(gdb-put-breakpoint-icon): Correct help-echo.
[emacs.git] / src / image.c
blob1996d8477e918ebf49018cecdc34b5a3c601ef81
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 Free Software Foundation, Inc.
5 This file is part of GNU Emacs.
7 GNU Emacs is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs; see the file COPYING. If not, write to
19 the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
20 Boston, MA 02110-1301, USA. */
22 #include <config.h>
23 #include <stdio.h>
24 #include <math.h>
25 #include <ctype.h>
27 #ifdef HAVE_UNISTD_H
28 #include <unistd.h>
29 #endif
31 /* This makes the fields of a Display accessible, in Xlib header files. */
33 #define XLIB_ILLEGAL_ACCESS
35 #include "lisp.h"
36 #include "frame.h"
37 #include "window.h"
38 #include "dispextern.h"
39 #include "blockinput.h"
40 #include "systime.h"
41 #include <epaths.h>
44 #ifdef HAVE_X_WINDOWS
45 #include "xterm.h"
46 #include <sys/types.h>
47 #include <sys/stat.h>
49 #define COLOR_TABLE_SUPPORT 1
51 typedef struct x_bitmap_record Bitmap_Record;
52 #define GET_PIXEL(ximg, x, y) XGetPixel(ximg, x, y)
53 #define NO_PIXMAP None
55 #define RGB_PIXEL_COLOR unsigned long
57 #define PIX_MASK_RETAIN 0
58 #define PIX_MASK_DRAW 1
59 #endif /* HAVE_X_WINDOWS */
62 #ifdef HAVE_NTGUI
63 #include "w32term.h"
65 /* W32_TODO : Color tables on W32. */
66 #undef COLOR_TABLE_SUPPORT
68 typedef struct w32_bitmap_record Bitmap_Record;
69 #define GET_PIXEL(ximg, x, y) GetPixel(ximg, x, y)
70 #define NO_PIXMAP 0
72 #define RGB_PIXEL_COLOR COLORREF
74 #define PIX_MASK_RETAIN 0
75 #define PIX_MASK_DRAW 1
77 #define FRAME_X_VISUAL(f) FRAME_X_DISPLAY_INFO (f)->visual
78 #define x_defined_color w32_defined_color
79 #define DefaultDepthOfScreen(screen) (one_w32_display_info.n_cbits)
80 #endif /* HAVE_NTGUI */
83 #ifdef MAC_OS
84 #include "macterm.h"
85 #include <sys/stat.h>
86 #ifndef MAC_OSX
87 #include <alloca.h>
88 #include <sys/param.h>
89 #endif
90 #if TARGET_API_MAC_CARBON
91 #ifdef MAC_OSX
92 #include <QuickTime/QuickTime.h>
93 #else /* not MAC_OSX */
94 #include <QuickTime.h>
95 #endif /* not MAC_OSX */
96 #else /* not TARGET_API_MAC_CARBON */
97 #include <Windows.h>
98 #include <Gestalt.h>
99 #include <TextUtils.h>
100 #include <ImageCompression.h>
101 #include <QuickTimeComponents.h>
102 #endif /* not TARGET_API_MAC_CARBON */
104 /* MAC_TODO : Color tables on Mac. */
105 #undef COLOR_TABLE_SUPPORT
107 #define ZPixmap 0 /* arbitrary */
108 typedef struct mac_bitmap_record Bitmap_Record;
110 #define GET_PIXEL(ximg, x, y) XGetPixel(ximg, x, y)
111 #define NO_PIXMAP 0
113 #define RGB_PIXEL_COLOR unsigned long
115 /* A black pixel in a mask bitmap/pixmap means ``draw a source
116 pixel''. A white pixel means ``retain the current pixel''. */
117 #define PIX_MASK_DRAW RGB_TO_ULONG(0,0,0)
118 #define PIX_MASK_RETAIN RGB_TO_ULONG(255,255,255)
120 #define FRAME_X_VISUAL(f) FRAME_X_DISPLAY_INFO (f)->visual
121 #define x_defined_color mac_defined_color
122 #define DefaultDepthOfScreen(screen) (one_mac_display_info.n_planes)
123 #define XDrawLine(display, w, gc, x1, y1, x2, y2) \
124 mac_draw_line_to_pixmap(display, w, gc, x1, y1, x2, y2)
126 #endif /* MAC_OS */
129 /* Search path for bitmap files. */
131 Lisp_Object Vx_bitmap_file_path;
134 static void x_disable_image P_ ((struct frame *, struct image *));
135 static void x_edge_detection P_ ((struct frame *, struct image *, Lisp_Object,
136 Lisp_Object));
138 static void init_color_table P_ ((void));
139 static unsigned long lookup_rgb_color P_ ((struct frame *f, int r, int g, int b));
140 #ifdef COLOR_TABLE_SUPPORT
141 static void free_color_table P_ ((void));
142 static unsigned long *colors_in_color_table P_ ((int *n));
143 static unsigned long lookup_pixel_color P_ ((struct frame *f, unsigned long p));
144 #endif
146 /* Code to deal with bitmaps. Bitmaps are referenced by their bitmap
147 id, which is just an int that this section returns. Bitmaps are
148 reference counted so they can be shared among frames.
150 Bitmap indices are guaranteed to be > 0, so a negative number can
151 be used to indicate no bitmap.
153 If you use x_create_bitmap_from_data, then you must keep track of
154 the bitmaps yourself. That is, creating a bitmap from the same
155 data more than once will not be caught. */
157 #ifdef MAC_OS
159 static XImagePtr
160 XGetImage (display, pixmap, x, y, width, height, plane_mask, format)
161 Display *display; /* not used */
162 Pixmap pixmap;
163 int x, y; /* not used */
164 unsigned int width, height; /* not used */
165 unsigned long plane_mask; /* not used */
166 int format; /* not used */
168 #if GLYPH_DEBUG
169 xassert (x == 0 && y == 0);
171 Rect ri, rp;
172 SetRect (&ri, 0, 0, width, height);
173 xassert (EqualRect (&ri, GetPixBounds (GetGWorldPixMap (pixmap), &rp)));
175 xassert (! (pixelsLocked & GetPixelsState (GetGWorldPixMap (pixmap))));
176 #endif
178 LockPixels (GetGWorldPixMap (pixmap));
180 return pixmap;
183 static void
184 XPutPixel (ximage, x, y, pixel)
185 XImagePtr ximage;
186 int x, y;
187 unsigned long pixel;
189 PixMapHandle pixmap = GetGWorldPixMap (ximage);
190 short depth = GetPixDepth (pixmap);
192 if (depth == 32)
194 char *base_addr = GetPixBaseAddr (pixmap);
195 short row_bytes = GetPixRowBytes (pixmap);
197 ((unsigned long *) (base_addr + y * row_bytes))[x] = pixel;
199 else if (depth == 1)
201 char *base_addr = GetPixBaseAddr (pixmap);
202 short row_bytes = GetPixRowBytes (pixmap);
204 if (pixel == PIX_MASK_DRAW)
205 base_addr[y * row_bytes + x / 8] |= (1 << 7) >> (x & 7);
206 else
207 base_addr[y * row_bytes + x / 8] &= ~((1 << 7) >> (x & 7));
209 else
211 CGrafPtr old_port;
212 GDHandle old_gdh;
213 RGBColor color;
215 GetGWorld (&old_port, &old_gdh);
216 SetGWorld (ximage, NULL);
218 color.red = RED16_FROM_ULONG (pixel);
219 color.green = GREEN16_FROM_ULONG (pixel);
220 color.blue = BLUE16_FROM_ULONG (pixel);
222 SetCPixel (x, y, &color);
224 SetGWorld (old_port, old_gdh);
228 static unsigned long
229 XGetPixel (ximage, x, y)
230 XImagePtr ximage;
231 int x, y;
233 PixMapHandle pixmap = GetGWorldPixMap (ximage);
234 short depth = GetPixDepth (pixmap);
236 if (depth == 32)
238 char *base_addr = GetPixBaseAddr (pixmap);
239 short row_bytes = GetPixRowBytes (pixmap);
241 return ((unsigned long *) (base_addr + y * row_bytes))[x];
243 else if (depth == 1)
245 char *base_addr = GetPixBaseAddr (pixmap);
246 short row_bytes = GetPixRowBytes (pixmap);
248 if (base_addr[y * row_bytes + x / 8] & (1 << (~x & 7)))
249 return PIX_MASK_DRAW;
250 else
251 return PIX_MASK_RETAIN;
253 else
255 CGrafPtr old_port;
256 GDHandle old_gdh;
257 RGBColor color;
259 GetGWorld (&old_port, &old_gdh);
260 SetGWorld (ximage, NULL);
262 GetCPixel (x, y, &color);
264 SetGWorld (old_port, old_gdh);
265 return RGB_TO_ULONG (color.red >> 8, color.green >> 8, color.blue >> 8);
269 static void
270 XDestroyImage (ximg)
271 XImagePtr ximg;
273 UnlockPixels (GetGWorldPixMap (ximg));
275 #endif /* MAC_OS */
278 /* Functions to access the contents of a bitmap, given an id. */
281 x_bitmap_height (f, id)
282 FRAME_PTR f;
283 int id;
285 return FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].height;
289 x_bitmap_width (f, id)
290 FRAME_PTR f;
291 int id;
293 return FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].width;
296 #if defined (HAVE_X_WINDOWS) || defined (HAVE_NTGUI)
298 x_bitmap_pixmap (f, id)
299 FRAME_PTR f;
300 int id;
302 return (int) FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].pixmap;
304 #endif
306 #ifdef HAVE_X_WINDOWS
308 x_bitmap_mask (f, id)
309 FRAME_PTR f;
310 int id;
312 return FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].mask;
314 #endif
316 /* Allocate a new bitmap record. Returns index of new record. */
318 static int
319 x_allocate_bitmap_record (f)
320 FRAME_PTR f;
322 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
323 int i;
325 if (dpyinfo->bitmaps == NULL)
327 dpyinfo->bitmaps_size = 10;
328 dpyinfo->bitmaps
329 = (Bitmap_Record *) xmalloc (dpyinfo->bitmaps_size * sizeof (Bitmap_Record));
330 dpyinfo->bitmaps_last = 1;
331 return 1;
334 if (dpyinfo->bitmaps_last < dpyinfo->bitmaps_size)
335 return ++dpyinfo->bitmaps_last;
337 for (i = 0; i < dpyinfo->bitmaps_size; ++i)
338 if (dpyinfo->bitmaps[i].refcount == 0)
339 return i + 1;
341 dpyinfo->bitmaps_size *= 2;
342 dpyinfo->bitmaps
343 = (Bitmap_Record *) xrealloc (dpyinfo->bitmaps,
344 dpyinfo->bitmaps_size * sizeof (Bitmap_Record));
345 return ++dpyinfo->bitmaps_last;
348 /* Add one reference to the reference count of the bitmap with id ID. */
350 void
351 x_reference_bitmap (f, id)
352 FRAME_PTR f;
353 int id;
355 ++FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].refcount;
358 /* Create a bitmap for frame F from a HEIGHT x WIDTH array of bits at BITS. */
361 x_create_bitmap_from_data (f, bits, width, height)
362 struct frame *f;
363 char *bits;
364 unsigned int width, height;
366 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
367 int id;
369 #ifdef HAVE_X_WINDOWS
370 Pixmap bitmap;
371 bitmap = XCreateBitmapFromData (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
372 bits, width, height);
373 if (! bitmap)
374 return -1;
375 #endif /* HAVE_X_WINDOWS */
377 #ifdef HAVE_NTGUI
378 Pixmap bitmap;
379 bitmap = CreateBitmap (width, height,
380 FRAME_X_DISPLAY_INFO (XFRAME (frame))->n_planes,
381 FRAME_X_DISPLAY_INFO (XFRAME (frame))->n_cbits,
382 bits);
383 if (! bitmap)
384 return -1;
385 #endif /* HAVE_NTGUI */
387 #ifdef MAC_OS
388 /* MAC_TODO: for now fail if width is not mod 16 (toolbox requires it) */
389 if (width % 16 != 0)
390 return -1;
391 #endif
393 id = x_allocate_bitmap_record (f);
394 #ifdef MAC_OS
395 dpyinfo->bitmaps[id - 1].bitmap_data = (char *) xmalloc (height * width);
396 if (! dpyinfo->bitmaps[id - 1].bitmap_data)
397 return -1;
398 bcopy (bits, dpyinfo->bitmaps[id - 1].bitmap_data, height * width);
399 #endif /* MAC_OS */
401 dpyinfo->bitmaps[id - 1].file = NULL;
402 dpyinfo->bitmaps[id - 1].height = height;
403 dpyinfo->bitmaps[id - 1].width = width;
404 dpyinfo->bitmaps[id - 1].refcount = 1;
406 #ifdef HAVE_X_WINDOWS
407 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
408 dpyinfo->bitmaps[id - 1].have_mask = 0;
409 dpyinfo->bitmaps[id - 1].depth = 1;
410 #endif /* HAVE_X_WINDOWS */
412 #ifdef HAVE_NTGUI
413 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
414 dpyinfo->bitmaps[id - 1].hinst = NULL;
415 dpyinfo->bitmaps[id - 1].depth = 1;
416 #endif /* HAVE_NTGUI */
418 return id;
421 /* Create bitmap from file FILE for frame F. */
424 x_create_bitmap_from_file (f, file)
425 struct frame *f;
426 Lisp_Object file;
428 #ifdef MAC_OS
429 return -1; /* MAC_TODO : bitmap support */
430 #endif /* MAC_OS */
432 #ifdef HAVE_NTGUI
433 return -1; /* W32_TODO : bitmap support */
434 #endif /* HAVE_NTGUI */
436 #ifdef HAVE_X_WINDOWS
437 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
438 unsigned int width, height;
439 Pixmap bitmap;
440 int xhot, yhot, result, id;
441 Lisp_Object found;
442 int fd;
443 char *filename;
445 /* Look for an existing bitmap with the same name. */
446 for (id = 0; id < dpyinfo->bitmaps_last; ++id)
448 if (dpyinfo->bitmaps[id].refcount
449 && dpyinfo->bitmaps[id].file
450 && !strcmp (dpyinfo->bitmaps[id].file, (char *) SDATA (file)))
452 ++dpyinfo->bitmaps[id].refcount;
453 return id + 1;
457 /* Search bitmap-file-path for the file, if appropriate. */
458 fd = openp (Vx_bitmap_file_path, file, Qnil, &found, Qnil);
459 if (fd < 0)
460 return -1;
461 emacs_close (fd);
463 filename = (char *) SDATA (found);
465 result = XReadBitmapFile (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
466 filename, &width, &height, &bitmap, &xhot, &yhot);
467 if (result != BitmapSuccess)
468 return -1;
470 id = x_allocate_bitmap_record (f);
471 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
472 dpyinfo->bitmaps[id - 1].have_mask = 0;
473 dpyinfo->bitmaps[id - 1].refcount = 1;
474 dpyinfo->bitmaps[id - 1].file = (char *) xmalloc (SBYTES (file) + 1);
475 dpyinfo->bitmaps[id - 1].depth = 1;
476 dpyinfo->bitmaps[id - 1].height = height;
477 dpyinfo->bitmaps[id - 1].width = width;
478 strcpy (dpyinfo->bitmaps[id - 1].file, SDATA (file));
480 return id;
481 #endif /* HAVE_X_WINDOWS */
484 /* Free bitmap B. */
486 static void
487 Free_Bitmap_Record (dpyinfo, bm)
488 Display_Info *dpyinfo;
489 Bitmap_Record *bm;
491 #ifdef HAVE_X_WINDOWS
492 XFreePixmap (dpyinfo->display, bm->pixmap);
493 if (bm->have_mask)
494 XFreePixmap (dpyinfo->display, bm->mask);
495 #endif /* HAVE_X_WINDOWS */
497 #ifdef HAVE_NTGUI
498 DeleteObject (bm->pixmap);
499 #endif /* HAVE_NTGUI */
501 #ifdef MAC_OS
502 xfree (bm->bitmap_data); /* Added ++kfs */
503 bm->bitmap_data = NULL;
504 #endif /* MAC_OS */
506 if (bm->file)
508 xfree (bm->file);
509 bm->file = NULL;
513 /* Remove reference to bitmap with id number ID. */
515 void
516 x_destroy_bitmap (f, id)
517 FRAME_PTR f;
518 int id;
520 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
522 if (id > 0)
524 Bitmap_Record *bm = &dpyinfo->bitmaps[id - 1];
526 if (--bm->refcount == 0)
528 BLOCK_INPUT;
529 Free_Bitmap_Record (dpyinfo, bm);
530 UNBLOCK_INPUT;
535 /* Free all the bitmaps for the display specified by DPYINFO. */
537 void
538 x_destroy_all_bitmaps (dpyinfo)
539 Display_Info *dpyinfo;
541 int i;
542 Bitmap_Record *bm = dpyinfo->bitmaps;
544 for (i = 0; i < dpyinfo->bitmaps_last; i++, bm++)
545 if (bm->refcount > 0)
546 Free_Bitmap_Record (dpyinfo, bm);
548 dpyinfo->bitmaps_last = 0;
552 #ifdef HAVE_X_WINDOWS
554 /* Useful functions defined in the section
555 `Image type independent image structures' below. */
557 static unsigned long four_corners_best P_ ((XImagePtr ximg, unsigned long width,
558 unsigned long height));
560 static int x_create_x_image_and_pixmap P_ ((struct frame *f, int width, int height,
561 int depth, XImagePtr *ximg,
562 Pixmap *pixmap));
564 static void x_destroy_x_image P_ ((XImagePtr ximg));
567 /* Create a mask of a bitmap. Note is this not a perfect mask.
568 It's nicer with some borders in this context */
571 x_create_bitmap_mask (f, id)
572 struct frame *f;
573 int id;
575 Pixmap pixmap, mask;
576 XImagePtr ximg, mask_img;
577 unsigned long width, height;
578 int result;
579 unsigned long bg;
580 unsigned long x, y, xp, xm, yp, ym;
581 GC gc;
583 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
585 if (!(id > 0))
586 return -1;
588 pixmap = x_bitmap_pixmap (f, id);
589 width = x_bitmap_width (f, id);
590 height = x_bitmap_height (f, id);
592 BLOCK_INPUT;
593 ximg = XGetImage (FRAME_X_DISPLAY (f), pixmap, 0, 0, width, height,
594 ~0, ZPixmap);
596 if (!ximg)
598 UNBLOCK_INPUT;
599 return -1;
602 result = x_create_x_image_and_pixmap (f, width, height, 1, &mask_img, &mask);
604 UNBLOCK_INPUT;
605 if (!result)
607 XDestroyImage (ximg);
608 return -1;
611 bg = four_corners_best (ximg, width, height);
613 for (y = 0; y < ximg->height; ++y)
615 for (x = 0; x < ximg->width; ++x)
617 xp = x != ximg->width - 1 ? x + 1 : 0;
618 xm = x != 0 ? x - 1 : ximg->width - 1;
619 yp = y != ximg->height - 1 ? y + 1 : 0;
620 ym = y != 0 ? y - 1 : ximg->height - 1;
621 if (XGetPixel (ximg, x, y) == bg
622 && XGetPixel (ximg, x, yp) == bg
623 && XGetPixel (ximg, x, ym) == bg
624 && XGetPixel (ximg, xp, y) == bg
625 && XGetPixel (ximg, xp, yp) == bg
626 && XGetPixel (ximg, xp, ym) == bg
627 && XGetPixel (ximg, xm, y) == bg
628 && XGetPixel (ximg, xm, yp) == bg
629 && XGetPixel (ximg, xm, ym) == bg)
630 XPutPixel (mask_img, x, y, 0);
631 else
632 XPutPixel (mask_img, x, y, 1);
636 xassert (interrupt_input_blocked);
637 gc = XCreateGC (FRAME_X_DISPLAY (f), mask, 0, NULL);
638 XPutImage (FRAME_X_DISPLAY (f), mask, gc, mask_img, 0, 0, 0, 0,
639 width, height);
640 XFreeGC (FRAME_X_DISPLAY (f), gc);
642 dpyinfo->bitmaps[id - 1].have_mask = 1;
643 dpyinfo->bitmaps[id - 1].mask = mask;
645 XDestroyImage (ximg);
646 x_destroy_x_image (mask_img);
648 return 0;
651 #endif /* HAVE_X_WINDOWS */
654 /***********************************************************************
655 Image types
656 ***********************************************************************/
658 /* Value is the number of elements of vector VECTOR. */
660 #define DIM(VECTOR) (sizeof (VECTOR) / sizeof *(VECTOR))
662 /* List of supported image types. Use define_image_type to add new
663 types. Use lookup_image_type to find a type for a given symbol. */
665 static struct image_type *image_types;
667 /* A list of symbols, one for each supported image type. */
669 Lisp_Object Vimage_types;
671 /* An alist of image types and libraries that implement the type. */
673 Lisp_Object Vimage_library_alist;
675 /* Cache for delayed-loading image types. */
677 static Lisp_Object Vimage_type_cache;
679 /* The symbol `xbm' which is used as the type symbol for XBM images. */
681 Lisp_Object Qxbm;
683 /* Keywords. */
685 extern Lisp_Object QCwidth, QCheight, QCforeground, QCbackground, QCfile;
686 extern Lisp_Object QCdata, QCtype;
687 extern Lisp_Object Qcenter;
688 Lisp_Object QCascent, QCmargin, QCrelief;
689 Lisp_Object QCconversion, QCcolor_symbols, QCheuristic_mask;
690 Lisp_Object QCindex, QCmatrix, QCcolor_adjustment, QCmask;
692 /* Other symbols. */
694 Lisp_Object Qlaplace, Qemboss, Qedge_detection, Qheuristic;
696 /* Time in seconds after which images should be removed from the cache
697 if not displayed. */
699 Lisp_Object Vimage_cache_eviction_delay;
701 /* Function prototypes. */
703 static Lisp_Object define_image_type P_ ((struct image_type *type, int loaded));
704 static struct image_type *lookup_image_type P_ ((Lisp_Object symbol));
705 static void image_error P_ ((char *format, Lisp_Object, Lisp_Object));
706 static void x_laplace P_ ((struct frame *, struct image *));
707 static void x_emboss P_ ((struct frame *, struct image *));
708 static int x_build_heuristic_mask P_ ((struct frame *, struct image *,
709 Lisp_Object));
711 #define CACHE_IMAGE_TYPE(type, status) \
712 do { Vimage_type_cache = Fcons (Fcons (type, status), Vimage_type_cache); } while (0)
714 #define ADD_IMAGE_TYPE(type) \
715 do { Vimage_types = Fcons (type, Vimage_types); } while (0)
717 /* Define a new image type from TYPE. This adds a copy of TYPE to
718 image_types and caches the loading status of TYPE. */
720 static Lisp_Object
721 define_image_type (type, loaded)
722 struct image_type *type;
723 int loaded;
725 Lisp_Object success;
727 if (!loaded)
728 success = Qnil;
729 else
731 /* Make a copy of TYPE to avoid a bus error in a dumped Emacs.
732 The initialized data segment is read-only. */
733 struct image_type *p = (struct image_type *) xmalloc (sizeof *p);
734 bcopy (type, p, sizeof *p);
735 p->next = image_types;
736 image_types = p;
737 success = Qt;
740 CACHE_IMAGE_TYPE (*type->type, success);
741 return success;
745 /* Look up image type SYMBOL, and return a pointer to its image_type
746 structure. Value is null if SYMBOL is not a known image type. */
748 static INLINE struct image_type *
749 lookup_image_type (symbol)
750 Lisp_Object symbol;
752 struct image_type *type;
754 /* We must initialize the image-type if it hasn't been already. */
755 if (NILP (Finit_image_library (symbol, Vimage_library_alist)))
756 return 0; /* unimplemented */
758 for (type = image_types; type; type = type->next)
759 if (EQ (symbol, *type->type))
760 break;
762 return type;
766 /* Value is non-zero if OBJECT is a valid Lisp image specification. A
767 valid image specification is a list whose car is the symbol
768 `image', and whose rest is a property list. The property list must
769 contain a value for key `:type'. That value must be the name of a
770 supported image type. The rest of the property list depends on the
771 image type. */
774 valid_image_p (object)
775 Lisp_Object object;
777 int valid_p = 0;
779 if (IMAGEP (object))
781 Lisp_Object tem;
783 for (tem = XCDR (object); CONSP (tem); tem = XCDR (tem))
784 if (EQ (XCAR (tem), QCtype))
786 tem = XCDR (tem);
787 if (CONSP (tem) && SYMBOLP (XCAR (tem)))
789 struct image_type *type;
790 type = lookup_image_type (XCAR (tem));
791 if (type)
792 valid_p = type->valid_p (object);
795 break;
799 return valid_p;
803 /* Log error message with format string FORMAT and argument ARG.
804 Signaling an error, e.g. when an image cannot be loaded, is not a
805 good idea because this would interrupt redisplay, and the error
806 message display would lead to another redisplay. This function
807 therefore simply displays a message. */
809 static void
810 image_error (format, arg1, arg2)
811 char *format;
812 Lisp_Object arg1, arg2;
814 add_to_log (format, arg1, arg2);
819 /***********************************************************************
820 Image specifications
821 ***********************************************************************/
823 enum image_value_type
825 IMAGE_DONT_CHECK_VALUE_TYPE,
826 IMAGE_STRING_VALUE,
827 IMAGE_STRING_OR_NIL_VALUE,
828 IMAGE_SYMBOL_VALUE,
829 IMAGE_POSITIVE_INTEGER_VALUE,
830 IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR,
831 IMAGE_NON_NEGATIVE_INTEGER_VALUE,
832 IMAGE_ASCENT_VALUE,
833 IMAGE_INTEGER_VALUE,
834 IMAGE_FUNCTION_VALUE,
835 IMAGE_NUMBER_VALUE,
836 IMAGE_BOOL_VALUE
839 /* Structure used when parsing image specifications. */
841 struct image_keyword
843 /* Name of keyword. */
844 char *name;
846 /* The type of value allowed. */
847 enum image_value_type type;
849 /* Non-zero means key must be present. */
850 int mandatory_p;
852 /* Used to recognize duplicate keywords in a property list. */
853 int count;
855 /* The value that was found. */
856 Lisp_Object value;
860 static int parse_image_spec P_ ((Lisp_Object, struct image_keyword *,
861 int, Lisp_Object));
862 static Lisp_Object image_spec_value P_ ((Lisp_Object, Lisp_Object, int *));
865 /* Parse image spec SPEC according to KEYWORDS. A valid image spec
866 has the format (image KEYWORD VALUE ...). One of the keyword/
867 value pairs must be `:type TYPE'. KEYWORDS is a vector of
868 image_keywords structures of size NKEYWORDS describing other
869 allowed keyword/value pairs. Value is non-zero if SPEC is valid. */
871 static int
872 parse_image_spec (spec, keywords, nkeywords, type)
873 Lisp_Object spec;
874 struct image_keyword *keywords;
875 int nkeywords;
876 Lisp_Object type;
878 int i;
879 Lisp_Object plist;
881 if (!IMAGEP (spec))
882 return 0;
884 plist = XCDR (spec);
885 while (CONSP (plist))
887 Lisp_Object key, value;
889 /* First element of a pair must be a symbol. */
890 key = XCAR (plist);
891 plist = XCDR (plist);
892 if (!SYMBOLP (key))
893 return 0;
895 /* There must follow a value. */
896 if (!CONSP (plist))
897 return 0;
898 value = XCAR (plist);
899 plist = XCDR (plist);
901 /* Find key in KEYWORDS. Error if not found. */
902 for (i = 0; i < nkeywords; ++i)
903 if (strcmp (keywords[i].name, SDATA (SYMBOL_NAME (key))) == 0)
904 break;
906 if (i == nkeywords)
907 continue;
909 /* Record that we recognized the keyword. If a keywords
910 was found more than once, it's an error. */
911 keywords[i].value = value;
912 ++keywords[i].count;
914 if (keywords[i].count > 1)
915 return 0;
917 /* Check type of value against allowed type. */
918 switch (keywords[i].type)
920 case IMAGE_STRING_VALUE:
921 if (!STRINGP (value))
922 return 0;
923 break;
925 case IMAGE_STRING_OR_NIL_VALUE:
926 if (!STRINGP (value) && !NILP (value))
927 return 0;
928 break;
930 case IMAGE_SYMBOL_VALUE:
931 if (!SYMBOLP (value))
932 return 0;
933 break;
935 case IMAGE_POSITIVE_INTEGER_VALUE:
936 if (!INTEGERP (value) || XINT (value) <= 0)
937 return 0;
938 break;
940 case IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR:
941 if (INTEGERP (value) && XINT (value) >= 0)
942 break;
943 if (CONSP (value)
944 && INTEGERP (XCAR (value)) && INTEGERP (XCDR (value))
945 && XINT (XCAR (value)) >= 0 && XINT (XCDR (value)) >= 0)
946 break;
947 return 0;
949 case IMAGE_ASCENT_VALUE:
950 if (SYMBOLP (value) && EQ (value, Qcenter))
951 break;
952 else if (INTEGERP (value)
953 && XINT (value) >= 0
954 && XINT (value) <= 100)
955 break;
956 return 0;
958 case IMAGE_NON_NEGATIVE_INTEGER_VALUE:
959 if (!INTEGERP (value) || XINT (value) < 0)
960 return 0;
961 break;
963 case IMAGE_DONT_CHECK_VALUE_TYPE:
964 break;
966 case IMAGE_FUNCTION_VALUE:
967 value = indirect_function (value);
968 if (SUBRP (value)
969 || COMPILEDP (value)
970 || (CONSP (value) && EQ (XCAR (value), Qlambda)))
971 break;
972 return 0;
974 case IMAGE_NUMBER_VALUE:
975 if (!INTEGERP (value) && !FLOATP (value))
976 return 0;
977 break;
979 case IMAGE_INTEGER_VALUE:
980 if (!INTEGERP (value))
981 return 0;
982 break;
984 case IMAGE_BOOL_VALUE:
985 if (!NILP (value) && !EQ (value, Qt))
986 return 0;
987 break;
989 default:
990 abort ();
991 break;
994 if (EQ (key, QCtype) && !EQ (type, value))
995 return 0;
998 /* Check that all mandatory fields are present. */
999 for (i = 0; i < nkeywords; ++i)
1000 if (keywords[i].mandatory_p && keywords[i].count == 0)
1001 return 0;
1003 return NILP (plist);
1007 /* Return the value of KEY in image specification SPEC. Value is nil
1008 if KEY is not present in SPEC. if FOUND is not null, set *FOUND
1009 to 1 if KEY was found in SPEC, set it to 0 otherwise. */
1011 static Lisp_Object
1012 image_spec_value (spec, key, found)
1013 Lisp_Object spec, key;
1014 int *found;
1016 Lisp_Object tail;
1018 xassert (valid_image_p (spec));
1020 for (tail = XCDR (spec);
1021 CONSP (tail) && CONSP (XCDR (tail));
1022 tail = XCDR (XCDR (tail)))
1024 if (EQ (XCAR (tail), key))
1026 if (found)
1027 *found = 1;
1028 return XCAR (XCDR (tail));
1032 if (found)
1033 *found = 0;
1034 return Qnil;
1038 DEFUN ("image-size", Fimage_size, Simage_size, 1, 3, 0,
1039 doc: /* Return the size of image SPEC as pair (WIDTH . HEIGHT).
1040 PIXELS non-nil means return the size in pixels, otherwise return the
1041 size in canonical character units.
1042 FRAME is the frame on which the image will be displayed. FRAME nil
1043 or omitted means use the selected frame. */)
1044 (spec, pixels, frame)
1045 Lisp_Object spec, pixels, frame;
1047 Lisp_Object size;
1049 size = Qnil;
1050 if (valid_image_p (spec))
1052 struct frame *f = check_x_frame (frame);
1053 int id = lookup_image (f, spec);
1054 struct image *img = IMAGE_FROM_ID (f, id);
1055 int width = img->width + 2 * img->hmargin;
1056 int height = img->height + 2 * img->vmargin;
1058 if (NILP (pixels))
1059 size = Fcons (make_float ((double) width / FRAME_COLUMN_WIDTH (f)),
1060 make_float ((double) height / FRAME_LINE_HEIGHT (f)));
1061 else
1062 size = Fcons (make_number (width), make_number (height));
1064 else
1065 error ("Invalid image specification");
1067 return size;
1071 DEFUN ("image-mask-p", Fimage_mask_p, Simage_mask_p, 1, 2, 0,
1072 doc: /* Return t if image SPEC has a mask bitmap.
1073 FRAME is the frame on which the image will be displayed. FRAME nil
1074 or omitted means use the selected frame. */)
1075 (spec, frame)
1076 Lisp_Object spec, frame;
1078 Lisp_Object mask;
1080 mask = Qnil;
1081 if (valid_image_p (spec))
1083 struct frame *f = check_x_frame (frame);
1084 int id = lookup_image (f, spec);
1085 struct image *img = IMAGE_FROM_ID (f, id);
1086 if (img->mask)
1087 mask = Qt;
1089 else
1090 error ("Invalid image specification");
1092 return mask;
1096 /***********************************************************************
1097 Image type independent image structures
1098 ***********************************************************************/
1100 static struct image *make_image P_ ((Lisp_Object spec, unsigned hash));
1101 static void free_image P_ ((struct frame *f, struct image *img));
1102 static int check_image_size P_ ((struct frame *f, int width, int height));
1104 #define MAX_IMAGE_SIZE 6.0
1105 Lisp_Object Vmax_image_size;
1107 /* Allocate and return a new image structure for image specification
1108 SPEC. SPEC has a hash value of HASH. */
1110 static struct image *
1111 make_image (spec, hash)
1112 Lisp_Object spec;
1113 unsigned hash;
1115 struct image *img = (struct image *) xmalloc (sizeof *img);
1117 xassert (valid_image_p (spec));
1118 bzero (img, sizeof *img);
1119 img->type = lookup_image_type (image_spec_value (spec, QCtype, NULL));
1120 xassert (img->type != NULL);
1121 img->spec = spec;
1122 img->data.lisp_val = Qnil;
1123 img->ascent = DEFAULT_IMAGE_ASCENT;
1124 img->hash = hash;
1125 return img;
1129 /* Free image IMG which was used on frame F, including its resources. */
1131 static void
1132 free_image (f, img)
1133 struct frame *f;
1134 struct image *img;
1136 if (img)
1138 struct image_cache *c = FRAME_X_IMAGE_CACHE (f);
1140 /* Remove IMG from the hash table of its cache. */
1141 if (img->prev)
1142 img->prev->next = img->next;
1143 else
1144 c->buckets[img->hash % IMAGE_CACHE_BUCKETS_SIZE] = img->next;
1146 if (img->next)
1147 img->next->prev = img->prev;
1149 c->images[img->id] = NULL;
1151 /* Free resources, then free IMG. */
1152 img->type->free (f, img);
1153 xfree (img);
1157 /* Return 1 if the given widths and heights are valid for display;
1158 otherwise, return 0. */
1161 check_image_size (f, width, height)
1162 struct frame *f;
1163 int width;
1164 int height;
1166 int w, h;
1168 if (width <= 0 || height <= 0)
1169 return 0;
1171 if (INTEGERP (Vmax_image_size))
1172 w = h = XINT (Vmax_image_size);
1173 else if (FLOATP (Vmax_image_size))
1175 if (f != NULL)
1177 w = FRAME_PIXEL_WIDTH (f);
1178 h = FRAME_PIXEL_HEIGHT (f);
1180 else
1181 w = h = 1024; /* Arbitrary size for unknown frame. */
1182 w = (int) (XFLOAT_DATA (Vmax_image_size) * w);
1183 h = (int) (XFLOAT_DATA (Vmax_image_size) * h);
1185 else
1186 return 1;
1188 return (width <= w && height <= h);
1191 /* Prepare image IMG for display on frame F. Must be called before
1192 drawing an image. */
1194 void
1195 prepare_image_for_display (f, img)
1196 struct frame *f;
1197 struct image *img;
1199 EMACS_TIME t;
1201 /* We're about to display IMG, so set its timestamp to `now'. */
1202 EMACS_GET_TIME (t);
1203 img->timestamp = EMACS_SECS (t);
1205 /* If IMG doesn't have a pixmap yet, load it now, using the image
1206 type dependent loader function. */
1207 if (img->pixmap == NO_PIXMAP && !img->load_failed_p)
1208 img->load_failed_p = img->type->load (f, img) == 0;
1212 /* Value is the number of pixels for the ascent of image IMG when
1213 drawn in face FACE. */
1216 image_ascent (img, face, slice)
1217 struct image *img;
1218 struct face *face;
1219 struct glyph_slice *slice;
1221 int height;
1222 int ascent;
1224 if (slice->height == img->height)
1225 height = img->height + img->vmargin;
1226 else if (slice->y == 0)
1227 height = slice->height + img->vmargin;
1228 else
1229 height = slice->height;
1231 if (img->ascent == CENTERED_IMAGE_ASCENT)
1233 if (face->font)
1235 #ifdef HAVE_NTGUI
1236 /* W32 specific version. Why?. ++kfs */
1237 ascent = height / 2 - (FONT_DESCENT(face->font)
1238 - FONT_BASE(face->font)) / 2;
1239 #else
1240 /* This expression is arranged so that if the image can't be
1241 exactly centered, it will be moved slightly up. This is
1242 because a typical font is `top-heavy' (due to the presence
1243 uppercase letters), so the image placement should err towards
1244 being top-heavy too. It also just generally looks better. */
1245 ascent = (height + face->font->ascent - face->font->descent + 1) / 2;
1246 #endif /* HAVE_NTGUI */
1248 else
1249 ascent = height / 2;
1251 else
1252 ascent = (int) (height * img->ascent / 100.0);
1254 return ascent;
1258 /* Image background colors. */
1260 /* Find the "best" corner color of a bitmap.
1261 On W32, XIMG is assumed to a device context with the bitmap selected. */
1263 static RGB_PIXEL_COLOR
1264 four_corners_best (ximg, width, height)
1265 XImagePtr_or_DC ximg;
1266 unsigned long width, height;
1268 RGB_PIXEL_COLOR corners[4], best;
1269 int i, best_count;
1271 /* Get the colors at the corners of ximg. */
1272 corners[0] = GET_PIXEL (ximg, 0, 0);
1273 corners[1] = GET_PIXEL (ximg, width - 1, 0);
1274 corners[2] = GET_PIXEL (ximg, width - 1, height - 1);
1275 corners[3] = GET_PIXEL (ximg, 0, height - 1);
1277 /* Choose the most frequently found color as background. */
1278 for (i = best_count = 0; i < 4; ++i)
1280 int j, n;
1282 for (j = n = 0; j < 4; ++j)
1283 if (corners[i] == corners[j])
1284 ++n;
1286 if (n > best_count)
1287 best = corners[i], best_count = n;
1290 return best;
1293 /* Portability macros */
1295 #ifdef HAVE_NTGUI
1297 #define Destroy_Image(img_dc, prev) \
1298 do { SelectObject (img_dc, prev); DeleteDC (img_dc); } while (0)
1300 #define Free_Pixmap(display, pixmap) \
1301 DeleteObject (pixmap)
1303 #else
1305 #define Destroy_Image(ximg, dummy) \
1306 XDestroyImage (ximg)
1308 #define Free_Pixmap(display, pixmap) \
1309 XFreePixmap (display, pixmap)
1311 #endif /* HAVE_NTGUI */
1314 /* Return the `background' field of IMG. If IMG doesn't have one yet,
1315 it is guessed heuristically. If non-zero, XIMG is an existing
1316 XImage object (or device context with the image selected on W32) to
1317 use for the heuristic. */
1319 RGB_PIXEL_COLOR
1320 image_background (img, f, ximg)
1321 struct image *img;
1322 struct frame *f;
1323 XImagePtr_or_DC ximg;
1325 if (! img->background_valid)
1326 /* IMG doesn't have a background yet, try to guess a reasonable value. */
1328 int free_ximg = !ximg;
1329 #ifdef HAVE_NTGUI
1330 HGDIOBJ prev;
1331 #endif /* HAVE_NTGUI */
1333 if (free_ximg)
1335 #ifndef HAVE_NTGUI
1336 ximg = XGetImage (FRAME_X_DISPLAY (f), img->pixmap,
1337 0, 0, img->width, img->height, ~0, ZPixmap);
1338 #else
1339 HDC frame_dc = get_frame_dc (f);
1340 ximg = CreateCompatibleDC (frame_dc);
1341 release_frame_dc (f, frame_dc);
1342 prev = SelectObject (ximg, img->pixmap);
1343 #endif /* !HAVE_NTGUI */
1346 img->background = four_corners_best (ximg, img->width, img->height);
1348 if (free_ximg)
1349 Destroy_Image (ximg, prev);
1351 img->background_valid = 1;
1354 return img->background;
1357 /* Return the `background_transparent' field of IMG. If IMG doesn't
1358 have one yet, it is guessed heuristically. If non-zero, MASK is an
1359 existing XImage object to use for the heuristic. */
1362 image_background_transparent (img, f, mask)
1363 struct image *img;
1364 struct frame *f;
1365 XImagePtr_or_DC mask;
1367 if (! img->background_transparent_valid)
1368 /* IMG doesn't have a background yet, try to guess a reasonable value. */
1370 if (img->mask)
1372 int free_mask = !mask;
1373 #ifdef HAVE_NTGUI
1374 HGDIOBJ prev;
1375 #endif /* HAVE_NTGUI */
1377 if (free_mask)
1379 #ifndef HAVE_NTGUI
1380 mask = XGetImage (FRAME_X_DISPLAY (f), img->mask,
1381 0, 0, img->width, img->height, ~0, ZPixmap);
1382 #else
1383 HDC frame_dc = get_frame_dc (f);
1384 mask = CreateCompatibleDC (frame_dc);
1385 release_frame_dc (f, frame_dc);
1386 prev = SelectObject (mask, img->mask);
1387 #endif /* HAVE_NTGUI */
1390 img->background_transparent
1391 = (four_corners_best (mask, img->width, img->height) == PIX_MASK_RETAIN);
1393 if (free_mask)
1394 Destroy_Image (mask, prev);
1396 else
1397 img->background_transparent = 0;
1399 img->background_transparent_valid = 1;
1402 return img->background_transparent;
1406 /***********************************************************************
1407 Helper functions for X image types
1408 ***********************************************************************/
1410 static void x_clear_image_1 P_ ((struct frame *, struct image *, int,
1411 int, int));
1412 static void x_clear_image P_ ((struct frame *f, struct image *img));
1413 static unsigned long x_alloc_image_color P_ ((struct frame *f,
1414 struct image *img,
1415 Lisp_Object color_name,
1416 unsigned long dflt));
1419 /* Clear X resources of image IMG on frame F. PIXMAP_P non-zero means
1420 free the pixmap if any. MASK_P non-zero means clear the mask
1421 pixmap if any. COLORS_P non-zero means free colors allocated for
1422 the image, if any. */
1424 static void
1425 x_clear_image_1 (f, img, pixmap_p, mask_p, colors_p)
1426 struct frame *f;
1427 struct image *img;
1428 int pixmap_p, mask_p, colors_p;
1430 if (pixmap_p && img->pixmap)
1432 Free_Pixmap (FRAME_X_DISPLAY (f), img->pixmap);
1433 img->pixmap = NO_PIXMAP;
1434 img->background_valid = 0;
1437 if (mask_p && img->mask)
1439 Free_Pixmap (FRAME_X_DISPLAY (f), img->mask);
1440 img->mask = NO_PIXMAP;
1441 img->background_transparent_valid = 0;
1444 if (colors_p && img->ncolors)
1446 /* MAC_TODO: color table support. */
1447 /* W32_TODO: color table support. */
1448 #ifdef HAVE_X_WINDOWS
1449 x_free_colors (f, img->colors, img->ncolors);
1450 #endif /* HAVE_X_WINDOWS */
1451 xfree (img->colors);
1452 img->colors = NULL;
1453 img->ncolors = 0;
1457 /* Free X resources of image IMG which is used on frame F. */
1459 static void
1460 x_clear_image (f, img)
1461 struct frame *f;
1462 struct image *img;
1464 BLOCK_INPUT;
1465 x_clear_image_1 (f, img, 1, 1, 1);
1466 UNBLOCK_INPUT;
1470 /* Allocate color COLOR_NAME for image IMG on frame F. If color
1471 cannot be allocated, use DFLT. Add a newly allocated color to
1472 IMG->colors, so that it can be freed again. Value is the pixel
1473 color. */
1475 static unsigned long
1476 x_alloc_image_color (f, img, color_name, dflt)
1477 struct frame *f;
1478 struct image *img;
1479 Lisp_Object color_name;
1480 unsigned long dflt;
1482 XColor color;
1483 unsigned long result;
1485 xassert (STRINGP (color_name));
1487 if (x_defined_color (f, SDATA (color_name), &color, 1))
1489 /* This isn't called frequently so we get away with simply
1490 reallocating the color vector to the needed size, here. */
1491 ++img->ncolors;
1492 img->colors =
1493 (unsigned long *) xrealloc (img->colors,
1494 img->ncolors * sizeof *img->colors);
1495 img->colors[img->ncolors - 1] = color.pixel;
1496 result = color.pixel;
1498 else
1499 result = dflt;
1501 return result;
1506 /***********************************************************************
1507 Image Cache
1508 ***********************************************************************/
1510 static void cache_image P_ ((struct frame *f, struct image *img));
1511 static void postprocess_image P_ ((struct frame *, struct image *));
1513 /* Return a new, initialized image cache that is allocated from the
1514 heap. Call free_image_cache to free an image cache. */
1516 struct image_cache *
1517 make_image_cache ()
1519 struct image_cache *c = (struct image_cache *) xmalloc (sizeof *c);
1520 int size;
1522 bzero (c, sizeof *c);
1523 c->size = 50;
1524 c->images = (struct image **) xmalloc (c->size * sizeof *c->images);
1525 size = IMAGE_CACHE_BUCKETS_SIZE * sizeof *c->buckets;
1526 c->buckets = (struct image **) xmalloc (size);
1527 bzero (c->buckets, size);
1528 return c;
1532 /* Free image cache of frame F. Be aware that X frames share images
1533 caches. */
1535 void
1536 free_image_cache (f)
1537 struct frame *f;
1539 struct image_cache *c = FRAME_X_IMAGE_CACHE (f);
1540 if (c)
1542 int i;
1544 /* Cache should not be referenced by any frame when freed. */
1545 xassert (c->refcount == 0);
1547 for (i = 0; i < c->used; ++i)
1548 free_image (f, c->images[i]);
1549 xfree (c->images);
1550 xfree (c->buckets);
1551 xfree (c);
1552 FRAME_X_IMAGE_CACHE (f) = NULL;
1557 /* Clear image cache of frame F. FORCE_P non-zero means free all
1558 images. FORCE_P zero means clear only images that haven't been
1559 displayed for some time. Should be called from time to time to
1560 reduce the number of loaded images. If image-eviction-seconds is
1561 non-nil, this frees images in the cache which weren't displayed for
1562 at least that many seconds. */
1564 void
1565 clear_image_cache (f, force_p)
1566 struct frame *f;
1567 int force_p;
1569 struct image_cache *c = FRAME_X_IMAGE_CACHE (f);
1571 if (c && INTEGERP (Vimage_cache_eviction_delay))
1573 EMACS_TIME t;
1574 unsigned long old;
1575 int i, nfreed;
1577 EMACS_GET_TIME (t);
1578 old = EMACS_SECS (t) - XFASTINT (Vimage_cache_eviction_delay);
1580 /* Block input so that we won't be interrupted by a SIGIO
1581 while being in an inconsistent state. */
1582 BLOCK_INPUT;
1584 for (i = nfreed = 0; i < c->used; ++i)
1586 struct image *img = c->images[i];
1587 if (img != NULL
1588 && (force_p || img->timestamp < old))
1590 free_image (f, img);
1591 ++nfreed;
1595 /* We may be clearing the image cache because, for example,
1596 Emacs was iconified for a longer period of time. In that
1597 case, current matrices may still contain references to
1598 images freed above. So, clear these matrices. */
1599 if (nfreed)
1601 Lisp_Object tail, frame;
1603 FOR_EACH_FRAME (tail, frame)
1605 struct frame *f = XFRAME (frame);
1606 if (FRAME_WINDOW_P (f)
1607 && FRAME_X_IMAGE_CACHE (f) == c)
1608 clear_current_matrices (f);
1611 ++windows_or_buffers_changed;
1614 UNBLOCK_INPUT;
1619 DEFUN ("clear-image-cache", Fclear_image_cache, Sclear_image_cache,
1620 0, 1, 0,
1621 doc: /* Clear the image cache of FRAME.
1622 FRAME nil or omitted means use the selected frame.
1623 FRAME t means clear the image caches of all frames. */)
1624 (frame)
1625 Lisp_Object frame;
1627 if (EQ (frame, Qt))
1629 Lisp_Object tail;
1631 FOR_EACH_FRAME (tail, frame)
1632 if (FRAME_WINDOW_P (XFRAME (frame)))
1633 clear_image_cache (XFRAME (frame), 1);
1635 else
1636 clear_image_cache (check_x_frame (frame), 1);
1638 return Qnil;
1642 /* Compute masks and transform image IMG on frame F, as specified
1643 by the image's specification, */
1645 static void
1646 postprocess_image (f, img)
1647 struct frame *f;
1648 struct image *img;
1650 /* Manipulation of the image's mask. */
1651 if (img->pixmap)
1653 Lisp_Object conversion, spec;
1654 Lisp_Object mask;
1656 spec = img->spec;
1658 /* `:heuristic-mask t'
1659 `:mask heuristic'
1660 means build a mask heuristically.
1661 `:heuristic-mask (R G B)'
1662 `:mask (heuristic (R G B))'
1663 means build a mask from color (R G B) in the
1664 image.
1665 `:mask nil'
1666 means remove a mask, if any. */
1668 mask = image_spec_value (spec, QCheuristic_mask, NULL);
1669 if (!NILP (mask))
1670 x_build_heuristic_mask (f, img, mask);
1671 else
1673 int found_p;
1675 mask = image_spec_value (spec, QCmask, &found_p);
1677 if (EQ (mask, Qheuristic))
1678 x_build_heuristic_mask (f, img, Qt);
1679 else if (CONSP (mask)
1680 && EQ (XCAR (mask), Qheuristic))
1682 if (CONSP (XCDR (mask)))
1683 x_build_heuristic_mask (f, img, XCAR (XCDR (mask)));
1684 else
1685 x_build_heuristic_mask (f, img, XCDR (mask));
1687 else if (NILP (mask) && found_p && img->mask)
1689 Free_Pixmap (FRAME_X_DISPLAY (f), img->mask);
1690 img->mask = NO_PIXMAP;
1695 /* Should we apply an image transformation algorithm? */
1696 conversion = image_spec_value (spec, QCconversion, NULL);
1697 if (EQ (conversion, Qdisabled))
1698 x_disable_image (f, img);
1699 else if (EQ (conversion, Qlaplace))
1700 x_laplace (f, img);
1701 else if (EQ (conversion, Qemboss))
1702 x_emboss (f, img);
1703 else if (CONSP (conversion)
1704 && EQ (XCAR (conversion), Qedge_detection))
1706 Lisp_Object tem;
1707 tem = XCDR (conversion);
1708 if (CONSP (tem))
1709 x_edge_detection (f, img,
1710 Fplist_get (tem, QCmatrix),
1711 Fplist_get (tem, QCcolor_adjustment));
1717 /* Return the id of image with Lisp specification SPEC on frame F.
1718 SPEC must be a valid Lisp image specification (see valid_image_p). */
1721 lookup_image (f, spec)
1722 struct frame *f;
1723 Lisp_Object spec;
1725 struct image_cache *c = FRAME_X_IMAGE_CACHE (f);
1726 struct image *img;
1727 int i;
1728 unsigned hash;
1729 struct gcpro gcpro1;
1730 EMACS_TIME now;
1732 /* F must be a window-system frame, and SPEC must be a valid image
1733 specification. */
1734 xassert (FRAME_WINDOW_P (f));
1735 xassert (valid_image_p (spec));
1737 GCPRO1 (spec);
1739 /* Look up SPEC in the hash table of the image cache. */
1740 hash = sxhash (spec, 0);
1741 i = hash % IMAGE_CACHE_BUCKETS_SIZE;
1743 for (img = c->buckets[i]; img; img = img->next)
1744 if (img->hash == hash && !NILP (Fequal (img->spec, spec)))
1745 break;
1747 if (img && img->load_failed_p)
1749 free_image (f, img);
1750 img = NULL;
1753 /* If not found, create a new image and cache it. */
1754 if (img == NULL)
1756 extern Lisp_Object Qpostscript;
1758 BLOCK_INPUT;
1759 img = make_image (spec, hash);
1760 cache_image (f, img);
1761 img->load_failed_p = img->type->load (f, img) == 0;
1763 /* If we can't load the image, and we don't have a width and
1764 height, use some arbitrary width and height so that we can
1765 draw a rectangle for it. */
1766 if (img->load_failed_p)
1768 Lisp_Object value;
1770 value = image_spec_value (spec, QCwidth, NULL);
1771 img->width = (INTEGERP (value)
1772 ? XFASTINT (value) : DEFAULT_IMAGE_WIDTH);
1773 value = image_spec_value (spec, QCheight, NULL);
1774 img->height = (INTEGERP (value)
1775 ? XFASTINT (value) : DEFAULT_IMAGE_HEIGHT);
1777 else
1779 /* Handle image type independent image attributes
1780 `:ascent ASCENT', `:margin MARGIN', `:relief RELIEF',
1781 `:background COLOR'. */
1782 Lisp_Object ascent, margin, relief, bg;
1784 ascent = image_spec_value (spec, QCascent, NULL);
1785 if (INTEGERP (ascent))
1786 img->ascent = XFASTINT (ascent);
1787 else if (EQ (ascent, Qcenter))
1788 img->ascent = CENTERED_IMAGE_ASCENT;
1790 margin = image_spec_value (spec, QCmargin, NULL);
1791 if (INTEGERP (margin) && XINT (margin) >= 0)
1792 img->vmargin = img->hmargin = XFASTINT (margin);
1793 else if (CONSP (margin) && INTEGERP (XCAR (margin))
1794 && INTEGERP (XCDR (margin)))
1796 if (XINT (XCAR (margin)) > 0)
1797 img->hmargin = XFASTINT (XCAR (margin));
1798 if (XINT (XCDR (margin)) > 0)
1799 img->vmargin = XFASTINT (XCDR (margin));
1802 relief = image_spec_value (spec, QCrelief, NULL);
1803 if (INTEGERP (relief))
1805 img->relief = XINT (relief);
1806 img->hmargin += abs (img->relief);
1807 img->vmargin += abs (img->relief);
1810 if (! img->background_valid)
1812 bg = image_spec_value (img->spec, QCbackground, NULL);
1813 if (!NILP (bg))
1815 img->background
1816 = x_alloc_image_color (f, img, bg,
1817 FRAME_BACKGROUND_PIXEL (f));
1818 img->background_valid = 1;
1822 /* Do image transformations and compute masks, unless we
1823 don't have the image yet. */
1824 if (!EQ (*img->type->type, Qpostscript))
1825 postprocess_image (f, img);
1828 UNBLOCK_INPUT;
1831 /* We're using IMG, so set its timestamp to `now'. */
1832 EMACS_GET_TIME (now);
1833 img->timestamp = EMACS_SECS (now);
1835 UNGCPRO;
1837 /* Value is the image id. */
1838 return img->id;
1842 /* Cache image IMG in the image cache of frame F. */
1844 static void
1845 cache_image (f, img)
1846 struct frame *f;
1847 struct image *img;
1849 struct image_cache *c = FRAME_X_IMAGE_CACHE (f);
1850 int i;
1852 /* Find a free slot in c->images. */
1853 for (i = 0; i < c->used; ++i)
1854 if (c->images[i] == NULL)
1855 break;
1857 /* If no free slot found, maybe enlarge c->images. */
1858 if (i == c->used && c->used == c->size)
1860 c->size *= 2;
1861 c->images = (struct image **) xrealloc (c->images,
1862 c->size * sizeof *c->images);
1865 /* Add IMG to c->images, and assign IMG an id. */
1866 c->images[i] = img;
1867 img->id = i;
1868 if (i == c->used)
1869 ++c->used;
1871 /* Add IMG to the cache's hash table. */
1872 i = img->hash % IMAGE_CACHE_BUCKETS_SIZE;
1873 img->next = c->buckets[i];
1874 if (img->next)
1875 img->next->prev = img;
1876 img->prev = NULL;
1877 c->buckets[i] = img;
1881 /* Call FN on every image in the image cache of frame F. Used to mark
1882 Lisp Objects in the image cache. */
1884 void
1885 forall_images_in_image_cache (f, fn)
1886 struct frame *f;
1887 void (*fn) P_ ((struct image *img));
1889 if (FRAME_LIVE_P (f) && FRAME_WINDOW_P (f))
1891 struct image_cache *c = FRAME_X_IMAGE_CACHE (f);
1892 if (c)
1894 int i;
1895 for (i = 0; i < c->used; ++i)
1896 if (c->images[i])
1897 fn (c->images[i]);
1904 /***********************************************************************
1905 X / MAC / W32 support code
1906 ***********************************************************************/
1908 #ifdef HAVE_NTGUI
1910 /* Macro for defining functions that will be loaded from image DLLs. */
1911 #define DEF_IMGLIB_FN(func) int (FAR CDECL *fn_##func)()
1913 /* Macro for loading those image functions from the library. */
1914 #define LOAD_IMGLIB_FN(lib,func) { \
1915 fn_##func = (void *) GetProcAddress (lib, #func); \
1916 if (!fn_##func) return 0; \
1919 /* Load a DLL implementing an image type.
1920 The `image-library-alist' variable associates a symbol,
1921 identifying an image type, to a list of possible filenames.
1922 The function returns NULL if no library could be loaded for
1923 the given image type, or if the library was previously loaded;
1924 else the handle of the DLL. */
1925 static HMODULE
1926 w32_delayed_load (Lisp_Object libraries, Lisp_Object type)
1928 HMODULE library = NULL;
1930 if (CONSP (libraries) && NILP (Fassq (type, Vimage_type_cache)))
1932 Lisp_Object dlls = Fassq (type, libraries);
1934 if (CONSP (dlls))
1935 for (dlls = XCDR (dlls); CONSP (dlls); dlls = XCDR (dlls))
1937 CHECK_STRING_CAR (dlls);
1938 if (library = LoadLibrary (SDATA (XCAR (dlls))))
1939 break;
1943 return library;
1946 #endif /* HAVE_NTGUI */
1948 static int x_create_x_image_and_pixmap P_ ((struct frame *, int, int, int,
1949 XImagePtr *, Pixmap *));
1950 static void x_destroy_x_image P_ ((XImagePtr));
1951 static void x_put_x_image P_ ((struct frame *, XImagePtr, Pixmap, int, int));
1954 /* Create an XImage and a pixmap of size WIDTH x HEIGHT for use on
1955 frame F. Set *XIMG and *PIXMAP to the XImage and Pixmap created.
1956 Set (*XIMG)->data to a raster of WIDTH x HEIGHT pixels allocated
1957 via xmalloc. Print error messages via image_error if an error
1958 occurs. Value is non-zero if successful.
1960 On W32, a DEPTH of zero signifies a 24 bit image, otherwise DEPTH
1961 should indicate the bit depth of the image. */
1963 static int
1964 x_create_x_image_and_pixmap (f, width, height, depth, ximg, pixmap)
1965 struct frame *f;
1966 int width, height, depth;
1967 XImagePtr *ximg;
1968 Pixmap *pixmap;
1970 #ifdef HAVE_X_WINDOWS
1971 Display *display = FRAME_X_DISPLAY (f);
1972 Window window = FRAME_X_WINDOW (f);
1973 Screen *screen = FRAME_X_SCREEN (f);
1975 xassert (interrupt_input_blocked);
1977 if (depth <= 0)
1978 depth = DefaultDepthOfScreen (screen);
1979 *ximg = XCreateImage (display, DefaultVisualOfScreen (screen),
1980 depth, ZPixmap, 0, NULL, width, height,
1981 depth > 16 ? 32 : depth > 8 ? 16 : 8, 0);
1982 if (*ximg == NULL)
1984 image_error ("Unable to allocate X image", Qnil, Qnil);
1985 return 0;
1988 /* Allocate image raster. */
1989 (*ximg)->data = (char *) xmalloc ((*ximg)->bytes_per_line * height);
1991 /* Allocate a pixmap of the same size. */
1992 *pixmap = XCreatePixmap (display, window, width, height, depth);
1993 if (*pixmap == NO_PIXMAP)
1995 x_destroy_x_image (*ximg);
1996 *ximg = NULL;
1997 image_error ("Unable to create X pixmap", Qnil, Qnil);
1998 return 0;
2001 return 1;
2002 #endif /* HAVE_X_WINDOWS */
2004 #ifdef HAVE_NTGUI
2006 BITMAPINFOHEADER *header;
2007 HDC hdc;
2008 int scanline_width_bits;
2009 int remainder;
2010 int palette_colors = 0;
2012 if (depth == 0)
2013 depth = 24;
2015 if (depth != 1 && depth != 4 && depth != 8
2016 && depth != 16 && depth != 24 && depth != 32)
2018 image_error ("Invalid image bit depth specified", Qnil, Qnil);
2019 return 0;
2022 scanline_width_bits = width * depth;
2023 remainder = scanline_width_bits % 32;
2025 if (remainder)
2026 scanline_width_bits += 32 - remainder;
2028 /* Bitmaps with a depth less than 16 need a palette. */
2029 /* BITMAPINFO structure already contains the first RGBQUAD. */
2030 if (depth < 16)
2031 palette_colors = 1 << depth - 1;
2033 *ximg = xmalloc (sizeof (XImage) + palette_colors * sizeof (RGBQUAD));
2034 if (*ximg == NULL)
2036 image_error ("Unable to allocate memory for XImage", Qnil, Qnil);
2037 return 0;
2040 header = &((*ximg)->info.bmiHeader);
2041 bzero (&((*ximg)->info), sizeof (BITMAPINFO));
2042 header->biSize = sizeof (*header);
2043 header->biWidth = width;
2044 header->biHeight = -height; /* negative indicates a top-down bitmap. */
2045 header->biPlanes = 1;
2046 header->biBitCount = depth;
2047 header->biCompression = BI_RGB;
2048 header->biClrUsed = palette_colors;
2050 /* TODO: fill in palette. */
2051 if (depth == 1)
2053 (*ximg)->info.bmiColors[0].rgbBlue = 0;
2054 (*ximg)->info.bmiColors[0].rgbGreen = 0;
2055 (*ximg)->info.bmiColors[0].rgbRed = 0;
2056 (*ximg)->info.bmiColors[0].rgbReserved = 0;
2057 (*ximg)->info.bmiColors[1].rgbBlue = 255;
2058 (*ximg)->info.bmiColors[1].rgbGreen = 255;
2059 (*ximg)->info.bmiColors[1].rgbRed = 255;
2060 (*ximg)->info.bmiColors[1].rgbReserved = 0;
2063 hdc = get_frame_dc (f);
2065 /* Create a DIBSection and raster array for the bitmap,
2066 and store its handle in *pixmap. */
2067 *pixmap = CreateDIBSection (hdc, &((*ximg)->info),
2068 (depth < 16) ? DIB_PAL_COLORS : DIB_RGB_COLORS,
2069 /* casting avoids a GCC warning */
2070 (void **)&((*ximg)->data), NULL, 0);
2072 /* Realize display palette and garbage all frames. */
2073 release_frame_dc (f, hdc);
2075 if (*pixmap == NULL)
2077 DWORD err = GetLastError();
2078 Lisp_Object errcode;
2079 /* All system errors are < 10000, so the following is safe. */
2080 XSETINT (errcode, (int) err);
2081 image_error ("Unable to create bitmap, error code %d", errcode, Qnil);
2082 x_destroy_x_image (*ximg);
2083 return 0;
2086 return 1;
2088 #endif /* HAVE_NTGUI */
2090 #ifdef MAC_OS
2091 Display *display = FRAME_X_DISPLAY (f);
2092 Window window = FRAME_X_WINDOW (f);
2094 xassert (interrupt_input_blocked);
2096 /* Allocate a pixmap of the same size. */
2097 *pixmap = XCreatePixmap (display, window, width, height, depth);
2098 if (*pixmap == NO_PIXMAP)
2100 *ximg = NULL;
2101 image_error ("Unable to create X pixmap", Qnil, Qnil);
2102 return 0;
2105 LockPixels (GetGWorldPixMap (*pixmap));
2106 *ximg = *pixmap;
2107 return 1;
2109 #endif /* MAC_OS */
2113 /* Destroy XImage XIMG. Free XIMG->data. */
2115 static void
2116 x_destroy_x_image (ximg)
2117 XImagePtr ximg;
2119 xassert (interrupt_input_blocked);
2120 if (ximg)
2122 #ifdef HAVE_X_WINDOWS
2123 xfree (ximg->data);
2124 ximg->data = NULL;
2125 XDestroyImage (ximg);
2126 #endif /* HAVE_X_WINDOWS */
2127 #ifdef HAVE_NTGUI
2128 /* Data will be freed by DestroyObject. */
2129 ximg->data = NULL;
2130 xfree (ximg);
2131 #endif /* HAVE_NTGUI */
2132 #ifdef MAC_OS
2133 XDestroyImage (ximg);
2134 #endif /* MAC_OS */
2139 /* Put XImage XIMG into pixmap PIXMAP on frame F. WIDTH and HEIGHT
2140 are width and height of both the image and pixmap. */
2142 static void
2143 x_put_x_image (f, ximg, pixmap, width, height)
2144 struct frame *f;
2145 XImagePtr ximg;
2146 Pixmap pixmap;
2147 int width, height;
2149 #ifdef HAVE_X_WINDOWS
2150 GC gc;
2152 xassert (interrupt_input_blocked);
2153 gc = XCreateGC (FRAME_X_DISPLAY (f), pixmap, 0, NULL);
2154 XPutImage (FRAME_X_DISPLAY (f), pixmap, gc, ximg, 0, 0, 0, 0, width, height);
2155 XFreeGC (FRAME_X_DISPLAY (f), gc);
2156 #endif /* HAVE_X_WINDOWS */
2158 #ifdef HAVE_NTGUI
2159 #if 0 /* I don't think this is necessary looking at where it is used. */
2160 HDC hdc = get_frame_dc (f);
2161 SetDIBits (hdc, pixmap, 0, height, ximg->data, &(ximg->info), DIB_RGB_COLORS);
2162 release_frame_dc (f, hdc);
2163 #endif
2164 #endif /* HAVE_NTGUI */
2166 #ifdef MAC_OS
2167 xassert (ximg == pixmap);
2168 #endif /* MAC_OS */
2172 /***********************************************************************
2173 File Handling
2174 ***********************************************************************/
2176 static unsigned char *slurp_file P_ ((char *, int *));
2179 /* Find image file FILE. Look in data-directory, then
2180 x-bitmap-file-path. Value is the full name of the file found, or
2181 nil if not found. */
2183 Lisp_Object
2184 x_find_image_file (file)
2185 Lisp_Object file;
2187 Lisp_Object file_found, search_path;
2188 struct gcpro gcpro1, gcpro2;
2189 int fd;
2191 file_found = Qnil;
2192 search_path = Fcons (Vdata_directory, Vx_bitmap_file_path);
2193 GCPRO2 (file_found, search_path);
2195 /* Try to find FILE in data-directory, then x-bitmap-file-path. */
2196 fd = openp (search_path, file, Qnil, &file_found, Qnil);
2198 if (fd == -1)
2199 file_found = Qnil;
2200 else
2201 close (fd);
2203 UNGCPRO;
2204 return file_found;
2208 /* Read FILE into memory. Value is a pointer to a buffer allocated
2209 with xmalloc holding FILE's contents. Value is null if an error
2210 occurred. *SIZE is set to the size of the file. */
2212 static unsigned char *
2213 slurp_file (file, size)
2214 char *file;
2215 int *size;
2217 FILE *fp = NULL;
2218 unsigned char *buf = NULL;
2219 struct stat st;
2221 if (stat (file, &st) == 0
2222 && (fp = fopen (file, "rb")) != NULL
2223 && (buf = (unsigned char *) xmalloc (st.st_size),
2224 fread (buf, 1, st.st_size, fp) == st.st_size))
2226 *size = st.st_size;
2227 fclose (fp);
2229 else
2231 if (fp)
2232 fclose (fp);
2233 if (buf)
2235 xfree (buf);
2236 buf = NULL;
2240 return buf;
2245 #ifdef MAC_OS
2247 /***********************************************************************
2248 MAC Image Load Functions
2249 ***********************************************************************/
2251 static int image_load_quicktime P_ ((struct frame *, struct image *img,
2252 OSType));
2253 #ifdef MAC_OSX
2254 static int image_load_quartz2d P_ ((struct frame *, struct image *img, int));
2255 #endif
2257 static OSErr
2258 find_image_fsspec (specified_file, file, fss)
2259 Lisp_Object specified_file, *file;
2260 FSSpec *fss;
2262 #if MAC_OSX
2263 FSRef fsr;
2264 #endif
2265 OSErr err;
2267 *file = x_find_image_file (specified_file);
2268 if (!STRINGP (*file))
2269 return fnfErr; /* file or directory not found;
2270 incomplete pathname */
2271 /* Try to open the image file. */
2272 #if MAC_OSX
2273 err = FSPathMakeRef (SDATA (*file), &fsr, NULL);
2274 if (err == noErr)
2275 err = FSGetCatalogInfo (&fsr, kFSCatInfoNone, NULL, NULL, fss, NULL);
2276 #else
2277 err = posix_pathname_to_fsspec (SDATA (*file), fss);
2278 #endif
2279 return err;
2282 static int
2283 image_load_qt_1 (f, img, type, fss, dh)
2284 struct frame *f;
2285 struct image *img;
2286 OSType type;
2287 FSSpec *fss;
2288 Handle dh;
2290 OSErr err;
2291 GraphicsImportComponent gi;
2292 Rect rect;
2293 int width, height;
2294 short draw_all_pixels;
2295 Lisp_Object specified_bg;
2296 XColor color;
2297 XImagePtr ximg;
2298 RGBColor bg_color;
2300 err = OpenADefaultComponent (GraphicsImporterComponentType,
2301 type, &gi);
2302 if (err != noErr)
2304 image_error ("Cannot get importer component for `%s'", img->spec, Qnil);
2305 return 0;
2307 if (dh == NULL)
2309 /* read from file system spec */
2310 err = GraphicsImportSetDataFile (gi, fss);
2311 if (err != noErr)
2313 image_error ("Cannot set fsspec to graphics importer for '%s'",
2314 img->spec, Qnil);
2315 goto error;
2318 else
2320 /* read from data handle */
2321 err = GraphicsImportSetDataHandle (gi, dh);
2322 if (err != noErr)
2324 image_error ("Cannot set data handle to graphics importer for `%s'",
2325 img->spec, Qnil);
2326 goto error;
2329 err = GraphicsImportGetNaturalBounds (gi, &rect);
2330 if (err != noErr)
2332 image_error ("Error reading `%s'", img->spec, Qnil);
2333 goto error;
2335 width = img->width = rect.right - rect.left;
2336 height = img->height = rect.bottom - rect.top;
2337 err = GraphicsImportDoesDrawAllPixels (gi, &draw_all_pixels);
2338 #if 0
2339 /* Don't check the error code here. It may have an undocumented
2340 value -32766. */
2341 if (err != noErr)
2343 image_error ("Error reading `%s'", img->spec, Qnil);
2344 goto error;
2346 #endif
2347 if (draw_all_pixels != graphicsImporterDrawsAllPixels)
2349 specified_bg = image_spec_value (img->spec, QCbackground, NULL);
2350 if (!STRINGP (specified_bg) ||
2351 !mac_defined_color (f, SDATA (specified_bg), &color, 0))
2353 color.pixel = FRAME_BACKGROUND_PIXEL (f);
2354 color.red = RED16_FROM_ULONG (color.pixel);
2355 color.green = GREEN16_FROM_ULONG (color.pixel);
2356 color.blue = BLUE16_FROM_ULONG (color.pixel);
2360 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
2361 goto error;
2362 if (draw_all_pixels != graphicsImporterDrawsAllPixels)
2364 CGrafPtr old_port;
2365 GDHandle old_gdh;
2367 GetGWorld (&old_port, &old_gdh);
2368 SetGWorld (ximg, NULL);
2369 bg_color.red = color.red;
2370 bg_color.green = color.green;
2371 bg_color.blue = color.blue;
2372 RGBBackColor (&bg_color);
2373 #if TARGET_API_MAC_CARBON
2374 GetPortBounds (ximg, &rect);
2375 EraseRect (&rect);
2376 #else
2377 EraseRect (&(ximg->portRect));
2378 #endif
2379 SetGWorld (old_port, old_gdh);
2381 GraphicsImportSetGWorld (gi, ximg, NULL);
2382 GraphicsImportDraw (gi);
2383 CloseComponent (gi);
2385 /* Maybe fill in the background field while we have ximg handy. */
2386 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
2387 IMAGE_BACKGROUND (img, f, ximg);
2389 /* Put the image into the pixmap. */
2390 x_put_x_image (f, ximg, img->pixmap, width, height);
2391 x_destroy_x_image (ximg);
2392 return 1;
2394 error:
2395 CloseComponent (gi);
2396 return 0;
2400 /* Load an image using the QuickTime Graphics Importer.
2401 Note: The alpha channel does not work for PNG images. */
2402 static int
2403 image_load_quicktime (f, img, type)
2404 struct frame *f;
2405 struct image *img;
2406 OSType type;
2408 Lisp_Object specified_file;
2409 Lisp_Object specified_data;
2410 OSErr err;
2412 specified_file = image_spec_value (img->spec, QCfile, NULL);
2413 specified_data = image_spec_value (img->spec, QCdata, NULL);
2415 if (NILP (specified_data))
2417 /* Read from a file */
2418 Lisp_Object file;
2419 FSSpec fss;
2421 err = find_image_fsspec (specified_file, &file, &fss);
2422 if (err != noErr)
2424 if (err == fnfErr)
2425 image_error ("Cannot find image file `%s'", specified_file, Qnil);
2426 else
2427 image_error ("Cannot open `%s'", file, Qnil);
2428 return 0;
2430 return image_load_qt_1 (f, img, type, &fss, NULL);
2432 else
2434 /* Memory source! */
2435 int success_p;
2436 Handle dh;
2438 err = PtrToHand (SDATA (specified_data), &dh, SBYTES (specified_data));
2439 if (err != noErr)
2441 image_error ("Cannot allocate data handle for `%s'",
2442 img->spec, Qnil);
2443 return 0;
2445 success_p = image_load_qt_1 (f, img, type, NULL, dh);
2446 DisposeHandle (dh);
2447 return success_p;
2452 #ifdef MAC_OSX
2453 /* Load a PNG/JPEG image using Quartz 2D decoding routines.
2454 CGImageCreateWithPNGDataProvider is provided after Mac OS X 10.2.
2455 So don't use this function directly but determine at runtime
2456 whether it exists. */
2457 typedef CGImageRef (*CGImageCreateWithPNGDataProviderProcType)
2458 (CGDataProviderRef, const float [], bool, CGColorRenderingIntent);
2459 static CGImageCreateWithPNGDataProviderProcType MyCGImageCreateWithPNGDataProvider;
2462 static void
2463 init_image_func_pointer ()
2465 if (NSIsSymbolNameDefined ("_CGImageCreateWithPNGDataProvider"))
2467 MyCGImageCreateWithPNGDataProvider
2468 = (CGImageCreateWithPNGDataProviderProcType)
2469 NSAddressOfSymbol (NSLookupAndBindSymbol
2470 ("_CGImageCreateWithPNGDataProvider"));
2472 else
2473 MyCGImageCreateWithPNGDataProvider = NULL;
2477 static int
2478 image_load_quartz2d (f, img, png_p)
2479 struct frame *f;
2480 struct image *img;
2481 int png_p;
2483 Lisp_Object file, specified_file;
2484 Lisp_Object specified_data, specified_bg;
2485 struct gcpro gcpro1;
2486 CGDataProviderRef source;
2487 CGImageRef image;
2488 int width, height;
2489 XColor color;
2490 XImagePtr ximg = NULL;
2491 CGContextRef context;
2492 CGRect rectangle;
2494 /* Open the file. */
2495 specified_file = image_spec_value (img->spec, QCfile, NULL);
2496 specified_data = image_spec_value (img->spec, QCdata, NULL);
2498 file = Qnil;
2499 GCPRO1 (file);
2501 if (NILP (specified_data))
2503 CFStringRef path;
2504 CFURLRef url;
2506 file = x_find_image_file (specified_file);
2507 if (!STRINGP (file))
2509 image_error ("Cannot find image file `%s'", specified_file, Qnil);
2510 UNGCPRO;
2511 return 0;
2513 path = cfstring_create_with_string (file);
2514 url = CFURLCreateWithFileSystemPath (NULL, path,
2515 kCFURLPOSIXPathStyle, 0);
2516 CFRelease (path);
2517 source = CGDataProviderCreateWithURL (url);
2518 CFRelease (url);
2520 else
2521 source = CGDataProviderCreateWithData (NULL, SDATA (specified_data),
2522 SBYTES (specified_data), NULL);
2524 if (png_p)
2525 image = (*MyCGImageCreateWithPNGDataProvider) (source, NULL, FALSE,
2526 kCGRenderingIntentDefault);
2527 else
2528 image = CGImageCreateWithJPEGDataProvider (source, NULL, FALSE,
2529 kCGRenderingIntentDefault);
2531 CGDataProviderRelease (source);
2532 if (image == NULL)
2534 UNGCPRO;
2535 image_error ("Error reading image `%s'", img->spec, Qnil);
2536 return 0;
2539 if (png_p)
2541 specified_bg = image_spec_value (img->spec, QCbackground, NULL);
2542 if (!STRINGP (specified_bg) ||
2543 !mac_defined_color (f, SDATA (specified_bg), &color, 0))
2545 color.pixel = FRAME_BACKGROUND_PIXEL (f);
2546 color.red = RED16_FROM_ULONG (color.pixel);
2547 color.green = GREEN16_FROM_ULONG (color.pixel);
2548 color.blue = BLUE16_FROM_ULONG (color.pixel);
2551 width = img->width = CGImageGetWidth (image);
2552 height = img->height = CGImageGetHeight (image);
2553 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
2555 CGImageRelease (image);
2556 UNGCPRO;
2557 return 0;
2559 rectangle = CGRectMake (0, 0, width, height);
2560 QDBeginCGContext (ximg, &context);
2561 if (png_p)
2563 CGContextSetRGBFillColor (context, color.red / 65535.0,
2564 color.green / 65535.0,
2565 color.blue / 65535.0, 1.0);
2566 CGContextFillRect (context, rectangle);
2568 CGContextDrawImage (context, rectangle, image);
2569 QDEndCGContext (ximg, &context);
2570 CGImageRelease (image);
2572 /* Maybe fill in the background field while we have ximg handy. */
2573 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
2574 IMAGE_BACKGROUND (img, f, ximg);
2576 /* Put the image into the pixmap. */
2577 x_put_x_image (f, ximg, img->pixmap, width, height);
2578 x_destroy_x_image (ximg);
2579 UNGCPRO;
2580 return 1;
2582 #endif
2584 #endif /* MAC_OS */
2587 /***********************************************************************
2588 XBM images
2589 ***********************************************************************/
2591 static int xbm_scan P_ ((unsigned char **, unsigned char *, char *, int *));
2592 static int xbm_load P_ ((struct frame *f, struct image *img));
2593 static int xbm_load_image P_ ((struct frame *f, struct image *img,
2594 unsigned char *, unsigned char *));
2595 static int xbm_image_p P_ ((Lisp_Object object));
2596 static int xbm_read_bitmap_data P_ ((struct frame *f,
2597 unsigned char *, unsigned char *,
2598 int *, int *, unsigned char **));
2599 static int xbm_file_p P_ ((Lisp_Object));
2602 /* Indices of image specification fields in xbm_format, below. */
2604 enum xbm_keyword_index
2606 XBM_TYPE,
2607 XBM_FILE,
2608 XBM_WIDTH,
2609 XBM_HEIGHT,
2610 XBM_DATA,
2611 XBM_FOREGROUND,
2612 XBM_BACKGROUND,
2613 XBM_ASCENT,
2614 XBM_MARGIN,
2615 XBM_RELIEF,
2616 XBM_ALGORITHM,
2617 XBM_HEURISTIC_MASK,
2618 XBM_MASK,
2619 XBM_LAST
2622 /* Vector of image_keyword structures describing the format
2623 of valid XBM image specifications. */
2625 static struct image_keyword xbm_format[XBM_LAST] =
2627 {":type", IMAGE_SYMBOL_VALUE, 1},
2628 {":file", IMAGE_STRING_VALUE, 0},
2629 {":width", IMAGE_POSITIVE_INTEGER_VALUE, 0},
2630 {":height", IMAGE_POSITIVE_INTEGER_VALUE, 0},
2631 {":data", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
2632 {":foreground", IMAGE_STRING_OR_NIL_VALUE, 0},
2633 {":background", IMAGE_STRING_OR_NIL_VALUE, 0},
2634 {":ascent", IMAGE_ASCENT_VALUE, 0},
2635 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
2636 {":relief", IMAGE_INTEGER_VALUE, 0},
2637 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
2638 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
2639 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0}
2642 /* Structure describing the image type XBM. */
2644 static struct image_type xbm_type =
2646 &Qxbm,
2647 xbm_image_p,
2648 xbm_load,
2649 x_clear_image,
2650 NULL
2653 /* Tokens returned from xbm_scan. */
2655 enum xbm_token
2657 XBM_TK_IDENT = 256,
2658 XBM_TK_NUMBER
2662 /* Return non-zero if OBJECT is a valid XBM-type image specification.
2663 A valid specification is a list starting with the symbol `image'
2664 The rest of the list is a property list which must contain an
2665 entry `:type xbm..
2667 If the specification specifies a file to load, it must contain
2668 an entry `:file FILENAME' where FILENAME is a string.
2670 If the specification is for a bitmap loaded from memory it must
2671 contain `:width WIDTH', `:height HEIGHT', and `:data DATA', where
2672 WIDTH and HEIGHT are integers > 0. DATA may be:
2674 1. a string large enough to hold the bitmap data, i.e. it must
2675 have a size >= (WIDTH + 7) / 8 * HEIGHT
2677 2. a bool-vector of size >= WIDTH * HEIGHT
2679 3. a vector of strings or bool-vectors, one for each line of the
2680 bitmap.
2682 4. A string containing an in-memory XBM file. WIDTH and HEIGHT
2683 may not be specified in this case because they are defined in the
2684 XBM file.
2686 Both the file and data forms may contain the additional entries
2687 `:background COLOR' and `:foreground COLOR'. If not present,
2688 foreground and background of the frame on which the image is
2689 displayed is used. */
2691 static int
2692 xbm_image_p (object)
2693 Lisp_Object object;
2695 struct image_keyword kw[XBM_LAST];
2697 bcopy (xbm_format, kw, sizeof kw);
2698 if (!parse_image_spec (object, kw, XBM_LAST, Qxbm))
2699 return 0;
2701 xassert (EQ (kw[XBM_TYPE].value, Qxbm));
2703 if (kw[XBM_FILE].count)
2705 if (kw[XBM_WIDTH].count || kw[XBM_HEIGHT].count || kw[XBM_DATA].count)
2706 return 0;
2708 else if (kw[XBM_DATA].count && xbm_file_p (kw[XBM_DATA].value))
2710 /* In-memory XBM file. */
2711 if (kw[XBM_WIDTH].count || kw[XBM_HEIGHT].count || kw[XBM_FILE].count)
2712 return 0;
2714 else
2716 Lisp_Object data;
2717 int width, height;
2719 /* Entries for `:width', `:height' and `:data' must be present. */
2720 if (!kw[XBM_WIDTH].count
2721 || !kw[XBM_HEIGHT].count
2722 || !kw[XBM_DATA].count)
2723 return 0;
2725 data = kw[XBM_DATA].value;
2726 width = XFASTINT (kw[XBM_WIDTH].value);
2727 height = XFASTINT (kw[XBM_HEIGHT].value);
2729 /* Check type of data, and width and height against contents of
2730 data. */
2731 if (VECTORP (data))
2733 int i;
2735 /* Number of elements of the vector must be >= height. */
2736 if (XVECTOR (data)->size < height)
2737 return 0;
2739 /* Each string or bool-vector in data must be large enough
2740 for one line of the image. */
2741 for (i = 0; i < height; ++i)
2743 Lisp_Object elt = XVECTOR (data)->contents[i];
2745 if (STRINGP (elt))
2747 if (SCHARS (elt)
2748 < (width + BITS_PER_CHAR - 1) / BITS_PER_CHAR)
2749 return 0;
2751 else if (BOOL_VECTOR_P (elt))
2753 if (XBOOL_VECTOR (elt)->size < width)
2754 return 0;
2756 else
2757 return 0;
2760 else if (STRINGP (data))
2762 if (SCHARS (data)
2763 < (width + BITS_PER_CHAR - 1) / BITS_PER_CHAR * height)
2764 return 0;
2766 else if (BOOL_VECTOR_P (data))
2768 if (XBOOL_VECTOR (data)->size < width * height)
2769 return 0;
2771 else
2772 return 0;
2775 return 1;
2779 /* Scan a bitmap file. FP is the stream to read from. Value is
2780 either an enumerator from enum xbm_token, or a character for a
2781 single-character token, or 0 at end of file. If scanning an
2782 identifier, store the lexeme of the identifier in SVAL. If
2783 scanning a number, store its value in *IVAL. */
2785 static int
2786 xbm_scan (s, end, sval, ival)
2787 unsigned char **s, *end;
2788 char *sval;
2789 int *ival;
2791 unsigned int c;
2793 loop:
2795 /* Skip white space. */
2796 while (*s < end && (c = *(*s)++, isspace (c)))
2799 if (*s >= end)
2800 c = 0;
2801 else if (isdigit (c))
2803 int value = 0, digit;
2805 if (c == '0' && *s < end)
2807 c = *(*s)++;
2808 if (c == 'x' || c == 'X')
2810 while (*s < end)
2812 c = *(*s)++;
2813 if (isdigit (c))
2814 digit = c - '0';
2815 else if (c >= 'a' && c <= 'f')
2816 digit = c - 'a' + 10;
2817 else if (c >= 'A' && c <= 'F')
2818 digit = c - 'A' + 10;
2819 else
2820 break;
2821 value = 16 * value + digit;
2824 else if (isdigit (c))
2826 value = c - '0';
2827 while (*s < end
2828 && (c = *(*s)++, isdigit (c)))
2829 value = 8 * value + c - '0';
2832 else
2834 value = c - '0';
2835 while (*s < end
2836 && (c = *(*s)++, isdigit (c)))
2837 value = 10 * value + c - '0';
2840 if (*s < end)
2841 *s = *s - 1;
2842 *ival = value;
2843 c = XBM_TK_NUMBER;
2845 else if (isalpha (c) || c == '_')
2847 *sval++ = c;
2848 while (*s < end
2849 && (c = *(*s)++, (isalnum (c) || c == '_')))
2850 *sval++ = c;
2851 *sval = 0;
2852 if (*s < end)
2853 *s = *s - 1;
2854 c = XBM_TK_IDENT;
2856 else if (c == '/' && **s == '*')
2858 /* C-style comment. */
2859 ++*s;
2860 while (**s && (**s != '*' || *(*s + 1) != '/'))
2861 ++*s;
2862 if (**s)
2864 *s += 2;
2865 goto loop;
2869 return c;
2872 #ifdef HAVE_NTGUI
2874 /* Create a Windows bitmap from X bitmap data. */
2875 static HBITMAP
2876 w32_create_pixmap_from_bitmap_data (int width, int height, char *data)
2878 static unsigned char swap_nibble[16]
2879 = { 0x0, 0x8, 0x4, 0xc, /* 0000 1000 0100 1100 */
2880 0x2, 0xa, 0x6, 0xe, /* 0010 1010 0110 1110 */
2881 0x1, 0x9, 0x5, 0xd, /* 0001 1001 0101 1101 */
2882 0x3, 0xb, 0x7, 0xf }; /* 0011 1011 0111 1111 */
2883 int i, j, w1, w2;
2884 unsigned char *bits, *p;
2885 HBITMAP bmp;
2887 w1 = (width + 7) / 8; /* nb of 8bits elt in X bitmap */
2888 w2 = ((width + 15) / 16) * 2; /* nb of 16bits elt in W32 bitmap */
2889 bits = (unsigned char *) alloca (height * w2);
2890 bzero (bits, height * w2);
2891 for (i = 0; i < height; i++)
2893 p = bits + i*w2;
2894 for (j = 0; j < w1; j++)
2896 /* Bitswap XBM bytes to match how Windows does things. */
2897 unsigned char c = *data++;
2898 *p++ = (unsigned char)((swap_nibble[c & 0xf] << 4)
2899 | (swap_nibble[(c>>4) & 0xf]));
2902 bmp = CreateBitmap (width, height, 1, 1, (char *) bits);
2904 return bmp;
2907 static void convert_mono_to_color_image (f, img, foreground, background)
2908 struct frame *f;
2909 struct image *img;
2910 COLORREF foreground, background;
2912 HDC hdc, old_img_dc, new_img_dc;
2913 HGDIOBJ old_prev, new_prev;
2914 HBITMAP new_pixmap;
2916 hdc = get_frame_dc (f);
2917 old_img_dc = CreateCompatibleDC (hdc);
2918 new_img_dc = CreateCompatibleDC (hdc);
2919 new_pixmap = CreateCompatibleBitmap (hdc, img->width, img->height);
2920 release_frame_dc (f, hdc);
2921 old_prev = SelectObject (old_img_dc, img->pixmap);
2922 new_prev = SelectObject (new_img_dc, new_pixmap);
2923 SetTextColor (new_img_dc, foreground);
2924 SetBkColor (new_img_dc, background);
2926 BitBlt (new_img_dc, 0, 0, img->width, img->height, old_img_dc,
2927 0, 0, SRCCOPY);
2929 SelectObject (old_img_dc, old_prev);
2930 SelectObject (new_img_dc, new_prev);
2931 DeleteDC (old_img_dc);
2932 DeleteDC (new_img_dc);
2933 DeleteObject (img->pixmap);
2934 if (new_pixmap == 0)
2935 fprintf (stderr, "Failed to convert image to color.\n");
2936 else
2937 img->pixmap = new_pixmap;
2940 #define XBM_BIT_SHUFFLE(b) (~(b))
2942 #else
2944 #define XBM_BIT_SHUFFLE(b) (b)
2946 #endif /* HAVE_NTGUI */
2949 static void
2950 Create_Pixmap_From_Bitmap_Data(f, img, data, fg, bg, non_default_colors)
2951 struct frame *f;
2952 struct image *img;
2953 char *data;
2954 RGB_PIXEL_COLOR fg, bg;
2955 int non_default_colors;
2957 #ifdef HAVE_NTGUI
2958 img->pixmap
2959 = w32_create_pixmap_from_bitmap_data (img->width, img->height, data);
2961 /* If colors were specified, transfer the bitmap to a color one. */
2962 if (non_default_colors)
2963 convert_mono_to_color_image (f, img, fg, bg);
2964 #else
2965 img->pixmap
2966 = XCreatePixmapFromBitmapData (FRAME_X_DISPLAY (f),
2967 FRAME_X_WINDOW (f),
2968 data,
2969 img->width, img->height,
2970 fg, bg,
2971 DefaultDepthOfScreen (FRAME_X_SCREEN (f)));
2972 #endif /* HAVE_NTGUI */
2977 /* Replacement for XReadBitmapFileData which isn't available under old
2978 X versions. CONTENTS is a pointer to a buffer to parse; END is the
2979 buffer's end. Set *WIDTH and *HEIGHT to the width and height of
2980 the image. Return in *DATA the bitmap data allocated with xmalloc.
2981 Value is non-zero if successful. DATA null means just test if
2982 CONTENTS looks like an in-memory XBM file. */
2984 static int
2985 xbm_read_bitmap_data (f, contents, end, width, height, data)
2986 struct frame *f;
2987 unsigned char *contents, *end;
2988 int *width, *height;
2989 unsigned char **data;
2991 unsigned char *s = contents;
2992 char buffer[BUFSIZ];
2993 int padding_p = 0;
2994 int v10 = 0;
2995 int bytes_per_line, i, nbytes;
2996 unsigned char *p;
2997 int value;
2998 int LA1;
3000 #define match() \
3001 LA1 = xbm_scan (&s, end, buffer, &value)
3003 #define expect(TOKEN) \
3004 if (LA1 != (TOKEN)) \
3005 goto failure; \
3006 else \
3007 match ()
3009 #define expect_ident(IDENT) \
3010 if (LA1 == XBM_TK_IDENT && strcmp (buffer, (IDENT)) == 0) \
3011 match (); \
3012 else \
3013 goto failure
3015 *width = *height = -1;
3016 if (data)
3017 *data = NULL;
3018 LA1 = xbm_scan (&s, end, buffer, &value);
3020 /* Parse defines for width, height and hot-spots. */
3021 while (LA1 == '#')
3023 match ();
3024 expect_ident ("define");
3025 expect (XBM_TK_IDENT);
3027 if (LA1 == XBM_TK_NUMBER);
3029 char *p = strrchr (buffer, '_');
3030 p = p ? p + 1 : buffer;
3031 if (strcmp (p, "width") == 0)
3032 *width = value;
3033 else if (strcmp (p, "height") == 0)
3034 *height = value;
3036 expect (XBM_TK_NUMBER);
3039 if (!check_image_size (f, *width, *height))
3040 goto failure;
3041 else if (data == NULL)
3042 goto success;
3044 /* Parse bits. Must start with `static'. */
3045 expect_ident ("static");
3046 if (LA1 == XBM_TK_IDENT)
3048 if (strcmp (buffer, "unsigned") == 0)
3050 match ();
3051 expect_ident ("char");
3053 else if (strcmp (buffer, "short") == 0)
3055 match ();
3056 v10 = 1;
3057 if (*width % 16 && *width % 16 < 9)
3058 padding_p = 1;
3060 else if (strcmp (buffer, "char") == 0)
3061 match ();
3062 else
3063 goto failure;
3065 else
3066 goto failure;
3068 expect (XBM_TK_IDENT);
3069 expect ('[');
3070 expect (']');
3071 expect ('=');
3072 expect ('{');
3074 bytes_per_line = (*width + 7) / 8 + padding_p;
3075 nbytes = bytes_per_line * *height;
3076 p = *data = (unsigned char *) xmalloc (nbytes);
3078 if (v10)
3080 for (i = 0; i < nbytes; i += 2)
3082 int val = value;
3083 expect (XBM_TK_NUMBER);
3085 *p++ = XBM_BIT_SHUFFLE (val);
3086 if (!padding_p || ((i + 2) % bytes_per_line))
3087 *p++ = XBM_BIT_SHUFFLE (value >> 8);
3089 if (LA1 == ',' || LA1 == '}')
3090 match ();
3091 else
3092 goto failure;
3095 else
3097 for (i = 0; i < nbytes; ++i)
3099 int val = value;
3100 expect (XBM_TK_NUMBER);
3102 *p++ = XBM_BIT_SHUFFLE (val);
3104 if (LA1 == ',' || LA1 == '}')
3105 match ();
3106 else
3107 goto failure;
3111 success:
3112 return 1;
3114 failure:
3116 if (data && *data)
3118 xfree (*data);
3119 *data = NULL;
3121 return 0;
3123 #undef match
3124 #undef expect
3125 #undef expect_ident
3129 /* Load XBM image IMG which will be displayed on frame F from buffer
3130 CONTENTS. END is the end of the buffer. Value is non-zero if
3131 successful. */
3133 static int
3134 xbm_load_image (f, img, contents, end)
3135 struct frame *f;
3136 struct image *img;
3137 unsigned char *contents, *end;
3139 int rc;
3140 unsigned char *data;
3141 int success_p = 0;
3143 rc = xbm_read_bitmap_data (f, contents, end, &img->width, &img->height, &data);
3144 if (rc)
3146 unsigned long foreground = FRAME_FOREGROUND_PIXEL (f);
3147 unsigned long background = FRAME_BACKGROUND_PIXEL (f);
3148 int non_default_colors = 0;
3149 Lisp_Object value;
3151 xassert (img->width > 0 && img->height > 0);
3153 /* Get foreground and background colors, maybe allocate colors. */
3154 value = image_spec_value (img->spec, QCforeground, NULL);
3155 if (!NILP (value))
3157 foreground = x_alloc_image_color (f, img, value, foreground);
3158 non_default_colors = 1;
3160 value = image_spec_value (img->spec, QCbackground, NULL);
3161 if (!NILP (value))
3163 background = x_alloc_image_color (f, img, value, background);
3164 img->background = background;
3165 img->background_valid = 1;
3166 non_default_colors = 1;
3169 Create_Pixmap_From_Bitmap_Data (f, img, data,
3170 foreground, background,
3171 non_default_colors);
3172 xfree (data);
3174 if (img->pixmap == NO_PIXMAP)
3176 x_clear_image (f, img);
3177 image_error ("Unable to create X pixmap for `%s'", img->spec, Qnil);
3179 else
3180 success_p = 1;
3182 else
3183 image_error ("Error loading XBM image `%s'", img->spec, Qnil);
3185 return success_p;
3189 /* Value is non-zero if DATA looks like an in-memory XBM file. */
3191 static int
3192 xbm_file_p (data)
3193 Lisp_Object data;
3195 int w, h;
3196 return (STRINGP (data)
3197 && xbm_read_bitmap_data (NULL, SDATA (data),
3198 (SDATA (data)
3199 + SBYTES (data)),
3200 &w, &h, NULL));
3204 /* Fill image IMG which is used on frame F with pixmap data. Value is
3205 non-zero if successful. */
3207 static int
3208 xbm_load (f, img)
3209 struct frame *f;
3210 struct image *img;
3212 int success_p = 0;
3213 Lisp_Object file_name;
3215 xassert (xbm_image_p (img->spec));
3217 /* If IMG->spec specifies a file name, create a non-file spec from it. */
3218 file_name = image_spec_value (img->spec, QCfile, NULL);
3219 if (STRINGP (file_name))
3221 Lisp_Object file;
3222 unsigned char *contents;
3223 int size;
3224 struct gcpro gcpro1;
3226 file = x_find_image_file (file_name);
3227 GCPRO1 (file);
3228 if (!STRINGP (file))
3230 image_error ("Cannot find image file `%s'", file_name, Qnil);
3231 UNGCPRO;
3232 return 0;
3235 contents = slurp_file (SDATA (file), &size);
3236 if (contents == NULL)
3238 image_error ("Error loading XBM image `%s'", img->spec, Qnil);
3239 UNGCPRO;
3240 return 0;
3243 success_p = xbm_load_image (f, img, contents, contents + size);
3244 UNGCPRO;
3246 else
3248 struct image_keyword fmt[XBM_LAST];
3249 Lisp_Object data;
3250 unsigned long foreground = FRAME_FOREGROUND_PIXEL (f);
3251 unsigned long background = FRAME_BACKGROUND_PIXEL (f);
3252 int non_default_colors = 0;
3253 char *bits;
3254 int parsed_p;
3255 int in_memory_file_p = 0;
3257 /* See if data looks like an in-memory XBM file. */
3258 data = image_spec_value (img->spec, QCdata, NULL);
3259 in_memory_file_p = xbm_file_p (data);
3261 /* Parse the image specification. */
3262 bcopy (xbm_format, fmt, sizeof fmt);
3263 parsed_p = parse_image_spec (img->spec, fmt, XBM_LAST, Qxbm);
3264 xassert (parsed_p);
3266 /* Get specified width, and height. */
3267 if (!in_memory_file_p)
3269 img->width = XFASTINT (fmt[XBM_WIDTH].value);
3270 img->height = XFASTINT (fmt[XBM_HEIGHT].value);
3271 xassert (img->width > 0 && img->height > 0);
3274 /* Get foreground and background colors, maybe allocate colors. */
3275 if (fmt[XBM_FOREGROUND].count
3276 && STRINGP (fmt[XBM_FOREGROUND].value))
3278 foreground = x_alloc_image_color (f, img, fmt[XBM_FOREGROUND].value,
3279 foreground);
3280 non_default_colors = 1;
3283 if (fmt[XBM_BACKGROUND].count
3284 && STRINGP (fmt[XBM_BACKGROUND].value))
3286 background = x_alloc_image_color (f, img, fmt[XBM_BACKGROUND].value,
3287 background);
3288 non_default_colors = 1;
3291 if (in_memory_file_p)
3292 success_p = xbm_load_image (f, img, SDATA (data),
3293 (SDATA (data)
3294 + SBYTES (data)));
3295 else
3297 if (VECTORP (data))
3299 int i;
3300 char *p;
3301 int nbytes = (img->width + BITS_PER_CHAR - 1) / BITS_PER_CHAR;
3303 p = bits = (char *) alloca (nbytes * img->height);
3304 for (i = 0; i < img->height; ++i, p += nbytes)
3306 Lisp_Object line = XVECTOR (data)->contents[i];
3307 if (STRINGP (line))
3308 bcopy (SDATA (line), p, nbytes);
3309 else
3310 bcopy (XBOOL_VECTOR (line)->data, p, nbytes);
3313 else if (STRINGP (data))
3314 bits = SDATA (data);
3315 else
3316 bits = XBOOL_VECTOR (data)->data;
3318 /* Create the pixmap. */
3320 Create_Pixmap_From_Bitmap_Data (f, img, bits,
3321 foreground, background,
3322 non_default_colors);
3323 if (img->pixmap)
3324 success_p = 1;
3325 else
3327 image_error ("Unable to create pixmap for XBM image `%s'",
3328 img->spec, Qnil);
3329 x_clear_image (f, img);
3334 return success_p;
3339 /***********************************************************************
3340 XPM images
3341 ***********************************************************************/
3343 #if defined (HAVE_XPM) || defined (MAC_OS)
3345 static int xpm_image_p P_ ((Lisp_Object object));
3346 static int xpm_load P_ ((struct frame *f, struct image *img));
3347 static int xpm_valid_color_symbols_p P_ ((Lisp_Object));
3349 #endif /* HAVE_XPM || MAC_OS */
3351 #ifdef HAVE_XPM
3352 #ifdef HAVE_NTGUI
3353 /* Indicate to xpm.h that we don't have Xlib. */
3354 #define FOR_MSW
3355 /* simx.h in xpm defines XColor and XImage differently than Emacs. */
3356 /* It also defines Display the same way as Emacs, but gcc 3.3 still barfs. */
3357 #define XColor xpm_XColor
3358 #define XImage xpm_XImage
3359 #define Display xpm_Display
3360 #define PIXEL_ALREADY_TYPEDEFED
3361 #include "X11/xpm.h"
3362 #undef FOR_MSW
3363 #undef XColor
3364 #undef XImage
3365 #undef Display
3366 #undef PIXEL_ALREADY_TYPEDEFED
3367 #else
3368 #include "X11/xpm.h"
3369 #endif /* HAVE_NTGUI */
3370 #endif /* HAVE_XPM */
3372 #if defined (HAVE_XPM) || defined (MAC_OS)
3373 /* The symbol `xpm' identifying XPM-format images. */
3375 Lisp_Object Qxpm;
3377 /* Indices of image specification fields in xpm_format, below. */
3379 enum xpm_keyword_index
3381 XPM_TYPE,
3382 XPM_FILE,
3383 XPM_DATA,
3384 XPM_ASCENT,
3385 XPM_MARGIN,
3386 XPM_RELIEF,
3387 XPM_ALGORITHM,
3388 XPM_HEURISTIC_MASK,
3389 XPM_MASK,
3390 XPM_COLOR_SYMBOLS,
3391 XPM_BACKGROUND,
3392 XPM_LAST
3395 /* Vector of image_keyword structures describing the format
3396 of valid XPM image specifications. */
3398 static struct image_keyword xpm_format[XPM_LAST] =
3400 {":type", IMAGE_SYMBOL_VALUE, 1},
3401 {":file", IMAGE_STRING_VALUE, 0},
3402 {":data", IMAGE_STRING_VALUE, 0},
3403 {":ascent", IMAGE_ASCENT_VALUE, 0},
3404 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
3405 {":relief", IMAGE_INTEGER_VALUE, 0},
3406 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3407 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3408 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3409 {":color-symbols", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3410 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
3413 /* Structure describing the image type XPM. */
3415 static struct image_type xpm_type =
3417 &Qxpm,
3418 xpm_image_p,
3419 xpm_load,
3420 x_clear_image,
3421 NULL
3424 #ifdef HAVE_X_WINDOWS
3426 /* Define ALLOC_XPM_COLORS if we can use Emacs' own color allocation
3427 functions for allocating image colors. Our own functions handle
3428 color allocation failures more gracefully than the ones on the XPM
3429 lib. */
3431 #if defined XpmAllocColor && defined XpmFreeColors && defined XpmColorClosure
3432 #define ALLOC_XPM_COLORS
3433 #endif
3434 #endif /* HAVE_X_WINDOWS */
3436 #ifdef ALLOC_XPM_COLORS
3438 static void xpm_init_color_cache P_ ((struct frame *, XpmAttributes *));
3439 static void xpm_free_color_cache P_ ((void));
3440 static int xpm_lookup_color P_ ((struct frame *, char *, XColor *));
3441 static int xpm_color_bucket P_ ((char *));
3442 static struct xpm_cached_color *xpm_cache_color P_ ((struct frame *, char *,
3443 XColor *, int));
3445 /* An entry in a hash table used to cache color definitions of named
3446 colors. This cache is necessary to speed up XPM image loading in
3447 case we do color allocations ourselves. Without it, we would need
3448 a call to XParseColor per pixel in the image. */
3450 struct xpm_cached_color
3452 /* Next in collision chain. */
3453 struct xpm_cached_color *next;
3455 /* Color definition (RGB and pixel color). */
3456 XColor color;
3458 /* Color name. */
3459 char name[1];
3462 /* The hash table used for the color cache, and its bucket vector
3463 size. */
3465 #define XPM_COLOR_CACHE_BUCKETS 1001
3466 struct xpm_cached_color **xpm_color_cache;
3468 /* Initialize the color cache. */
3470 static void
3471 xpm_init_color_cache (f, attrs)
3472 struct frame *f;
3473 XpmAttributes *attrs;
3475 size_t nbytes = XPM_COLOR_CACHE_BUCKETS * sizeof *xpm_color_cache;
3476 xpm_color_cache = (struct xpm_cached_color **) xmalloc (nbytes);
3477 memset (xpm_color_cache, 0, nbytes);
3478 init_color_table ();
3480 if (attrs->valuemask & XpmColorSymbols)
3482 int i;
3483 XColor color;
3485 for (i = 0; i < attrs->numsymbols; ++i)
3486 if (XParseColor (FRAME_X_DISPLAY (f), FRAME_X_COLORMAP (f),
3487 attrs->colorsymbols[i].value, &color))
3489 color.pixel = lookup_rgb_color (f, color.red, color.green,
3490 color.blue);
3491 xpm_cache_color (f, attrs->colorsymbols[i].name, &color, -1);
3496 /* Free the color cache. */
3498 static void
3499 xpm_free_color_cache ()
3501 struct xpm_cached_color *p, *next;
3502 int i;
3504 for (i = 0; i < XPM_COLOR_CACHE_BUCKETS; ++i)
3505 for (p = xpm_color_cache[i]; p; p = next)
3507 next = p->next;
3508 xfree (p);
3511 xfree (xpm_color_cache);
3512 xpm_color_cache = NULL;
3513 free_color_table ();
3516 /* Return the bucket index for color named COLOR_NAME in the color
3517 cache. */
3519 static int
3520 xpm_color_bucket (color_name)
3521 char *color_name;
3523 unsigned h = 0;
3524 char *s;
3526 for (s = color_name; *s; ++s)
3527 h = (h << 2) ^ *s;
3528 return h %= XPM_COLOR_CACHE_BUCKETS;
3532 /* On frame F, cache values COLOR for color with name COLOR_NAME.
3533 BUCKET, if >= 0, is a precomputed bucket index. Value is the cache
3534 entry added. */
3536 static struct xpm_cached_color *
3537 xpm_cache_color (f, color_name, color, bucket)
3538 struct frame *f;
3539 char *color_name;
3540 XColor *color;
3541 int bucket;
3543 size_t nbytes;
3544 struct xpm_cached_color *p;
3546 if (bucket < 0)
3547 bucket = xpm_color_bucket (color_name);
3549 nbytes = sizeof *p + strlen (color_name);
3550 p = (struct xpm_cached_color *) xmalloc (nbytes);
3551 strcpy (p->name, color_name);
3552 p->color = *color;
3553 p->next = xpm_color_cache[bucket];
3554 xpm_color_cache[bucket] = p;
3555 return p;
3558 /* Look up color COLOR_NAME for frame F in the color cache. If found,
3559 return the cached definition in *COLOR. Otherwise, make a new
3560 entry in the cache and allocate the color. Value is zero if color
3561 allocation failed. */
3563 static int
3564 xpm_lookup_color (f, color_name, color)
3565 struct frame *f;
3566 char *color_name;
3567 XColor *color;
3569 struct xpm_cached_color *p;
3570 int h = xpm_color_bucket (color_name);
3572 for (p = xpm_color_cache[h]; p; p = p->next)
3573 if (strcmp (p->name, color_name) == 0)
3574 break;
3576 if (p != NULL)
3577 *color = p->color;
3578 else if (XParseColor (FRAME_X_DISPLAY (f), FRAME_X_COLORMAP (f),
3579 color_name, color))
3581 color->pixel = lookup_rgb_color (f, color->red, color->green,
3582 color->blue);
3583 p = xpm_cache_color (f, color_name, color, h);
3585 /* You get `opaque' at least from ImageMagick converting pbm to xpm
3586 with transparency, and it's useful. */
3587 else if (strcmp ("opaque", color_name) == 0)
3589 bzero (color, sizeof (XColor)); /* Is this necessary/correct? */
3590 color->pixel = FRAME_FOREGROUND_PIXEL (f);
3591 p = xpm_cache_color (f, color_name, color, h);
3594 return p != NULL;
3598 /* Callback for allocating color COLOR_NAME. Called from the XPM lib.
3599 CLOSURE is a pointer to the frame on which we allocate the
3600 color. Return in *COLOR the allocated color. Value is non-zero
3601 if successful. */
3603 static int
3604 xpm_alloc_color (dpy, cmap, color_name, color, closure)
3605 Display *dpy;
3606 Colormap cmap;
3607 char *color_name;
3608 XColor *color;
3609 void *closure;
3611 return xpm_lookup_color ((struct frame *) closure, color_name, color);
3615 /* Callback for freeing NPIXELS colors contained in PIXELS. CLOSURE
3616 is a pointer to the frame on which we allocate the color. Value is
3617 non-zero if successful. */
3619 static int
3620 xpm_free_colors (dpy, cmap, pixels, npixels, closure)
3621 Display *dpy;
3622 Colormap cmap;
3623 Pixel *pixels;
3624 int npixels;
3625 void *closure;
3627 return 1;
3630 #endif /* ALLOC_XPM_COLORS */
3633 #ifdef HAVE_NTGUI
3635 /* XPM library details. */
3637 DEF_IMGLIB_FN (XpmFreeAttributes);
3638 DEF_IMGLIB_FN (XpmCreateImageFromBuffer);
3639 DEF_IMGLIB_FN (XpmReadFileToImage);
3640 DEF_IMGLIB_FN (XImageFree);
3642 static int
3643 init_xpm_functions (Lisp_Object libraries)
3645 HMODULE library;
3647 if (!(library = w32_delayed_load (libraries, Qxpm)))
3648 return 0;
3650 LOAD_IMGLIB_FN (library, XpmFreeAttributes);
3651 LOAD_IMGLIB_FN (library, XpmCreateImageFromBuffer);
3652 LOAD_IMGLIB_FN (library, XpmReadFileToImage);
3653 LOAD_IMGLIB_FN (library, XImageFree);
3654 return 1;
3657 #endif /* HAVE_NTGUI */
3660 /* Value is non-zero if COLOR_SYMBOLS is a valid color symbols list
3661 for XPM images. Such a list must consist of conses whose car and
3662 cdr are strings. */
3664 static int
3665 xpm_valid_color_symbols_p (color_symbols)
3666 Lisp_Object color_symbols;
3668 while (CONSP (color_symbols))
3670 Lisp_Object sym = XCAR (color_symbols);
3671 if (!CONSP (sym)
3672 || !STRINGP (XCAR (sym))
3673 || !STRINGP (XCDR (sym)))
3674 break;
3675 color_symbols = XCDR (color_symbols);
3678 return NILP (color_symbols);
3682 /* Value is non-zero if OBJECT is a valid XPM image specification. */
3684 static int
3685 xpm_image_p (object)
3686 Lisp_Object object;
3688 struct image_keyword fmt[XPM_LAST];
3689 bcopy (xpm_format, fmt, sizeof fmt);
3690 return (parse_image_spec (object, fmt, XPM_LAST, Qxpm)
3691 /* Either `:file' or `:data' must be present. */
3692 && fmt[XPM_FILE].count + fmt[XPM_DATA].count == 1
3693 /* Either no `:color-symbols' or it's a list of conses
3694 whose car and cdr are strings. */
3695 && (fmt[XPM_COLOR_SYMBOLS].count == 0
3696 || xpm_valid_color_symbols_p (fmt[XPM_COLOR_SYMBOLS].value)));
3699 #endif /* HAVE_XPM || MAC_OS */
3701 /* Load image IMG which will be displayed on frame F. Value is
3702 non-zero if successful. */
3704 #ifdef HAVE_XPM
3706 static int
3707 xpm_load (f, img)
3708 struct frame *f;
3709 struct image *img;
3711 int rc;
3712 XpmAttributes attrs;
3713 Lisp_Object specified_file, color_symbols;
3714 #ifdef HAVE_NTGUI
3715 HDC hdc;
3716 xpm_XImage * xpm_image = NULL, * xpm_mask = NULL;
3717 #endif /* HAVE_NTGUI */
3719 /* Configure the XPM lib. Use the visual of frame F. Allocate
3720 close colors. Return colors allocated. */
3721 bzero (&attrs, sizeof attrs);
3723 #ifndef HAVE_NTGUI
3724 attrs.visual = FRAME_X_VISUAL (f);
3725 attrs.colormap = FRAME_X_COLORMAP (f);
3726 attrs.valuemask |= XpmVisual;
3727 attrs.valuemask |= XpmColormap;
3728 #endif /* HAVE_NTGUI */
3730 #ifdef ALLOC_XPM_COLORS
3731 /* Allocate colors with our own functions which handle
3732 failing color allocation more gracefully. */
3733 attrs.color_closure = f;
3734 attrs.alloc_color = xpm_alloc_color;
3735 attrs.free_colors = xpm_free_colors;
3736 attrs.valuemask |= XpmAllocColor | XpmFreeColors | XpmColorClosure;
3737 #else /* not ALLOC_XPM_COLORS */
3738 /* Let the XPM lib allocate colors. */
3739 attrs.valuemask |= XpmReturnAllocPixels;
3740 #ifdef XpmAllocCloseColors
3741 attrs.alloc_close_colors = 1;
3742 attrs.valuemask |= XpmAllocCloseColors;
3743 #else /* not XpmAllocCloseColors */
3744 attrs.closeness = 600;
3745 attrs.valuemask |= XpmCloseness;
3746 #endif /* not XpmAllocCloseColors */
3747 #endif /* ALLOC_XPM_COLORS */
3749 /* If image specification contains symbolic color definitions, add
3750 these to `attrs'. */
3751 color_symbols = image_spec_value (img->spec, QCcolor_symbols, NULL);
3752 if (CONSP (color_symbols))
3754 Lisp_Object tail;
3755 XpmColorSymbol *xpm_syms;
3756 int i, size;
3758 attrs.valuemask |= XpmColorSymbols;
3760 /* Count number of symbols. */
3761 attrs.numsymbols = 0;
3762 for (tail = color_symbols; CONSP (tail); tail = XCDR (tail))
3763 ++attrs.numsymbols;
3765 /* Allocate an XpmColorSymbol array. */
3766 size = attrs.numsymbols * sizeof *xpm_syms;
3767 xpm_syms = (XpmColorSymbol *) alloca (size);
3768 bzero (xpm_syms, size);
3769 attrs.colorsymbols = xpm_syms;
3771 /* Fill the color symbol array. */
3772 for (tail = color_symbols, i = 0;
3773 CONSP (tail);
3774 ++i, tail = XCDR (tail))
3776 Lisp_Object name = XCAR (XCAR (tail));
3777 Lisp_Object color = XCDR (XCAR (tail));
3778 xpm_syms[i].name = (char *) alloca (SCHARS (name) + 1);
3779 strcpy (xpm_syms[i].name, SDATA (name));
3780 xpm_syms[i].value = (char *) alloca (SCHARS (color) + 1);
3781 strcpy (xpm_syms[i].value, SDATA (color));
3785 /* Create a pixmap for the image, either from a file, or from a
3786 string buffer containing data in the same format as an XPM file. */
3787 #ifdef ALLOC_XPM_COLORS
3788 xpm_init_color_cache (f, &attrs);
3789 #endif
3791 specified_file = image_spec_value (img->spec, QCfile, NULL);
3793 #ifdef HAVE_NTGUI
3795 HDC frame_dc = get_frame_dc (f);
3796 hdc = CreateCompatibleDC (frame_dc);
3797 release_frame_dc (f, frame_dc);
3799 #endif /* HAVE_NTGUI */
3801 if (STRINGP (specified_file))
3803 Lisp_Object file = x_find_image_file (specified_file);
3804 if (!STRINGP (file))
3806 image_error ("Cannot find image file `%s'", specified_file, Qnil);
3807 return 0;
3810 #ifdef HAVE_NTGUI
3811 /* XpmReadFileToPixmap is not available in the Windows port of
3812 libxpm. But XpmReadFileToImage almost does what we want. */
3813 rc = fn_XpmReadFileToImage (&hdc, SDATA (file),
3814 &xpm_image, &xpm_mask,
3815 &attrs);
3816 #else
3817 rc = XpmReadFileToPixmap (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
3818 SDATA (file), &img->pixmap, &img->mask,
3819 &attrs);
3820 #endif /* HAVE_NTGUI */
3822 else
3824 Lisp_Object buffer = image_spec_value (img->spec, QCdata, NULL);
3825 #ifdef HAVE_NTGUI
3826 /* XpmCreatePixmapFromBuffer is not available in the Windows port
3827 of libxpm. But XpmCreateImageFromBuffer almost does what we want. */
3828 rc = fn_XpmCreateImageFromBuffer (&hdc, SDATA (buffer),
3829 &xpm_image, &xpm_mask,
3830 &attrs);
3831 #else
3832 rc = XpmCreatePixmapFromBuffer (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
3833 SDATA (buffer),
3834 &img->pixmap, &img->mask,
3835 &attrs);
3836 #endif /* HAVE_NTGUI */
3839 if (rc == XpmSuccess)
3841 #if defined (COLOR_TABLE_SUPPORT) && defined (ALLOC_XPM_COLORS)
3842 img->colors = colors_in_color_table (&img->ncolors);
3843 #else /* not ALLOC_XPM_COLORS */
3844 int i;
3846 #ifdef HAVE_NTGUI
3847 /* W32 XPM uses XImage to wrap what W32 Emacs calls a Pixmap,
3848 plus some duplicate attributes. */
3849 if (xpm_image && xpm_image->bitmap)
3851 img->pixmap = xpm_image->bitmap;
3852 /* XImageFree in libXpm frees XImage struct without destroying
3853 the bitmap, which is what we want. */
3854 fn_XImageFree (xpm_image);
3856 if (xpm_mask && xpm_mask->bitmap)
3858 /* The mask appears to be inverted compared with what we expect.
3859 TODO: invert our expectations. See other places where we
3860 have to invert bits because our idea of masks is backwards. */
3861 HGDIOBJ old_obj;
3862 old_obj = SelectObject (hdc, xpm_mask->bitmap);
3864 PatBlt (hdc, 0, 0, xpm_mask->width, xpm_mask->height, DSTINVERT);
3865 SelectObject (hdc, old_obj);
3867 img->mask = xpm_mask->bitmap;
3868 fn_XImageFree (xpm_mask);
3869 DeleteDC (hdc);
3872 DeleteDC (hdc);
3873 #endif /* HAVE_NTGUI */
3875 /* Remember allocated colors. */
3876 img->ncolors = attrs.nalloc_pixels;
3877 img->colors = (unsigned long *) xmalloc (img->ncolors
3878 * sizeof *img->colors);
3879 for (i = 0; i < attrs.nalloc_pixels; ++i)
3881 img->colors[i] = attrs.alloc_pixels[i];
3882 #ifdef DEBUG_X_COLORS
3883 register_color (img->colors[i]);
3884 #endif
3886 #endif /* not ALLOC_XPM_COLORS */
3888 img->width = attrs.width;
3889 img->height = attrs.height;
3890 xassert (img->width > 0 && img->height > 0);
3892 /* The call to XpmFreeAttributes below frees attrs.alloc_pixels. */
3893 #ifdef HAVE_NTGUI
3894 fn_XpmFreeAttributes (&attrs);
3895 #else
3896 XpmFreeAttributes (&attrs);
3897 #endif /* HAVE_NTGUI */
3899 else
3901 #ifdef HAVE_NTGUI
3902 DeleteDC (hdc);
3903 #endif /* HAVE_NTGUI */
3905 switch (rc)
3907 case XpmOpenFailed:
3908 image_error ("Error opening XPM file (%s)", img->spec, Qnil);
3909 break;
3911 case XpmFileInvalid:
3912 image_error ("Invalid XPM file (%s)", img->spec, Qnil);
3913 break;
3915 case XpmNoMemory:
3916 image_error ("Out of memory (%s)", img->spec, Qnil);
3917 break;
3919 case XpmColorFailed:
3920 image_error ("Color allocation error (%s)", img->spec, Qnil);
3921 break;
3923 default:
3924 image_error ("Unknown error (%s)", img->spec, Qnil);
3925 break;
3929 #ifdef ALLOC_XPM_COLORS
3930 xpm_free_color_cache ();
3931 #endif
3932 return rc == XpmSuccess;
3935 #endif /* HAVE_XPM */
3937 #ifdef MAC_OS
3939 /* XPM support functions for Mac OS where libxpm is not available.
3940 Only XPM version 3 (without any extensions) is supported. */
3942 static int xpm_scan P_ ((unsigned char **, unsigned char *,
3943 unsigned char **, int *));
3944 static Lisp_Object xpm_make_color_table_v
3945 P_ ((void (**) (Lisp_Object, unsigned char *, int, Lisp_Object),
3946 Lisp_Object (**) (Lisp_Object, unsigned char *, int)));
3947 static void xpm_put_color_table_v P_ ((Lisp_Object, unsigned char *,
3948 int, Lisp_Object));
3949 static Lisp_Object xpm_get_color_table_v P_ ((Lisp_Object,
3950 unsigned char *, int));
3951 static Lisp_Object xpm_make_color_table_h
3952 P_ ((void (**) (Lisp_Object, unsigned char *, int, Lisp_Object),
3953 Lisp_Object (**) (Lisp_Object, unsigned char *, int)));
3954 static void xpm_put_color_table_h P_ ((Lisp_Object, unsigned char *,
3955 int, Lisp_Object));
3956 static Lisp_Object xpm_get_color_table_h P_ ((Lisp_Object,
3957 unsigned char *, int));
3958 static int xpm_str_to_color_key P_ ((char *));
3959 static int xpm_load_image P_ ((struct frame *, struct image *,
3960 unsigned char *, unsigned char *));
3962 /* Tokens returned from xpm_scan. */
3964 enum xpm_token
3966 XPM_TK_IDENT = 256,
3967 XPM_TK_STRING,
3968 XPM_TK_EOF
3971 /* Scan an XPM data and return a character (< 256) or a token defined
3972 by enum xpm_token above. *S and END are the start (inclusive) and
3973 the end (exclusive) addresses of the data, respectively. Advance
3974 *S while scanning. If token is either XPM_TK_IDENT or
3975 XPM_TK_STRING, *BEG and *LEN are set to the start address and the
3976 length of the corresponding token, respectively. */
3978 static int
3979 xpm_scan (s, end, beg, len)
3980 unsigned char **s, *end, **beg;
3981 int *len;
3983 int c;
3985 while (*s < end)
3987 /* Skip white-space. */
3988 while (*s < end && (c = *(*s)++, isspace (c)))
3991 /* gnus-pointer.xpm uses '-' in its identifier.
3992 sb-dir-plus.xpm uses '+' in its identifier. */
3993 if (isalpha (c) || c == '_' || c == '-' || c == '+')
3995 *beg = *s - 1;
3996 while (*s < end &&
3997 (c = **s, isalnum (c) || c == '_' || c == '-' || c == '+'))
3998 ++*s;
3999 *len = *s - *beg;
4000 return XPM_TK_IDENT;
4002 else if (c == '"')
4004 *beg = *s;
4005 while (*s < end && **s != '"')
4006 ++*s;
4007 *len = *s - *beg;
4008 if (*s < end)
4009 ++*s;
4010 return XPM_TK_STRING;
4012 else if (c == '/')
4014 if (*s < end && **s == '*')
4016 /* C-style comment. */
4017 ++*s;
4020 while (*s < end && *(*s)++ != '*')
4023 while (*s < end && **s != '/');
4024 if (*s < end)
4025 ++*s;
4027 else
4028 return c;
4030 else
4031 return c;
4034 return XPM_TK_EOF;
4037 /* Functions for color table lookup in XPM data. A Key is a string
4038 specifying the color of each pixel in XPM data. A value is either
4039 an integer that specifies a pixel color, Qt that specifies
4040 transparency, or Qnil for the unspecified color. If the length of
4041 the key string is one, a vector is used as a table. Otherwise, a
4042 hash table is used. */
4044 static Lisp_Object
4045 xpm_make_color_table_v (put_func, get_func)
4046 void (**put_func) (Lisp_Object, unsigned char *, int, Lisp_Object);
4047 Lisp_Object (**get_func) (Lisp_Object, unsigned char *, int);
4049 *put_func = xpm_put_color_table_v;
4050 *get_func = xpm_get_color_table_v;
4051 return Fmake_vector (make_number (256), Qnil);
4054 static void
4055 xpm_put_color_table_v (color_table, chars_start, chars_len, color)
4056 Lisp_Object color_table;
4057 unsigned char *chars_start;
4058 int chars_len;
4059 Lisp_Object color;
4061 XVECTOR (color_table)->contents[*chars_start] = color;
4064 static Lisp_Object
4065 xpm_get_color_table_v (color_table, chars_start, chars_len)
4066 Lisp_Object color_table;
4067 unsigned char *chars_start;
4068 int chars_len;
4070 return XVECTOR (color_table)->contents[*chars_start];
4073 static Lisp_Object
4074 xpm_make_color_table_h (put_func, get_func)
4075 void (**put_func) (Lisp_Object, unsigned char *, int, Lisp_Object);
4076 Lisp_Object (**get_func) (Lisp_Object, unsigned char *, int);
4078 *put_func = xpm_put_color_table_h;
4079 *get_func = xpm_get_color_table_h;
4080 return make_hash_table (Qequal, make_number (DEFAULT_HASH_SIZE),
4081 make_float (DEFAULT_REHASH_SIZE),
4082 make_float (DEFAULT_REHASH_THRESHOLD),
4083 Qnil, Qnil, Qnil);
4086 static void
4087 xpm_put_color_table_h (color_table, chars_start, chars_len, color)
4088 Lisp_Object color_table;
4089 unsigned char *chars_start;
4090 int chars_len;
4091 Lisp_Object color;
4093 struct Lisp_Hash_Table *table = XHASH_TABLE (color_table);
4094 unsigned hash_code;
4095 Lisp_Object chars = make_unibyte_string (chars_start, chars_len);
4097 hash_lookup (table, chars, &hash_code);
4098 hash_put (table, chars, color, hash_code);
4101 static Lisp_Object
4102 xpm_get_color_table_h (color_table, chars_start, chars_len)
4103 Lisp_Object color_table;
4104 unsigned char *chars_start;
4105 int chars_len;
4107 struct Lisp_Hash_Table *table = XHASH_TABLE (color_table);
4108 int i = hash_lookup (table, make_unibyte_string (chars_start, chars_len),
4109 NULL);
4111 return i >= 0 ? HASH_VALUE (table, i) : Qnil;
4114 enum xpm_color_key {
4115 XPM_COLOR_KEY_S,
4116 XPM_COLOR_KEY_M,
4117 XPM_COLOR_KEY_G4,
4118 XPM_COLOR_KEY_G,
4119 XPM_COLOR_KEY_C
4122 static char xpm_color_key_strings[][4] = {"s", "m", "g4", "g", "c"};
4124 static int
4125 xpm_str_to_color_key (s)
4126 char *s;
4128 int i;
4130 for (i = 0;
4131 i < sizeof xpm_color_key_strings / sizeof xpm_color_key_strings[0];
4132 i++)
4133 if (strcmp (xpm_color_key_strings[i], s) == 0)
4134 return i;
4135 return -1;
4138 static int
4139 xpm_load_image (f, img, contents, end)
4140 struct frame *f;
4141 struct image *img;
4142 unsigned char *contents, *end;
4144 unsigned char *s = contents, *beg, *str;
4145 unsigned char buffer[BUFSIZ];
4146 int width, height, x, y;
4147 int num_colors, chars_per_pixel;
4148 int len, LA1;
4149 void (*put_color_table) (Lisp_Object, unsigned char *, int, Lisp_Object);
4150 Lisp_Object (*get_color_table) (Lisp_Object, unsigned char *, int);
4151 Lisp_Object frame, color_symbols, color_table;
4152 int best_key, have_mask = 0;
4153 XImagePtr ximg = NULL, mask_img = NULL;
4155 #define match() \
4156 LA1 = xpm_scan (&s, end, &beg, &len)
4158 #define expect(TOKEN) \
4159 if (LA1 != (TOKEN)) \
4160 goto failure; \
4161 else \
4162 match ()
4164 #define expect_ident(IDENT) \
4165 if (LA1 == XPM_TK_IDENT \
4166 && strlen ((IDENT)) == len && memcmp ((IDENT), beg, len) == 0) \
4167 match (); \
4168 else \
4169 goto failure
4171 if (!(end - s >= 9 && memcmp (s, "/* XPM */", 9) == 0))
4172 goto failure;
4173 s += 9;
4174 match();
4175 expect_ident ("static");
4176 expect_ident ("char");
4177 expect ('*');
4178 expect (XPM_TK_IDENT);
4179 expect ('[');
4180 expect (']');
4181 expect ('=');
4182 expect ('{');
4183 expect (XPM_TK_STRING);
4184 if (len >= BUFSIZ)
4185 goto failure;
4186 memcpy (buffer, beg, len);
4187 buffer[len] = '\0';
4188 if (sscanf (buffer, "%d %d %d %d", &width, &height,
4189 &num_colors, &chars_per_pixel) != 4
4190 || width <= 0 || height <= 0
4191 || num_colors <= 0 || chars_per_pixel <= 0)
4192 goto failure;
4193 expect (',');
4195 XSETFRAME (frame, f);
4196 if (!NILP (Fxw_display_color_p (frame)))
4197 best_key = XPM_COLOR_KEY_C;
4198 else if (!NILP (Fx_display_grayscale_p (frame)))
4199 best_key = (XFASTINT (Fx_display_planes (frame)) > 2
4200 ? XPM_COLOR_KEY_G : XPM_COLOR_KEY_G4);
4201 else
4202 best_key = XPM_COLOR_KEY_M;
4204 color_symbols = image_spec_value (img->spec, QCcolor_symbols, NULL);
4205 if (chars_per_pixel == 1)
4206 color_table = xpm_make_color_table_v (&put_color_table,
4207 &get_color_table);
4208 else
4209 color_table = xpm_make_color_table_h (&put_color_table,
4210 &get_color_table);
4212 while (num_colors-- > 0)
4214 unsigned char *color, *max_color;
4215 int key, next_key, max_key = 0;
4216 Lisp_Object symbol_color = Qnil, color_val;
4217 XColor cdef;
4219 expect (XPM_TK_STRING);
4220 if (len <= chars_per_pixel || len >= BUFSIZ + chars_per_pixel)
4221 goto failure;
4222 memcpy (buffer, beg + chars_per_pixel, len - chars_per_pixel);
4223 buffer[len - chars_per_pixel] = '\0';
4225 str = strtok (buffer, " \t");
4226 if (str == NULL)
4227 goto failure;
4228 key = xpm_str_to_color_key (str);
4229 if (key < 0)
4230 goto failure;
4233 color = strtok (NULL, " \t");
4234 if (color == NULL)
4235 goto failure;
4237 while (str = strtok (NULL, " \t"))
4239 next_key = xpm_str_to_color_key (str);
4240 if (next_key >= 0)
4241 break;
4242 color[strlen (color)] = ' ';
4245 if (key == XPM_COLOR_KEY_S)
4247 if (NILP (symbol_color))
4248 symbol_color = build_string (color);
4250 else if (max_key < key && key <= best_key)
4252 max_key = key;
4253 max_color = color;
4255 key = next_key;
4257 while (str);
4259 color_val = Qnil;
4260 if (!NILP (color_symbols) && !NILP (symbol_color))
4262 Lisp_Object specified_color = Fassoc (symbol_color, color_symbols);
4264 if (CONSP (specified_color) && STRINGP (XCDR (specified_color)))
4265 if (xstricmp (SDATA (XCDR (specified_color)), "None") == 0)
4266 color_val = Qt;
4267 else if (x_defined_color (f, SDATA (XCDR (specified_color)),
4268 &cdef, 0))
4269 color_val = make_number (cdef.pixel);
4271 if (NILP (color_val) && max_key > 0)
4272 if (xstricmp (max_color, "None") == 0)
4273 color_val = Qt;
4274 else if (x_defined_color (f, max_color, &cdef, 0))
4275 color_val = make_number (cdef.pixel);
4276 if (!NILP (color_val))
4277 (*put_color_table) (color_table, beg, chars_per_pixel, color_val);
4279 expect (',');
4282 if (!x_create_x_image_and_pixmap (f, width, height, 0,
4283 &ximg, &img->pixmap)
4284 || !x_create_x_image_and_pixmap (f, width, height, 1,
4285 &mask_img, &img->mask))
4287 image_error ("Out of memory (%s)", img->spec, Qnil);
4288 goto error;
4291 for (y = 0; y < height; y++)
4293 expect (XPM_TK_STRING);
4294 str = beg;
4295 if (len < width * chars_per_pixel)
4296 goto failure;
4297 for (x = 0; x < width; x++, str += chars_per_pixel)
4299 Lisp_Object color_val =
4300 (*get_color_table) (color_table, str, chars_per_pixel);
4302 XPutPixel (ximg, x, y,
4303 (INTEGERP (color_val) ? XINT (color_val)
4304 : FRAME_FOREGROUND_PIXEL (f)));
4305 XPutPixel (mask_img, x, y,
4306 (!EQ (color_val, Qt) ? PIX_MASK_DRAW
4307 : (have_mask = 1, PIX_MASK_RETAIN)));
4309 if (y + 1 < height)
4310 expect (',');
4313 img->width = width;
4314 img->height = height;
4316 x_put_x_image (f, ximg, img->pixmap, width, height);
4317 x_destroy_x_image (ximg);
4318 if (have_mask)
4320 /* Fill in the background_transparent field while we have the
4321 mask handy. */
4322 image_background_transparent (img, f, mask_img);
4324 x_put_x_image (f, mask_img, img->mask, width, height);
4325 x_destroy_x_image (mask_img);
4327 else
4329 x_destroy_x_image (mask_img);
4330 Free_Pixmap (FRAME_X_DISPLAY (f), img->mask);
4331 img->mask = NO_PIXMAP;
4334 return 1;
4336 failure:
4337 image_error ("Invalid XPM file (%s)", img->spec, Qnil);
4338 error:
4339 x_destroy_x_image (ximg);
4340 x_destroy_x_image (mask_img);
4341 x_clear_image (f, img);
4342 return 0;
4344 #undef match
4345 #undef expect
4346 #undef expect_ident
4349 static int
4350 xpm_load (f, img)
4351 struct frame *f;
4352 struct image *img;
4354 int success_p = 0;
4355 Lisp_Object file_name;
4357 /* If IMG->spec specifies a file name, create a non-file spec from it. */
4358 file_name = image_spec_value (img->spec, QCfile, NULL);
4359 if (STRINGP (file_name))
4361 Lisp_Object file;
4362 unsigned char *contents;
4363 int size;
4364 struct gcpro gcpro1;
4366 file = x_find_image_file (file_name);
4367 GCPRO1 (file);
4368 if (!STRINGP (file))
4370 image_error ("Cannot find image file `%s'", file_name, Qnil);
4371 UNGCPRO;
4372 return 0;
4375 contents = slurp_file (SDATA (file), &size);
4376 if (contents == NULL)
4378 image_error ("Error loading XPM image `%s'", img->spec, Qnil);
4379 UNGCPRO;
4380 return 0;
4383 success_p = xpm_load_image (f, img, contents, contents + size);
4384 xfree (contents);
4385 UNGCPRO;
4387 else
4389 Lisp_Object data;
4391 data = image_spec_value (img->spec, QCdata, NULL);
4392 success_p = xpm_load_image (f, img, SDATA (data),
4393 SDATA (data) + SBYTES (data));
4396 return success_p;
4399 #endif /* MAC_OS */
4403 /***********************************************************************
4404 Color table
4405 ***********************************************************************/
4407 #ifdef COLOR_TABLE_SUPPORT
4409 /* An entry in the color table mapping an RGB color to a pixel color. */
4411 struct ct_color
4413 int r, g, b;
4414 unsigned long pixel;
4416 /* Next in color table collision list. */
4417 struct ct_color *next;
4420 /* The bucket vector size to use. Must be prime. */
4422 #define CT_SIZE 101
4424 /* Value is a hash of the RGB color given by R, G, and B. */
4426 #define CT_HASH_RGB(R, G, B) (((R) << 16) ^ ((G) << 8) ^ (B))
4428 /* The color hash table. */
4430 struct ct_color **ct_table;
4432 /* Number of entries in the color table. */
4434 int ct_colors_allocated;
4436 /* Initialize the color table. */
4438 static void
4439 init_color_table ()
4441 int size = CT_SIZE * sizeof (*ct_table);
4442 ct_table = (struct ct_color **) xmalloc (size);
4443 bzero (ct_table, size);
4444 ct_colors_allocated = 0;
4448 /* Free memory associated with the color table. */
4450 static void
4451 free_color_table ()
4453 int i;
4454 struct ct_color *p, *next;
4456 for (i = 0; i < CT_SIZE; ++i)
4457 for (p = ct_table[i]; p; p = next)
4459 next = p->next;
4460 xfree (p);
4463 xfree (ct_table);
4464 ct_table = NULL;
4468 /* Value is a pixel color for RGB color R, G, B on frame F. If an
4469 entry for that color already is in the color table, return the
4470 pixel color of that entry. Otherwise, allocate a new color for R,
4471 G, B, and make an entry in the color table. */
4473 static unsigned long
4474 lookup_rgb_color (f, r, g, b)
4475 struct frame *f;
4476 int r, g, b;
4478 unsigned hash = CT_HASH_RGB (r, g, b);
4479 int i = hash % CT_SIZE;
4480 struct ct_color *p;
4481 Display_Info *dpyinfo;
4483 /* Handle TrueColor visuals specially, which improves performance by
4484 two orders of magnitude. Freeing colors on TrueColor visuals is
4485 a nop, and pixel colors specify RGB values directly. See also
4486 the Xlib spec, chapter 3.1. */
4487 dpyinfo = FRAME_X_DISPLAY_INFO (f);
4488 if (dpyinfo->red_bits > 0)
4490 unsigned long pr, pg, pb;
4492 /* Apply gamma-correction like normal color allocation does. */
4493 if (f->gamma)
4495 XColor color;
4496 color.red = r, color.green = g, color.blue = b;
4497 gamma_correct (f, &color);
4498 r = color.red, g = color.green, b = color.blue;
4501 /* Scale down RGB values to the visual's bits per RGB, and shift
4502 them to the right position in the pixel color. Note that the
4503 original RGB values are 16-bit values, as usual in X. */
4504 pr = (r >> (16 - dpyinfo->red_bits)) << dpyinfo->red_offset;
4505 pg = (g >> (16 - dpyinfo->green_bits)) << dpyinfo->green_offset;
4506 pb = (b >> (16 - dpyinfo->blue_bits)) << dpyinfo->blue_offset;
4508 /* Assemble the pixel color. */
4509 return pr | pg | pb;
4512 for (p = ct_table[i]; p; p = p->next)
4513 if (p->r == r && p->g == g && p->b == b)
4514 break;
4516 if (p == NULL)
4519 #ifdef HAVE_X_WINDOWS
4520 XColor color;
4521 Colormap cmap;
4522 int rc;
4524 color.red = r;
4525 color.green = g;
4526 color.blue = b;
4528 cmap = FRAME_X_COLORMAP (f);
4529 rc = x_alloc_nearest_color (f, cmap, &color);
4530 if (rc)
4532 ++ct_colors_allocated;
4533 p = (struct ct_color *) xmalloc (sizeof *p);
4534 p->r = r;
4535 p->g = g;
4536 p->b = b;
4537 p->pixel = color.pixel;
4538 p->next = ct_table[i];
4539 ct_table[i] = p;
4541 else
4542 return FRAME_FOREGROUND_PIXEL (f);
4544 #else
4545 COLORREF color;
4546 #ifdef HAVE_NTGUI
4547 color = PALETTERGB (r, g, b);
4548 #else
4549 color = RGB_TO_ULONG (r, g, b);
4550 #endif /* HAVE_NTGUI */
4551 ++ct_colors_allocated;
4552 p = (struct ct_color *) xmalloc (sizeof *p);
4553 p->r = r;
4554 p->g = g;
4555 p->b = b;
4556 p->pixel = color;
4557 p->next = ct_table[i];
4558 ct_table[i] = p;
4559 #endif /* HAVE_X_WINDOWS */
4563 return p->pixel;
4567 /* Look up pixel color PIXEL which is used on frame F in the color
4568 table. If not already present, allocate it. Value is PIXEL. */
4570 static unsigned long
4571 lookup_pixel_color (f, pixel)
4572 struct frame *f;
4573 unsigned long pixel;
4575 int i = pixel % CT_SIZE;
4576 struct ct_color *p;
4578 for (p = ct_table[i]; p; p = p->next)
4579 if (p->pixel == pixel)
4580 break;
4582 if (p == NULL)
4584 XColor color;
4585 Colormap cmap;
4586 int rc;
4588 #ifdef HAVE_X_WINDOWS
4589 cmap = FRAME_X_COLORMAP (f);
4590 color.pixel = pixel;
4591 x_query_color (f, &color);
4592 rc = x_alloc_nearest_color (f, cmap, &color);
4593 #else
4594 BLOCK_INPUT;
4595 cmap = DefaultColormapOfScreen (FRAME_X_SCREEN (f));
4596 color.pixel = pixel;
4597 XQueryColor (NULL, cmap, &color);
4598 rc = x_alloc_nearest_color (f, cmap, &color);
4599 UNBLOCK_INPUT;
4600 #endif /* HAVE_X_WINDOWS */
4602 if (rc)
4604 ++ct_colors_allocated;
4606 p = (struct ct_color *) xmalloc (sizeof *p);
4607 p->r = color.red;
4608 p->g = color.green;
4609 p->b = color.blue;
4610 p->pixel = pixel;
4611 p->next = ct_table[i];
4612 ct_table[i] = p;
4614 else
4615 return FRAME_FOREGROUND_PIXEL (f);
4617 return p->pixel;
4621 /* Value is a vector of all pixel colors contained in the color table,
4622 allocated via xmalloc. Set *N to the number of colors. */
4624 static unsigned long *
4625 colors_in_color_table (n)
4626 int *n;
4628 int i, j;
4629 struct ct_color *p;
4630 unsigned long *colors;
4632 if (ct_colors_allocated == 0)
4634 *n = 0;
4635 colors = NULL;
4637 else
4639 colors = (unsigned long *) xmalloc (ct_colors_allocated
4640 * sizeof *colors);
4641 *n = ct_colors_allocated;
4643 for (i = j = 0; i < CT_SIZE; ++i)
4644 for (p = ct_table[i]; p; p = p->next)
4645 colors[j++] = p->pixel;
4648 return colors;
4651 #else /* COLOR_TABLE_SUPPORT */
4653 static unsigned long
4654 lookup_rgb_color (f, r, g, b)
4655 struct frame *f;
4656 int r, g, b;
4658 unsigned long pixel;
4660 #ifdef MAC_OS
4661 pixel = RGB_TO_ULONG (r >> 8, g >> 8, b >> 8);
4662 gamma_correct (f, &pixel);
4663 #endif /* MAC_OS */
4665 #ifdef HAVE_NTGUI
4666 pixel = PALETTERGB (r >> 8, g >> 8, b >> 8);
4667 #endif /* HAVE_NTGUI */
4669 return pixel;
4672 static void
4673 init_color_table ()
4676 #endif /* COLOR_TABLE_SUPPORT */
4679 /***********************************************************************
4680 Algorithms
4681 ***********************************************************************/
4683 static XColor *x_to_xcolors P_ ((struct frame *, struct image *, int));
4684 static void x_from_xcolors P_ ((struct frame *, struct image *, XColor *));
4685 static void x_detect_edges P_ ((struct frame *, struct image *, int[9], int));
4687 #ifdef HAVE_NTGUI
4688 static void XPutPixel (XImagePtr , int, int, COLORREF);
4689 #endif /* HAVE_NTGUI */
4691 /* Non-zero means draw a cross on images having `:conversion
4692 disabled'. */
4694 int cross_disabled_images;
4696 /* Edge detection matrices for different edge-detection
4697 strategies. */
4699 static int emboss_matrix[9] = {
4700 /* x - 1 x x + 1 */
4701 2, -1, 0, /* y - 1 */
4702 -1, 0, 1, /* y */
4703 0, 1, -2 /* y + 1 */
4706 static int laplace_matrix[9] = {
4707 /* x - 1 x x + 1 */
4708 1, 0, 0, /* y - 1 */
4709 0, 0, 0, /* y */
4710 0, 0, -1 /* y + 1 */
4713 /* Value is the intensity of the color whose red/green/blue values
4714 are R, G, and B. */
4716 #define COLOR_INTENSITY(R, G, B) ((2 * (R) + 3 * (G) + (B)) / 6)
4719 /* On frame F, return an array of XColor structures describing image
4720 IMG->pixmap. Each XColor structure has its pixel color set. RGB_P
4721 non-zero means also fill the red/green/blue members of the XColor
4722 structures. Value is a pointer to the array of XColors structures,
4723 allocated with xmalloc; it must be freed by the caller. */
4725 static XColor *
4726 x_to_xcolors (f, img, rgb_p)
4727 struct frame *f;
4728 struct image *img;
4729 int rgb_p;
4731 int x, y;
4732 XColor *colors, *p;
4733 XImagePtr_or_DC ximg;
4734 #ifdef HAVE_NTGUI
4735 HDC hdc;
4736 HGDIOBJ prev;
4737 #endif /* HAVE_NTGUI */
4739 colors = (XColor *) xmalloc (img->width * img->height * sizeof *colors);
4741 #ifndef HAVE_NTGUI
4742 /* Get the X image IMG->pixmap. */
4743 ximg = XGetImage (FRAME_X_DISPLAY (f), img->pixmap,
4744 0, 0, img->width, img->height, ~0, ZPixmap);
4745 #else
4746 /* Load the image into a memory device context. */
4747 hdc = get_frame_dc (f);
4748 ximg = CreateCompatibleDC (hdc);
4749 release_frame_dc (f, hdc);
4750 prev = SelectObject (ximg, img->pixmap);
4751 #endif /* HAVE_NTGUI */
4753 /* Fill the `pixel' members of the XColor array. I wished there
4754 were an easy and portable way to circumvent XGetPixel. */
4755 p = colors;
4756 for (y = 0; y < img->height; ++y)
4758 XColor *row = p;
4760 #ifdef HAVE_X_WINDOWS
4761 for (x = 0; x < img->width; ++x, ++p)
4762 p->pixel = XGetPixel (ximg, x, y);
4763 if (rgb_p)
4764 x_query_colors (f, row, img->width);
4766 #else
4768 for (x = 0; x < img->width; ++x, ++p)
4770 /* W32_TODO: palette support needed here? */
4771 p->pixel = GET_PIXEL (ximg, x, y);
4772 if (rgb_p)
4774 #ifdef MAC_OS
4775 p->red = RED16_FROM_ULONG (p->pixel);
4776 p->green = GREEN16_FROM_ULONG (p->pixel);
4777 p->blue = BLUE16_FROM_ULONG (p->pixel);
4778 #endif /* MAC_OS */
4779 #ifdef HAVE_NTGUI
4780 p->red = 256 * GetRValue (p->pixel);
4781 p->green = 256 * GetGValue (p->pixel);
4782 p->blue = 256 * GetBValue (p->pixel);
4783 #endif /* HAVE_NTGUI */
4786 #endif /* HAVE_X_WINDOWS */
4789 Destroy_Image (ximg, prev);
4791 return colors;
4794 #ifdef HAVE_NTGUI
4796 /* Put a pixel of COLOR at position X, Y in XIMG. XIMG must have been
4797 created with CreateDIBSection, with the pointer to the bit values
4798 stored in ximg->data. */
4800 static void XPutPixel (ximg, x, y, color)
4801 XImagePtr ximg;
4802 int x, y;
4803 COLORREF color;
4805 int width = ximg->info.bmiHeader.biWidth;
4806 int height = ximg->info.bmiHeader.biHeight;
4807 unsigned char * pixel;
4809 /* True color images. */
4810 if (ximg->info.bmiHeader.biBitCount == 24)
4812 int rowbytes = width * 3;
4813 /* Ensure scanlines are aligned on 4 byte boundaries. */
4814 if (rowbytes % 4)
4815 rowbytes += 4 - (rowbytes % 4);
4817 pixel = ximg->data + y * rowbytes + x * 3;
4818 /* Windows bitmaps are in BGR order. */
4819 *pixel = GetBValue (color);
4820 *(pixel + 1) = GetGValue (color);
4821 *(pixel + 2) = GetRValue (color);
4823 /* Monochrome images. */
4824 else if (ximg->info.bmiHeader.biBitCount == 1)
4826 int rowbytes = width / 8;
4827 /* Ensure scanlines are aligned on 4 byte boundaries. */
4828 if (rowbytes % 4)
4829 rowbytes += 4 - (rowbytes % 4);
4830 pixel = ximg->data + y * rowbytes + x / 8;
4831 /* Filter out palette info. */
4832 if (color & 0x00ffffff)
4833 *pixel = *pixel | (1 << x % 8);
4834 else
4835 *pixel = *pixel & ~(1 << x % 8);
4837 else
4838 image_error ("XPutPixel: palette image not supported", Qnil, Qnil);
4841 #endif /* HAVE_NTGUI */
4843 /* Create IMG->pixmap from an array COLORS of XColor structures, whose
4844 RGB members are set. F is the frame on which this all happens.
4845 COLORS will be freed; an existing IMG->pixmap will be freed, too. */
4847 static void
4848 x_from_xcolors (f, img, colors)
4849 struct frame *f;
4850 struct image *img;
4851 XColor *colors;
4853 int x, y;
4854 XImagePtr oimg;
4855 Pixmap pixmap;
4856 XColor *p;
4858 init_color_table ();
4860 x_create_x_image_and_pixmap (f, img->width, img->height, 0,
4861 &oimg, &pixmap);
4862 p = colors;
4863 for (y = 0; y < img->height; ++y)
4864 for (x = 0; x < img->width; ++x, ++p)
4866 unsigned long pixel;
4867 pixel = lookup_rgb_color (f, p->red, p->green, p->blue);
4868 XPutPixel (oimg, x, y, pixel);
4871 xfree (colors);
4872 x_clear_image_1 (f, img, 1, 0, 1);
4874 x_put_x_image (f, oimg, pixmap, img->width, img->height);
4875 x_destroy_x_image (oimg);
4876 img->pixmap = pixmap;
4877 #ifdef COLOR_TABLE_SUPPORT
4878 img->colors = colors_in_color_table (&img->ncolors);
4879 free_color_table ();
4880 #endif /* COLOR_TABLE_SUPPORT */
4884 /* On frame F, perform edge-detection on image IMG.
4886 MATRIX is a nine-element array specifying the transformation
4887 matrix. See emboss_matrix for an example.
4889 COLOR_ADJUST is a color adjustment added to each pixel of the
4890 outgoing image. */
4892 static void
4893 x_detect_edges (f, img, matrix, color_adjust)
4894 struct frame *f;
4895 struct image *img;
4896 int matrix[9], color_adjust;
4898 XColor *colors = x_to_xcolors (f, img, 1);
4899 XColor *new, *p;
4900 int x, y, i, sum;
4902 for (i = sum = 0; i < 9; ++i)
4903 sum += abs (matrix[i]);
4905 #define COLOR(A, X, Y) ((A) + (Y) * img->width + (X))
4907 new = (XColor *) xmalloc (img->width * img->height * sizeof *new);
4909 for (y = 0; y < img->height; ++y)
4911 p = COLOR (new, 0, y);
4912 p->red = p->green = p->blue = 0xffff/2;
4913 p = COLOR (new, img->width - 1, y);
4914 p->red = p->green = p->blue = 0xffff/2;
4917 for (x = 1; x < img->width - 1; ++x)
4919 p = COLOR (new, x, 0);
4920 p->red = p->green = p->blue = 0xffff/2;
4921 p = COLOR (new, x, img->height - 1);
4922 p->red = p->green = p->blue = 0xffff/2;
4925 for (y = 1; y < img->height - 1; ++y)
4927 p = COLOR (new, 1, y);
4929 for (x = 1; x < img->width - 1; ++x, ++p)
4931 int r, g, b, y1, x1;
4933 r = g = b = i = 0;
4934 for (y1 = y - 1; y1 < y + 2; ++y1)
4935 for (x1 = x - 1; x1 < x + 2; ++x1, ++i)
4936 if (matrix[i])
4938 XColor *t = COLOR (colors, x1, y1);
4939 r += matrix[i] * t->red;
4940 g += matrix[i] * t->green;
4941 b += matrix[i] * t->blue;
4944 r = (r / sum + color_adjust) & 0xffff;
4945 g = (g / sum + color_adjust) & 0xffff;
4946 b = (b / sum + color_adjust) & 0xffff;
4947 p->red = p->green = p->blue = COLOR_INTENSITY (r, g, b);
4951 xfree (colors);
4952 x_from_xcolors (f, img, new);
4954 #undef COLOR
4958 /* Perform the pre-defined `emboss' edge-detection on image IMG
4959 on frame F. */
4961 static void
4962 x_emboss (f, img)
4963 struct frame *f;
4964 struct image *img;
4966 x_detect_edges (f, img, emboss_matrix, 0xffff / 2);
4970 /* Transform image IMG which is used on frame F with a Laplace
4971 edge-detection algorithm. The result is an image that can be used
4972 to draw disabled buttons, for example. */
4974 static void
4975 x_laplace (f, img)
4976 struct frame *f;
4977 struct image *img;
4979 x_detect_edges (f, img, laplace_matrix, 45000);
4983 /* Perform edge-detection on image IMG on frame F, with specified
4984 transformation matrix MATRIX and color-adjustment COLOR_ADJUST.
4986 MATRIX must be either
4988 - a list of at least 9 numbers in row-major form
4989 - a vector of at least 9 numbers
4991 COLOR_ADJUST nil means use a default; otherwise it must be a
4992 number. */
4994 static void
4995 x_edge_detection (f, img, matrix, color_adjust)
4996 struct frame *f;
4997 struct image *img;
4998 Lisp_Object matrix, color_adjust;
5000 int i = 0;
5001 int trans[9];
5003 if (CONSP (matrix))
5005 for (i = 0;
5006 i < 9 && CONSP (matrix) && NUMBERP (XCAR (matrix));
5007 ++i, matrix = XCDR (matrix))
5008 trans[i] = XFLOATINT (XCAR (matrix));
5010 else if (VECTORP (matrix) && ASIZE (matrix) >= 9)
5012 for (i = 0; i < 9 && NUMBERP (AREF (matrix, i)); ++i)
5013 trans[i] = XFLOATINT (AREF (matrix, i));
5016 if (NILP (color_adjust))
5017 color_adjust = make_number (0xffff / 2);
5019 if (i == 9 && NUMBERP (color_adjust))
5020 x_detect_edges (f, img, trans, (int) XFLOATINT (color_adjust));
5024 /* Transform image IMG on frame F so that it looks disabled. */
5026 static void
5027 x_disable_image (f, img)
5028 struct frame *f;
5029 struct image *img;
5031 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
5032 #ifdef HAVE_NTGUI
5033 int n_planes = dpyinfo->n_planes * dpyinfo->n_cbits;
5034 #else
5035 int n_planes = dpyinfo->n_planes;
5036 #endif /* HAVE_NTGUI */
5038 if (n_planes >= 2)
5040 /* Color (or grayscale). Convert to gray, and equalize. Just
5041 drawing such images with a stipple can look very odd, so
5042 we're using this method instead. */
5043 XColor *colors = x_to_xcolors (f, img, 1);
5044 XColor *p, *end;
5045 const int h = 15000;
5046 const int l = 30000;
5048 for (p = colors, end = colors + img->width * img->height;
5049 p < end;
5050 ++p)
5052 int i = COLOR_INTENSITY (p->red, p->green, p->blue);
5053 int i2 = (0xffff - h - l) * i / 0xffff + l;
5054 p->red = p->green = p->blue = i2;
5057 x_from_xcolors (f, img, colors);
5060 /* Draw a cross over the disabled image, if we must or if we
5061 should. */
5062 if (n_planes < 2 || cross_disabled_images)
5064 #ifndef HAVE_NTGUI
5065 Display *dpy = FRAME_X_DISPLAY (f);
5066 GC gc;
5068 #ifdef MAC_OS
5069 #define XCreateGC_pixmap(dpy, pixmap) XCreateGC (dpy, NULL, 0, NULL)
5070 #define MaskForeground(f) PIX_MASK_DRAW
5071 #else
5072 #define XCreateGC_pixmap(dpy, pixmap) XCreateGC (dpy, pixmap, 0, NULL)
5073 #define MaskForeground(f) WHITE_PIX_DEFAULT (f)
5074 #endif
5076 gc = XCreateGC_pixmap (dpy, img->pixmap);
5077 XSetForeground (dpy, gc, BLACK_PIX_DEFAULT (f));
5078 XDrawLine (dpy, img->pixmap, gc, 0, 0,
5079 img->width - 1, img->height - 1);
5080 XDrawLine (dpy, img->pixmap, gc, 0, img->height - 1,
5081 img->width - 1, 0);
5082 XFreeGC (dpy, gc);
5084 if (img->mask)
5086 gc = XCreateGC_pixmap (dpy, img->mask);
5087 XSetForeground (dpy, gc, MaskForeground (f));
5088 XDrawLine (dpy, img->mask, gc, 0, 0,
5089 img->width - 1, img->height - 1);
5090 XDrawLine (dpy, img->mask, gc, 0, img->height - 1,
5091 img->width - 1, 0);
5092 XFreeGC (dpy, gc);
5094 #else
5095 HDC hdc, bmpdc;
5096 HGDIOBJ prev;
5098 hdc = get_frame_dc (f);
5099 bmpdc = CreateCompatibleDC (hdc);
5100 release_frame_dc (f, hdc);
5102 prev = SelectObject (bmpdc, img->pixmap);
5104 SetTextColor (bmpdc, BLACK_PIX_DEFAULT (f));
5105 MoveToEx (bmpdc, 0, 0, NULL);
5106 LineTo (bmpdc, img->width - 1, img->height - 1);
5107 MoveToEx (bmpdc, 0, img->height - 1, NULL);
5108 LineTo (bmpdc, img->width - 1, 0);
5110 if (img->mask)
5112 SelectObject (bmpdc, img->mask);
5113 SetTextColor (bmpdc, WHITE_PIX_DEFAULT (f));
5114 MoveToEx (bmpdc, 0, 0, NULL);
5115 LineTo (bmpdc, img->width - 1, img->height - 1);
5116 MoveToEx (bmpdc, 0, img->height - 1, NULL);
5117 LineTo (bmpdc, img->width - 1, 0);
5119 SelectObject (bmpdc, prev);
5120 DeleteDC (bmpdc);
5121 #endif /* HAVE_NTGUI */
5126 /* Build a mask for image IMG which is used on frame F. FILE is the
5127 name of an image file, for error messages. HOW determines how to
5128 determine the background color of IMG. If it is a list '(R G B)',
5129 with R, G, and B being integers >= 0, take that as the color of the
5130 background. Otherwise, determine the background color of IMG
5131 heuristically. Value is non-zero if successful. */
5133 static int
5134 x_build_heuristic_mask (f, img, how)
5135 struct frame *f;
5136 struct image *img;
5137 Lisp_Object how;
5139 XImagePtr_or_DC ximg;
5140 #ifndef HAVE_NTGUI
5141 XImagePtr mask_img;
5142 #else
5143 HDC frame_dc;
5144 HGDIOBJ prev;
5145 char *mask_img;
5146 int row_width;
5147 #endif /* HAVE_NTGUI */
5148 int x, y, rc, use_img_background;
5149 unsigned long bg = 0;
5151 if (img->mask)
5153 Free_Pixmap (FRAME_X_DISPLAY (f), img->mask);
5154 img->mask = NO_PIXMAP;
5155 img->background_transparent_valid = 0;
5158 #ifndef HAVE_NTGUI
5159 /* Create an image and pixmap serving as mask. */
5160 rc = x_create_x_image_and_pixmap (f, img->width, img->height, 1,
5161 &mask_img, &img->mask);
5162 if (!rc)
5163 return 0;
5165 /* Get the X image of IMG->pixmap. */
5166 ximg = XGetImage (FRAME_X_DISPLAY (f), img->pixmap, 0, 0,
5167 img->width, img->height,
5168 ~0, ZPixmap);
5169 #else
5170 /* Create the bit array serving as mask. */
5171 row_width = (img->width + 7) / 8;
5172 mask_img = xmalloc (row_width * img->height);
5173 bzero (mask_img, row_width * img->height);
5175 /* Create a memory device context for IMG->pixmap. */
5176 frame_dc = get_frame_dc (f);
5177 ximg = CreateCompatibleDC (frame_dc);
5178 release_frame_dc (f, frame_dc);
5179 prev = SelectObject (ximg, img->pixmap);
5180 #endif /* HAVE_NTGUI */
5182 /* Determine the background color of ximg. If HOW is `(R G B)'
5183 take that as color. Otherwise, use the image's background color. */
5184 use_img_background = 1;
5186 if (CONSP (how))
5188 int rgb[3], i;
5190 for (i = 0; i < 3 && CONSP (how) && NATNUMP (XCAR (how)); ++i)
5192 rgb[i] = XFASTINT (XCAR (how)) & 0xffff;
5193 how = XCDR (how);
5196 if (i == 3 && NILP (how))
5198 char color_name[30];
5199 sprintf (color_name, "#%04x%04x%04x", rgb[0], rgb[1], rgb[2]);
5200 bg = (
5201 #ifdef HAVE_NTGUI
5202 0x00ffffff & /* Filter out palette info. */
5203 #endif /* HAVE_NTGUI */
5204 x_alloc_image_color (f, img, build_string (color_name), 0));
5205 use_img_background = 0;
5209 if (use_img_background)
5210 bg = four_corners_best (ximg, img->width, img->height);
5212 /* Set all bits in mask_img to 1 whose color in ximg is different
5213 from the background color bg. */
5214 #ifndef HAVE_NTGUI
5215 for (y = 0; y < img->height; ++y)
5216 for (x = 0; x < img->width; ++x)
5217 XPutPixel (mask_img, x, y, (XGetPixel (ximg, x, y) != bg
5218 ? PIX_MASK_DRAW : PIX_MASK_RETAIN));
5220 /* Fill in the background_transparent field while we have the mask handy. */
5221 image_background_transparent (img, f, mask_img);
5223 /* Put mask_img into img->mask. */
5224 x_put_x_image (f, mask_img, img->mask, img->width, img->height);
5225 x_destroy_x_image (mask_img);
5227 #else
5228 for (y = 0; y < img->height; ++y)
5229 for (x = 0; x < img->width; ++x)
5231 COLORREF p = GetPixel (ximg, x, y);
5232 if (p != bg)
5233 mask_img[y * row_width + x / 8] |= 1 << (x % 8);
5236 /* Create the mask image. */
5237 img->mask = w32_create_pixmap_from_bitmap_data (img->width, img->height,
5238 mask_img);
5239 /* Fill in the background_transparent field while we have the mask handy. */
5240 SelectObject (ximg, img->mask);
5241 image_background_transparent (img, f, ximg);
5243 /* Was: x_destroy_x_image ((XImagePtr )mask_img); which seems bogus ++kfs */
5244 xfree (mask_img);
5245 #endif /* HAVE_NTGUI */
5247 Destroy_Image (ximg, prev);
5249 return 1;
5253 /***********************************************************************
5254 PBM (mono, gray, color)
5255 ***********************************************************************/
5257 static int pbm_image_p P_ ((Lisp_Object object));
5258 static int pbm_load P_ ((struct frame *f, struct image *img));
5259 static int pbm_scan_number P_ ((unsigned char **, unsigned char *));
5261 /* The symbol `pbm' identifying images of this type. */
5263 Lisp_Object Qpbm;
5265 /* Indices of image specification fields in gs_format, below. */
5267 enum pbm_keyword_index
5269 PBM_TYPE,
5270 PBM_FILE,
5271 PBM_DATA,
5272 PBM_ASCENT,
5273 PBM_MARGIN,
5274 PBM_RELIEF,
5275 PBM_ALGORITHM,
5276 PBM_HEURISTIC_MASK,
5277 PBM_MASK,
5278 PBM_FOREGROUND,
5279 PBM_BACKGROUND,
5280 PBM_LAST
5283 /* Vector of image_keyword structures describing the format
5284 of valid user-defined image specifications. */
5286 static struct image_keyword pbm_format[PBM_LAST] =
5288 {":type", IMAGE_SYMBOL_VALUE, 1},
5289 {":file", IMAGE_STRING_VALUE, 0},
5290 {":data", IMAGE_STRING_VALUE, 0},
5291 {":ascent", IMAGE_ASCENT_VALUE, 0},
5292 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
5293 {":relief", IMAGE_INTEGER_VALUE, 0},
5294 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5295 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5296 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5297 {":foreground", IMAGE_STRING_OR_NIL_VALUE, 0},
5298 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
5301 /* Structure describing the image type `pbm'. */
5303 static struct image_type pbm_type =
5305 &Qpbm,
5306 pbm_image_p,
5307 pbm_load,
5308 x_clear_image,
5309 NULL
5313 /* Return non-zero if OBJECT is a valid PBM image specification. */
5315 static int
5316 pbm_image_p (object)
5317 Lisp_Object object;
5319 struct image_keyword fmt[PBM_LAST];
5321 bcopy (pbm_format, fmt, sizeof fmt);
5323 if (!parse_image_spec (object, fmt, PBM_LAST, Qpbm))
5324 return 0;
5326 /* Must specify either :data or :file. */
5327 return fmt[PBM_DATA].count + fmt[PBM_FILE].count == 1;
5331 /* Scan a decimal number from *S and return it. Advance *S while
5332 reading the number. END is the end of the string. Value is -1 at
5333 end of input. */
5335 static int
5336 pbm_scan_number (s, end)
5337 unsigned char **s, *end;
5339 int c = 0, val = -1;
5341 while (*s < end)
5343 /* Skip white-space. */
5344 while (*s < end && (c = *(*s)++, isspace (c)))
5347 if (c == '#')
5349 /* Skip comment to end of line. */
5350 while (*s < end && (c = *(*s)++, c != '\n'))
5353 else if (isdigit (c))
5355 /* Read decimal number. */
5356 val = c - '0';
5357 while (*s < end && (c = *(*s)++, isdigit (c)))
5358 val = 10 * val + c - '0';
5359 break;
5361 else
5362 break;
5365 return val;
5369 #ifdef HAVE_NTGUI
5370 #if 0 /* Unused. ++kfs */
5372 /* Read FILE into memory. Value is a pointer to a buffer allocated
5373 with xmalloc holding FILE's contents. Value is null if an error
5374 occurred. *SIZE is set to the size of the file. */
5376 static char *
5377 pbm_read_file (file, size)
5378 Lisp_Object file;
5379 int *size;
5381 FILE *fp = NULL;
5382 char *buf = NULL;
5383 struct stat st;
5385 if (stat (SDATA (file), &st) == 0
5386 && (fp = fopen (SDATA (file), "rb")) != NULL
5387 && (buf = (char *) xmalloc (st.st_size),
5388 fread (buf, 1, st.st_size, fp) == st.st_size))
5390 *size = st.st_size;
5391 fclose (fp);
5393 else
5395 if (fp)
5396 fclose (fp);
5397 if (buf)
5399 xfree (buf);
5400 buf = NULL;
5404 return buf;
5406 #endif
5407 #endif /* HAVE_NTGUI */
5409 /* Load PBM image IMG for use on frame F. */
5411 static int
5412 pbm_load (f, img)
5413 struct frame *f;
5414 struct image *img;
5416 int raw_p, x, y;
5417 int width, height, max_color_idx = 0;
5418 XImagePtr ximg;
5419 Lisp_Object file, specified_file;
5420 enum {PBM_MONO, PBM_GRAY, PBM_COLOR} type;
5421 struct gcpro gcpro1;
5422 unsigned char *contents = NULL;
5423 unsigned char *end, *p;
5424 int size;
5426 specified_file = image_spec_value (img->spec, QCfile, NULL);
5427 file = Qnil;
5428 GCPRO1 (file);
5430 if (STRINGP (specified_file))
5432 file = x_find_image_file (specified_file);
5433 if (!STRINGP (file))
5435 image_error ("Cannot find image file `%s'", specified_file, Qnil);
5436 UNGCPRO;
5437 return 0;
5440 contents = slurp_file (SDATA (file), &size);
5441 if (contents == NULL)
5443 image_error ("Error reading `%s'", file, Qnil);
5444 UNGCPRO;
5445 return 0;
5448 p = contents;
5449 end = contents + size;
5451 else
5453 Lisp_Object data;
5454 data = image_spec_value (img->spec, QCdata, NULL);
5455 p = SDATA (data);
5456 end = p + SBYTES (data);
5459 /* Check magic number. */
5460 if (end - p < 2 || *p++ != 'P')
5462 image_error ("Not a PBM image: `%s'", img->spec, Qnil);
5463 error:
5464 xfree (contents);
5465 UNGCPRO;
5466 return 0;
5469 switch (*p++)
5471 case '1':
5472 raw_p = 0, type = PBM_MONO;
5473 break;
5475 case '2':
5476 raw_p = 0, type = PBM_GRAY;
5477 break;
5479 case '3':
5480 raw_p = 0, type = PBM_COLOR;
5481 break;
5483 case '4':
5484 raw_p = 1, type = PBM_MONO;
5485 break;
5487 case '5':
5488 raw_p = 1, type = PBM_GRAY;
5489 break;
5491 case '6':
5492 raw_p = 1, type = PBM_COLOR;
5493 break;
5495 default:
5496 image_error ("Not a PBM image: `%s'", img->spec, Qnil);
5497 goto error;
5500 /* Read width, height, maximum color-component. Characters
5501 starting with `#' up to the end of a line are ignored. */
5502 width = pbm_scan_number (&p, end);
5503 height = pbm_scan_number (&p, end);
5505 if (type != PBM_MONO)
5507 max_color_idx = pbm_scan_number (&p, end);
5508 if (raw_p && max_color_idx > 255)
5509 max_color_idx = 255;
5512 if (!check_image_size (f, width, height)
5513 || (type != PBM_MONO && max_color_idx < 0))
5514 goto error;
5516 if (!x_create_x_image_and_pixmap (f, width, height, 0,
5517 &ximg, &img->pixmap))
5518 goto error;
5520 /* Initialize the color hash table. */
5521 init_color_table ();
5523 if (type == PBM_MONO)
5525 int c = 0, g;
5526 struct image_keyword fmt[PBM_LAST];
5527 unsigned long fg = FRAME_FOREGROUND_PIXEL (f);
5528 unsigned long bg = FRAME_BACKGROUND_PIXEL (f);
5530 /* Parse the image specification. */
5531 bcopy (pbm_format, fmt, sizeof fmt);
5532 parse_image_spec (img->spec, fmt, PBM_LAST, Qpbm);
5534 /* Get foreground and background colors, maybe allocate colors. */
5535 if (fmt[PBM_FOREGROUND].count
5536 && STRINGP (fmt[PBM_FOREGROUND].value))
5537 fg = x_alloc_image_color (f, img, fmt[PBM_FOREGROUND].value, fg);
5538 if (fmt[PBM_BACKGROUND].count
5539 && STRINGP (fmt[PBM_BACKGROUND].value))
5541 bg = x_alloc_image_color (f, img, fmt[PBM_BACKGROUND].value, bg);
5542 img->background = bg;
5543 img->background_valid = 1;
5546 for (y = 0; y < height; ++y)
5547 for (x = 0; x < width; ++x)
5549 if (raw_p)
5551 if ((x & 7) == 0)
5552 c = *p++;
5553 g = c & 0x80;
5554 c <<= 1;
5556 else
5557 g = pbm_scan_number (&p, end);
5559 XPutPixel (ximg, x, y, g ? fg : bg);
5562 else
5564 for (y = 0; y < height; ++y)
5565 for (x = 0; x < width; ++x)
5567 int r, g, b;
5569 if (type == PBM_GRAY)
5570 r = g = b = raw_p ? *p++ : pbm_scan_number (&p, end);
5571 else if (raw_p)
5573 r = *p++;
5574 g = *p++;
5575 b = *p++;
5577 else
5579 r = pbm_scan_number (&p, end);
5580 g = pbm_scan_number (&p, end);
5581 b = pbm_scan_number (&p, end);
5584 if (r < 0 || g < 0 || b < 0)
5586 x_destroy_x_image (ximg);
5587 image_error ("Invalid pixel value in image `%s'",
5588 img->spec, Qnil);
5589 goto error;
5592 /* RGB values are now in the range 0..max_color_idx.
5593 Scale this to the range 0..0xffff supported by X. */
5594 r = (double) r * 65535 / max_color_idx;
5595 g = (double) g * 65535 / max_color_idx;
5596 b = (double) b * 65535 / max_color_idx;
5597 XPutPixel (ximg, x, y, lookup_rgb_color (f, r, g, b));
5601 #ifdef COLOR_TABLE_SUPPORT
5602 /* Store in IMG->colors the colors allocated for the image, and
5603 free the color table. */
5604 img->colors = colors_in_color_table (&img->ncolors);
5605 free_color_table ();
5606 #endif /* COLOR_TABLE_SUPPORT */
5608 img->width = width;
5609 img->height = height;
5611 /* Maybe fill in the background field while we have ximg handy. */
5613 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
5614 /* Casting avoids a GCC warning. */
5615 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
5617 /* Put the image into a pixmap. */
5618 x_put_x_image (f, ximg, img->pixmap, width, height);
5619 x_destroy_x_image (ximg);
5621 /* X and W32 versions did it here, MAC version above. ++kfs
5622 img->width = width;
5623 img->height = height; */
5625 UNGCPRO;
5626 xfree (contents);
5627 return 1;
5631 /***********************************************************************
5633 ***********************************************************************/
5635 #if defined (HAVE_PNG) || defined (MAC_OS)
5637 /* Function prototypes. */
5639 static int png_image_p P_ ((Lisp_Object object));
5640 static int png_load P_ ((struct frame *f, struct image *img));
5642 /* The symbol `png' identifying images of this type. */
5644 Lisp_Object Qpng;
5646 /* Indices of image specification fields in png_format, below. */
5648 enum png_keyword_index
5650 PNG_TYPE,
5651 PNG_DATA,
5652 PNG_FILE,
5653 PNG_ASCENT,
5654 PNG_MARGIN,
5655 PNG_RELIEF,
5656 PNG_ALGORITHM,
5657 PNG_HEURISTIC_MASK,
5658 PNG_MASK,
5659 PNG_BACKGROUND,
5660 PNG_LAST
5663 /* Vector of image_keyword structures describing the format
5664 of valid user-defined image specifications. */
5666 static struct image_keyword png_format[PNG_LAST] =
5668 {":type", IMAGE_SYMBOL_VALUE, 1},
5669 {":data", IMAGE_STRING_VALUE, 0},
5670 {":file", IMAGE_STRING_VALUE, 0},
5671 {":ascent", IMAGE_ASCENT_VALUE, 0},
5672 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
5673 {":relief", IMAGE_INTEGER_VALUE, 0},
5674 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5675 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5676 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5677 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
5680 /* Structure describing the image type `png'. */
5682 static struct image_type png_type =
5684 &Qpng,
5685 png_image_p,
5686 png_load,
5687 x_clear_image,
5688 NULL
5691 /* Return non-zero if OBJECT is a valid PNG image specification. */
5693 static int
5694 png_image_p (object)
5695 Lisp_Object object;
5697 struct image_keyword fmt[PNG_LAST];
5698 bcopy (png_format, fmt, sizeof fmt);
5700 if (!parse_image_spec (object, fmt, PNG_LAST, Qpng))
5701 return 0;
5703 /* Must specify either the :data or :file keyword. */
5704 return fmt[PNG_FILE].count + fmt[PNG_DATA].count == 1;
5707 #endif /* HAVE_PNG || MAC_OS */
5710 #ifdef HAVE_PNG
5712 #if defined HAVE_LIBPNG_PNG_H
5713 # include <libpng/png.h>
5714 #else
5715 # include <png.h>
5716 #endif
5718 #ifdef HAVE_NTGUI
5719 /* PNG library details. */
5721 DEF_IMGLIB_FN (png_get_io_ptr);
5722 DEF_IMGLIB_FN (png_check_sig);
5723 DEF_IMGLIB_FN (png_create_read_struct);
5724 DEF_IMGLIB_FN (png_create_info_struct);
5725 DEF_IMGLIB_FN (png_destroy_read_struct);
5726 DEF_IMGLIB_FN (png_set_read_fn);
5727 DEF_IMGLIB_FN (png_set_sig_bytes);
5728 DEF_IMGLIB_FN (png_read_info);
5729 DEF_IMGLIB_FN (png_get_IHDR);
5730 DEF_IMGLIB_FN (png_get_valid);
5731 DEF_IMGLIB_FN (png_set_strip_16);
5732 DEF_IMGLIB_FN (png_set_expand);
5733 DEF_IMGLIB_FN (png_set_gray_to_rgb);
5734 DEF_IMGLIB_FN (png_set_background);
5735 DEF_IMGLIB_FN (png_get_bKGD);
5736 DEF_IMGLIB_FN (png_read_update_info);
5737 DEF_IMGLIB_FN (png_get_channels);
5738 DEF_IMGLIB_FN (png_get_rowbytes);
5739 DEF_IMGLIB_FN (png_read_image);
5740 DEF_IMGLIB_FN (png_read_end);
5741 DEF_IMGLIB_FN (png_error);
5743 static int
5744 init_png_functions (Lisp_Object libraries)
5746 HMODULE library;
5748 /* Try loading libpng under probable names. */
5749 if (!(library = w32_delayed_load (libraries, Qpng)))
5750 return 0;
5752 LOAD_IMGLIB_FN (library, png_get_io_ptr);
5753 LOAD_IMGLIB_FN (library, png_check_sig);
5754 LOAD_IMGLIB_FN (library, png_create_read_struct);
5755 LOAD_IMGLIB_FN (library, png_create_info_struct);
5756 LOAD_IMGLIB_FN (library, png_destroy_read_struct);
5757 LOAD_IMGLIB_FN (library, png_set_read_fn);
5758 LOAD_IMGLIB_FN (library, png_set_sig_bytes);
5759 LOAD_IMGLIB_FN (library, png_read_info);
5760 LOAD_IMGLIB_FN (library, png_get_IHDR);
5761 LOAD_IMGLIB_FN (library, png_get_valid);
5762 LOAD_IMGLIB_FN (library, png_set_strip_16);
5763 LOAD_IMGLIB_FN (library, png_set_expand);
5764 LOAD_IMGLIB_FN (library, png_set_gray_to_rgb);
5765 LOAD_IMGLIB_FN (library, png_set_background);
5766 LOAD_IMGLIB_FN (library, png_get_bKGD);
5767 LOAD_IMGLIB_FN (library, png_read_update_info);
5768 LOAD_IMGLIB_FN (library, png_get_channels);
5769 LOAD_IMGLIB_FN (library, png_get_rowbytes);
5770 LOAD_IMGLIB_FN (library, png_read_image);
5771 LOAD_IMGLIB_FN (library, png_read_end);
5772 LOAD_IMGLIB_FN (library, png_error);
5773 return 1;
5775 #else
5777 #define fn_png_get_io_ptr png_get_io_ptr
5778 #define fn_png_check_sig png_check_sig
5779 #define fn_png_create_read_struct png_create_read_struct
5780 #define fn_png_create_info_struct png_create_info_struct
5781 #define fn_png_destroy_read_struct png_destroy_read_struct
5782 #define fn_png_set_read_fn png_set_read_fn
5783 #define fn_png_set_sig_bytes png_set_sig_bytes
5784 #define fn_png_read_info png_read_info
5785 #define fn_png_get_IHDR png_get_IHDR
5786 #define fn_png_get_valid png_get_valid
5787 #define fn_png_set_strip_16 png_set_strip_16
5788 #define fn_png_set_expand png_set_expand
5789 #define fn_png_set_gray_to_rgb png_set_gray_to_rgb
5790 #define fn_png_set_background png_set_background
5791 #define fn_png_get_bKGD png_get_bKGD
5792 #define fn_png_read_update_info png_read_update_info
5793 #define fn_png_get_channels png_get_channels
5794 #define fn_png_get_rowbytes png_get_rowbytes
5795 #define fn_png_read_image png_read_image
5796 #define fn_png_read_end png_read_end
5797 #define fn_png_error png_error
5799 #endif /* HAVE_NTGUI */
5801 /* Error and warning handlers installed when the PNG library
5802 is initialized. */
5804 static void
5805 my_png_error (png_ptr, msg)
5806 png_struct *png_ptr;
5807 char *msg;
5809 xassert (png_ptr != NULL);
5810 image_error ("PNG error: %s", build_string (msg), Qnil);
5811 longjmp (png_ptr->jmpbuf, 1);
5815 static void
5816 my_png_warning (png_ptr, msg)
5817 png_struct *png_ptr;
5818 char *msg;
5820 xassert (png_ptr != NULL);
5821 image_error ("PNG warning: %s", build_string (msg), Qnil);
5824 /* Memory source for PNG decoding. */
5826 struct png_memory_storage
5828 unsigned char *bytes; /* The data */
5829 size_t len; /* How big is it? */
5830 int index; /* Where are we? */
5834 /* Function set as reader function when reading PNG image from memory.
5835 PNG_PTR is a pointer to the PNG control structure. Copy LENGTH
5836 bytes from the input to DATA. */
5838 static void
5839 png_read_from_memory (png_ptr, data, length)
5840 png_structp png_ptr;
5841 png_bytep data;
5842 png_size_t length;
5844 struct png_memory_storage *tbr
5845 = (struct png_memory_storage *) fn_png_get_io_ptr (png_ptr);
5847 if (length > tbr->len - tbr->index)
5848 fn_png_error (png_ptr, "Read error");
5850 bcopy (tbr->bytes + tbr->index, data, length);
5851 tbr->index = tbr->index + length;
5855 /* Function set as reader function when reading PNG image from a file.
5856 PNG_PTR is a pointer to the PNG control structure. Copy LENGTH
5857 bytes from the input to DATA. */
5859 static void
5860 png_read_from_file (png_ptr, data, length)
5861 png_structp png_ptr;
5862 png_bytep data;
5863 png_size_t length;
5865 FILE *fp = (FILE *) fn_png_get_io_ptr (png_ptr);
5867 if (fread (data, 1, length, fp) < length)
5868 fn_png_error (png_ptr, "Read error");
5872 /* Load PNG image IMG for use on frame F. Value is non-zero if
5873 successful. */
5875 static int
5876 png_load (f, img)
5877 struct frame *f;
5878 struct image *img;
5880 Lisp_Object file, specified_file;
5881 Lisp_Object specified_data;
5882 int x, y, i;
5883 XImagePtr ximg, mask_img = NULL;
5884 struct gcpro gcpro1;
5885 png_struct *png_ptr = NULL;
5886 png_info *info_ptr = NULL, *end_info = NULL;
5887 FILE *volatile fp = NULL;
5888 png_byte sig[8];
5889 png_byte * volatile pixels = NULL;
5890 png_byte ** volatile rows = NULL;
5891 png_uint_32 width, height;
5892 int bit_depth, color_type, interlace_type;
5893 png_byte channels;
5894 png_uint_32 row_bytes;
5895 int transparent_p;
5896 double screen_gamma;
5897 struct png_memory_storage tbr; /* Data to be read */
5899 /* Find out what file to load. */
5900 specified_file = image_spec_value (img->spec, QCfile, NULL);
5901 specified_data = image_spec_value (img->spec, QCdata, NULL);
5902 file = Qnil;
5903 GCPRO1 (file);
5905 if (NILP (specified_data))
5907 file = x_find_image_file (specified_file);
5908 if (!STRINGP (file))
5910 image_error ("Cannot find image file `%s'", specified_file, Qnil);
5911 UNGCPRO;
5912 return 0;
5915 /* Open the image file. */
5916 fp = fopen (SDATA (file), "rb");
5917 if (!fp)
5919 image_error ("Cannot open image file `%s'", file, Qnil);
5920 UNGCPRO;
5921 fclose (fp);
5922 return 0;
5925 /* Check PNG signature. */
5926 if (fread (sig, 1, sizeof sig, fp) != sizeof sig
5927 || !fn_png_check_sig (sig, sizeof sig))
5929 image_error ("Not a PNG file: `%s'", file, Qnil);
5930 UNGCPRO;
5931 fclose (fp);
5932 return 0;
5935 else
5937 /* Read from memory. */
5938 tbr.bytes = SDATA (specified_data);
5939 tbr.len = SBYTES (specified_data);
5940 tbr.index = 0;
5942 /* Check PNG signature. */
5943 if (tbr.len < sizeof sig
5944 || !fn_png_check_sig (tbr.bytes, sizeof sig))
5946 image_error ("Not a PNG image: `%s'", img->spec, Qnil);
5947 UNGCPRO;
5948 return 0;
5951 /* Need to skip past the signature. */
5952 tbr.bytes += sizeof (sig);
5955 /* Initialize read and info structs for PNG lib. Casting return
5956 value avoids a GCC warning on W32. */
5957 png_ptr = (png_structp)fn_png_create_read_struct (PNG_LIBPNG_VER_STRING,
5958 NULL, my_png_error,
5959 my_png_warning);
5960 if (!png_ptr)
5962 if (fp) fclose (fp);
5963 UNGCPRO;
5964 return 0;
5967 /* Casting return value avoids a GCC warning on W32. */
5968 info_ptr = (png_infop)fn_png_create_info_struct (png_ptr);
5969 if (!info_ptr)
5971 fn_png_destroy_read_struct (&png_ptr, NULL, NULL);
5972 if (fp) fclose (fp);
5973 UNGCPRO;
5974 return 0;
5977 /* Casting return value avoids a GCC warning on W32. */
5978 end_info = (png_infop)fn_png_create_info_struct (png_ptr);
5979 if (!end_info)
5981 fn_png_destroy_read_struct (&png_ptr, &info_ptr, NULL);
5982 if (fp) fclose (fp);
5983 UNGCPRO;
5984 return 0;
5987 /* Set error jump-back. We come back here when the PNG library
5988 detects an error. */
5989 if (setjmp (png_ptr->jmpbuf))
5991 error:
5992 if (png_ptr)
5993 fn_png_destroy_read_struct (&png_ptr, &info_ptr, &end_info);
5994 xfree (pixels);
5995 xfree (rows);
5996 if (fp) fclose (fp);
5997 UNGCPRO;
5998 return 0;
6001 /* Read image info. */
6002 if (!NILP (specified_data))
6003 fn_png_set_read_fn (png_ptr, (void *) &tbr, png_read_from_memory);
6004 else
6005 fn_png_set_read_fn (png_ptr, (void *) fp, png_read_from_file);
6007 fn_png_set_sig_bytes (png_ptr, sizeof sig);
6008 fn_png_read_info (png_ptr, info_ptr);
6009 fn_png_get_IHDR (png_ptr, info_ptr, &width, &height, &bit_depth, &color_type,
6010 &interlace_type, NULL, NULL);
6012 if (!check_image_size (f, width, height))
6013 goto error;
6015 /* If image contains simply transparency data, we prefer to
6016 construct a clipping mask. */
6017 if (fn_png_get_valid (png_ptr, info_ptr, PNG_INFO_tRNS))
6018 transparent_p = 1;
6019 else
6020 transparent_p = 0;
6022 /* This function is easier to write if we only have to handle
6023 one data format: RGB or RGBA with 8 bits per channel. Let's
6024 transform other formats into that format. */
6026 /* Strip more than 8 bits per channel. */
6027 if (bit_depth == 16)
6028 fn_png_set_strip_16 (png_ptr);
6030 /* Expand data to 24 bit RGB, or 8 bit grayscale, with alpha channel
6031 if available. */
6032 fn_png_set_expand (png_ptr);
6034 /* Convert grayscale images to RGB. */
6035 if (color_type == PNG_COLOR_TYPE_GRAY
6036 || color_type == PNG_COLOR_TYPE_GRAY_ALPHA)
6037 fn_png_set_gray_to_rgb (png_ptr);
6039 screen_gamma = (f->gamma ? 1 / f->gamma / 0.45455 : 2.2);
6041 #if 0 /* Avoid double gamma correction for PNG images. */
6042 { /* Tell the PNG lib to handle gamma correction for us. */
6043 int intent;
6044 double image_gamma;
6045 #if defined(PNG_READ_sRGB_SUPPORTED) || defined(PNG_WRITE_sRGB_SUPPORTED)
6046 if (png_get_sRGB (png_ptr, info_ptr, &intent))
6047 /* The libpng documentation says this is right in this case. */
6048 png_set_gamma (png_ptr, screen_gamma, 0.45455);
6049 else
6050 #endif
6051 if (png_get_gAMA (png_ptr, info_ptr, &image_gamma))
6052 /* Image contains gamma information. */
6053 png_set_gamma (png_ptr, screen_gamma, image_gamma);
6054 else
6055 /* Use the standard default for the image gamma. */
6056 png_set_gamma (png_ptr, screen_gamma, 0.45455);
6058 #endif /* if 0 */
6060 /* Handle alpha channel by combining the image with a background
6061 color. Do this only if a real alpha channel is supplied. For
6062 simple transparency, we prefer a clipping mask. */
6063 if (!transparent_p)
6065 png_color_16 *image_bg;
6066 Lisp_Object specified_bg
6067 = image_spec_value (img->spec, QCbackground, NULL);
6069 if (STRINGP (specified_bg))
6070 /* The user specified `:background', use that. */
6072 /* W32 version incorrectly used COLORREF here!! ++kfs */
6073 XColor color;
6074 if (x_defined_color (f, SDATA (specified_bg), &color, 0))
6076 png_color_16 user_bg;
6078 bzero (&user_bg, sizeof user_bg);
6079 user_bg.red = color.red >> 8;
6080 user_bg.green = color.green >> 8;
6081 user_bg.blue = color.blue >> 8;
6083 fn_png_set_background (png_ptr, &user_bg,
6084 PNG_BACKGROUND_GAMMA_SCREEN, 0, 1.0);
6087 else if (fn_png_get_bKGD (png_ptr, info_ptr, &image_bg))
6088 /* Image contains a background color with which to
6089 combine the image. */
6090 fn_png_set_background (png_ptr, image_bg,
6091 PNG_BACKGROUND_GAMMA_FILE, 1, 1.0);
6092 else
6094 /* Image does not contain a background color with which
6095 to combine the image data via an alpha channel. Use
6096 the frame's background instead. */
6097 #ifdef HAVE_X_WINDOWS
6098 XColor color;
6099 png_color_16 frame_background;
6101 color.pixel = FRAME_BACKGROUND_PIXEL (f);
6102 x_query_color (f, &color);
6104 bzero (&frame_background, sizeof frame_background);
6105 frame_background.red = color.red >> 8;
6106 frame_background.green = color.green >> 8;
6107 frame_background.blue = color.blue >> 8;
6108 #endif /* HAVE_X_WINDOWS */
6110 #ifdef HAVE_NTGUI
6111 COLORREF color;
6112 png_color_16 frame_background;
6113 color = FRAME_BACKGROUND_PIXEL (f);
6114 #if 0 /* W32 TODO : Colormap support. */
6115 x_query_color (f, &color);
6116 #endif
6117 bzero (&frame_background, sizeof frame_background);
6118 frame_background.red = GetRValue (color);
6119 frame_background.green = GetGValue (color);
6120 frame_background.blue = GetBValue (color);
6121 #endif /* HAVE_NTGUI */
6123 #ifdef MAC_OS
6124 unsigned long color;
6125 png_color_16 frame_background;
6126 color = FRAME_BACKGROUND_PIXEL (f);
6127 #if 0 /* MAC/W32 TODO : Colormap support. */
6128 x_query_color (f, &color);
6129 #endif
6130 bzero (&frame_background, sizeof frame_background);
6131 frame_background.red = RED_FROM_ULONG (color);
6132 frame_background.green = GREEN_FROM_ULONG (color);
6133 frame_background.blue = BLUE_FROM_ULONG (color);
6134 #endif /* MAC_OS */
6136 fn_png_set_background (png_ptr, &frame_background,
6137 PNG_BACKGROUND_GAMMA_SCREEN, 0, 1.0);
6141 /* Update info structure. */
6142 fn_png_read_update_info (png_ptr, info_ptr);
6144 /* Get number of channels. Valid values are 1 for grayscale images
6145 and images with a palette, 2 for grayscale images with transparency
6146 information (alpha channel), 3 for RGB images, and 4 for RGB
6147 images with alpha channel, i.e. RGBA. If conversions above were
6148 sufficient we should only have 3 or 4 channels here. */
6149 channels = fn_png_get_channels (png_ptr, info_ptr);
6150 xassert (channels == 3 || channels == 4);
6152 /* Number of bytes needed for one row of the image. */
6153 row_bytes = fn_png_get_rowbytes (png_ptr, info_ptr);
6155 /* Allocate memory for the image. */
6156 pixels = (png_byte *) xmalloc (row_bytes * height * sizeof *pixels);
6157 rows = (png_byte **) xmalloc (height * sizeof *rows);
6158 for (i = 0; i < height; ++i)
6159 rows[i] = pixels + i * row_bytes;
6161 /* Read the entire image. */
6162 fn_png_read_image (png_ptr, rows);
6163 fn_png_read_end (png_ptr, info_ptr);
6164 if (fp)
6166 fclose (fp);
6167 fp = NULL;
6170 /* Create the X image and pixmap. */
6171 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg,
6172 &img->pixmap))
6173 goto error;
6175 /* Create an image and pixmap serving as mask if the PNG image
6176 contains an alpha channel. */
6177 if (channels == 4
6178 && !transparent_p
6179 && !x_create_x_image_and_pixmap (f, width, height, 1,
6180 &mask_img, &img->mask))
6182 x_destroy_x_image (ximg);
6183 Free_Pixmap (FRAME_X_DISPLAY (f), img->pixmap);
6184 img->pixmap = NO_PIXMAP;
6185 goto error;
6188 /* Fill the X image and mask from PNG data. */
6189 init_color_table ();
6191 for (y = 0; y < height; ++y)
6193 png_byte *p = rows[y];
6195 for (x = 0; x < width; ++x)
6197 unsigned r, g, b;
6199 r = *p++ << 8;
6200 g = *p++ << 8;
6201 b = *p++ << 8;
6202 XPutPixel (ximg, x, y, lookup_rgb_color (f, r, g, b));
6203 /* An alpha channel, aka mask channel, associates variable
6204 transparency with an image. Where other image formats
6205 support binary transparency---fully transparent or fully
6206 opaque---PNG allows up to 254 levels of partial transparency.
6207 The PNG library implements partial transparency by combining
6208 the image with a specified background color.
6210 I'm not sure how to handle this here nicely: because the
6211 background on which the image is displayed may change, for
6212 real alpha channel support, it would be necessary to create
6213 a new image for each possible background.
6215 What I'm doing now is that a mask is created if we have
6216 boolean transparency information. Otherwise I'm using
6217 the frame's background color to combine the image with. */
6219 if (channels == 4)
6221 if (mask_img)
6222 XPutPixel (mask_img, x, y, *p > 0 ? PIX_MASK_DRAW : PIX_MASK_RETAIN);
6223 ++p;
6228 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
6229 /* Set IMG's background color from the PNG image, unless the user
6230 overrode it. */
6232 png_color_16 *bg;
6233 if (fn_png_get_bKGD (png_ptr, info_ptr, &bg))
6235 img->background = lookup_rgb_color (f, bg->red, bg->green, bg->blue);
6236 img->background_valid = 1;
6240 #ifdef COLOR_TABLE_SUPPORT
6241 /* Remember colors allocated for this image. */
6242 img->colors = colors_in_color_table (&img->ncolors);
6243 free_color_table ();
6244 #endif /* COLOR_TABLE_SUPPORT */
6246 /* Clean up. */
6247 fn_png_destroy_read_struct (&png_ptr, &info_ptr, &end_info);
6248 xfree (rows);
6249 xfree (pixels);
6251 img->width = width;
6252 img->height = height;
6254 /* Maybe fill in the background field while we have ximg handy.
6255 Casting avoids a GCC warning. */
6256 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
6258 /* Put the image into the pixmap, then free the X image and its buffer. */
6259 x_put_x_image (f, ximg, img->pixmap, width, height);
6260 x_destroy_x_image (ximg);
6262 /* Same for the mask. */
6263 if (mask_img)
6265 /* Fill in the background_transparent field while we have the
6266 mask handy. Casting avoids a GCC warning. */
6267 image_background_transparent (img, f, (XImagePtr_or_DC)mask_img);
6269 x_put_x_image (f, mask_img, img->mask, img->width, img->height);
6270 x_destroy_x_image (mask_img);
6273 UNGCPRO;
6274 return 1;
6277 #else /* HAVE_PNG */
6279 #ifdef MAC_OS
6280 static int
6281 png_load (f, img)
6282 struct frame *f;
6283 struct image *img;
6285 #ifdef MAC_OSX
6286 if (MyCGImageCreateWithPNGDataProvider)
6287 return image_load_quartz2d (f, img, 1);
6288 else
6289 #endif
6290 return image_load_quicktime (f, img, kQTFileTypePNG);
6292 #endif /* MAC_OS */
6294 #endif /* !HAVE_PNG */
6298 /***********************************************************************
6299 JPEG
6300 ***********************************************************************/
6302 #if defined (HAVE_JPEG) || defined (MAC_OS)
6304 static int jpeg_image_p P_ ((Lisp_Object object));
6305 static int jpeg_load P_ ((struct frame *f, struct image *img));
6307 /* The symbol `jpeg' identifying images of this type. */
6309 Lisp_Object Qjpeg;
6311 /* Indices of image specification fields in gs_format, below. */
6313 enum jpeg_keyword_index
6315 JPEG_TYPE,
6316 JPEG_DATA,
6317 JPEG_FILE,
6318 JPEG_ASCENT,
6319 JPEG_MARGIN,
6320 JPEG_RELIEF,
6321 JPEG_ALGORITHM,
6322 JPEG_HEURISTIC_MASK,
6323 JPEG_MASK,
6324 JPEG_BACKGROUND,
6325 JPEG_LAST
6328 /* Vector of image_keyword structures describing the format
6329 of valid user-defined image specifications. */
6331 static struct image_keyword jpeg_format[JPEG_LAST] =
6333 {":type", IMAGE_SYMBOL_VALUE, 1},
6334 {":data", IMAGE_STRING_VALUE, 0},
6335 {":file", IMAGE_STRING_VALUE, 0},
6336 {":ascent", IMAGE_ASCENT_VALUE, 0},
6337 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
6338 {":relief", IMAGE_INTEGER_VALUE, 0},
6339 {":conversions", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6340 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6341 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6342 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
6345 /* Structure describing the image type `jpeg'. */
6347 static struct image_type jpeg_type =
6349 &Qjpeg,
6350 jpeg_image_p,
6351 jpeg_load,
6352 x_clear_image,
6353 NULL
6356 /* Return non-zero if OBJECT is a valid JPEG image specification. */
6358 static int
6359 jpeg_image_p (object)
6360 Lisp_Object object;
6362 struct image_keyword fmt[JPEG_LAST];
6364 bcopy (jpeg_format, fmt, sizeof fmt);
6366 if (!parse_image_spec (object, fmt, JPEG_LAST, Qjpeg))
6367 return 0;
6369 /* Must specify either the :data or :file keyword. */
6370 return fmt[JPEG_FILE].count + fmt[JPEG_DATA].count == 1;
6373 #endif /* HAVE_JPEG || MAC_OS */
6375 #ifdef HAVE_JPEG
6377 /* Work around a warning about HAVE_STDLIB_H being redefined in
6378 jconfig.h. */
6379 #ifdef HAVE_STDLIB_H
6380 #define HAVE_STDLIB_H_1
6381 #undef HAVE_STDLIB_H
6382 #endif /* HAVE_STLIB_H */
6384 #if defined (HAVE_NTGUI) && !defined (__WIN32__)
6385 /* In older releases of the jpeg library, jpeglib.h will define boolean
6386 differently depending on __WIN32__, so make sure it is defined. */
6387 #define __WIN32__ 1
6388 #endif
6390 #include <jpeglib.h>
6391 #include <jerror.h>
6392 #include <setjmp.h>
6394 #ifdef HAVE_STLIB_H_1
6395 #define HAVE_STDLIB_H 1
6396 #endif
6398 #ifdef HAVE_NTGUI
6400 /* JPEG library details. */
6401 DEF_IMGLIB_FN (jpeg_CreateDecompress);
6402 DEF_IMGLIB_FN (jpeg_start_decompress);
6403 DEF_IMGLIB_FN (jpeg_finish_decompress);
6404 DEF_IMGLIB_FN (jpeg_destroy_decompress);
6405 DEF_IMGLIB_FN (jpeg_read_header);
6406 DEF_IMGLIB_FN (jpeg_read_scanlines);
6407 DEF_IMGLIB_FN (jpeg_std_error);
6408 DEF_IMGLIB_FN (jpeg_resync_to_restart);
6410 static int
6411 init_jpeg_functions (Lisp_Object libraries)
6413 HMODULE library;
6415 if (!(library = w32_delayed_load (libraries, Qjpeg)))
6416 return 0;
6418 LOAD_IMGLIB_FN (library, jpeg_finish_decompress);
6419 LOAD_IMGLIB_FN (library, jpeg_read_scanlines);
6420 LOAD_IMGLIB_FN (library, jpeg_start_decompress);
6421 LOAD_IMGLIB_FN (library, jpeg_read_header);
6422 LOAD_IMGLIB_FN (library, jpeg_CreateDecompress);
6423 LOAD_IMGLIB_FN (library, jpeg_destroy_decompress);
6424 LOAD_IMGLIB_FN (library, jpeg_std_error);
6425 LOAD_IMGLIB_FN (library, jpeg_resync_to_restart);
6426 return 1;
6429 /* Wrapper since we can't directly assign the function pointer
6430 to another function pointer that was declared more completely easily. */
6431 static boolean
6432 jpeg_resync_to_restart_wrapper(cinfo, desired)
6433 j_decompress_ptr cinfo;
6434 int desired;
6436 return fn_jpeg_resync_to_restart (cinfo, desired);
6439 #else
6441 #define fn_jpeg_CreateDecompress(a,b,c) jpeg_create_decompress(a)
6442 #define fn_jpeg_start_decompress jpeg_start_decompress
6443 #define fn_jpeg_finish_decompress jpeg_finish_decompress
6444 #define fn_jpeg_destroy_decompress jpeg_destroy_decompress
6445 #define fn_jpeg_read_header jpeg_read_header
6446 #define fn_jpeg_read_scanlines jpeg_read_scanlines
6447 #define fn_jpeg_std_error jpeg_std_error
6448 #define jpeg_resync_to_restart_wrapper jpeg_resync_to_restart
6450 #endif /* HAVE_NTGUI */
6452 struct my_jpeg_error_mgr
6454 struct jpeg_error_mgr pub;
6455 jmp_buf setjmp_buffer;
6459 static void
6460 my_error_exit (cinfo)
6461 j_common_ptr cinfo;
6463 struct my_jpeg_error_mgr *mgr = (struct my_jpeg_error_mgr *) cinfo->err;
6464 longjmp (mgr->setjmp_buffer, 1);
6468 /* Init source method for JPEG data source manager. Called by
6469 jpeg_read_header() before any data is actually read. See
6470 libjpeg.doc from the JPEG lib distribution. */
6472 static void
6473 our_common_init_source (cinfo)
6474 j_decompress_ptr cinfo;
6479 /* Method to terminate data source. Called by
6480 jpeg_finish_decompress() after all data has been processed. */
6482 static void
6483 our_common_term_source (cinfo)
6484 j_decompress_ptr cinfo;
6489 /* Fill input buffer method for JPEG data source manager. Called
6490 whenever more data is needed. We read the whole image in one step,
6491 so this only adds a fake end of input marker at the end. */
6493 static boolean
6494 our_memory_fill_input_buffer (cinfo)
6495 j_decompress_ptr cinfo;
6497 /* Insert a fake EOI marker. */
6498 struct jpeg_source_mgr *src = cinfo->src;
6499 static JOCTET buffer[2];
6501 buffer[0] = (JOCTET) 0xFF;
6502 buffer[1] = (JOCTET) JPEG_EOI;
6504 src->next_input_byte = buffer;
6505 src->bytes_in_buffer = 2;
6506 return 1;
6510 /* Method to skip over NUM_BYTES bytes in the image data. CINFO->src
6511 is the JPEG data source manager. */
6513 static void
6514 our_memory_skip_input_data (cinfo, num_bytes)
6515 j_decompress_ptr cinfo;
6516 long num_bytes;
6518 struct jpeg_source_mgr *src = (struct jpeg_source_mgr *) cinfo->src;
6520 if (src)
6522 if (num_bytes > src->bytes_in_buffer)
6523 ERREXIT (cinfo, JERR_INPUT_EOF);
6525 src->bytes_in_buffer -= num_bytes;
6526 src->next_input_byte += num_bytes;
6531 /* Set up the JPEG lib for reading an image from DATA which contains
6532 LEN bytes. CINFO is the decompression info structure created for
6533 reading the image. */
6535 static void
6536 jpeg_memory_src (cinfo, data, len)
6537 j_decompress_ptr cinfo;
6538 JOCTET *data;
6539 unsigned int len;
6541 struct jpeg_source_mgr *src;
6543 if (cinfo->src == NULL)
6545 /* First time for this JPEG object? */
6546 cinfo->src = (struct jpeg_source_mgr *)
6547 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
6548 sizeof (struct jpeg_source_mgr));
6549 src = (struct jpeg_source_mgr *) cinfo->src;
6550 src->next_input_byte = data;
6553 src = (struct jpeg_source_mgr *) cinfo->src;
6554 src->init_source = our_common_init_source;
6555 src->fill_input_buffer = our_memory_fill_input_buffer;
6556 src->skip_input_data = our_memory_skip_input_data;
6557 src->resync_to_restart = jpeg_resync_to_restart_wrapper; /* Use default method. */
6558 src->term_source = our_common_term_source;
6559 src->bytes_in_buffer = len;
6560 src->next_input_byte = data;
6564 struct jpeg_stdio_mgr
6566 struct jpeg_source_mgr mgr;
6567 boolean finished;
6568 FILE *file;
6569 JOCTET *buffer;
6573 /* Size of buffer to read JPEG from file.
6574 Not too big, as we want to use alloc_small. */
6575 #define JPEG_STDIO_BUFFER_SIZE 8192
6578 /* Fill input buffer method for JPEG data source manager. Called
6579 whenever more data is needed. The data is read from a FILE *. */
6581 static boolean
6582 our_stdio_fill_input_buffer (cinfo)
6583 j_decompress_ptr cinfo;
6585 struct jpeg_stdio_mgr *src;
6587 src = (struct jpeg_stdio_mgr *) cinfo->src;
6588 if (!src->finished)
6590 size_t bytes;
6592 bytes = fread (src->buffer, 1, JPEG_STDIO_BUFFER_SIZE, src->file);
6593 if (bytes > 0)
6594 src->mgr.bytes_in_buffer = bytes;
6595 else
6597 WARNMS (cinfo, JWRN_JPEG_EOF);
6598 src->finished = 1;
6599 src->buffer[0] = (JOCTET) 0xFF;
6600 src->buffer[1] = (JOCTET) JPEG_EOI;
6601 src->mgr.bytes_in_buffer = 2;
6603 src->mgr.next_input_byte = src->buffer;
6606 return 1;
6610 /* Method to skip over NUM_BYTES bytes in the image data. CINFO->src
6611 is the JPEG data source manager. */
6613 static void
6614 our_stdio_skip_input_data (cinfo, num_bytes)
6615 j_decompress_ptr cinfo;
6616 long num_bytes;
6618 struct jpeg_stdio_mgr *src;
6619 src = (struct jpeg_stdio_mgr *) cinfo->src;
6621 while (num_bytes > 0 && !src->finished)
6623 if (num_bytes <= src->mgr.bytes_in_buffer)
6625 src->mgr.bytes_in_buffer -= num_bytes;
6626 src->mgr.next_input_byte += num_bytes;
6627 break;
6629 else
6631 num_bytes -= src->mgr.bytes_in_buffer;
6632 src->mgr.bytes_in_buffer = 0;
6633 src->mgr.next_input_byte = NULL;
6635 our_stdio_fill_input_buffer (cinfo);
6641 /* Set up the JPEG lib for reading an image from a FILE *.
6642 CINFO is the decompression info structure created for
6643 reading the image. */
6645 static void
6646 jpeg_file_src (cinfo, fp)
6647 j_decompress_ptr cinfo;
6648 FILE *fp;
6650 struct jpeg_stdio_mgr *src;
6652 if (cinfo->src != NULL)
6653 src = (struct jpeg_stdio_mgr *) cinfo->src;
6654 else
6656 /* First time for this JPEG object? */
6657 cinfo->src = (struct jpeg_source_mgr *)
6658 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
6659 sizeof (struct jpeg_stdio_mgr));
6660 src = (struct jpeg_stdio_mgr *) cinfo->src;
6661 src->buffer = (JOCTET *)
6662 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
6663 JPEG_STDIO_BUFFER_SIZE);
6666 src->file = fp;
6667 src->finished = 0;
6668 src->mgr.init_source = our_common_init_source;
6669 src->mgr.fill_input_buffer = our_stdio_fill_input_buffer;
6670 src->mgr.skip_input_data = our_stdio_skip_input_data;
6671 src->mgr.resync_to_restart = jpeg_resync_to_restart_wrapper; /* Use default method. */
6672 src->mgr.term_source = our_common_term_source;
6673 src->mgr.bytes_in_buffer = 0;
6674 src->mgr.next_input_byte = NULL;
6678 /* Load image IMG for use on frame F. Patterned after example.c
6679 from the JPEG lib. */
6681 static int
6682 jpeg_load (f, img)
6683 struct frame *f;
6684 struct image *img;
6686 struct jpeg_decompress_struct cinfo;
6687 struct my_jpeg_error_mgr mgr;
6688 Lisp_Object file, specified_file;
6689 Lisp_Object specified_data;
6690 FILE * volatile fp = NULL;
6691 JSAMPARRAY buffer;
6692 int row_stride, x, y;
6693 XImagePtr ximg = NULL;
6694 int rc;
6695 unsigned long *colors;
6696 int width, height;
6697 struct gcpro gcpro1;
6699 /* Open the JPEG file. */
6700 specified_file = image_spec_value (img->spec, QCfile, NULL);
6701 specified_data = image_spec_value (img->spec, QCdata, NULL);
6702 file = Qnil;
6703 GCPRO1 (file);
6705 if (NILP (specified_data))
6707 file = x_find_image_file (specified_file);
6708 if (!STRINGP (file))
6710 image_error ("Cannot find image file `%s'", specified_file, Qnil);
6711 UNGCPRO;
6712 return 0;
6715 fp = fopen (SDATA (file), "rb");
6716 if (fp == NULL)
6718 image_error ("Cannot open `%s'", file, Qnil);
6719 UNGCPRO;
6720 return 0;
6724 /* Customize libjpeg's error handling to call my_error_exit when an
6725 error is detected. This function will perform a longjmp.
6726 Casting return value avoids a GCC warning on W32. */
6727 cinfo.err = (struct jpeg_error_mgr *)fn_jpeg_std_error (&mgr.pub);
6728 mgr.pub.error_exit = my_error_exit;
6730 if ((rc = setjmp (mgr.setjmp_buffer)) != 0)
6732 if (rc == 1)
6734 /* Called from my_error_exit. Display a JPEG error. */
6735 char buffer[JMSG_LENGTH_MAX];
6736 cinfo.err->format_message ((j_common_ptr) &cinfo, buffer);
6737 image_error ("Error reading JPEG image `%s': %s", img->spec,
6738 build_string (buffer));
6741 /* Close the input file and destroy the JPEG object. */
6742 if (fp)
6743 fclose ((FILE *) fp);
6744 fn_jpeg_destroy_decompress (&cinfo);
6746 /* If we already have an XImage, free that. */
6747 x_destroy_x_image (ximg);
6749 /* Free pixmap and colors. */
6750 x_clear_image (f, img);
6752 UNGCPRO;
6753 return 0;
6756 /* Create the JPEG decompression object. Let it read from fp.
6757 Read the JPEG image header. */
6758 fn_jpeg_CreateDecompress (&cinfo, JPEG_LIB_VERSION, sizeof (cinfo));
6760 if (NILP (specified_data))
6761 jpeg_file_src (&cinfo, (FILE *) fp);
6762 else
6763 jpeg_memory_src (&cinfo, SDATA (specified_data),
6764 SBYTES (specified_data));
6766 fn_jpeg_read_header (&cinfo, 1);
6768 /* Customize decompression so that color quantization will be used.
6769 Start decompression. */
6770 cinfo.quantize_colors = 1;
6771 fn_jpeg_start_decompress (&cinfo);
6772 width = img->width = cinfo.output_width;
6773 height = img->height = cinfo.output_height;
6775 if (!check_image_size (f, width, height))
6777 image_error ("Invalid image size", Qnil, Qnil);
6778 longjmp (mgr.setjmp_buffer, 2);
6781 /* Create X image and pixmap. */
6782 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
6783 longjmp (mgr.setjmp_buffer, 2);
6785 /* Allocate colors. When color quantization is used,
6786 cinfo.actual_number_of_colors has been set with the number of
6787 colors generated, and cinfo.colormap is a two-dimensional array
6788 of color indices in the range 0..cinfo.actual_number_of_colors.
6789 No more than 255 colors will be generated. */
6791 int i, ir, ig, ib;
6793 if (cinfo.out_color_components > 2)
6794 ir = 0, ig = 1, ib = 2;
6795 else if (cinfo.out_color_components > 1)
6796 ir = 0, ig = 1, ib = 0;
6797 else
6798 ir = 0, ig = 0, ib = 0;
6800 /* Use the color table mechanism because it handles colors that
6801 cannot be allocated nicely. Such colors will be replaced with
6802 a default color, and we don't have to care about which colors
6803 can be freed safely, and which can't. */
6804 init_color_table ();
6805 colors = (unsigned long *) alloca (cinfo.actual_number_of_colors
6806 * sizeof *colors);
6808 for (i = 0; i < cinfo.actual_number_of_colors; ++i)
6810 /* Multiply RGB values with 255 because X expects RGB values
6811 in the range 0..0xffff. */
6812 int r = cinfo.colormap[ir][i] << 8;
6813 int g = cinfo.colormap[ig][i] << 8;
6814 int b = cinfo.colormap[ib][i] << 8;
6815 colors[i] = lookup_rgb_color (f, r, g, b);
6818 #ifdef COLOR_TABLE_SUPPORT
6819 /* Remember those colors actually allocated. */
6820 img->colors = colors_in_color_table (&img->ncolors);
6821 free_color_table ();
6822 #endif /* COLOR_TABLE_SUPPORT */
6825 /* Read pixels. */
6826 row_stride = width * cinfo.output_components;
6827 buffer = cinfo.mem->alloc_sarray ((j_common_ptr) &cinfo, JPOOL_IMAGE,
6828 row_stride, 1);
6829 for (y = 0; y < height; ++y)
6831 fn_jpeg_read_scanlines (&cinfo, buffer, 1);
6832 for (x = 0; x < cinfo.output_width; ++x)
6833 XPutPixel (ximg, x, y, colors[buffer[0][x]]);
6836 /* Clean up. */
6837 fn_jpeg_finish_decompress (&cinfo);
6838 fn_jpeg_destroy_decompress (&cinfo);
6839 if (fp)
6840 fclose ((FILE *) fp);
6842 /* Maybe fill in the background field while we have ximg handy. */
6843 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
6844 /* Casting avoids a GCC warning. */
6845 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
6847 /* Put the image into the pixmap. */
6848 x_put_x_image (f, ximg, img->pixmap, width, height);
6849 x_destroy_x_image (ximg);
6850 UNGCPRO;
6851 return 1;
6854 #else /* HAVE_JPEG */
6856 #ifdef MAC_OS
6857 static int
6858 jpeg_load (f, img)
6859 struct frame *f;
6860 struct image *img;
6862 #ifdef MAC_OSX
6863 return image_load_quartz2d (f, img, 0);
6864 #else
6865 return image_load_quicktime (f, img, kQTFileTypeJPEG);
6866 #endif
6868 #endif /* MAC_OS */
6870 #endif /* !HAVE_JPEG */
6874 /***********************************************************************
6875 TIFF
6876 ***********************************************************************/
6878 #if defined (HAVE_TIFF) || defined (MAC_OS)
6880 static int tiff_image_p P_ ((Lisp_Object object));
6881 static int tiff_load P_ ((struct frame *f, struct image *img));
6883 /* The symbol `tiff' identifying images of this type. */
6885 Lisp_Object Qtiff;
6887 /* Indices of image specification fields in tiff_format, below. */
6889 enum tiff_keyword_index
6891 TIFF_TYPE,
6892 TIFF_DATA,
6893 TIFF_FILE,
6894 TIFF_ASCENT,
6895 TIFF_MARGIN,
6896 TIFF_RELIEF,
6897 TIFF_ALGORITHM,
6898 TIFF_HEURISTIC_MASK,
6899 TIFF_MASK,
6900 TIFF_BACKGROUND,
6901 TIFF_LAST
6904 /* Vector of image_keyword structures describing the format
6905 of valid user-defined image specifications. */
6907 static struct image_keyword tiff_format[TIFF_LAST] =
6909 {":type", IMAGE_SYMBOL_VALUE, 1},
6910 {":data", IMAGE_STRING_VALUE, 0},
6911 {":file", IMAGE_STRING_VALUE, 0},
6912 {":ascent", IMAGE_ASCENT_VALUE, 0},
6913 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
6914 {":relief", IMAGE_INTEGER_VALUE, 0},
6915 {":conversions", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6916 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6917 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6918 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
6921 /* Structure describing the image type `tiff'. */
6923 static struct image_type tiff_type =
6925 &Qtiff,
6926 tiff_image_p,
6927 tiff_load,
6928 x_clear_image,
6929 NULL
6932 /* Return non-zero if OBJECT is a valid TIFF image specification. */
6934 static int
6935 tiff_image_p (object)
6936 Lisp_Object object;
6938 struct image_keyword fmt[TIFF_LAST];
6939 bcopy (tiff_format, fmt, sizeof fmt);
6941 if (!parse_image_spec (object, fmt, TIFF_LAST, Qtiff))
6942 return 0;
6944 /* Must specify either the :data or :file keyword. */
6945 return fmt[TIFF_FILE].count + fmt[TIFF_DATA].count == 1;
6948 #endif /* HAVE_TIFF || MAC_OS */
6950 #ifdef HAVE_TIFF
6952 #include <tiffio.h>
6954 #ifdef HAVE_NTGUI
6956 /* TIFF library details. */
6957 DEF_IMGLIB_FN (TIFFSetErrorHandler);
6958 DEF_IMGLIB_FN (TIFFSetWarningHandler);
6959 DEF_IMGLIB_FN (TIFFOpen);
6960 DEF_IMGLIB_FN (TIFFClientOpen);
6961 DEF_IMGLIB_FN (TIFFGetField);
6962 DEF_IMGLIB_FN (TIFFReadRGBAImage);
6963 DEF_IMGLIB_FN (TIFFClose);
6965 static int
6966 init_tiff_functions (Lisp_Object libraries)
6968 HMODULE library;
6970 if (!(library = w32_delayed_load (libraries, Qtiff)))
6971 return 0;
6973 LOAD_IMGLIB_FN (library, TIFFSetErrorHandler);
6974 LOAD_IMGLIB_FN (library, TIFFSetWarningHandler);
6975 LOAD_IMGLIB_FN (library, TIFFOpen);
6976 LOAD_IMGLIB_FN (library, TIFFClientOpen);
6977 LOAD_IMGLIB_FN (library, TIFFGetField);
6978 LOAD_IMGLIB_FN (library, TIFFReadRGBAImage);
6979 LOAD_IMGLIB_FN (library, TIFFClose);
6980 return 1;
6983 #else
6985 #define fn_TIFFSetErrorHandler TIFFSetErrorHandler
6986 #define fn_TIFFSetWarningHandler TIFFSetWarningHandler
6987 #define fn_TIFFOpen TIFFOpen
6988 #define fn_TIFFClientOpen TIFFClientOpen
6989 #define fn_TIFFGetField TIFFGetField
6990 #define fn_TIFFReadRGBAImage TIFFReadRGBAImage
6991 #define fn_TIFFClose TIFFClose
6993 #endif /* HAVE_NTGUI */
6996 /* Reading from a memory buffer for TIFF images Based on the PNG
6997 memory source, but we have to provide a lot of extra functions.
6998 Blah.
7000 We really only need to implement read and seek, but I am not
7001 convinced that the TIFF library is smart enough not to destroy
7002 itself if we only hand it the function pointers we need to
7003 override. */
7005 typedef struct
7007 unsigned char *bytes;
7008 size_t len;
7009 int index;
7011 tiff_memory_source;
7013 static size_t
7014 tiff_read_from_memory (data, buf, size)
7015 thandle_t data;
7016 tdata_t buf;
7017 tsize_t size;
7019 tiff_memory_source *src = (tiff_memory_source *) data;
7021 if (size > src->len - src->index)
7022 return (size_t) -1;
7023 bcopy (src->bytes + src->index, buf, size);
7024 src->index += size;
7025 return size;
7028 static size_t
7029 tiff_write_from_memory (data, buf, size)
7030 thandle_t data;
7031 tdata_t buf;
7032 tsize_t size;
7034 return (size_t) -1;
7037 static toff_t
7038 tiff_seek_in_memory (data, off, whence)
7039 thandle_t data;
7040 toff_t off;
7041 int whence;
7043 tiff_memory_source *src = (tiff_memory_source *) data;
7044 int idx;
7046 switch (whence)
7048 case SEEK_SET: /* Go from beginning of source. */
7049 idx = off;
7050 break;
7052 case SEEK_END: /* Go from end of source. */
7053 idx = src->len + off;
7054 break;
7056 case SEEK_CUR: /* Go from current position. */
7057 idx = src->index + off;
7058 break;
7060 default: /* Invalid `whence'. */
7061 return -1;
7064 if (idx > src->len || idx < 0)
7065 return -1;
7067 src->index = idx;
7068 return src->index;
7071 static int
7072 tiff_close_memory (data)
7073 thandle_t data;
7075 /* NOOP */
7076 return 0;
7079 static int
7080 tiff_mmap_memory (data, pbase, psize)
7081 thandle_t data;
7082 tdata_t *pbase;
7083 toff_t *psize;
7085 /* It is already _IN_ memory. */
7086 return 0;
7089 static void
7090 tiff_unmap_memory (data, base, size)
7091 thandle_t data;
7092 tdata_t base;
7093 toff_t size;
7095 /* We don't need to do this. */
7098 static toff_t
7099 tiff_size_of_memory (data)
7100 thandle_t data;
7102 return ((tiff_memory_source *) data)->len;
7106 static void
7107 tiff_error_handler (title, format, ap)
7108 const char *title, *format;
7109 va_list ap;
7111 char buf[512];
7112 int len;
7114 len = sprintf (buf, "TIFF error: %s ", title);
7115 vsprintf (buf + len, format, ap);
7116 add_to_log (buf, Qnil, Qnil);
7120 static void
7121 tiff_warning_handler (title, format, ap)
7122 const char *title, *format;
7123 va_list ap;
7125 char buf[512];
7126 int len;
7128 len = sprintf (buf, "TIFF warning: %s ", title);
7129 vsprintf (buf + len, format, ap);
7130 add_to_log (buf, Qnil, Qnil);
7134 /* Load TIFF image IMG for use on frame F. Value is non-zero if
7135 successful. */
7137 static int
7138 tiff_load (f, img)
7139 struct frame *f;
7140 struct image *img;
7142 Lisp_Object file, specified_file;
7143 Lisp_Object specified_data;
7144 TIFF *tiff;
7145 int width, height, x, y;
7146 uint32 *buf;
7147 int rc;
7148 XImagePtr ximg;
7149 struct gcpro gcpro1;
7150 tiff_memory_source memsrc;
7152 specified_file = image_spec_value (img->spec, QCfile, NULL);
7153 specified_data = image_spec_value (img->spec, QCdata, NULL);
7154 file = Qnil;
7155 GCPRO1 (file);
7157 fn_TIFFSetErrorHandler (tiff_error_handler);
7158 fn_TIFFSetWarningHandler (tiff_warning_handler);
7160 if (NILP (specified_data))
7162 /* Read from a file */
7163 file = x_find_image_file (specified_file);
7164 if (!STRINGP (file))
7166 image_error ("Cannot find image file `%s'", specified_file, Qnil);
7167 UNGCPRO;
7168 return 0;
7171 /* Try to open the image file. Casting return value avoids a
7172 GCC warning on W32. */
7173 tiff = (TIFF *)fn_TIFFOpen (SDATA (file), "r");
7174 if (tiff == NULL)
7176 image_error ("Cannot open `%s'", file, Qnil);
7177 UNGCPRO;
7178 return 0;
7181 else
7183 /* Memory source! */
7184 memsrc.bytes = SDATA (specified_data);
7185 memsrc.len = SBYTES (specified_data);
7186 memsrc.index = 0;
7188 /* Casting return value avoids a GCC warning on W32. */
7189 tiff = (TIFF *)fn_TIFFClientOpen ("memory_source", "r", &memsrc,
7190 (TIFFReadWriteProc) tiff_read_from_memory,
7191 (TIFFReadWriteProc) tiff_write_from_memory,
7192 tiff_seek_in_memory,
7193 tiff_close_memory,
7194 tiff_size_of_memory,
7195 tiff_mmap_memory,
7196 tiff_unmap_memory);
7198 if (!tiff)
7200 image_error ("Cannot open memory source for `%s'", img->spec, Qnil);
7201 UNGCPRO;
7202 return 0;
7206 /* Get width and height of the image, and allocate a raster buffer
7207 of width x height 32-bit values. */
7208 fn_TIFFGetField (tiff, TIFFTAG_IMAGEWIDTH, &width);
7209 fn_TIFFGetField (tiff, TIFFTAG_IMAGELENGTH, &height);
7211 if (!check_image_size (f, width, height))
7213 image_error ("Invalid image size", Qnil, Qnil);
7214 UNGCPRO;
7215 return 0;
7218 buf = (uint32 *) xmalloc (width * height * sizeof *buf);
7220 rc = fn_TIFFReadRGBAImage (tiff, width, height, buf, 0);
7221 fn_TIFFClose (tiff);
7222 if (!rc)
7224 image_error ("Error reading TIFF image `%s'", img->spec, Qnil);
7225 xfree (buf);
7226 UNGCPRO;
7227 return 0;
7230 /* Create the X image and pixmap. */
7231 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
7233 xfree (buf);
7234 UNGCPRO;
7235 return 0;
7238 /* Initialize the color table. */
7239 init_color_table ();
7241 /* Process the pixel raster. Origin is in the lower-left corner. */
7242 for (y = 0; y < height; ++y)
7244 uint32 *row = buf + y * width;
7246 for (x = 0; x < width; ++x)
7248 uint32 abgr = row[x];
7249 int r = TIFFGetR (abgr) << 8;
7250 int g = TIFFGetG (abgr) << 8;
7251 int b = TIFFGetB (abgr) << 8;
7252 XPutPixel (ximg, x, height - 1 - y, lookup_rgb_color (f, r, g, b));
7256 #ifdef COLOR_TABLE_SUPPORT
7257 /* Remember the colors allocated for the image. Free the color table. */
7258 img->colors = colors_in_color_table (&img->ncolors);
7259 free_color_table ();
7260 #endif /* COLOR_TABLE_SUPPORT */
7262 img->width = width;
7263 img->height = height;
7265 /* Maybe fill in the background field while we have ximg handy. */
7266 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
7267 /* Casting avoids a GCC warning on W32. */
7268 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
7270 /* Put the image into the pixmap, then free the X image and its buffer. */
7271 x_put_x_image (f, ximg, img->pixmap, width, height);
7272 x_destroy_x_image (ximg);
7273 xfree (buf);
7275 UNGCPRO;
7276 return 1;
7279 #else /* HAVE_TIFF */
7281 #ifdef MAC_OS
7282 static int
7283 tiff_load (f, img)
7284 struct frame *f;
7285 struct image *img;
7287 return image_load_quicktime (f, img, kQTFileTypeTIFF);
7289 #endif /* MAC_OS */
7291 #endif /* !HAVE_TIFF */
7295 /***********************************************************************
7297 ***********************************************************************/
7299 #if defined (HAVE_GIF) || defined (MAC_OS)
7301 static int gif_image_p P_ ((Lisp_Object object));
7302 static int gif_load P_ ((struct frame *f, struct image *img));
7304 /* The symbol `gif' identifying images of this type. */
7306 Lisp_Object Qgif;
7308 /* Indices of image specification fields in gif_format, below. */
7310 enum gif_keyword_index
7312 GIF_TYPE,
7313 GIF_DATA,
7314 GIF_FILE,
7315 GIF_ASCENT,
7316 GIF_MARGIN,
7317 GIF_RELIEF,
7318 GIF_ALGORITHM,
7319 GIF_HEURISTIC_MASK,
7320 GIF_MASK,
7321 GIF_IMAGE,
7322 GIF_BACKGROUND,
7323 GIF_LAST
7326 /* Vector of image_keyword structures describing the format
7327 of valid user-defined image specifications. */
7329 static struct image_keyword gif_format[GIF_LAST] =
7331 {":type", IMAGE_SYMBOL_VALUE, 1},
7332 {":data", IMAGE_STRING_VALUE, 0},
7333 {":file", IMAGE_STRING_VALUE, 0},
7334 {":ascent", IMAGE_ASCENT_VALUE, 0},
7335 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
7336 {":relief", IMAGE_INTEGER_VALUE, 0},
7337 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7338 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7339 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7340 {":image", IMAGE_NON_NEGATIVE_INTEGER_VALUE, 0},
7341 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
7344 /* Structure describing the image type `gif'. */
7346 static struct image_type gif_type =
7348 &Qgif,
7349 gif_image_p,
7350 gif_load,
7351 x_clear_image,
7352 NULL
7355 /* Return non-zero if OBJECT is a valid GIF image specification. */
7357 static int
7358 gif_image_p (object)
7359 Lisp_Object object;
7361 struct image_keyword fmt[GIF_LAST];
7362 bcopy (gif_format, fmt, sizeof fmt);
7364 if (!parse_image_spec (object, fmt, GIF_LAST, Qgif))
7365 return 0;
7367 /* Must specify either the :data or :file keyword. */
7368 return fmt[GIF_FILE].count + fmt[GIF_DATA].count == 1;
7371 #endif /* HAVE_GIF || MAC_OS */
7373 #ifdef HAVE_GIF
7375 #if defined (HAVE_NTGUI) || defined (MAC_OS)
7376 /* winuser.h might define DrawText to DrawTextA or DrawTextW.
7377 Undefine before redefining to avoid a preprocessor warning. */
7378 #ifdef DrawText
7379 #undef DrawText
7380 #endif
7381 /* avoid conflict with QuickdrawText.h */
7382 #define DrawText gif_DrawText
7383 #include <gif_lib.h>
7384 #undef DrawText
7386 #else /* HAVE_NTGUI || MAC_OS */
7388 #include <gif_lib.h>
7390 #endif /* HAVE_NTGUI || MAC_OS */
7393 #ifdef HAVE_NTGUI
7395 /* GIF library details. */
7396 DEF_IMGLIB_FN (DGifCloseFile);
7397 DEF_IMGLIB_FN (DGifSlurp);
7398 DEF_IMGLIB_FN (DGifOpen);
7399 DEF_IMGLIB_FN (DGifOpenFileName);
7401 static int
7402 init_gif_functions (Lisp_Object libraries)
7404 HMODULE library;
7406 if (!(library = w32_delayed_load (libraries, Qgif)))
7407 return 0;
7409 LOAD_IMGLIB_FN (library, DGifCloseFile);
7410 LOAD_IMGLIB_FN (library, DGifSlurp);
7411 LOAD_IMGLIB_FN (library, DGifOpen);
7412 LOAD_IMGLIB_FN (library, DGifOpenFileName);
7413 return 1;
7416 #else
7418 #define fn_DGifCloseFile DGifCloseFile
7419 #define fn_DGifSlurp DGifSlurp
7420 #define fn_DGifOpen DGifOpen
7421 #define fn_DGifOpenFileName DGifOpenFileName
7423 #endif /* HAVE_NTGUI */
7425 /* Reading a GIF image from memory
7426 Based on the PNG memory stuff to a certain extent. */
7428 typedef struct
7430 unsigned char *bytes;
7431 size_t len;
7432 int index;
7434 gif_memory_source;
7436 /* Make the current memory source available to gif_read_from_memory.
7437 It's done this way because not all versions of libungif support
7438 a UserData field in the GifFileType structure. */
7439 static gif_memory_source *current_gif_memory_src;
7441 static int
7442 gif_read_from_memory (file, buf, len)
7443 GifFileType *file;
7444 GifByteType *buf;
7445 int len;
7447 gif_memory_source *src = current_gif_memory_src;
7449 if (len > src->len - src->index)
7450 return -1;
7452 bcopy (src->bytes + src->index, buf, len);
7453 src->index += len;
7454 return len;
7458 /* Load GIF image IMG for use on frame F. Value is non-zero if
7459 successful. */
7461 static int
7462 gif_load (f, img)
7463 struct frame *f;
7464 struct image *img;
7466 Lisp_Object file, specified_file;
7467 Lisp_Object specified_data;
7468 int rc, width, height, x, y, i;
7469 XImagePtr ximg;
7470 ColorMapObject *gif_color_map;
7471 unsigned long pixel_colors[256];
7472 GifFileType *gif;
7473 struct gcpro gcpro1;
7474 Lisp_Object image;
7475 int ino, image_left, image_top, image_width, image_height;
7476 gif_memory_source memsrc;
7477 unsigned char *raster;
7479 specified_file = image_spec_value (img->spec, QCfile, NULL);
7480 specified_data = image_spec_value (img->spec, QCdata, NULL);
7481 file = Qnil;
7482 GCPRO1 (file);
7484 if (NILP (specified_data))
7486 file = x_find_image_file (specified_file);
7487 if (!STRINGP (file))
7489 image_error ("Cannot find image file `%s'", specified_file, Qnil);
7490 UNGCPRO;
7491 return 0;
7494 /* Open the GIF file. Casting return value avoids a GCC warning
7495 on W32. */
7496 gif = (GifFileType *)fn_DGifOpenFileName (SDATA (file));
7497 if (gif == NULL)
7499 image_error ("Cannot open `%s'", file, Qnil);
7500 UNGCPRO;
7501 return 0;
7504 else
7506 /* Read from memory! */
7507 current_gif_memory_src = &memsrc;
7508 memsrc.bytes = SDATA (specified_data);
7509 memsrc.len = SBYTES (specified_data);
7510 memsrc.index = 0;
7512 /* Casting return value avoids a GCC warning on W32. */
7513 gif = (GifFileType *)fn_DGifOpen(&memsrc, gif_read_from_memory);
7514 if (!gif)
7516 image_error ("Cannot open memory source `%s'", img->spec, Qnil);
7517 UNGCPRO;
7518 return 0;
7522 /* Before reading entire contents, check the declared image size. */
7523 if (!check_image_size (f, gif->SWidth, gif->SHeight))
7525 image_error ("Invalid image size", Qnil, Qnil);
7526 fn_DGifCloseFile (gif);
7527 UNGCPRO;
7528 return 0;
7531 /* Read entire contents. */
7532 rc = fn_DGifSlurp (gif);
7533 if (rc == GIF_ERROR)
7535 image_error ("Error reading `%s'", img->spec, Qnil);
7536 fn_DGifCloseFile (gif);
7537 UNGCPRO;
7538 return 0;
7541 image = image_spec_value (img->spec, QCindex, NULL);
7542 ino = INTEGERP (image) ? XFASTINT (image) : 0;
7543 if (ino >= gif->ImageCount)
7545 image_error ("Invalid image number `%s' in image `%s'",
7546 image, img->spec);
7547 fn_DGifCloseFile (gif);
7548 UNGCPRO;
7549 return 0;
7552 image_top = gif->SavedImages[ino].ImageDesc.Top;
7553 image_left = gif->SavedImages[ino].ImageDesc.Left;
7554 image_width = gif->SavedImages[ino].ImageDesc.Width;
7555 image_height = gif->SavedImages[ino].ImageDesc.Height;
7557 width = img->width = max (gif->SWidth,
7558 max (gif->Image.Left + gif->Image.Width,
7559 image_left + image_width));
7560 height = img->height = max (gif->SHeight,
7561 max (gif->Image.Top + gif->Image.Height,
7562 image_top + image_height));
7564 if (!check_image_size (f, width, height))
7566 image_error ("Invalid image size", Qnil, Qnil);
7567 fn_DGifCloseFile (gif);
7568 UNGCPRO;
7569 return 0;
7572 /* Create the X image and pixmap. */
7573 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
7575 fn_DGifCloseFile (gif);
7576 UNGCPRO;
7577 return 0;
7580 /* Allocate colors. */
7581 gif_color_map = gif->SavedImages[ino].ImageDesc.ColorMap;
7582 if (!gif_color_map)
7583 gif_color_map = gif->SColorMap;
7584 init_color_table ();
7585 bzero (pixel_colors, sizeof pixel_colors);
7587 for (i = 0; i < gif_color_map->ColorCount; ++i)
7589 int r = gif_color_map->Colors[i].Red << 8;
7590 int g = gif_color_map->Colors[i].Green << 8;
7591 int b = gif_color_map->Colors[i].Blue << 8;
7592 pixel_colors[i] = lookup_rgb_color (f, r, g, b);
7595 #ifdef COLOR_TABLE_SUPPORT
7596 img->colors = colors_in_color_table (&img->ncolors);
7597 free_color_table ();
7598 #endif /* COLOR_TABLE_SUPPORT */
7600 /* Clear the part of the screen image that are not covered by
7601 the image from the GIF file. Full animated GIF support
7602 requires more than can be done here (see the gif89 spec,
7603 disposal methods). Let's simply assume that the part
7604 not covered by a sub-image is in the frame's background color. */
7605 for (y = 0; y < image_top; ++y)
7606 for (x = 0; x < width; ++x)
7607 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7609 for (y = image_top + image_height; y < height; ++y)
7610 for (x = 0; x < width; ++x)
7611 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7613 for (y = image_top; y < image_top + image_height; ++y)
7615 for (x = 0; x < image_left; ++x)
7616 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7617 for (x = image_left + image_width; x < width; ++x)
7618 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7621 /* Read the GIF image into the X image. We use a local variable
7622 `raster' here because RasterBits below is a char *, and invites
7623 problems with bytes >= 0x80. */
7624 raster = (unsigned char *) gif->SavedImages[ino].RasterBits;
7626 if (gif->SavedImages[ino].ImageDesc.Interlace)
7628 static int interlace_start[] = {0, 4, 2, 1};
7629 static int interlace_increment[] = {8, 8, 4, 2};
7630 int pass;
7631 int row = interlace_start[0];
7633 pass = 0;
7635 for (y = 0; y < image_height; y++)
7637 if (row >= image_height)
7639 row = interlace_start[++pass];
7640 while (row >= image_height)
7641 row = interlace_start[++pass];
7644 for (x = 0; x < image_width; x++)
7646 int i = raster[(y * image_width) + x];
7647 XPutPixel (ximg, x + image_left, row + image_top,
7648 pixel_colors[i]);
7651 row += interlace_increment[pass];
7654 else
7656 for (y = 0; y < image_height; ++y)
7657 for (x = 0; x < image_width; ++x)
7659 int i = raster[y * image_width + x];
7660 XPutPixel (ximg, x + image_left, y + image_top, pixel_colors[i]);
7664 fn_DGifCloseFile (gif);
7666 /* Maybe fill in the background field while we have ximg handy. */
7667 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
7668 /* Casting avoids a GCC warning. */
7669 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
7671 /* Put the image into the pixmap, then free the X image and its buffer. */
7672 x_put_x_image (f, ximg, img->pixmap, width, height);
7673 x_destroy_x_image (ximg);
7675 UNGCPRO;
7676 return 1;
7679 #else /* !HAVE_GIF */
7681 #ifdef MAC_OS
7682 static int
7683 gif_load (f, img)
7684 struct frame *f;
7685 struct image *img;
7687 Lisp_Object specified_file, file;
7688 Lisp_Object specified_data;
7689 OSErr err;
7690 Boolean graphic_p, movie_p, prefer_graphic_p;
7691 Handle dh = NULL;
7692 Movie movie = NULL;
7693 Lisp_Object image;
7694 Track track = NULL;
7695 Media media = NULL;
7696 long nsamples;
7697 Rect rect;
7698 Lisp_Object specified_bg;
7699 XColor color;
7700 RGBColor bg_color;
7701 int width, height;
7702 XImagePtr ximg;
7703 TimeValue time;
7704 struct gcpro gcpro1;
7705 int ino;
7706 CGrafPtr old_port;
7707 GDHandle old_gdh;
7709 specified_file = image_spec_value (img->spec, QCfile, NULL);
7710 specified_data = image_spec_value (img->spec, QCdata, NULL);
7712 if (NILP (specified_data))
7714 /* Read from a file */
7715 FSSpec fss;
7716 short refnum;
7718 err = find_image_fsspec (specified_file, &file, &fss);
7719 if (err != noErr)
7721 if (err == fnfErr)
7722 image_error ("Cannot find image file `%s'", specified_file, Qnil);
7723 else
7724 goto open_error;
7727 err = CanQuickTimeOpenFile (&fss, kQTFileTypeGIF, 0,
7728 &graphic_p, &movie_p, &prefer_graphic_p, 0);
7729 if (err != noErr)
7730 goto open_error;
7732 if (!graphic_p && !movie_p)
7733 goto open_error;
7734 if (prefer_graphic_p)
7735 return image_load_qt_1 (f, img, kQTFileTypeGIF, &fss, NULL);
7736 err = OpenMovieFile (&fss, &refnum, fsRdPerm);
7737 if (err != noErr)
7738 goto open_error;
7739 err = NewMovieFromFile (&movie, refnum, NULL, NULL, 0, NULL);
7740 CloseMovieFile (refnum);
7741 if (err != noErr)
7743 image_error ("Error reading `%s'", file, Qnil);
7744 return 0;
7747 else
7749 /* Memory source! */
7750 Handle dref = NULL;
7751 long file_type_atom[3];
7753 err = PtrToHand (SDATA (specified_data), &dh, SBYTES (specified_data));
7754 if (err != noErr)
7756 image_error ("Cannot allocate data handle for `%s'",
7757 img->spec, Qnil);
7758 goto error;
7761 file_type_atom[0] = EndianU32_NtoB (sizeof (long) * 3);
7762 file_type_atom[1] = EndianU32_NtoB (kDataRefExtensionMacOSFileType);
7763 file_type_atom[2] = EndianU32_NtoB (kQTFileTypeGIF);
7764 err = PtrToHand (&dh, &dref, sizeof (Handle));
7765 if (err == noErr)
7766 /* no file name */
7767 err = PtrAndHand ("\p", dref, 1);
7768 if (err == noErr)
7769 err = PtrAndHand (file_type_atom, dref, sizeof (long) * 3);
7770 if (err != noErr)
7772 image_error ("Cannot allocate handle data ref for `%s'", img->spec, Qnil);
7773 goto error;
7775 err = CanQuickTimeOpenDataRef (dref, HandleDataHandlerSubType, &graphic_p,
7776 &movie_p, &prefer_graphic_p, 0);
7777 if (err != noErr)
7778 goto open_error;
7780 if (!graphic_p && !movie_p)
7781 goto open_error;
7782 if (prefer_graphic_p)
7784 int success_p;
7786 DisposeHandle (dref);
7787 success_p = image_load_qt_1 (f, img, kQTFileTypeGIF, NULL, dh);
7788 DisposeHandle (dh);
7789 return success_p;
7791 err = NewMovieFromDataRef (&movie, 0, NULL, dref,
7792 HandleDataHandlerSubType);
7793 DisposeHandle (dref);
7794 if (err != noErr)
7795 goto open_error;
7798 image = image_spec_value (img->spec, QCindex, NULL);
7799 ino = INTEGERP (image) ? XFASTINT (image) : 0;
7800 track = GetMovieIndTrack (movie, 1);
7801 media = GetTrackMedia (track);
7802 nsamples = GetMediaSampleCount (media);
7803 if (ino >= nsamples)
7805 image_error ("Invalid image number `%s' in image `%s'",
7806 image, img->spec);
7807 goto error;
7810 specified_bg = image_spec_value (img->spec, QCbackground, NULL);
7811 if (!STRINGP (specified_bg) ||
7812 !mac_defined_color (f, SDATA (specified_bg), &color, 0))
7814 color.pixel = FRAME_BACKGROUND_PIXEL (f);
7815 color.red = RED16_FROM_ULONG (color.pixel);
7816 color.green = GREEN16_FROM_ULONG (color.pixel);
7817 color.blue = BLUE16_FROM_ULONG (color.pixel);
7819 GetMovieBox (movie, &rect);
7820 width = img->width = rect.right - rect.left;
7821 height = img->height = rect.bottom - rect.top;
7822 if (!x_create_x_image_and_pixmap (f, width, height, 0, &ximg, &img->pixmap))
7823 goto error;
7825 GetGWorld (&old_port, &old_gdh);
7826 SetGWorld (ximg, NULL);
7827 bg_color.red = color.red;
7828 bg_color.green = color.green;
7829 bg_color.blue = color.blue;
7830 RGBBackColor (&bg_color);
7831 SetGWorld (old_port, old_gdh);
7832 SetMovieActive (movie, 1);
7833 SetMovieGWorld (movie, ximg, NULL);
7834 SampleNumToMediaTime (media, ino + 1, &time, NULL);
7835 SetMovieTimeValue (movie, time);
7836 MoviesTask (movie, 0L);
7837 DisposeTrackMedia (media);
7838 DisposeMovieTrack (track);
7839 DisposeMovie (movie);
7840 if (dh)
7841 DisposeHandle (dh);
7842 /* Maybe fill in the background field while we have ximg handy. */
7843 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
7844 IMAGE_BACKGROUND (img, f, ximg);
7846 /* Put the image into the pixmap. */
7847 x_put_x_image (f, ximg, img->pixmap, width, height);
7848 x_destroy_x_image (ximg);
7849 return 1;
7851 open_error:
7852 image_error ("Cannot open `%s'", file, Qnil);
7853 error:
7854 if (media)
7855 DisposeTrackMedia (media);
7856 if (track)
7857 DisposeMovieTrack (track);
7858 if (movie)
7859 DisposeMovie (movie);
7860 if (dh)
7861 DisposeHandle (dh);
7862 return 0;
7864 #endif /* MAC_OS */
7866 #endif /* HAVE_GIF */
7870 /***********************************************************************
7871 Ghostscript
7872 ***********************************************************************/
7874 #ifdef HAVE_X_WINDOWS
7875 #define HAVE_GHOSTSCRIPT 1
7876 #endif /* HAVE_X_WINDOWS */
7878 /* The symbol `postscript' identifying images of this type. */
7880 Lisp_Object Qpostscript;
7882 #ifdef HAVE_GHOSTSCRIPT
7884 static int gs_image_p P_ ((Lisp_Object object));
7885 static int gs_load P_ ((struct frame *f, struct image *img));
7886 static void gs_clear_image P_ ((struct frame *f, struct image *img));
7888 /* Keyword symbols. */
7890 Lisp_Object QCloader, QCbounding_box, QCpt_width, QCpt_height;
7892 /* Indices of image specification fields in gs_format, below. */
7894 enum gs_keyword_index
7896 GS_TYPE,
7897 GS_PT_WIDTH,
7898 GS_PT_HEIGHT,
7899 GS_FILE,
7900 GS_LOADER,
7901 GS_BOUNDING_BOX,
7902 GS_ASCENT,
7903 GS_MARGIN,
7904 GS_RELIEF,
7905 GS_ALGORITHM,
7906 GS_HEURISTIC_MASK,
7907 GS_MASK,
7908 GS_BACKGROUND,
7909 GS_LAST
7912 /* Vector of image_keyword structures describing the format
7913 of valid user-defined image specifications. */
7915 static struct image_keyword gs_format[GS_LAST] =
7917 {":type", IMAGE_SYMBOL_VALUE, 1},
7918 {":pt-width", IMAGE_POSITIVE_INTEGER_VALUE, 1},
7919 {":pt-height", IMAGE_POSITIVE_INTEGER_VALUE, 1},
7920 {":file", IMAGE_STRING_VALUE, 1},
7921 {":loader", IMAGE_FUNCTION_VALUE, 0},
7922 {":bounding-box", IMAGE_DONT_CHECK_VALUE_TYPE, 1},
7923 {":ascent", IMAGE_ASCENT_VALUE, 0},
7924 {":margin", IMAGE_POSITIVE_INTEGER_VALUE_OR_PAIR, 0},
7925 {":relief", IMAGE_INTEGER_VALUE, 0},
7926 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7927 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7928 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7929 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
7932 /* Structure describing the image type `ghostscript'. */
7934 static struct image_type gs_type =
7936 &Qpostscript,
7937 gs_image_p,
7938 gs_load,
7939 gs_clear_image,
7940 NULL
7944 /* Free X resources of Ghostscript image IMG which is used on frame F. */
7946 static void
7947 gs_clear_image (f, img)
7948 struct frame *f;
7949 struct image *img;
7951 /* IMG->data.ptr_val may contain a recorded colormap. */
7952 xfree (img->data.ptr_val);
7953 x_clear_image (f, img);
7957 /* Return non-zero if OBJECT is a valid Ghostscript image
7958 specification. */
7960 static int
7961 gs_image_p (object)
7962 Lisp_Object object;
7964 struct image_keyword fmt[GS_LAST];
7965 Lisp_Object tem;
7966 int i;
7968 bcopy (gs_format, fmt, sizeof fmt);
7970 if (!parse_image_spec (object, fmt, GS_LAST, Qpostscript))
7971 return 0;
7973 /* Bounding box must be a list or vector containing 4 integers. */
7974 tem = fmt[GS_BOUNDING_BOX].value;
7975 if (CONSP (tem))
7977 for (i = 0; i < 4; ++i, tem = XCDR (tem))
7978 if (!CONSP (tem) || !INTEGERP (XCAR (tem)))
7979 return 0;
7980 if (!NILP (tem))
7981 return 0;
7983 else if (VECTORP (tem))
7985 if (XVECTOR (tem)->size != 4)
7986 return 0;
7987 for (i = 0; i < 4; ++i)
7988 if (!INTEGERP (XVECTOR (tem)->contents[i]))
7989 return 0;
7991 else
7992 return 0;
7994 return 1;
7998 /* Load Ghostscript image IMG for use on frame F. Value is non-zero
7999 if successful. */
8001 static int
8002 gs_load (f, img)
8003 struct frame *f;
8004 struct image *img;
8006 char buffer[100];
8007 Lisp_Object window_and_pixmap_id = Qnil, loader, pt_height, pt_width;
8008 struct gcpro gcpro1, gcpro2;
8009 Lisp_Object frame;
8010 double in_width, in_height;
8011 Lisp_Object pixel_colors = Qnil;
8013 /* Compute pixel size of pixmap needed from the given size in the
8014 image specification. Sizes in the specification are in pt. 1 pt
8015 = 1/72 in, xdpi and ydpi are stored in the frame's X display
8016 info. */
8017 pt_width = image_spec_value (img->spec, QCpt_width, NULL);
8018 in_width = XFASTINT (pt_width) / 72.0;
8019 img->width = in_width * FRAME_X_DISPLAY_INFO (f)->resx;
8020 pt_height = image_spec_value (img->spec, QCpt_height, NULL);
8021 in_height = XFASTINT (pt_height) / 72.0;
8022 img->height = in_height * FRAME_X_DISPLAY_INFO (f)->resy;
8024 if (!check_image_size (f, img->width, img->height))
8026 image_error ("Invalid image size", Qnil, Qnil);
8027 return 0;
8030 /* Create the pixmap. */
8031 xassert (img->pixmap == NO_PIXMAP);
8033 /* Only W32 version did BLOCK_INPUT here. ++kfs */
8034 BLOCK_INPUT;
8035 img->pixmap = XCreatePixmap (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
8036 img->width, img->height,
8037 DefaultDepthOfScreen (FRAME_X_SCREEN (f)));
8038 UNBLOCK_INPUT;
8040 if (!img->pixmap)
8042 image_error ("Unable to create pixmap for `%s'", img->spec, Qnil);
8043 return 0;
8046 /* Call the loader to fill the pixmap. It returns a process object
8047 if successful. We do not record_unwind_protect here because
8048 other places in redisplay like calling window scroll functions
8049 don't either. Let the Lisp loader use `unwind-protect' instead. */
8050 GCPRO2 (window_and_pixmap_id, pixel_colors);
8052 sprintf (buffer, "%lu %lu",
8053 (unsigned long) FRAME_X_WINDOW (f),
8054 (unsigned long) img->pixmap);
8055 window_and_pixmap_id = build_string (buffer);
8057 sprintf (buffer, "%lu %lu",
8058 FRAME_FOREGROUND_PIXEL (f),
8059 FRAME_BACKGROUND_PIXEL (f));
8060 pixel_colors = build_string (buffer);
8062 XSETFRAME (frame, f);
8063 loader = image_spec_value (img->spec, QCloader, NULL);
8064 if (NILP (loader))
8065 loader = intern ("gs-load-image");
8067 img->data.lisp_val = call6 (loader, frame, img->spec,
8068 make_number (img->width),
8069 make_number (img->height),
8070 window_and_pixmap_id,
8071 pixel_colors);
8072 UNGCPRO;
8073 return PROCESSP (img->data.lisp_val);
8077 /* Kill the Ghostscript process that was started to fill PIXMAP on
8078 frame F. Called from XTread_socket when receiving an event
8079 telling Emacs that Ghostscript has finished drawing. */
8081 void
8082 x_kill_gs_process (pixmap, f)
8083 Pixmap pixmap;
8084 struct frame *f;
8086 struct image_cache *c = FRAME_X_IMAGE_CACHE (f);
8087 int class, i;
8088 struct image *img;
8090 /* Find the image containing PIXMAP. */
8091 for (i = 0; i < c->used; ++i)
8092 if (c->images[i]->pixmap == pixmap)
8093 break;
8095 /* Should someone in between have cleared the image cache, for
8096 instance, give up. */
8097 if (i == c->used)
8098 return;
8100 /* Kill the GS process. We should have found PIXMAP in the image
8101 cache and its image should contain a process object. */
8102 img = c->images[i];
8103 xassert (PROCESSP (img->data.lisp_val));
8104 Fkill_process (img->data.lisp_val, Qnil);
8105 img->data.lisp_val = Qnil;
8107 #if defined (HAVE_X_WINDOWS)
8109 /* On displays with a mutable colormap, figure out the colors
8110 allocated for the image by looking at the pixels of an XImage for
8111 img->pixmap. */
8112 class = FRAME_X_VISUAL (f)->class;
8113 if (class != StaticColor && class != StaticGray && class != TrueColor)
8115 XImagePtr ximg;
8117 BLOCK_INPUT;
8119 /* Try to get an XImage for img->pixmep. */
8120 ximg = XGetImage (FRAME_X_DISPLAY (f), img->pixmap,
8121 0, 0, img->width, img->height, ~0, ZPixmap);
8122 if (ximg)
8124 int x, y;
8126 /* Initialize the color table. */
8127 init_color_table ();
8129 /* For each pixel of the image, look its color up in the
8130 color table. After having done so, the color table will
8131 contain an entry for each color used by the image. */
8132 for (y = 0; y < img->height; ++y)
8133 for (x = 0; x < img->width; ++x)
8135 unsigned long pixel = XGetPixel (ximg, x, y);
8136 lookup_pixel_color (f, pixel);
8139 /* Record colors in the image. Free color table and XImage. */
8140 #ifdef COLOR_TABLE_SUPPORT
8141 img->colors = colors_in_color_table (&img->ncolors);
8142 free_color_table ();
8143 #endif
8144 XDestroyImage (ximg);
8146 #if 0 /* This doesn't seem to be the case. If we free the colors
8147 here, we get a BadAccess later in x_clear_image when
8148 freeing the colors. */
8149 /* We have allocated colors once, but Ghostscript has also
8150 allocated colors on behalf of us. So, to get the
8151 reference counts right, free them once. */
8152 if (img->ncolors)
8153 x_free_colors (f, img->colors, img->ncolors);
8154 #endif
8156 else
8157 image_error ("Cannot get X image of `%s'; colors will not be freed",
8158 img->spec, Qnil);
8160 UNBLOCK_INPUT;
8162 #endif /* HAVE_X_WINDOWS */
8164 /* Now that we have the pixmap, compute mask and transform the
8165 image if requested. */
8166 BLOCK_INPUT;
8167 postprocess_image (f, img);
8168 UNBLOCK_INPUT;
8171 #endif /* HAVE_GHOSTSCRIPT */
8174 /***********************************************************************
8175 Tests
8176 ***********************************************************************/
8178 #if GLYPH_DEBUG
8180 DEFUN ("imagep", Fimagep, Simagep, 1, 1, 0,
8181 doc: /* Value is non-nil if SPEC is a valid image specification. */)
8182 (spec)
8183 Lisp_Object spec;
8185 return valid_image_p (spec) ? Qt : Qnil;
8189 DEFUN ("lookup-image", Flookup_image, Slookup_image, 1, 1, 0, "")
8190 (spec)
8191 Lisp_Object spec;
8193 int id = -1;
8195 if (valid_image_p (spec))
8196 id = lookup_image (SELECTED_FRAME (), spec);
8198 debug_print (spec);
8199 return make_number (id);
8202 #endif /* GLYPH_DEBUG != 0 */
8205 /***********************************************************************
8206 Initialization
8207 ***********************************************************************/
8209 #ifdef HAVE_NTGUI
8210 /* Image types that rely on external libraries are loaded dynamically
8211 if the library is available. */
8212 #define CHECK_LIB_AVAILABLE(image_type, init_lib_fn, libraries) \
8213 define_image_type (image_type, init_lib_fn (libraries))
8214 #else
8215 #define CHECK_LIB_AVAILABLE(image_type, init_lib_fn, libraries) \
8216 define_image_type (image_type, 1)
8217 #endif /* HAVE_NTGUI */
8219 DEFUN ("init-image-library", Finit_image_library, Sinit_image_library, 2, 2, 0,
8220 doc: /* Initialize image library implementing image type TYPE.
8221 Return non-nil if TYPE is a supported image type.
8223 Image types pbm and xbm are prebuilt; other types are loaded here.
8224 Libraries to load are specified in alist LIBRARIES (usually, the value
8225 of `image-library-alist', which see). */)
8226 (type, libraries)
8227 Lisp_Object type, libraries;
8229 Lisp_Object tested;
8231 /* Don't try to reload the library. */
8232 tested = Fassq (type, Vimage_type_cache);
8233 if (CONSP (tested))
8234 return XCDR (tested);
8236 #if defined (HAVE_XPM) || defined (MAC_OS)
8237 if (EQ (type, Qxpm))
8238 return CHECK_LIB_AVAILABLE (&xpm_type, init_xpm_functions, libraries);
8239 #endif
8241 #if defined (HAVE_JPEG) || defined (MAC_OS)
8242 if (EQ (type, Qjpeg))
8243 return CHECK_LIB_AVAILABLE (&jpeg_type, init_jpeg_functions, libraries);
8244 #endif
8246 #if defined (HAVE_TIFF) || defined (MAC_OS)
8247 if (EQ (type, Qtiff))
8248 return CHECK_LIB_AVAILABLE (&tiff_type, init_tiff_functions, libraries);
8249 #endif
8251 #if defined (HAVE_GIF) || defined (MAC_OS)
8252 if (EQ (type, Qgif))
8253 return CHECK_LIB_AVAILABLE (&gif_type, init_gif_functions, libraries);
8254 #endif
8256 #if defined (HAVE_PNG) || defined (MAC_OS)
8257 if (EQ (type, Qpng))
8258 return CHECK_LIB_AVAILABLE (&png_type, init_png_functions, libraries);
8259 #endif
8261 #ifdef HAVE_GHOSTSCRIPT
8262 if (EQ (type, Qpostscript))
8263 return CHECK_LIB_AVAILABLE (&gs_type, init_gs_functions, libraries);
8264 #endif
8266 /* If the type is not recognized, avoid testing it ever again. */
8267 CACHE_IMAGE_TYPE (type, Qnil);
8268 return Qnil;
8271 void
8272 syms_of_image ()
8274 extern Lisp_Object Qrisky_local_variable; /* Syms_of_xdisp has already run. */
8276 /* Initialize this only once, since that's what we do with Vimage_types
8277 and they are supposed to be in sync. Initializing here gives correct
8278 operation on GNU/Linux of calling dump-emacs after loading some images. */
8279 image_types = NULL;
8281 /* Must be defined now becase we're going to update it below, while
8282 defining the supported image types. */
8283 DEFVAR_LISP ("image-types", &Vimage_types,
8284 doc: /* List of potentially supported image types.
8285 Each element of the list is a symbol for a image type, like 'jpeg or 'png.
8286 To check whether it is really supported, use `image-type-available-p'. */);
8287 Vimage_types = Qnil;
8289 DEFVAR_LISP ("image-library-alist", &Vimage_library_alist,
8290 doc: /* Alist of image types vs external libraries needed to display them.
8292 Each element is a list (IMAGE-TYPE LIBRARY...), where the car is a symbol
8293 representing a supported image type, and the rest are strings giving
8294 alternate filenames for the corresponding external libraries.
8296 Emacs tries to load the libraries in the order they appear on the
8297 list; if none is loaded, the running session of Emacs won't
8298 support the image type. Types 'pbm and 'xbm don't need to be
8299 listed; they're always supported. */);
8300 Vimage_library_alist = Qnil;
8301 Fput (intern ("image-library-alist"), Qrisky_local_variable, Qt);
8303 DEFVAR_LISP ("max-image-size", &Vmax_image_size,
8304 doc: /* Maximum size of images.
8305 Emacs will not load an image into memory if its pixel width or
8306 pixel height exceeds this limit.
8308 If the value is an integer, it directly specifies the maximum
8309 image height and width, measured in pixels. If it is a floating
8310 point number, it specifies the maximum image height and width
8311 as a ratio to the frame height and width. If the value is
8312 non-numeric, there is no explicit limit on the size of images. */);
8313 Vmax_image_size = make_float (MAX_IMAGE_SIZE);
8315 Vimage_type_cache = Qnil;
8316 staticpro (&Vimage_type_cache);
8318 Qpbm = intern ("pbm");
8319 staticpro (&Qpbm);
8320 ADD_IMAGE_TYPE(Qpbm);
8322 Qxbm = intern ("xbm");
8323 staticpro (&Qxbm);
8324 ADD_IMAGE_TYPE(Qxbm);
8326 define_image_type (&xbm_type, 1);
8327 define_image_type (&pbm_type, 1);
8329 QCascent = intern (":ascent");
8330 staticpro (&QCascent);
8331 QCmargin = intern (":margin");
8332 staticpro (&QCmargin);
8333 QCrelief = intern (":relief");
8334 staticpro (&QCrelief);
8335 QCconversion = intern (":conversion");
8336 staticpro (&QCconversion);
8337 QCcolor_symbols = intern (":color-symbols");
8338 staticpro (&QCcolor_symbols);
8339 QCheuristic_mask = intern (":heuristic-mask");
8340 staticpro (&QCheuristic_mask);
8341 QCindex = intern (":index");
8342 staticpro (&QCindex);
8343 QCmatrix = intern (":matrix");
8344 staticpro (&QCmatrix);
8345 QCcolor_adjustment = intern (":color-adjustment");
8346 staticpro (&QCcolor_adjustment);
8347 QCmask = intern (":mask");
8348 staticpro (&QCmask);
8350 Qlaplace = intern ("laplace");
8351 staticpro (&Qlaplace);
8352 Qemboss = intern ("emboss");
8353 staticpro (&Qemboss);
8354 Qedge_detection = intern ("edge-detection");
8355 staticpro (&Qedge_detection);
8356 Qheuristic = intern ("heuristic");
8357 staticpro (&Qheuristic);
8359 Qpostscript = intern ("postscript");
8360 staticpro (&Qpostscript);
8361 #ifdef HAVE_GHOSTSCRIPT
8362 ADD_IMAGE_TYPE(Qpostscript);
8363 QCloader = intern (":loader");
8364 staticpro (&QCloader);
8365 QCbounding_box = intern (":bounding-box");
8366 staticpro (&QCbounding_box);
8367 QCpt_width = intern (":pt-width");
8368 staticpro (&QCpt_width);
8369 QCpt_height = intern (":pt-height");
8370 staticpro (&QCpt_height);
8371 #endif /* HAVE_GHOSTSCRIPT */
8373 #if defined (HAVE_XPM) || defined (MAC_OS)
8374 Qxpm = intern ("xpm");
8375 staticpro (&Qxpm);
8376 ADD_IMAGE_TYPE(Qxpm);
8377 #endif
8379 #if defined (HAVE_JPEG) || defined (MAC_OS)
8380 Qjpeg = intern ("jpeg");
8381 staticpro (&Qjpeg);
8382 ADD_IMAGE_TYPE(Qjpeg);
8383 #endif
8385 #if defined (HAVE_TIFF) || defined (MAC_OS)
8386 Qtiff = intern ("tiff");
8387 staticpro (&Qtiff);
8388 ADD_IMAGE_TYPE(Qtiff);
8389 #endif
8391 #if defined (HAVE_GIF) || defined (MAC_OS)
8392 Qgif = intern ("gif");
8393 staticpro (&Qgif);
8394 ADD_IMAGE_TYPE(Qgif);
8395 #endif
8397 #if defined (HAVE_PNG) || defined (MAC_OS)
8398 Qpng = intern ("png");
8399 staticpro (&Qpng);
8400 ADD_IMAGE_TYPE(Qpng);
8401 #endif
8403 defsubr (&Sinit_image_library);
8404 defsubr (&Sclear_image_cache);
8405 defsubr (&Simage_size);
8406 defsubr (&Simage_mask_p);
8408 #if GLYPH_DEBUG
8409 defsubr (&Simagep);
8410 defsubr (&Slookup_image);
8411 #endif
8413 DEFVAR_BOOL ("cross-disabled-images", &cross_disabled_images,
8414 doc: /* Non-nil means always draw a cross over disabled images.
8415 Disabled images are those having an `:conversion disabled' property.
8416 A cross is always drawn on black & white displays. */);
8417 cross_disabled_images = 0;
8419 DEFVAR_LISP ("x-bitmap-file-path", &Vx_bitmap_file_path,
8420 doc: /* List of directories to search for window system bitmap files. */);
8421 Vx_bitmap_file_path = decode_env_path ((char *) 0, PATH_BITMAPS);
8423 DEFVAR_LISP ("image-cache-eviction-delay", &Vimage_cache_eviction_delay,
8424 doc: /* Time after which cached images are removed from the cache.
8425 When an image has not been displayed this many seconds, remove it
8426 from the image cache. Value must be an integer or nil with nil
8427 meaning don't clear the cache. */);
8428 Vimage_cache_eviction_delay = make_number (30 * 60);
8431 void
8432 init_image ()
8434 #ifdef MAC_OS
8435 /* Animated gifs use QuickTime Movie Toolbox. So initialize it here. */
8436 EnterMovies ();
8437 #ifdef MAC_OSX
8438 init_image_func_pointer ();
8439 #endif
8440 #endif
8443 /* arch-tag: 123c2a5e-14a8-4c53-ab95-af47d7db49b9
8444 (do not change this comment) */