */
3273 expect_ident ("static");
3274 if (LA1 == XBM_TK_IDENT)
3275 {
3276 if (strcmp (buffer, "unsigned") == 0)
3277 {
3278 match ();
3279 expect_ident ("char");
3280 }
3281 else if (strcmp (buffer, "short") == 0)
3282 {
3283 match ();
3284 v10 = 1;
3285 if (*width % 16 && *width % 16 < 9)
3286 padding_p = 1;
3287 }
3288 else if (strcmp (buffer, "char") == 0)
3289 match ();
3290 else
3291 goto failure;
3292 }
3293 else
3294 goto failure;
3295
3296 expect (XBM_TK_IDENT);
3297 expect ('[');
3298 expect (']');
3299 expect ('=');
3300 expect ('{');
3301
3302 bytes_per_line = (*width + 7) / 8 + padding_p;
3303 nbytes = bytes_per_line * *height;
3304 p = *data = (unsigned char *) xmalloc (nbytes);
3305
3306 if (v10)
3307 {
3308 for (i = 0; i < nbytes; i += 2)
3309 {
3310 int val = value;
3311 expect (XBM_TK_NUMBER);
3312
3313 *p++ = XBM_BIT_SHUFFLE (val);
3314 if (!padding_p || ((i + 2) % bytes_per_line))
3315 *p++ = XBM_BIT_SHUFFLE (value >> 8);
3316
3317 if (LA1 == ',' || LA1 == '}')
3318 match ();
3319 else
3320 goto failure;
3321 }
3322 }
3323 else
3324 {
3325 for (i = 0; i < nbytes; ++i)
3326 {
3327 int val = value;
3328 expect (XBM_TK_NUMBER);
3329
3330 *p++ = XBM_BIT_SHUFFLE (val);
3331
3332 if (LA1 == ',' || LA1 == '}')
3333 match ();
3334 else
3335 goto failure;
3336 }
3337 }
3338
3339 success:
3340 return 1;
3341
3342 failure:
3343
3344 if (data && *data)
3345 {
3346 xfree (*data);
3347 *data = NULL;
3348 }
3349 return 0;
3350
3351 #undef match
3352 #undef expect
3353 #undef expect_ident
3354 }
3355
3356
3357 /* Load XBM image IMG which will be displayed on frame F from buffer
3358 CONTENTS. END is the end of the buffer. Value is non-zero if
3359 successful. */
3360
3361 static int
3362 xbm_load_image (f, img, contents, end)
3363 struct frame *f;
3364 struct image *img;
3365 unsigned char *contents, *end;
3366 {
3367 int rc;
3368 unsigned char *data;
3369 int success_p = 0;
3370
3371 rc = xbm_read_bitmap_data (f, contents, end, &img->width, &img->height, &data);
3372 if (rc)
3373 {
3374 unsigned long foreground = FRAME_FOREGROUND_PIXEL (f);
3375 unsigned long background = FRAME_BACKGROUND_PIXEL (f);
3376 int non_default_colors = 0;
3377 Lisp_Object value;
3378
3379 xassert (img->width > 0 && img->height > 0);
3380
3381 /* Get foreground and background colors, maybe allocate colors. */
3382 value = image_spec_value (img->spec, QCforeground, NULL);
3383 if (!NILP (value))
3384 {
3385 foreground = x_alloc_image_color (f, img, value, foreground);
3386 non_default_colors = 1;
3387 }
3388 value = image_spec_value (img->spec, QCbackground, NULL);
3389 if (!NILP (value))
3390 {
3391 background = x_alloc_image_color (f, img, value, background);
3392 img->background = background;
3393 img->background_valid = 1;
3394 non_default_colors = 1;
3395 }
3396
3397 Create_Pixmap_From_Bitmap_Data (f, img, data,
3398 foreground, background,
3399 non_default_colors);
3400 xfree (data);
3401
3402 if (img->pixmap == NO_PIXMAP)
3403 {
3404 x_clear_image (f, img);
3405 image_error ("Unable to create X pixmap for `%s'", img->spec, Qnil);
3406 }
3407 else
3408 success_p = 1;
3409 }
3410 else
3411 image_error ("Error loading XBM image `%s'", img->spec, Qnil);
3412
3413 return success_p;
3414 }
3415
3416
3417 /* Value is non-zero if DATA looks like an in-memory XBM file. */
3418
3419 static int
3420 xbm_file_p (data)
3421 Lisp_Object data;
3422 {
3423 int w, h;
3424 return (STRINGP (data)
3425 && xbm_read_bitmap_data (NULL, SDATA (data),
3426 (SDATA (data)
3427 + SBYTES (data)),
3428 &w, &h, NULL));
3429 }
3430
3431
3432 /* Fill image IMG which is used on frame F with pixmap data. Value is
3433 non-zero if successful. */
3434
3435 static int
3436 xbm_load (f, img)
3437 struct frame *f;
3438 struct image *img;
3439 {
3440 int success_p = 0;
3441 Lisp_Object file_name;
3442
3443 xassert (xbm_image_p (img->spec));
3444
3445 /* If IMG->spec specifies a file name, create a non-file spec from it. */
3446 file_name = image_spec_value (img->spec, QCfile, NULL);
3447 if (STRINGP (file_name))
3448 {
3449 Lisp_Object file;
3450 unsigned char *contents;
3451 int size;
3452 struct gcpro gcpro1;
3453
3454 file = x_find_image_file (file_name);
3455 GCPRO1 (file);
3456 if (!STRINGP (file))
3457 {
3458 image_error ("Cannot find image file `%s'", file_name, Qnil);
3459 UNGCPRO;
3460 return 0;
3461 }
3462
3463 contents = slurp_file (SDATA (file), &size);
3464 if (contents == NULL)
3465 {
3466 image_error ("Error loading XBM image `%s'", img->spec, Qnil);
3467 UNGCPRO;
3468 return 0;
3469 }
3470
3471 success_p = xbm_load_image (f, img, contents, contents + size);
3472 UNGCPRO;
3473 }
3474 else
3475 {
3476 struct image_keyword fmt[XBM_LAST];
3477 Lisp_Object data;
3478 unsigned long foreground = FRAME_FOREGROUND_PIXEL (f);
3479 unsigned long background = FRAME_BACKGROUND_PIXEL (f);
3480 int non_default_colors = 0;
3481 char *bits;
3482 int parsed_p;
3483 int in_memory_file_p = 0;
3484
3485 /* See if data looks like an in-memory XBM file. */
3486 data = image_spec_value (img->spec, QCdata, NULL);
3487 in_memory_file_p = xbm_file_p (data);
3488
3489 /* Parse the image specification. */
3490 bcopy (xbm_format, fmt, sizeof fmt);
3491 parsed_p = parse_image_spec (img->spec, fmt, XBM_LAST, Qxbm);
3492 xassert (parsed_p);
3493
3494 /* Get specified width, and height. */
3495 if (!in_memory_file_p)
3496 {
3497 img->width = XFASTINT (fmt[XBM_WIDTH].value);
3498 img->height = XFASTINT (fmt[XBM_HEIGHT].value);
3499 xassert (img->width > 0 && img->height > 0);
3500 }
3501
3502 /* Get foreground and background colors, maybe allocate colors. */
3503 if (fmt[XBM_FOREGROUND].count
3504 && STRINGP (fmt[XBM_FOREGROUND].value))
3505 {
3506 foreground = x_alloc_image_color (f, img, fmt[XBM_FOREGROUND].value,
3507 foreground);
3508 non_default_colors = 1;
3509 }
3510
3511 if (fmt[XBM_BACKGROUND].count
3512 && STRINGP (fmt[XBM_BACKGROUND].value))
3513 {
3514 background = x_alloc_image_color (f, img, fmt[XBM_BACKGROUND].value,
3515 background);
3516 non_default_colors = 1;
3517 }
3518
3519 if (in_memory_file_p)
3520 success_p = xbm_load_image (f, img, SDATA (data),
3521 (SDATA (data)
3522 + SBYTES (data)));
3523 else
3524 {
3525 if (VECTORP (data))
3526 {
3527 int i;
3528 char *p;
3529 int nbytes = (img->width + BITS_PER_CHAR - 1) / BITS_PER_CHAR;
3530
3531 p = bits = (char *) alloca (nbytes * img->height);
3532 for (i = 0; i < img->height; ++i, p += nbytes)
3533 {
3534 Lisp_Object line = XVECTOR (data)->contents[i];
3535 if (STRINGP (line))
3536 bcopy (SDATA (line), p, nbytes);
3537 else
3538 bcopy (XBOOL_VECTOR (line)->data, p, nbytes);
3539 }
3540 }
3541 else if (STRINGP (data))
3542 bits = SDATA (data);
3543 else
3544 bits = XBOOL_VECTOR (data)->data;
3545
3546 #ifdef WINDOWSNT
3547 {
3548 char *invertedBits;
3549 int nbytes, i;
3550 /* Windows mono bitmaps are reversed compared with X. */
3551 invertedBits = bits;
3552 nbytes = (img->width + BITS_PER_CHAR - 1) / BITS_PER_CHAR
3553 * img->height;
3554 bits = (char *) alloca(nbytes);
3555 for (i = 0; i < nbytes; i++)
3556 bits[i] = XBM_BIT_SHUFFLE (invertedBits[i]);
3557 }
3558 #endif
3559 /* Create the pixmap. */
3560
3561 Create_Pixmap_From_Bitmap_Data (f, img, bits,
3562 foreground, background,
3563 non_default_colors);
3564 if (img->pixmap)
3565 success_p = 1;
3566 else
3567 {
3568 image_error ("Unable to create pixmap for XBM image `%s'",
3569 img->spec, Qnil);
3570 x_clear_image (f, img);
3571 }
3572 }
3573 }
3574
3575 return success_p;
3576 }
3577
3578
3579 \f
3580 /***********************************************************************
3581 XPM images
3582 ***********************************************************************/
3583
3584 #if defined (HAVE_XPM) || defined (MAC_OS)
3585
3586 static int xpm_image_p P_ ((Lisp_Object object));
3587 static int xpm_load P_ ((struct frame *f, struct image *img));
3588 static int xpm_valid_color_symbols_p P_ ((Lisp_Object));
3589
3590 #endif /* HAVE_XPM || MAC_OS */
3591
3592 #ifdef HAVE_XPM
3593 #ifdef HAVE_NTGUI
3594 /* Indicate to xpm.h that we don't have Xlib. */
3595 #define FOR_MSW
3596 /* simx.h in xpm defines XColor and XImage differently than Emacs. */
3597 /* It also defines Display the same way as Emacs, but gcc 3.3 still barfs. */
3598 #define XColor xpm_XColor
3599 #define XImage xpm_XImage
3600 #define Display xpm_Display
3601 #define PIXEL_ALREADY_TYPEDEFED
3602 #include "X11/xpm.h"
3603 #undef FOR_MSW
3604 #undef XColor
3605 #undef XImage
3606 #undef Display
3607 #undef PIXEL_ALREADY_TYPEDEFED
3608 #else
3609 #include "X11/xpm.h"
3610 #endif /* HAVE_NTGUI */
3611 #endif /* HAVE_XPM */
3612
3613 #if defined (HAVE_XPM) || defined (MAC_OS)
3614 /* The symbol `xpm' identifying XPM-format images. */
3615
3616 Lisp_Object Qxpm;
3617
3618 /* Indices of image specification fields in xpm_format, below. */
3619
3620 enum xpm_keyword_index
3621 {
3622 XPM_TYPE,
3623 XPM_FILE,
3624 XPM_DATA,
3625 XPM_ASCENT,
3626 XPM_MARGIN,
3627 XPM_RELIEF,
3628 XPM_ALGORITHM,
3629 XPM_HEURISTIC_MASK,
3630 XPM_MASK,
3631 XPM_COLOR_SYMBOLS,
3632 XPM_BACKGROUND,
3633 XPM_LAST
3634 };
3635
3636 /* Vector of image_keyword structures describing the format
3637 of valid XPM image specifications. */
3638
3639 static struct image_keyword xpm_format[XPM_LAST] =
3640 {
3641 {":type", IMAGE_SYMBOL_VALUE, 1},
3642 {":file", IMAGE_STRING_VALUE, 0},
3643 {":data", IMAGE_STRING_VALUE, 0},
3644 {":ascent", IMAGE_ASCENT_VALUE, 0},
3645 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
3646 {":relief", IMAGE_INTEGER_VALUE, 0},
3647 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3648 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3649 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3650 {":color-symbols", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3651 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
3652 };
3653
3654 /* Structure describing the image type XPM. */
3655
3656 static struct image_type xpm_type =
3657 {
3658 &Qxpm,
3659 xpm_image_p,
3660 xpm_load,
3661 x_clear_image,
3662 NULL
3663 };
3664
3665 #ifdef HAVE_X_WINDOWS
3666
3667 /* Define ALLOC_XPM_COLORS if we can use Emacs' own color allocation
3668 functions for allocating image colors. Our own functions handle
3669 color allocation failures more gracefully than the ones on the XPM
3670 lib. */
3671
3672 #if defined XpmAllocColor && defined XpmFreeColors && defined XpmColorClosure
3673 #define ALLOC_XPM_COLORS
3674 #endif
3675 #endif /* HAVE_X_WINDOWS */
3676
3677 #ifdef ALLOC_XPM_COLORS
3678
3679 static void xpm_init_color_cache P_ ((struct frame *, XpmAttributes *));
3680 static void xpm_free_color_cache P_ ((void));
3681 static int xpm_lookup_color P_ ((struct frame *, char *, XColor *));
3682 static int xpm_color_bucket P_ ((char *));
3683 static struct xpm_cached_color *xpm_cache_color P_ ((struct frame *, char *,
3684 XColor *, int));
3685
3686 /* An entry in a hash table used to cache color definitions of named
3687 colors. This cache is necessary to speed up XPM image loading in
3688 case we do color allocations ourselves. Without it, we would need
3689 a call to XParseColor per pixel in the image. */
3690
3691 struct xpm_cached_color
3692 {
3693 /* Next in collision chain. */
3694 struct xpm_cached_color *next;
3695
3696 /* Color definition (RGB and pixel color). */
3697 XColor color;
3698
3699 /* Color name. */
3700 char name[1];
3701 };
3702
3703 /* The hash table used for the color cache, and its bucket vector
3704 size. */
3705
3706 #define XPM_COLOR_CACHE_BUCKETS 1001
3707 struct xpm_cached_color **xpm_color_cache;
3708
3709 /* Initialize the color cache. */
3710
3711 static void
3712 xpm_init_color_cache (f, attrs)
3713 struct frame *f;
3714 XpmAttributes *attrs;
3715 {
3716 size_t nbytes = XPM_COLOR_CACHE_BUCKETS * sizeof *xpm_color_cache;
3717 xpm_color_cache = (struct xpm_cached_color **) xmalloc (nbytes);
3718 memset (xpm_color_cache, 0, nbytes);
3719 init_color_table ();
3720
3721 if (attrs->valuemask & XpmColorSymbols)
3722 {
3723 int i;
3724 XColor color;
3725
3726 for (i = 0; i < attrs->numsymbols; ++i)
3727 if (XParseColor (FRAME_X_DISPLAY (f), FRAME_X_COLORMAP (f),
3728 attrs->colorsymbols[i].value, &color))
3729 {
3730 color.pixel = lookup_rgb_color (f, color.red, color.green,
3731 color.blue);
3732 xpm_cache_color (f, attrs->colorsymbols[i].name, &color, -1);
3733 }
3734 }
3735 }
3736
3737 /* Free the color cache. */
3738
3739 static void
3740 xpm_free_color_cache ()
3741 {
3742 struct xpm_cached_color *p, *next;
3743 int i;
3744
3745 for (i = 0; i < XPM_COLOR_CACHE_BUCKETS; ++i)
3746 for (p = xpm_color_cache[i]; p; p = next)
3747 {
3748 next = p->next;
3749 xfree (p);
3750 }
3751
3752 xfree (xpm_color_cache);
3753 xpm_color_cache = NULL;
3754 free_color_table ();
3755 }
3756
3757 /* Return the bucket index for color named COLOR_NAME in the color
3758 cache. */
3759
3760 static int
3761 xpm_color_bucket (color_name)
3762 char *color_name;
3763 {
3764 unsigned h = 0;
3765 char *s;
3766
3767 for (s = color_name; *s; ++s)
3768 h = (h << 2) ^ *s;
3769 return h %= XPM_COLOR_CACHE_BUCKETS;
3770 }
3771
3772
3773 /* On frame F, cache values COLOR for color with name COLOR_NAME.
3774 BUCKET, if >= 0, is a precomputed bucket index. Value is the cache
3775 entry added. */
3776
3777 static struct xpm_cached_color *
3778 xpm_cache_color (f, color_name, color, bucket)
3779 struct frame *f;
3780 char *color_name;
3781 XColor *color;
3782 int bucket;
3783 {
3784 size_t nbytes;
3785 struct xpm_cached_color *p;
3786
3787 if (bucket < 0)
3788 bucket = xpm_color_bucket (color_name);
3789
3790 nbytes = sizeof *p + strlen (color_name);
3791 p = (struct xpm_cached_color *) xmalloc (nbytes);
3792 strcpy (p->name, color_name);
3793 p->color = *color;
3794 p->next = xpm_color_cache[bucket];
3795 xpm_color_cache[bucket] = p;
3796 return p;
3797 }
3798
3799 /* Look up color COLOR_NAME for frame F in the color cache. If found,
3800 return the cached definition in *COLOR. Otherwise, make a new
3801 entry in the cache and allocate the color. Value is zero if color
3802 allocation failed. */
3803
3804 static int
3805 xpm_lookup_color (f, color_name, color)
3806 struct frame *f;
3807 char *color_name;
3808 XColor *color;
3809 {
3810 struct xpm_cached_color *p;
3811 int h = xpm_color_bucket (color_name);
3812
3813 for (p = xpm_color_cache[h]; p; p = p->next)
3814 if (strcmp (p->name, color_name) == 0)
3815 break;
3816
3817 if (p != NULL)
3818 *color = p->color;
3819 else if (XParseColor (FRAME_X_DISPLAY (f), FRAME_X_COLORMAP (f),
3820 color_name, color))
3821 {
3822 color->pixel = lookup_rgb_color (f, color->red, color->green,
3823 color->blue);
3824 p = xpm_cache_color (f, color_name, color, h);
3825 }
3826 /* You get `opaque' at least from ImageMagick converting pbm to xpm
3827 with transparency, and it's useful. */
3828 else if (strcmp ("opaque", color_name) == 0)
3829 {
3830 bzero (color, sizeof (XColor)); /* Is this necessary/correct? */
3831 color->pixel = FRAME_FOREGROUND_PIXEL (f);
3832 p = xpm_cache_color (f, color_name, color, h);
3833 }
3834
3835 return p != NULL;
3836 }
3837
3838
3839 /* Callback for allocating color COLOR_NAME. Called from the XPM lib.
3840 CLOSURE is a pointer to the frame on which we allocate the
3841 color. Return in *COLOR the allocated color. Value is non-zero
3842 if successful. */
3843
3844 static int
3845 xpm_alloc_color (dpy, cmap, color_name, color, closure)
3846 Display *dpy;
3847 Colormap cmap;
3848 char *color_name;
3849 XColor *color;
3850 void *closure;
3851 {
3852 return xpm_lookup_color ((struct frame *) closure, color_name, color);
3853 }
3854
3855
3856 /* Callback for freeing NPIXELS colors contained in PIXELS. CLOSURE
3857 is a pointer to the frame on which we allocate the color. Value is
3858 non-zero if successful. */
3859
3860 static int
3861 xpm_free_colors (dpy, cmap, pixels, npixels, closure)
3862 Display *dpy;
3863 Colormap cmap;
3864 Pixel *pixels;
3865 int npixels;
3866 void *closure;
3867 {
3868 return 1;
3869 }
3870
3871 #endif /* ALLOC_XPM_COLORS */
3872
3873
3874 #ifdef HAVE_NTGUI
3875
3876 /* XPM library details. */
3877
3878 DEF_IMGLIB_FN (XpmFreeAttributes);
3879 DEF_IMGLIB_FN (XpmCreateImageFromBuffer);
3880 DEF_IMGLIB_FN (XpmReadFileToImage);
3881 DEF_IMGLIB_FN (XImageFree);
3882
3883 static int
3884 init_xpm_functions (Lisp_Object libraries)
3885 {
3886 HMODULE library;
3887
3888 if (!(library = w32_delayed_load (libraries, Qxpm)))
3889 return 0;
3890
3891 LOAD_IMGLIB_FN (library, XpmFreeAttributes);
3892 LOAD_IMGLIB_FN (library, XpmCreateImageFromBuffer);
3893 LOAD_IMGLIB_FN (library, XpmReadFileToImage);
3894 LOAD_IMGLIB_FN (library, XImageFree);
3895 return 1;
3896 }
3897
3898 #endif /* HAVE_NTGUI */
3899
3900
3901 /* Value is non-zero if COLOR_SYMBOLS is a valid color symbols list
3902 for XPM images. Such a list must consist of conses whose car and
3903 cdr are strings. */
3904
3905 static int
3906 xpm_valid_color_symbols_p (color_symbols)
3907 Lisp_Object color_symbols;
3908 {
3909 while (CONSP (color_symbols))
3910 {
3911 Lisp_Object sym = XCAR (color_symbols);
3912 if (!CONSP (sym)
3913 || !STRINGP (XCAR (sym))
3914 || !STRINGP (XCDR (sym)))
3915 break;
3916 color_symbols = XCDR (color_symbols);
3917 }
3918
3919 return NILP (color_symbols);
3920 }
3921
3922
3923 /* Value is non-zero if OBJECT is a valid XPM image specification. */
3924
3925 static int
3926 xpm_image_p (object)
3927 Lisp_Object object;
3928 {
3929 struct image_keyword fmt[XPM_LAST];
3930 bcopy (xpm_format, fmt, sizeof fmt);
3931 return (parse_image_spec (object, fmt, XPM_LAST, Qxpm)
3932 /* Either `:file' or `:data' must be present. */
3933 && fmt[XPM_FILE].count + fmt[XPM_DATA].count == 1
3934 /* Either no `:color-symbols' or it's a list of conses
3935 whose car and cdr are strings. */
3936 && (fmt[XPM_COLOR_SYMBOLS].count == 0
3937 || xpm_valid_color_symbols_p (fmt[XPM_COLOR_SYMBOLS].value)));
3938 }
3939
3940 #endif /* HAVE_XPM || MAC_OS */
3941
3942 #if defined (HAVE_XPM) && defined (HAVE_X_WINDOWS)
3943 int
3944 x_create_bitmap_from_xpm_data (f, bits)
3945 struct frame *f;
3946 char **bits;
3947 {
3948 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
3949 int id, rc;
3950 XpmAttributes attrs;
3951 Pixmap bitmap, mask;
3952
3953 bzero (&attrs, sizeof attrs);
3954
3955 attrs.visual = FRAME_X_VISUAL (f);
3956 attrs.colormap = FRAME_X_COLORMAP (f);
3957 attrs.valuemask |= XpmVisual;
3958 attrs.valuemask |= XpmColormap;
3959
3960 rc = XpmCreatePixmapFromData (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
3961 bits, &bitmap, &mask, &attrs);
3962 if (rc != XpmSuccess)
3963 {
3964 XpmFreeAttributes (&attrs);
3965 return -1;
3966 }
3967
3968 id = x_allocate_bitmap_record (f);
3969 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
3970 dpyinfo->bitmaps[id - 1].have_mask = 1;
3971 dpyinfo->bitmaps[id - 1].mask = mask;
3972 dpyinfo->bitmaps[id - 1].file = NULL;
3973 dpyinfo->bitmaps[id - 1].height = attrs.height;
3974 dpyinfo->bitmaps[id - 1].width = attrs.width;
3975 dpyinfo->bitmaps[id - 1].depth = attrs.depth;
3976 dpyinfo->bitmaps[id - 1].refcount = 1;
3977
3978 XpmFreeAttributes (&attrs);
3979 return id;
3980 }
3981 #endif /* defined (HAVE_XPM) && defined (HAVE_X_WINDOWS) */
3982
3983 /* Load image IMG which will be displayed on frame F. Value is
3984 non-zero if successful. */
3985
3986 #ifdef HAVE_XPM
3987
3988 static int
3989 xpm_load (f, img)
3990 struct frame *f;
3991 struct image *img;
3992 {
3993 int rc;
3994 XpmAttributes attrs;
3995 Lisp_Object specified_file, color_symbols;
3996 #ifdef HAVE_NTGUI
3997 HDC hdc;
3998 xpm_XImage * xpm_image = NULL, * xpm_mask = NULL;
3999 #endif /* HAVE_NTGUI */
4000
4001 /* Configure the XPM lib. Use the visual of frame F. Allocate
4002 close colors. Return colors allocated. */
4003 bzero (&attrs, sizeof attrs);
4004
4005 #ifndef HAVE_NTGUI
4006 attrs.visual = FRAME_X_VISUAL (f);
4007 attrs.colormap = FRAME_X_COLORMAP (f);
4008 attrs.valuemask |= XpmVisual;
4009 attrs.valuemask |= XpmColormap;
4010 #endif /* HAVE_NTGUI */
4011
4012 #ifdef ALLOC_XPM_COLORS
4013 /* Allocate colors with our own functions which handle
4014 failing color allocation more gracefully. */
4015 attrs.color_closure = f;
4016 attrs.alloc_color = xpm_alloc_color;
4017 attrs.free_colors = xpm_free_colors;
4018 attrs.valuemask |= XpmAllocColor | XpmFreeColors | XpmColorClosure;
4019 #else /* not ALLOC_XPM_COLORS */
4020 /* Let the XPM lib allocate colors. */
4021 attrs.valuemask |= XpmReturnAllocPixels;
4022 #ifdef XpmAllocCloseColors
4023 attrs.alloc_close_colors = 1;
4024 attrs.valuemask |= XpmAllocCloseColors;
4025 #else /* not XpmAllocCloseColors */
4026 attrs.closeness = 600;
4027 attrs.valuemask |= XpmCloseness;
4028 #endif /* not XpmAllocCloseColors */
4029 #endif /* ALLOC_XPM_COLORS */
4030
4031 /* If image specification contains symbolic color definitions, add
4032 these to `attrs'. */
4033 color_symbols = image_spec_value (img->spec, QCcolor_symbols, NULL);
4034 if (CONSP (color_symbols))
4035 {
4036 Lisp_Object tail;
4037 XpmColorSymbol *xpm_syms;
4038 int i, size;
4039
4040 attrs.valuemask |= XpmColorSymbols;
4041
4042 /* Count number of symbols. */
4043 attrs.numsymbols = 0;
4044 for (tail = color_symbols; CONSP (tail); tail = XCDR (tail))
4045 ++attrs.numsymbols;
4046
4047 /* Allocate an XpmColorSymbol array. */
4048 size = attrs.numsymbols * sizeof *xpm_syms;
4049 xpm_syms = (XpmColorSymbol *) alloca (size);
4050 bzero (xpm_syms, size);
4051 attrs.colorsymbols = xpm_syms;
4052
4053 /* Fill the color symbol array. */
4054 for (tail = color_symbols, i = 0;
4055 CONSP (tail);
4056 ++i, tail = XCDR (tail))
4057 {
4058 Lisp_Object name = XCAR (XCAR (tail));
4059 Lisp_Object color = XCDR (XCAR (tail));
4060 xpm_syms[i].name = (char *) alloca (SCHARS (name) + 1);
4061 strcpy (xpm_syms[i].name, SDATA (name));
4062 xpm_syms[i].value = (char *) alloca (SCHARS (color) + 1);
4063 strcpy (xpm_syms[i].value, SDATA (color));
4064 }
4065 }
4066
4067 /* Create a pixmap for the image, either from a file, or from a
4068 string buffer containing data in the same format as an XPM file. */
4069 #ifdef ALLOC_XPM_COLORS
4070 xpm_init_color_cache (f, &attrs);
4071 #endif
4072
4073 specified_file = image_spec_value (img->spec, QCfile, NULL);
4074
4075 #ifdef HAVE_NTGUI
4076 {
4077 HDC frame_dc = get_frame_dc (f);
4078 hdc = CreateCompatibleDC (frame_dc);
4079 release_frame_dc (f, frame_dc);
4080 }
4081 #endif /* HAVE_NTGUI */
4082
4083 if (STRINGP (specified_file))
4084 {
4085 Lisp_Object file = x_find_image_file (specified_file);
4086 if (!STRINGP (file))
4087 {
4088 image_error ("Cannot find image file `%s'", specified_file, Qnil);
4089 return 0;
4090 }
4091
4092 #ifdef HAVE_NTGUI
4093 /* XpmReadFileToPixmap is not available in the Windows port of
4094 libxpm. But XpmReadFileToImage almost does what we want. */
4095 rc = fn_XpmReadFileToImage (&hdc, SDATA (file),
4096 &xpm_image, &xpm_mask,
4097 &attrs);
4098 #else
4099 rc = XpmReadFileToPixmap (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
4100 SDATA (file), &img->pixmap, &img->mask,
4101 &attrs);
4102 #endif /* HAVE_NTGUI */
4103 }
4104 else
4105 {
4106 Lisp_Object buffer = image_spec_value (img->spec, QCdata, NULL);
4107 #ifdef HAVE_NTGUI
4108 /* XpmCreatePixmapFromBuffer is not available in the Windows port
4109 of libxpm. But XpmCreateImageFromBuffer almost does what we want. */
4110 rc = fn_XpmCreateImageFromBuffer (&hdc, SDATA (buffer),
4111 &xpm_image, &xpm_mask,
4112 &attrs);
4113 #else
4114 rc = XpmCreatePixmapFromBuffer (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
4115 SDATA (buffer),
4116 &img->pixmap, &img->mask,
4117 &attrs);
4118 #endif /* HAVE_NTGUI */
4119 }
4120
4121 if (rc == XpmSuccess)
4122 {
4123 #if defined (COLOR_TABLE_SUPPORT) && defined (ALLOC_XPM_COLORS)
4124 img->colors = colors_in_color_table (&img->ncolors);
4125 #else /* not ALLOC_XPM_COLORS */
4126 int i;
4127
4128 #ifdef HAVE_NTGUI
4129 /* W32 XPM uses XImage to wrap what W32 Emacs calls a Pixmap,
4130 plus some duplicate attributes. */
4131 if (xpm_image && xpm_image->bitmap)
4132 {
4133 img->pixmap = xpm_image->bitmap;
4134 /* XImageFree in libXpm frees XImage struct without destroying
4135 the bitmap, which is what we want. */
4136 fn_XImageFree (xpm_image);
4137 }
4138 if (xpm_mask && xpm_mask->bitmap)
4139 {
4140 /* The mask appears to be inverted compared with what we expect.
4141 TODO: invert our expectations. See other places where we
4142 have to invert bits because our idea of masks is backwards. */
4143 HGDIOBJ old_obj;
4144 old_obj = SelectObject (hdc, xpm_mask->bitmap);
4145
4146 PatBlt (hdc, 0, 0, xpm_mask->width, xpm_mask->height, DSTINVERT);
4147 SelectObject (hdc, old_obj);
4148
4149 img->mask = xpm_mask->bitmap;
4150 fn_XImageFree (xpm_mask);
4151 DeleteDC (hdc);
4152 }
4153
4154 DeleteDC (hdc);
4155 #endif /* HAVE_NTGUI */
4156
4157 /* Remember allocated colors. */
4158 img->ncolors = attrs.nalloc_pixels;
4159 img->colors = (unsigned long *) xmalloc (img->ncolors
4160 * sizeof *img->colors);
4161 for (i = 0; i < attrs.nalloc_pixels; ++i)
4162 {
4163 img->colors[i] = attrs.alloc_pixels[i];
4164 #ifdef DEBUG_X_COLORS
4165 register_color (img->colors[i]);
4166 #endif
4167 }
4168 #endif /* not ALLOC_XPM_COLORS */
4169
4170 img->width = attrs.width;
4171 img->height = attrs.height;
4172 xassert (img->width > 0 && img->height > 0);
4173
4174 /* The call to XpmFreeAttributes below frees attrs.alloc_pixels. */
4175 #ifdef HAVE_NTGUI
4176 fn_XpmFreeAttributes (&attrs);
4177 #else
4178 XpmFreeAttributes (&attrs);
4179 #endif /* HAVE_NTGUI */
4180 }
4181 else
4182 {
4183 #ifdef HAVE_NTGUI
4184 DeleteDC (hdc);
4185 #endif /* HAVE_NTGUI */
4186
4187 switch (rc)
4188 {
4189 case XpmOpenFailed:
4190 image_error ("Error opening XPM file (%s)", img->spec, Qnil);
4191 break;
4192
4193 case XpmFileInvalid:
4194 image_error ("Invalid XPM file (%s)", img->spec, Qnil);
4195 break;
4196
4197 case XpmNoMemory:
4198 image_error ("Out of memory (%s)", img->spec, Qnil);
4199 break;
4200
4201 case XpmColorFailed:
4202 image_error ("Color allocation error (%s)", img->spec, Qnil);
4203 break;
4204
4205 default:
4206 image_error ("Unknown error (%s)", img->spec, Qnil);
4207 break;
4208 }
4209 }
4210
4211 #ifdef ALLOC_XPM_COLORS
4212 xpm_free_color_cache ();
4213 #endif
4214 return rc == XpmSuccess;
4215 }
4216
4217 #endif /* HAVE_XPM */
4218
4219 #ifdef MAC_OS
4220
4221 /* XPM support functions for Mac OS where libxpm is not available.
4222 Only XPM version 3 (without any extensions) is supported. */
4223
4224 static int xpm_scan P_ ((const unsigned char **, const unsigned char *,
4225 const unsigned char **, int *));
4226 static Lisp_Object xpm_make_color_table_v
4227 P_ ((void (**) (Lisp_Object, const unsigned char *, int, Lisp_Object),
4228 Lisp_Object (**) (Lisp_Object, const unsigned char *, int)));
4229 static void xpm_put_color_table_v P_ ((Lisp_Object, const unsigned char *,
4230 int, Lisp_Object));
4231 static Lisp_Object xpm_get_color_table_v P_ ((Lisp_Object,
4232 const unsigned char *, int));
4233 static Lisp_Object xpm_make_color_table_h
4234 P_ ((void (**) (Lisp_Object, const unsigned char *, int, Lisp_Object),
4235 Lisp_Object (**) (Lisp_Object, const unsigned char *, int)));
4236 static void xpm_put_color_table_h P_ ((Lisp_Object, const unsigned char *,
4237 int, Lisp_Object));
4238 static Lisp_Object xpm_get_color_table_h P_ ((Lisp_Object,
4239 const unsigned char *, int));
4240 static int xpm_str_to_color_key P_ ((const char *));
4241 static int xpm_load_image P_ ((struct frame *, struct image *,
4242 const unsigned char *, const unsigned char *));
4243
4244 /* Tokens returned from xpm_scan. */
4245
4246 enum xpm_token
4247 {
4248 XPM_TK_IDENT = 256,
4249 XPM_TK_STRING,
4250 XPM_TK_EOF
4251 };
4252
4253 /* Scan an XPM data and return a character (< 256) or a token defined
4254 by enum xpm_token above. *S and END are the start (inclusive) and
4255 the end (exclusive) addresses of the data, respectively. Advance
4256 *S while scanning. If token is either XPM_TK_IDENT or
4257 XPM_TK_STRING, *BEG and *LEN are set to the start address and the
4258 length of the corresponding token, respectively. */
4259
4260 static int
4261 xpm_scan (s, end, beg, len)
4262 const unsigned char **s, *end, **beg;
4263 int *len;
4264 {
4265 int c;
4266
4267 while (*s < end)
4268 {
4269 /* Skip white-space. */
4270 while (*s < end && (c = *(*s)++, isspace (c)))
4271 ;
4272
4273 /* gnus-pointer.xpm uses '-' in its identifier.
4274 sb-dir-plus.xpm uses '+' in its identifier. */
4275 if (isalpha (c) || c == '_' || c == '-' || c == '+')
4276 {
4277 *beg = *s - 1;
4278 while (*s < end &&
4279 (c = **s, isalnum (c) || c == '_' || c == '-' || c == '+'))
4280 ++*s;
4281 *len = *s - *beg;
4282 return XPM_TK_IDENT;
4283 }
4284 else if (c == '"')
4285 {
4286 *beg = *s;
4287 while (*s < end && **s != '"')
4288 ++*s;
4289 *len = *s - *beg;
4290 if (*s < end)
4291 ++*s;
4292 return XPM_TK_STRING;
4293 }
4294 else if (c == '/')
4295 {
4296 if (*s < end && **s == '*')
4297 {
4298 /* C-style comment. */
4299 ++*s;
4300 do
4301 {
4302 while (*s < end && *(*s)++ != '*')
4303 ;
4304 }
4305 while (*s < end && **s != '/');
4306 if (*s < end)
4307 ++*s;
4308 }
4309 else
4310 return c;
4311 }
4312 else
4313 return c;
4314 }
4315
4316 return XPM_TK_EOF;
4317 }
4318
4319 /* Functions for color table lookup in XPM data. A key is a string
4320 specifying the color of each pixel in XPM data. A value is either
4321 an integer that specifies a pixel color, Qt that specifies
4322 transparency, or Qnil for the unspecified color. If the length of
4323 the key string is one, a vector is used as a table. Otherwise, a
4324 hash table is used. */
4325
4326 static Lisp_Object
4327 xpm_make_color_table_v (put_func, get_func)
4328 void (**put_func) (Lisp_Object, const unsigned char *, int, Lisp_Object);
4329 Lisp_Object (**get_func) (Lisp_Object, const unsigned char *, int);
4330 {
4331 *put_func = xpm_put_color_table_v;
4332 *get_func = xpm_get_color_table_v;
4333 return Fmake_vector (make_number (256), Qnil);
4334 }
4335
4336 static void
4337 xpm_put_color_table_v (color_table, chars_start, chars_len, color)
4338 Lisp_Object color_table;
4339 const unsigned char *chars_start;
4340 int chars_len;
4341 Lisp_Object color;
4342 {
4343 XVECTOR (color_table)->contents[*chars_start] = color;
4344 }
4345
4346 static Lisp_Object
4347 xpm_get_color_table_v (color_table, chars_start, chars_len)
4348 Lisp_Object color_table;
4349 const unsigned char *chars_start;
4350 int chars_len;
4351 {
4352 return XVECTOR (color_table)->contents[*chars_start];
4353 }
4354
4355 static Lisp_Object
4356 xpm_make_color_table_h (put_func, get_func)
4357 void (**put_func) (Lisp_Object, const unsigned char *, int, Lisp_Object);
4358 Lisp_Object (**get_func) (Lisp_Object, const unsigned char *, int);
4359 {
4360 *put_func = xpm_put_color_table_h;
4361 *get_func = xpm_get_color_table_h;
4362 return make_hash_table (Qequal, make_number (DEFAULT_HASH_SIZE),
4363 make_float (DEFAULT_REHASH_SIZE),
4364 make_float (DEFAULT_REHASH_THRESHOLD),
4365 Qnil, Qnil, Qnil);
4366 }
4367
4368 static void
4369 xpm_put_color_table_h (color_table, chars_start, chars_len, color)
4370 Lisp_Object color_table;
4371 const unsigned char *chars_start;
4372 int chars_len;
4373 Lisp_Object color;
4374 {
4375 struct Lisp_Hash_Table *table = XHASH_TABLE (color_table);
4376 unsigned hash_code;
4377 Lisp_Object chars = make_unibyte_string (chars_start, chars_len);
4378
4379 hash_lookup (table, chars, &hash_code);
4380 hash_put (table, chars, color, hash_code);
4381 }
4382
4383 static Lisp_Object
4384 xpm_get_color_table_h (color_table, chars_start, chars_len)
4385 Lisp_Object color_table;
4386 const unsigned char *chars_start;
4387 int chars_len;
4388 {
4389 struct Lisp_Hash_Table *table = XHASH_TABLE (color_table);
4390 int i = hash_lookup (table, make_unibyte_string (chars_start, chars_len),
4391 NULL);
4392
4393 return i >= 0 ? HASH_VALUE (table, i) : Qnil;
4394 }
4395
4396 enum xpm_color_key {
4397 XPM_COLOR_KEY_S,
4398 XPM_COLOR_KEY_M,
4399 XPM_COLOR_KEY_G4,
4400 XPM_COLOR_KEY_G,
4401 XPM_COLOR_KEY_C
4402 };
4403
4404 static const char xpm_color_key_strings[][4] = {"s", "m", "g4", "g", "c"};
4405
4406 static int
4407 xpm_str_to_color_key (s)
4408 const char *s;
4409 {
4410 int i;
4411
4412 for (i = 0;
4413 i < sizeof xpm_color_key_strings / sizeof xpm_color_key_strings[0];
4414 i++)
4415 if (strcmp (xpm_color_key_strings[i], s) == 0)
4416 return i;
4417 return -1;
4418 }
4419
4420 static int
4421 xpm_load_image (f, img, contents, end)
4422 struct frame *f;
4423 struct image *img;
4424 const unsigned char *contents, *end;
4425 {
4426 const unsigned char *s = contents, *beg, *str;
4427 unsigned char buffer[BUFSIZ];
4428 int width, height, x, y;
4429 int num_colors, chars_per_pixel;
4430 int len, LA1;
4431 void (*put_color_table) (Lisp_Object, const unsigned char *, int, Lisp_Object);
4432 Lisp_Object (*get_color_table) (Lisp_Object, const unsigned char *, int);
4433 Lisp_Object frame, color_symbols, color_table;
4434 int best_key, have_mask = 0;
4435 XImagePtr ximg = NULL, mask_img = NULL;
4436
4437 #define match() \
4438 LA1 = xpm_scan (&s, end, &beg, &len)
4439
4440 #define expect(TOKEN) \
4441 if (LA1 != (TOKEN)) \
4442 goto failure; \
4443 else \
4444 match ()
4445
4446 #define expect_ident(IDENT) \
4447 if (LA1 == XPM_TK_IDENT \
4448 && strlen ((IDENT)) == len && memcmp ((IDENT), beg, len) == 0) \
4449 match (); \
4450 else \
4451 goto failure
4452
4453 if (!(end - s >= 9 && memcmp (s, "/* XPM */", 9) == 0))
4454 goto failure;
4455 s += 9;
4456 match();
4457 expect_ident ("static");
4458 expect_ident ("char");
4459 expect ('*');
4460 expect (XPM_TK_IDENT);
4461 expect ('[');
4462 expect (']');
4463 expect ('=');
4464 expect ('{');
4465 expect (XPM_TK_STRING);
4466 if (len >= BUFSIZ)
4467 goto failure;
4468 memcpy (buffer, beg, len);
4469 buffer[len] = '\0';
4470 if (sscanf (buffer, "%d %d %d %d", &width, &height,
4471 &num_colors, &chars_per_pixel) != 4
4472 || width <= 0 || height <= 0
4473 || num_colors <= 0 || chars_per_pixel <= 0)
4474 goto failure;
4475
4476 if (!check_image_size (f, width, height))
4477 {
4478 image_error ("Invalid image size", Qnil, Qnil);
4479 goto failure;
4480 }
4481
4482 expect (',');
4483
4484 XSETFRAME (frame, f);
4485 if (!NILP (Fxw_display_color_p (frame)))
4486 best_key = XPM_COLOR_KEY_C;
4487 else if (!NILP (Fx_display_grayscale_p (frame)))
4488 best_key = (XFASTINT (Fx_display_planes (frame)) > 2
4489 ? XPM_COLOR_KEY_G : XPM_COLOR_KEY_G4);
4490 else
4491 best_key = XPM_COLOR_KEY_M;
4492
4493 color_symbols = image_spec_value (img->spec, QCcolor_symbols, NULL);
4494 if (chars_per_pixel == 1)
4495 color_table = xpm_make_color_table_v (&put_color_table,
4496 &get_color_table);
4497 else
4498 color_table = xpm_make_color_table_h (&put_color_table,
4499 &get_color_table);
4500
4501 while (num_colors-- > 0)
4502 {
4503 unsigned char *color, *max_color;
4504 int key, next_key, max_key = 0;
4505 Lisp_Object symbol_color = Qnil, color_val;
4506 XColor cdef;
4507
4508 expect (XPM_TK_STRING);
4509 if (len <= chars_per_pixel || len >= BUFSIZ + chars_per_pixel)
4510 goto failure;
4511 memcpy (buffer, beg + chars_per_pixel, len - chars_per_pixel);
4512 buffer[len - chars_per_pixel] = '\0';
4513
4514 str = strtok (buffer, " \t");
4515 if (str == NULL)
4516 goto failure;
4517 key = xpm_str_to_color_key (str);
4518 if (key < 0)
4519 goto failure;
4520 do
4521 {
4522 color = strtok (NULL, " \t");
4523 if (color == NULL)
4524 goto failure;
4525
4526 while ((str = strtok (NULL, " \t")) != NULL)
4527 {
4528 next_key = xpm_str_to_color_key (str);
4529 if (next_key >= 0)
4530 break;
4531 color[strlen (color)] = ' ';
4532 }
4533
4534 if (key == XPM_COLOR_KEY_S)
4535 {
4536 if (NILP (symbol_color))
4537 symbol_color = build_string (color);
4538 }
4539 else if (max_key < key && key <= best_key)
4540 {
4541 max_key = key;
4542 max_color = color;
4543 }
4544 key = next_key;
4545 }
4546 while (str);
4547
4548 color_val = Qnil;
4549 if (!NILP (color_symbols) && !NILP (symbol_color))
4550 {
4551 Lisp_Object specified_color = Fassoc (symbol_color, color_symbols);
4552
4553 if (CONSP (specified_color) && STRINGP (XCDR (specified_color)))
4554 {
4555 if (xstricmp (SDATA (XCDR (specified_color)), "None") == 0)
4556 color_val = Qt;
4557 else if (x_defined_color (f, SDATA (XCDR (specified_color)),
4558 &cdef, 0))
4559 color_val = make_number (cdef.pixel);
4560 }
4561 }
4562 if (NILP (color_val) && max_key > 0)
4563 {
4564 if (xstricmp (max_color, "None") == 0)
4565 color_val = Qt;
4566 else if (x_defined_color (f, max_color, &cdef, 0))
4567 color_val = make_number (cdef.pixel);
4568 }
4569 if (!NILP (color_val))
4570 (*put_color_table) (color_table, beg, chars_per_pixel, color_val);
4571
4572 expect (',');
4573 }
4574
4575 if (!x_create_x_image_and_pixmap (f, width, height, 0,
4576 &ximg, &img->pixmap)
4577 || !x_create_x_image_and_pixmap (f, width, height, 1,
4578 &mask_img, &img->mask))
4579 {
4580 image_error ("Out of memory (%s)", img->spec, Qnil);
4581 goto error;
4582 }
4583
4584 for (y = 0; y < height; y++)
4585 {
4586 expect (XPM_TK_STRING);
4587 str = beg;
4588 if (len < width * chars_per_pixel)
4589 goto failure;
4590 for (x = 0; x < width; x++, str += chars_per_pixel)
4591 {
4592 Lisp_Object color_val =
4593 (*get_color_table) (color_table, str, chars_per_pixel);
4594
4595 XPutPixel (ximg, x, y,
4596 (INTEGERP (color_val) ? XINT (color_val)
4597 : FRAME_FOREGROUND_PIXEL (f)));
4598 XPutPixel (mask_img, x, y,
4599 (!EQ (color_val, Qt) ? PIX_MASK_DRAW
4600 : (have_mask = 1, PIX_MASK_RETAIN)));
4601 }
4602 if (y + 1 < height)
4603 expect (',');
4604 }
4605
4606 img->width = width;
4607 img->height = height;
4608
4609 /* Maybe fill in the background field while we have ximg handy. */
4610 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
4611 IMAGE_BACKGROUND (img, f, ximg);
4612
4613 x_put_x_image (f, ximg, img->pixmap, width, height);
4614 x_destroy_x_image (ximg);
4615 if (have_mask)
4616 {
4617 /* Fill in the background_transparent field while we have the
4618 mask handy. */
4619 image_background_transparent (img, f, mask_img);
4620
4621 x_put_x_image (f, mask_img, img->mask, width, height);
4622 x_destroy_x_image (mask_img);
4623 }
4624 else
4625 {
4626 x_destroy_x_image (mask_img);
4627 Free_Pixmap (FRAME_X_DISPLAY (f), img->mask);
4628 img->mask = NO_PIXMAP;
4629 }
4630
4631 return 1;
4632
4633 failure:
4634 image_error ("Invalid XPM file (%s)", img->spec, Qnil);
4635 error:
4636 x_destroy_x_image (ximg);
4637 x_destroy_x_image (mask_img);
4638 x_clear_image (f, img);
4639 return 0;
4640
4641 #undef match
4642 #undef expect
4643 #undef expect_ident
4644 }
4645
4646 static int
4647 xpm_load (f, img)
4648 struct frame *f;
4649 struct image *img;
4650 {
4651 int success_p = 0;
4652 Lisp_Object file_name;
4653
4654 /* If IMG->spec specifies a file name, create a non-file spec from it. */
4655 file_name = image_spec_value (img->spec, QCfile, NULL);
4656 if (STRINGP (file_name))
4657 {
4658 Lisp_Object file;
4659 unsigned char *contents;
4660 int size;
4661 struct gcpro gcpro1;
4662
4663 file = x_find_image_file (file_name);
4664 GCPRO1 (file);
4665 if (!STRINGP (file))
4666 {
4667 image_error ("Cannot find image file `%s'", file_name, Qnil);
4668 UNGCPRO;
4669 return 0;
4670 }
4671
4672 contents = slurp_file (SDATA (file), &size);
4673 if (contents == NULL)
4674 {
4675 image_error ("Error loading XPM image `%s'", img->spec, Qnil);
4676 UNGCPRO;
4677 return 0;
4678 }
4679
4680 success_p = xpm_load_image (f, img, contents, contents + size);
4681 xfree (contents);
4682 UNGCPRO;
4683 }
4684 else
4685 {
4686 Lisp_Object data;
4687
4688 data = image_spec_value (img->spec, QCdata, NULL);
4689 success_p = xpm_load_image (f, img, SDATA (data),
4690 SDATA (data) + SBYTES (data));
4691 }
4692
4693 return success_p;
4694 }
4695
4696 #endif /* MAC_OS */
4697
4698
4699 \f
4700 /***********************************************************************
4701 Color table
4702 ***********************************************************************/
4703
4704 #ifdef COLOR_TABLE_SUPPORT
4705
4706 /* An entry in the color table mapping an RGB color to a pixel color. */
4707
4708 struct ct_color
4709 {
4710 int r, g, b;
4711 unsigned long pixel;
4712
4713 /* Next in color table collision list. */
4714 struct ct_color *next;
4715 };
4716
4717 /* The bucket vector size to use. Must be prime. */
4718
4719 #define CT_SIZE 101
4720
4721 /* Value is a hash of the RGB color given by R, G, and B. */
4722
4723 #define CT_HASH_RGB(R, G, B) (((R) << 16) ^ ((G) << 8) ^ (B))
4724
4725 /* The color hash table. */
4726
4727 struct ct_color **ct_table;
4728
4729 /* Number of entries in the color table. */
4730
4731 int ct_colors_allocated;
4732
4733 /* Initialize the color table. */
4734
4735 static void
4736 init_color_table ()
4737 {
4738 int size = CT_SIZE * sizeof (*ct_table);
4739 ct_table = (struct ct_color **) xmalloc (size);
4740 bzero (ct_table, size);
4741 ct_colors_allocated = 0;
4742 }
4743
4744
4745 /* Free memory associated with the color table. */
4746
4747 static void
4748 free_color_table ()
4749 {
4750 int i;
4751 struct ct_color *p, *next;
4752
4753 for (i = 0; i < CT_SIZE; ++i)
4754 for (p = ct_table[i]; p; p = next)
4755 {
4756 next = p->next;
4757 xfree (p);
4758 }
4759
4760 xfree (ct_table);
4761 ct_table = NULL;
4762 }
4763
4764
4765 /* Value is a pixel color for RGB color R, G, B on frame F. If an
4766 entry for that color already is in the color table, return the
4767 pixel color of that entry. Otherwise, allocate a new color for R,
4768 G, B, and make an entry in the color table. */
4769
4770 static unsigned long
4771 lookup_rgb_color (f, r, g, b)
4772 struct frame *f;
4773 int r, g, b;
4774 {
4775 unsigned hash = CT_HASH_RGB (r, g, b);
4776 int i = hash % CT_SIZE;
4777 struct ct_color *p;
4778 Display_Info *dpyinfo;
4779
4780 /* Handle TrueColor visuals specially, which improves performance by
4781 two orders of magnitude. Freeing colors on TrueColor visuals is
4782 a nop, and pixel colors specify RGB values directly. See also
4783 the Xlib spec, chapter 3.1. */
4784 dpyinfo = FRAME_X_DISPLAY_INFO (f);
4785 if (dpyinfo->red_bits > 0)
4786 {
4787 unsigned long pr, pg, pb;
4788
4789 /* Apply gamma-correction like normal color allocation does. */
4790 if (f->gamma)
4791 {
4792 XColor color;
4793 color.red = r, color.green = g, color.blue = b;
4794 gamma_correct (f, &color);
4795 r = color.red, g = color.green, b = color.blue;
4796 }
4797
4798 /* Scale down RGB values to the visual's bits per RGB, and shift
4799 them to the right position in the pixel color. Note that the
4800 original RGB values are 16-bit values, as usual in X. */
4801 pr = (r >> (16 - dpyinfo->red_bits)) << dpyinfo->red_offset;
4802 pg = (g >> (16 - dpyinfo->green_bits)) << dpyinfo->green_offset;
4803 pb = (b >> (16 - dpyinfo->blue_bits)) << dpyinfo->blue_offset;
4804
4805 /* Assemble the pixel color. */
4806 return pr | pg | pb;
4807 }
4808
4809 for (p = ct_table[i]; p; p = p->next)
4810 if (p->r == r && p->g == g && p->b == b)
4811 break;
4812
4813 if (p == NULL)
4814 {
4815
4816 #ifdef HAVE_X_WINDOWS
4817 XColor color;
4818 Colormap cmap;
4819 int rc;
4820
4821 color.red = r;
4822 color.green = g;
4823 color.blue = b;
4824
4825 cmap = FRAME_X_COLORMAP (f);
4826 rc = x_alloc_nearest_color (f, cmap, &color);
4827 if (rc)
4828 {
4829 ++ct_colors_allocated;
4830 p = (struct ct_color *) xmalloc (sizeof *p);
4831 p->r = r;
4832 p->g = g;
4833 p->b = b;
4834 p->pixel = color.pixel;
4835 p->next = ct_table[i];
4836 ct_table[i] = p;
4837 }
4838 else
4839 return FRAME_FOREGROUND_PIXEL (f);
4840
4841 #else
4842 COLORREF color;
4843 #ifdef HAVE_NTGUI
4844 color = PALETTERGB (r, g, b);
4845 #else
4846 color = RGB_TO_ULONG (r, g, b);
4847 #endif /* HAVE_NTGUI */
4848 ++ct_colors_allocated;
4849 p = (struct ct_color *) xmalloc (sizeof *p);
4850 p->r = r;
4851 p->g = g;
4852 p->b = b;
4853 p->pixel = color;
4854 p->next = ct_table[i];
4855 ct_table[i] = p;
4856 #endif /* HAVE_X_WINDOWS */
4857
4858 }
4859
4860 return p->pixel;
4861 }
4862
4863
4864 /* Look up pixel color PIXEL which is used on frame F in the color
4865 table. If not already present, allocate it. Value is PIXEL. */
4866
4867 static unsigned long
4868 lookup_pixel_color (f, pixel)
4869 struct frame *f;
4870 unsigned long pixel;
4871 {
4872 int i = pixel % CT_SIZE;
4873 struct ct_color *p;
4874
4875 for (p = ct_table[i]; p; p = p->next)
4876 if (p->pixel == pixel)
4877 break;
4878
4879 if (p == NULL)
4880 {
4881 XColor color;
4882 Colormap cmap;
4883 int rc;
4884
4885 #ifdef HAVE_X_WINDOWS
4886 cmap = FRAME_X_COLORMAP (f);
4887 color.pixel = pixel;
4888 x_query_color (f, &color);
4889 rc = x_alloc_nearest_color (f, cmap, &color);
4890 #else
4891 BLOCK_INPUT;
4892 cmap = DefaultColormapOfScreen (FRAME_X_SCREEN (f));
4893 color.pixel = pixel;
4894 XQueryColor (NULL, cmap, &color);
4895 rc = x_alloc_nearest_color (f, cmap, &color);
4896 UNBLOCK_INPUT;
4897 #endif /* HAVE_X_WINDOWS */
4898
4899 if (rc)
4900 {
4901 ++ct_colors_allocated;
4902
4903 p = (struct ct_color *) xmalloc (sizeof *p);
4904 p->r = color.red;
4905 p->g = color.green;
4906 p->b = color.blue;
4907 p->pixel = pixel;
4908 p->next = ct_table[i];
4909 ct_table[i] = p;
4910 }
4911 else
4912 return FRAME_FOREGROUND_PIXEL (f);
4913 }
4914 return p->pixel;
4915 }
4916
4917
4918 /* Value is a vector of all pixel colors contained in the color table,
4919 allocated via xmalloc. Set *N to the number of colors. */
4920
4921 static unsigned long *
4922 colors_in_color_table (n)
4923 int *n;
4924 {
4925 int i, j;
4926 struct ct_color *p;
4927 unsigned long *colors;
4928
4929 if (ct_colors_allocated == 0)
4930 {
4931 *n = 0;
4932 colors = NULL;
4933 }
4934 else
4935 {
4936 colors = (unsigned long *) xmalloc (ct_colors_allocated
4937 * sizeof *colors);
4938 *n = ct_colors_allocated;
4939
4940 for (i = j = 0; i < CT_SIZE; ++i)
4941 for (p = ct_table[i]; p; p = p->next)
4942 colors[j++] = p->pixel;
4943 }
4944
4945 return colors;
4946 }
4947
4948 #else /* COLOR_TABLE_SUPPORT */
4949
4950 static unsigned long
4951 lookup_rgb_color (f, r, g, b)
4952 struct frame *f;
4953 int r, g, b;
4954 {
4955 unsigned long pixel;
4956
4957 #ifdef MAC_OS
4958 pixel = RGB_TO_ULONG (r >> 8, g >> 8, b >> 8);
4959 gamma_correct (f, &pixel);
4960 #endif /* MAC_OS */
4961
4962 #ifdef HAVE_NTGUI
4963 pixel = PALETTERGB (r >> 8, g >> 8, b >> 8);
4964 #endif /* HAVE_NTGUI */
4965
4966 return pixel;
4967 }
4968
4969 static void
4970 init_color_table ()
4971 {
4972 }
4973 #endif /* COLOR_TABLE_SUPPORT */
4974
4975 \f
4976 /***********************************************************************
4977 Algorithms
4978 ***********************************************************************/
4979
4980 static XColor *x_to_xcolors P_ ((struct frame *, struct image *, int));
4981 static void x_from_xcolors P_ ((struct frame *, struct image *, XColor *));
4982 static void x_detect_edges P_ ((struct frame *, struct image *, int[9], int));
4983
4984 #ifdef HAVE_NTGUI
4985 static void XPutPixel (XImagePtr , int, int, COLORREF);
4986 #endif /* HAVE_NTGUI */
4987
4988 /* Non-zero means draw a cross on images having `:conversion
4989 disabled'. */
4990
4991 int cross_disabled_images;
4992
4993 /* Edge detection matrices for different edge-detection
4994 strategies. */
4995
4996 static int emboss_matrix[9] = {
4997 /* x - 1 x x + 1 */
4998 2, -1, 0, /* y - 1 */
4999 -1, 0, 1, /* y */
5000 0, 1, -2 /* y + 1 */
5001 };
5002
5003 static int laplace_matrix[9] = {
5004 /* x - 1 x x + 1 */
5005 1, 0, 0, /* y - 1 */
5006 0, 0, 0, /* y */
5007 0, 0, -1 /* y + 1 */
5008 };
5009
5010 /* Value is the intensity of the color whose red/green/blue values
5011 are R, G, and B. */
5012
5013 #define COLOR_INTENSITY(R, G, B) ((2 * (R) + 3 * (G) + (B)) / 6)
5014
5015
5016 /* On frame F, return an array of XColor structures describing image
5017 IMG->pixmap. Each XColor structure has its pixel color set. RGB_P
5018 non-zero means also fill the red/green/blue members of the XColor
5019 structures. Value is a pointer to the array of XColors structures,
5020 allocated with xmalloc; it must be freed by the caller. */
5021
5022 static XColor *
5023 x_to_xcolors (f, img, rgb_p)
5024 struct frame *f;
5025 struct image *img;
5026 int rgb_p;
5027 {
5028 int x, y;
5029 XColor *colors, *p;
5030 XImagePtr_or_DC ximg;
5031 #ifdef HAVE_NTGUI
5032 HDC hdc;
5033 HGDIOBJ prev;
5034 #endif /* HAVE_NTGUI */
5035
5036 colors = (XColor *) xmalloc (img->width * img->height * sizeof *colors);
5037
5038 #ifndef HAVE_NTGUI
5039 /* Get the X image IMG->pixmap. */
5040 ximg = XGetImage (FRAME_X_DISPLAY (f), img->pixmap,
5041 0, 0, img->width, img->height, ~0, ZPixmap);
5042 #else
5043 /* Load the image into a memory device context. */
5044 hdc = get_frame_dc (f);
5045 ximg = CreateCompatibleDC (hdc);
5046 release_frame_dc (f, hdc);
5047 prev = SelectObject (ximg, img->pixmap);
5048 #endif /* HAVE_NTGUI */
5049
5050 /* Fill the `pixel' members of the XColor array. I wished there
5051 were an easy and portable way to circumvent XGetPixel. */
5052 p = colors;
5053 for (y = 0; y < img->height; ++y)
5054 {
5055 XColor *row = p;
5056
5057 #ifdef HAVE_X_WINDOWS
5058 for (x = 0; x < img->width; ++x, ++p)
5059 p->pixel = XGetPixel (ximg, x, y);
5060 if (rgb_p)
5061 x_query_colors (f, row, img->width);
5062
5063 #else
5064
5065 for (x = 0; x < img->width; ++x, ++p)
5066 {
5067 /* W32_TODO: palette support needed here? */
5068 p->pixel = GET_PIXEL (ximg, x, y);
5069 if (rgb_p)
5070 {
5071 #ifdef MAC_OS
5072 p->red = RED16_FROM_ULONG (p->pixel);
5073 p->green = GREEN16_FROM_ULONG (p->pixel);
5074 p->blue = BLUE16_FROM_ULONG (p->pixel);
5075 #endif /* MAC_OS */
5076 #ifdef HAVE_NTGUI
5077 p->red = 256 * GetRValue (p->pixel);
5078 p->green = 256 * GetGValue (p->pixel);
5079 p->blue = 256 * GetBValue (p->pixel);
5080 #endif /* HAVE_NTGUI */
5081 }
5082 }
5083 #endif /* HAVE_X_WINDOWS */
5084 }
5085
5086 Destroy_Image (ximg, prev);
5087
5088 return colors;
5089 }
5090
5091 #ifdef HAVE_NTGUI
5092
5093 /* Put a pixel of COLOR at position X, Y in XIMG. XIMG must have been
5094 created with CreateDIBSection, with the pointer to the bit values
5095 stored in ximg->data. */
5096
5097 static void
5098 XPutPixel (ximg, x, y, color)
5099 XImagePtr ximg;
5100 int x, y;
5101 COLORREF color;
5102 {
5103 int width = ximg->info.bmiHeader.biWidth;
5104 int height = ximg->info.bmiHeader.biHeight;
5105 unsigned char * pixel;
5106
5107 /* True color images. */
5108 if (ximg->info.bmiHeader.biBitCount == 24)
5109 {
5110 int rowbytes = width * 3;
5111 /* Ensure scanlines are aligned on 4 byte boundaries. */
5112 if (rowbytes % 4)
5113 rowbytes += 4 - (rowbytes % 4);
5114
5115 pixel = ximg->data + y * rowbytes + x * 3;
5116 /* Windows bitmaps are in BGR order. */
5117 *pixel = GetBValue (color);
5118 *(pixel + 1) = GetGValue (color);
5119 *(pixel + 2) = GetRValue (color);
5120 }
5121 /* Monochrome images. */
5122 else if (ximg->info.bmiHeader.biBitCount == 1)
5123 {
5124 int rowbytes = width / 8;
5125 /* Ensure scanlines are aligned on 4 byte boundaries. */
5126 if (rowbytes % 4)
5127 rowbytes += 4 - (rowbytes % 4);
5128 pixel = ximg->data + y * rowbytes + x / 8;
5129 /* Filter out palette info. */
5130 if (color & 0x00ffffff)
5131 *pixel = *pixel | (1 << x % 8);
5132 else
5133 *pixel = *pixel & ~(1 << x % 8);
5134 }
5135 else
5136 image_error ("XPutPixel: palette image not supported", Qnil, Qnil);
5137 }
5138
5139 #endif /* HAVE_NTGUI */
5140
5141 /* Create IMG->pixmap from an array COLORS of XColor structures, whose
5142 RGB members are set. F is the frame on which this all happens.
5143 COLORS will be freed; an existing IMG->pixmap will be freed, too. */
5144
5145 static void
5146 x_from_xcolors (f, img, colors)
5147 struct frame *f;
5148 struct image *img;
5149 XColor *colors;
5150 {
5151 int x, y;
5152 XImagePtr oimg;
5153 Pixmap pixmap;
5154 XColor *p;
5155
5156 init_color_table ();
5157
5158 x_create_x_image_and_pixmap (f, img->width, img->height, 0,
5159 &oimg, &pixmap);
5160 p = colors;
5161 for (y = 0; y < img->height; ++y)
5162 for (x = 0; x < img->width; ++x, ++p)
5163 {
5164 unsigned long pixel;
5165 pixel = lookup_rgb_color (f, p->red, p->green, p->blue);
5166 XPutPixel (oimg, x, y, pixel);
5167 }
5168
5169 xfree (colors);
5170 x_clear_image_1 (f, img, 1, 0, 1);
5171
5172 x_put_x_image (f, oimg, pixmap, img->width, img->height);
5173 x_destroy_x_image (oimg);
5174 img->pixmap = pixmap;
5175 #ifdef COLOR_TABLE_SUPPORT
5176 img->colors = colors_in_color_table (&img->ncolors);
5177 free_color_table ();
5178 #endif /* COLOR_TABLE_SUPPORT */
5179 }
5180
5181
5182 /* On frame F, perform edge-detection on image IMG.
5183
5184 MATRIX is a nine-element array specifying the transformation
5185 matrix. See emboss_matrix for an example.
5186
5187 COLOR_ADJUST is a color adjustment added to each pixel of the
5188 outgoing image. */
5189
5190 static void
5191 x_detect_edges (f, img, matrix, color_adjust)
5192 struct frame *f;
5193 struct image *img;
5194 int matrix[9], color_adjust;
5195 {
5196 XColor *colors = x_to_xcolors (f, img, 1);
5197 XColor *new, *p;
5198 int x, y, i, sum;
5199
5200 for (i = sum = 0; i < 9; ++i)
5201 sum += eabs (matrix[i]);
5202
5203 #define COLOR(A, X, Y) ((A) + (Y) * img->width + (X))
5204
5205 new = (XColor *) xmalloc (img->width * img->height * sizeof *new);
5206
5207 for (y = 0; y < img->height; ++y)
5208 {
5209 p = COLOR (new, 0, y);
5210 p->red = p->green = p->blue = 0xffff/2;
5211 p = COLOR (new, img->width - 1, y);
5212 p->red = p->green = p->blue = 0xffff/2;
5213 }
5214
5215 for (x = 1; x < img->width - 1; ++x)
5216 {
5217 p = COLOR (new, x, 0);
5218 p->red = p->green = p->blue = 0xffff/2;
5219 p = COLOR (new, x, img->height - 1);
5220 p->red = p->green = p->blue = 0xffff/2;
5221 }
5222
5223 for (y = 1; y < img->height - 1; ++y)
5224 {
5225 p = COLOR (new, 1, y);
5226
5227 for (x = 1; x < img->width - 1; ++x, ++p)
5228 {
5229 int r, g, b, y1, x1;
5230
5231 r = g = b = i = 0;
5232 for (y1 = y - 1; y1 < y + 2; ++y1)
5233 for (x1 = x - 1; x1 < x + 2; ++x1, ++i)
5234 if (matrix[i])
5235 {
5236 XColor *t = COLOR (colors, x1, y1);
5237 r += matrix[i] * t->red;
5238 g += matrix[i] * t->green;
5239 b += matrix[i] * t->blue;
5240 }
5241
5242 r = (r / sum + color_adjust) & 0xffff;
5243 g = (g / sum + color_adjust) & 0xffff;
5244 b = (b / sum + color_adjust) & 0xffff;
5245 p->red = p->green = p->blue = COLOR_INTENSITY (r, g, b);
5246 }
5247 }
5248
5249 xfree (colors);
5250 x_from_xcolors (f, img, new);
5251
5252 #undef COLOR
5253 }
5254
5255
5256 /* Perform the pre-defined `emboss' edge-detection on image IMG
5257 on frame F. */
5258
5259 static void
5260 x_emboss (f, img)
5261 struct frame *f;
5262 struct image *img;
5263 {
5264 x_detect_edges (f, img, emboss_matrix, 0xffff / 2);
5265 }
5266
5267
5268 /* Transform image IMG which is used on frame F with a Laplace
5269 edge-detection algorithm. The result is an image that can be used
5270 to draw disabled buttons, for example. */
5271
5272 static void
5273 x_laplace (f, img)
5274 struct frame *f;
5275 struct image *img;
5276 {
5277 x_detect_edges (f, img, laplace_matrix, 45000);
5278 }
5279
5280
5281 /* Perform edge-detection on image IMG on frame F, with specified
5282 transformation matrix MATRIX and color-adjustment COLOR_ADJUST.
5283
5284 MATRIX must be either
5285
5286 - a list of at least 9 numbers in row-major form
5287 - a vector of at least 9 numbers
5288
5289 COLOR_ADJUST nil means use a default; otherwise it must be a
5290 number. */
5291
5292 static void
5293 x_edge_detection (f, img, matrix, color_adjust)
5294 struct frame *f;
5295 struct image *img;
5296 Lisp_Object matrix, color_adjust;
5297 {
5298 int i = 0;
5299 int trans[9];
5300
5301 if (CONSP (matrix))
5302 {
5303 for (i = 0;
5304 i < 9 && CONSP (matrix) && NUMBERP (XCAR (matrix));
5305 ++i, matrix = XCDR (matrix))
5306 trans[i] = XFLOATINT (XCAR (matrix));
5307 }
5308 else if (VECTORP (matrix) && ASIZE (matrix) >= 9)
5309 {
5310 for (i = 0; i < 9 && NUMBERP (AREF (matrix, i)); ++i)
5311 trans[i] = XFLOATINT (AREF (matrix, i));
5312 }
5313
5314 if (NILP (color_adjust))
5315 color_adjust = make_number (0xffff / 2);
5316
5317 if (i == 9 && NUMBERP (color_adjust))
5318 x_detect_edges (f, img, trans, (int) XFLOATINT (color_adjust));
5319 }
5320
5321
5322 /* Transform image IMG on frame F so that it looks disabled. */
5323
5324 static void
5325 x_disable_image (f, img)
5326 struct frame *f;
5327 struct image *img;
5328 {
5329 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
5330 #ifdef HAVE_NTGUI
5331 int n_planes = dpyinfo->n_planes * dpyinfo->n_cbits;
5332 #else
5333 int n_planes = dpyinfo->n_planes;
5334 #endif /* HAVE_NTGUI */
5335
5336 if (n_planes >= 2)
5337 {
5338 /* Color (or grayscale). Convert to gray, and equalize. Just
5339 drawing such images with a stipple can look very odd, so
5340 we're using this method instead. */
5341 XColor *colors = x_to_xcolors (f, img, 1);
5342 XColor *p, *end;
5343 const int h = 15000;
5344 const int l = 30000;
5345
5346 for (p = colors, end = colors + img->width * img->height;
5347 p < end;
5348 ++p)
5349 {
5350 int i = COLOR_INTENSITY (p->red, p->green, p->blue);
5351 int i2 = (0xffff - h - l) * i / 0xffff + l;
5352 p->red = p->green = p->blue = i2;
5353 }
5354
5355 x_from_xcolors (f, img, colors);
5356 }
5357
5358 /* Draw a cross over the disabled image, if we must or if we
5359 should. */
5360 if (n_planes < 2 || cross_disabled_images)
5361 {
5362 #ifndef HAVE_NTGUI
5363 Display *dpy = FRAME_X_DISPLAY (f);
5364 GC gc;
5365
5366 #ifdef MAC_OS
5367 #define MaskForeground(f) PIX_MASK_DRAW
5368 #else
5369 #define MaskForeground(f) WHITE_PIX_DEFAULT (f)
5370 #endif
5371
5372 gc = XCreateGC (dpy, img->pixmap, 0, NULL);
5373 XSetForeground (dpy, gc, BLACK_PIX_DEFAULT (f));
5374 XDrawLine (dpy, img->pixmap, gc, 0, 0,
5375 img->width - 1, img->height - 1);
5376 XDrawLine (dpy, img->pixmap, gc, 0, img->height - 1,
5377 img->width - 1, 0);
5378 XFreeGC (dpy, gc);
5379
5380 if (img->mask)
5381 {
5382 gc = XCreateGC (dpy, img->mask, 0, NULL);
5383 XSetForeground (dpy, gc, MaskForeground (f));
5384 XDrawLine (dpy, img->mask, gc, 0, 0,
5385 img->width - 1, img->height - 1);
5386 XDrawLine (dpy, img->mask, gc, 0, img->height - 1,
5387 img->width - 1, 0);
5388 XFreeGC (dpy, gc);
5389 }
5390 #else
5391 HDC hdc, bmpdc;
5392 HGDIOBJ prev;
5393
5394 hdc = get_frame_dc (f);
5395 bmpdc = CreateCompatibleDC (hdc);
5396 release_frame_dc (f, hdc);
5397
5398 prev = SelectObject (bmpdc, img->pixmap);
5399
5400 SetTextColor (bmpdc, BLACK_PIX_DEFAULT (f));
5401 MoveToEx (bmpdc, 0, 0, NULL);
5402 LineTo (bmpdc, img->width - 1, img->height - 1);
5403 MoveToEx (bmpdc, 0, img->height - 1, NULL);
5404 LineTo (bmpdc, img->width - 1, 0);
5405
5406 if (img->mask)
5407 {
5408 SelectObject (bmpdc, img->mask);
5409 SetTextColor (bmpdc, WHITE_PIX_DEFAULT (f));
5410 MoveToEx (bmpdc, 0, 0, NULL);
5411 LineTo (bmpdc, img->width - 1, img->height - 1);
5412 MoveToEx (bmpdc, 0, img->height - 1, NULL);
5413 LineTo (bmpdc, img->width - 1, 0);
5414 }
5415 SelectObject (bmpdc, prev);
5416 DeleteDC (bmpdc);
5417 #endif /* HAVE_NTGUI */
5418 }
5419 }
5420
5421
5422 /* Build a mask for image IMG which is used on frame F. FILE is the
5423 name of an image file, for error messages. HOW determines how to
5424 determine the background color of IMG. If it is a list '(R G B)',
5425 with R, G, and B being integers >= 0, take that as the color of the
5426 background. Otherwise, determine the background color of IMG
5427 heuristically. Value is non-zero if successful. */
5428
5429 static int
5430 x_build_heuristic_mask (f, img, how)
5431 struct frame *f;
5432 struct image *img;
5433 Lisp_Object how;
5434 {
5435 XImagePtr_or_DC ximg;
5436 #ifndef HAVE_NTGUI
5437 XImagePtr mask_img;
5438 #else
5439 HDC frame_dc;
5440 HGDIOBJ prev;
5441 char *mask_img;
5442 int row_width;
5443 #endif /* HAVE_NTGUI */
5444 int x, y, rc, use_img_background;
5445 unsigned long bg = 0;
5446
5447 if (img->mask)
5448 {
5449 Free_Pixmap (FRAME_X_DISPLAY (f), img->mask);
5450 img->mask = NO_PIXMAP;
5451 img->background_transparent_valid = 0;
5452 }
5453
5454 #ifndef HAVE_NTGUI
5455 /* Create an image and pixmap serving as mask. */
5456 rc = x_create_x_image_and_pixmap (f, img->width, img->height, 1,
5457 &mask_img, &img->mask);
5458 if (!rc)
5459 return 0;
5460
5461 /* Get the X image of IMG->pixmap. */
5462 ximg = XGetImage (FRAME_X_DISPLAY (f), img->pixmap, 0, 0,
5463 img->width, img->height,
5464 ~0, ZPixmap);
5465 #else
5466 /* Create the bit array serving as mask. */
5467 row_width = (img->width + 7) / 8;
5468 mask_img = xmalloc (row_width * img->height);
5469 bzero (mask_img, row_width * img->height);
5470
5471 /* Create a memory device context for IMG->pixmap. */
5472 frame_dc = get_frame_dc (f);
5473 ximg = CreateCompatibleDC (frame_dc);
5474 release_frame_dc (f, frame_dc);
5475 prev = SelectObject (ximg, img->pixmap);
5476 #endif /* HAVE_NTGUI */
5477
5478 /* Determine the background color of ximg. If HOW is `(R G B)'
5479 take that as color. Otherwise, use the image's background color. */
5480 use_img_background = 1;
5481
5482 if (CONSP (how))
5483 {
5484 int rgb[3], i;
5485
5486 for (i = 0; i < 3 && CONSP (how) && NATNUMP (XCAR (how)); ++i)
5487 {
5488 rgb[i] = XFASTINT (XCAR (how)) & 0xffff;
5489 how = XCDR (how);
5490 }
5491
5492 if (i == 3 && NILP (how))
5493 {
5494 char color_name[30];
5495 sprintf (color_name, "#%04x%04x%04x", rgb[0], rgb[1], rgb[2]);
5496 bg = (
5497 #ifdef HAVE_NTGUI
5498 0x00ffffff & /* Filter out palette info. */
5499 #endif /* HAVE_NTGUI */
5500 x_alloc_image_color (f, img, build_string (color_name), 0));
5501 use_img_background = 0;
5502 }
5503 }
5504
5505 if (use_img_background)
5506 bg = four_corners_best (ximg, img->corners, img->width, img->height);
5507
5508 /* Set all bits in mask_img to 1 whose color in ximg is different
5509 from the background color bg. */
5510 #ifndef HAVE_NTGUI
5511 for (y = 0; y < img->height; ++y)
5512 for (x = 0; x < img->width; ++x)
5513 XPutPixel (mask_img, x, y, (XGetPixel (ximg, x, y) != bg
5514 ? PIX_MASK_DRAW : PIX_MASK_RETAIN));
5515
5516 /* Fill in the background_transparent field while we have the mask handy. */
5517 image_background_transparent (img, f, mask_img);
5518
5519 /* Put mask_img into img->mask. */
5520 x_put_x_image (f, mask_img, img->mask, img->width, img->height);
5521 x_destroy_x_image (mask_img);
5522
5523 #else
5524 for (y = 0; y < img->height; ++y)
5525 for (x = 0; x < img->width; ++x)
5526 {
5527 COLORREF p = GetPixel (ximg, x, y);
5528 if (p != bg)
5529 mask_img[y * row_width + x / 8] |= 1 << (x % 8);
5530 }
5531
5532 /* Create the mask image. */
5533 img->mask = w32_create_pixmap_from_bitmap_data (img->width, img->height,
5534 mask_img);
5535 /* Fill in the background_transparent field while we have the mask handy. */
5536 SelectObject (ximg, img->mask);
5537 image_background_transparent (img, f, ximg);
5538
5539 /* Was: x_destroy_x_image ((XImagePtr )mask_img); which seems bogus ++kfs */
5540 xfree (mask_img);
5541 #endif /* HAVE_NTGUI */
5542
5543 Destroy_Image (ximg, prev);
5544
5545 return 1;
5546 }
5547
5548 \f
5549 /***********************************************************************
5550 PBM (mono, gray, color)
5551 ***********************************************************************/
5552
5553 static int pbm_image_p P_ ((Lisp_Object object));
5554 static int pbm_load P_ ((struct frame *f, struct image *img));
5555 static int pbm_scan_number P_ ((unsigned char **, unsigned char *));
5556
5557 /* The symbol `pbm' identifying images of this type. */
5558
5559 Lisp_Object Qpbm;
5560
5561 /* Indices of image specification fields in gs_format, below. */
5562
5563 enum pbm_keyword_index
5564 {
5565 PBM_TYPE,
5566 PBM_FILE,
5567 PBM_DATA,
5568 PBM_ASCENT,
5569 PBM_MARGIN,
5570 PBM_RELIEF,
5571 PBM_ALGORITHM,
5572 PBM_HEURISTIC_MASK,
5573 PBM_MASK,
5574 PBM_FOREGROUND,
5575 PBM_BACKGROUND,
5576 PBM_LAST
5577 };
5578
5579 /* Vector of image_keyword structures describing the format
5580 of valid user-defined image specifications. */
5581
5582 static struct image_keyword pbm_format[PBM_LAST] =
5583 {
5584 {":type", IMAGE_SYMBOL_VALUE, 1},
5585 {":file", IMAGE_STRING_VALUE, 0},
5586 {":data", IMAGE_STRING_VALUE, 0},
5587 {":ascent", IMAGE_ASCENT_VALUE, 0},
5588 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
5589 {":relief", IMAGE_INTEGER_VALUE, 0},
5590 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5591 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5592 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5593 {":foreground", IMAGE_STRING_OR_NIL_VALUE, 0},
5594 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
5595 };
5596
5597 /* Structure describing the image type `pbm'. */
5598
5599 static struct image_type pbm_type =
5600 {
5601 &Qpbm,
5602 pbm_image_p,
5603 pbm_load,
5604 x_clear_image,
5605 NULL
5606 };
5607
5608
5609 /* Return non-zero if OBJECT is a valid PBM image specification. */
5610
5611 static int
5612 pbm_image_p (object)
5613 Lisp_Object object;
5614 {
5615 struct image_keyword fmt[PBM_LAST];
5616
5617 bcopy (pbm_format, fmt, sizeof fmt);
5618
5619 if (!parse_image_spec (object, fmt, PBM_LAST, Qpbm))
5620 return 0;
5621
5622 /* Must specify either :data or :file. */
5623 return fmt[PBM_DATA].count + fmt[PBM_FILE].count == 1;
5624 }
5625
5626
5627 /* Scan a decimal number from *S and return it. Advance *S while
5628 reading the number. END is the end of the string. Value is -1 at
5629 end of input. */
5630
5631 static int
5632 pbm_scan_number (s, end)
5633 unsigned char **s, *end;
5634 {
5635 int c = 0, val = -1;
5636
5637 while (*s < end)
5638 {
5639 /* Skip white-space. */
5640 while (*s < end && (c = *(*s)++, isspace (c)))
5641 ;
5642
5643 if (c == '#')
5644 {
5645 /* Skip comment to end of line. */
5646 while (*s < end && (c = *(*s)++, c != '\n'))
5647 ;
5648 }
5649 else if (isdigit (c))
5650 {
5651 /* Read decimal number. */
5652 val = c - '0';
5653 while (*s < end && (c = *(*s)++, isdigit (c)))
5654 val = 10 * val + c - '0';
5655 break;
5656 }
5657 else
5658 break;
5659 }
5660
5661 return val;
5662 }
5663
5664
5665 #ifdef HAVE_NTGUI
5666 #if 0 /* Unused. ++kfs */
5667
5668 /* Read FILE into memory. Value is a pointer to a buffer allocated
5669 with xmalloc holding FILE's contents. Value is null if an error
5670 occurred. *SIZE is set to the size of the file. */
5671
5672 static char *
5673 pbm_read_file (file, size)
5674 Lisp_Object file;
5675 int *size;
5676 {
5677 FILE *fp = NULL;
5678 char *buf = NULL;
5679 struct stat st;
5680
5681 if (stat (SDATA (file), &st) == 0
5682 && (fp = fopen (SDATA (file), "rb")) != NULL
5683 && (buf = (char *) xmalloc (st.st_size),
5684 fread (buf, 1, st.st_size, fp) == st.st_size))
5685 {
5686 *size = st.st_size;
5687 fclose (fp);
5688 }
5689 else
5690 {
5691 if (fp)
5692 fclose (fp);
5693 if (buf)
5694 {
5695 xfree (buf);
5696 buf = NULL;
5697 }
5698 }
5699
5700 return buf;
5701 }
5702 #endif
5703 #endif /* HAVE_NTGUI */
5704
5705 /* Load PBM image IMG for use on frame F. */
5706
5707 static int
5708 pbm_load (f, img)
5709 struct frame *f;
5710 struct image *img;
5711 {
5712 int raw_p, x, y;
5713 int width, height, max_color_idx = 0;
5714 XImagePtr ximg;
5715 Lisp_Object file, specified_file;
5716 enum {PBM_MONO, PBM_GRAY, PBM_COLOR} type;
5717 struct gcpro gcpro1;
5718 unsigned char *contents = NULL;
5719 unsigned char *end, *p;
5720 int size;
5721
5722 specified_file = image_spec_value (img->spec, QCfile, NULL);
5723 file = Qnil;
5724 GCPRO1 (file);
5725
5726 if (STRINGP (specified_file))
5727 {
5728 file = x_find_image_file (specified_file);
5729 if (!STRINGP (file))
5730 {
5731 image_error ("Cannot find image file `%s'", specified_file, Qnil);
5732 UNGCPRO;
5733 return 0;
5734 }
5735
5736 contents = slurp_file (SDATA (file), &size);
5737 if (contents == NULL)
5738 {
5739 image_error ("Error reading `%s'", file, Qnil);
5740 UNGCPRO;
5741 return 0;
5742 }
5743
5744 p = contents;
5745 end = contents + size;
5746 }
5747 else
5748 {
5749 Lisp_Object data;
5750 data = image_spec_value (img->spec, QCdata, NULL);
5751 p = SDATA (data);
5752 end = p + SBYTES (data);
5753 }
5754
5755 /* Check magic number. */
5756 if (end - p < 2 || *p++ != 'P')
5757 {
5758 image_error ("Not a PBM image: `%s'", img->spec, Qnil);
5759 error:
5760 xfree (contents);
5761 UNGCPRO;
5762 return 0;
5763 }
5764
5765 switch (*p++)
5766 {
5767 case '1':
5768 raw_p = 0, type = PBM_MONO;
5769 break;
5770
5771 case '2':
5772 raw_p = 0, type = PBM_GRAY;
5773 break;
5774
5775 case '3':
5776 raw_p = 0, type = PBM_COLOR;
5777 break;
5778
5779 case '4':
5780 raw_p = 1, type = PBM_MONO;
5781 break;
5782
5783 case '5':
5784 raw_p = 1, type = PBM_GRAY;
5785 break;
5786
5787 case '6':
5788 raw_p = 1, type = PBM_COLOR;
5789 break;
5790
5791 default:
5792 image_error ("Not a PBM image: `%s'", img->spec, Qnil);
5793 goto error;
5794 }
5795
5796 /* Read width, height, maximum color-component. Characters
5797 starting with `#' up to the end of a line are ignored. */
5798 width = pbm_scan_number (&p, end);
5799 height = pbm_scan_number (&p, end);
5800
5801 if (type != PBM_MONO)
5802 {
5803 max_color_idx = pbm_scan_number (&p, end);
5804 if (max_color_idx > 65535 || max_color_idx < 0)
5805 {
5806 image_error ("Unsupported maximum PBM color value", Qnil, Qnil);
5807 goto error;
5808 }
5809 }
5810
5811 if (!check_image_size (f, width, height))
5812 {
5813 image_error ("Invalid image size", Qnil, Qnil);
5814 goto error;
5815 }
5816
5817 if (!x_create_x_image_and_pixmap (f, width, height, 0,
5818 &ximg, &img->pixmap))
5819 goto error;
5820
5821 /* Initialize the color hash table. */
5822 init_color_table ();
5823
5824 if (type == PBM_MONO)
5825 {
5826 int c = 0, g;
5827 struct image_keyword fmt[PBM_LAST];
5828 unsigned long fg = FRAME_FOREGROUND_PIXEL (f);
5829 unsigned long bg = FRAME_BACKGROUND_PIXEL (f);
5830
5831 /* Parse the image specification. */
5832 bcopy (pbm_format, fmt, sizeof fmt);
5833 parse_image_spec (img->spec, fmt, PBM_LAST, Qpbm);
5834
5835 /* Get foreground and background colors, maybe allocate colors. */
5836 if (fmt[PBM_FOREGROUND].count
5837 && STRINGP (fmt[PBM_FOREGROUND].value))
5838 fg = x_alloc_image_color (f, img, fmt[PBM_FOREGROUND].value, fg);
5839 if (fmt[PBM_BACKGROUND].count
5840 && STRINGP (fmt[PBM_BACKGROUND].value))
5841 {
5842 bg = x_alloc_image_color (f, img, fmt[PBM_BACKGROUND].value, bg);
5843 img->background = bg;
5844 img->background_valid = 1;
5845 }
5846
5847 for (y = 0; y < height; ++y)
5848 for (x = 0; x < width; ++x)
5849 {
5850 if (raw_p)
5851 {
5852 if ((x & 7) == 0)
5853 {
5854 if (p >= end)
5855 {
5856 x_destroy_x_image (ximg);
5857 x_clear_image (f, img);
5858 image_error ("Invalid image size in image `%s'",
5859 img->spec, Qnil);
5860 goto error;
5861 }
5862 c = *p++;
5863 }
5864 g = c & 0x80;
5865 c <<= 1;
5866 }
5867 else
5868 g = pbm_scan_number (&p, end);
5869
5870 XPutPixel (ximg, x, y, g ? fg : bg);
5871 }
5872 }
5873 else
5874 {
5875 int expected_size = height * width;
5876 if (max_color_idx > 255)
5877 expected_size *= 2;
5878 if (type == PBM_COLOR)
5879 expected_size *= 3;
5880
5881 if (raw_p && p + expected_size > end)
5882 {
5883 x_destroy_x_image (ximg);
5884 x_clear_image (f, img);
5885 image_error ("Invalid image size in image `%s'",
5886 img->spec, Qnil);
5887 goto error;
5888 }
5889
5890 for (y = 0; y < height; ++y)
5891 for (x = 0; x < width; ++x)
5892 {
5893 int r, g, b;
5894
5895 if (type == PBM_GRAY && raw_p)
5896 {
5897 r = g = b = *p++;
5898 if (max_color_idx > 255)
5899 r = g = b = r * 256 + *p++;
5900 }
5901 else if (type == PBM_GRAY)
5902 r = g = b = pbm_scan_number (&p, end);
5903 else if (raw_p)
5904 {
5905 r = *p++;
5906 if (max_color_idx > 255)
5907 r = r * 256 + *p++;
5908 g = *p++;
5909 if (max_color_idx > 255)
5910 g = g * 256 + *p++;
5911 b = *p++;
5912 if (max_color_idx > 255)
5913 b = b * 256 + *p++;
5914 }
5915 else
5916 {
5917 r = pbm_scan_number (&p, end);
5918 g = pbm_scan_number (&p, end);
5919 b = pbm_scan_number (&p, end);
5920 }
5921
5922 if (r < 0 || g < 0 || b < 0)
5923 {
5924 x_destroy_x_image (ximg);
5925 image_error ("Invalid pixel value in image `%s'",
5926 img->spec, Qnil);
5927 goto error;
5928 }
5929
5930 /* RGB values are now in the range 0..max_color_idx.
5931 Scale this to the range 0..0xffff supported by X. */
5932 r = (double) r * 65535 / max_color_idx;
5933 g = (double) g * 65535 / max_color_idx;
5934 b = (double) b * 65535 / max_color_idx;
5935 XPutPixel (ximg, x, y, lookup_rgb_color (f, r, g, b));
5936 }
5937 }
5938
5939 #ifdef COLOR_TABLE_SUPPORT
5940 /* Store in IMG->colors the colors allocated for the image, and
5941 free the color table. */
5942 img->colors = colors_in_color_table (&img->ncolors);
5943 free_color_table ();
5944 #endif /* COLOR_TABLE_SUPPORT */
5945
5946 img->width = width;
5947 img->height = height;
5948
5949 /* Maybe fill in the background field while we have ximg handy. */
5950
5951 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
5952 /* Casting avoids a GCC warning. */
5953 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
5954
5955 /* Put the image into a pixmap. */
5956 x_put_x_image (f, ximg, img->pixmap, width, height);
5957 x_destroy_x_image (ximg);
5958
5959 /* X and W32 versions did it here, MAC version above. ++kfs
5960 img->width = width;
5961 img->height = height; */
5962
5963 UNGCPRO;
5964 xfree (contents);
5965 return 1;
5966 }
5967
5968 \f
5969 /***********************************************************************
5970 PNG
5971 ***********************************************************************/
5972
5973 #if defined (HAVE_PNG) || defined (MAC_OS)
5974
5975 /* Function prototypes. */
5976
5977 static int png_image_p P_ ((Lisp_Object object));
5978 static int png_load P_ ((struct frame *f, struct image *img));
5979
5980 /* The symbol `png' identifying images of this type. */
5981
5982 Lisp_Object Qpng;
5983
5984 /* Indices of image specification fields in png_format, below. */
5985
5986 enum png_keyword_index
5987 {
5988 PNG_TYPE,
5989 PNG_DATA,
5990 PNG_FILE,
5991 PNG_ASCENT,
5992 PNG_MARGIN,
5993 PNG_RELIEF,
5994 PNG_ALGORITHM,
5995 PNG_HEURISTIC_MASK,
5996 PNG_MASK,
5997 PNG_BACKGROUND,
5998 PNG_LAST
5999 };
6000
6001 /* Vector of image_keyword structures describing the format
6002 of valid user-defined image specifications. */
6003
6004 static struct image_keyword png_format[PNG_LAST] =
6005 {
6006 {":type", IMAGE_SYMBOL_VALUE, 1},
6007 {":data", IMAGE_STRING_VALUE, 0},
6008 {":file", IMAGE_STRING_VALUE, 0},
6009 {":ascent", IMAGE_ASCENT_VALUE, 0},
6010 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
6011 {":relief", IMAGE_INTEGER_VALUE, 0},
6012 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6013 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6014 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6015 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
6016 };
6017
6018 /* Structure describing the image type `png'. */
6019
6020 static struct image_type png_type =
6021 {
6022 &Qpng,
6023 png_image_p,
6024 png_load,
6025 x_clear_image,
6026 NULL
6027 };
6028
6029 /* Return non-zero if OBJECT is a valid PNG image specification. */
6030
6031 static int
6032 png_image_p (object)
6033 Lisp_Object object;
6034 {
6035 struct image_keyword fmt[PNG_LAST];
6036 bcopy (png_format, fmt, sizeof fmt);
6037
6038 if (!parse_image_spec (object, fmt, PNG_LAST, Qpng))
6039 return 0;
6040
6041 /* Must specify either the :data or :file keyword. */
6042 return fmt[PNG_FILE].count + fmt[PNG_DATA].count == 1;
6043 }
6044
6045 #endif /* HAVE_PNG || MAC_OS */
6046
6047
6048 #ifdef HAVE_PNG
6049
6050 #if defined HAVE_LIBPNG_PNG_H
6051 # include <libpng/png.h>
6052 #else
6053 # include <png.h>
6054 #endif
6055
6056 #ifdef HAVE_NTGUI
6057 /* PNG library details. */
6058
6059 DEF_IMGLIB_FN (png_get_io_ptr);
6060 DEF_IMGLIB_FN (png_check_sig);
6061 DEF_IMGLIB_FN (png_create_read_struct);
6062 DEF_IMGLIB_FN (png_create_info_struct);
6063 DEF_IMGLIB_FN (png_destroy_read_struct);
6064 DEF_IMGLIB_FN (png_set_read_fn);
6065 DEF_IMGLIB_FN (png_set_sig_bytes);
6066 DEF_IMGLIB_FN (png_read_info);
6067 DEF_IMGLIB_FN (png_get_IHDR);
6068 DEF_IMGLIB_FN (png_get_valid);
6069 DEF_IMGLIB_FN (png_set_strip_16);
6070 DEF_IMGLIB_FN (png_set_expand);
6071 DEF_IMGLIB_FN (png_set_gray_to_rgb);
6072 DEF_IMGLIB_FN (png_set_background);
6073 DEF_IMGLIB_FN (png_get_bKGD);
6074 DEF_IMGLIB_FN (png_read_update_info);
6075 DEF_IMGLIB_FN (png_get_channels);
6076 DEF_IMGLIB_FN (png_get_rowbytes);
6077 DEF_IMGLIB_FN (png_read_image);
6078 DEF_IMGLIB_FN (png_read_end);
6079 DEF_IMGLIB_FN (png_error);
6080
6081 static int
6082 init_png_functions (Lisp_Object libraries)
6083 {
6084 HMODULE library;
6085
6086 /* Try loading libpng under probable names. */
6087 if (!(library = w32_delayed_load (libraries, Qpng)))
6088 return 0;
6089
6090 LOAD_IMGLIB_FN (library, png_get_io_ptr);
6091 LOAD_IMGLIB_FN (library, png_check_sig);
6092 LOAD_IMGLIB_FN (library, png_create_read_struct);
6093 LOAD_IMGLIB_FN (library, png_create_info_struct);
6094 LOAD_IMGLIB_FN (library, png_destroy_read_struct);
6095 LOAD_IMGLIB_FN (library, png_set_read_fn);
6096 LOAD_IMGLIB_FN (library, png_set_sig_bytes);
6097 LOAD_IMGLIB_FN (library, png_read_info);
6098 LOAD_IMGLIB_FN (library, png_get_IHDR);
6099 LOAD_IMGLIB_FN (library, png_get_valid);
6100 LOAD_IMGLIB_FN (library, png_set_strip_16);
6101 LOAD_IMGLIB_FN (library, png_set_expand);
6102 LOAD_IMGLIB_FN (library, png_set_gray_to_rgb);
6103 LOAD_IMGLIB_FN (library, png_set_background);
6104 LOAD_IMGLIB_FN (library, png_get_bKGD);
6105 LOAD_IMGLIB_FN (library, png_read_update_info);
6106 LOAD_IMGLIB_FN (library, png_get_channels);
6107 LOAD_IMGLIB_FN (library, png_get_rowbytes);
6108 LOAD_IMGLIB_FN (library, png_read_image);
6109 LOAD_IMGLIB_FN (library, png_read_end);
6110 LOAD_IMGLIB_FN (library, png_error);
6111 return 1;
6112 }
6113 #else
6114
6115 #define fn_png_get_io_ptr png_get_io_ptr
6116 #define fn_png_check_sig png_check_sig
6117 #define fn_png_create_read_struct png_create_read_struct
6118 #define fn_png_create_info_struct png_create_info_struct
6119 #define fn_png_destroy_read_struct png_destroy_read_struct
6120 #define fn_png_set_read_fn png_set_read_fn
6121 #define fn_png_set_sig_bytes png_set_sig_bytes
6122 #define fn_png_read_info png_read_info
6123 #define fn_png_get_IHDR png_get_IHDR
6124 #define fn_png_get_valid png_get_valid
6125 #define fn_png_set_strip_16 png_set_strip_16
6126 #define fn_png_set_expand png_set_expand
6127 #define fn_png_set_gray_to_rgb png_set_gray_to_rgb
6128 #define fn_png_set_background png_set_background
6129 #define fn_png_get_bKGD png_get_bKGD
6130 #define fn_png_read_update_info png_read_update_info
6131 #define fn_png_get_channels png_get_channels
6132 #define fn_png_get_rowbytes png_get_rowbytes
6133 #define fn_png_read_image png_read_image
6134 #define fn_png_read_end png_read_end
6135 #define fn_png_error png_error
6136
6137 #endif /* HAVE_NTGUI */
6138
6139 /* Error and warning handlers installed when the PNG library
6140 is initialized. */
6141
6142 static void
6143 my_png_error (png_ptr, msg)
6144 png_struct *png_ptr;
6145 char *msg;
6146 {
6147 xassert (png_ptr != NULL);
6148 image_error ("PNG error: %s", build_string (msg), Qnil);
6149 longjmp (png_ptr->jmpbuf, 1);
6150 }
6151
6152
6153 static void
6154 my_png_warning (png_ptr, msg)
6155 png_struct *png_ptr;
6156 char *msg;
6157 {
6158 xassert (png_ptr != NULL);
6159 image_error ("PNG warning: %s", build_string (msg), Qnil);
6160 }
6161
6162 /* Memory source for PNG decoding. */
6163
6164 struct png_memory_storage
6165 {
6166 unsigned char *bytes; /* The data */
6167 size_t len; /* How big is it? */
6168 int index; /* Where are we? */
6169 };
6170
6171
6172 /* Function set as reader function when reading PNG image from memory.
6173 PNG_PTR is a pointer to the PNG control structure. Copy LENGTH
6174 bytes from the input to DATA. */
6175
6176 static void
6177 png_read_from_memory (png_ptr, data, length)
6178 png_structp png_ptr;
6179 png_bytep data;
6180 png_size_t length;
6181 {
6182 struct png_memory_storage *tbr
6183 = (struct png_memory_storage *) fn_png_get_io_ptr (png_ptr);
6184
6185 if (length > tbr->len - tbr->index)
6186 fn_png_error (png_ptr, "Read error");
6187
6188 bcopy (tbr->bytes + tbr->index, data, length);
6189 tbr->index = tbr->index + length;
6190 }
6191
6192
6193 /* Function set as reader function when reading PNG image from a file.
6194 PNG_PTR is a pointer to the PNG control structure. Copy LENGTH
6195 bytes from the input to DATA. */
6196
6197 static void
6198 png_read_from_file (png_ptr, data, length)
6199 png_structp png_ptr;
6200 png_bytep data;
6201 png_size_t length;
6202 {
6203 FILE *fp = (FILE *) fn_png_get_io_ptr (png_ptr);
6204
6205 if (fread (data, 1, length, fp) < length)
6206 fn_png_error (png_ptr, "Read error");
6207 }
6208
6209
6210 /* Load PNG image IMG for use on frame F. Value is non-zero if
6211 successful. */
6212
6213 static int
6214 png_load (f, img)
6215 struct frame *f;
6216 struct image *img;
6217 {
6218 Lisp_Object file, specified_file;
6219 Lisp_Object specified_data;
6220 int x, y, i;
6221 XImagePtr ximg, mask_img = NULL;
6222 struct gcpro gcpro1;
6223 png_struct *png_ptr = NULL;
6224 png_info *info_ptr = NULL, *end_info = NULL;
6225 FILE *volatile fp = NULL;
6226 png_byte sig[8];
6227 png_byte * volatile pixels = NULL;
6228 png_byte ** volatile rows = NULL;
6229 png_uint_32 width, height;
6230 int bit_depth, color_type, interlace_type;
6231 png_byte channels;
6232 png_uint_32 row_bytes;
6233 int transparent_p;
6234 double screen_gamma;
6235 struct png_memory_storage tbr; /* Data to be read */
6236
6237 /* Find out what file to load. */
6238 specified_file = image_spec_value (img->spec, QCfile, NULL);
6239 specified_data = image_spec_value (img->spec, QCdata, NULL);
6240 file = Qnil;
6241 GCPRO1 (file);
6242
6243 if (NILP (specified_data))
6244 {
6245 file = x_find_image_file (specified_file);
6246 if (!STRINGP (file))
6247 {
6248 image_error ("Cannot find image file `%s'", specified_file, Qnil);
6249 UNGCPRO;
6250 return 0;
6251 }
6252
6253 /* Open the image file. */
6254 fp = fopen (SDATA (file), "rb");
6255 if (!fp)
6256 {
6257 image_error ("Cannot open image file `%s'", file, Qnil);
6258 UNGCPRO;
6259 return 0;
6260 }
6261
6262 /* Check PNG signature. */
6263 if (fread (sig, 1, sizeof sig, fp) != sizeof sig
6264 || !fn_png_check_sig (sig, sizeof sig))
6265 {
6266 image_error ("Not a PNG file: `%s'", file, Qnil);
6267 UNGCPRO;
6268 fclose (fp);
6269 return 0;
6270 }
6271 }
6272 else
6273 {
6274 /* Read from memory. */
6275 tbr.bytes = SDATA (specified_data);
6276 tbr.len = SBYTES (specified_data);
6277 tbr.index = 0;
6278
6279 /* Check PNG signature. */
6280 if (tbr.len < sizeof sig
6281 || !fn_png_check_sig (tbr.bytes, sizeof sig))
6282 {
6283 image_error ("Not a PNG image: `%s'", img->spec, Qnil);
6284 UNGCPRO;
6285 return 0;
6286 }
6287
6288 /* Need to skip past the signature. */
6289 tbr.bytes += sizeof (sig);
6290 }
6291
6292 /* Initialize read and info structs for PNG lib. Casting return
6293 value avoids a GCC warning on W32. */
6294 png_ptr = (png_structp)fn_png_create_read_struct (PNG_LIBPNG_VER_STRING,
6295 NULL, my_png_error,
6296 my_png_warning);
6297 if (!png_ptr)
6298 {
6299 if (fp) fclose (fp);
6300 UNGCPRO;
6301 return 0;
6302 }
6303
6304 /* Casting return value avoids a GCC warning on W32. */
6305 info_ptr = (png_infop)fn_png_create_info_struct (png_ptr);
6306 if (!info_ptr)
6307 {
6308 fn_png_destroy_read_struct (&png_ptr, NULL, NULL);
6309 if (fp) fclose (fp);
6310 UNGCPRO;
6311 return 0;
6312 }
6313
6314 /* Casting return value avoids a GCC warning on W32. */
6315 end_info = (png_infop)fn_png_create_info_struct (png_ptr);
6316 if (!end_info)
6317 {
6318 fn_png_destroy_read_struct (&png_ptr, &info_ptr, NULL);
6319 if (fp) fclose (fp);
6320 UNGCPRO;
6321 return 0;
6322 }
6323
6324 /* Set error jump-back. We come back here when the PNG library
6325 detects an error. */
6326 if (setjmp (png_ptr->jmpbuf))
6327 {
6328 error:
6329 if (png_ptr)
6330 fn_png_destroy_read_struct (&png_ptr, &info_ptr, &end_info);
6331 xfree (pixels);
6332 xfree (rows);
6333 if (fp) fclose (fp);
6334 UNGCPRO;
6335 return 0;
6336 }
6337
6338 /* Read image info. */
6339 if (!NILP (specified_data))
6340 fn_png_set_read_fn (png_ptr, (void *) &tbr, png_read_from_memory);
6341 else
6342 fn_png_set_read_fn (png_ptr, (void *) fp, png_read_from_file);
6343
6344 fn_png_set_sig_bytes (png_ptr, sizeof sig);
6345 fn_png_read_info (png_ptr, info_ptr);
6346 fn_png_get_IHDR (png_ptr, info_ptr, &width, &height, &bit_depth, &color_type,
6347 &interlace_type, NULL, NULL);
6348
6349 if (!check_image_size (f, width, height))
6350 goto error;
6351
6352 /* If image contains simply transparency data, we prefer to
6353 construct a clipping mask. */
6354 if (fn_png_get_valid (png_ptr, info_ptr, PNG_INFO_tRNS))
6355 transparent_p = 1;
6356 else
6357 transparent_p = 0;
6358
6359 /* This function is easier to write if we only have to handle
6360 one data format: RGB or RGBA with 8 bits per channel. Let's
6361 transform other formats into that format. */
6362
6363 /* Strip more than 8 bits per channel. */
6364 if (bit_depth == 16)
6365 fn_png_set_strip_16 (png_ptr);
6366
6367 /* Expand data to 24 bit RGB, or 8 bit grayscale, with alpha channel
6368 if available. */
6369 fn_png_set_expand (png_ptr);
6370
6371 /* Convert grayscale images to RGB. */
6372 if (color_type == PNG_COLOR_TYPE_GRAY
6373 || color_type == PNG_COLOR_TYPE_GRAY_ALPHA)
6374 fn_png_set_gray_to_rgb (png_ptr);
6375
6376 screen_gamma = (f->gamma ? 1 / f->gamma / 0.45455 : 2.2);
6377
6378 #if 0 /* Avoid double gamma correction for PNG images. */
6379 { /* Tell the PNG lib to handle gamma correction for us. */
6380 int intent;
6381 double image_gamma;
6382 #if defined(PNG_READ_sRGB_SUPPORTED) || defined(PNG_WRITE_sRGB_SUPPORTED)
6383 if (png_get_sRGB (png_ptr, info_ptr, &intent))
6384 /* The libpng documentation says this is right in this case. */
6385 png_set_gamma (png_ptr, screen_gamma, 0.45455);
6386 else
6387 #endif
6388 if (png_get_gAMA (png_ptr, info_ptr, &image_gamma))
6389 /* Image contains gamma information. */
6390 png_set_gamma (png_ptr, screen_gamma, image_gamma);
6391 else
6392 /* Use the standard default for the image gamma. */
6393 png_set_gamma (png_ptr, screen_gamma, 0.45455);
6394 }
6395 #endif /* if 0 */
6396
6397 /* Handle alpha channel by combining the image with a background
6398 color. Do this only if a real alpha channel is supplied. For
6399 simple transparency, we prefer a clipping mask. */
6400 if (!transparent_p)
6401 {
6402 /* png_color_16 *image_bg; */
6403 Lisp_Object specified_bg
6404 = image_spec_value (img->spec, QCbackground, NULL);
6405
6406 if (STRINGP (specified_bg))
6407 /* The user specified `:background', use that. */
6408 {
6409 /* W32 version incorrectly used COLORREF here!! ++kfs */
6410 XColor color;
6411 if (x_defined_color (f, SDATA (specified_bg), &color, 0))
6412 {
6413 png_color_16 user_bg;
6414
6415 bzero (&user_bg, sizeof user_bg);
6416 user_bg.red = color.red >> 8;
6417 user_bg.green = color.green >> 8;
6418 user_bg.blue = color.blue >> 8;
6419
6420 fn_png_set_background (png_ptr, &user_bg,
6421 PNG_BACKGROUND_GAMMA_SCREEN, 0, 1.0);
6422 }
6423 }
6424 /* The commented-out code checked if the png specifies a default
6425 background color, and uses that. Since we use the current
6426 frame background, it is OK for us to ignore this.
6427
6428 else if (fn_png_get_bKGD (png_ptr, info_ptr, &image_bg))
6429 fn_png_set_background (png_ptr, image_bg,
6430 PNG_BACKGROUND_GAMMA_FILE, 1, 1.0);
6431 */
6432 else
6433 {
6434 /* Image does not contain a background color with which
6435 to combine the image data via an alpha channel. Use
6436 the frame's background instead. */
6437 #ifdef HAVE_X_WINDOWS
6438 XColor color;
6439 png_color_16 frame_background;
6440
6441 color.pixel = FRAME_BACKGROUND_PIXEL (f);
6442 x_query_color (f, &color);
6443
6444 bzero (&frame_background, sizeof frame_background);
6445 frame_background.red = color.red >> 8;
6446 frame_background.green = color.green >> 8;
6447 frame_background.blue = color.blue >> 8;
6448 #endif /* HAVE_X_WINDOWS */
6449
6450 #ifdef HAVE_NTGUI
6451 COLORREF color;
6452 png_color_16 frame_background;
6453 color = FRAME_BACKGROUND_PIXEL (f);
6454 #if 0 /* W32 TODO : Colormap support. */
6455 x_query_color (f, &color);
6456 #endif
6457 bzero (&frame_background, sizeof frame_background);
6458 frame_background.red = GetRValue (color);
6459 frame_background.green = GetGValue (color);
6460 frame_background.blue = GetBValue (color);
6461 #endif /* HAVE_NTGUI */
6462
6463 #ifdef MAC_OS
6464 unsigned long color;
6465 png_color_16 frame_background;
6466 color = FRAME_BACKGROUND_PIXEL (f);
6467 #if 0 /* MAC/W32 TODO : Colormap support. */
6468 x_query_color (f, &color);
6469 #endif
6470 bzero (&frame_background, sizeof frame_background);
6471 frame_background.red = RED_FROM_ULONG (color);
6472 frame_background.green = GREEN_FROM_ULONG (color);
6473 frame_background.blue = BLUE_FROM_ULONG (color);
6474 #endif /* MAC_OS */
6475
6476 fn_png_set_background (png_ptr, &frame_background,
6477 PNG_BACKGROUND_GAMMA_SCREEN, 0, 1.0);
6478 }
6479 }
6480
6481 /* Update info structure. */
6482 fn_png_read_update_info (png_ptr, info_ptr);
6483
6484 /* Get number of channels. Valid values are 1 for grayscale images
6485 and images with a palette, 2 for grayscale images with transparency
6486 information (alpha channel), 3 for RGB images, and 4 for RGB
6487 images with alpha channel, i.e. RGBA. If conversions above were
6488 sufficient we should only have 3 or 4 channels here. */
6489 channels = fn_png_get_channels (png_ptr, info_ptr);
6490 xassert (channels == 3 || channels == 4);
6491
6492 /* Number of bytes needed for one row of the image. */
6493 row_bytes = fn_png_get_rowbytes (png_ptr, info_ptr);
6494
6495 /* Allocate memory for the image. */
6496 pixels = (png_byte *) xmalloc (row_bytes * height * sizeof *pixels);
6497 rows = (png_byte **) xmalloc (height * sizeof *rows);
6498 for (i = 0; i < height; ++i)
6499 rows[i] = pixels + i * row_bytes;
6500
6501 /* Read the entire image. */
6502 fn_png_read_image (png_ptr, rows);
6503 fn_png_read_end (png_ptr, info_ptr);
6504 if (fp)
6505 {
6506 fclose (fp);
6507 fp = NULL;
6508 }
6509
6510 /* Create the X image and pixmap. */
6511 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg,
6512 &img->pixmap))
6513 goto error;
6514
6515 /* Create an image and pixmap serving as mask if the PNG image
6516 contains an alpha channel. */
6517 if (channels == 4
6518 && !transparent_p
6519 && !x_create_x_image_and_pixmap (f, width, height, 1,
6520 &mask_img, &img->mask))
6521 {
6522 x_destroy_x_image (ximg);
6523 Free_Pixmap (FRAME_X_DISPLAY (f), img->pixmap);
6524 img->pixmap = NO_PIXMAP;
6525 goto error;
6526 }
6527
6528 /* Fill the X image and mask from PNG data. */
6529 init_color_table ();
6530
6531 for (y = 0; y < height; ++y)
6532 {
6533 png_byte *p = rows[y];
6534
6535 for (x = 0; x < width; ++x)
6536 {
6537 unsigned r, g, b;
6538
6539 r = *p++ << 8;
6540 g = *p++ << 8;
6541 b = *p++ << 8;
6542 XPutPixel (ximg, x, y, lookup_rgb_color (f, r, g, b));
6543 /* An alpha channel, aka mask channel, associates variable
6544 transparency with an image. Where other image formats
6545 support binary transparency---fully transparent or fully
6546 opaque---PNG allows up to 254 levels of partial transparency.
6547 The PNG library implements partial transparency by combining
6548 the image with a specified background color.
6549
6550 I'm not sure how to handle this here nicely: because the
6551 background on which the image is displayed may change, for
6552 real alpha channel support, it would be necessary to create
6553 a new image for each possible background.
6554
6555 What I'm doing now is that a mask is created if we have
6556 boolean transparency information. Otherwise I'm using
6557 the frame's background color to combine the image with. */
6558
6559 if (channels == 4)
6560 {
6561 if (mask_img)
6562 XPutPixel (mask_img, x, y, *p > 0 ? PIX_MASK_DRAW : PIX_MASK_RETAIN);
6563 ++p;
6564 }
6565 }
6566 }
6567
6568 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
6569 /* Set IMG's background color from the PNG image, unless the user
6570 overrode it. */
6571 {
6572 png_color_16 *bg;
6573 if (fn_png_get_bKGD (png_ptr, info_ptr, &bg))
6574 {
6575 img->background = lookup_rgb_color (f, bg->red, bg->green, bg->blue);
6576 img->background_valid = 1;
6577 }
6578 }
6579
6580 #ifdef COLOR_TABLE_SUPPORT
6581 /* Remember colors allocated for this image. */
6582 img->colors = colors_in_color_table (&img->ncolors);
6583 free_color_table ();
6584 #endif /* COLOR_TABLE_SUPPORT */
6585
6586 /* Clean up. */
6587 fn_png_destroy_read_struct (&png_ptr, &info_ptr, &end_info);
6588 xfree (rows);
6589 xfree (pixels);
6590
6591 img->width = width;
6592 img->height = height;
6593
6594 /* Maybe fill in the background field while we have ximg handy.
6595 Casting avoids a GCC warning. */
6596 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
6597
6598 /* Put the image into the pixmap, then free the X image and its buffer. */
6599 x_put_x_image (f, ximg, img->pixmap, width, height);
6600 x_destroy_x_image (ximg);
6601
6602 /* Same for the mask. */
6603 if (mask_img)
6604 {
6605 /* Fill in the background_transparent field while we have the
6606 mask handy. Casting avoids a GCC warning. */
6607 image_background_transparent (img, f, (XImagePtr_or_DC)mask_img);
6608
6609 x_put_x_image (f, mask_img, img->mask, img->width, img->height);
6610 x_destroy_x_image (mask_img);
6611 }
6612
6613 UNGCPRO;
6614 return 1;
6615 }
6616
6617 #else /* HAVE_PNG */
6618
6619 #ifdef MAC_OS
6620 static int
6621 png_load (f, img)
6622 struct frame *f;
6623 struct image *img;
6624 {
6625 #ifdef MAC_OSX
6626 if (MyCGImageCreateWithPNGDataProvider)
6627 return image_load_quartz2d (f, img, 1);
6628 else
6629 #endif
6630 return image_load_quicktime (f, img, kQTFileTypePNG);
6631 }
6632 #endif /* MAC_OS */
6633
6634 #endif /* !HAVE_PNG */
6635
6636
6637 \f
6638 /***********************************************************************
6639 JPEG
6640 ***********************************************************************/
6641
6642 #if defined (HAVE_JPEG) || defined (MAC_OS)
6643
6644 static int jpeg_image_p P_ ((Lisp_Object object));
6645 static int jpeg_load P_ ((struct frame *f, struct image *img));
6646
6647 /* The symbol `jpeg' identifying images of this type. */
6648
6649 Lisp_Object Qjpeg;
6650
6651 /* Indices of image specification fields in gs_format, below. */
6652
6653 enum jpeg_keyword_index
6654 {
6655 JPEG_TYPE,
6656 JPEG_DATA,
6657 JPEG_FILE,
6658 JPEG_ASCENT,
6659 JPEG_MARGIN,
6660 JPEG_RELIEF,
6661 JPEG_ALGORITHM,
6662 JPEG_HEURISTIC_MASK,
6663 JPEG_MASK,
6664 JPEG_BACKGROUND,
6665 JPEG_LAST
6666 };
6667
6668 /* Vector of image_keyword structures describing the format
6669 of valid user-defined image specifications. */
6670
6671 static struct image_keyword jpeg_format[JPEG_LAST] =
6672 {
6673 {":type", IMAGE_SYMBOL_VALUE, 1},
6674 {":data", IMAGE_STRING_VALUE, 0},
6675 {":file", IMAGE_STRING_VALUE, 0},
6676 {":ascent", IMAGE_ASCENT_VALUE, 0},
6677 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
6678 {":relief", IMAGE_INTEGER_VALUE, 0},
6679 {":conversions", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6680 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6681 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6682 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
6683 };
6684
6685 /* Structure describing the image type `jpeg'. */
6686
6687 static struct image_type jpeg_type =
6688 {
6689 &Qjpeg,
6690 jpeg_image_p,
6691 jpeg_load,
6692 x_clear_image,
6693 NULL
6694 };
6695
6696 /* Return non-zero if OBJECT is a valid JPEG image specification. */
6697
6698 static int
6699 jpeg_image_p (object)
6700 Lisp_Object object;
6701 {
6702 struct image_keyword fmt[JPEG_LAST];
6703
6704 bcopy (jpeg_format, fmt, sizeof fmt);
6705
6706 if (!parse_image_spec (object, fmt, JPEG_LAST, Qjpeg))
6707 return 0;
6708
6709 /* Must specify either the :data or :file keyword. */
6710 return fmt[JPEG_FILE].count + fmt[JPEG_DATA].count == 1;
6711 }
6712
6713 #endif /* HAVE_JPEG || MAC_OS */
6714
6715 #ifdef HAVE_JPEG
6716
6717 /* Work around a warning about HAVE_STDLIB_H being redefined in
6718 jconfig.h. */
6719 #ifdef HAVE_STDLIB_H
6720 #define HAVE_STDLIB_H_1
6721 #undef HAVE_STDLIB_H
6722 #endif /* HAVE_STLIB_H */
6723
6724 #if defined (HAVE_NTGUI) && !defined (__WIN32__)
6725 /* In older releases of the jpeg library, jpeglib.h will define boolean
6726 differently depending on __WIN32__, so make sure it is defined. */
6727 #define __WIN32__ 1
6728 #endif
6729
6730 #include <jpeglib.h>
6731 #include <jerror.h>
6732 #include <setjmp.h>
6733
6734 #ifdef HAVE_STLIB_H_1
6735 #define HAVE_STDLIB_H 1
6736 #endif
6737
6738 #ifdef HAVE_NTGUI
6739
6740 /* JPEG library details. */
6741 DEF_IMGLIB_FN (jpeg_CreateDecompress);
6742 DEF_IMGLIB_FN (jpeg_start_decompress);
6743 DEF_IMGLIB_FN (jpeg_finish_decompress);
6744 DEF_IMGLIB_FN (jpeg_destroy_decompress);
6745 DEF_IMGLIB_FN (jpeg_read_header);
6746 DEF_IMGLIB_FN (jpeg_read_scanlines);
6747 DEF_IMGLIB_FN (jpeg_std_error);
6748 DEF_IMGLIB_FN (jpeg_resync_to_restart);
6749
6750 static int
6751 init_jpeg_functions (Lisp_Object libraries)
6752 {
6753 HMODULE library;
6754
6755 if (!(library = w32_delayed_load (libraries, Qjpeg)))
6756 return 0;
6757
6758 LOAD_IMGLIB_FN (library, jpeg_finish_decompress);
6759 LOAD_IMGLIB_FN (library, jpeg_read_scanlines);
6760 LOAD_IMGLIB_FN (library, jpeg_start_decompress);
6761 LOAD_IMGLIB_FN (library, jpeg_read_header);
6762 LOAD_IMGLIB_FN (library, jpeg_CreateDecompress);
6763 LOAD_IMGLIB_FN (library, jpeg_destroy_decompress);
6764 LOAD_IMGLIB_FN (library, jpeg_std_error);
6765 LOAD_IMGLIB_FN (library, jpeg_resync_to_restart);
6766 return 1;
6767 }
6768
6769 /* Wrapper since we can't directly assign the function pointer
6770 to another function pointer that was declared more completely easily. */
6771 static boolean
6772 jpeg_resync_to_restart_wrapper (cinfo, desired)
6773 j_decompress_ptr cinfo;
6774 int desired;
6775 {
6776 return fn_jpeg_resync_to_restart (cinfo, desired);
6777 }
6778
6779 #else
6780
6781 #define fn_jpeg_CreateDecompress(a,b,c) jpeg_create_decompress(a)
6782 #define fn_jpeg_start_decompress jpeg_start_decompress
6783 #define fn_jpeg_finish_decompress jpeg_finish_decompress
6784 #define fn_jpeg_destroy_decompress jpeg_destroy_decompress
6785 #define fn_jpeg_read_header jpeg_read_header
6786 #define fn_jpeg_read_scanlines jpeg_read_scanlines
6787 #define fn_jpeg_std_error jpeg_std_error
6788 #define jpeg_resync_to_restart_wrapper jpeg_resync_to_restart
6789
6790 #endif /* HAVE_NTGUI */
6791
6792 struct my_jpeg_error_mgr
6793 {
6794 struct jpeg_error_mgr pub;
6795 jmp_buf setjmp_buffer;
6796 };
6797
6798
6799 static void
6800 my_error_exit (cinfo)
6801 j_common_ptr cinfo;
6802 {
6803 struct my_jpeg_error_mgr *mgr = (struct my_jpeg_error_mgr *) cinfo->err;
6804 longjmp (mgr->setjmp_buffer, 1);
6805 }
6806
6807
6808 /* Init source method for JPEG data source manager. Called by
6809 jpeg_read_header() before any data is actually read. See
6810 libjpeg.doc from the JPEG lib distribution. */
6811
6812 static void
6813 our_common_init_source (cinfo)
6814 j_decompress_ptr cinfo;
6815 {
6816 }
6817
6818
6819 /* Method to terminate data source. Called by
6820 jpeg_finish_decompress() after all data has been processed. */
6821
6822 static void
6823 our_common_term_source (cinfo)
6824 j_decompress_ptr cinfo;
6825 {
6826 }
6827
6828
6829 /* Fill input buffer method for JPEG data source manager. Called
6830 whenever more data is needed. We read the whole image in one step,
6831 so this only adds a fake end of input marker at the end. */
6832
6833 static JOCTET our_memory_buffer[2];
6834
6835 static boolean
6836 our_memory_fill_input_buffer (cinfo)
6837 j_decompress_ptr cinfo;
6838 {
6839 /* Insert a fake EOI marker. */
6840 struct jpeg_source_mgr *src = cinfo->src;
6841
6842 our_memory_buffer[0] = (JOCTET) 0xFF;
6843 our_memory_buffer[1] = (JOCTET) JPEG_EOI;
6844
6845 src->next_input_byte = our_memory_buffer;
6846 src->bytes_in_buffer = 2;
6847 return 1;
6848 }
6849
6850
6851 /* Method to skip over NUM_BYTES bytes in the image data. CINFO->src
6852 is the JPEG data source manager. */
6853
6854 static void
6855 our_memory_skip_input_data (cinfo, num_bytes)
6856 j_decompress_ptr cinfo;
6857 long num_bytes;
6858 {
6859 struct jpeg_source_mgr *src = (struct jpeg_source_mgr *) cinfo->src;
6860
6861 if (src)
6862 {
6863 if (num_bytes > src->bytes_in_buffer)
6864 ERREXIT (cinfo, JERR_INPUT_EOF);
6865
6866 src->bytes_in_buffer -= num_bytes;
6867 src->next_input_byte += num_bytes;
6868 }
6869 }
6870
6871
6872 /* Set up the JPEG lib for reading an image from DATA which contains
6873 LEN bytes. CINFO is the decompression info structure created for
6874 reading the image. */
6875
6876 static void
6877 jpeg_memory_src (cinfo, data, len)
6878 j_decompress_ptr cinfo;
6879 JOCTET *data;
6880 unsigned int len;
6881 {
6882 struct jpeg_source_mgr *src;
6883
6884 if (cinfo->src == NULL)
6885 {
6886 /* First time for this JPEG object? */
6887 cinfo->src = (struct jpeg_source_mgr *)
6888 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
6889 sizeof (struct jpeg_source_mgr));
6890 src = (struct jpeg_source_mgr *) cinfo->src;
6891 src->next_input_byte = data;
6892 }
6893
6894 src = (struct jpeg_source_mgr *) cinfo->src;
6895 src->init_source = our_common_init_source;
6896 src->fill_input_buffer = our_memory_fill_input_buffer;
6897 src->skip_input_data = our_memory_skip_input_data;
6898 src->resync_to_restart = jpeg_resync_to_restart_wrapper; /* Use default method. */
6899 src->term_source = our_common_term_source;
6900 src->bytes_in_buffer = len;
6901 src->next_input_byte = data;
6902 }
6903
6904
6905 struct jpeg_stdio_mgr
6906 {
6907 struct jpeg_source_mgr mgr;
6908 boolean finished;
6909 FILE *file;
6910 JOCTET *buffer;
6911 };
6912
6913
6914 /* Size of buffer to read JPEG from file.
6915 Not too big, as we want to use alloc_small. */
6916 #define JPEG_STDIO_BUFFER_SIZE 8192
6917
6918
6919 /* Fill input buffer method for JPEG data source manager. Called
6920 whenever more data is needed. The data is read from a FILE *. */
6921
6922 static boolean
6923 our_stdio_fill_input_buffer (cinfo)
6924 j_decompress_ptr cinfo;
6925 {
6926 struct jpeg_stdio_mgr *src;
6927
6928 src = (struct jpeg_stdio_mgr *) cinfo->src;
6929 if (!src->finished)
6930 {
6931 size_t bytes;
6932
6933 bytes = fread (src->buffer, 1, JPEG_STDIO_BUFFER_SIZE, src->file);
6934 if (bytes > 0)
6935 src->mgr.bytes_in_buffer = bytes;
6936 else
6937 {
6938 WARNMS (cinfo, JWRN_JPEG_EOF);
6939 src->finished = 1;
6940 src->buffer[0] = (JOCTET) 0xFF;
6941 src->buffer[1] = (JOCTET) JPEG_EOI;
6942 src->mgr.bytes_in_buffer = 2;
6943 }
6944 src->mgr.next_input_byte = src->buffer;
6945 }
6946
6947 return 1;
6948 }
6949
6950
6951 /* Method to skip over NUM_BYTES bytes in the image data. CINFO->src
6952 is the JPEG data source manager. */
6953
6954 static void
6955 our_stdio_skip_input_data (cinfo, num_bytes)
6956 j_decompress_ptr cinfo;
6957 long num_bytes;
6958 {
6959 struct jpeg_stdio_mgr *src;
6960 src = (struct jpeg_stdio_mgr *) cinfo->src;
6961
6962 while (num_bytes > 0 && !src->finished)
6963 {
6964 if (num_bytes <= src->mgr.bytes_in_buffer)
6965 {
6966 src->mgr.bytes_in_buffer -= num_bytes;
6967 src->mgr.next_input_byte += num_bytes;
6968 break;
6969 }
6970 else
6971 {
6972 num_bytes -= src->mgr.bytes_in_buffer;
6973 src->mgr.bytes_in_buffer = 0;
6974 src->mgr.next_input_byte = NULL;
6975
6976 our_stdio_fill_input_buffer (cinfo);
6977 }
6978 }
6979 }
6980
6981
6982 /* Set up the JPEG lib for reading an image from a FILE *.
6983 CINFO is the decompression info structure created for
6984 reading the image. */
6985
6986 static void
6987 jpeg_file_src (cinfo, fp)
6988 j_decompress_ptr cinfo;
6989 FILE *fp;
6990 {
6991 struct jpeg_stdio_mgr *src;
6992
6993 if (cinfo->src != NULL)
6994 src = (struct jpeg_stdio_mgr *) cinfo->src;
6995 else
6996 {
6997 /* First time for this JPEG object? */
6998 cinfo->src = (struct jpeg_source_mgr *)
6999 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
7000 sizeof (struct jpeg_stdio_mgr));
7001 src = (struct jpeg_stdio_mgr *) cinfo->src;
7002 src->buffer = (JOCTET *)
7003 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
7004 JPEG_STDIO_BUFFER_SIZE);
7005 }
7006
7007 src->file = fp;
7008 src->finished = 0;
7009 src->mgr.init_source = our_common_init_source;
7010 src->mgr.fill_input_buffer = our_stdio_fill_input_buffer;
7011 src->mgr.skip_input_data = our_stdio_skip_input_data;
7012 src->mgr.resync_to_restart = jpeg_resync_to_restart_wrapper; /* Use default method. */
7013 src->mgr.term_source = our_common_term_source;
7014 src->mgr.bytes_in_buffer = 0;
7015 src->mgr.next_input_byte = NULL;
7016 }
7017
7018
7019 /* Load image IMG for use on frame F. Patterned after example.c
7020 from the JPEG lib. */
7021
7022 static int
7023 jpeg_load (f, img)
7024 struct frame *f;
7025 struct image *img;
7026 {
7027 struct jpeg_decompress_struct cinfo;
7028 struct my_jpeg_error_mgr mgr;
7029 Lisp_Object file, specified_file;
7030 Lisp_Object specified_data;
7031 FILE * volatile fp = NULL;
7032 JSAMPARRAY buffer;
7033 int row_stride, x, y;
7034 XImagePtr ximg = NULL;
7035 int rc;
7036 unsigned long *colors;
7037 int width, height;
7038 struct gcpro gcpro1;
7039
7040 /* Open the JPEG file. */
7041 specified_file = image_spec_value (img->spec, QCfile, NULL);
7042 specified_data = image_spec_value (img->spec, QCdata, NULL);
7043 file = Qnil;
7044 GCPRO1 (file);
7045
7046 if (NILP (specified_data))
7047 {
7048 file = x_find_image_file (specified_file);
7049 if (!STRINGP (file))
7050 {
7051 image_error ("Cannot find image file `%s'", specified_file, Qnil);
7052 UNGCPRO;
7053 return 0;
7054 }
7055
7056 fp = fopen (SDATA (file), "rb");
7057 if (fp == NULL)
7058 {
7059 image_error ("Cannot open `%s'", file, Qnil);
7060 UNGCPRO;
7061 return 0;
7062 }
7063 }
7064
7065 /* Customize libjpeg's error handling to call my_error_exit when an
7066 error is detected. This function will perform a longjmp.
7067 Casting return value avoids a GCC warning on W32. */
7068 cinfo.err = (struct jpeg_error_mgr *)fn_jpeg_std_error (&mgr.pub);
7069 mgr.pub.error_exit = my_error_exit;
7070
7071 if ((rc = setjmp (mgr.setjmp_buffer)) != 0)
7072 {
7073 if (rc == 1)
7074 {
7075 /* Called from my_error_exit. Display a JPEG error. */
7076 char buffer[JMSG_LENGTH_MAX];
7077 cinfo.err->format_message ((j_common_ptr) &cinfo, buffer);
7078 image_error ("Error reading JPEG image `%s': %s", img->spec,
7079 build_string (buffer));
7080 }
7081
7082 /* Close the input file and destroy the JPEG object. */
7083 if (fp)
7084 fclose ((FILE *) fp);
7085 fn_jpeg_destroy_decompress (&cinfo);
7086
7087 /* If we already have an XImage, free that. */
7088 x_destroy_x_image (ximg);
7089
7090 /* Free pixmap and colors. */
7091 x_clear_image (f, img);
7092
7093 UNGCPRO;
7094 return 0;
7095 }
7096
7097 /* Create the JPEG decompression object. Let it read from fp.
7098 Read the JPEG image header. */
7099 fn_jpeg_CreateDecompress (&cinfo, JPEG_LIB_VERSION, sizeof (cinfo));
7100
7101 if (NILP (specified_data))
7102 jpeg_file_src (&cinfo, (FILE *) fp);
7103 else
7104 jpeg_memory_src (&cinfo, SDATA (specified_data),
7105 SBYTES (specified_data));
7106
7107 fn_jpeg_read_header (&cinfo, 1);
7108
7109 /* Customize decompression so that color quantization will be used.
7110 Start decompression. */
7111 cinfo.quantize_colors = 1;
7112 fn_jpeg_start_decompress (&cinfo);
7113 width = img->width = cinfo.output_width;
7114 height = img->height = cinfo.output_height;
7115
7116 if (!check_image_size (f, width, height))
7117 {
7118 image_error ("Invalid image size", Qnil, Qnil);
7119 longjmp (mgr.setjmp_buffer, 2);
7120 }
7121
7122 /* Create X image and pixmap. */
7123 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
7124 longjmp (mgr.setjmp_buffer, 2);
7125
7126 /* Allocate colors. When color quantization is used,
7127 cinfo.actual_number_of_colors has been set with the number of
7128 colors generated, and cinfo.colormap is a two-dimensional array
7129 of color indices in the range 0..cinfo.actual_number_of_colors.
7130 No more than 255 colors will be generated. */
7131 {
7132 int i, ir, ig, ib;
7133
7134 if (cinfo.out_color_components > 2)
7135 ir = 0, ig = 1, ib = 2;
7136 else if (cinfo.out_color_components > 1)
7137 ir = 0, ig = 1, ib = 0;
7138 else
7139 ir = 0, ig = 0, ib = 0;
7140
7141 /* Use the color table mechanism because it handles colors that
7142 cannot be allocated nicely. Such colors will be replaced with
7143 a default color, and we don't have to care about which colors
7144 can be freed safely, and which can't. */
7145 init_color_table ();
7146 colors = (unsigned long *) alloca (cinfo.actual_number_of_colors
7147 * sizeof *colors);
7148
7149 for (i = 0; i < cinfo.actual_number_of_colors; ++i)
7150 {
7151 /* Multiply RGB values with 255 because X expects RGB values
7152 in the range 0..0xffff. */
7153 int r = cinfo.colormap[ir][i] << 8;
7154 int g = cinfo.colormap[ig][i] << 8;
7155 int b = cinfo.colormap[ib][i] << 8;
7156 colors[i] = lookup_rgb_color (f, r, g, b);
7157 }
7158
7159 #ifdef COLOR_TABLE_SUPPORT
7160 /* Remember those colors actually allocated. */
7161 img->colors = colors_in_color_table (&img->ncolors);
7162 free_color_table ();
7163 #endif /* COLOR_TABLE_SUPPORT */
7164 }
7165
7166 /* Read pixels. */
7167 row_stride = width * cinfo.output_components;
7168 buffer = cinfo.mem->alloc_sarray ((j_common_ptr) &cinfo, JPOOL_IMAGE,
7169 row_stride, 1);
7170 for (y = 0; y < height; ++y)
7171 {
7172 fn_jpeg_read_scanlines (&cinfo, buffer, 1);
7173 for (x = 0; x < cinfo.output_width; ++x)
7174 XPutPixel (ximg, x, y, colors[buffer[0][x]]);
7175 }
7176
7177 /* Clean up. */
7178 fn_jpeg_finish_decompress (&cinfo);
7179 fn_jpeg_destroy_decompress (&cinfo);
7180 if (fp)
7181 fclose ((FILE *) fp);
7182
7183 /* Maybe fill in the background field while we have ximg handy. */
7184 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
7185 /* Casting avoids a GCC warning. */
7186 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
7187
7188 /* Put the image into the pixmap. */
7189 x_put_x_image (f, ximg, img->pixmap, width, height);
7190 x_destroy_x_image (ximg);
7191 UNGCPRO;
7192 return 1;
7193 }
7194
7195 #else /* HAVE_JPEG */
7196
7197 #ifdef MAC_OS
7198 static int
7199 jpeg_load (f, img)
7200 struct frame *f;
7201 struct image *img;
7202 {
7203 #ifdef MAC_OSX
7204 return image_load_quartz2d (f, img, 0);
7205 #else
7206 return image_load_quicktime (f, img, kQTFileTypeJPEG);
7207 #endif
7208 }
7209 #endif /* MAC_OS */
7210
7211 #endif /* !HAVE_JPEG */
7212
7213
7214 \f
7215 /***********************************************************************
7216 TIFF
7217 ***********************************************************************/
7218
7219 #if defined (HAVE_TIFF) || defined (MAC_OS)
7220
7221 static int tiff_image_p P_ ((Lisp_Object object));
7222 static int tiff_load P_ ((struct frame *f, struct image *img));
7223
7224 /* The symbol `tiff' identifying images of this type. */
7225
7226 Lisp_Object Qtiff;
7227
7228 /* Indices of image specification fields in tiff_format, below. */
7229
7230 enum tiff_keyword_index
7231 {
7232 TIFF_TYPE,
7233 TIFF_DATA,
7234 TIFF_FILE,
7235 TIFF_ASCENT,
7236 TIFF_MARGIN,
7237 TIFF_RELIEF,
7238 TIFF_ALGORITHM,
7239 TIFF_HEURISTIC_MASK,
7240 TIFF_MASK,
7241 TIFF_BACKGROUND,
7242 TIFF_LAST
7243 };
7244
7245 /* Vector of image_keyword structures describing the format
7246 of valid user-defined image specifications. */
7247
7248 static struct image_keyword tiff_format[TIFF_LAST] =
7249 {
7250 {":type", IMAGE_SYMBOL_VALUE, 1},
7251 {":data", IMAGE_STRING_VALUE, 0},
7252 {":file", IMAGE_STRING_VALUE, 0},
7253 {":ascent", IMAGE_ASCENT_VALUE, 0},
7254 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
7255 {":relief", IMAGE_INTEGER_VALUE, 0},
7256 {":conversions", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7257 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7258 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7259 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
7260 };
7261
7262 /* Structure describing the image type `tiff'. */
7263
7264 static struct image_type tiff_type =
7265 {
7266 &Qtiff,
7267 tiff_image_p,
7268 tiff_load,
7269 x_clear_image,
7270 NULL
7271 };
7272
7273 /* Return non-zero if OBJECT is a valid TIFF image specification. */
7274
7275 static int
7276 tiff_image_p (object)
7277 Lisp_Object object;
7278 {
7279 struct image_keyword fmt[TIFF_LAST];
7280 bcopy (tiff_format, fmt, sizeof fmt);
7281
7282 if (!parse_image_spec (object, fmt, TIFF_LAST, Qtiff))
7283 return 0;
7284
7285 /* Must specify either the :data or :file keyword. */
7286 return fmt[TIFF_FILE].count + fmt[TIFF_DATA].count == 1;
7287 }
7288
7289 #endif /* HAVE_TIFF || MAC_OS */
7290
7291 #ifdef HAVE_TIFF
7292
7293 #include <tiffio.h>
7294
7295 #ifdef HAVE_NTGUI
7296
7297 /* TIFF library details. */
7298 DEF_IMGLIB_FN (TIFFSetErrorHandler);
7299 DEF_IMGLIB_FN (TIFFSetWarningHandler);
7300 DEF_IMGLIB_FN (TIFFOpen);
7301 DEF_IMGLIB_FN (TIFFClientOpen);
7302 DEF_IMGLIB_FN (TIFFGetField);
7303 DEF_IMGLIB_FN (TIFFReadRGBAImage);
7304 DEF_IMGLIB_FN (TIFFClose);
7305
7306 static int
7307 init_tiff_functions (Lisp_Object libraries)
7308 {
7309 HMODULE library;
7310
7311 if (!(library = w32_delayed_load (libraries, Qtiff)))
7312 return 0;
7313
7314 LOAD_IMGLIB_FN (library, TIFFSetErrorHandler);
7315 LOAD_IMGLIB_FN (library, TIFFSetWarningHandler);
7316 LOAD_IMGLIB_FN (library, TIFFOpen);
7317 LOAD_IMGLIB_FN (library, TIFFClientOpen);
7318 LOAD_IMGLIB_FN (library, TIFFGetField);
7319 LOAD_IMGLIB_FN (library, TIFFReadRGBAImage);
7320 LOAD_IMGLIB_FN (library, TIFFClose);
7321 return 1;
7322 }
7323
7324 #else
7325
7326 #define fn_TIFFSetErrorHandler TIFFSetErrorHandler
7327 #define fn_TIFFSetWarningHandler TIFFSetWarningHandler
7328 #define fn_TIFFOpen TIFFOpen
7329 #define fn_TIFFClientOpen TIFFClientOpen
7330 #define fn_TIFFGetField TIFFGetField
7331 #define fn_TIFFReadRGBAImage TIFFReadRGBAImage
7332 #define fn_TIFFClose TIFFClose
7333
7334 #endif /* HAVE_NTGUI */
7335
7336
7337 /* Reading from a memory buffer for TIFF images Based on the PNG
7338 memory source, but we have to provide a lot of extra functions.
7339 Blah.
7340
7341 We really only need to implement read and seek, but I am not
7342 convinced that the TIFF library is smart enough not to destroy
7343 itself if we only hand it the function pointers we need to
7344 override. */
7345
7346 typedef struct
7347 {
7348 unsigned char *bytes;
7349 size_t len;
7350 int index;
7351 }
7352 tiff_memory_source;
7353
7354 static size_t
7355 tiff_read_from_memory (data, buf, size)
7356 thandle_t data;
7357 tdata_t buf;
7358 tsize_t size;
7359 {
7360 tiff_memory_source *src = (tiff_memory_source *) data;
7361
7362 if (size > src->len - src->index)
7363 return (size_t) -1;
7364 bcopy (src->bytes + src->index, buf, size);
7365 src->index += size;
7366 return size;
7367 }
7368
7369 static size_t
7370 tiff_write_from_memory (data, buf, size)
7371 thandle_t data;
7372 tdata_t buf;
7373 tsize_t size;
7374 {
7375 return (size_t) -1;
7376 }
7377
7378 static toff_t
7379 tiff_seek_in_memory (data, off, whence)
7380 thandle_t data;
7381 toff_t off;
7382 int whence;
7383 {
7384 tiff_memory_source *src = (tiff_memory_source *) data;
7385 int idx;
7386
7387 switch (whence)
7388 {
7389 case SEEK_SET: /* Go from beginning of source. */
7390 idx = off;
7391 break;
7392
7393 case SEEK_END: /* Go from end of source. */
7394 idx = src->len + off;
7395 break;
7396
7397 case SEEK_CUR: /* Go from current position. */
7398 idx = src->index + off;
7399 break;
7400
7401 default: /* Invalid `whence'. */
7402 return -1;
7403 }
7404
7405 if (idx > src->len || idx < 0)
7406 return -1;
7407
7408 src->index = idx;
7409 return src->index;
7410 }
7411
7412 static int
7413 tiff_close_memory (data)
7414 thandle_t data;
7415 {
7416 /* NOOP */
7417 return 0;
7418 }
7419
7420 static int
7421 tiff_mmap_memory (data, pbase, psize)
7422 thandle_t data;
7423 tdata_t *pbase;
7424 toff_t *psize;
7425 {
7426 /* It is already _IN_ memory. */
7427 return 0;
7428 }
7429
7430 static void
7431 tiff_unmap_memory (data, base, size)
7432 thandle_t data;
7433 tdata_t base;
7434 toff_t size;
7435 {
7436 /* We don't need to do this. */
7437 }
7438
7439 static toff_t
7440 tiff_size_of_memory (data)
7441 thandle_t data;
7442 {
7443 return ((tiff_memory_source *) data)->len;
7444 }
7445
7446
7447 static void
7448 tiff_error_handler (title, format, ap)
7449 const char *title, *format;
7450 va_list ap;
7451 {
7452 char buf[512];
7453 int len;
7454
7455 len = sprintf (buf, "TIFF error: %s ", title);
7456 vsprintf (buf + len, format, ap);
7457 add_to_log (buf, Qnil, Qnil);
7458 }
7459
7460
7461 static void
7462 tiff_warning_handler (title, format, ap)
7463 const char *title, *format;
7464 va_list ap;
7465 {
7466 char buf[512];
7467 int len;
7468
7469 len = sprintf (buf, "TIFF warning: %s ", title);
7470 vsprintf (buf + len, format, ap);
7471 add_to_log (buf, Qnil, Qnil);
7472 }
7473
7474
7475 /* Load TIFF image IMG for use on frame F. Value is non-zero if
7476 successful. */
7477
7478 static int
7479 tiff_load (f, img)
7480 struct frame *f;
7481 struct image *img;
7482 {
7483 Lisp_Object file, specified_file;
7484 Lisp_Object specified_data;
7485 TIFF *tiff;
7486 int width, height, x, y;
7487 uint32 *buf;
7488 int rc;
7489 XImagePtr ximg;
7490 struct gcpro gcpro1;
7491 tiff_memory_source memsrc;
7492
7493 specified_file = image_spec_value (img->spec, QCfile, NULL);
7494 specified_data = image_spec_value (img->spec, QCdata, NULL);
7495 file = Qnil;
7496 GCPRO1 (file);
7497
7498 fn_TIFFSetErrorHandler (tiff_error_handler);
7499 fn_TIFFSetWarningHandler (tiff_warning_handler);
7500
7501 if (NILP (specified_data))
7502 {
7503 /* Read from a file */
7504 file = x_find_image_file (specified_file);
7505 if (!STRINGP (file))
7506 {
7507 image_error ("Cannot find image file `%s'", specified_file, Qnil);
7508 UNGCPRO;
7509 return 0;
7510 }
7511
7512 /* Try to open the image file. Casting return value avoids a
7513 GCC warning on W32. */
7514 tiff = (TIFF *)fn_TIFFOpen (SDATA (file), "r");
7515 if (tiff == NULL)
7516 {
7517 image_error ("Cannot open `%s'", file, Qnil);
7518 UNGCPRO;
7519 return 0;
7520 }
7521 }
7522 else
7523 {
7524 /* Memory source! */
7525 memsrc.bytes = SDATA (specified_data);
7526 memsrc.len = SBYTES (specified_data);
7527 memsrc.index = 0;
7528
7529 /* Casting return value avoids a GCC warning on W32. */
7530 tiff = (TIFF *)fn_TIFFClientOpen ("memory_source", "r", &memsrc,
7531 (TIFFReadWriteProc) tiff_read_from_memory,
7532 (TIFFReadWriteProc) tiff_write_from_memory,
7533 tiff_seek_in_memory,
7534 tiff_close_memory,
7535 tiff_size_of_memory,
7536 tiff_mmap_memory,
7537 tiff_unmap_memory);
7538
7539 if (!tiff)
7540 {
7541 image_error ("Cannot open memory source for `%s'", img->spec, Qnil);
7542 UNGCPRO;
7543 return 0;
7544 }
7545 }
7546
7547 /* Get width and height of the image, and allocate a raster buffer
7548 of width x height 32-bit values. */
7549 fn_TIFFGetField (tiff, TIFFTAG_IMAGEWIDTH, &width);
7550 fn_TIFFGetField (tiff, TIFFTAG_IMAGELENGTH, &height);
7551
7552 if (!check_image_size (f, width, height))
7553 {
7554 image_error ("Invalid image size", Qnil, Qnil);
7555 UNGCPRO;
7556 return 0;
7557 }
7558
7559 buf = (uint32 *) xmalloc (width * height * sizeof *buf);
7560
7561 rc = fn_TIFFReadRGBAImage (tiff, width, height, buf, 0);
7562 fn_TIFFClose (tiff);
7563 if (!rc)
7564 {
7565 image_error ("Error reading TIFF image `%s'", img->spec, Qnil);
7566 xfree (buf);
7567 UNGCPRO;
7568 return 0;
7569 }
7570
7571 /* Create the X image and pixmap. */
7572 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
7573 {
7574 xfree (buf);
7575 UNGCPRO;
7576 return 0;
7577 }
7578
7579 /* Initialize the color table. */
7580 init_color_table ();
7581
7582 /* Process the pixel raster. Origin is in the lower-left corner. */
7583 for (y = 0; y < height; ++y)
7584 {
7585 uint32 *row = buf + y * width;
7586
7587 for (x = 0; x < width; ++x)
7588 {
7589 uint32 abgr = row[x];
7590 int r = TIFFGetR (abgr) << 8;
7591 int g = TIFFGetG (abgr) << 8;
7592 int b = TIFFGetB (abgr) << 8;
7593 XPutPixel (ximg, x, height - 1 - y, lookup_rgb_color (f, r, g, b));
7594 }
7595 }
7596
7597 #ifdef COLOR_TABLE_SUPPORT
7598 /* Remember the colors allocated for the image. Free the color table. */
7599 img->colors = colors_in_color_table (&img->ncolors);
7600 free_color_table ();
7601 #endif /* COLOR_TABLE_SUPPORT */
7602
7603 img->width = width;
7604 img->height = height;
7605
7606 /* Maybe fill in the background field while we have ximg handy. */
7607 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
7608 /* Casting avoids a GCC warning on W32. */
7609 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
7610
7611 /* Put the image into the pixmap, then free the X image and its buffer. */
7612 x_put_x_image (f, ximg, img->pixmap, width, height);
7613 x_destroy_x_image (ximg);
7614 xfree (buf);
7615
7616 UNGCPRO;
7617 return 1;
7618 }
7619
7620 #else /* HAVE_TIFF */
7621
7622 #ifdef MAC_OS
7623 static int
7624 tiff_load (f, img)
7625 struct frame *f;
7626 struct image *img;
7627 {
7628 return image_load_quicktime (f, img, kQTFileTypeTIFF);
7629 }
7630 #endif /* MAC_OS */
7631
7632 #endif /* !HAVE_TIFF */
7633
7634
7635 \f
7636 /***********************************************************************
7637 GIF
7638 ***********************************************************************/
7639
7640 #if defined (HAVE_GIF) || defined (MAC_OS)
7641
7642 static int gif_image_p P_ ((Lisp_Object object));
7643 static int gif_load P_ ((struct frame *f, struct image *img));
7644 static void gif_clear_image P_ ((struct frame *f, struct image *img));
7645
7646 /* The symbol `gif' identifying images of this type. */
7647
7648 Lisp_Object Qgif;
7649
7650 /* Indices of image specification fields in gif_format, below. */
7651
7652 enum gif_keyword_index
7653 {
7654 GIF_TYPE,
7655 GIF_DATA,
7656 GIF_FILE,
7657 GIF_ASCENT,
7658 GIF_MARGIN,
7659 GIF_RELIEF,
7660 GIF_ALGORITHM,
7661 GIF_HEURISTIC_MASK,
7662 GIF_MASK,
7663 GIF_IMAGE,
7664 GIF_BACKGROUND,
7665 GIF_LAST
7666 };
7667
7668 /* Vector of image_keyword structures describing the format
7669 of valid user-defined image specifications. */
7670
7671 static struct image_keyword gif_format[GIF_LAST] =
7672 {
7673 {":type", IMAGE_SYMBOL_VALUE, 1},
7674 {":data", IMAGE_STRING_VALUE, 0},
7675 {":file", IMAGE_STRING_VALUE, 0},
7676 {":ascent", IMAGE_ASCENT_VALUE, 0},
7677 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
7678 {":relief", IMAGE_INTEGER_VALUE, 0},
7679 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7680 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7681 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7682 {":image", IMAGE_NON_NEGATIVE_INTEGER_VALUE, 0},
7683 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
7684 };
7685
7686 /* Structure describing the image type `gif'. */
7687
7688 static struct image_type gif_type =
7689 {
7690 &Qgif,
7691 gif_image_p,
7692 gif_load,
7693 gif_clear_image,
7694 NULL
7695 };
7696
7697 /* Free X resources of GIF image IMG which is used on frame F. */
7698
7699 static void
7700 gif_clear_image (f, img)
7701 struct frame *f;
7702 struct image *img;
7703 {
7704 /* IMG->data.ptr_val may contain extension data. */
7705 img->data.lisp_val = Qnil;
7706 x_clear_image (f, img);
7707 }
7708
7709 /* Return non-zero if OBJECT is a valid GIF image specification. */
7710
7711 static int
7712 gif_image_p (object)
7713 Lisp_Object object;
7714 {
7715 struct image_keyword fmt[GIF_LAST];
7716 bcopy (gif_format, fmt, sizeof fmt);
7717
7718 if (!parse_image_spec (object, fmt, GIF_LAST, Qgif))
7719 return 0;
7720
7721 /* Must specify either the :data or :file keyword. */
7722 return fmt[GIF_FILE].count + fmt[GIF_DATA].count == 1;
7723 }
7724
7725 #endif /* HAVE_GIF || MAC_OS */
7726
7727 #ifdef HAVE_GIF
7728
7729 #if defined (HAVE_NTGUI) || defined (MAC_OS)
7730 /* winuser.h might define DrawText to DrawTextA or DrawTextW.
7731 Undefine before redefining to avoid a preprocessor warning. */
7732 #ifdef DrawText
7733 #undef DrawText
7734 #endif
7735 /* avoid conflict with QuickdrawText.h */
7736 #define DrawText gif_DrawText
7737 #include <gif_lib.h>
7738 #undef DrawText
7739
7740 #else /* HAVE_NTGUI || MAC_OS */
7741
7742 #include <gif_lib.h>
7743
7744 #endif /* HAVE_NTGUI || MAC_OS */
7745
7746
7747 #ifdef HAVE_NTGUI
7748
7749 /* GIF library details. */
7750 DEF_IMGLIB_FN (DGifCloseFile);
7751 DEF_IMGLIB_FN (DGifSlurp);
7752 DEF_IMGLIB_FN (DGifOpen);
7753 DEF_IMGLIB_FN (DGifOpenFileName);
7754
7755 static int
7756 init_gif_functions (Lisp_Object libraries)
7757 {
7758 HMODULE library;
7759
7760 if (!(library = w32_delayed_load (libraries, Qgif)))
7761 return 0;
7762
7763 LOAD_IMGLIB_FN (library, DGifCloseFile);
7764 LOAD_IMGLIB_FN (library, DGifSlurp);
7765 LOAD_IMGLIB_FN (library, DGifOpen);
7766 LOAD_IMGLIB_FN (library, DGifOpenFileName);
7767 return 1;
7768 }
7769
7770 #else
7771
7772 #define fn_DGifCloseFile DGifCloseFile
7773 #define fn_DGifSlurp DGifSlurp
7774 #define fn_DGifOpen DGifOpen
7775 #define fn_DGifOpenFileName DGifOpenFileName
7776
7777 #endif /* HAVE_NTGUI */
7778
7779 /* Reading a GIF image from memory
7780 Based on the PNG memory stuff to a certain extent. */
7781
7782 typedef struct
7783 {
7784 unsigned char *bytes;
7785 size_t len;
7786 int index;
7787 }
7788 gif_memory_source;
7789
7790 /* Make the current memory source available to gif_read_from_memory.
7791 It's done this way because not all versions of libungif support
7792 a UserData field in the GifFileType structure. */
7793 static gif_memory_source *current_gif_memory_src;
7794
7795 static int
7796 gif_read_from_memory (file, buf, len)
7797 GifFileType *file;
7798 GifByteType *buf;
7799 int len;
7800 {
7801 gif_memory_source *src = current_gif_memory_src;
7802
7803 if (len > src->len - src->index)
7804 return -1;
7805
7806 bcopy (src->bytes + src->index, buf, len);
7807 src->index += len;
7808 return len;
7809 }
7810
7811
7812 /* Load GIF image IMG for use on frame F. Value is non-zero if
7813 successful. */
7814
7815 static int interlace_start[] = {0, 4, 2, 1};
7816 static int interlace_increment[] = {8, 8, 4, 2};
7817
7818 static int
7819 gif_load (f, img)
7820 struct frame *f;
7821 struct image *img;
7822 {
7823 Lisp_Object file, specified_file;
7824 Lisp_Object specified_data;
7825 int rc, width, height, x, y, i;
7826 XImagePtr ximg;
7827 ColorMapObject *gif_color_map;
7828 unsigned long pixel_colors[256];
7829 GifFileType *gif;
7830 struct gcpro gcpro1;
7831 Lisp_Object image;
7832 int ino, image_height, image_width;
7833 gif_memory_source memsrc;
7834 unsigned char *raster;
7835
7836 specified_file = image_spec_value (img->spec, QCfile, NULL);
7837 specified_data = image_spec_value (img->spec, QCdata, NULL);
7838 file = Qnil;
7839 GCPRO1 (file);
7840
7841 if (NILP (specified_data))
7842 {
7843 file = x_find_image_file (specified_file);
7844 if (!STRINGP (file))
7845 {
7846 image_error ("Cannot find image file `%s'", specified_file, Qnil);
7847 UNGCPRO;
7848 return 0;
7849 }
7850
7851 /* Open the GIF file. Casting return value avoids a GCC warning
7852 on W32. */
7853 gif = (GifFileType *)fn_DGifOpenFileName (SDATA (file));
7854 if (gif == NULL)
7855 {
7856 image_error ("Cannot open `%s'", file, Qnil);
7857 UNGCPRO;
7858 return 0;
7859 }
7860 }
7861 else
7862 {
7863 /* Read from memory! */
7864 current_gif_memory_src = &memsrc;
7865 memsrc.bytes = SDATA (specified_data);
7866 memsrc.len = SBYTES (specified_data);
7867 memsrc.index = 0;
7868
7869 /* Casting return value avoids a GCC warning on W32. */
7870 gif = (GifFileType *) fn_DGifOpen (&memsrc, gif_read_from_memory);
7871 if (!gif)
7872 {
7873 image_error ("Cannot open memory source `%s'", img->spec, Qnil);
7874 UNGCPRO;
7875 return 0;
7876 }
7877 }
7878
7879 /* Before reading entire contents, check the declared image size. */
7880 if (!check_image_size (f, gif->SWidth, gif->SHeight))
7881 {
7882 image_error ("Invalid image size", Qnil, Qnil);
7883 fn_DGifCloseFile (gif);
7884 UNGCPRO;
7885 return 0;
7886 }
7887
7888 /* Read entire contents. */
7889 rc = fn_DGifSlurp (gif);
7890 if (rc == GIF_ERROR)
7891 {
7892 image_error ("Error reading `%s'", img->spec, Qnil);
7893 fn_DGifCloseFile (gif);
7894 UNGCPRO;
7895 return 0;
7896 }
7897
7898 image = image_spec_value (img->spec, QCindex, NULL);
7899 ino = INTEGERP (image) ? XFASTINT (image) : 0;
7900 if (ino >= gif->ImageCount)
7901 {
7902 image_error ("Invalid image number `%s' in image `%s'",
7903 image, img->spec);
7904 fn_DGifCloseFile (gif);
7905 UNGCPRO;
7906 return 0;
7907 }
7908
7909 img->corners[TOP_CORNER] = gif->SavedImages[ino].ImageDesc.Top;
7910 img->corners[LEFT_CORNER] = gif->SavedImages[ino].ImageDesc.Left;
7911 image_height = gif->SavedImages[ino].ImageDesc.Height;
7912 img->corners[BOT_CORNER] = img->corners[TOP_CORNER] + image_height;
7913 image_width = gif->SavedImages[ino].ImageDesc.Width;
7914 img->corners[RIGHT_CORNER] = img->corners[LEFT_CORNER] + image_width;
7915
7916 width = img->width = max (gif->SWidth,
7917 max (gif->Image.Left + gif->Image.Width,
7918 img->corners[RIGHT_CORNER]));
7919 height = img->height = max (gif->SHeight,
7920 max (gif->Image.Top + gif->Image.Height,
7921 img->corners[BOT_CORNER]));
7922
7923 if (!check_image_size (f, width, height))
7924 {
7925 image_error ("Invalid image size", Qnil, Qnil);
7926 fn_DGifCloseFile (gif);
7927 UNGCPRO;
7928 return 0;
7929 }
7930
7931 /* Create the X image and pixmap. */
7932 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
7933 {
7934 fn_DGifCloseFile (gif);
7935 UNGCPRO;
7936 return 0;
7937 }
7938
7939 /* Allocate colors. */
7940 gif_color_map = gif->SavedImages[ino].ImageDesc.ColorMap;
7941 if (!gif_color_map)
7942 gif_color_map = gif->SColorMap;
7943 init_color_table ();
7944 bzero (pixel_colors, sizeof pixel_colors);
7945
7946 if (gif_color_map)
7947 for (i = 0; i < gif_color_map->ColorCount; ++i)
7948 {
7949 int r = gif_color_map->Colors[i].Red << 8;
7950 int g = gif_color_map->Colors[i].Green << 8;
7951 int b = gif_color_map->Colors[i].Blue << 8;
7952 pixel_colors[i] = lookup_rgb_color (f, r, g, b);
7953 }
7954
7955 #ifdef COLOR_TABLE_SUPPORT
7956 img->colors = colors_in_color_table (&img->ncolors);
7957 free_color_table ();
7958 #endif /* COLOR_TABLE_SUPPORT */
7959
7960 /* Clear the part of the screen image that are not covered by
7961 the image from the GIF file. Full animated GIF support
7962 requires more than can be done here (see the gif89 spec,
7963 disposal methods). Let's simply assume that the part
7964 not covered by a sub-image is in the frame's background color. */
7965 for (y = 0; y < img->corners[TOP_CORNER]; ++y)
7966 for (x = 0; x < width; ++x)
7967 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7968
7969 for (y = img->corners[BOT_CORNER]; y < height; ++y)
7970 for (x = 0; x < width; ++x)
7971 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7972
7973 for (y = img->corners[TOP_CORNER]; y < img->corners[BOT_CORNER]; ++y)
7974 {
7975 for (x = 0; x < img->corners[LEFT_CORNER]; ++x)
7976 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7977 for (x = img->corners[RIGHT_CORNER]; x < width; ++x)
7978 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7979 }
7980
7981 /* Read the GIF image into the X image. We use a local variable
7982 `raster' here because RasterBits below is a char *, and invites
7983 problems with bytes >= 0x80. */
7984 raster = (unsigned char *) gif->SavedImages[ino].RasterBits;
7985
7986 if (gif->SavedImages[ino].ImageDesc.Interlace)
7987 {
7988 int pass;
7989 int row = interlace_start[0];
7990
7991 pass = 0;
7992
7993 for (y = 0; y < image_height; y++)
7994 {
7995 if (row >= image_height)
7996 {
7997 row = interlace_start[++pass];
7998 while (row >= image_height)
7999 row = interlace_start[++pass];
8000 }
8001
8002 for (x = 0; x < image_width; x++)
8003 {
8004 int i = raster[(y * image_width) + x];
8005 XPutPixel (ximg, x + img->corners[LEFT_CORNER],
8006 row + img->corners[TOP_CORNER], pixel_colors[i]);
8007 }
8008
8009 row += interlace_increment[pass];
8010 }
8011 }
8012 else
8013 {
8014 for (y = 0; y < image_height; ++y)
8015 for (x = 0; x < image_width; ++x)
8016 {
8017 int i = raster[y * image_width + x];
8018 XPutPixel (ximg, x + img->corners[LEFT_CORNER],
8019 y + img->corners[TOP_CORNER], pixel_colors[i]);
8020 }
8021 }
8022
8023 /* Save GIF image extension data for `image-extension-data'.
8024 Format is (count IMAGES FUNCTION "BYTES" ...). */
8025 img->data.lisp_val = Qnil;
8026 if (gif->SavedImages[ino].ExtensionBlockCount > 0)
8027 {
8028 ExtensionBlock *ext = gif->SavedImages[ino].ExtensionBlocks;
8029 for (i = 0; i < gif->SavedImages[ino].ExtensionBlockCount; i++, ext++)
8030 /* Append (... FUNCTION "BYTES") */
8031 img->data.lisp_val = Fcons (make_unibyte_string (ext->Bytes, ext->ByteCount),
8032 Fcons (make_number (ext->Function),
8033 img->data.lisp_val));
8034 img->data.lisp_val = Fnreverse (img->data.lisp_val);
8035 }
8036 if (gif->ImageCount > 1)
8037 img->data.lisp_val = Fcons (Qcount,
8038 Fcons (make_number (gif->ImageCount),
8039 img->data.lisp_val));
8040
8041 fn_DGifCloseFile (gif);
8042
8043 /* Maybe fill in the background field while we have ximg handy. */
8044 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
8045 /* Casting avoids a GCC warning. */
8046 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
8047
8048 /* Put the image into the pixmap, then free the X image and its buffer. */
8049 x_put_x_image (f, ximg, img->pixmap, width, height);
8050 x_destroy_x_image (ximg);
8051
8052 UNGCPRO;
8053 return 1;
8054 }
8055
8056 #else /* !HAVE_GIF */
8057
8058 #ifdef MAC_OS
8059 static int
8060 gif_load (f, img)
8061 struct frame *f;
8062 struct image *img;
8063 {
8064 Lisp_Object specified_file, file;
8065 Lisp_Object specified_data;
8066 OSErr err;
8067 Boolean graphic_p, movie_p, prefer_graphic_p;
8068 Handle dh = NULL;
8069 Movie movie = NULL;
8070 Lisp_Object image;
8071 Track track = NULL;
8072 Media media = NULL;
8073 long nsamples;
8074 Rect rect;
8075 Lisp_Object specified_bg;
8076 XColor color;
8077 RGBColor bg_color;
8078 int width, height;
8079 XImagePtr ximg;
8080 TimeScale time_scale;
8081 TimeValue time, duration;
8082 int ino;
8083 CGrafPtr old_port;
8084 GDHandle old_gdh;
8085
8086 specified_file = image_spec_value (img->spec, QCfile, NULL);
8087 specified_data = image_spec_value (img->spec, QCdata, NULL);
8088
8089 /* Animated gifs use QuickTime Movie Toolbox. So initialize it here. */
8090 EnterMovies ();
8091
8092 if (NILP (specified_data))
8093 {
8094 /* Read from a file */
8095 FSSpec fss;
8096 short refnum;
8097
8098 err = find_image_fsspec (specified_file, &file, &fss);
8099 if (err != noErr)
8100 {
8101 if (err == fnfErr)
8102 image_error ("Cannot find image file `%s'", specified_file, Qnil);
8103 else
8104 goto open_error;
8105 }
8106
8107 err = CanQuickTimeOpenFile (&fss, kQTFileTypeGIF, 0,
8108 &graphic_p, &movie_p, &prefer_graphic_p, 0);
8109 if (err != noErr)
8110 goto open_error;
8111
8112 if (!graphic_p && !movie_p)
8113 goto open_error;
8114 if (prefer_graphic_p)
8115 return image_load_qt_1 (f, img, kQTFileTypeGIF, &fss, NULL);
8116 err = OpenMovieFile (&fss, &refnum, fsRdPerm);
8117 if (err != noErr)
8118 goto open_error;
8119 err = NewMovieFromFile (&movie, refnum, NULL, NULL, 0, NULL);
8120 CloseMovieFile (refnum);
8121 if (err != noErr)
8122 {
8123 image_error ("Error reading `%s'", file, Qnil);
8124 return 0;
8125 }
8126 }
8127 else
8128 {
8129 /* Memory source! */
8130 Handle dref = NULL;
8131 long file_type_atom[3];
8132
8133 err = PtrToHand (SDATA (specified_data), &dh, SBYTES (specified_data));
8134 if (err != noErr)
8135 {
8136 image_error ("Cannot allocate data handle for `%s'",
8137 img->spec, Qnil);
8138 goto error;
8139 }
8140
8141 file_type_atom[0] = EndianU32_NtoB (sizeof (long) * 3);
8142 file_type_atom[1] = EndianU32_NtoB (kDataRefExtensionMacOSFileType);
8143 file_type_atom[2] = EndianU32_NtoB (kQTFileTypeGIF);
8144 err = PtrToHand (&dh, &dref, sizeof (Handle));
8145 if (err == noErr)
8146 /* no file name */
8147 err = PtrAndHand ("\p", dref, 1);
8148 if (err == noErr)
8149 err = PtrAndHand (file_type_atom, dref, sizeof (long) * 3);
8150 if (err != noErr)
8151 {
8152 image_error ("Cannot allocate handle data ref for `%s'", img->spec, Qnil);
8153 goto error;
8154 }
8155 err = CanQuickTimeOpenDataRef (dref, HandleDataHandlerSubType, &graphic_p,
8156 &movie_p, &prefer_graphic_p, 0);
8157 if (err != noErr)
8158 goto open_error;
8159
8160 if (!graphic_p && !movie_p)
8161 goto open_error;
8162 if (prefer_graphic_p)
8163 {
8164 int success_p;
8165
8166 DisposeHandle (dref);
8167 success_p = image_load_qt_1 (f, img, kQTFileTypeGIF, NULL, dh);
8168 DisposeHandle (dh);
8169 return success_p;
8170 }
8171 err = NewMovieFromDataRef (&movie, 0, NULL, dref,
8172 HandleDataHandlerSubType);
8173 DisposeHandle (dref);
8174 if (err != noErr)
8175 goto open_error;
8176 }
8177
8178 image = image_spec_value (img->spec, QCindex, NULL);
8179 ino = INTEGERP (image) ? XFASTINT (image) : 0;
8180 track = GetMovieIndTrack (movie, 1);
8181 media = GetTrackMedia (track);
8182 nsamples = GetMediaSampleCount (media);
8183 if (ino >= nsamples)
8184 {
8185 image_error ("Invalid image number `%s' in image `%s'",
8186 image, img->spec);
8187 goto error;
8188 }
8189 time_scale = GetMediaTimeScale (media);
8190
8191 specified_bg = image_spec_value (img->spec, QCbackground, NULL);
8192 if (!STRINGP (specified_bg) ||
8193 !mac_defined_color (f, SDATA (specified_bg), &color, 0))
8194 {
8195 color.pixel = FRAME_BACKGROUND_PIXEL (f);
8196 color.red = RED16_FROM_ULONG (color.pixel);
8197 color.green = GREEN16_FROM_ULONG (color.pixel);
8198 color.blue = BLUE16_FROM_ULONG (color.pixel);
8199 }
8200 GetMovieBox (movie, &rect);
8201 width = img->width = rect.right - rect.left;
8202 height = img->height = rect.bottom - rect.top;
8203 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
8204 goto error;
8205
8206 GetGWorld (&old_port, &old_gdh);
8207 SetGWorld (ximg, NULL);
8208 bg_color.red = color.red;
8209 bg_color.green = color.green;
8210 bg_color.blue = color.blue;
8211 RGBBackColor (&bg_color);
8212 SetGWorld (old_port, old_gdh);
8213 SetMovieActive (movie, 1);
8214 SetMovieGWorld (movie, ximg, NULL);
8215 SampleNumToMediaTime (media, ino + 1, &time, &duration);
8216 SetMovieTimeValue (movie, time);
8217 MoviesTask (movie, 0L);
8218 DisposeTrackMedia (media);
8219 DisposeMovieTrack (track);
8220 DisposeMovie (movie);
8221 if (dh)
8222 DisposeHandle (dh);
8223
8224 /* Save GIF image extension data for `image-extension-data'.
8225 Format is (count IMAGES 0xf9 GRAPHIC_CONTROL_EXTENSION_BLOCK). */
8226 {
8227 Lisp_Object gce = make_uninit_string (4);
8228 int centisec = ((float)duration / time_scale) * 100.0f + 0.5f;
8229
8230 /* Fill the delay time field. */
8231 SSET (gce, 1, centisec & 0xff);
8232 SSET (gce, 2, (centisec >> 8) & 0xff);
8233 /* We don't know about other fields. */
8234 SSET (gce, 0, 0);
8235 SSET (gce, 3, 0);
8236
8237 img->data.lisp_val = list4 (Qcount, make_number (nsamples),
8238 make_number (0xf9), gce);
8239 }
8240
8241 /* Maybe fill in the background field while we have ximg handy. */
8242 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
8243 IMAGE_BACKGROUND (img, f, ximg);
8244
8245 /* Put the image into the pixmap. */
8246 x_put_x_image (f, ximg, img->pixmap, width, height);
8247 x_destroy_x_image (ximg);
8248 return 1;
8249
8250 open_error:
8251 image_error ("Cannot open `%s'", file, Qnil);
8252 error:
8253 if (media)
8254 DisposeTrackMedia (media);
8255 if (track)
8256 DisposeMovieTrack (track);
8257 if (movie)
8258 DisposeMovie (movie);
8259 if (dh)
8260 DisposeHandle (dh);
8261 return 0;
8262 }
8263 #endif /* MAC_OS */
8264
8265 #endif /* HAVE_GIF */
8266
8267
8268 \f
8269 /***********************************************************************
8270 SVG
8271 ***********************************************************************/
8272
8273 #if defined (HAVE_RSVG)
8274
8275 /* Function prototypes. */
8276
8277 static int svg_image_p P_ ((Lisp_Object object));
8278 static int svg_load P_ ((struct frame *f, struct image *img));
8279
8280 static int svg_load_image P_ ((struct frame *, struct image *,
8281 unsigned char *, unsigned int));
8282
8283 /* The symbol `svg' identifying images of this type. */
8284
8285 Lisp_Object Qsvg;
8286
8287 /* Indices of image specification fields in svg_format, below. */
8288
8289 enum svg_keyword_index
8290 {
8291 SVG_TYPE,
8292 SVG_DATA,
8293 SVG_FILE,
8294 SVG_ASCENT,
8295 SVG_MARGIN,
8296 SVG_RELIEF,
8297 SVG_ALGORITHM,
8298 SVG_HEURISTIC_MASK,
8299 SVG_MASK,
8300 SVG_BACKGROUND,
8301 SVG_LAST
8302 };
8303
8304 /* Vector of image_keyword structures describing the format
8305 of valid user-defined image specifications. */
8306
8307 static struct image_keyword svg_format[SVG_LAST] =
8308 {
8309 {":type", IMAGE_SYMBOL_VALUE, 1},
8310 {":data", IMAGE_STRING_VALUE, 0},
8311 {":file", IMAGE_STRING_VALUE, 0},
8312 {":ascent", IMAGE_ASCENT_VALUE, 0},
8313 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
8314 {":relief", IMAGE_INTEGER_VALUE, 0},
8315 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8316 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8317 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8318 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
8319 };
8320
8321 /* Structure describing the image type `svg'. Its the same type of
8322 structure defined for all image formats, handled by emacs image
8323 functions. See struct image_type in dispextern.h. */
8324
8325 static struct image_type svg_type =
8326 {
8327 /* An identifier showing that this is an image structure for the SVG format. */
8328 &Qsvg,
8329 /* Handle to a function that can be used to identify a SVG file. */
8330 svg_image_p,
8331 /* Handle to function used to load a SVG file. */
8332 svg_load,
8333 /* Handle to function to free sresources for SVG. */
8334 x_clear_image,
8335 /* An internal field to link to the next image type in a list of
8336 image types, will be filled in when registering the format. */
8337 NULL
8338 };
8339
8340
8341 /* Return non-zero if OBJECT is a valid SVG image specification. Do
8342 this by calling parse_image_spec and supplying the keywords that
8343 identify the SVG format. */
8344
8345 static int
8346 svg_image_p (object)
8347 Lisp_Object object;
8348 {
8349 struct image_keyword fmt[SVG_LAST];
8350 bcopy (svg_format, fmt, sizeof fmt);
8351
8352 if (!parse_image_spec (object, fmt, SVG_LAST, Qsvg))
8353 return 0;
8354
8355 /* Must specify either the :data or :file keyword. */
8356 return fmt[SVG_FILE].count + fmt[SVG_DATA].count == 1;
8357 }
8358
8359 #include <librsvg/rsvg.h>
8360
8361 #ifdef HAVE_NTGUI
8362
8363 /* SVG library functions. */
8364 DEF_IMGLIB_FN (rsvg_handle_new);
8365 DEF_IMGLIB_FN (rsvg_handle_set_size_callback);
8366 DEF_IMGLIB_FN (rsvg_handle_write);
8367 DEF_IMGLIB_FN (rsvg_handle_close);
8368 DEF_IMGLIB_FN (rsvg_handle_get_pixbuf);
8369 DEF_IMGLIB_FN (rsvg_handle_free);
8370
8371 DEF_IMGLIB_FN (gdk_pixbuf_get_width);
8372 DEF_IMGLIB_FN (gdk_pixbuf_get_height);
8373 DEF_IMGLIB_FN (gdk_pixbuf_get_pixels);
8374 DEF_IMGLIB_FN (gdk_pixbuf_get_rowstride);
8375 DEF_IMGLIB_FN (gdk_pixbuf_get_colorspace);
8376 DEF_IMGLIB_FN (gdk_pixbuf_get_n_channels);
8377 DEF_IMGLIB_FN (gdk_pixbuf_get_has_alpha);
8378 DEF_IMGLIB_FN (gdk_pixbuf_get_bits_per_sample);
8379
8380 DEF_IMGLIB_FN (g_type_init);
8381 DEF_IMGLIB_FN (g_object_unref);
8382 DEF_IMGLIB_FN (g_error_free);
8383
8384 Lisp_Object Qgdk_pixbuf, Qglib;
8385
8386 static int
8387 init_svg_functions (Lisp_Object libraries)
8388 {
8389 HMODULE library, gdklib, glib;
8390
8391 if (!(glib = w32_delayed_load (libraries, Qglib))
8392 || !(gdklib = w32_delayed_load (libraries, Qgdk_pixbuf))
8393 || !(library = w32_delayed_load (libraries, Qsvg)))
8394 return 0;
8395
8396 LOAD_IMGLIB_FN (library, rsvg_handle_new);
8397 LOAD_IMGLIB_FN (library, rsvg_handle_set_size_callback);
8398 LOAD_IMGLIB_FN (library, rsvg_handle_write);
8399 LOAD_IMGLIB_FN (library, rsvg_handle_close);
8400 LOAD_IMGLIB_FN (library, rsvg_handle_get_pixbuf);
8401 LOAD_IMGLIB_FN (library, rsvg_handle_free);
8402
8403 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_width);
8404 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_height);
8405 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_pixels);
8406 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_rowstride);
8407 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_colorspace);
8408 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_n_channels);
8409 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_has_alpha);
8410 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_bits_per_sample);
8411
8412 LOAD_IMGLIB_FN (glib, g_type_init);
8413 LOAD_IMGLIB_FN (glib, g_object_unref);
8414 LOAD_IMGLIB_FN (glib, g_error_free);
8415 return 1;
8416 }
8417
8418 #else
8419 /* The following aliases for library functions allow dynamic loading
8420 to be used on some platforms. */
8421 #define fn_rsvg_handle_new rsvg_handle_new
8422 #define fn_rsvg_handle_set_size_callback rsvg_handle_set_size_callback
8423 #define fn_rsvg_handle_write rsvg_handle_write
8424 #define fn_rsvg_handle_close rsvg_handle_close
8425 #define fn_rsvg_handle_get_pixbuf rsvg_handle_get_pixbuf
8426 #define fn_rsvg_handle_free rsvg_handle_free
8427
8428 #define fn_gdk_pixbuf_get_width gdk_pixbuf_get_width
8429 #define fn_gdk_pixbuf_get_height gdk_pixbuf_get_height
8430 #define fn_gdk_pixbuf_get_pixels gdk_pixbuf_get_pixels
8431 #define fn_gdk_pixbuf_get_rowstride gdk_pixbuf_get_rowstride
8432 #define fn_gdk_pixbuf_get_colorspace gdk_pixbuf_get_colorspace
8433 #define fn_gdk_pixbuf_get_n_channels gdk_pixbuf_get_n_channels
8434 #define fn_gdk_pixbuf_get_has_alpha gdk_pixbuf_get_has_alpha
8435 #define fn_gdk_pixbuf_get_bits_per_sample gdk_pixbuf_get_bits_per_sample
8436
8437 #define fn_g_type_init g_type_init
8438 #define fn_g_object_unref g_object_unref
8439 #define fn_g_error_free g_error_free
8440 #endif /* !HAVE_NTGUI */
8441
8442 /* Load SVG image IMG for use on frame F. Value is non-zero if
8443 successful. this function will go into the svg_type structure, and
8444 the prototype thus needs to be compatible with that structure. */
8445
8446 static int
8447 svg_load (f, img)
8448 struct frame *f;
8449 struct image *img;
8450 {
8451 int success_p = 0;
8452 Lisp_Object file_name;
8453
8454 /* If IMG->spec specifies a file name, create a non-file spec from it. */
8455 file_name = image_spec_value (img->spec, QCfile, NULL);
8456 if (STRINGP (file_name))
8457 {
8458 Lisp_Object file;
8459 unsigned char *contents;
8460 int size;
8461 struct gcpro gcpro1;
8462
8463 file = x_find_image_file (file_name);
8464 GCPRO1 (file);
8465 if (!STRINGP (file))
8466 {
8467 image_error ("Cannot find image file `%s'", file_name, Qnil);
8468 UNGCPRO;
8469 return 0;
8470 }
8471
8472 /* Read the entire file into memory. */
8473 contents = slurp_file (SDATA (file), &size);
8474 if (contents == NULL)
8475 {
8476 image_error ("Error loading SVG image `%s'", img->spec, Qnil);
8477 UNGCPRO;
8478 return 0;
8479 }
8480 /* If the file was slurped into memory properly, parse it. */
8481 success_p = svg_load_image (f, img, contents, size);
8482 xfree (contents);
8483 UNGCPRO;
8484 }
8485 /* Else its not a file, its a lisp object. Load the image from a
8486 lisp object rather than a file. */
8487 else
8488 {
8489 Lisp_Object data;
8490
8491 data = image_spec_value (img->spec, QCdata, NULL);
8492 success_p = svg_load_image (f, img, SDATA (data), SBYTES (data));
8493 }
8494
8495 return success_p;
8496 }
8497
8498 /* svg_load_image is a helper function for svg_load, which does the
8499 actual loading given contents and size, apart from frame and image
8500 structures, passed from svg_load.
8501
8502 Uses librsvg to do most of the image processing.
8503
8504 Returns non-zero when successful. */
8505 static int
8506 svg_load_image (f, img, contents, size)
8507 /* Pointer to emacs frame structure. */
8508 struct frame *f;
8509 /* Pointer to emacs image structure. */
8510 struct image *img;
8511 /* String containing the SVG XML data to be parsed. */
8512 unsigned char *contents;
8513 /* Size of data in bytes. */
8514 unsigned int size;
8515 {
8516 RsvgHandle *rsvg_handle;
8517 GError *error = NULL;
8518 GdkPixbuf *pixbuf;
8519 int width;
8520 int height;
8521 const guint8 *pixels;
8522 int rowstride;
8523 XImagePtr ximg;
8524 Lisp_Object specified_bg;
8525 XColor background;
8526 int x;
8527 int y;
8528
8529 /* g_type_init is a glib function that must be called prior to using
8530 gnome type library functions. */
8531 fn_g_type_init ();
8532 /* Make a handle to a new rsvg object. */
8533 rsvg_handle = fn_rsvg_handle_new ();
8534
8535 /* Parse the contents argument and fill in the rsvg_handle. */
8536 fn_rsvg_handle_write (rsvg_handle, contents, size, &error);
8537 if (error)
8538 goto rsvg_error;
8539
8540 /* The parsing is complete, rsvg_handle is ready to used, close it
8541 for further writes. */
8542 fn_rsvg_handle_close (rsvg_handle, &error);
8543 if (error)
8544 goto rsvg_error;
8545 /* We can now get a valid pixel buffer from the svg file, if all
8546 went ok. */
8547 pixbuf = fn_rsvg_handle_get_pixbuf (rsvg_handle);
8548 eassert (pixbuf);
8549
8550 /* Extract some meta data from the svg handle. */
8551 width = fn_gdk_pixbuf_get_width (pixbuf);
8552 height = fn_gdk_pixbuf_get_height (pixbuf);
8553 pixels = fn_gdk_pixbuf_get_pixels (pixbuf);
8554 rowstride = fn_gdk_pixbuf_get_rowstride (pixbuf);
8555
8556 /* Validate the svg meta data. */
8557 eassert (fn_gdk_pixbuf_get_colorspace (pixbuf) == GDK_COLORSPACE_RGB);
8558 eassert (fn_gdk_pixbuf_get_n_channels (pixbuf) == 4);
8559 eassert (fn_gdk_pixbuf_get_has_alpha (pixbuf));
8560 eassert (fn_gdk_pixbuf_get_bits_per_sample (pixbuf) == 8);
8561
8562 /* Try to create a x pixmap to hold the svg pixmap. */
8563 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
8564 {
8565 fn_g_object_unref (pixbuf);
8566 return 0;
8567 }
8568
8569 init_color_table ();
8570
8571 /* Handle alpha channel by combining the image with a background
8572 color. */
8573 specified_bg = image_spec_value (img->spec, QCbackground, NULL);
8574 if (STRINGP (specified_bg)
8575 && x_defined_color (f, SDATA (specified_bg), &background, 0))
8576 {
8577 background.red >>= 8;
8578 background.green >>= 8;
8579 background.blue >>= 8;
8580 }
8581 else
8582 {
8583 #ifdef HAVE_X_WINDOWS
8584 background.pixel = FRAME_BACKGROUND_PIXEL (f);
8585 x_query_color (f, &background);
8586
8587 /* SVG pixmaps specify transparency in the last byte, so right
8588 shift 8 bits to get rid of it, since emacs doesn't support
8589 transparency. */
8590 background.red >>= 8;
8591 background.green >>= 8;
8592 background.blue >>= 8;
8593 #elif defined (MAC_OS)
8594 background.pixel = FRAME_BACKGROUND_PIXEL (f);
8595 background.red = RED_FROM_ULONG (background.pixel);
8596 background.green = GREEN_FROM_ULONG (background.pixel);
8597 background.blue = BLUE_FROM_ULONG (background.pixel);
8598 #elif defined (HAVE_NTGUI)
8599 background.pixel = FRAME_BACKGROUND_PIXEL (f);
8600 #if 0 /* W32 TODO : Colormap support. */
8601 x_query_color (f, &background);
8602 #endif
8603
8604 /* SVG pixmaps specify transparency in the last byte, so right
8605 shift 8 bits to get rid of it, since emacs doesn't support
8606 transparency. */
8607 background.red >>= 8;
8608 background.green >>= 8;
8609 background.blue >>= 8;
8610 #else /* not HAVE_X_WINDOWS && not MAC_OS*/
8611 #error FIXME
8612 #endif
8613 }
8614
8615 /* This loop handles opacity values, since Emacs assumes
8616 non-transparent images. Each pixel must be "flattened" by
8617 calculating the resulting color, given the transparency of the
8618 pixel, and the image background color. */
8619 for (y = 0; y < height; ++y)
8620 {
8621 for (x = 0; x < width; ++x)
8622 {
8623 unsigned red;
8624 unsigned green;
8625 unsigned blue;
8626 unsigned opacity;
8627
8628 red = *pixels++;
8629 green = *pixels++;
8630 blue = *pixels++;
8631 opacity = *pixels++;
8632
8633 red = ((red * opacity)
8634 + (background.red * ((1 << 8) - opacity)));
8635 green = ((green * opacity)
8636 + (background.green * ((1 << 8) - opacity)));
8637 blue = ((blue * opacity)
8638 + (background.blue * ((1 << 8) - opacity)));
8639
8640 XPutPixel (ximg, x, y, lookup_rgb_color (f, red, green, blue));
8641 }
8642
8643 pixels += rowstride - 4 * width;
8644 }
8645
8646 #ifdef COLOR_TABLE_SUPPORT
8647 /* Remember colors allocated for this image. */
8648 img->colors = colors_in_color_table (&img->ncolors);
8649 free_color_table ();
8650 #endif /* COLOR_TABLE_SUPPORT */
8651
8652 fn_g_object_unref (pixbuf);
8653
8654 img->width = width;
8655 img->height = height;
8656
8657 /* Maybe fill in the background field while we have ximg handy.
8658 Casting avoids a GCC warning. */
8659 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
8660
8661 /* Put the image into the pixmap, then free the X image and its
8662 buffer. */
8663 x_put_x_image (f, ximg, img->pixmap, width, height);
8664 x_destroy_x_image (ximg);
8665
8666 return 1;
8667
8668 rsvg_error:
8669 /* FIXME: Use error->message so the user knows what is the actual
8670 problem with the image. */
8671 image_error ("Error parsing SVG image `%s'", img->spec, Qnil);
8672 fn_g_error_free (error);
8673 return 0;
8674 }
8675
8676 #endif /* defined (HAVE_RSVG) */
8677
8678
8679
8680 \f
8681 /***********************************************************************
8682 Ghostscript
8683 ***********************************************************************/
8684
8685 #ifdef HAVE_X_WINDOWS
8686 #define HAVE_GHOSTSCRIPT 1
8687 #endif /* HAVE_X_WINDOWS */
8688
8689 /* The symbol `postscript' identifying images of this type. */
8690
8691 Lisp_Object Qpostscript;
8692
8693 #ifdef HAVE_GHOSTSCRIPT
8694
8695 static int gs_image_p P_ ((Lisp_Object object));
8696 static int gs_load P_ ((struct frame *f, struct image *img));
8697 static void gs_clear_image P_ ((struct frame *f, struct image *img));
8698
8699 /* Keyword symbols. */
8700
8701 Lisp_Object QCloader, QCbounding_box, QCpt_width, QCpt_height;
8702
8703 /* Indices of image specification fields in gs_format, below. */
8704
8705 enum gs_keyword_index
8706 {
8707 GS_TYPE,
8708 GS_PT_WIDTH,
8709 GS_PT_HEIGHT,
8710 GS_FILE,
8711 GS_LOADER,
8712 GS_BOUNDING_BOX,
8713 GS_ASCENT,
8714 GS_MARGIN,
8715 GS_RELIEF,
8716 GS_ALGORITHM,
8717 GS_HEURISTIC_MASK,
8718 GS_MASK,
8719 GS_BACKGROUND,
8720 GS_LAST
8721 };
8722
8723 /* Vector of image_keyword structures describing the format
8724 of valid user-defined image specifications. */
8725
8726 static struct image_keyword gs_format[GS_LAST] =
8727 {
8728 {":type", IMAGE_SYMBOL_VALUE, 1},
8729 {":pt-width", IMAGE_POSITIVE_INTEGER_VALUE, 1},
8730 {":pt-height", IMAGE_POSITIVE_INTEGER_VALUE, 1},
8731 {":file", IMAGE_STRING_VALUE, 1},
8732 {":loader", IMAGE_FUNCTION_VALUE, 0},
8733 {":bounding-box", IMAGE_DONT_CHECK_VALUE_TYPE, 1},
8734 {":ascent", IMAGE_ASCENT_VALUE, 0},
8735 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
8736 {":relief", IMAGE_INTEGER_VALUE, 0},
8737 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8738 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8739 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8740 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
8741 };
8742
8743 /* Structure describing the image type `ghostscript'. */
8744
8745 static struct image_type gs_type =
8746 {
8747 &Qpostscript,
8748 gs_image_p,
8749 gs_load,
8750 gs_clear_image,
8751 NULL
8752 };
8753
8754
8755 /* Free X resources of Ghostscript image IMG which is used on frame F. */
8756
8757 static void
8758 gs_clear_image (f, img)
8759 struct frame *f;
8760 struct image *img;
8761 {
8762 /* IMG->data.ptr_val may contain a recorded colormap. */
8763 xfree (img->data.ptr_val);
8764 x_clear_image (f, img);
8765 }
8766
8767
8768 /* Return non-zero if OBJECT is a valid Ghostscript image
8769 specification. */
8770
8771 static int
8772 gs_image_p (object)
8773 Lisp_Object object;
8774 {
8775 struct image_keyword fmt[GS_LAST];
8776 Lisp_Object tem;
8777 int i;
8778
8779 bcopy (gs_format, fmt, sizeof fmt);
8780
8781 if (!parse_image_spec (object, fmt, GS_LAST, Qpostscript))
8782 return 0;
8783
8784 /* Bounding box must be a list or vector containing 4 integers. */
8785 tem = fmt[GS_BOUNDING_BOX].value;
8786 if (CONSP (tem))
8787 {
8788 for (i = 0; i < 4; ++i, tem = XCDR (tem))
8789 if (!CONSP (tem) || !INTEGERP (XCAR (tem)))
8790 return 0;
8791 if (!NILP (tem))
8792 return 0;
8793 }
8794 else if (VECTORP (tem))
8795 {
8796 if (XVECTOR (tem)->size != 4)
8797 return 0;
8798 for (i = 0; i < 4; ++i)
8799 if (!INTEGERP (XVECTOR (tem)->contents[i]))
8800 return 0;
8801 }
8802 else
8803 return 0;
8804
8805 return 1;
8806 }
8807
8808
8809 /* Load Ghostscript image IMG for use on frame F. Value is non-zero
8810 if successful. */
8811
8812 static int
8813 gs_load (f, img)
8814 struct frame *f;
8815 struct image *img;
8816 {
8817 char buffer[100];
8818 Lisp_Object window_and_pixmap_id = Qnil, loader, pt_height, pt_width;
8819 struct gcpro gcpro1, gcpro2;
8820 Lisp_Object frame;
8821 double in_width, in_height;
8822 Lisp_Object pixel_colors = Qnil;
8823
8824 /* Compute pixel size of pixmap needed from the given size in the
8825 image specification. Sizes in the specification are in pt. 1 pt
8826 = 1/72 in, xdpi and ydpi are stored in the frame's X display
8827 info. */
8828 pt_width = image_spec_value (img->spec, QCpt_width, NULL);
8829 in_width = XFASTINT (pt_width) / 72.0;
8830 img->width = in_width * FRAME_X_DISPLAY_INFO (f)->resx;
8831 pt_height = image_spec_value (img->spec, QCpt_height, NULL);
8832 in_height = XFASTINT (pt_height) / 72.0;
8833 img->height = in_height * FRAME_X_DISPLAY_INFO (f)->resy;
8834
8835 if (!check_image_size (f, img->width, img->height))
8836 {
8837 image_error ("Invalid image size", Qnil, Qnil);
8838 return 0;
8839 }
8840
8841 /* Create the pixmap. */
8842 xassert (img->pixmap == NO_PIXMAP);
8843
8844 /* Only W32 version did BLOCK_INPUT here. ++kfs */
8845 BLOCK_INPUT;
8846 img->pixmap = XCreatePixmap (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
8847 img->width, img->height,
8848 DefaultDepthOfScreen (FRAME_X_SCREEN (f)));
8849 UNBLOCK_INPUT;
8850
8851 if (!img->pixmap)
8852 {
8853 image_error ("Unable to create pixmap for `%s'", img->spec, Qnil);
8854 return 0;
8855 }
8856
8857 /* Call the loader to fill the pixmap. It returns a process object
8858 if successful. We do not record_unwind_protect here because
8859 other places in redisplay like calling window scroll functions
8860 don't either. Let the Lisp loader use `unwind-protect' instead. */
8861 GCPRO2 (window_and_pixmap_id, pixel_colors);
8862
8863 sprintf (buffer, "%lu %lu",
8864 (unsigned long) FRAME_X_WINDOW (f),
8865 (unsigned long) img->pixmap);
8866 window_and_pixmap_id = build_string (buffer);
8867
8868 sprintf (buffer, "%lu %lu",
8869 FRAME_FOREGROUND_PIXEL (f),
8870 FRAME_BACKGROUND_PIXEL (f));
8871 pixel_colors = build_string (buffer);
8872
8873 XSETFRAME (frame, f);
8874 loader = image_spec_value (img->spec, QCloader, NULL);
8875 if (NILP (loader))
8876 loader = intern ("gs-load-image");
8877
8878 img->data.lisp_val = call6 (loader, frame, img->spec,
8879 make_number (img->width),
8880 make_number (img->height),
8881 window_and_pixmap_id,
8882 pixel_colors);
8883 UNGCPRO;
8884 return PROCESSP (img->data.lisp_val);
8885 }
8886
8887
8888 /* Kill the Ghostscript process that was started to fill PIXMAP on
8889 frame F. Called from XTread_socket when receiving an event
8890 telling Emacs that Ghostscript has finished drawing. */
8891
8892 void
8893 x_kill_gs_process (pixmap, f)
8894 Pixmap pixmap;
8895 struct frame *f;
8896 {
8897 struct image_cache *c = FRAME_IMAGE_CACHE (f);
8898 int class, i;
8899 struct image *img;
8900
8901 /* Find the image containing PIXMAP. */
8902 for (i = 0; i < c->used; ++i)
8903 if (c->images[i]->pixmap == pixmap)
8904 break;
8905
8906 /* Should someone in between have cleared the image cache, for
8907 instance, give up. */
8908 if (i == c->used)
8909 return;
8910
8911 /* Kill the GS process. We should have found PIXMAP in the image
8912 cache and its image should contain a process object. */
8913 img = c->images[i];
8914 xassert (PROCESSP (img->data.lisp_val));
8915 Fkill_process (img->data.lisp_val, Qnil);
8916 img->data.lisp_val = Qnil;
8917
8918 #if defined (HAVE_X_WINDOWS)
8919
8920 /* On displays with a mutable colormap, figure out the colors
8921 allocated for the image by looking at the pixels of an XImage for
8922 img->pixmap. */
8923 class = FRAME_X_VISUAL (f)->class;
8924 if (class != StaticColor && class != StaticGray && class != TrueColor)
8925 {
8926 XImagePtr ximg;
8927
8928 BLOCK_INPUT;
8929
8930 /* Try to get an XImage for img->pixmep. */
8931 ximg = XGetImage (FRAME_X_DISPLAY (f), img->pixmap,
8932 0, 0, img->width, img->height, ~0, ZPixmap);
8933 if (ximg)
8934 {
8935 int x, y;
8936
8937 /* Initialize the color table. */
8938 init_color_table ();
8939
8940 /* For each pixel of the image, look its color up in the
8941 color table. After having done so, the color table will
8942 contain an entry for each color used by the image. */
8943 for (y = 0; y < img->height; ++y)
8944 for (x = 0; x < img->width; ++x)
8945 {
8946 unsigned long pixel = XGetPixel (ximg, x, y);
8947 lookup_pixel_color (f, pixel);
8948 }
8949
8950 /* Record colors in the image. Free color table and XImage. */
8951 #ifdef COLOR_TABLE_SUPPORT
8952 img->colors = colors_in_color_table (&img->ncolors);
8953 free_color_table ();
8954 #endif
8955 XDestroyImage (ximg);
8956
8957 #if 0 /* This doesn't seem to be the case. If we free the colors
8958 here, we get a BadAccess later in x_clear_image when
8959 freeing the colors. */
8960 /* We have allocated colors once, but Ghostscript has also
8961 allocated colors on behalf of us. So, to get the
8962 reference counts right, free them once. */
8963 if (img->ncolors)
8964 x_free_colors (f, img->colors, img->ncolors);
8965 #endif
8966 }
8967 else
8968 image_error ("Cannot get X image of `%s'; colors will not be freed",
8969 img->spec, Qnil);
8970
8971 UNBLOCK_INPUT;
8972 }
8973 #endif /* HAVE_X_WINDOWS */
8974
8975 /* Now that we have the pixmap, compute mask and transform the
8976 image if requested. */
8977 BLOCK_INPUT;
8978 postprocess_image (f, img);
8979 UNBLOCK_INPUT;
8980 }
8981
8982 #endif /* HAVE_GHOSTSCRIPT */
8983
8984 \f
8985 /***********************************************************************
8986 Tests
8987 ***********************************************************************/
8988
8989 #if GLYPH_DEBUG
8990
8991 DEFUN ("imagep", Fimagep, Simagep, 1, 1, 0,
8992 doc: /* Value is non-nil if SPEC is a valid image specification. */)
8993 (spec)
8994 Lisp_Object spec;
8995 {
8996 return valid_image_p (spec) ? Qt : Qnil;
8997 }
8998
8999
9000 DEFUN ("lookup-image", Flookup_image, Slookup_image, 1, 1, 0, "")
9001 (spec)
9002 Lisp_Object spec;
9003 {
9004 int id = -1;
9005
9006 if (valid_image_p (spec))
9007 id = lookup_image (SELECTED_FRAME (), spec);
9008
9009 debug_print (spec);
9010 return make_number (id);
9011 }
9012
9013 #endif /* GLYPH_DEBUG != 0 */
9014
9015
9016 /***********************************************************************
9017 Initialization
9018 ***********************************************************************/
9019
9020 #ifdef HAVE_NTGUI
9021 /* Image types that rely on external libraries are loaded dynamically
9022 if the library is available. */
9023 #define CHECK_LIB_AVAILABLE(image_type, init_lib_fn, libraries) \
9024 define_image_type (image_type, init_lib_fn (libraries))
9025 #else
9026 #define CHECK_LIB_AVAILABLE(image_type, init_lib_fn, libraries) \
9027 define_image_type (image_type, 1)
9028 #endif /* HAVE_NTGUI */
9029
9030 DEFUN ("init-image-library", Finit_image_library, Sinit_image_library, 2, 2, 0,
9031 doc: /* Initialize image library implementing image type TYPE.
9032 Return non-nil if TYPE is a supported image type.
9033
9034 Image types pbm and xbm are prebuilt; other types are loaded here.
9035 Libraries to load are specified in alist LIBRARIES (usually, the value
9036 of `image-library-alist', which see). */)
9037 (type, libraries)
9038 Lisp_Object type, libraries;
9039 {
9040 Lisp_Object tested;
9041
9042 /* Don't try to reload the library. */
9043 tested = Fassq (type, Vimage_type_cache);
9044 if (CONSP (tested))
9045 return XCDR (tested);
9046
9047 #if defined (HAVE_XPM) || defined (MAC_OS)
9048 if (EQ (type, Qxpm))
9049 return CHECK_LIB_AVAILABLE (&xpm_type, init_xpm_functions, libraries);
9050 #endif
9051
9052 #if defined (HAVE_JPEG) || defined (MAC_OS)
9053 if (EQ (type, Qjpeg))
9054 return CHECK_LIB_AVAILABLE (&jpeg_type, init_jpeg_functions, libraries);
9055 #endif
9056
9057 #if defined (HAVE_TIFF) || defined (MAC_OS)
9058 if (EQ (type, Qtiff))
9059 return CHECK_LIB_AVAILABLE (&tiff_type, init_tiff_functions, libraries);
9060 #endif
9061
9062 #if defined (HAVE_GIF) || defined (MAC_OS)
9063 if (EQ (type, Qgif))
9064 return CHECK_LIB_AVAILABLE (&gif_type, init_gif_functions, libraries);
9065 #endif
9066
9067 #if defined (HAVE_PNG) || defined (MAC_OS)
9068 if (EQ (type, Qpng))
9069 return CHECK_LIB_AVAILABLE (&png_type, init_png_functions, libraries);
9070 #endif
9071
9072 #if defined (HAVE_RSVG)
9073 if (EQ (type, Qsvg))
9074 return CHECK_LIB_AVAILABLE (&svg_type, init_svg_functions, libraries);
9075 #endif
9076
9077 #ifdef HAVE_GHOSTSCRIPT
9078 if (EQ (type, Qpostscript))
9079 return CHECK_LIB_AVAILABLE (&gs_type, init_gs_functions, libraries);
9080 #endif
9081
9082 /* If the type is not recognized, avoid testing it ever again. */
9083 CACHE_IMAGE_TYPE (type, Qnil);
9084 return Qnil;
9085 }
9086
9087 void
9088 syms_of_image ()
9089 {
9090 extern Lisp_Object Qrisky_local_variable; /* Syms_of_xdisp has already run. */
9091
9092 /* Initialize this only once, since that's what we do with Vimage_types
9093 and they are supposed to be in sync. Initializing here gives correct
9094 operation on GNU/Linux of calling dump-emacs after loading some images. */
9095 image_types = NULL;
9096
9097 /* Must be defined now becase we're going to update it below, while
9098 defining the supported image types. */
9099 DEFVAR_LISP ("image-types", &Vimage_types,
9100 doc: /* List of potentially supported image types.
9101 Each element of the list is a symbol for an image type, like 'jpeg or 'png.
9102 To check whether it is really supported, use `image-type-available-p'. */);
9103 Vimage_types = Qnil;
9104
9105 DEFVAR_LISP ("image-library-alist", &Vimage_library_alist,
9106 doc: /* Alist of image types vs external libraries needed to display them.
9107
9108 Each element is a list (IMAGE-TYPE LIBRARY...), where the car is a symbol
9109 representing a supported image type, and the rest are strings giving
9110 alternate filenames for the corresponding external libraries.
9111
9112 Emacs tries to load the libraries in the order they appear on the
9113 list; if none is loaded, the running session of Emacs won't
9114 support the image type. Types 'pbm and 'xbm don't need to be
9115 listed; they are always supported. */);
9116 Vimage_library_alist = Qnil;
9117 Fput (intern ("image-library-alist"), Qrisky_local_variable, Qt);
9118
9119 DEFVAR_LISP ("max-image-size", &Vmax_image_size,
9120 doc: /* Maximum size of images.
9121 Emacs will not load an image into memory if its pixel width or
9122 pixel height exceeds this limit.
9123
9124 If the value is an integer, it directly specifies the maximum
9125 image height and width, measured in pixels. If it is a floating
9126 point number, it specifies the maximum image height and width
9127 as a ratio to the frame height and width. If the value is
9128 non-numeric, there is no explicit limit on the size of images. */);
9129 Vmax_image_size = make_float (MAX_IMAGE_SIZE);
9130
9131 Vimage_type_cache = Qnil;
9132 staticpro (&Vimage_type_cache);
9133
9134 Qpbm = intern ("pbm");
9135 staticpro (&Qpbm);
9136 ADD_IMAGE_TYPE (Qpbm);
9137
9138 Qxbm = intern ("xbm");
9139 staticpro (&Qxbm);
9140 ADD_IMAGE_TYPE (Qxbm);
9141
9142 define_image_type (&xbm_type, 1);
9143 define_image_type (&pbm_type, 1);
9144
9145 Qcount = intern ("count");
9146 staticpro (&Qcount);
9147
9148 QCascent = intern (":ascent");
9149 staticpro (&QCascent);
9150 QCmargin = intern (":margin");
9151 staticpro (&QCmargin);
9152 QCrelief = intern (":relief");
9153 staticpro (&QCrelief);
9154 QCconversion = intern (":conversion");
9155 staticpro (&QCconversion);
9156 QCcolor_symbols = intern (":color-symbols");
9157 staticpro (&QCcolor_symbols);
9158 QCheuristic_mask = intern (":heuristic-mask");
9159 staticpro (&QCheuristic_mask);
9160 QCindex = intern (":index");
9161 staticpro (&QCindex);
9162 QCmatrix = intern (":matrix");
9163 staticpro (&QCmatrix);
9164 QCcolor_adjustment = intern (":color-adjustment");
9165 staticpro (&QCcolor_adjustment);
9166 QCmask = intern (":mask");
9167 staticpro (&QCmask);
9168
9169 Qlaplace = intern ("laplace");
9170 staticpro (&Qlaplace);
9171 Qemboss = intern ("emboss");
9172 staticpro (&Qemboss);
9173 Qedge_detection = intern ("edge-detection");
9174 staticpro (&Qedge_detection);
9175 Qheuristic = intern ("heuristic");
9176 staticpro (&Qheuristic);
9177
9178 Qpostscript = intern ("postscript");
9179 staticpro (&Qpostscript);
9180 #ifdef HAVE_GHOSTSCRIPT
9181 ADD_IMAGE_TYPE (Qpostscript);
9182 QCloader = intern (":loader");
9183 staticpro (&QCloader);
9184 QCbounding_box = intern (":bounding-box");
9185 staticpro (&QCbounding_box);
9186 QCpt_width = intern (":pt-width");
9187 staticpro (&QCpt_width);
9188 QCpt_height = intern (":pt-height");
9189 staticpro (&QCpt_height);
9190 #endif /* HAVE_GHOSTSCRIPT */
9191
9192 #if defined (HAVE_XPM) || defined (MAC_OS)
9193 Qxpm = intern ("xpm");
9194 staticpro (&Qxpm);
9195 ADD_IMAGE_TYPE (Qxpm);
9196 #endif
9197
9198 #if defined (HAVE_JPEG) || defined (MAC_OS)
9199 Qjpeg = intern ("jpeg");
9200 staticpro (&Qjpeg);
9201 ADD_IMAGE_TYPE (Qjpeg);
9202 #endif
9203
9204 #if defined (HAVE_TIFF) || defined (MAC_OS)
9205 Qtiff = intern ("tiff");
9206 staticpro (&Qtiff);
9207 ADD_IMAGE_TYPE (Qtiff);
9208 #endif
9209
9210 #if defined (HAVE_GIF) || defined (MAC_OS)
9211 Qgif = intern ("gif");
9212 staticpro (&Qgif);
9213 ADD_IMAGE_TYPE (Qgif);
9214 #endif
9215
9216 #if defined (HAVE_PNG) || defined (MAC_OS)
9217 Qpng = intern ("png");
9218 staticpro (&Qpng);
9219 ADD_IMAGE_TYPE (Qpng);
9220 #endif
9221
9222 #if defined (HAVE_RSVG)
9223 Qsvg = intern ("svg");
9224 staticpro (&Qsvg);
9225 ADD_IMAGE_TYPE (Qsvg);
9226 #ifdef HAVE_NTGUI
9227 Qgdk_pixbuf = intern ("gdk-pixbuf");
9228 staticpro (&Qgdk_pixbuf);
9229 Qglib = intern ("glib");
9230 staticpro (&Qglib);
9231 #endif /* HAVE_NTGUI */
9232 #endif /* HAVE_RSVG */
9233
9234 defsubr (&Sinit_image_library);
9235 defsubr (&Sclear_image_cache);
9236 defsubr (&Simage_refresh);
9237 defsubr (&Simage_size);
9238 defsubr (&Simage_mask_p);
9239 defsubr (&Simage_extension_data);
9240
9241 #if GLYPH_DEBUG
9242 defsubr (&Simagep);
9243 defsubr (&Slookup_image);
9244 #endif
9245
9246 DEFVAR_BOOL ("cross-disabled-images", &cross_disabled_images,
9247 doc: /* Non-nil means always draw a cross over disabled images.
9248 Disabled images are those having a `:conversion disabled' property.
9249 A cross is always drawn on black & white displays. */);
9250 cross_disabled_images = 0;
9251
9252 DEFVAR_LISP ("x-bitmap-file-path", &Vx_bitmap_file_path,
9253 doc: /* List of directories to search for window system bitmap files. */);
9254 Vx_bitmap_file_path = decode_env_path ((char *) 0, PATH_BITMAPS);
9255
9256 DEFVAR_LISP ("image-cache-eviction-delay", &Vimage_cache_eviction_delay,
9257 doc: /* Time after which cached images are removed from the cache.
9258 When an image has not been displayed this many seconds, remove it
9259 from the image cache. Value must be an integer or nil with nil
9260 meaning don't clear the cache. */);
9261 Vimage_cache_eviction_delay = make_number (30 * 60);
9262 }
9263
9264 void
9265 init_image ()
9266 {
9267 #if defined (MAC_OSX) && TARGET_API_MAC_CARBON
9268 init_image_func_pointer ();
9269 #endif
9270 }
9271
9272 /* arch-tag: 123c2a5e-14a8-4c53-ab95-af47d7db49b9
9273 (do not change this comment) */