src/image: Remove unused variables.
[bpt/emacs.git] / src / image.c
CommitLineData
4ef0d4d0 1/* Functions for image support on window system.
32d72c2f 2
ab422c4d 3Copyright (C) 1989, 1992-2013 Free Software Foundation, Inc.
4ef0d4d0
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4
5This file is part of GNU Emacs.
6
9ec0b715 7GNU Emacs is free software: you can redistribute it and/or modify
4ef0d4d0 8it under the terms of the GNU General Public License as published by
9ec0b715
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9the Free Software Foundation, either version 3 of the License, or
10(at your option) any later version.
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11
12GNU Emacs is distributed in the hope that it will be useful,
13but WITHOUT ANY WARRANTY; without even the implied warranty of
14MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15GNU General Public License for more details.
16
17You should have received a copy of the GNU General Public License
9ec0b715 18along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
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19
20#include <config.h>
4ef0d4d0 21#include <stdio.h>
4ef0d4d0 22#include <unistd.h>
4ef0d4d0 23
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24#ifdef HAVE_PNG
25#if defined HAVE_LIBPNG_PNG_H
26# include <libpng/png.h>
27#else
28# include <png.h>
29#endif
285d07e2 30#endif
d7306fe6 31
c3417a74
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32#include <setjmp.h>
33
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34#include <c-ctype.h>
35
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36/* This makes the fields of a Display accessible, in Xlib header files. */
37
38#define XLIB_ILLEGAL_ACCESS
39
40#include "lisp.h"
41#include "frame.h"
42#include "window.h"
43#include "dispextern.h"
44#include "blockinput.h"
45#include "systime.h"
46#include <epaths.h>
3dcc8b84 47#include "character.h"
022af124 48#include "coding.h"
6087292e 49#include "termhooks.h"
3dcc8b84 50#include "font.h"
4ef0d4d0 51
17a2cbbd 52#ifdef HAVE_SYS_STAT_H
4ef0d4d0 53#include <sys/stat.h>
17a2cbbd
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54#endif /* HAVE_SYS_STAT_H */
55
56#ifdef HAVE_SYS_TYPES_H
57#include <sys/types.h>
58#endif /* HAVE_SYS_TYPES_H */
59
60#ifdef HAVE_WINDOW_SYSTEM
61#include TERM_HEADER
62#endif /* HAVE_WINDOW_SYSTEM */
4ef0d4d0 63
17a2cbbd 64#ifdef HAVE_X_WINDOWS
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65#define COLOR_TABLE_SUPPORT 1
66
67typedef struct x_bitmap_record Bitmap_Record;
5e617bc2 68#define GET_PIXEL(ximg, x, y) XGetPixel (ximg, x, y)
4ef0d4d0 69#define NO_PIXMAP None
4ef0d4d0 70
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71#define PIX_MASK_RETAIN 0
72#define PIX_MASK_DRAW 1
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73#endif /* HAVE_X_WINDOWS */
74
4ef0d4d0 75#ifdef HAVE_NTGUI
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76
77/* We need (or want) w32.h only when we're _not_ compiling for Cygwin. */
78#ifdef WINDOWSNT
0fda9b75 79# include "w32.h"
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80#endif
81
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82/* W32_TODO : Color tables on W32. */
83#undef COLOR_TABLE_SUPPORT
84
85typedef struct w32_bitmap_record Bitmap_Record;
5e617bc2 86#define GET_PIXEL(ximg, x, y) GetPixel (ximg, x, y)
4ef0d4d0 87#define NO_PIXMAP 0
4ef0d4d0 88
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89#define PIX_MASK_RETAIN 0
90#define PIX_MASK_DRAW 1
4ef0d4d0 91
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92#define x_defined_color w32_defined_color
93#define DefaultDepthOfScreen(screen) (one_w32_display_info.n_cbits)
8b7d0a16 94
5be1c984
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95/* Version of libpng that we were compiled with, or -1 if no PNG
96 support was compiled in. This is tested by w32-win.el to correctly
97 set up the alist used to search for PNG libraries. */
98Lisp_Object Qlibpng_version;
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99#endif /* HAVE_NTGUI */
100
edfda783 101#ifdef HAVE_NS
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102#undef COLOR_TABLE_SUPPORT
103
104typedef struct ns_bitmap_record Bitmap_Record;
105
5e617bc2 106#define GET_PIXEL(ximg, x, y) XGetPixel (ximg, x, y)
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107#define NO_PIXMAP 0
108
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109#define PIX_MASK_RETAIN 0
110#define PIX_MASK_DRAW 1
111
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112#define x_defined_color(f, name, color_def, alloc) \
113 ns_defined_color (f, name, color_def, alloc, 0)
9e50ff0c 114#define DefaultDepthOfScreen(screen) x_display_list->n_planes
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115#endif /* HAVE_NS */
116
117
97ec208f
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118/* The symbol `postscript' identifying images of this type. */
119
955cbe7b 120static Lisp_Object Qpostscript;
4ef0d4d0 121
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122static void x_disable_image (struct frame *, struct image *);
123static void x_edge_detection (struct frame *, struct image *, Lisp_Object,
124 Lisp_Object);
4ef0d4d0 125
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126static void init_color_table (void);
127static unsigned long lookup_rgb_color (struct frame *f, int r, int g, int b);
4ef0d4d0 128#ifdef COLOR_TABLE_SUPPORT
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129static void free_color_table (void);
130static unsigned long *colors_in_color_table (int *n);
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131#endif
132
9c90cc06 133static Lisp_Object QCmax_width, QCmax_height;
f3f9606c 134
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135/* Code to deal with bitmaps. Bitmaps are referenced by their bitmap
136 id, which is just an int that this section returns. Bitmaps are
137 reference counted so they can be shared among frames.
138
139 Bitmap indices are guaranteed to be > 0, so a negative number can
140 be used to indicate no bitmap.
141
142 If you use x_create_bitmap_from_data, then you must keep track of
143 the bitmaps yourself. That is, creating a bitmap from the same
144 data more than once will not be caught. */
145
edfda783 146#ifdef HAVE_NS
bad98418 147/* Use with images created by ns_image_for_XPM. */
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148unsigned long
149XGetPixel (XImagePtr ximage, int x, int y)
150{
ed3751c8 151 return ns_get_pixel (ximage, x, y);
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152}
153
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154/* Use with images created by ns_image_for_XPM; alpha set to 1;
155 pixel is assumed to be in RGB form. */
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156void
157XPutPixel (XImagePtr ximage, int x, int y, unsigned long pixel)
158{
ed3751c8 159 ns_put_pixel (ximage, x, y, pixel);
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160}
161#endif /* HAVE_NS */
162
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163
164/* Functions to access the contents of a bitmap, given an id. */
165
166int
0766b489 167x_bitmap_height (FRAME_PTR f, ptrdiff_t id)
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168{
169 return FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].height;
170}
171
172int
0766b489 173x_bitmap_width (FRAME_PTR f, ptrdiff_t id)
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174{
175 return FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].width;
176}
177
178#if defined (HAVE_X_WINDOWS) || defined (HAVE_NTGUI)
62aba0d4 179ptrdiff_t
0766b489 180x_bitmap_pixmap (FRAME_PTR f, ptrdiff_t id)
4ef0d4d0 181{
f6cfbd8f 182 /* HAVE_NTGUI needs the explicit cast here. */
62aba0d4 183 return (ptrdiff_t) FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].pixmap;
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184}
185#endif
186
187#ifdef HAVE_X_WINDOWS
188int
0766b489 189x_bitmap_mask (FRAME_PTR f, ptrdiff_t id)
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190{
191 return FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].mask;
192}
193#endif
194
195/* Allocate a new bitmap record. Returns index of new record. */
196
0766b489 197static ptrdiff_t
d3da34e0 198x_allocate_bitmap_record (FRAME_PTR f)
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199{
200 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
0766b489 201 ptrdiff_t i;
4ef0d4d0 202
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203 if (dpyinfo->bitmaps_last < dpyinfo->bitmaps_size)
204 return ++dpyinfo->bitmaps_last;
205
206 for (i = 0; i < dpyinfo->bitmaps_size; ++i)
207 if (dpyinfo->bitmaps[i].refcount == 0)
208 return i + 1;
209
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210 dpyinfo->bitmaps =
211 xpalloc (dpyinfo->bitmaps, &dpyinfo->bitmaps_size,
212 10, -1, sizeof *dpyinfo->bitmaps);
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213 return ++dpyinfo->bitmaps_last;
214}
215
216/* Add one reference to the reference count of the bitmap with id ID. */
217
218void
13464394 219x_reference_bitmap (FRAME_PTR f, ptrdiff_t id)
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220{
221 ++FRAME_X_DISPLAY_INFO (f)->bitmaps[id - 1].refcount;
222}
223
224/* Create a bitmap for frame F from a HEIGHT x WIDTH array of bits at BITS. */
225
0766b489 226ptrdiff_t
d3da34e0 227x_create_bitmap_from_data (struct frame *f, char *bits, unsigned int width, unsigned int height)
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228{
229 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
0766b489 230 ptrdiff_t id;
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231
232#ifdef HAVE_X_WINDOWS
233 Pixmap bitmap;
234 bitmap = XCreateBitmapFromData (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
235 bits, width, height);
236 if (! bitmap)
237 return -1;
238#endif /* HAVE_X_WINDOWS */
239
240#ifdef HAVE_NTGUI
241 Pixmap bitmap;
242 bitmap = CreateBitmap (width, height,
243 FRAME_X_DISPLAY_INFO (XFRAME (frame))->n_planes,
244 FRAME_X_DISPLAY_INFO (XFRAME (frame))->n_cbits,
245 bits);
246 if (! bitmap)
247 return -1;
248#endif /* HAVE_NTGUI */
249
edfda783 250#ifdef HAVE_NS
ed3751c8 251 void *bitmap = ns_image_from_XBM (bits, width, height);
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252 if (!bitmap)
253 return -1;
254#endif
255
4ef0d4d0 256 id = x_allocate_bitmap_record (f);
4ef0d4d0 257
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258#ifdef HAVE_NS
259 dpyinfo->bitmaps[id - 1].img = bitmap;
260 dpyinfo->bitmaps[id - 1].depth = 1;
261#endif
262
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263 dpyinfo->bitmaps[id - 1].file = NULL;
264 dpyinfo->bitmaps[id - 1].height = height;
265 dpyinfo->bitmaps[id - 1].width = width;
266 dpyinfo->bitmaps[id - 1].refcount = 1;
267
268#ifdef HAVE_X_WINDOWS
269 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
270 dpyinfo->bitmaps[id - 1].have_mask = 0;
271 dpyinfo->bitmaps[id - 1].depth = 1;
272#endif /* HAVE_X_WINDOWS */
273
274#ifdef HAVE_NTGUI
275 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
276 dpyinfo->bitmaps[id - 1].hinst = NULL;
277 dpyinfo->bitmaps[id - 1].depth = 1;
278#endif /* HAVE_NTGUI */
279
280 return id;
281}
282
283/* Create bitmap from file FILE for frame F. */
284
0766b489 285ptrdiff_t
d3da34e0 286x_create_bitmap_from_file (struct frame *f, Lisp_Object file)
4ef0d4d0 287{
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288 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
289
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290#ifdef HAVE_NTGUI
291 return -1; /* W32_TODO : bitmap support */
292#endif /* HAVE_NTGUI */
293
edfda783 294#ifdef HAVE_NS
0766b489 295 ptrdiff_t id;
ed3751c8 296 void *bitmap = ns_image_from_file (file);
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297
298 if (!bitmap)
299 return -1;
300
301
302 id = x_allocate_bitmap_record (f);
303 dpyinfo->bitmaps[id - 1].img = bitmap;
304 dpyinfo->bitmaps[id - 1].refcount = 1;
23f86fce 305 dpyinfo->bitmaps[id - 1].file = xmalloc (SBYTES (file) + 1);
edfda783 306 dpyinfo->bitmaps[id - 1].depth = 1;
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307 dpyinfo->bitmaps[id - 1].height = ns_image_width (bitmap);
308 dpyinfo->bitmaps[id - 1].width = ns_image_height (bitmap);
6045c4fd 309 strcpy (dpyinfo->bitmaps[id - 1].file, SSDATA (file));
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310 return id;
311#endif
312
4ef0d4d0 313#ifdef HAVE_X_WINDOWS
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314 unsigned int width, height;
315 Pixmap bitmap;
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316 int xhot, yhot, result;
317 ptrdiff_t id;
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318 Lisp_Object found;
319 int fd;
320 char *filename;
321
322 /* Look for an existing bitmap with the same name. */
323 for (id = 0; id < dpyinfo->bitmaps_last; ++id)
324 {
325 if (dpyinfo->bitmaps[id].refcount
326 && dpyinfo->bitmaps[id].file
51b59d79 327 && !strcmp (dpyinfo->bitmaps[id].file, SSDATA (file)))
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328 {
329 ++dpyinfo->bitmaps[id].refcount;
330 return id + 1;
331 }
332 }
333
334 /* Search bitmap-file-path for the file, if appropriate. */
335 fd = openp (Vx_bitmap_file_path, file, Qnil, &found, Qnil);
336 if (fd < 0)
337 return -1;
338 emacs_close (fd);
339
51b59d79 340 filename = SSDATA (found);
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341
342 result = XReadBitmapFile (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
343 filename, &width, &height, &bitmap, &xhot, &yhot);
344 if (result != BitmapSuccess)
345 return -1;
346
347 id = x_allocate_bitmap_record (f);
348 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
349 dpyinfo->bitmaps[id - 1].have_mask = 0;
350 dpyinfo->bitmaps[id - 1].refcount = 1;
23f86fce 351 dpyinfo->bitmaps[id - 1].file = xmalloc (SBYTES (file) + 1);
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352 dpyinfo->bitmaps[id - 1].depth = 1;
353 dpyinfo->bitmaps[id - 1].height = height;
354 dpyinfo->bitmaps[id - 1].width = width;
42a5b22f 355 strcpy (dpyinfo->bitmaps[id - 1].file, SSDATA (file));
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356
357 return id;
358#endif /* HAVE_X_WINDOWS */
359}
360
361/* Free bitmap B. */
362
363static void
d3da34e0 364free_bitmap_record (Display_Info *dpyinfo, Bitmap_Record *bm)
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365{
366#ifdef HAVE_X_WINDOWS
367 XFreePixmap (dpyinfo->display, bm->pixmap);
368 if (bm->have_mask)
369 XFreePixmap (dpyinfo->display, bm->mask);
370#endif /* HAVE_X_WINDOWS */
371
372#ifdef HAVE_NTGUI
373 DeleteObject (bm->pixmap);
374#endif /* HAVE_NTGUI */
375
edfda783 376#ifdef HAVE_NS
ed3751c8 377 ns_release_object (bm->img);
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378#endif
379
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380 if (bm->file)
381 {
382 xfree (bm->file);
383 bm->file = NULL;
384 }
385}
386
387/* Remove reference to bitmap with id number ID. */
388
389void
0766b489 390x_destroy_bitmap (FRAME_PTR f, ptrdiff_t id)
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391{
392 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
393
394 if (id > 0)
395 {
396 Bitmap_Record *bm = &dpyinfo->bitmaps[id - 1];
397
398 if (--bm->refcount == 0)
399 {
4d7e6e51 400 block_input ();
65342ae3 401 free_bitmap_record (dpyinfo, bm);
4d7e6e51 402 unblock_input ();
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403 }
404 }
405}
406
407/* Free all the bitmaps for the display specified by DPYINFO. */
408
409void
d3da34e0 410x_destroy_all_bitmaps (Display_Info *dpyinfo)
4ef0d4d0 411{
0766b489 412 ptrdiff_t i;
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413 Bitmap_Record *bm = dpyinfo->bitmaps;
414
415 for (i = 0; i < dpyinfo->bitmaps_last; i++, bm++)
416 if (bm->refcount > 0)
65342ae3 417 free_bitmap_record (dpyinfo, bm);
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418
419 dpyinfo->bitmaps_last = 0;
420}
421
578098f3
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422static bool x_create_x_image_and_pixmap (struct frame *, int, int, int,
423 XImagePtr *, Pixmap *);
424static void x_destroy_x_image (XImagePtr ximg);
4ef0d4d0 425
547c9269
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426#ifdef HAVE_NTGUI
427static XImagePtr_or_DC image_get_x_image_or_dc (struct frame *, struct image *,
428 bool, HGDIOBJ *);
429static void image_unget_x_image_or_dc (struct image *, bool, XImagePtr_or_DC,
430 HGDIOBJ);
431#else
432static XImagePtr image_get_x_image (struct frame *, struct image *, bool);
433static void image_unget_x_image (struct image *, bool, XImagePtr);
434#define image_get_x_image_or_dc(f, img, mask_p, dummy) \
435 image_get_x_image (f, img, mask_p)
436#define image_unget_x_image_or_dc(img, mask_p, ximg, dummy) \
437 image_unget_x_image (img, mask_p, ximg)
438#endif
439
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440#ifdef HAVE_X_WINDOWS
441
547c9269
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442static void image_sync_to_pixmaps (struct frame *, struct image *);
443
4ef0d4d0
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444/* Useful functions defined in the section
445 `Image type independent image structures' below. */
446
f57e2426
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447static unsigned long four_corners_best (XImagePtr ximg,
448 int *corners,
449 unsigned long width,
450 unsigned long height);
4ef0d4d0 451
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452
453/* Create a mask of a bitmap. Note is this not a perfect mask.
454 It's nicer with some borders in this context */
455
578098f3 456void
0766b489 457x_create_bitmap_mask (struct frame *f, ptrdiff_t id)
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458{
459 Pixmap pixmap, mask;
460 XImagePtr ximg, mask_img;
461 unsigned long width, height;
578098f3 462 bool result;
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463 unsigned long bg;
464 unsigned long x, y, xp, xm, yp, ym;
465 GC gc;
466
467 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
468
469 if (!(id > 0))
578098f3 470 return;
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471
472 pixmap = x_bitmap_pixmap (f, id);
473 width = x_bitmap_width (f, id);
474 height = x_bitmap_height (f, id);
475
4d7e6e51 476 block_input ();
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477 ximg = XGetImage (FRAME_X_DISPLAY (f), pixmap, 0, 0, width, height,
478 ~0, ZPixmap);
479
480 if (!ximg)
481 {
4d7e6e51 482 unblock_input ();
578098f3 483 return;
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484 }
485
486 result = x_create_x_image_and_pixmap (f, width, height, 1, &mask_img, &mask);
487
4d7e6e51 488 unblock_input ();
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489 if (!result)
490 {
491 XDestroyImage (ximg);
578098f3 492 return;
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493 }
494
6ac3c7bb 495 bg = four_corners_best (ximg, NULL, width, height);
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496
497 for (y = 0; y < ximg->height; ++y)
498 {
499 for (x = 0; x < ximg->width; ++x)
500 {
501 xp = x != ximg->width - 1 ? x + 1 : 0;
502 xm = x != 0 ? x - 1 : ximg->width - 1;
503 yp = y != ximg->height - 1 ? y + 1 : 0;
504 ym = y != 0 ? y - 1 : ximg->height - 1;
505 if (XGetPixel (ximg, x, y) == bg
506 && XGetPixel (ximg, x, yp) == bg
507 && XGetPixel (ximg, x, ym) == bg
508 && XGetPixel (ximg, xp, y) == bg
509 && XGetPixel (ximg, xp, yp) == bg
510 && XGetPixel (ximg, xp, ym) == bg
511 && XGetPixel (ximg, xm, y) == bg
512 && XGetPixel (ximg, xm, yp) == bg
513 && XGetPixel (ximg, xm, ym) == bg)
514 XPutPixel (mask_img, x, y, 0);
515 else
516 XPutPixel (mask_img, x, y, 1);
517 }
518 }
519
4d7e6e51 520 eassert (input_blocked_p ());
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521 gc = XCreateGC (FRAME_X_DISPLAY (f), mask, 0, NULL);
522 XPutImage (FRAME_X_DISPLAY (f), mask, gc, mask_img, 0, 0, 0, 0,
523 width, height);
524 XFreeGC (FRAME_X_DISPLAY (f), gc);
525
526 dpyinfo->bitmaps[id - 1].have_mask = 1;
527 dpyinfo->bitmaps[id - 1].mask = mask;
528
529 XDestroyImage (ximg);
530 x_destroy_x_image (mask_img);
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531}
532
533#endif /* HAVE_X_WINDOWS */
534
535
536/***********************************************************************
537 Image types
538 ***********************************************************************/
539
4ef0d4d0
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540/* List of supported image types. Use define_image_type to add new
541 types. Use lookup_image_type to find a type for a given symbol. */
542
543static struct image_type *image_types;
544
545/* The symbol `xbm' which is used as the type symbol for XBM images. */
546
955cbe7b 547static Lisp_Object Qxbm;
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548
549/* Keywords. */
550
955cbe7b 551Lisp_Object QCascent, QCmargin, QCrelief;
955cbe7b
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552Lisp_Object QCconversion;
553static Lisp_Object QCheuristic_mask;
554static Lisp_Object QCcolor_symbols;
555static Lisp_Object QCindex, QCmatrix, QCcolor_adjustment, QCmask, QCgeometry;
556static Lisp_Object QCcrop, QCrotation;
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557
558/* Other symbols. */
559
1100a63c 560static Lisp_Object Qcount, Qextension_data, Qdelay;
955cbe7b 561static Lisp_Object Qlaplace, Qemboss, Qedge_detection, Qheuristic;
4ef0d4d0 562
578098f3 563/* Forward function prototypes. */
4ef0d4d0 564
641cfd14 565static struct image_type *lookup_image_type (Lisp_Object);
f57e2426
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566static void x_laplace (struct frame *, struct image *);
567static void x_emboss (struct frame *, struct image *);
578098f3 568static void x_build_heuristic_mask (struct frame *, struct image *,
36a305a7 569 Lisp_Object);
0fda9b75
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570#ifdef WINDOWSNT
571extern Lisp_Object Vlibrary_cache;
0855eb52 572#define CACHE_IMAGE_TYPE(type, status) \
0898ca10 573 do { Vlibrary_cache = Fcons (Fcons (type, status), Vlibrary_cache); } while (0)
84d358f0
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574#else
575#define CACHE_IMAGE_TYPE(type, status)
a9e7a9d5 576#endif
0855eb52
JB
577
578#define ADD_IMAGE_TYPE(type) \
579 do { Vimage_types = Fcons (type, Vimage_types); } while (0)
4ef0d4d0
KS
580
581/* Define a new image type from TYPE. This adds a copy of TYPE to
0855eb52 582 image_types and caches the loading status of TYPE. */
4ef0d4d0 583
bb4d86b4 584static struct image_type *
d07ff9db 585define_image_type (struct image_type *type)
4ef0d4d0 586{
bb4d86b4
CY
587 struct image_type *p = NULL;
588 Lisp_Object target_type = *type->type;
578098f3 589 bool type_valid = 1;
0855eb52 590
4d7e6e51 591 block_input ();
bb4d86b4
CY
592
593 for (p = image_types; p; p = p->next)
594 if (EQ (*p->type, target_type))
595 goto done;
596
597 if (type->init)
0855eb52 598 {
a9e7a9d5 599#if defined HAVE_NTGUI && defined WINDOWSNT
bb4d86b4
CY
600 /* If we failed to load the library before, don't try again. */
601 Lisp_Object tested = Fassq (target_type, Vlibrary_cache);
602 if (CONSP (tested) && NILP (XCDR (tested)))
603 type_valid = 0;
604 else
605#endif
606 {
d07ff9db 607 type_valid = type->init ();
bb4d86b4
CY
608 CACHE_IMAGE_TYPE (target_type, type_valid ? Qt : Qnil);
609 }
610 }
09c01941 611
bb4d86b4 612 if (type_valid)
0855eb52
JB
613 {
614 /* Make a copy of TYPE to avoid a bus error in a dumped Emacs.
615 The initialized data segment is read-only. */
09c01941 616 p = xmalloc (sizeof *p);
ae1d87e2 617 *p = *type;
0855eb52
JB
618 p->next = image_types;
619 image_types = p;
0855eb52
JB
620 }
621
bb4d86b4 622 done:
4d7e6e51 623 unblock_input ();
bb4d86b4 624 return p;
4ef0d4d0
KS
625}
626
627
578098f3 628/* Value is true if OBJECT is a valid Lisp image specification. A
4ef0d4d0
KS
629 valid image specification is a list whose car is the symbol
630 `image', and whose rest is a property list. The property list must
631 contain a value for key `:type'. That value must be the name of a
632 supported image type. The rest of the property list depends on the
633 image type. */
634
578098f3 635bool
d3da34e0 636valid_image_p (Lisp_Object object)
4ef0d4d0 637{
578098f3 638 bool valid_p = 0;
4ef0d4d0
KS
639
640 if (IMAGEP (object))
641 {
642 Lisp_Object tem;
643
644 for (tem = XCDR (object); CONSP (tem); tem = XCDR (tem))
645 if (EQ (XCAR (tem), QCtype))
646 {
647 tem = XCDR (tem);
648 if (CONSP (tem) && SYMBOLP (XCAR (tem)))
649 {
650 struct image_type *type;
651 type = lookup_image_type (XCAR (tem));
652 if (type)
653 valid_p = type->valid_p (object);
654 }
655
656 break;
657 }
658 }
659
660 return valid_p;
661}
662
663
664/* Log error message with format string FORMAT and argument ARG.
665 Signaling an error, e.g. when an image cannot be loaded, is not a
666 good idea because this would interrupt redisplay, and the error
667 message display would lead to another redisplay. This function
668 therefore simply displays a message. */
669
670static void
675e2c69 671image_error (const char *format, Lisp_Object arg1, Lisp_Object arg2)
4ef0d4d0
KS
672{
673 add_to_log (format, arg1, arg2);
674}
675
676
677\f
678/***********************************************************************
679 Image specifications
680 ***********************************************************************/
681
682enum image_value_type
683{
684 IMAGE_DONT_CHECK_VALUE_TYPE,
685 IMAGE_STRING_VALUE,
686 IMAGE_STRING_OR_NIL_VALUE,
687 IMAGE_SYMBOL_VALUE,
688 IMAGE_POSITIVE_INTEGER_VALUE,
c4a07a4c 689 IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR,
4ef0d4d0
KS
690 IMAGE_NON_NEGATIVE_INTEGER_VALUE,
691 IMAGE_ASCENT_VALUE,
692 IMAGE_INTEGER_VALUE,
693 IMAGE_FUNCTION_VALUE,
694 IMAGE_NUMBER_VALUE,
695 IMAGE_BOOL_VALUE
696};
697
698/* Structure used when parsing image specifications. */
699
700struct image_keyword
701{
702 /* Name of keyword. */
675e2c69 703 const char *name;
4ef0d4d0
KS
704
705 /* The type of value allowed. */
706 enum image_value_type type;
707
578098f3
PE
708 /* True means key must be present. */
709 bool mandatory_p;
4ef0d4d0
KS
710
711 /* Used to recognize duplicate keywords in a property list. */
712 int count;
713
714 /* The value that was found. */
715 Lisp_Object value;
716};
717
718
4ef0d4d0
KS
719/* Parse image spec SPEC according to KEYWORDS. A valid image spec
720 has the format (image KEYWORD VALUE ...). One of the keyword/
721 value pairs must be `:type TYPE'. KEYWORDS is a vector of
722 image_keywords structures of size NKEYWORDS describing other
578098f3 723 allowed keyword/value pairs. Value is true if SPEC is valid. */
4ef0d4d0 724
578098f3 725static bool
d3da34e0
JB
726parse_image_spec (Lisp_Object spec, struct image_keyword *keywords,
727 int nkeywords, Lisp_Object type)
4ef0d4d0
KS
728{
729 int i;
730 Lisp_Object plist;
731
732 if (!IMAGEP (spec))
733 return 0;
734
735 plist = XCDR (spec);
736 while (CONSP (plist))
737 {
738 Lisp_Object key, value;
739
740 /* First element of a pair must be a symbol. */
741 key = XCAR (plist);
742 plist = XCDR (plist);
743 if (!SYMBOLP (key))
744 return 0;
745
746 /* There must follow a value. */
747 if (!CONSP (plist))
748 return 0;
749 value = XCAR (plist);
750 plist = XCDR (plist);
751
752 /* Find key in KEYWORDS. Error if not found. */
753 for (i = 0; i < nkeywords; ++i)
42a5b22f 754 if (strcmp (keywords[i].name, SSDATA (SYMBOL_NAME (key))) == 0)
4ef0d4d0
KS
755 break;
756
757 if (i == nkeywords)
758 continue;
759
760 /* Record that we recognized the keyword. If a keywords
761 was found more than once, it's an error. */
762 keywords[i].value = value;
4ef0d4d0
KS
763 if (keywords[i].count > 1)
764 return 0;
d311d28c 765 ++keywords[i].count;
4ef0d4d0
KS
766
767 /* Check type of value against allowed type. */
768 switch (keywords[i].type)
769 {
770 case IMAGE_STRING_VALUE:
771 if (!STRINGP (value))
772 return 0;
773 break;
774
775 case IMAGE_STRING_OR_NIL_VALUE:
776 if (!STRINGP (value) && !NILP (value))
777 return 0;
778 break;
779
780 case IMAGE_SYMBOL_VALUE:
781 if (!SYMBOLP (value))
782 return 0;
783 break;
784
785 case IMAGE_POSITIVE_INTEGER_VALUE:
13464394 786 if (! RANGED_INTEGERP (1, value, INT_MAX))
4ef0d4d0
KS
787 return 0;
788 break;
789
c4a07a4c
PE
790 case IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR:
791 if (RANGED_INTEGERP (0, value, INT_MAX))
4ef0d4d0
KS
792 break;
793 if (CONSP (value)
c4a07a4c
PE
794 && RANGED_INTEGERP (0, XCAR (value), INT_MAX)
795 && RANGED_INTEGERP (0, XCDR (value), INT_MAX))
4ef0d4d0
KS
796 break;
797 return 0;
798
799 case IMAGE_ASCENT_VALUE:
800 if (SYMBOLP (value) && EQ (value, Qcenter))
801 break;
13464394 802 else if (RANGED_INTEGERP (0, value, 100))
4ef0d4d0
KS
803 break;
804 return 0;
805
806 case IMAGE_NON_NEGATIVE_INTEGER_VALUE:
13464394
PE
807 /* Unlike the other integer-related cases, this one does not
808 verify that VALUE fits in 'int'. This is because callers
809 want EMACS_INT. */
4ef0d4d0
KS
810 if (!INTEGERP (value) || XINT (value) < 0)
811 return 0;
812 break;
813
814 case IMAGE_DONT_CHECK_VALUE_TYPE:
815 break;
816
817 case IMAGE_FUNCTION_VALUE:
818 value = indirect_function (value);
ca105506 819 if (!NILP (Ffunctionp (value)))
4ef0d4d0
KS
820 break;
821 return 0;
822
823 case IMAGE_NUMBER_VALUE:
824 if (!INTEGERP (value) && !FLOATP (value))
825 return 0;
826 break;
827
828 case IMAGE_INTEGER_VALUE:
13464394 829 if (! TYPE_RANGED_INTEGERP (int, value))
4ef0d4d0
KS
830 return 0;
831 break;
832
833 case IMAGE_BOOL_VALUE:
834 if (!NILP (value) && !EQ (value, Qt))
835 return 0;
836 break;
837
838 default:
1088b922 839 emacs_abort ();
4ef0d4d0
KS
840 break;
841 }
842
843 if (EQ (key, QCtype) && !EQ (type, value))
844 return 0;
845 }
846
847 /* Check that all mandatory fields are present. */
848 for (i = 0; i < nkeywords; ++i)
849 if (keywords[i].mandatory_p && keywords[i].count == 0)
850 return 0;
851
852 return NILP (plist);
853}
854
855
856/* Return the value of KEY in image specification SPEC. Value is nil
578098f3
PE
857 if KEY is not present in SPEC. Set *FOUND depending on whether KEY
858 was found in SPEC. */
4ef0d4d0
KS
859
860static Lisp_Object
578098f3 861image_spec_value (Lisp_Object spec, Lisp_Object key, bool *found)
4ef0d4d0
KS
862{
863 Lisp_Object tail;
864
a54e2c05 865 eassert (valid_image_p (spec));
4ef0d4d0
KS
866
867 for (tail = XCDR (spec);
868 CONSP (tail) && CONSP (XCDR (tail));
869 tail = XCDR (XCDR (tail)))
870 {
871 if (EQ (XCAR (tail), key))
872 {
873 if (found)
874 *found = 1;
875 return XCAR (XCDR (tail));
876 }
877 }
878
879 if (found)
880 *found = 0;
881 return Qnil;
882}
883
884
885DEFUN ("image-size", Fimage_size, Simage_size, 1, 3, 0,
886 doc: /* Return the size of image SPEC as pair (WIDTH . HEIGHT).
887PIXELS non-nil means return the size in pixels, otherwise return the
888size in canonical character units.
889FRAME is the frame on which the image will be displayed. FRAME nil
890or omitted means use the selected frame. */)
5842a27b 891 (Lisp_Object spec, Lisp_Object pixels, Lisp_Object frame)
4ef0d4d0
KS
892{
893 Lisp_Object size;
894
895 size = Qnil;
896 if (valid_image_p (spec))
897 {
7452b7bd 898 struct frame *f = decode_window_system_frame (frame);
13464394 899 ptrdiff_t id = lookup_image (f, spec);
4ef0d4d0
KS
900 struct image *img = IMAGE_FROM_ID (f, id);
901 int width = img->width + 2 * img->hmargin;
902 int height = img->height + 2 * img->vmargin;
903
904 if (NILP (pixels))
905 size = Fcons (make_float ((double) width / FRAME_COLUMN_WIDTH (f)),
906 make_float ((double) height / FRAME_LINE_HEIGHT (f)));
907 else
908 size = Fcons (make_number (width), make_number (height));
909 }
910 else
911 error ("Invalid image specification");
912
913 return size;
914}
915
916
917DEFUN ("image-mask-p", Fimage_mask_p, Simage_mask_p, 1, 2, 0,
918 doc: /* Return t if image SPEC has a mask bitmap.
919FRAME is the frame on which the image will be displayed. FRAME nil
920or omitted means use the selected frame. */)
5842a27b 921 (Lisp_Object spec, Lisp_Object frame)
4ef0d4d0
KS
922{
923 Lisp_Object mask;
924
925 mask = Qnil;
926 if (valid_image_p (spec))
927 {
7452b7bd 928 struct frame *f = decode_window_system_frame (frame);
13464394 929 ptrdiff_t id = lookup_image (f, spec);
4ef0d4d0
KS
930 struct image *img = IMAGE_FROM_ID (f, id);
931 if (img->mask)
932 mask = Qt;
933 }
934 else
935 error ("Invalid image specification");
936
937 return mask;
938}
939
1546c559
JL
940DEFUN ("image-metadata", Fimage_metadata, Simage_metadata, 1, 2, 0,
941 doc: /* Return metadata for image SPEC.
6ac3c7bb
KS
942FRAME is the frame on which the image will be displayed. FRAME nil
943or omitted means use the selected frame. */)
5842a27b 944 (Lisp_Object spec, Lisp_Object frame)
6ac3c7bb
KS
945{
946 Lisp_Object ext;
947
948 ext = Qnil;
949 if (valid_image_p (spec))
950 {
7452b7bd 951 struct frame *f = decode_window_system_frame (frame);
13464394 952 ptrdiff_t id = lookup_image (f, spec);
6ac3c7bb 953 struct image *img = IMAGE_FROM_ID (f, id);
b50691aa 954 ext = img->lisp_data;
6ac3c7bb
KS
955 }
956
957 return ext;
958}
959
4ef0d4d0
KS
960\f
961/***********************************************************************
962 Image type independent image structures
963 ***********************************************************************/
964
11273115 965#define MAX_IMAGE_SIZE 10.0
4ef0d4d0
KS
966/* Allocate and return a new image structure for image specification
967 SPEC. SPEC has a hash value of HASH. */
968
969static struct image *
0de4bb68 970make_image (Lisp_Object spec, EMACS_UINT hash)
4ef0d4d0 971{
23f86fce 972 struct image *img = xzalloc (sizeof *img);
a2bc5bdd 973 Lisp_Object file = image_spec_value (spec, QCfile, NULL);
4ef0d4d0 974
a54e2c05 975 eassert (valid_image_p (spec));
a2bc5bdd 976 img->dependencies = NILP (file) ? Qnil : list1 (file);
4ef0d4d0 977 img->type = lookup_image_type (image_spec_value (spec, QCtype, NULL));
a54e2c05 978 eassert (img->type != NULL);
4ef0d4d0 979 img->spec = spec;
b50691aa 980 img->lisp_data = Qnil;
4ef0d4d0
KS
981 img->ascent = DEFAULT_IMAGE_ASCENT;
982 img->hash = hash;
6ac3c7bb 983 img->corners[BOT_CORNER] = -1; /* Full image */
4ef0d4d0
KS
984 return img;
985}
986
987
988/* Free image IMG which was used on frame F, including its resources. */
989
990static void
d3da34e0 991free_image (struct frame *f, struct image *img)
4ef0d4d0
KS
992{
993 if (img)
994 {
354884c4 995 struct image_cache *c = FRAME_IMAGE_CACHE (f);
4ef0d4d0
KS
996
997 /* Remove IMG from the hash table of its cache. */
998 if (img->prev)
999 img->prev->next = img->next;
1000 else
1001 c->buckets[img->hash % IMAGE_CACHE_BUCKETS_SIZE] = img->next;
1002
1003 if (img->next)
1004 img->next->prev = img->prev;
1005
1006 c->images[img->id] = NULL;
1007
1008 /* Free resources, then free IMG. */
1009 img->type->free (f, img);
1010 xfree (img);
1011 }
1012}
1013
578098f3 1014/* Return true if the given widths and heights are valid for display. */
f1f25b99 1015
578098f3 1016static bool
d3da34e0 1017check_image_size (struct frame *f, int width, int height)
f1f25b99 1018{
7df4765a 1019 int w, h;
f1f25b99 1020
7df4765a 1021 if (width <= 0 || height <= 0)
f1f25b99
CY
1022 return 0;
1023
7df4765a 1024 if (INTEGERP (Vmax_image_size))
3f791afe
PE
1025 return (width <= XINT (Vmax_image_size)
1026 && height <= XINT (Vmax_image_size));
7df4765a
KS
1027 else if (FLOATP (Vmax_image_size))
1028 {
e5d76069
PE
1029 if (f != NULL)
1030 {
1031 w = FRAME_PIXEL_WIDTH (f);
1032 h = FRAME_PIXEL_HEIGHT (f);
1033 }
1034 else
1035 w = h = 1024; /* Arbitrary size for unknown frame. */
3f791afe
PE
1036 return (width <= XFLOAT_DATA (Vmax_image_size) * w
1037 && height <= XFLOAT_DATA (Vmax_image_size) * h);
7df4765a
KS
1038 }
1039 else
1040 return 1;
f1f25b99 1041}
4ef0d4d0
KS
1042
1043/* Prepare image IMG for display on frame F. Must be called before
1044 drawing an image. */
1045
1046void
d3da34e0 1047prepare_image_for_display (struct frame *f, struct image *img)
4ef0d4d0 1048{
4ef0d4d0 1049 /* We're about to display IMG, so set its timestamp to `now'. */
e9a9ae03 1050 img->timestamp = current_emacs_time ();
4ef0d4d0
KS
1051
1052 /* If IMG doesn't have a pixmap yet, load it now, using the image
1053 type dependent loader function. */
1054 if (img->pixmap == NO_PIXMAP && !img->load_failed_p)
578098f3 1055 img->load_failed_p = ! img->type->load (f, img);
c7fea325 1056
547c9269
YM
1057#ifdef HAVE_X_WINDOWS
1058 if (!img->load_failed_p)
1059 {
1060 block_input ();
1061 image_sync_to_pixmaps (f, img);
1062 unblock_input ();
1063 }
1064#endif
4ef0d4d0
KS
1065}
1066
1067
1068/* Value is the number of pixels for the ascent of image IMG when
1069 drawn in face FACE. */
1070
1071int
d3da34e0 1072image_ascent (struct image *img, struct face *face, struct glyph_slice *slice)
4ef0d4d0 1073{
1938bc36 1074 int height;
4ef0d4d0
KS
1075 int ascent;
1076
1938bc36
KS
1077 if (slice->height == img->height)
1078 height = img->height + img->vmargin;
1079 else if (slice->y == 0)
1080 height = slice->height + img->vmargin;
1081 else
1082 height = slice->height;
1083
4ef0d4d0
KS
1084 if (img->ascent == CENTERED_IMAGE_ASCENT)
1085 {
1086 if (face->font)
1087 {
1088#ifdef HAVE_NTGUI
1089 /* W32 specific version. Why?. ++kfs */
5fc9fdeb
JR
1090 ascent = height / 2 - (FONT_DESCENT (face->font)
1091 - FONT_BASE (face->font)) / 2;
4ef0d4d0
KS
1092#else
1093 /* This expression is arranged so that if the image can't be
1094 exactly centered, it will be moved slightly up. This is
1095 because a typical font is `top-heavy' (due to the presence
1096 uppercase letters), so the image placement should err towards
1097 being top-heavy too. It also just generally looks better. */
5e617bc2
JB
1098 ascent = (height + FONT_BASE (face->font)
1099 - FONT_DESCENT (face->font) + 1) / 2;
4ef0d4d0
KS
1100#endif /* HAVE_NTGUI */
1101 }
1102 else
1103 ascent = height / 2;
1104 }
1105 else
13464394 1106 ascent = height * (img->ascent / 100.0);
4ef0d4d0
KS
1107
1108 return ascent;
1109}
1110
1111\f
1112/* Image background colors. */
1113
1114/* Find the "best" corner color of a bitmap.
1115 On W32, XIMG is assumed to a device context with the bitmap selected. */
1116
1117static RGB_PIXEL_COLOR
d3da34e0
JB
1118four_corners_best (XImagePtr_or_DC ximg, int *corners,
1119 unsigned long width, unsigned long height)
4ef0d4d0 1120{
f0c77cd1 1121 RGB_PIXEL_COLOR corner_pixels[4], best IF_LINT (= 0);
4ef0d4d0
KS
1122 int i, best_count;
1123
6ac3c7bb
KS
1124 if (corners && corners[BOT_CORNER] >= 0)
1125 {
1126 /* Get the colors at the corner_pixels of ximg. */
1127 corner_pixels[0] = GET_PIXEL (ximg, corners[LEFT_CORNER], corners[TOP_CORNER]);
1128 corner_pixels[1] = GET_PIXEL (ximg, corners[RIGHT_CORNER] - 1, corners[TOP_CORNER]);
1129 corner_pixels[2] = GET_PIXEL (ximg, corners[RIGHT_CORNER] - 1, corners[BOT_CORNER] - 1);
1130 corner_pixels[3] = GET_PIXEL (ximg, corners[LEFT_CORNER], corners[BOT_CORNER] - 1);
1131 }
1132 else
1133 {
1134 /* Get the colors at the corner_pixels of ximg. */
1135 corner_pixels[0] = GET_PIXEL (ximg, 0, 0);
1136 corner_pixels[1] = GET_PIXEL (ximg, width - 1, 0);
1137 corner_pixels[2] = GET_PIXEL (ximg, width - 1, height - 1);
1138 corner_pixels[3] = GET_PIXEL (ximg, 0, height - 1);
1139 }
4ef0d4d0
KS
1140 /* Choose the most frequently found color as background. */
1141 for (i = best_count = 0; i < 4; ++i)
1142 {
1143 int j, n;
1144
1145 for (j = n = 0; j < 4; ++j)
6ac3c7bb 1146 if (corner_pixels[i] == corner_pixels[j])
4ef0d4d0
KS
1147 ++n;
1148
1149 if (n > best_count)
6ac3c7bb 1150 best = corner_pixels[i], best_count = n;
4ef0d4d0
KS
1151 }
1152
1153 return best;
1154}
1155
1156/* Portability macros */
1157
1158#ifdef HAVE_NTGUI
1159
4ef0d4d0
KS
1160#define Free_Pixmap(display, pixmap) \
1161 DeleteObject (pixmap)
1162
edfda783
AR
1163#elif defined (HAVE_NS)
1164
edfda783 1165#define Free_Pixmap(display, pixmap) \
ed3751c8 1166 ns_release_object (pixmap)
edfda783 1167
4ef0d4d0
KS
1168#else
1169
4ef0d4d0
KS
1170#define Free_Pixmap(display, pixmap) \
1171 XFreePixmap (display, pixmap)
1172
edfda783 1173#endif /* !HAVE_NTGUI && !HAVE_NS */
4ef0d4d0
KS
1174
1175
1176/* Return the `background' field of IMG. If IMG doesn't have one yet,
1177 it is guessed heuristically. If non-zero, XIMG is an existing
1178 XImage object (or device context with the image selected on W32) to
1f026899 1179 use for the heuristic. */
4ef0d4d0
KS
1180
1181RGB_PIXEL_COLOR
d3da34e0 1182image_background (struct image *img, struct frame *f, XImagePtr_or_DC ximg)
4ef0d4d0
KS
1183{
1184 if (! img->background_valid)
1185 /* IMG doesn't have a background yet, try to guess a reasonable value. */
1186 {
578098f3 1187 bool free_ximg = !ximg;
4ef0d4d0
KS
1188#ifdef HAVE_NTGUI
1189 HGDIOBJ prev;
1190#endif /* HAVE_NTGUI */
1191
1192 if (free_ximg)
547c9269 1193 ximg = image_get_x_image_or_dc (f, img, 0, &prev);
4ef0d4d0 1194
6ac3c7bb 1195 img->background = four_corners_best (ximg, img->corners, img->width, img->height);
4ef0d4d0
KS
1196
1197 if (free_ximg)
547c9269 1198 image_unget_x_image_or_dc (img, 0, ximg, prev);
1f026899 1199
4ef0d4d0
KS
1200 img->background_valid = 1;
1201 }
1202
1203 return img->background;
1204}
1205
1206/* Return the `background_transparent' field of IMG. If IMG doesn't
1207 have one yet, it is guessed heuristically. If non-zero, MASK is an
1208 existing XImage object to use for the heuristic. */
1209
1210int
d3da34e0 1211image_background_transparent (struct image *img, struct frame *f, XImagePtr_or_DC mask)
4ef0d4d0
KS
1212{
1213 if (! img->background_transparent_valid)
1214 /* IMG doesn't have a background yet, try to guess a reasonable value. */
1215 {
1216 if (img->mask)
1217 {
578098f3 1218 bool free_mask = !mask;
4ef0d4d0
KS
1219#ifdef HAVE_NTGUI
1220 HGDIOBJ prev;
1221#endif /* HAVE_NTGUI */
1222
1223 if (free_mask)
547c9269 1224 mask = image_get_x_image_or_dc (f, img, 1, &prev);
4ef0d4d0
KS
1225
1226 img->background_transparent
6ac3c7bb 1227 = (four_corners_best (mask, img->corners, img->width, img->height) == PIX_MASK_RETAIN);
4ef0d4d0
KS
1228
1229 if (free_mask)
547c9269 1230 image_unget_x_image_or_dc (img, 1, mask, prev);
4ef0d4d0
KS
1231 }
1232 else
1233 img->background_transparent = 0;
1234
1235 img->background_transparent_valid = 1;
1236 }
1237
1238 return img->background_transparent;
1239}
1240
1241\f
1242/***********************************************************************
1243 Helper functions for X image types
1244 ***********************************************************************/
1245
547c9269
YM
1246/* Clear X resources of image IMG on frame F according to FLAGS.
1247 FLAGS is bitwise-or of the following masks:
1248 CLEAR_IMAGE_PIXMAP free the pixmap if any.
1249 CLEAR_IMAGE_MASK means clear the mask pixmap if any.
1250 CLEAR_IMAGE_COLORS means free colors allocated for the image, if
1251 any. */
1252
1253#define CLEAR_IMAGE_PIXMAP (1 << 0)
1254#define CLEAR_IMAGE_MASK (1 << 1)
1255#define CLEAR_IMAGE_COLORS (1 << 2)
4ef0d4d0
KS
1256
1257static void
547c9269 1258x_clear_image_1 (struct frame *f, struct image *img, int flags)
4ef0d4d0 1259{
547c9269 1260 if (flags & CLEAR_IMAGE_PIXMAP)
4ef0d4d0 1261 {
547c9269
YM
1262 if (img->pixmap)
1263 {
1264 Free_Pixmap (FRAME_X_DISPLAY (f), img->pixmap);
1265 img->pixmap = NO_PIXMAP;
1266 /* NOTE (HAVE_NS): background color is NOT an indexed color! */
1267 img->background_valid = 0;
1268 }
1269#ifdef HAVE_X_WINDOWS
1270 if (img->ximg)
1271 {
1272 x_destroy_x_image (img->ximg);
1273 img->ximg = NULL;
1274 img->background_valid = 0;
1275 }
1276#endif
4ef0d4d0
KS
1277 }
1278
547c9269 1279 if (flags & CLEAR_IMAGE_MASK)
4ef0d4d0 1280 {
547c9269
YM
1281 if (img->mask)
1282 {
1283 Free_Pixmap (FRAME_X_DISPLAY (f), img->mask);
1284 img->mask = NO_PIXMAP;
1285 img->background_transparent_valid = 0;
1286 }
1287#ifdef HAVE_X_WINDOWS
1288 if (img->mask_img)
1289 {
1290 x_destroy_x_image (img->mask_img);
1291 img->mask_img = NULL;
1292 img->background_transparent_valid = 0;
1293 }
1294#endif
4ef0d4d0
KS
1295 }
1296
547c9269 1297 if ((flags & CLEAR_IMAGE_COLORS) && img->ncolors)
4ef0d4d0 1298 {
4ef0d4d0
KS
1299 /* W32_TODO: color table support. */
1300#ifdef HAVE_X_WINDOWS
1301 x_free_colors (f, img->colors, img->ncolors);
1302#endif /* HAVE_X_WINDOWS */
1303 xfree (img->colors);
1304 img->colors = NULL;
1305 img->ncolors = 0;
1306 }
c7fea325 1307
4ef0d4d0
KS
1308}
1309
1310/* Free X resources of image IMG which is used on frame F. */
1311
1312static void
d3da34e0 1313x_clear_image (struct frame *f, struct image *img)
4ef0d4d0 1314{
4d7e6e51 1315 block_input ();
547c9269
YM
1316 x_clear_image_1 (f, img,
1317 CLEAR_IMAGE_PIXMAP | CLEAR_IMAGE_MASK | CLEAR_IMAGE_COLORS);
4d7e6e51 1318 unblock_input ();
4ef0d4d0
KS
1319}
1320
1321
1322/* Allocate color COLOR_NAME for image IMG on frame F. If color
1323 cannot be allocated, use DFLT. Add a newly allocated color to
1324 IMG->colors, so that it can be freed again. Value is the pixel
1325 color. */
1326
1327static unsigned long
d3da34e0
JB
1328x_alloc_image_color (struct frame *f, struct image *img, Lisp_Object color_name,
1329 unsigned long dflt)
4ef0d4d0
KS
1330{
1331 XColor color;
1332 unsigned long result;
1333
a54e2c05 1334 eassert (STRINGP (color_name));
4ef0d4d0 1335
3f791afe
PE
1336 if (x_defined_color (f, SSDATA (color_name), &color, 1)
1337 && img->ncolors < min (min (PTRDIFF_MAX, SIZE_MAX) / sizeof *img->colors,
1338 INT_MAX))
4ef0d4d0
KS
1339 {
1340 /* This isn't called frequently so we get away with simply
1341 reallocating the color vector to the needed size, here. */
ddff3151 1342 ptrdiff_t ncolors = img->ncolors + 1;
38182d90 1343 img->colors = xrealloc (img->colors, ncolors * sizeof *img->colors);
ddff3151
PE
1344 img->colors[ncolors - 1] = color.pixel;
1345 img->ncolors = ncolors;
4ef0d4d0
KS
1346 result = color.pixel;
1347 }
1348 else
1349 result = dflt;
1350
1351 return result;
1352}
1353
1354
1355\f
1356/***********************************************************************
1357 Image Cache
1358 ***********************************************************************/
1359
f57e2426 1360static void cache_image (struct frame *f, struct image *img);
4ef0d4d0
KS
1361
1362/* Return a new, initialized image cache that is allocated from the
1363 heap. Call free_image_cache to free an image cache. */
1364
1365struct image_cache *
d3da34e0 1366make_image_cache (void)
4ef0d4d0 1367{
23f86fce 1368 struct image_cache *c = xzalloc (sizeof *c);
4ef0d4d0
KS
1369 int size;
1370
ddff3151 1371 size = 50;
23f86fce 1372 c->images = xmalloc (size * sizeof *c->images);
ddff3151 1373 c->size = size;
4ef0d4d0 1374 size = IMAGE_CACHE_BUCKETS_SIZE * sizeof *c->buckets;
23f86fce 1375 c->buckets = xzalloc (size);
4ef0d4d0
KS
1376 return c;
1377}
1378
1379
d3c35d17
CY
1380/* Find an image matching SPEC in the cache, and return it. If no
1381 image is found, return NULL. */
1382static struct image *
0de4bb68 1383search_image_cache (struct frame *f, Lisp_Object spec, EMACS_UINT hash)
483e7ae0 1384{
91be6b66 1385 struct image *img;
354884c4 1386 struct image_cache *c = FRAME_IMAGE_CACHE (f);
483e7ae0
CY
1387 int i = hash % IMAGE_CACHE_BUCKETS_SIZE;
1388
8198352b
CY
1389 if (!c) return NULL;
1390
d3c35d17
CY
1391 /* If the image spec does not specify a background color, the cached
1392 image must have the same background color as the current frame.
cf26ebe8
CY
1393 The foreground color must also match, for the sake of monochrome
1394 images.
1395
1396 In fact, we could ignore the foreground color matching condition
1397 for color images, or if the image spec specifies :foreground;
1398 similarly we could ignore the background color matching condition
1399 for formats that don't use transparency (such as jpeg), or if the
1400 image spec specifies :background. However, the extra memory
1401 usage is probably negligible in practice, so we don't bother. */
d3c35d17 1402
483e7ae0 1403 for (img = c->buckets[i]; img; img = img->next)
d3c35d17
CY
1404 if (img->hash == hash
1405 && !NILP (Fequal (img->spec, spec))
c5b8e0ea
YM
1406 && img->frame_foreground == FRAME_FOREGROUND_PIXEL (f)
1407 && img->frame_background == FRAME_BACKGROUND_PIXEL (f))
d3c35d17
CY
1408 break;
1409 return img;
1410}
1411
1412
1413/* Search frame F for an image with spec SPEC, and free it. */
1414
1415static void
d3da34e0 1416uncache_image (struct frame *f, Lisp_Object spec)
d3c35d17
CY
1417{
1418 struct image *img = search_image_cache (f, spec, sxhash (spec, 0));
1419 if (img)
be3faa80
CY
1420 {
1421 free_image (f, img);
1422 /* As display glyphs may still be referring to the image ID, we
1423 must garbage the frame (Bug#6426). */
1424 SET_FRAME_GARBAGED (f);
1425 }
483e7ae0
CY
1426}
1427
1428
4ef0d4d0
KS
1429/* Free image cache of frame F. Be aware that X frames share images
1430 caches. */
1431
1432void
d3da34e0 1433free_image_cache (struct frame *f)
4ef0d4d0 1434{
354884c4 1435 struct image_cache *c = FRAME_IMAGE_CACHE (f);
4ef0d4d0
KS
1436 if (c)
1437 {
13464394 1438 ptrdiff_t i;
4ef0d4d0
KS
1439
1440 /* Cache should not be referenced by any frame when freed. */
a54e2c05 1441 eassert (c->refcount == 0);
4ef0d4d0
KS
1442
1443 for (i = 0; i < c->used; ++i)
1444 free_image (f, c->images[i]);
1445 xfree (c->images);
1446 xfree (c->buckets);
1447 xfree (c);
354884c4 1448 FRAME_IMAGE_CACHE (f) = NULL;
4ef0d4d0
KS
1449 }
1450}
1451
1452
a2bc5bdd
SM
1453/* Clear image cache of frame F. FILTER=t means free all images.
1454 FILTER=nil means clear only images that haven't been
1455 displayed for some time.
1456 Else, only free the images which have FILTER in their `dependencies'.
1457 Should be called from time to time to reduce the number of loaded images.
1458 If image-cache-eviction-delay is non-nil, this frees images in the cache
1459 which weren't displayed for at least that many seconds. */
4ef0d4d0 1460
ce0ad53d 1461static void
a2bc5bdd 1462clear_image_cache (struct frame *f, Lisp_Object filter)
4ef0d4d0 1463{
354884c4 1464 struct image_cache *c = FRAME_IMAGE_CACHE (f);
4ef0d4d0 1465
98fe5161 1466 if (c)
4ef0d4d0 1467 {
13464394 1468 ptrdiff_t i, nfreed = 0;
4ef0d4d0
KS
1469
1470 /* Block input so that we won't be interrupted by a SIGIO
1471 while being in an inconsistent state. */
4d7e6e51 1472 block_input ();
4ef0d4d0 1473
98fe5161
CY
1474 if (!NILP (filter))
1475 {
1476 /* Filter image cache. */
1477 for (i = 0; i < c->used; ++i)
1478 {
1479 struct image *img = c->images[i];
1480 if (img && (EQ (Qt, filter)
1481 || !NILP (Fmember (filter, img->dependencies))))
1482 {
1483 free_image (f, img);
1484 ++nfreed;
1485 }
1486 }
1487 }
1488 else if (INTEGERP (Vimage_cache_eviction_delay))
4ef0d4d0 1489 {
98fe5161 1490 /* Free cache based on timestamp. */
d35af63c
PE
1491 EMACS_TIME old, t;
1492 double delay;
13464394 1493 ptrdiff_t nimages = 0;
98fe5161
CY
1494
1495 for (i = 0; i < c->used; ++i)
1496 if (c->images[i])
1497 nimages++;
1498
1499 /* If the number of cached images has grown unusually large,
1500 decrease the cache eviction delay (Bug#6230). */
13464394 1501 delay = XINT (Vimage_cache_eviction_delay);
98fe5161 1502 if (nimages > 40)
13464394
PE
1503 delay = 1600 * delay / nimages / nimages;
1504 delay = max (delay, 1);
98fe5161 1505
e9a9ae03
PE
1506 t = current_emacs_time ();
1507 old = sub_emacs_time (t, EMACS_TIME_FROM_DOUBLE (delay));
98fe5161
CY
1508
1509 for (i = 0; i < c->used; ++i)
4ef0d4d0 1510 {
98fe5161 1511 struct image *img = c->images[i];
d35af63c 1512 if (img && EMACS_TIME_LT (img->timestamp, old))
98fe5161
CY
1513 {
1514 free_image (f, img);
1515 ++nfreed;
1516 }
4ef0d4d0
KS
1517 }
1518 }
1519
1520 /* We may be clearing the image cache because, for example,
1521 Emacs was iconified for a longer period of time. In that
1522 case, current matrices may still contain references to
1523 images freed above. So, clear these matrices. */
1524 if (nfreed)
1525 {
1526 Lisp_Object tail, frame;
1527
1528 FOR_EACH_FRAME (tail, frame)
1529 {
6ae141d6
PE
1530 struct frame *fr = XFRAME (frame);
1531 if (FRAME_IMAGE_CACHE (fr) == c)
1532 clear_current_matrices (fr);
4ef0d4d0
KS
1533 }
1534
1535 ++windows_or_buffers_changed;
1536 }
1537
4d7e6e51 1538 unblock_input ();
4ef0d4d0
KS
1539 }
1540}
1541
354884c4 1542void
a2bc5bdd 1543clear_image_caches (Lisp_Object filter)
354884c4
SM
1544{
1545 /* FIXME: We want to do
1546 * struct terminal *t;
1547 * for (t = terminal_list; t; t = t->next_terminal)
1548 * clear_image_cache (t, filter); */
1549 Lisp_Object tail, frame;
1550 FOR_EACH_FRAME (tail, frame)
1551 if (FRAME_WINDOW_P (XFRAME (frame)))
a2bc5bdd 1552 clear_image_cache (XFRAME (frame), filter);
354884c4 1553}
4ef0d4d0
KS
1554
1555DEFUN ("clear-image-cache", Fclear_image_cache, Sclear_image_cache,
1556 0, 1, 0,
a2bc5bdd
SM
1557 doc: /* Clear the image cache.
1558FILTER nil or a frame means clear all images in the selected frame.
1559FILTER t means clear the image caches of all frames.
1560Anything else, means only clear those images which refer to FILTER,
1561which is then usually a filename. */)
5842a27b 1562 (Lisp_Object filter)
4ef0d4d0 1563{
a2bc5bdd
SM
1564 if (!(EQ (filter, Qnil) || FRAMEP (filter)))
1565 clear_image_caches (filter);
4ef0d4d0 1566 else
7452b7bd 1567 clear_image_cache (decode_window_system_frame (filter), Qt);
4ef0d4d0
KS
1568
1569 return Qnil;
1570}
1571
1572
110683ad 1573DEFUN ("image-flush", Fimage_flush, Simage_flush,
483e7ae0 1574 1, 2, 0,
110683ad
CY
1575 doc: /* Fush the image with specification SPEC on frame FRAME.
1576This removes the image from the Emacs image cache. If SPEC specifies
1577an image file, the next redisplay of this image will read from the
1578current contents of that file.
1579
483e7ae0
CY
1580FRAME nil or omitted means use the selected frame.
1581FRAME t means refresh the image on all frames. */)
5842a27b 1582 (Lisp_Object spec, Lisp_Object frame)
483e7ae0
CY
1583{
1584 if (!valid_image_p (spec))
1585 error ("Invalid image specification");
1586
1587 if (EQ (frame, Qt))
1588 {
1589 Lisp_Object tail;
1590 FOR_EACH_FRAME (tail, frame)
1591 {
1592 struct frame *f = XFRAME (frame);
1593 if (FRAME_WINDOW_P (f))
1594 uncache_image (f, spec);
1595 }
1596 }
1597 else
7452b7bd 1598 uncache_image (decode_window_system_frame (frame), spec);
483e7ae0
CY
1599
1600 return Qnil;
1601}
1602
1603
4ef0d4d0
KS
1604/* Compute masks and transform image IMG on frame F, as specified
1605 by the image's specification, */
1606
1607static void
d3da34e0 1608postprocess_image (struct frame *f, struct image *img)
4ef0d4d0
KS
1609{
1610 /* Manipulation of the image's mask. */
1611 if (img->pixmap)
1612 {
1613 Lisp_Object conversion, spec;
1614 Lisp_Object mask;
1615
1616 spec = img->spec;
1617
1618 /* `:heuristic-mask t'
1619 `:mask heuristic'
1620 means build a mask heuristically.
1621 `:heuristic-mask (R G B)'
1622 `:mask (heuristic (R G B))'
1623 means build a mask from color (R G B) in the
1624 image.
1625 `:mask nil'
1626 means remove a mask, if any. */
1627
1628 mask = image_spec_value (spec, QCheuristic_mask, NULL);
1629 if (!NILP (mask))
1630 x_build_heuristic_mask (f, img, mask);
1631 else
1632 {
578098f3 1633 bool found_p;
4ef0d4d0
KS
1634
1635 mask = image_spec_value (spec, QCmask, &found_p);
1636
1637 if (EQ (mask, Qheuristic))
1638 x_build_heuristic_mask (f, img, Qt);
1639 else if (CONSP (mask)
1640 && EQ (XCAR (mask), Qheuristic))
1641 {
1642 if (CONSP (XCDR (mask)))
1643 x_build_heuristic_mask (f, img, XCAR (XCDR (mask)));
1644 else
1645 x_build_heuristic_mask (f, img, XCDR (mask));
1646 }
1647 else if (NILP (mask) && found_p && img->mask)
547c9269 1648 x_clear_image_1 (f, img, CLEAR_IMAGE_MASK);
4ef0d4d0
KS
1649 }
1650
1651
1652 /* Should we apply an image transformation algorithm? */
1653 conversion = image_spec_value (spec, QCconversion, NULL);
1654 if (EQ (conversion, Qdisabled))
1655 x_disable_image (f, img);
1656 else if (EQ (conversion, Qlaplace))
1657 x_laplace (f, img);
1658 else if (EQ (conversion, Qemboss))
1659 x_emboss (f, img);
1660 else if (CONSP (conversion)
1661 && EQ (XCAR (conversion), Qedge_detection))
1662 {
1663 Lisp_Object tem;
1664 tem = XCDR (conversion);
1665 if (CONSP (tem))
1666 x_edge_detection (f, img,
1667 Fplist_get (tem, QCmatrix),
1668 Fplist_get (tem, QCcolor_adjustment));
1669 }
1670 }
1671}
1672
1673
1674/* Return the id of image with Lisp specification SPEC on frame F.
1675 SPEC must be a valid Lisp image specification (see valid_image_p). */
1676
13464394 1677ptrdiff_t
d3da34e0 1678lookup_image (struct frame *f, Lisp_Object spec)
4ef0d4d0 1679{
4ef0d4d0 1680 struct image *img;
0de4bb68 1681 EMACS_UINT hash;
4ef0d4d0
KS
1682
1683 /* F must be a window-system frame, and SPEC must be a valid image
1684 specification. */
a54e2c05
DA
1685 eassert (FRAME_WINDOW_P (f));
1686 eassert (valid_image_p (spec));
4ef0d4d0 1687
4ef0d4d0
KS
1688 /* Look up SPEC in the hash table of the image cache. */
1689 hash = sxhash (spec, 0);
d3c35d17 1690 img = search_image_cache (f, spec, hash);
f1f25b99
CY
1691 if (img && img->load_failed_p)
1692 {
1693 free_image (f, img);
1694 img = NULL;
1695 }
1696
4ef0d4d0
KS
1697 /* If not found, create a new image and cache it. */
1698 if (img == NULL)
1699 {
4d7e6e51 1700 block_input ();
4ef0d4d0
KS
1701 img = make_image (spec, hash);
1702 cache_image (f, img);
578098f3 1703 img->load_failed_p = ! img->type->load (f, img);
c5b8e0ea
YM
1704 img->frame_foreground = FRAME_FOREGROUND_PIXEL (f);
1705 img->frame_background = FRAME_BACKGROUND_PIXEL (f);
4ef0d4d0
KS
1706
1707 /* If we can't load the image, and we don't have a width and
1708 height, use some arbitrary width and height so that we can
1709 draw a rectangle for it. */
1710 if (img->load_failed_p)
1711 {
1712 Lisp_Object value;
1713
1714 value = image_spec_value (spec, QCwidth, NULL);
1715 img->width = (INTEGERP (value)
1716 ? XFASTINT (value) : DEFAULT_IMAGE_WIDTH);
1717 value = image_spec_value (spec, QCheight, NULL);
1718 img->height = (INTEGERP (value)
1719 ? XFASTINT (value) : DEFAULT_IMAGE_HEIGHT);
1720 }
1721 else
1722 {
1723 /* Handle image type independent image attributes
1724 `:ascent ASCENT', `:margin MARGIN', `:relief RELIEF',
1725 `:background COLOR'. */
1726 Lisp_Object ascent, margin, relief, bg;
d311d28c 1727 int relief_bound;
4ef0d4d0
KS
1728
1729 ascent = image_spec_value (spec, QCascent, NULL);
1730 if (INTEGERP (ascent))
1731 img->ascent = XFASTINT (ascent);
1732 else if (EQ (ascent, Qcenter))
1733 img->ascent = CENTERED_IMAGE_ASCENT;
1734
1735 margin = image_spec_value (spec, QCmargin, NULL);
13464394 1736 if (INTEGERP (margin))
4ef0d4d0 1737 img->vmargin = img->hmargin = XFASTINT (margin);
13464394 1738 else if (CONSP (margin))
4ef0d4d0 1739 {
13464394
PE
1740 img->hmargin = XFASTINT (XCAR (margin));
1741 img->vmargin = XFASTINT (XCDR (margin));
4ef0d4d0
KS
1742 }
1743
1744 relief = image_spec_value (spec, QCrelief, NULL);
d311d28c
PE
1745 relief_bound = INT_MAX - max (img->hmargin, img->vmargin);
1746 if (RANGED_INTEGERP (- relief_bound, relief, relief_bound))
4ef0d4d0
KS
1747 {
1748 img->relief = XINT (relief);
1ea40aa2
EZ
1749 img->hmargin += eabs (img->relief);
1750 img->vmargin += eabs (img->relief);
4ef0d4d0
KS
1751 }
1752
1753 if (! img->background_valid)
1754 {
1755 bg = image_spec_value (img->spec, QCbackground, NULL);
1756 if (!NILP (bg))
1757 {
1758 img->background
1759 = x_alloc_image_color (f, img, bg,
1760 FRAME_BACKGROUND_PIXEL (f));
1761 img->background_valid = 1;
1762 }
1763 }
1764
1765 /* Do image transformations and compute masks, unless we
1766 don't have the image yet. */
1767 if (!EQ (*img->type->type, Qpostscript))
1768 postprocess_image (f, img);
1769 }
1770
4d7e6e51 1771 unblock_input ();
4ef0d4d0
KS
1772 }
1773
1774 /* We're using IMG, so set its timestamp to `now'. */
e9a9ae03 1775 img->timestamp = current_emacs_time ();
4ef0d4d0 1776
4ef0d4d0
KS
1777 /* Value is the image id. */
1778 return img->id;
1779}
1780
1781
1782/* Cache image IMG in the image cache of frame F. */
1783
1784static void
d3da34e0 1785cache_image (struct frame *f, struct image *img)
4ef0d4d0 1786{
354884c4 1787 struct image_cache *c = FRAME_IMAGE_CACHE (f);
13464394 1788 ptrdiff_t i;
4ef0d4d0
KS
1789
1790 /* Find a free slot in c->images. */
1791 for (i = 0; i < c->used; ++i)
1792 if (c->images[i] == NULL)
1793 break;
1794
1795 /* If no free slot found, maybe enlarge c->images. */
1796 if (i == c->used && c->used == c->size)
a69fbedb 1797 c->images = xpalloc (c->images, &c->size, 1, -1, sizeof *c->images);
4ef0d4d0
KS
1798
1799 /* Add IMG to c->images, and assign IMG an id. */
1800 c->images[i] = img;
1801 img->id = i;
1802 if (i == c->used)
1803 ++c->used;
1804
1805 /* Add IMG to the cache's hash table. */
1806 i = img->hash % IMAGE_CACHE_BUCKETS_SIZE;
1807 img->next = c->buckets[i];
1808 if (img->next)
1809 img->next->prev = img;
1810 img->prev = NULL;
1811 c->buckets[i] = img;
1812}
1813
1814
1815/* Call FN on every image in the image cache of frame F. Used to mark
1816 Lisp Objects in the image cache. */
1817
354884c4
SM
1818/* Mark Lisp objects in image IMG. */
1819
1820static void
d3da34e0 1821mark_image (struct image *img)
354884c4
SM
1822{
1823 mark_object (img->spec);
a2bc5bdd 1824 mark_object (img->dependencies);
354884c4 1825
b50691aa
CY
1826 if (!NILP (img->lisp_data))
1827 mark_object (img->lisp_data);
354884c4
SM
1828}
1829
1830
4ef0d4d0 1831void
354884c4 1832mark_image_cache (struct image_cache *c)
4ef0d4d0 1833{
354884c4 1834 if (c)
4ef0d4d0 1835 {
13464394 1836 ptrdiff_t i;
354884c4
SM
1837 for (i = 0; i < c->used; ++i)
1838 if (c->images[i])
1839 mark_image (c->images[i]);
4ef0d4d0
KS
1840 }
1841}
1842
1843
1844\f
1845/***********************************************************************
9e2a2647 1846 X / NS / W32 support code
4ef0d4d0
KS
1847 ***********************************************************************/
1848
0fda9b75 1849#ifdef WINDOWSNT
4ef0d4d0
KS
1850
1851/* Macro for defining functions that will be loaded from image DLLs. */
dbdb9a7c 1852#define DEF_IMGLIB_FN(rettype,func,args) static rettype (FAR CDECL *fn_##func)args
4ef0d4d0
KS
1853
1854/* Macro for loading those image functions from the library. */
1855#define LOAD_IMGLIB_FN(lib,func) { \
1856 fn_##func = (void *) GetProcAddress (lib, #func); \
1857 if (!fn_##func) return 0; \
1858 }
1859
0fda9b75 1860#endif /* WINDOWSNT */
4ef0d4d0 1861
578098f3 1862/* Return true if XIMG's size WIDTH x HEIGHT doesn't break the
476371c4 1863 windowing system.
ca4aa935
PE
1864 WIDTH and HEIGHT must both be positive.
1865 If XIMG is null, assume it is a bitmap. */
578098f3 1866static bool
ca4aa935
PE
1867x_check_image_size (XImagePtr ximg, int width, int height)
1868{
476371c4 1869#ifdef HAVE_X_WINDOWS
ca4aa935
PE
1870 /* Respect Xlib's limits: it cannot deal with images that have more
1871 than INT_MAX (and/or UINT_MAX) bytes. And respect Emacs's limits
476371c4 1872 of PTRDIFF_MAX (and/or SIZE_MAX) bytes for any object. */
ca4aa935
PE
1873 enum
1874 {
1875 XLIB_BYTES_MAX = min (INT_MAX, UINT_MAX),
1876 X_IMAGE_BYTES_MAX = min (XLIB_BYTES_MAX, min (PTRDIFF_MAX, SIZE_MAX))
1877 };
1878
1879 int bitmap_pad, depth, bytes_per_line;
1880 if (ximg)
1881 {
1882 bitmap_pad = ximg->bitmap_pad;
1883 depth = ximg->depth;
1884 bytes_per_line = ximg->bytes_per_line;
1885 }
1886 else
1887 {
1888 bitmap_pad = 8;
1889 depth = 1;
1890 bytes_per_line = (width >> 3) + ((width & 7) != 0);
1891 }
1892 return (width <= (INT_MAX - (bitmap_pad - 1)) / depth
1893 && height <= X_IMAGE_BYTES_MAX / bytes_per_line);
476371c4
PE
1894#else
1895 /* FIXME: Implement this check for the HAVE_NS and HAVE_NTGUI cases.
1896 For now, assume that every image size is allowed on these systems. */
1897 return 1;
1898#endif
ca4aa935 1899}
4ef0d4d0
KS
1900
1901/* Create an XImage and a pixmap of size WIDTH x HEIGHT for use on
1902 frame F. Set *XIMG and *PIXMAP to the XImage and Pixmap created.
1903 Set (*XIMG)->data to a raster of WIDTH x HEIGHT pixels allocated
1904 via xmalloc. Print error messages via image_error if an error
578098f3 1905 occurs. Value is true if successful.
4ef0d4d0
KS
1906
1907 On W32, a DEPTH of zero signifies a 24 bit image, otherwise DEPTH
1908 should indicate the bit depth of the image. */
1909
578098f3 1910static bool
d3da34e0
JB
1911x_create_x_image_and_pixmap (struct frame *f, int width, int height, int depth,
1912 XImagePtr *ximg, Pixmap *pixmap)
4ef0d4d0
KS
1913{
1914#ifdef HAVE_X_WINDOWS
1915 Display *display = FRAME_X_DISPLAY (f);
1916 Window window = FRAME_X_WINDOW (f);
1917 Screen *screen = FRAME_X_SCREEN (f);
1918
4d7e6e51 1919 eassert (input_blocked_p ());
4ef0d4d0
KS
1920
1921 if (depth <= 0)
1922 depth = DefaultDepthOfScreen (screen);
1923 *ximg = XCreateImage (display, DefaultVisualOfScreen (screen),
1924 depth, ZPixmap, 0, NULL, width, height,
1925 depth > 16 ? 32 : depth > 8 ? 16 : 8, 0);
1926 if (*ximg == NULL)
1927 {
1928 image_error ("Unable to allocate X image", Qnil, Qnil);
1929 return 0;
1930 }
1931
ca4aa935
PE
1932 if (! x_check_image_size (*ximg, width, height))
1933 {
1934 x_destroy_x_image (*ximg);
1935 *ximg = NULL;
1936 image_error ("Image too large (%dx%d)",
1937 make_number (width), make_number (height));
1938 return 0;
1939 }
1940
4ef0d4d0 1941 /* Allocate image raster. */
23f86fce 1942 (*ximg)->data = xmalloc ((*ximg)->bytes_per_line * height);
4ef0d4d0
KS
1943
1944 /* Allocate a pixmap of the same size. */
1945 *pixmap = XCreatePixmap (display, window, width, height, depth);
1946 if (*pixmap == NO_PIXMAP)
1947 {
1948 x_destroy_x_image (*ximg);
1949 *ximg = NULL;
1950 image_error ("Unable to create X pixmap", Qnil, Qnil);
1951 return 0;
1952 }
1953
1954 return 1;
1955#endif /* HAVE_X_WINDOWS */
1956
1957#ifdef HAVE_NTGUI
1958
1959 BITMAPINFOHEADER *header;
1960 HDC hdc;
1961 int scanline_width_bits;
1962 int remainder;
1963 int palette_colors = 0;
1964
1965 if (depth == 0)
1966 depth = 24;
1967
1968 if (depth != 1 && depth != 4 && depth != 8
1969 && depth != 16 && depth != 24 && depth != 32)
1970 {
1971 image_error ("Invalid image bit depth specified", Qnil, Qnil);
1972 return 0;
1973 }
1974
1975 scanline_width_bits = width * depth;
1976 remainder = scanline_width_bits % 32;
1977
1978 if (remainder)
1979 scanline_width_bits += 32 - remainder;
1980
1981 /* Bitmaps with a depth less than 16 need a palette. */
1982 /* BITMAPINFO structure already contains the first RGBQUAD. */
1983 if (depth < 16)
657d08d3 1984 palette_colors = 1 << (depth - 1);
4ef0d4d0
KS
1985
1986 *ximg = xmalloc (sizeof (XImage) + palette_colors * sizeof (RGBQUAD));
4ef0d4d0 1987
72af86bd
AS
1988 header = &(*ximg)->info.bmiHeader;
1989 memset (&(*ximg)->info, 0, sizeof (BITMAPINFO));
4ef0d4d0
KS
1990 header->biSize = sizeof (*header);
1991 header->biWidth = width;
1992 header->biHeight = -height; /* negative indicates a top-down bitmap. */
1993 header->biPlanes = 1;
1994 header->biBitCount = depth;
1995 header->biCompression = BI_RGB;
1996 header->biClrUsed = palette_colors;
1997
1998 /* TODO: fill in palette. */
1999 if (depth == 1)
2000 {
2001 (*ximg)->info.bmiColors[0].rgbBlue = 0;
2002 (*ximg)->info.bmiColors[0].rgbGreen = 0;
2003 (*ximg)->info.bmiColors[0].rgbRed = 0;
2004 (*ximg)->info.bmiColors[0].rgbReserved = 0;
2005 (*ximg)->info.bmiColors[1].rgbBlue = 255;
2006 (*ximg)->info.bmiColors[1].rgbGreen = 255;
2007 (*ximg)->info.bmiColors[1].rgbRed = 255;
2008 (*ximg)->info.bmiColors[1].rgbReserved = 0;
2009 }
2010
2011 hdc = get_frame_dc (f);
2012
2013 /* Create a DIBSection and raster array for the bitmap,
2014 and store its handle in *pixmap. */
2015 *pixmap = CreateDIBSection (hdc, &((*ximg)->info),
2016 (depth < 16) ? DIB_PAL_COLORS : DIB_RGB_COLORS,
2e09fef1
EZ
2017 /* casting avoids a GCC warning */
2018 (void **)&((*ximg)->data), NULL, 0);
4ef0d4d0
KS
2019
2020 /* Realize display palette and garbage all frames. */
2021 release_frame_dc (f, hdc);
2022
2023 if (*pixmap == NULL)
2024 {
5fc9fdeb 2025 DWORD err = GetLastError ();
4ef0d4d0
KS
2026 Lisp_Object errcode;
2027 /* All system errors are < 10000, so the following is safe. */
13464394 2028 XSETINT (errcode, err);
4ef0d4d0
KS
2029 image_error ("Unable to create bitmap, error code %d", errcode, Qnil);
2030 x_destroy_x_image (*ximg);
2031 return 0;
2032 }
2033
2034 return 1;
2035
2036#endif /* HAVE_NTGUI */
2037
edfda783 2038#ifdef HAVE_NS
ed3751c8 2039 *pixmap = ns_image_for_XPM (width, height, depth);
edfda783
AR
2040 if (*pixmap == 0)
2041 {
2042 *ximg = NULL;
2043 image_error ("Unable to allocate NSImage for XPM pixmap", Qnil, Qnil);
2044 return 0;
2045 }
2046 *ximg = *pixmap;
2047 return 1;
2048#endif
4ef0d4d0
KS
2049}
2050
2051
2052/* Destroy XImage XIMG. Free XIMG->data. */
2053
2054static void
d3da34e0 2055x_destroy_x_image (XImagePtr ximg)
4ef0d4d0 2056{
4d7e6e51 2057 eassert (input_blocked_p ());
4ef0d4d0
KS
2058 if (ximg)
2059 {
2060#ifdef HAVE_X_WINDOWS
2061 xfree (ximg->data);
2062 ximg->data = NULL;
2063 XDestroyImage (ximg);
2064#endif /* HAVE_X_WINDOWS */
2065#ifdef HAVE_NTGUI
2066 /* Data will be freed by DestroyObject. */
2067 ximg->data = NULL;
2068 xfree (ximg);
2069#endif /* HAVE_NTGUI */
edfda783 2070#ifdef HAVE_NS
ed3751c8 2071 ns_release_object (ximg);
edfda783 2072#endif /* HAVE_NS */
4ef0d4d0
KS
2073 }
2074}
2075
2076
2077/* Put XImage XIMG into pixmap PIXMAP on frame F. WIDTH and HEIGHT
2078 are width and height of both the image and pixmap. */
2079
2080static void
d3da34e0 2081x_put_x_image (struct frame *f, XImagePtr ximg, Pixmap pixmap, int width, int height)
4ef0d4d0
KS
2082{
2083#ifdef HAVE_X_WINDOWS
2084 GC gc;
2085
4d7e6e51 2086 eassert (input_blocked_p ());
4ef0d4d0
KS
2087 gc = XCreateGC (FRAME_X_DISPLAY (f), pixmap, 0, NULL);
2088 XPutImage (FRAME_X_DISPLAY (f), pixmap, gc, ximg, 0, 0, 0, 0, width, height);
2089 XFreeGC (FRAME_X_DISPLAY (f), gc);
2090#endif /* HAVE_X_WINDOWS */
2091
2092#ifdef HAVE_NTGUI
2093#if 0 /* I don't think this is necessary looking at where it is used. */
2094 HDC hdc = get_frame_dc (f);
2095 SetDIBits (hdc, pixmap, 0, height, ximg->data, &(ximg->info), DIB_RGB_COLORS);
2096 release_frame_dc (f, hdc);
2097#endif
2098#endif /* HAVE_NTGUI */
2099
edfda783 2100#ifdef HAVE_NS
a54e2c05 2101 eassert (ximg == pixmap);
ed3751c8 2102 ns_retain_object (ximg);
edfda783 2103#endif
4ef0d4d0
KS
2104}
2105
547c9269
YM
2106/* Thin wrapper for x_create_x_image_and_pixmap, so that it matches
2107 with image_put_x_image. */
2108
2109static bool
2110image_create_x_image_and_pixmap (struct frame *f, struct image *img,
2111 int width, int height, int depth,
2112 XImagePtr *ximg, bool mask_p)
2113{
2114 eassert ((!mask_p ? img->pixmap : img->mask) == NO_PIXMAP);
2115
2116 return x_create_x_image_and_pixmap (f, width, height, depth, ximg,
2117 !mask_p ? &img->pixmap : &img->mask);
2118}
2119
2120/* Put X image XIMG into image IMG on frame F, as a mask if and only
2121 if MASK_P. On X, this simply records XIMG on a member of IMG, so
2122 it can be put into the pixmap afterwards via image_sync_to_pixmaps.
2123 On the other platforms, it puts XIMG into the pixmap, then frees
2124 the X image and its buffer. */
2125
2126static void
2127image_put_x_image (struct frame *f, struct image *img, XImagePtr ximg,
2128 bool mask_p)
2129{
2130#ifdef HAVE_X_WINDOWS
2131 if (!mask_p)
2132 {
2133 eassert (img->ximg == NULL);
2134 img->ximg = ximg;
2135 }
2136 else
2137 {
2138 eassert (img->mask_img == NULL);
2139 img->mask_img = ximg;
2140 }
2141#else
2142 x_put_x_image (f, ximg, !mask_p ? img->pixmap : img->mask,
2143 img->width, img->height);
2144 x_destroy_x_image (ximg);
2145#endif
2146}
2147
2148#ifdef HAVE_X_WINDOWS
2149/* Put the X images recorded in IMG on frame F into pixmaps, then free
2150 the X images and their buffers. */
2151
2152static void
2153image_sync_to_pixmaps (struct frame *f, struct image *img)
2154{
2155 if (img->ximg)
2156 {
2157 x_put_x_image (f, img->ximg, img->pixmap, img->width, img->height);
2158 x_destroy_x_image (img->ximg);
2159 img->ximg = NULL;
2160 }
2161 if (img->mask_img)
2162 {
2163 x_put_x_image (f, img->mask_img, img->mask, img->width, img->height);
2164 x_destroy_x_image (img->mask_img);
2165 img->mask_img = NULL;
2166 }
2167}
2168#endif
2169
2170#ifdef HAVE_NTGUI
2171/* Create a memory device context for IMG on frame F. It stores the
2172 currently selected GDI object into *PREV for future restoration by
2173 image_unget_x_image_or_dc. */
2174
2175static XImagePtr_or_DC
2176image_get_x_image_or_dc (struct frame *f, struct image *img, bool mask_p,
2177 HGDIOBJ *prev)
2178{
2179 HDC frame_dc = get_frame_dc (f);
2180 XImagePtr_or_DC ximg = CreateCompatibleDC (frame_dc);
2181
2182 release_frame_dc (f, frame_dc);
2183 *prev = SelectObject (ximg, !mask_p ? img->pixmap : img->mask);
b8075603
YM
2184
2185 return ximg;
547c9269
YM
2186}
2187
b8075603
YM
2188static void
2189image_unget_x_image_or_dc (struct image *img, bool mask_p,
2190 XImagePtr_or_DC ximg, HGDIOBJ prev)
547c9269
YM
2191{
2192 SelectObject (ximg, prev);
2193 DeleteDC (ximg);
2194}
2195#else /* !HAVE_NTGUI */
2196/* Get the X image for IMG on frame F. The resulting X image data
2197 should be treated as read-only at least on X. */
2198
2199static XImagePtr
2200image_get_x_image (struct frame *f, struct image *img, bool mask_p)
2201{
2202#ifdef HAVE_X_WINDOWS
2203 XImagePtr ximg_in_img = !mask_p ? img->ximg : img->mask_img;
2204
2205 if (ximg_in_img)
2206 return ximg_in_img;
2207 else
2208 return XGetImage (FRAME_X_DISPLAY (f), !mask_p ? img->pixmap : img->mask,
2209 0, 0, img->width, img->height, ~0, ZPixmap);
2210#elif defined (HAVE_NS)
2211 XImagePtr pixmap = !mask_p ? img->pixmap : img->mask;
2212
2213 ns_retain_object (pixmap);
2214 return pixmap;
2215#endif
2216}
2217
df03dc8a
YM
2218static void
2219image_unget_x_image (struct image *img, bool mask_p, XImagePtr ximg)
547c9269
YM
2220{
2221#ifdef HAVE_X_WINDOWS
2222 XImagePtr ximg_in_img = !mask_p ? img->ximg : img->mask_img;
2223
2224 if (ximg_in_img)
2225 eassert (ximg == ximg_in_img);
2226 else
2227 XDestroyImage (ximg);
2228#elif defined (HAVE_NS)
2229 ns_release_object (ximg);
2230#endif
2231}
2232#endif /* !HAVE_NTGUI */
2233
4ef0d4d0
KS
2234\f
2235/***********************************************************************
2236 File Handling
2237 ***********************************************************************/
2238
6678dc11 2239/* Find image file FILE. Look in data-directory/images, then
022af124
KH
2240 x-bitmap-file-path. Value is the encoded full name of the file
2241 found, or nil if not found. */
4ef0d4d0 2242
c640aa9b 2243Lisp_Object
d3da34e0 2244x_find_image_file (Lisp_Object file)
4ef0d4d0
KS
2245{
2246 Lisp_Object file_found, search_path;
4ef0d4d0
KS
2247 int fd;
2248
6678dc11
GM
2249 /* TODO I think this should use something like image-load-path
2250 instead. Unfortunately, that can contain non-string elements. */
2251 search_path = Fcons (Fexpand_file_name (build_string ("images"),
2252 Vdata_directory),
2253 Vx_bitmap_file_path);
4ef0d4d0 2254
050b82f6 2255 /* Try to find FILE in data-directory/images, then x-bitmap-file-path. */
4ef0d4d0
KS
2256 fd = openp (search_path, file, Qnil, &file_found, Qnil);
2257
2258 if (fd == -1)
2259 file_found = Qnil;
2260 else
022af124
KH
2261 {
2262 file_found = ENCODE_FILE (file_found);
2263 close (fd);
2264 }
4ef0d4d0 2265
4ef0d4d0
KS
2266 return file_found;
2267}
2268
2269
2270/* Read FILE into memory. Value is a pointer to a buffer allocated
2271 with xmalloc holding FILE's contents. Value is null if an error
2272 occurred. *SIZE is set to the size of the file. */
2273
2274static unsigned char *
dd52fcea 2275slurp_file (char *file, ptrdiff_t *size)
4ef0d4d0 2276{
d6453ce4 2277 FILE *fp = fopen (file, "rb");
4ef0d4d0
KS
2278 unsigned char *buf = NULL;
2279 struct stat st;
2280
d6453ce4 2281 if (fp && fstat (fileno (fp), &st) == 0
dd52fcea 2282 && 0 <= st.st_size && st.st_size <= min (PTRDIFF_MAX, SIZE_MAX)
23f86fce 2283 && (buf = xmalloc (st.st_size),
4ef0d4d0
KS
2284 fread (buf, 1, st.st_size, fp) == st.st_size))
2285 {
2286 *size = st.st_size;
2287 fclose (fp);
2288 }
2289 else
2290 {
2291 if (fp)
2292 fclose (fp);
2293 if (buf)
2294 {
2295 xfree (buf);
2296 buf = NULL;
2297 }
2298 }
2299
2300 return buf;
2301}
2302
2303
2304\f
4ef0d4d0
KS
2305/***********************************************************************
2306 XBM images
2307 ***********************************************************************/
2308
578098f3
PE
2309static bool xbm_load (struct frame *f, struct image *img);
2310static bool xbm_image_p (Lisp_Object object);
2311static bool xbm_file_p (Lisp_Object);
4ef0d4d0
KS
2312
2313
2314/* Indices of image specification fields in xbm_format, below. */
2315
2316enum xbm_keyword_index
2317{
2318 XBM_TYPE,
2319 XBM_FILE,
2320 XBM_WIDTH,
2321 XBM_HEIGHT,
2322 XBM_DATA,
2323 XBM_FOREGROUND,
2324 XBM_BACKGROUND,
2325 XBM_ASCENT,
2326 XBM_MARGIN,
2327 XBM_RELIEF,
2328 XBM_ALGORITHM,
2329 XBM_HEURISTIC_MASK,
2330 XBM_MASK,
2331 XBM_LAST
2332};
2333
2334/* Vector of image_keyword structures describing the format
2335 of valid XBM image specifications. */
2336
91433552 2337static const struct image_keyword xbm_format[XBM_LAST] =
4ef0d4d0
KS
2338{
2339 {":type", IMAGE_SYMBOL_VALUE, 1},
2340 {":file", IMAGE_STRING_VALUE, 0},
2341 {":width", IMAGE_POSITIVE_INTEGER_VALUE, 0},
2342 {":height", IMAGE_POSITIVE_INTEGER_VALUE, 0},
2343 {":data", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
2344 {":foreground", IMAGE_STRING_OR_NIL_VALUE, 0},
2345 {":background", IMAGE_STRING_OR_NIL_VALUE, 0},
2346 {":ascent", IMAGE_ASCENT_VALUE, 0},
c4a07a4c 2347 {":margin", IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR, 0},
4ef0d4d0
KS
2348 {":relief", IMAGE_INTEGER_VALUE, 0},
2349 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
2350 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
2351 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0}
2352};
2353
2354/* Structure describing the image type XBM. */
2355
2356static struct image_type xbm_type =
2357{
2358 &Qxbm,
2359 xbm_image_p,
2360 xbm_load,
2361 x_clear_image,
bb4d86b4 2362 NULL,
4ef0d4d0
KS
2363 NULL
2364};
2365
2366/* Tokens returned from xbm_scan. */
2367
2368enum xbm_token
2369{
2370 XBM_TK_IDENT = 256,
2371 XBM_TK_NUMBER
2372};
2373
2374
578098f3 2375/* Return true if OBJECT is a valid XBM-type image specification.
4ef0d4d0
KS
2376 A valid specification is a list starting with the symbol `image'
2377 The rest of the list is a property list which must contain an
578098f3 2378 entry `:type xbm'.
4ef0d4d0
KS
2379
2380 If the specification specifies a file to load, it must contain
2381 an entry `:file FILENAME' where FILENAME is a string.
2382
2383 If the specification is for a bitmap loaded from memory it must
2384 contain `:width WIDTH', `:height HEIGHT', and `:data DATA', where
2385 WIDTH and HEIGHT are integers > 0. DATA may be:
2386
2387 1. a string large enough to hold the bitmap data, i.e. it must
2388 have a size >= (WIDTH + 7) / 8 * HEIGHT
2389
2390 2. a bool-vector of size >= WIDTH * HEIGHT
2391
2392 3. a vector of strings or bool-vectors, one for each line of the
2393 bitmap.
2394
bbe6f2aa 2395 4. a string containing an in-memory XBM file. WIDTH and HEIGHT
4ef0d4d0
KS
2396 may not be specified in this case because they are defined in the
2397 XBM file.
2398
2399 Both the file and data forms may contain the additional entries
2400 `:background COLOR' and `:foreground COLOR'. If not present,
2401 foreground and background of the frame on which the image is
2402 displayed is used. */
2403
578098f3 2404static bool
d3da34e0 2405xbm_image_p (Lisp_Object object)
4ef0d4d0
KS
2406{
2407 struct image_keyword kw[XBM_LAST];
2408
72af86bd 2409 memcpy (kw, xbm_format, sizeof kw);
4ef0d4d0
KS
2410 if (!parse_image_spec (object, kw, XBM_LAST, Qxbm))
2411 return 0;
2412
a54e2c05 2413 eassert (EQ (kw[XBM_TYPE].value, Qxbm));
4ef0d4d0
KS
2414
2415 if (kw[XBM_FILE].count)
2416 {
2417 if (kw[XBM_WIDTH].count || kw[XBM_HEIGHT].count || kw[XBM_DATA].count)
2418 return 0;
2419 }
2420 else if (kw[XBM_DATA].count && xbm_file_p (kw[XBM_DATA].value))
2421 {
2422 /* In-memory XBM file. */
2423 if (kw[XBM_WIDTH].count || kw[XBM_HEIGHT].count || kw[XBM_FILE].count)
2424 return 0;
2425 }
2426 else
2427 {
2428 Lisp_Object data;
13464394 2429 int width, height;
4ef0d4d0
KS
2430
2431 /* Entries for `:width', `:height' and `:data' must be present. */
2432 if (!kw[XBM_WIDTH].count
2433 || !kw[XBM_HEIGHT].count
2434 || !kw[XBM_DATA].count)
2435 return 0;
2436
2437 data = kw[XBM_DATA].value;
2438 width = XFASTINT (kw[XBM_WIDTH].value);
2439 height = XFASTINT (kw[XBM_HEIGHT].value);
2440
2441 /* Check type of data, and width and height against contents of
2442 data. */
2443 if (VECTORP (data))
2444 {
45aebb64 2445 EMACS_INT i;
4ef0d4d0
KS
2446
2447 /* Number of elements of the vector must be >= height. */
77b37c05 2448 if (ASIZE (data) < height)
4ef0d4d0
KS
2449 return 0;
2450
2451 /* Each string or bool-vector in data must be large enough
2452 for one line of the image. */
2453 for (i = 0; i < height; ++i)
2454 {
28be1ada 2455 Lisp_Object elt = AREF (data, i);
4ef0d4d0
KS
2456
2457 if (STRINGP (elt))
2458 {
2459 if (SCHARS (elt)
2460 < (width + BITS_PER_CHAR - 1) / BITS_PER_CHAR)
2461 return 0;
2462 }
2463 else if (BOOL_VECTOR_P (elt))
2464 {
2465 if (XBOOL_VECTOR (elt)->size < width)
2466 return 0;
2467 }
2468 else
2469 return 0;
2470 }
2471 }
2472 else if (STRINGP (data))
2473 {
2474 if (SCHARS (data)
2475 < (width + BITS_PER_CHAR - 1) / BITS_PER_CHAR * height)
2476 return 0;
2477 }
2478 else if (BOOL_VECTOR_P (data))
2479 {
ca4aa935 2480 if (XBOOL_VECTOR (data)->size / height < width)
4ef0d4d0
KS
2481 return 0;
2482 }
2483 else
2484 return 0;
2485 }
2486
2487 return 1;
2488}
2489
2490
2491/* Scan a bitmap file. FP is the stream to read from. Value is
2492 either an enumerator from enum xbm_token, or a character for a
2493 single-character token, or 0 at end of file. If scanning an
2494 identifier, store the lexeme of the identifier in SVAL. If
2495 scanning a number, store its value in *IVAL. */
2496
2497static int
d3da34e0 2498xbm_scan (unsigned char **s, unsigned char *end, char *sval, int *ival)
4ef0d4d0
KS
2499{
2500 unsigned int c;
2501
2502 loop:
2503
2504 /* Skip white space. */
620f13b0 2505 while (*s < end && (c = *(*s)++, c_isspace (c)))
4ef0d4d0
KS
2506 ;
2507
2508 if (*s >= end)
2509 c = 0;
620f13b0 2510 else if (c_isdigit (c))
4ef0d4d0
KS
2511 {
2512 int value = 0, digit;
2513
2514 if (c == '0' && *s < end)
2515 {
2516 c = *(*s)++;
2517 if (c == 'x' || c == 'X')
2518 {
2519 while (*s < end)
2520 {
2521 c = *(*s)++;
620f13b0 2522 if (c_isdigit (c))
4ef0d4d0
KS
2523 digit = c - '0';
2524 else if (c >= 'a' && c <= 'f')
2525 digit = c - 'a' + 10;
2526 else if (c >= 'A' && c <= 'F')
2527 digit = c - 'A' + 10;
2528 else
2529 break;
2530 value = 16 * value + digit;
2531 }
2532 }
620f13b0 2533 else if (c_isdigit (c))
4ef0d4d0
KS
2534 {
2535 value = c - '0';
2536 while (*s < end
620f13b0 2537 && (c = *(*s)++, c_isdigit (c)))
4ef0d4d0
KS
2538 value = 8 * value + c - '0';
2539 }
2540 }
2541 else
2542 {
2543 value = c - '0';
2544 while (*s < end
620f13b0 2545 && (c = *(*s)++, c_isdigit (c)))
4ef0d4d0
KS
2546 value = 10 * value + c - '0';
2547 }
2548
2549 if (*s < end)
2550 *s = *s - 1;
2551 *ival = value;
2552 c = XBM_TK_NUMBER;
2553 }
620f13b0 2554 else if (c_isalpha (c) || c == '_')
4ef0d4d0
KS
2555 {
2556 *sval++ = c;
2557 while (*s < end
620f13b0 2558 && (c = *(*s)++, (c_isalnum (c) || c == '_')))
4ef0d4d0
KS
2559 *sval++ = c;
2560 *sval = 0;
2561 if (*s < end)
2562 *s = *s - 1;
2563 c = XBM_TK_IDENT;
2564 }
2565 else if (c == '/' && **s == '*')
2566 {
2567 /* C-style comment. */
2568 ++*s;
2569 while (**s && (**s != '*' || *(*s + 1) != '/'))
2570 ++*s;
2571 if (**s)
2572 {
2573 *s += 2;
2574 goto loop;
2575 }
2576 }
2577
2578 return c;
2579}
2580
2581#ifdef HAVE_NTGUI
2582
2583/* Create a Windows bitmap from X bitmap data. */
2584static HBITMAP
2585w32_create_pixmap_from_bitmap_data (int width, int height, char *data)
2586{
2587 static unsigned char swap_nibble[16]
2588 = { 0x0, 0x8, 0x4, 0xc, /* 0000 1000 0100 1100 */
2589 0x2, 0xa, 0x6, 0xe, /* 0010 1010 0110 1110 */
2590 0x1, 0x9, 0x5, 0xd, /* 0001 1001 0101 1101 */
2591 0x3, 0xb, 0x7, 0xf }; /* 0011 1011 0111 1111 */
2592 int i, j, w1, w2;
2593 unsigned char *bits, *p;
2594 HBITMAP bmp;
2595
2596 w1 = (width + 7) / 8; /* nb of 8bits elt in X bitmap */
2597 w2 = ((width + 15) / 16) * 2; /* nb of 16bits elt in W32 bitmap */
38182d90 2598 bits = alloca (height * w2);
72af86bd 2599 memset (bits, 0, height * w2);
4ef0d4d0
KS
2600 for (i = 0; i < height; i++)
2601 {
2602 p = bits + i*w2;
2603 for (j = 0; j < w1; j++)
2604 {
2605 /* Bitswap XBM bytes to match how Windows does things. */
2606 unsigned char c = *data++;
2607 *p++ = (unsigned char)((swap_nibble[c & 0xf] << 4)
2608 | (swap_nibble[(c>>4) & 0xf]));
2609 }
2610 }
2611 bmp = CreateBitmap (width, height, 1, 1, (char *) bits);
2612
2613 return bmp;
2614}
2615
3046a84b 2616static void
7c3320d8
JB
2617convert_mono_to_color_image (struct frame *f, struct image *img,
2618 COLORREF foreground, COLORREF background)
4ef0d4d0
KS
2619{
2620 HDC hdc, old_img_dc, new_img_dc;
2621 HGDIOBJ old_prev, new_prev;
2622 HBITMAP new_pixmap;
2623
2624 hdc = get_frame_dc (f);
2625 old_img_dc = CreateCompatibleDC (hdc);
2626 new_img_dc = CreateCompatibleDC (hdc);
2627 new_pixmap = CreateCompatibleBitmap (hdc, img->width, img->height);
2628 release_frame_dc (f, hdc);
2629 old_prev = SelectObject (old_img_dc, img->pixmap);
2630 new_prev = SelectObject (new_img_dc, new_pixmap);
44b1dc2e
JR
2631 /* Windows convention for mono bitmaps is black = background,
2632 white = foreground. */
2386b1f1
JR
2633 SetTextColor (new_img_dc, background);
2634 SetBkColor (new_img_dc, foreground);
4ef0d4d0
KS
2635
2636 BitBlt (new_img_dc, 0, 0, img->width, img->height, old_img_dc,
2637 0, 0, SRCCOPY);
2638
2639 SelectObject (old_img_dc, old_prev);
2640 SelectObject (new_img_dc, new_prev);
2641 DeleteDC (old_img_dc);
2642 DeleteDC (new_img_dc);
2643 DeleteObject (img->pixmap);
2644 if (new_pixmap == 0)
2645 fprintf (stderr, "Failed to convert image to color.\n");
2646 else
2647 img->pixmap = new_pixmap;
2648}
2649
2650#define XBM_BIT_SHUFFLE(b) (~(b))
2651
2652#else
2653
2654#define XBM_BIT_SHUFFLE(b) (b)
2655
2656#endif /* HAVE_NTGUI */
2657
2658
2659static void
d3da34e0
JB
2660Create_Pixmap_From_Bitmap_Data (struct frame *f, struct image *img, char *data,
2661 RGB_PIXEL_COLOR fg, RGB_PIXEL_COLOR bg,
578098f3 2662 bool non_default_colors)
4ef0d4d0
KS
2663{
2664#ifdef HAVE_NTGUI
2665 img->pixmap
2666 = w32_create_pixmap_from_bitmap_data (img->width, img->height, data);
2667
2668 /* If colors were specified, transfer the bitmap to a color one. */
2669 if (non_default_colors)
2670 convert_mono_to_color_image (f, img, fg, bg);
edfda783
AR
2671
2672#elif defined (HAVE_NS)
ed3751c8 2673 img->pixmap = ns_image_from_XBM (data, img->width, img->height);
edfda783 2674
4ef0d4d0 2675#else
ca4aa935
PE
2676 img->pixmap =
2677 (x_check_image_size (0, img->width, img->height)
2678 ? XCreatePixmapFromBitmapData (FRAME_X_DISPLAY (f),
4ef0d4d0
KS
2679 FRAME_X_WINDOW (f),
2680 data,
2681 img->width, img->height,
2682 fg, bg,
ca4aa935
PE
2683 DefaultDepthOfScreen (FRAME_X_SCREEN (f)))
2684 : NO_PIXMAP);
edfda783 2685#endif /* !HAVE_NTGUI && !HAVE_NS */
4ef0d4d0
KS
2686}
2687
2688
2689
2690/* Replacement for XReadBitmapFileData which isn't available under old
2691 X versions. CONTENTS is a pointer to a buffer to parse; END is the
2692 buffer's end. Set *WIDTH and *HEIGHT to the width and height of
2693 the image. Return in *DATA the bitmap data allocated with xmalloc.
578098f3
PE
2694 Value is true if successful. DATA null means just test if
2695 CONTENTS looks like an in-memory XBM file. If INHIBIT_IMAGE_ERROR,
2696 inhibit the call to image_error when the image size is invalid (the
2697 bitmap remains unread). */
4ef0d4d0 2698
578098f3 2699static bool
d3da34e0 2700xbm_read_bitmap_data (struct frame *f, unsigned char *contents, unsigned char *end,
b8dc29e9 2701 int *width, int *height, char **data,
578098f3 2702 bool inhibit_image_error)
4ef0d4d0
KS
2703{
2704 unsigned char *s = contents;
2705 char buffer[BUFSIZ];
578098f3
PE
2706 bool padding_p = 0;
2707 bool v10 = 0;
ca4aa935 2708 int bytes_per_line, i, nbytes;
b8dc29e9 2709 char *p;
4ef0d4d0
KS
2710 int value;
2711 int LA1;
2712
2713#define match() \
2714 LA1 = xbm_scan (&s, end, buffer, &value)
2715
2716#define expect(TOKEN) \
2717 if (LA1 != (TOKEN)) \
2718 goto failure; \
2719 else \
2720 match ()
2721
2722#define expect_ident(IDENT) \
2723 if (LA1 == XBM_TK_IDENT && strcmp (buffer, (IDENT)) == 0) \
2724 match (); \
2725 else \
2726 goto failure
2727
2728 *width = *height = -1;
2729 if (data)
2730 *data = NULL;
2731 LA1 = xbm_scan (&s, end, buffer, &value);
2732
2733 /* Parse defines for width, height and hot-spots. */
2734 while (LA1 == '#')
2735 {
2736 match ();
2737 expect_ident ("define");
2738 expect (XBM_TK_IDENT);
2739
431feaf6 2740 if (LA1 == XBM_TK_NUMBER)
4ef0d4d0 2741 {
6ae141d6
PE
2742 char *q = strrchr (buffer, '_');
2743 q = q ? q + 1 : buffer;
2744 if (strcmp (q, "width") == 0)
4ef0d4d0 2745 *width = value;
6ae141d6 2746 else if (strcmp (q, "height") == 0)
4ef0d4d0
KS
2747 *height = value;
2748 }
2749 expect (XBM_TK_NUMBER);
2750 }
2751
f1f25b99 2752 if (!check_image_size (f, *width, *height))
10ea2b82 2753 {
ce959360
CY
2754 if (!inhibit_image_error)
2755 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
10ea2b82
JR
2756 goto failure;
2757 }
4ef0d4d0
KS
2758 else if (data == NULL)
2759 goto success;
2760
2761 /* Parse bits. Must start with `static'. */
2762 expect_ident ("static");
2763 if (LA1 == XBM_TK_IDENT)
2764 {
2765 if (strcmp (buffer, "unsigned") == 0)
2766 {
2767 match ();
2768 expect_ident ("char");
2769 }
2770 else if (strcmp (buffer, "short") == 0)
2771 {
2772 match ();
2773 v10 = 1;
2774 if (*width % 16 && *width % 16 < 9)
2775 padding_p = 1;
2776 }
2777 else if (strcmp (buffer, "char") == 0)
2778 match ();
2779 else
2780 goto failure;
2781 }
2782 else
2783 goto failure;
2784
2785 expect (XBM_TK_IDENT);
2786 expect ('[');
2787 expect (']');
2788 expect ('=');
2789 expect ('{');
2790
ca4aa935
PE
2791 if (! x_check_image_size (0, *width, *height))
2792 {
2793 if (!inhibit_image_error)
2794 image_error ("Image too large (%dx%d)",
2795 make_number (*width), make_number (*height));
2796 goto failure;
2797 }
4ef0d4d0
KS
2798 bytes_per_line = (*width + 7) / 8 + padding_p;
2799 nbytes = bytes_per_line * *height;
23f86fce 2800 p = *data = xmalloc (nbytes);
4ef0d4d0
KS
2801
2802 if (v10)
2803 {
2804 for (i = 0; i < nbytes; i += 2)
2805 {
2806 int val = value;
2807 expect (XBM_TK_NUMBER);
2808
2809 *p++ = XBM_BIT_SHUFFLE (val);
2810 if (!padding_p || ((i + 2) % bytes_per_line))
2811 *p++ = XBM_BIT_SHUFFLE (value >> 8);
2812
2813 if (LA1 == ',' || LA1 == '}')
2814 match ();
2815 else
2816 goto failure;
2817 }
2818 }
2819 else
2820 {
2821 for (i = 0; i < nbytes; ++i)
2822 {
2823 int val = value;
2824 expect (XBM_TK_NUMBER);
2825
2826 *p++ = XBM_BIT_SHUFFLE (val);
2827
2828 if (LA1 == ',' || LA1 == '}')
2829 match ();
2830 else
2831 goto failure;
2832 }
2833 }
2834
2835 success:
2836 return 1;
2837
2838 failure:
2839
2840 if (data && *data)
2841 {
2842 xfree (*data);
2843 *data = NULL;
2844 }
2845 return 0;
2846
2847#undef match
2848#undef expect
2849#undef expect_ident
2850}
2851
2852
2853/* Load XBM image IMG which will be displayed on frame F from buffer
578098f3 2854 CONTENTS. END is the end of the buffer. Value is true if
4ef0d4d0
KS
2855 successful. */
2856
578098f3 2857static bool
d3da34e0
JB
2858xbm_load_image (struct frame *f, struct image *img, unsigned char *contents,
2859 unsigned char *end)
4ef0d4d0 2860{
578098f3 2861 bool rc;
b8dc29e9 2862 char *data;
578098f3 2863 bool success_p = 0;
4ef0d4d0 2864
ce959360
CY
2865 rc = xbm_read_bitmap_data (f, contents, end, &img->width, &img->height,
2866 &data, 0);
4ef0d4d0
KS
2867 if (rc)
2868 {
2869 unsigned long foreground = FRAME_FOREGROUND_PIXEL (f);
2870 unsigned long background = FRAME_BACKGROUND_PIXEL (f);
578098f3 2871 bool non_default_colors = 0;
4ef0d4d0
KS
2872 Lisp_Object value;
2873
a54e2c05 2874 eassert (img->width > 0 && img->height > 0);
4ef0d4d0
KS
2875
2876 /* Get foreground and background colors, maybe allocate colors. */
2877 value = image_spec_value (img->spec, QCforeground, NULL);
2878 if (!NILP (value))
2879 {
2880 foreground = x_alloc_image_color (f, img, value, foreground);
2881 non_default_colors = 1;
2882 }
2883 value = image_spec_value (img->spec, QCbackground, NULL);
2884 if (!NILP (value))
2885 {
2886 background = x_alloc_image_color (f, img, value, background);
2887 img->background = background;
2888 img->background_valid = 1;
2889 non_default_colors = 1;
2890 }
2891
1f026899 2892 Create_Pixmap_From_Bitmap_Data (f, img, data,
4ef0d4d0
KS
2893 foreground, background,
2894 non_default_colors);
2895 xfree (data);
2896
2897 if (img->pixmap == NO_PIXMAP)
2898 {
2899 x_clear_image (f, img);
2900 image_error ("Unable to create X pixmap for `%s'", img->spec, Qnil);
2901 }
2902 else
2903 success_p = 1;
2904 }
2905 else
2906 image_error ("Error loading XBM image `%s'", img->spec, Qnil);
2907
2908 return success_p;
2909}
2910
2911
578098f3 2912/* Value is true if DATA looks like an in-memory XBM file. */
4ef0d4d0 2913
578098f3 2914static bool
d3da34e0 2915xbm_file_p (Lisp_Object data)
4ef0d4d0
KS
2916{
2917 int w, h;
2918 return (STRINGP (data)
f1f25b99 2919 && xbm_read_bitmap_data (NULL, SDATA (data),
ce959360
CY
2920 (SDATA (data) + SBYTES (data)),
2921 &w, &h, NULL, 1));
4ef0d4d0
KS
2922}
2923
2924
2925/* Fill image IMG which is used on frame F with pixmap data. Value is
578098f3 2926 true if successful. */
4ef0d4d0 2927
578098f3 2928static bool
d3da34e0 2929xbm_load (struct frame *f, struct image *img)
4ef0d4d0 2930{
578098f3 2931 bool success_p = 0;
4ef0d4d0
KS
2932 Lisp_Object file_name;
2933
a54e2c05 2934 eassert (xbm_image_p (img->spec));
4ef0d4d0
KS
2935
2936 /* If IMG->spec specifies a file name, create a non-file spec from it. */
2937 file_name = image_spec_value (img->spec, QCfile, NULL);
2938 if (STRINGP (file_name))
2939 {
2940 Lisp_Object file;
2941 unsigned char *contents;
dd52fcea 2942 ptrdiff_t size;
4ef0d4d0
KS
2943
2944 file = x_find_image_file (file_name);
4ef0d4d0
KS
2945 if (!STRINGP (file))
2946 {
2947 image_error ("Cannot find image file `%s'", file_name, Qnil);
4ef0d4d0
KS
2948 return 0;
2949 }
2950
42a5b22f 2951 contents = slurp_file (SSDATA (file), &size);
4ef0d4d0
KS
2952 if (contents == NULL)
2953 {
2954 image_error ("Error loading XBM image `%s'", img->spec, Qnil);
4ef0d4d0
KS
2955 return 0;
2956 }
2957
2958 success_p = xbm_load_image (f, img, contents, contents + size);
d5a19415 2959 xfree (contents);
4ef0d4d0
KS
2960 }
2961 else
2962 {
2963 struct image_keyword fmt[XBM_LAST];
2964 Lisp_Object data;
2965 unsigned long foreground = FRAME_FOREGROUND_PIXEL (f);
2966 unsigned long background = FRAME_BACKGROUND_PIXEL (f);
578098f3 2967 bool non_default_colors = 0;
4ef0d4d0 2968 char *bits;
578098f3
PE
2969 bool parsed_p;
2970 bool in_memory_file_p = 0;
4ef0d4d0
KS
2971
2972 /* See if data looks like an in-memory XBM file. */
2973 data = image_spec_value (img->spec, QCdata, NULL);
2974 in_memory_file_p = xbm_file_p (data);
2975
2976 /* Parse the image specification. */
72af86bd 2977 memcpy (fmt, xbm_format, sizeof fmt);
4ef0d4d0 2978 parsed_p = parse_image_spec (img->spec, fmt, XBM_LAST, Qxbm);
a54e2c05 2979 eassert (parsed_p);
4ef0d4d0
KS
2980
2981 /* Get specified width, and height. */
2982 if (!in_memory_file_p)
2983 {
2984 img->width = XFASTINT (fmt[XBM_WIDTH].value);
2985 img->height = XFASTINT (fmt[XBM_HEIGHT].value);
a54e2c05 2986 eassert (img->width > 0 && img->height > 0);
ca4aa935
PE
2987 if (!check_image_size (f, img->width, img->height))
2988 {
2989 image_error ("Invalid image size (see `max-image-size')",
2990 Qnil, Qnil);
2991 return 0;
2992 }
4ef0d4d0
KS
2993 }
2994
2995 /* Get foreground and background colors, maybe allocate colors. */
2996 if (fmt[XBM_FOREGROUND].count
2997 && STRINGP (fmt[XBM_FOREGROUND].value))
2998 {
2999 foreground = x_alloc_image_color (f, img, fmt[XBM_FOREGROUND].value,
3000 foreground);
3001 non_default_colors = 1;
3002 }
3003
3004 if (fmt[XBM_BACKGROUND].count
3005 && STRINGP (fmt[XBM_BACKGROUND].value))
3006 {
3007 background = x_alloc_image_color (f, img, fmt[XBM_BACKGROUND].value,
3008 background);
3009 non_default_colors = 1;
3010 }
3011
3012 if (in_memory_file_p)
3013 success_p = xbm_load_image (f, img, SDATA (data),
3014 (SDATA (data)
3015 + SBYTES (data)));
3016 else
3017 {
3018 if (VECTORP (data))
3019 {
3020 int i;
3021 char *p;
3022 int nbytes = (img->width + BITS_PER_CHAR - 1) / BITS_PER_CHAR;
3023
38182d90 3024 p = bits = alloca (nbytes * img->height);
4ef0d4d0
KS
3025 for (i = 0; i < img->height; ++i, p += nbytes)
3026 {
28be1ada 3027 Lisp_Object line = AREF (data, i);
4ef0d4d0 3028 if (STRINGP (line))
72af86bd 3029 memcpy (p, SDATA (line), nbytes);
4ef0d4d0 3030 else
72af86bd 3031 memcpy (p, XBOOL_VECTOR (line)->data, nbytes);
4ef0d4d0
KS
3032 }
3033 }
3034 else if (STRINGP (data))
42a5b22f 3035 bits = SSDATA (data);
4ef0d4d0 3036 else
b8dc29e9 3037 bits = (char *) XBOOL_VECTOR (data)->data;
4ef0d4d0 3038
0fda9b75 3039#ifdef HAVE_NTGUI
44b1dc2e
JR
3040 {
3041 char *invertedBits;
3042 int nbytes, i;
3043 /* Windows mono bitmaps are reversed compared with X. */
3044 invertedBits = bits;
285d07e2 3045 nbytes = (img->width + BITS_PER_CHAR - 1) / BITS_PER_CHAR
44b1dc2e 3046 * img->height;
38182d90 3047 bits = alloca (nbytes);
44b1dc2e
JR
3048 for (i = 0; i < nbytes; i++)
3049 bits[i] = XBM_BIT_SHUFFLE (invertedBits[i]);
3050 }
3051#endif
4ef0d4d0
KS
3052 /* Create the pixmap. */
3053
ca4aa935
PE
3054 if (x_check_image_size (0, img->width, img->height))
3055 Create_Pixmap_From_Bitmap_Data (f, img, bits,
3056 foreground, background,
3057 non_default_colors);
3058 else
3059 img->pixmap = NO_PIXMAP;
3060
4ef0d4d0
KS
3061 if (img->pixmap)
3062 success_p = 1;
3063 else
3064 {
3065 image_error ("Unable to create pixmap for XBM image `%s'",
3066 img->spec, Qnil);
3067 x_clear_image (f, img);
3068 }
3069 }
3070 }
3071
3072 return success_p;
3073}
3074
3075
3076\f
3077/***********************************************************************
3078 XPM images
3079 ***********************************************************************/
3080
9e2a2647 3081#if defined (HAVE_XPM) || defined (HAVE_NS)
4ef0d4d0 3082
578098f3
PE
3083static bool xpm_image_p (Lisp_Object object);
3084static bool xpm_load (struct frame *f, struct image *img);
4ef0d4d0 3085
9e2a2647 3086#endif /* HAVE_XPM || HAVE_NS */
ea1aaa6f
ST
3087
3088#ifdef HAVE_XPM
4ef0d4d0
KS
3089#ifdef HAVE_NTGUI
3090/* Indicate to xpm.h that we don't have Xlib. */
3091#define FOR_MSW
3092/* simx.h in xpm defines XColor and XImage differently than Emacs. */
279d3293 3093/* It also defines Display the same way as Emacs, but gcc 3.3 still barfs. */
4ef0d4d0
KS
3094#define XColor xpm_XColor
3095#define XImage xpm_XImage
279d3293 3096#define Display xpm_Display
4ef0d4d0
KS
3097#define PIXEL_ALREADY_TYPEDEFED
3098#include "X11/xpm.h"
3099#undef FOR_MSW
3100#undef XColor
3101#undef XImage
279d3293 3102#undef Display
4ef0d4d0
KS
3103#undef PIXEL_ALREADY_TYPEDEFED
3104#else
3105#include "X11/xpm.h"
3106#endif /* HAVE_NTGUI */
ea1aaa6f 3107#endif /* HAVE_XPM */
4ef0d4d0 3108
9e2a2647 3109#if defined (HAVE_XPM) || defined (HAVE_NS)
4ef0d4d0
KS
3110/* The symbol `xpm' identifying XPM-format images. */
3111
955cbe7b 3112static Lisp_Object Qxpm;
4ef0d4d0
KS
3113
3114/* Indices of image specification fields in xpm_format, below. */
3115
3116enum xpm_keyword_index
3117{
3118 XPM_TYPE,
3119 XPM_FILE,
3120 XPM_DATA,
3121 XPM_ASCENT,
3122 XPM_MARGIN,
3123 XPM_RELIEF,
3124 XPM_ALGORITHM,
3125 XPM_HEURISTIC_MASK,
3126 XPM_MASK,
3127 XPM_COLOR_SYMBOLS,
3128 XPM_BACKGROUND,
3129 XPM_LAST
3130};
3131
3132/* Vector of image_keyword structures describing the format
3133 of valid XPM image specifications. */
3134
91433552 3135static const struct image_keyword xpm_format[XPM_LAST] =
4ef0d4d0
KS
3136{
3137 {":type", IMAGE_SYMBOL_VALUE, 1},
3138 {":file", IMAGE_STRING_VALUE, 0},
3139 {":data", IMAGE_STRING_VALUE, 0},
3140 {":ascent", IMAGE_ASCENT_VALUE, 0},
c4a07a4c 3141 {":margin", IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR, 0},
4ef0d4d0
KS
3142 {":relief", IMAGE_INTEGER_VALUE, 0},
3143 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3144 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3145 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3146 {":color-symbols", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
3147 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
3148};
3149
a9e7a9d5 3150#if defined HAVE_NTGUI && defined WINDOWSNT
578098f3 3151static bool init_xpm_functions (void);
bb4d86b4
CY
3152#else
3153#define init_xpm_functions NULL
3154#endif
3155
4ef0d4d0
KS
3156/* Structure describing the image type XPM. */
3157
3158static struct image_type xpm_type =
3159{
3160 &Qxpm,
3161 xpm_image_p,
3162 xpm_load,
3163 x_clear_image,
bb4d86b4 3164 init_xpm_functions,
4ef0d4d0
KS
3165 NULL
3166};
3167
3168#ifdef HAVE_X_WINDOWS
3169
3170/* Define ALLOC_XPM_COLORS if we can use Emacs' own color allocation
3171 functions for allocating image colors. Our own functions handle
3172 color allocation failures more gracefully than the ones on the XPM
3173 lib. */
3174
3175#if defined XpmAllocColor && defined XpmFreeColors && defined XpmColorClosure
3176#define ALLOC_XPM_COLORS
3177#endif
3178#endif /* HAVE_X_WINDOWS */
3179
3180#ifdef ALLOC_XPM_COLORS
3181
f57e2426
J
3182static struct xpm_cached_color *xpm_cache_color (struct frame *, char *,
3183 XColor *, int);
4ef0d4d0
KS
3184
3185/* An entry in a hash table used to cache color definitions of named
3186 colors. This cache is necessary to speed up XPM image loading in
3187 case we do color allocations ourselves. Without it, we would need
3188 a call to XParseColor per pixel in the image. */
3189
3190struct xpm_cached_color
3191{
3192 /* Next in collision chain. */
3193 struct xpm_cached_color *next;
3194
3195 /* Color definition (RGB and pixel color). */
3196 XColor color;
3197
3198 /* Color name. */
fbe9e0b9 3199 char name[FLEXIBLE_ARRAY_MEMBER];
4ef0d4d0
KS
3200};
3201
3202/* The hash table used for the color cache, and its bucket vector
3203 size. */
3204
3205#define XPM_COLOR_CACHE_BUCKETS 1001
cd44d2eb 3206static struct xpm_cached_color **xpm_color_cache;
4ef0d4d0
KS
3207
3208/* Initialize the color cache. */
3209
3210static void
d3da34e0 3211xpm_init_color_cache (struct frame *f, XpmAttributes *attrs)
4ef0d4d0
KS
3212{
3213 size_t nbytes = XPM_COLOR_CACHE_BUCKETS * sizeof *xpm_color_cache;
23f86fce 3214 xpm_color_cache = xzalloc (nbytes);
4ef0d4d0
KS
3215 init_color_table ();
3216
3217 if (attrs->valuemask & XpmColorSymbols)
3218 {
3219 int i;
3220 XColor color;
3221
3222 for (i = 0; i < attrs->numsymbols; ++i)
3223 if (XParseColor (FRAME_X_DISPLAY (f), FRAME_X_COLORMAP (f),
3224 attrs->colorsymbols[i].value, &color))
3225 {
3226 color.pixel = lookup_rgb_color (f, color.red, color.green,
3227 color.blue);
3228 xpm_cache_color (f, attrs->colorsymbols[i].name, &color, -1);
3229 }
3230 }
3231}
3232
3233/* Free the color cache. */
3234
3235static void
d3da34e0 3236xpm_free_color_cache (void)
4ef0d4d0
KS
3237{
3238 struct xpm_cached_color *p, *next;
3239 int i;
3240
3241 for (i = 0; i < XPM_COLOR_CACHE_BUCKETS; ++i)
3242 for (p = xpm_color_cache[i]; p; p = next)
3243 {
3244 next = p->next;
3245 xfree (p);
3246 }
3247
3248 xfree (xpm_color_cache);
3249 xpm_color_cache = NULL;
3250 free_color_table ();
3251}
3252
3253/* Return the bucket index for color named COLOR_NAME in the color
3254 cache. */
3255
3256static int
d3da34e0 3257xpm_color_bucket (char *color_name)
4ef0d4d0 3258{
3f791afe
PE
3259 EMACS_UINT hash = hash_string (color_name, strlen (color_name));
3260 return hash % XPM_COLOR_CACHE_BUCKETS;
4ef0d4d0
KS
3261}
3262
3263
3264/* On frame F, cache values COLOR for color with name COLOR_NAME.
3265 BUCKET, if >= 0, is a precomputed bucket index. Value is the cache
3266 entry added. */
3267
3268static struct xpm_cached_color *
d3da34e0 3269xpm_cache_color (struct frame *f, char *color_name, XColor *color, int bucket)
4ef0d4d0
KS
3270{
3271 size_t nbytes;
3272 struct xpm_cached_color *p;
3273
3274 if (bucket < 0)
3275 bucket = xpm_color_bucket (color_name);
3276
3f791afe 3277 nbytes = offsetof (struct xpm_cached_color, name) + strlen (color_name) + 1;
23f86fce 3278 p = xmalloc (nbytes);
4ef0d4d0
KS
3279 strcpy (p->name, color_name);
3280 p->color = *color;
3281 p->next = xpm_color_cache[bucket];
3282 xpm_color_cache[bucket] = p;
3283 return p;
3284}
3285
3286/* Look up color COLOR_NAME for frame F in the color cache. If found,
3287 return the cached definition in *COLOR. Otherwise, make a new
578098f3 3288 entry in the cache and allocate the color. Value is false if color
4ef0d4d0
KS
3289 allocation failed. */
3290
578098f3 3291static bool
d3da34e0 3292xpm_lookup_color (struct frame *f, char *color_name, XColor *color)
4ef0d4d0
KS
3293{
3294 struct xpm_cached_color *p;
3295 int h = xpm_color_bucket (color_name);
3296
3297 for (p = xpm_color_cache[h]; p; p = p->next)
3298 if (strcmp (p->name, color_name) == 0)
3299 break;
3300
3301 if (p != NULL)
3302 *color = p->color;
3303 else if (XParseColor (FRAME_X_DISPLAY (f), FRAME_X_COLORMAP (f),
3304 color_name, color))
3305 {
3306 color->pixel = lookup_rgb_color (f, color->red, color->green,
3307 color->blue);
3308 p = xpm_cache_color (f, color_name, color, h);
3309 }
3310 /* You get `opaque' at least from ImageMagick converting pbm to xpm
3311 with transparency, and it's useful. */
3312 else if (strcmp ("opaque", color_name) == 0)
3313 {
72af86bd 3314 memset (color, 0, sizeof (XColor)); /* Is this necessary/correct? */
4ef0d4d0
KS
3315 color->pixel = FRAME_FOREGROUND_PIXEL (f);
3316 p = xpm_cache_color (f, color_name, color, h);
3317 }
3318
3319 return p != NULL;
3320}
3321
3322
3323/* Callback for allocating color COLOR_NAME. Called from the XPM lib.
3324 CLOSURE is a pointer to the frame on which we allocate the
3325 color. Return in *COLOR the allocated color. Value is non-zero
3326 if successful. */
3327
3328static int
d3da34e0
JB
3329xpm_alloc_color (Display *dpy, Colormap cmap, char *color_name, XColor *color,
3330 void *closure)
4ef0d4d0
KS
3331{
3332 return xpm_lookup_color ((struct frame *) closure, color_name, color);
3333}
3334
3335
3336/* Callback for freeing NPIXELS colors contained in PIXELS. CLOSURE
3337 is a pointer to the frame on which we allocate the color. Value is
3338 non-zero if successful. */
3339
3340static int
d3da34e0 3341xpm_free_colors (Display *dpy, Colormap cmap, Pixel *pixels, int npixels, void *closure)
4ef0d4d0
KS
3342{
3343 return 1;
3344}
3345
3346#endif /* ALLOC_XPM_COLORS */
3347
3348
0fda9b75 3349#ifdef WINDOWSNT
4ef0d4d0
KS
3350
3351/* XPM library details. */
3352
14beddf4
CY
3353DEF_IMGLIB_FN (void, XpmFreeAttributes, (XpmAttributes *));
3354DEF_IMGLIB_FN (int, XpmCreateImageFromBuffer, (Display *, char *, xpm_XImage **,
850690cc 3355 xpm_XImage **, XpmAttributes *));
14beddf4 3356DEF_IMGLIB_FN (int, XpmReadFileToImage, (Display *, char *, xpm_XImage **,
850690cc 3357 xpm_XImage **, XpmAttributes *));
14beddf4 3358DEF_IMGLIB_FN (void, XImageFree, (xpm_XImage *));
4ef0d4d0 3359
578098f3 3360static bool
d07ff9db 3361init_xpm_functions (void)
4ef0d4d0
KS
3362{
3363 HMODULE library;
3364
d07ff9db 3365 if (!(library = w32_delayed_load (Qxpm)))
4ef0d4d0
KS
3366 return 0;
3367
3368 LOAD_IMGLIB_FN (library, XpmFreeAttributes);
3369 LOAD_IMGLIB_FN (library, XpmCreateImageFromBuffer);
3370 LOAD_IMGLIB_FN (library, XpmReadFileToImage);
3371 LOAD_IMGLIB_FN (library, XImageFree);
3372 return 1;
3373}
3374
0fda9b75 3375#endif /* WINDOWSNT */
4ef0d4d0 3376
a9e7a9d5 3377#if defined HAVE_NTGUI && !defined WINDOWSNT
0fda9b75
DC
3378/* Glue for code below */
3379#define fn_XpmReadFileToImage XpmReadFileToImage
3380#define fn_XpmCreateImageFromBuffer XpmCreateImageFromBuffer
3381#define fn_XImageFree XImageFree
3382#define fn_XpmFreeAttributes XpmFreeAttributes
2ae3a8a7 3383#endif /* HAVE_NTGUI && !WINDOWSNT */
4ef0d4d0 3384
578098f3 3385/* Value is true if COLOR_SYMBOLS is a valid color symbols list
4ef0d4d0
KS
3386 for XPM images. Such a list must consist of conses whose car and
3387 cdr are strings. */
3388
578098f3 3389static bool
d3da34e0 3390xpm_valid_color_symbols_p (Lisp_Object color_symbols)
4ef0d4d0
KS
3391{
3392 while (CONSP (color_symbols))
3393 {
3394 Lisp_Object sym = XCAR (color_symbols);
3395 if (!CONSP (sym)
3396 || !STRINGP (XCAR (sym))
3397 || !STRINGP (XCDR (sym)))
3398 break;
3399 color_symbols = XCDR (color_symbols);
3400 }
3401
3402 return NILP (color_symbols);
3403}
3404
3405
578098f3 3406/* Value is true if OBJECT is a valid XPM image specification. */
4ef0d4d0 3407
578098f3 3408static bool
d3da34e0 3409xpm_image_p (Lisp_Object object)
4ef0d4d0
KS
3410{
3411 struct image_keyword fmt[XPM_LAST];
72af86bd 3412 memcpy (fmt, xpm_format, sizeof fmt);
4ef0d4d0
KS
3413 return (parse_image_spec (object, fmt, XPM_LAST, Qxpm)
3414 /* Either `:file' or `:data' must be present. */
3415 && fmt[XPM_FILE].count + fmt[XPM_DATA].count == 1
3416 /* Either no `:color-symbols' or it's a list of conses
3417 whose car and cdr are strings. */
3418 && (fmt[XPM_COLOR_SYMBOLS].count == 0
3419 || xpm_valid_color_symbols_p (fmt[XPM_COLOR_SYMBOLS].value)));
3420}
3421
9e2a2647 3422#endif /* HAVE_XPM || HAVE_NS */
4ef0d4d0 3423
cd44d2eb 3424#if defined HAVE_XPM && defined HAVE_X_WINDOWS && !defined USE_GTK
0766b489 3425ptrdiff_t
ef1b0ba7 3426x_create_bitmap_from_xpm_data (struct frame *f, const char **bits)
786a43d6
CY
3427{
3428 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
0766b489
PE
3429 ptrdiff_t id;
3430 int rc;
786a43d6
CY
3431 XpmAttributes attrs;
3432 Pixmap bitmap, mask;
3433
72af86bd 3434 memset (&attrs, 0, sizeof attrs);
786a43d6 3435
54188d8f
CY
3436 attrs.visual = FRAME_X_VISUAL (f);
3437 attrs.colormap = FRAME_X_COLORMAP (f);
3438 attrs.valuemask |= XpmVisual;
3439 attrs.valuemask |= XpmColormap;
3440
786a43d6 3441 rc = XpmCreatePixmapFromData (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
f77fabaf 3442 (char **) bits, &bitmap, &mask, &attrs);
786a43d6 3443 if (rc != XpmSuccess)
fe45ad15
CY
3444 {
3445 XpmFreeAttributes (&attrs);
3446 return -1;
3447 }
786a43d6
CY
3448
3449 id = x_allocate_bitmap_record (f);
786a43d6
CY
3450 dpyinfo->bitmaps[id - 1].pixmap = bitmap;
3451 dpyinfo->bitmaps[id - 1].have_mask = 1;
3452 dpyinfo->bitmaps[id - 1].mask = mask;
3453 dpyinfo->bitmaps[id - 1].file = NULL;
3454 dpyinfo->bitmaps[id - 1].height = attrs.height;
3455 dpyinfo->bitmaps[id - 1].width = attrs.width;
3456 dpyinfo->bitmaps[id - 1].depth = attrs.depth;
3457 dpyinfo->bitmaps[id - 1].refcount = 1;
3458
3459 XpmFreeAttributes (&attrs);
3460 return id;
3461}
0d876a14 3462#endif /* defined (HAVE_XPM) && defined (HAVE_X_WINDOWS) */
786a43d6 3463
4ef0d4d0 3464/* Load image IMG which will be displayed on frame F. Value is
578098f3 3465 true if successful. */
4ef0d4d0 3466
ea1aaa6f
ST
3467#ifdef HAVE_XPM
3468
578098f3 3469static bool
d3da34e0 3470xpm_load (struct frame *f, struct image *img)
4ef0d4d0
KS
3471{
3472 int rc;
3473 XpmAttributes attrs;
3474 Lisp_Object specified_file, color_symbols;
3475#ifdef HAVE_NTGUI
3476 HDC hdc;
3477 xpm_XImage * xpm_image = NULL, * xpm_mask = NULL;
3478#endif /* HAVE_NTGUI */
3479
3480 /* Configure the XPM lib. Use the visual of frame F. Allocate
3481 close colors. Return colors allocated. */
72af86bd 3482 memset (&attrs, 0, sizeof attrs);
4ef0d4d0
KS
3483
3484#ifndef HAVE_NTGUI
3485 attrs.visual = FRAME_X_VISUAL (f);
3486 attrs.colormap = FRAME_X_COLORMAP (f);
3487 attrs.valuemask |= XpmVisual;
3488 attrs.valuemask |= XpmColormap;
3489#endif /* HAVE_NTGUI */
3490
3491#ifdef ALLOC_XPM_COLORS
3492 /* Allocate colors with our own functions which handle
3493 failing color allocation more gracefully. */
3494 attrs.color_closure = f;
3495 attrs.alloc_color = xpm_alloc_color;
3496 attrs.free_colors = xpm_free_colors;
3497 attrs.valuemask |= XpmAllocColor | XpmFreeColors | XpmColorClosure;
3498#else /* not ALLOC_XPM_COLORS */
3499 /* Let the XPM lib allocate colors. */
3500 attrs.valuemask |= XpmReturnAllocPixels;
3501#ifdef XpmAllocCloseColors
3502 attrs.alloc_close_colors = 1;
3503 attrs.valuemask |= XpmAllocCloseColors;
3504#else /* not XpmAllocCloseColors */
3505 attrs.closeness = 600;
3506 attrs.valuemask |= XpmCloseness;
3507#endif /* not XpmAllocCloseColors */
3508#endif /* ALLOC_XPM_COLORS */
3509
3510 /* If image specification contains symbolic color definitions, add
3511 these to `attrs'. */
3512 color_symbols = image_spec_value (img->spec, QCcolor_symbols, NULL);
3513 if (CONSP (color_symbols))
3514 {
3515 Lisp_Object tail;
3516 XpmColorSymbol *xpm_syms;
3517 int i, size;
3518
3519 attrs.valuemask |= XpmColorSymbols;
3520
3521 /* Count number of symbols. */
3522 attrs.numsymbols = 0;
3523 for (tail = color_symbols; CONSP (tail); tail = XCDR (tail))
3524 ++attrs.numsymbols;
3525
3526 /* Allocate an XpmColorSymbol array. */
3527 size = attrs.numsymbols * sizeof *xpm_syms;
38182d90 3528 xpm_syms = alloca (size);
72af86bd 3529 memset (xpm_syms, 0, size);
4ef0d4d0
KS
3530 attrs.colorsymbols = xpm_syms;
3531
3532 /* Fill the color symbol array. */
3533 for (tail = color_symbols, i = 0;
3534 CONSP (tail);
3535 ++i, tail = XCDR (tail))
3536 {
7574650a
AS
3537 Lisp_Object name;
3538 Lisp_Object color;
e22cffbc 3539 char *empty_string = (char *) "";
7574650a
AS
3540
3541 if (!CONSP (XCAR (tail)))
3542 {
e22cffbc
PE
3543 xpm_syms[i].name = empty_string;
3544 xpm_syms[i].value = empty_string;
7574650a
AS
3545 continue;
3546 }
3547 name = XCAR (XCAR (tail));
3548 color = XCDR (XCAR (tail));
3549 if (STRINGP (name))
3550 {
38182d90 3551 xpm_syms[i].name = alloca (SCHARS (name) + 1);
42a5b22f 3552 strcpy (xpm_syms[i].name, SSDATA (name));
7574650a
AS
3553 }
3554 else
e22cffbc 3555 xpm_syms[i].name = empty_string;
7574650a
AS
3556 if (STRINGP (color))
3557 {
38182d90 3558 xpm_syms[i].value = alloca (SCHARS (color) + 1);
42a5b22f 3559 strcpy (xpm_syms[i].value, SSDATA (color));
7574650a
AS
3560 }
3561 else
e22cffbc 3562 xpm_syms[i].value = empty_string;
4ef0d4d0
KS
3563 }
3564 }
3565
3566 /* Create a pixmap for the image, either from a file, or from a
3567 string buffer containing data in the same format as an XPM file. */
3568#ifdef ALLOC_XPM_COLORS
3569 xpm_init_color_cache (f, &attrs);
3570#endif
3571
3572 specified_file = image_spec_value (img->spec, QCfile, NULL);
3573
3574#ifdef HAVE_NTGUI
3575 {
3576 HDC frame_dc = get_frame_dc (f);
3577 hdc = CreateCompatibleDC (frame_dc);
3578 release_frame_dc (f, frame_dc);
3579 }
3580#endif /* HAVE_NTGUI */
3581
3582 if (STRINGP (specified_file))
3583 {
3584 Lisp_Object file = x_find_image_file (specified_file);
3585 if (!STRINGP (file))
3586 {
3587 image_error ("Cannot find image file `%s'", specified_file, Qnil);
7574650a
AS
3588#ifdef ALLOC_XPM_COLORS
3589 xpm_free_color_cache ();
3590#endif
4ef0d4d0
KS
3591 return 0;
3592 }
3593
3594#ifdef HAVE_NTGUI
3595 /* XpmReadFileToPixmap is not available in the Windows port of
3596 libxpm. But XpmReadFileToImage almost does what we want. */
3597 rc = fn_XpmReadFileToImage (&hdc, SDATA (file),
3598 &xpm_image, &xpm_mask,
3599 &attrs);
3600#else
547c9269
YM
3601 rc = XpmReadFileToImage (FRAME_X_DISPLAY (f), SSDATA (file),
3602 &img->ximg, &img->mask_img,
3603 &attrs);
4ef0d4d0
KS
3604#endif /* HAVE_NTGUI */
3605 }
3606 else
3607 {
3608 Lisp_Object buffer = image_spec_value (img->spec, QCdata, NULL);
7574650a
AS
3609 if (!STRINGP (buffer))
3610 {
3611 image_error ("Invalid image data `%s'", buffer, Qnil);
3612#ifdef ALLOC_XPM_COLORS
3613 xpm_free_color_cache ();
3614#endif
3615 return 0;
3616 }
4ef0d4d0
KS
3617#ifdef HAVE_NTGUI
3618 /* XpmCreatePixmapFromBuffer is not available in the Windows port
3619 of libxpm. But XpmCreateImageFromBuffer almost does what we want. */
3620 rc = fn_XpmCreateImageFromBuffer (&hdc, SDATA (buffer),
3621 &xpm_image, &xpm_mask,
3622 &attrs);
3623#else
547c9269
YM
3624 rc = XpmCreateImageFromBuffer (FRAME_X_DISPLAY (f), SSDATA (buffer),
3625 &img->ximg, &img->mask_img,
3626 &attrs);
4ef0d4d0
KS
3627#endif /* HAVE_NTGUI */
3628 }
3629
547c9269
YM
3630#ifdef HAVE_X_WINDOWS
3631 if (rc == XpmSuccess)
3632 {
3633 img->pixmap = XCreatePixmap (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
3634 img->ximg->width, img->ximg->height,
3635 img->ximg->depth);
3636 if (img->pixmap == NO_PIXMAP)
3637 {
3638 x_clear_image (f, img);
3639 rc = XpmNoMemory;
3640 }
3641 else if (img->mask_img)
3642 {
3643 img->mask = XCreatePixmap (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
3644 img->mask_img->width,
3645 img->mask_img->height,
3646 img->mask_img->depth);
3647 if (img->mask == NO_PIXMAP)
3648 {
3649 x_clear_image (f, img);
3650 rc = XpmNoMemory;
3651 }
3652 }
3653 }
3654#endif
3655
4ef0d4d0
KS
3656 if (rc == XpmSuccess)
3657 {
3658#if defined (COLOR_TABLE_SUPPORT) && defined (ALLOC_XPM_COLORS)
3659 img->colors = colors_in_color_table (&img->ncolors);
3660#else /* not ALLOC_XPM_COLORS */
3661 int i;
3662
3663#ifdef HAVE_NTGUI
3664 /* W32 XPM uses XImage to wrap what W32 Emacs calls a Pixmap,
3665 plus some duplicate attributes. */
3666 if (xpm_image && xpm_image->bitmap)
3667 {
3668 img->pixmap = xpm_image->bitmap;
3669 /* XImageFree in libXpm frees XImage struct without destroying
3670 the bitmap, which is what we want. */
3671 fn_XImageFree (xpm_image);
3672 }
3673 if (xpm_mask && xpm_mask->bitmap)
3674 {
3675 /* The mask appears to be inverted compared with what we expect.
3676 TODO: invert our expectations. See other places where we
3677 have to invert bits because our idea of masks is backwards. */
3678 HGDIOBJ old_obj;
3679 old_obj = SelectObject (hdc, xpm_mask->bitmap);
3680
3681 PatBlt (hdc, 0, 0, xpm_mask->width, xpm_mask->height, DSTINVERT);
3682 SelectObject (hdc, old_obj);
3683
3684 img->mask = xpm_mask->bitmap;
3685 fn_XImageFree (xpm_mask);
3686 DeleteDC (hdc);
3687 }
3688
3689 DeleteDC (hdc);
3690#endif /* HAVE_NTGUI */
3691
3692 /* Remember allocated colors. */
0065d054 3693 img->colors = xnmalloc (attrs.nalloc_pixels, sizeof *img->colors);
ddff3151 3694 img->ncolors = attrs.nalloc_pixels;
4ef0d4d0
KS
3695 for (i = 0; i < attrs.nalloc_pixels; ++i)
3696 {
3697 img->colors[i] = attrs.alloc_pixels[i];
3698#ifdef DEBUG_X_COLORS
3699 register_color (img->colors[i]);
3700#endif
3701 }
3702#endif /* not ALLOC_XPM_COLORS */
3703
3704 img->width = attrs.width;
3705 img->height = attrs.height;
a54e2c05 3706 eassert (img->width > 0 && img->height > 0);
4ef0d4d0
KS
3707
3708 /* The call to XpmFreeAttributes below frees attrs.alloc_pixels. */
3709#ifdef HAVE_NTGUI
3710 fn_XpmFreeAttributes (&attrs);
3711#else
3712 XpmFreeAttributes (&attrs);
3713#endif /* HAVE_NTGUI */
547c9269
YM
3714
3715#ifdef HAVE_X_WINDOWS
3716 /* Maybe fill in the background field while we have ximg handy. */
3717 IMAGE_BACKGROUND (img, f, img->ximg);
3718 if (img->mask_img)
3719 /* Fill in the background_transparent field while we have the
3720 mask handy. */
3721 image_background_transparent (img, f, img->mask_img);
3722#endif
4ef0d4d0
KS
3723 }
3724 else
3725 {
3726#ifdef HAVE_NTGUI
3727 DeleteDC (hdc);
3728#endif /* HAVE_NTGUI */
3729
3730 switch (rc)
3731 {
3732 case XpmOpenFailed:
3733 image_error ("Error opening XPM file (%s)", img->spec, Qnil);
3734 break;
3735
3736 case XpmFileInvalid:
3737 image_error ("Invalid XPM file (%s)", img->spec, Qnil);
3738 break;
3739
3740 case XpmNoMemory:
3741 image_error ("Out of memory (%s)", img->spec, Qnil);
3742 break;
3743
3744 case XpmColorFailed:
3745 image_error ("Color allocation error (%s)", img->spec, Qnil);
3746 break;
3747
3748 default:
3749 image_error ("Unknown error (%s)", img->spec, Qnil);
3750 break;
3751 }
3752 }
3753
3754#ifdef ALLOC_XPM_COLORS
3755 xpm_free_color_cache ();
3756#endif
3757 return rc == XpmSuccess;
3758}
3759
3760#endif /* HAVE_XPM */
3761
9e2a2647 3762#if defined (HAVE_NS) && !defined (HAVE_XPM)
ea1aaa6f 3763
9e2a2647 3764/* XPM support functions for NS where libxpm is not available.
ea1aaa6f
ST
3765 Only XPM version 3 (without any extensions) is supported. */
3766
f57e2426
J
3767static void xpm_put_color_table_v (Lisp_Object, const unsigned char *,
3768 int, Lisp_Object);
3769static Lisp_Object xpm_get_color_table_v (Lisp_Object,
3770 const unsigned char *, int);
f57e2426
J
3771static void xpm_put_color_table_h (Lisp_Object, const unsigned char *,
3772 int, Lisp_Object);
3773static Lisp_Object xpm_get_color_table_h (Lisp_Object,
3774 const unsigned char *, int);
ea1aaa6f
ST
3775
3776/* Tokens returned from xpm_scan. */
3777
3778enum xpm_token
3779{
3780 XPM_TK_IDENT = 256,
3781 XPM_TK_STRING,
3782 XPM_TK_EOF
3783};
3784
3785/* Scan an XPM data and return a character (< 256) or a token defined
3786 by enum xpm_token above. *S and END are the start (inclusive) and
3787 the end (exclusive) addresses of the data, respectively. Advance
3788 *S while scanning. If token is either XPM_TK_IDENT or
3789 XPM_TK_STRING, *BEG and *LEN are set to the start address and the
3790 length of the corresponding token, respectively. */
3791
3792static int
3d608a86
J
3793xpm_scan (const unsigned char **s,
3794 const unsigned char *end,
3795 const unsigned char **beg,
74ca2eb3 3796 ptrdiff_t *len)
ea1aaa6f
ST
3797{
3798 int c;
3799
3800 while (*s < end)
3801 {
3802 /* Skip white-space. */
620f13b0 3803 while (*s < end && (c = *(*s)++, c_isspace (c)))
9ecf6403 3804 ;
ea1aaa6f
ST
3805
3806 /* gnus-pointer.xpm uses '-' in its identifier.
9ecf6403 3807 sb-dir-plus.xpm uses '+' in its identifier. */
620f13b0 3808 if (c_isalpha (c) || c == '_' || c == '-' || c == '+')
9ecf6403
YM
3809 {
3810 *beg = *s - 1;
2ff0845e 3811 while (*s < end
620f13b0
PE
3812 && (c = **s, c_isalnum (c)
3813 || c == '_' || c == '-' || c == '+'))
9ecf6403
YM
3814 ++*s;
3815 *len = *s - *beg;
3816 return XPM_TK_IDENT;
3817 }
ea1aaa6f 3818 else if (c == '"')
9ecf6403
YM
3819 {
3820 *beg = *s;
3821 while (*s < end && **s != '"')
3822 ++*s;
3823 *len = *s - *beg;
3824 if (*s < end)
3825 ++*s;
3826 return XPM_TK_STRING;
3827 }
ea1aaa6f 3828 else if (c == '/')
9ecf6403
YM
3829 {
3830 if (*s < end && **s == '*')
3831 {
3832 /* C-style comment. */
3833 ++*s;
3834 do
3835 {
3836 while (*s < end && *(*s)++ != '*')
3837 ;
3838 }
3839 while (*s < end && **s != '/');
3840 if (*s < end)
3841 ++*s;
3842 }
3843 else
3844 return c;
3845 }
ea1aaa6f 3846 else
9ecf6403 3847 return c;
ea1aaa6f
ST
3848 }
3849
3850 return XPM_TK_EOF;
3851}
3852
bbe6f2aa 3853/* Functions for color table lookup in XPM data. A key is a string
ea1aaa6f
ST
3854 specifying the color of each pixel in XPM data. A value is either
3855 an integer that specifies a pixel color, Qt that specifies
3856 transparency, or Qnil for the unspecified color. If the length of
3857 the key string is one, a vector is used as a table. Otherwise, a
3858 hash table is used. */
3859
3860static Lisp_Object
3d608a86
J
3861xpm_make_color_table_v (void (**put_func) (Lisp_Object,
3862 const unsigned char *,
3863 int,
3864 Lisp_Object),
3865 Lisp_Object (**get_func) (Lisp_Object,
3866 const unsigned char *,
3867 int))
ea1aaa6f
ST
3868{
3869 *put_func = xpm_put_color_table_v;
3870 *get_func = xpm_get_color_table_v;
3871 return Fmake_vector (make_number (256), Qnil);
3872}
3873
3874static void
3d608a86
J
3875xpm_put_color_table_v (Lisp_Object color_table,
3876 const unsigned char *chars_start,
3877 int chars_len,
3878 Lisp_Object color)
ea1aaa6f 3879{
28be1ada 3880 ASET (color_table, *chars_start, color);
ea1aaa6f
ST
3881}
3882
3883static Lisp_Object
3d608a86
J
3884xpm_get_color_table_v (Lisp_Object color_table,
3885 const unsigned char *chars_start,
3886 int chars_len)
ea1aaa6f 3887{
28be1ada 3888 return AREF (color_table, *chars_start);
ea1aaa6f
ST
3889}
3890
3891static Lisp_Object
3d608a86
J
3892xpm_make_color_table_h (void (**put_func) (Lisp_Object,
3893 const unsigned char *,
3894 int,
3895 Lisp_Object),
3896 Lisp_Object (**get_func) (Lisp_Object,
3897 const unsigned char *,
3898 int))
ea1aaa6f
ST
3899{
3900 *put_func = xpm_put_color_table_h;
3901 *get_func = xpm_get_color_table_h;
4ab15c3e 3902 return make_hash_table (hashtest_equal, make_number (DEFAULT_HASH_SIZE),
9ecf6403
YM
3903 make_float (DEFAULT_REHASH_SIZE),
3904 make_float (DEFAULT_REHASH_THRESHOLD),
a23c4171 3905 Qnil);
ea1aaa6f
ST
3906}
3907
3908static void
3d608a86
J
3909xpm_put_color_table_h (Lisp_Object color_table,
3910 const unsigned char *chars_start,
3911 int chars_len,
3912 Lisp_Object color)
ea1aaa6f
ST
3913{
3914 struct Lisp_Hash_Table *table = XHASH_TABLE (color_table);
0de4bb68 3915 EMACS_UINT hash_code;
ea1aaa6f
ST
3916 Lisp_Object chars = make_unibyte_string (chars_start, chars_len);
3917
3918 hash_lookup (table, chars, &hash_code);
3919 hash_put (table, chars, color, hash_code);
3920}
3921
3922static Lisp_Object
3d608a86
J
3923xpm_get_color_table_h (Lisp_Object color_table,
3924 const unsigned char *chars_start,
3925 int chars_len)
ea1aaa6f
ST
3926{
3927 struct Lisp_Hash_Table *table = XHASH_TABLE (color_table);
d3411f89
PE
3928 ptrdiff_t i =
3929 hash_lookup (table, make_unibyte_string (chars_start, chars_len), NULL);
ea1aaa6f
ST
3930
3931 return i >= 0 ? HASH_VALUE (table, i) : Qnil;
3932}
3933
3934enum xpm_color_key {
3935 XPM_COLOR_KEY_S,
3936 XPM_COLOR_KEY_M,
3937 XPM_COLOR_KEY_G4,
3938 XPM_COLOR_KEY_G,
3939 XPM_COLOR_KEY_C
3940};
3941
46accb8f 3942static const char xpm_color_key_strings[][4] = {"s", "m", "g4", "g", "c"};
ea1aaa6f
ST
3943
3944static int
3d608a86 3945xpm_str_to_color_key (const char *s)
ea1aaa6f
ST
3946{
3947 int i;
3948
3949 for (i = 0;
3950 i < sizeof xpm_color_key_strings / sizeof xpm_color_key_strings[0];
3951 i++)
3952 if (strcmp (xpm_color_key_strings[i], s) == 0)
3953 return i;
3954 return -1;
3955}
3956
578098f3 3957static bool
3d608a86
J
3958xpm_load_image (struct frame *f,
3959 struct image *img,
3960 const unsigned char *contents,
3961 const unsigned char *end)
ea1aaa6f 3962{
46accb8f 3963 const unsigned char *s = contents, *beg, *str;
ea1aaa6f
ST
3964 unsigned char buffer[BUFSIZ];
3965 int width, height, x, y;
3966 int num_colors, chars_per_pixel;
74ca2eb3
PE
3967 ptrdiff_t len;
3968 int LA1;
46accb8f
YM
3969 void (*put_color_table) (Lisp_Object, const unsigned char *, int, Lisp_Object);
3970 Lisp_Object (*get_color_table) (Lisp_Object, const unsigned char *, int);
ea1aaa6f 3971 Lisp_Object frame, color_symbols, color_table;
578098f3
PE
3972 int best_key;
3973 bool have_mask = 0;
ea1aaa6f
ST
3974 XImagePtr ximg = NULL, mask_img = NULL;
3975
3976#define match() \
3977 LA1 = xpm_scan (&s, end, &beg, &len)
3978
9ecf6403
YM
3979#define expect(TOKEN) \
3980 if (LA1 != (TOKEN)) \
3981 goto failure; \
3982 else \
ea1aaa6f
ST
3983 match ()
3984
9ecf6403 3985#define expect_ident(IDENT) \
ea1aaa6f 3986 if (LA1 == XPM_TK_IDENT \
9ecf6403
YM
3987 && strlen ((IDENT)) == len && memcmp ((IDENT), beg, len) == 0) \
3988 match (); \
3989 else \
ea1aaa6f
ST
3990 goto failure
3991
3992 if (!(end - s >= 9 && memcmp (s, "/* XPM */", 9) == 0))
3993 goto failure;
3994 s += 9;
ed3751c8 3995 match ();
ea1aaa6f
ST
3996 expect_ident ("static");
3997 expect_ident ("char");
3998 expect ('*');
3999 expect (XPM_TK_IDENT);
4000 expect ('[');
4001 expect (']');
4002 expect ('=');
4003 expect ('{');
4004 expect (XPM_TK_STRING);
4005 if (len >= BUFSIZ)
4006 goto failure;
4007 memcpy (buffer, beg, len);
4008 buffer[len] = '\0';
4009 if (sscanf (buffer, "%d %d %d %d", &width, &height,
9ecf6403 4010 &num_colors, &chars_per_pixel) != 4
ea1aaa6f
ST
4011 || width <= 0 || height <= 0
4012 || num_colors <= 0 || chars_per_pixel <= 0)
4013 goto failure;
de297941
YM
4014
4015 if (!check_image_size (f, width, height))
4016 {
10ea2b82 4017 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
de297941
YM
4018 goto failure;
4019 }
4020
547c9269 4021 if (!image_create_x_image_and_pixmap (f, img, width, height, 0, &ximg, 0)
ca4aa935 4022#ifndef HAVE_NS
547c9269
YM
4023 || !image_create_x_image_and_pixmap (f, img, width, height, 1,
4024 &mask_img, 1)
ca4aa935
PE
4025#endif
4026 )
4027 {
4028 image_error ("Image too large", Qnil, Qnil);
4029 goto failure;
4030 }
4031
ea1aaa6f
ST
4032 expect (',');
4033
4034 XSETFRAME (frame, f);
4035 if (!NILP (Fxw_display_color_p (frame)))
4036 best_key = XPM_COLOR_KEY_C;
4037 else if (!NILP (Fx_display_grayscale_p (frame)))
4038 best_key = (XFASTINT (Fx_display_planes (frame)) > 2
9ecf6403 4039 ? XPM_COLOR_KEY_G : XPM_COLOR_KEY_G4);
ea1aaa6f
ST
4040 else
4041 best_key = XPM_COLOR_KEY_M;
4042
4043 color_symbols = image_spec_value (img->spec, QCcolor_symbols, NULL);
4044 if (chars_per_pixel == 1)
4045 color_table = xpm_make_color_table_v (&put_color_table,
9ecf6403 4046 &get_color_table);
ea1aaa6f
ST
4047 else
4048 color_table = xpm_make_color_table_h (&put_color_table,
9ecf6403 4049 &get_color_table);
ea1aaa6f
ST
4050
4051 while (num_colors-- > 0)
4052 {
25a48bd0 4053 char *color, *max_color;
ea1aaa6f
ST
4054 int key, next_key, max_key = 0;
4055 Lisp_Object symbol_color = Qnil, color_val;
4056 XColor cdef;
4057
4058 expect (XPM_TK_STRING);
4059 if (len <= chars_per_pixel || len >= BUFSIZ + chars_per_pixel)
9ecf6403 4060 goto failure;
ea1aaa6f
ST
4061 memcpy (buffer, beg + chars_per_pixel, len - chars_per_pixel);
4062 buffer[len - chars_per_pixel] = '\0';
4063
4064 str = strtok (buffer, " \t");
4065 if (str == NULL)
9ecf6403 4066 goto failure;
ea1aaa6f
ST
4067 key = xpm_str_to_color_key (str);
4068 if (key < 0)
9ecf6403 4069 goto failure;
ea1aaa6f 4070 do
9ecf6403
YM
4071 {
4072 color = strtok (NULL, " \t");
4073 if (color == NULL)
4074 goto failure;
ea1aaa6f 4075
9db94f82 4076 while ((str = strtok (NULL, " \t")) != NULL)
9ecf6403
YM
4077 {
4078 next_key = xpm_str_to_color_key (str);
4079 if (next_key >= 0)
4080 break;
4081 color[strlen (color)] = ' ';
4082 }
ea1aaa6f 4083
9ecf6403
YM
4084 if (key == XPM_COLOR_KEY_S)
4085 {
4086 if (NILP (symbol_color))
4087 symbol_color = build_string (color);
4088 }
4089 else if (max_key < key && key <= best_key)
4090 {
4091 max_key = key;
4092 max_color = color;
4093 }
4094 key = next_key;
4095 }
ea1aaa6f
ST
4096 while (str);
4097
4098 color_val = Qnil;
4099 if (!NILP (color_symbols) && !NILP (symbol_color))
9ecf6403
YM
4100 {
4101 Lisp_Object specified_color = Fassoc (symbol_color, color_symbols);
4102
4103 if (CONSP (specified_color) && STRINGP (XCDR (specified_color)))
9db94f82 4104 {
25a48bd0 4105 if (xstrcasecmp (SSDATA (XCDR (specified_color)), "None") == 0)
9db94f82 4106 color_val = Qt;
6045c4fd 4107 else if (x_defined_color (f, SSDATA (XCDR (specified_color)),
9db94f82
YM
4108 &cdef, 0))
4109 color_val = make_number (cdef.pixel);
4110 }
9ecf6403 4111 }
ea1aaa6f 4112 if (NILP (color_val) && max_key > 0)
9db94f82 4113 {
05131107 4114 if (xstrcasecmp (max_color, "None") == 0)
9db94f82
YM
4115 color_val = Qt;
4116 else if (x_defined_color (f, max_color, &cdef, 0))
4117 color_val = make_number (cdef.pixel);
4118 }
ea1aaa6f 4119 if (!NILP (color_val))
9ecf6403 4120 (*put_color_table) (color_table, beg, chars_per_pixel, color_val);
ea1aaa6f
ST
4121
4122 expect (',');
4123 }
4124
ea1aaa6f
ST
4125 for (y = 0; y < height; y++)
4126 {
4127 expect (XPM_TK_STRING);
4128 str = beg;
4129 if (len < width * chars_per_pixel)
9ecf6403 4130 goto failure;
ea1aaa6f 4131 for (x = 0; x < width; x++, str += chars_per_pixel)
9ecf6403
YM
4132 {
4133 Lisp_Object color_val =
4134 (*get_color_table) (color_table, str, chars_per_pixel);
4135
4136 XPutPixel (ximg, x, y,
4137 (INTEGERP (color_val) ? XINT (color_val)
4138 : FRAME_FOREGROUND_PIXEL (f)));
edfda783 4139#ifndef HAVE_NS
9ecf6403
YM
4140 XPutPixel (mask_img, x, y,
4141 (!EQ (color_val, Qt) ? PIX_MASK_DRAW
4142 : (have_mask = 1, PIX_MASK_RETAIN)));
edfda783 4143#else
ed3751c8
JB
4144 if (EQ (color_val, Qt))
4145 ns_set_alpha (ximg, x, y, 0);
edfda783 4146#endif
9ecf6403 4147 }
ea1aaa6f 4148 if (y + 1 < height)
9ecf6403 4149 expect (',');
ea1aaa6f
ST
4150 }
4151
4152 img->width = width;
4153 img->height = height;
4154
0b8ac842
YM
4155 /* Maybe fill in the background field while we have ximg handy. */
4156 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
4157 IMAGE_BACKGROUND (img, f, ximg);
4158
547c9269 4159 image_put_x_image (f, img, ximg, 0);
edfda783 4160#ifndef HAVE_NS
ea1aaa6f
ST
4161 if (have_mask)
4162 {
9ecf6403
YM
4163 /* Fill in the background_transparent field while we have the
4164 mask handy. */
4165 image_background_transparent (img, f, mask_img);
4166
547c9269 4167 image_put_x_image (f, img, mask_img, 1);
ea1aaa6f
ST
4168 }
4169 else
4170 {
4171 x_destroy_x_image (mask_img);
547c9269 4172 x_clear_image_1 (f, img, CLEAR_IMAGE_MASK);
ea1aaa6f 4173 }
edfda783 4174#endif
ea1aaa6f
ST
4175 return 1;
4176
4177 failure:
4178 image_error ("Invalid XPM file (%s)", img->spec, Qnil);
ea1aaa6f
ST
4179 x_destroy_x_image (ximg);
4180 x_destroy_x_image (mask_img);
4181 x_clear_image (f, img);
4182 return 0;
4183
4184#undef match
4185#undef expect
4186#undef expect_ident
4187}
4188
578098f3 4189static bool
3d608a86
J
4190xpm_load (struct frame *f,
4191 struct image *img)
ea1aaa6f 4192{
578098f3 4193 bool success_p = 0;
ea1aaa6f
ST
4194 Lisp_Object file_name;
4195
4196 /* If IMG->spec specifies a file name, create a non-file spec from it. */
4197 file_name = image_spec_value (img->spec, QCfile, NULL);
4198 if (STRINGP (file_name))
4199 {
4200 Lisp_Object file;
4201 unsigned char *contents;
dd52fcea 4202 ptrdiff_t size;
ea1aaa6f
ST
4203
4204 file = x_find_image_file (file_name);
ea1aaa6f 4205 if (!STRINGP (file))
9ecf6403
YM
4206 {
4207 image_error ("Cannot find image file `%s'", file_name, Qnil);
9ecf6403
YM
4208 return 0;
4209 }
ea1aaa6f 4210
6045c4fd 4211 contents = slurp_file (SSDATA (file), &size);
ea1aaa6f 4212 if (contents == NULL)
9ecf6403
YM
4213 {
4214 image_error ("Error loading XPM image `%s'", img->spec, Qnil);
9ecf6403
YM
4215 return 0;
4216 }
ea1aaa6f
ST
4217
4218 success_p = xpm_load_image (f, img, contents, contents + size);
4219 xfree (contents);
ea1aaa6f
ST
4220 }
4221 else
4222 {
4223 Lisp_Object data;
4224
4225 data = image_spec_value (img->spec, QCdata, NULL);
7574650a
AS
4226 if (!STRINGP (data))
4227 {
4228 image_error ("Invalid image data `%s'", data, Qnil);
4229 return 0;
4230 }
ea1aaa6f 4231 success_p = xpm_load_image (f, img, SDATA (data),
9ecf6403 4232 SDATA (data) + SBYTES (data));
ea1aaa6f
ST
4233 }
4234
4235 return success_p;
4236}
4237
9e2a2647 4238#endif /* HAVE_NS && !HAVE_XPM */
b0da69a7 4239
ea1aaa6f 4240
4ef0d4d0
KS
4241\f
4242/***********************************************************************
4243 Color table
4244 ***********************************************************************/
4245
4246#ifdef COLOR_TABLE_SUPPORT
4247
4248/* An entry in the color table mapping an RGB color to a pixel color. */
4249
4250struct ct_color
4251{
4252 int r, g, b;
4253 unsigned long pixel;
4254
4255 /* Next in color table collision list. */
4256 struct ct_color *next;
4257};
4258
4259/* The bucket vector size to use. Must be prime. */
4260
4261#define CT_SIZE 101
4262
4263/* Value is a hash of the RGB color given by R, G, and B. */
4264
4265#define CT_HASH_RGB(R, G, B) (((R) << 16) ^ ((G) << 8) ^ (B))
4266
4267/* The color hash table. */
4268
cd44d2eb 4269static struct ct_color **ct_table;
4ef0d4d0
KS
4270
4271/* Number of entries in the color table. */
4272
cd44d2eb 4273static int ct_colors_allocated;
ddff3151
PE
4274enum
4275{
4276 ct_colors_allocated_max =
4277 min (INT_MAX,
4278 min (PTRDIFF_MAX, SIZE_MAX) / sizeof (unsigned long))
4279};
4ef0d4d0
KS
4280
4281/* Initialize the color table. */
4282
4283static void
d3da34e0 4284init_color_table (void)
4ef0d4d0
KS
4285{
4286 int size = CT_SIZE * sizeof (*ct_table);
23f86fce 4287 ct_table = xzalloc (size);
4ef0d4d0
KS
4288 ct_colors_allocated = 0;
4289}
4290
4291
4292/* Free memory associated with the color table. */
4293
4294static void
d3da34e0 4295free_color_table (void)
4ef0d4d0
KS
4296{
4297 int i;
4298 struct ct_color *p, *next;
4299
4300 for (i = 0; i < CT_SIZE; ++i)
4301 for (p = ct_table[i]; p; p = next)
4302 {
4303 next = p->next;
4304 xfree (p);
4305 }
4306
4307 xfree (ct_table);
4308 ct_table = NULL;
4309}
4310
4311
4312/* Value is a pixel color for RGB color R, G, B on frame F. If an
4313 entry for that color already is in the color table, return the
4314 pixel color of that entry. Otherwise, allocate a new color for R,
4315 G, B, and make an entry in the color table. */
4316
4317static unsigned long
d3da34e0 4318lookup_rgb_color (struct frame *f, int r, int g, int b)
4ef0d4d0
KS
4319{
4320 unsigned hash = CT_HASH_RGB (r, g, b);
4321 int i = hash % CT_SIZE;
4322 struct ct_color *p;
4323 Display_Info *dpyinfo;
4324
4325 /* Handle TrueColor visuals specially, which improves performance by
4326 two orders of magnitude. Freeing colors on TrueColor visuals is
4327 a nop, and pixel colors specify RGB values directly. See also
4328 the Xlib spec, chapter 3.1. */
4329 dpyinfo = FRAME_X_DISPLAY_INFO (f);
4330 if (dpyinfo->red_bits > 0)
4331 {
4332 unsigned long pr, pg, pb;
4333
4334 /* Apply gamma-correction like normal color allocation does. */
4335 if (f->gamma)
4336 {
4337 XColor color;
4338 color.red = r, color.green = g, color.blue = b;
4339 gamma_correct (f, &color);
4340 r = color.red, g = color.green, b = color.blue;
4341 }
4342
4343 /* Scale down RGB values to the visual's bits per RGB, and shift
4344 them to the right position in the pixel color. Note that the
4345 original RGB values are 16-bit values, as usual in X. */
4346 pr = (r >> (16 - dpyinfo->red_bits)) << dpyinfo->red_offset;
4347 pg = (g >> (16 - dpyinfo->green_bits)) << dpyinfo->green_offset;
4348 pb = (b >> (16 - dpyinfo->blue_bits)) << dpyinfo->blue_offset;
4349
4350 /* Assemble the pixel color. */
4351 return pr | pg | pb;
4352 }
1f026899 4353
4ef0d4d0
KS
4354 for (p = ct_table[i]; p; p = p->next)
4355 if (p->r == r && p->g == g && p->b == b)
4356 break;
4357
4358 if (p == NULL)
4359 {
4360
4361#ifdef HAVE_X_WINDOWS
4362 XColor color;
4363 Colormap cmap;
578098f3 4364 bool rc;
ddff3151
PE
4365#else
4366 COLORREF color;
4367#endif
4ef0d4d0 4368
ddff3151
PE
4369 if (ct_colors_allocated_max <= ct_colors_allocated)
4370 return FRAME_FOREGROUND_PIXEL (f);
4371
4372#ifdef HAVE_X_WINDOWS
4ef0d4d0
KS
4373 color.red = r;
4374 color.green = g;
4375 color.blue = b;
4376
4377 cmap = FRAME_X_COLORMAP (f);
4378 rc = x_alloc_nearest_color (f, cmap, &color);
4379 if (rc)
4380 {
4381 ++ct_colors_allocated;
23f86fce 4382 p = xmalloc (sizeof *p);
4ef0d4d0
KS
4383 p->r = r;
4384 p->g = g;
4385 p->b = b;
4386 p->pixel = color.pixel;
4387 p->next = ct_table[i];
4388 ct_table[i] = p;
4389 }
4390 else
4391 return FRAME_FOREGROUND_PIXEL (f);
4392
4393#else
4ef0d4d0
KS
4394#ifdef HAVE_NTGUI
4395 color = PALETTERGB (r, g, b);
4396#else
4397 color = RGB_TO_ULONG (r, g, b);
4398#endif /* HAVE_NTGUI */
4399 ++ct_colors_allocated;
23f86fce 4400 p = xmalloc (sizeof *p);
4ef0d4d0
KS
4401 p->r = r;
4402 p->g = g;
4403 p->b = b;
4404 p->pixel = color;
4405 p->next = ct_table[i];
4406 ct_table[i] = p;
4407#endif /* HAVE_X_WINDOWS */
4408
4409 }
4410
4411 return p->pixel;
4412}
4413
4414
4415/* Look up pixel color PIXEL which is used on frame F in the color
4416 table. If not already present, allocate it. Value is PIXEL. */
4417
4418static unsigned long
d3da34e0 4419lookup_pixel_color (struct frame *f, unsigned long pixel)
4ef0d4d0
KS
4420{
4421 int i = pixel % CT_SIZE;
4422 struct ct_color *p;
4423
4424 for (p = ct_table[i]; p; p = p->next)
4425 if (p->pixel == pixel)
4426 break;
4427
4428 if (p == NULL)
4429 {
4430 XColor color;
4431 Colormap cmap;
578098f3 4432 bool rc;
4ef0d4d0 4433
ddff3151
PE
4434 if (ct_colors_allocated_max <= ct_colors_allocated)
4435 return FRAME_FOREGROUND_PIXEL (f);
4436
4ef0d4d0
KS
4437#ifdef HAVE_X_WINDOWS
4438 cmap = FRAME_X_COLORMAP (f);
4439 color.pixel = pixel;
4440 x_query_color (f, &color);
4441 rc = x_alloc_nearest_color (f, cmap, &color);
4442#else
4d7e6e51 4443 block_input ();
4ef0d4d0
KS
4444 cmap = DefaultColormapOfScreen (FRAME_X_SCREEN (f));
4445 color.pixel = pixel;
4446 XQueryColor (NULL, cmap, &color);
4447 rc = x_alloc_nearest_color (f, cmap, &color);
4d7e6e51 4448 unblock_input ();
4ef0d4d0
KS
4449#endif /* HAVE_X_WINDOWS */
4450
4451 if (rc)
4452 {
4453 ++ct_colors_allocated;
4454
23f86fce 4455 p = xmalloc (sizeof *p);
4ef0d4d0
KS
4456 p->r = color.red;
4457 p->g = color.green;
4458 p->b = color.blue;
4459 p->pixel = pixel;
4460 p->next = ct_table[i];
4461 ct_table[i] = p;
4462 }
4463 else
4464 return FRAME_FOREGROUND_PIXEL (f);
4465 }
4466 return p->pixel;
4467}
4468
4469
4470/* Value is a vector of all pixel colors contained in the color table,
4471 allocated via xmalloc. Set *N to the number of colors. */
4472
4473static unsigned long *
d3da34e0 4474colors_in_color_table (int *n)
4ef0d4d0
KS
4475{
4476 int i, j;
4477 struct ct_color *p;
4478 unsigned long *colors;
4479
4480 if (ct_colors_allocated == 0)
4481 {
4482 *n = 0;
4483 colors = NULL;
4484 }
4485 else
4486 {
23f86fce 4487 colors = xmalloc (ct_colors_allocated * sizeof *colors);
4ef0d4d0
KS
4488 *n = ct_colors_allocated;
4489
4490 for (i = j = 0; i < CT_SIZE; ++i)
4491 for (p = ct_table[i]; p; p = p->next)
4492 colors[j++] = p->pixel;
4493 }
4494
4495 return colors;
4496}
4497
4498#else /* COLOR_TABLE_SUPPORT */
4499
4500static unsigned long
7c3320d8 4501lookup_rgb_color (struct frame *f, int r, int g, int b)
4ef0d4d0
KS
4502{
4503 unsigned long pixel;
4504
4ef0d4d0
KS
4505#ifdef HAVE_NTGUI
4506 pixel = PALETTERGB (r >> 8, g >> 8, b >> 8);
4507#endif /* HAVE_NTGUI */
4508
edfda783
AR
4509#ifdef HAVE_NS
4510 pixel = RGB_TO_ULONG (r >> 8, g >> 8, b >> 8);
4511#endif /* HAVE_NS */
4ef0d4d0
KS
4512 return pixel;
4513}
4514
4515static void
7c3320d8 4516init_color_table (void)
4ef0d4d0
KS
4517{
4518}
4519#endif /* COLOR_TABLE_SUPPORT */
4520
4521\f
4522/***********************************************************************
4523 Algorithms
4524 ***********************************************************************/
4525
4ef0d4d0
KS
4526/* Edge detection matrices for different edge-detection
4527 strategies. */
4528
4529static int emboss_matrix[9] = {
4530 /* x - 1 x x + 1 */
4531 2, -1, 0, /* y - 1 */
4532 -1, 0, 1, /* y */
4533 0, 1, -2 /* y + 1 */
4534};
4535
4536static int laplace_matrix[9] = {
4537 /* x - 1 x x + 1 */
4538 1, 0, 0, /* y - 1 */
4539 0, 0, 0, /* y */
4540 0, 0, -1 /* y + 1 */
4541};
4542
4543/* Value is the intensity of the color whose red/green/blue values
4544 are R, G, and B. */
4545
4546#define COLOR_INTENSITY(R, G, B) ((2 * (R) + 3 * (G) + (B)) / 6)
4547
4548
4549/* On frame F, return an array of XColor structures describing image
4550 IMG->pixmap. Each XColor structure has its pixel color set. RGB_P
578098f3 4551 means also fill the red/green/blue members of the XColor
4ef0d4d0
KS
4552 structures. Value is a pointer to the array of XColors structures,
4553 allocated with xmalloc; it must be freed by the caller. */
4554
4555static XColor *
578098f3 4556x_to_xcolors (struct frame *f, struct image *img, bool rgb_p)
4ef0d4d0
KS
4557{
4558 int x, y;
4559 XColor *colors, *p;
4560 XImagePtr_or_DC ximg;
4561#ifdef HAVE_NTGUI
4ef0d4d0
KS
4562 HGDIOBJ prev;
4563#endif /* HAVE_NTGUI */
4564
ddff3151
PE
4565 if (min (PTRDIFF_MAX, SIZE_MAX) / sizeof *colors / img->width < img->height)
4566 memory_full (SIZE_MAX);
23f86fce 4567 colors = xmalloc (sizeof *colors * img->width * img->height);
4ef0d4d0 4568
547c9269
YM
4569 /* Get the X image or create a memory device context for IMG. */
4570 ximg = image_get_x_image_or_dc (f, img, 0, &prev);
4ef0d4d0
KS
4571
4572 /* Fill the `pixel' members of the XColor array. I wished there
4573 were an easy and portable way to circumvent XGetPixel. */
4574 p = colors;
4575 for (y = 0; y < img->height; ++y)
4576 {
8b7d0a16 4577#if defined (HAVE_X_WINDOWS) || defined (HAVE_NTGUI)
6045c4fd 4578 XColor *row = p;
4ef0d4d0 4579 for (x = 0; x < img->width; ++x, ++p)
8b7d0a16 4580 p->pixel = GET_PIXEL (ximg, x, y);
4ef0d4d0
KS
4581 if (rgb_p)
4582 x_query_colors (f, row, img->width);
4583
4584#else
4585
4586 for (x = 0; x < img->width; ++x, ++p)
4587 {
4588 /* W32_TODO: palette support needed here? */
4589 p->pixel = GET_PIXEL (ximg, x, y);
4590 if (rgb_p)
4591 {
4ef0d4d0
KS
4592 p->red = RED16_FROM_ULONG (p->pixel);
4593 p->green = GREEN16_FROM_ULONG (p->pixel);
4594 p->blue = BLUE16_FROM_ULONG (p->pixel);
4ef0d4d0
KS
4595 }
4596 }
4597#endif /* HAVE_X_WINDOWS */
4598 }
4599
547c9269 4600 image_unget_x_image_or_dc (img, 0, ximg, prev);
4ef0d4d0
KS
4601
4602 return colors;
4603}
4604
4605#ifdef HAVE_NTGUI
4606
4607/* Put a pixel of COLOR at position X, Y in XIMG. XIMG must have been
4608 created with CreateDIBSection, with the pointer to the bit values
4609 stored in ximg->data. */
4610
3046a84b 4611static void
7c3320d8 4612XPutPixel (XImagePtr ximg, int x, int y, COLORREF color)
4ef0d4d0
KS
4613{
4614 int width = ximg->info.bmiHeader.biWidth;
4ef0d4d0
KS
4615 unsigned char * pixel;
4616
4617 /* True color images. */
4618 if (ximg->info.bmiHeader.biBitCount == 24)
4619 {
4620 int rowbytes = width * 3;
4621 /* Ensure scanlines are aligned on 4 byte boundaries. */
4622 if (rowbytes % 4)
4623 rowbytes += 4 - (rowbytes % 4);
4624
4625 pixel = ximg->data + y * rowbytes + x * 3;
4626 /* Windows bitmaps are in BGR order. */
4627 *pixel = GetBValue (color);
4628 *(pixel + 1) = GetGValue (color);
4629 *(pixel + 2) = GetRValue (color);
4630 }
4631 /* Monochrome images. */
4632 else if (ximg->info.bmiHeader.biBitCount == 1)
4633 {
4634 int rowbytes = width / 8;
4635 /* Ensure scanlines are aligned on 4 byte boundaries. */
4636 if (rowbytes % 4)
4637 rowbytes += 4 - (rowbytes % 4);
4638 pixel = ximg->data + y * rowbytes + x / 8;
4639 /* Filter out palette info. */
4640 if (color & 0x00ffffff)
4641 *pixel = *pixel | (1 << x % 8);
4642 else
4643 *pixel = *pixel & ~(1 << x % 8);
4644 }
4645 else
4646 image_error ("XPutPixel: palette image not supported", Qnil, Qnil);
4647}
4648
4649#endif /* HAVE_NTGUI */
4650
4651/* Create IMG->pixmap from an array COLORS of XColor structures, whose
4652 RGB members are set. F is the frame on which this all happens.
4653 COLORS will be freed; an existing IMG->pixmap will be freed, too. */
4654
4655static void
d3da34e0 4656x_from_xcolors (struct frame *f, struct image *img, XColor *colors)
4ef0d4d0
KS
4657{
4658 int x, y;
edfda783 4659 XImagePtr oimg = NULL;
4ef0d4d0
KS
4660 XColor *p;
4661
4662 init_color_table ();
4663
547c9269
YM
4664 x_clear_image_1 (f, img, CLEAR_IMAGE_PIXMAP | CLEAR_IMAGE_COLORS);
4665 image_create_x_image_and_pixmap (f, img, img->width, img->height, 0,
4666 &oimg, 0);
4ef0d4d0
KS
4667 p = colors;
4668 for (y = 0; y < img->height; ++y)
4669 for (x = 0; x < img->width; ++x, ++p)
4670 {
4671 unsigned long pixel;
4672 pixel = lookup_rgb_color (f, p->red, p->green, p->blue);
4673 XPutPixel (oimg, x, y, pixel);
4674 }
4675
4676 xfree (colors);
4ef0d4d0 4677
547c9269 4678 image_put_x_image (f, img, oimg, 0);
4ef0d4d0
KS
4679#ifdef COLOR_TABLE_SUPPORT
4680 img->colors = colors_in_color_table (&img->ncolors);
4681 free_color_table ();
4682#endif /* COLOR_TABLE_SUPPORT */
4683}
4684
4685
4686/* On frame F, perform edge-detection on image IMG.
4687
4688 MATRIX is a nine-element array specifying the transformation
4689 matrix. See emboss_matrix for an example.
4690
4691 COLOR_ADJUST is a color adjustment added to each pixel of the
4692 outgoing image. */
4693
4694static void
d3da34e0 4695x_detect_edges (struct frame *f, struct image *img, int *matrix, int color_adjust)
4ef0d4d0
KS
4696{
4697 XColor *colors = x_to_xcolors (f, img, 1);
4698 XColor *new, *p;
4699 int x, y, i, sum;
4700
4701 for (i = sum = 0; i < 9; ++i)
1ea40aa2 4702 sum += eabs (matrix[i]);
4ef0d4d0
KS
4703
4704#define COLOR(A, X, Y) ((A) + (Y) * img->width + (X))
4705
ddff3151
PE
4706 if (min (PTRDIFF_MAX, SIZE_MAX) / sizeof *new / img->width < img->height)
4707 memory_full (SIZE_MAX);
23f86fce 4708 new = xmalloc (sizeof *new * img->width * img->height);
4ef0d4d0
KS
4709
4710 for (y = 0; y < img->height; ++y)
4711 {
4712 p = COLOR (new, 0, y);
4713 p->red = p->green = p->blue = 0xffff/2;
4714 p = COLOR (new, img->width - 1, y);
4715 p->red = p->green = p->blue = 0xffff/2;
4716 }
4717
4718 for (x = 1; x < img->width - 1; ++x)
4719 {
4720 p = COLOR (new, x, 0);
4721 p->red = p->green = p->blue = 0xffff/2;
4722 p = COLOR (new, x, img->height - 1);
4723 p->red = p->green = p->blue = 0xffff/2;
4724 }
4725
4726 for (y = 1; y < img->height - 1; ++y)
4727 {
4728 p = COLOR (new, 1, y);
4729
4730 for (x = 1; x < img->width - 1; ++x, ++p)
4731 {
6ae141d6 4732 int r, g, b, yy, xx;
4ef0d4d0
KS
4733
4734 r = g = b = i = 0;
6ae141d6
PE
4735 for (yy = y - 1; yy < y + 2; ++yy)
4736 for (xx = x - 1; xx < x + 2; ++xx, ++i)
4ef0d4d0
KS
4737 if (matrix[i])
4738 {
6ae141d6 4739 XColor *t = COLOR (colors, xx, yy);
4ef0d4d0
KS
4740 r += matrix[i] * t->red;
4741 g += matrix[i] * t->green;
4742 b += matrix[i] * t->blue;
4743 }
4744
4745 r = (r / sum + color_adjust) & 0xffff;
4746 g = (g / sum + color_adjust) & 0xffff;
4747 b = (b / sum + color_adjust) & 0xffff;
4748 p->red = p->green = p->blue = COLOR_INTENSITY (r, g, b);
4749 }
4750 }
4751
4752 xfree (colors);
4753 x_from_xcolors (f, img, new);
4754
4755#undef COLOR
4756}
4757
4758
4759/* Perform the pre-defined `emboss' edge-detection on image IMG
4760 on frame F. */
4761
4762static void
d3da34e0 4763x_emboss (struct frame *f, struct image *img)
4ef0d4d0
KS
4764{
4765 x_detect_edges (f, img, emboss_matrix, 0xffff / 2);
4766}
4767
4768
4769/* Transform image IMG which is used on frame F with a Laplace
4770 edge-detection algorithm. The result is an image that can be used
4771 to draw disabled buttons, for example. */
4772
4773static void
d3da34e0 4774x_laplace (struct frame *f, struct image *img)
4ef0d4d0
KS
4775{
4776 x_detect_edges (f, img, laplace_matrix, 45000);
4777}
4778
4779
4780/* Perform edge-detection on image IMG on frame F, with specified
4781 transformation matrix MATRIX and color-adjustment COLOR_ADJUST.
4782
4783 MATRIX must be either
4784
4785 - a list of at least 9 numbers in row-major form
4786 - a vector of at least 9 numbers
4787
4788 COLOR_ADJUST nil means use a default; otherwise it must be a
4789 number. */
4790
4791static void
d3da34e0
JB
4792x_edge_detection (struct frame *f, struct image *img, Lisp_Object matrix,
4793 Lisp_Object color_adjust)
4ef0d4d0
KS
4794{
4795 int i = 0;
4796 int trans[9];
4797
4798 if (CONSP (matrix))
4799 {
4800 for (i = 0;
4801 i < 9 && CONSP (matrix) && NUMBERP (XCAR (matrix));
4802 ++i, matrix = XCDR (matrix))
4803 trans[i] = XFLOATINT (XCAR (matrix));
4804 }
4805 else if (VECTORP (matrix) && ASIZE (matrix) >= 9)
4806 {
4807 for (i = 0; i < 9 && NUMBERP (AREF (matrix, i)); ++i)
4808 trans[i] = XFLOATINT (AREF (matrix, i));
4809 }
4810
4811 if (NILP (color_adjust))
4812 color_adjust = make_number (0xffff / 2);
4813
4814 if (i == 9 && NUMBERP (color_adjust))
77a765fd 4815 x_detect_edges (f, img, trans, XFLOATINT (color_adjust));
4ef0d4d0
KS
4816}
4817
4818
4819/* Transform image IMG on frame F so that it looks disabled. */
4820
4821static void
d3da34e0 4822x_disable_image (struct frame *f, struct image *img)
4ef0d4d0
KS
4823{
4824 Display_Info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
4825#ifdef HAVE_NTGUI
4826 int n_planes = dpyinfo->n_planes * dpyinfo->n_cbits;
4827#else
4828 int n_planes = dpyinfo->n_planes;
4829#endif /* HAVE_NTGUI */
4830
4831 if (n_planes >= 2)
4832 {
4833 /* Color (or grayscale). Convert to gray, and equalize. Just
4834 drawing such images with a stipple can look very odd, so
4835 we're using this method instead. */
4836 XColor *colors = x_to_xcolors (f, img, 1);
4837 XColor *p, *end;
4838 const int h = 15000;
4839 const int l = 30000;
4840
4841 for (p = colors, end = colors + img->width * img->height;
4842 p < end;
4843 ++p)
4844 {
4845 int i = COLOR_INTENSITY (p->red, p->green, p->blue);
4846 int i2 = (0xffff - h - l) * i / 0xffff + l;
4847 p->red = p->green = p->blue = i2;
4848 }
4849
4850 x_from_xcolors (f, img, colors);
4851 }
4852
4853 /* Draw a cross over the disabled image, if we must or if we
4854 should. */
4855 if (n_planes < 2 || cross_disabled_images)
4856 {
4857#ifndef HAVE_NTGUI
5afa3a81 4858#ifndef HAVE_NS /* TODO: NS support, however this not needed for toolbars */
edfda783 4859
4ef0d4d0 4860#define MaskForeground(f) WHITE_PIX_DEFAULT (f)
4ef0d4d0 4861
6045c4fd 4862 Display *dpy = FRAME_X_DISPLAY (f);
547c9269
YM
4863 GC gc;
4864
4865 image_sync_to_pixmaps (f, img);
4866 gc = XCreateGC (dpy, img->pixmap, 0, NULL);
4ef0d4d0
KS
4867 XSetForeground (dpy, gc, BLACK_PIX_DEFAULT (f));
4868 XDrawLine (dpy, img->pixmap, gc, 0, 0,
4869 img->width - 1, img->height - 1);
4870 XDrawLine (dpy, img->pixmap, gc, 0, img->height - 1,
4871 img->width - 1, 0);
4872 XFreeGC (dpy, gc);
4873
4874 if (img->mask)
4875 {
ae8279db 4876 gc = XCreateGC (dpy, img->mask, 0, NULL);
4ef0d4d0
KS
4877 XSetForeground (dpy, gc, MaskForeground (f));
4878 XDrawLine (dpy, img->mask, gc, 0, 0,
4879 img->width - 1, img->height - 1);
4880 XDrawLine (dpy, img->mask, gc, 0, img->height - 1,
4881 img->width - 1, 0);
4882 XFreeGC (dpy, gc);
4883 }
edfda783 4884#endif /* !HAVE_NS */
4ef0d4d0
KS
4885#else
4886 HDC hdc, bmpdc;
4887 HGDIOBJ prev;
4888
4889 hdc = get_frame_dc (f);
4890 bmpdc = CreateCompatibleDC (hdc);
4891 release_frame_dc (f, hdc);
4892
4893 prev = SelectObject (bmpdc, img->pixmap);
4894
4895 SetTextColor (bmpdc, BLACK_PIX_DEFAULT (f));
4896 MoveToEx (bmpdc, 0, 0, NULL);
4897 LineTo (bmpdc, img->width - 1, img->height - 1);
4898 MoveToEx (bmpdc, 0, img->height - 1, NULL);
4899 LineTo (bmpdc, img->width - 1, 0);
4900
4901 if (img->mask)
4902 {
4903 SelectObject (bmpdc, img->mask);
4904 SetTextColor (bmpdc, WHITE_PIX_DEFAULT (f));
4905 MoveToEx (bmpdc, 0, 0, NULL);
4906 LineTo (bmpdc, img->width - 1, img->height - 1);
4907 MoveToEx (bmpdc, 0, img->height - 1, NULL);
4908 LineTo (bmpdc, img->width - 1, 0);
4909 }
4910 SelectObject (bmpdc, prev);
4911 DeleteDC (bmpdc);
4912#endif /* HAVE_NTGUI */
4913 }
4914}
4915
4916
4917/* Build a mask for image IMG which is used on frame F. FILE is the
4918 name of an image file, for error messages. HOW determines how to
4919 determine the background color of IMG. If it is a list '(R G B)',
4920 with R, G, and B being integers >= 0, take that as the color of the
4921 background. Otherwise, determine the background color of IMG
578098f3 4922 heuristically. */
4ef0d4d0 4923
578098f3 4924static void
d3da34e0 4925x_build_heuristic_mask (struct frame *f, struct image *img, Lisp_Object how)
4ef0d4d0
KS
4926{
4927 XImagePtr_or_DC ximg;
4928#ifndef HAVE_NTGUI
4929 XImagePtr mask_img;
4930#else
4ef0d4d0
KS
4931 HGDIOBJ prev;
4932 char *mask_img;
4933 int row_width;
4934#endif /* HAVE_NTGUI */
578098f3
PE
4935 int x, y;
4936 bool rc, use_img_background;
4ef0d4d0
KS
4937 unsigned long bg = 0;
4938
4939 if (img->mask)
547c9269 4940 x_clear_image_1 (f, img, CLEAR_IMAGE_MASK);
4ef0d4d0
KS
4941
4942#ifndef HAVE_NTGUI
edfda783 4943#ifndef HAVE_NS
4ef0d4d0 4944 /* Create an image and pixmap serving as mask. */
547c9269
YM
4945 rc = image_create_x_image_and_pixmap (f, img, img->width, img->height, 1,
4946 &mask_img, 1);
4ef0d4d0 4947 if (!rc)
578098f3 4948 return;
edfda783 4949#endif /* !HAVE_NS */
4ef0d4d0
KS
4950#else
4951 /* Create the bit array serving as mask. */
4952 row_width = (img->width + 7) / 8;
23f86fce 4953 mask_img = xzalloc (row_width * img->height);
4ef0d4d0
KS
4954#endif /* HAVE_NTGUI */
4955
547c9269
YM
4956 /* Get the X image or create a memory device context for IMG. */
4957 ximg = image_get_x_image_or_dc (f, img, 0, &prev);
4958
4ef0d4d0
KS
4959 /* Determine the background color of ximg. If HOW is `(R G B)'
4960 take that as color. Otherwise, use the image's background color. */
4961 use_img_background = 1;
4962
4963 if (CONSP (how))
4964 {
4965 int rgb[3], i;
4966
4967 for (i = 0; i < 3 && CONSP (how) && NATNUMP (XCAR (how)); ++i)
4968 {
4969 rgb[i] = XFASTINT (XCAR (how)) & 0xffff;
4970 how = XCDR (how);
4971 }
4972
4973 if (i == 3 && NILP (how))
4974 {
4975 char color_name[30];
4976 sprintf (color_name, "#%04x%04x%04x", rgb[0], rgb[1], rgb[2]);
4977 bg = (
4978#ifdef HAVE_NTGUI
4979 0x00ffffff & /* Filter out palette info. */
4980#endif /* HAVE_NTGUI */
4981 x_alloc_image_color (f, img, build_string (color_name), 0));
4982 use_img_background = 0;
4983 }
4984 }
4985
4986 if (use_img_background)
6ac3c7bb 4987 bg = four_corners_best (ximg, img->corners, img->width, img->height);
4ef0d4d0
KS
4988
4989 /* Set all bits in mask_img to 1 whose color in ximg is different
4990 from the background color bg. */
4991#ifndef HAVE_NTGUI
4992 for (y = 0; y < img->height; ++y)
4993 for (x = 0; x < img->width; ++x)
edfda783 4994#ifndef HAVE_NS
4ef0d4d0 4995 XPutPixel (mask_img, x, y, (XGetPixel (ximg, x, y) != bg
9ecf6403 4996 ? PIX_MASK_DRAW : PIX_MASK_RETAIN));
edfda783
AR
4997#else
4998 if (XGetPixel (ximg, x, y) == bg)
ed3751c8 4999 ns_set_alpha (ximg, x, y, 0);
edfda783
AR
5000#endif /* HAVE_NS */
5001#ifndef HAVE_NS
4ef0d4d0
KS
5002 /* Fill in the background_transparent field while we have the mask handy. */
5003 image_background_transparent (img, f, mask_img);
5004
547c9269
YM
5005 /* Put mask_img into the image. */
5006 image_put_x_image (f, img, mask_img, 1);
edfda783 5007#endif /* !HAVE_NS */
4ef0d4d0
KS
5008#else
5009 for (y = 0; y < img->height; ++y)
5010 for (x = 0; x < img->width; ++x)
5011 {
5012 COLORREF p = GetPixel (ximg, x, y);
5013 if (p != bg)
5014 mask_img[y * row_width + x / 8] |= 1 << (x % 8);
5015 }
5016
5017 /* Create the mask image. */
5018 img->mask = w32_create_pixmap_from_bitmap_data (img->width, img->height,
5019 mask_img);
5020 /* Fill in the background_transparent field while we have the mask handy. */
5021 SelectObject (ximg, img->mask);
5022 image_background_transparent (img, f, ximg);
5023
5024 /* Was: x_destroy_x_image ((XImagePtr )mask_img); which seems bogus ++kfs */
5025 xfree (mask_img);
5026#endif /* HAVE_NTGUI */
5027
547c9269 5028 image_unget_x_image_or_dc (img, 0, ximg, prev);
4ef0d4d0
KS
5029}
5030
5031\f
5032/***********************************************************************
5033 PBM (mono, gray, color)
5034 ***********************************************************************/
5035
578098f3
PE
5036static bool pbm_image_p (Lisp_Object object);
5037static bool pbm_load (struct frame *f, struct image *img);
4ef0d4d0
KS
5038
5039/* The symbol `pbm' identifying images of this type. */
5040
955cbe7b 5041static Lisp_Object Qpbm;
4ef0d4d0
KS
5042
5043/* Indices of image specification fields in gs_format, below. */
5044
5045enum pbm_keyword_index
5046{
5047 PBM_TYPE,
5048 PBM_FILE,
5049 PBM_DATA,
5050 PBM_ASCENT,
5051 PBM_MARGIN,
5052 PBM_RELIEF,
5053 PBM_ALGORITHM,
5054 PBM_HEURISTIC_MASK,
5055 PBM_MASK,
5056 PBM_FOREGROUND,
5057 PBM_BACKGROUND,
5058 PBM_LAST
5059};
5060
5061/* Vector of image_keyword structures describing the format
5062 of valid user-defined image specifications. */
5063
91433552 5064static const struct image_keyword pbm_format[PBM_LAST] =
4ef0d4d0
KS
5065{
5066 {":type", IMAGE_SYMBOL_VALUE, 1},
5067 {":file", IMAGE_STRING_VALUE, 0},
5068 {":data", IMAGE_STRING_VALUE, 0},
5069 {":ascent", IMAGE_ASCENT_VALUE, 0},
c4a07a4c 5070 {":margin", IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR, 0},
4ef0d4d0
KS
5071 {":relief", IMAGE_INTEGER_VALUE, 0},
5072 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5073 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5074 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5075 {":foreground", IMAGE_STRING_OR_NIL_VALUE, 0},
5076 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
5077};
5078
5079/* Structure describing the image type `pbm'. */
5080
5081static struct image_type pbm_type =
5082{
5083 &Qpbm,
5084 pbm_image_p,
5085 pbm_load,
5086 x_clear_image,
bb4d86b4 5087 NULL,
4ef0d4d0
KS
5088 NULL
5089};
5090
5091
578098f3 5092/* Return true if OBJECT is a valid PBM image specification. */
4ef0d4d0 5093
578098f3 5094static bool
d3da34e0 5095pbm_image_p (Lisp_Object object)
4ef0d4d0
KS
5096{
5097 struct image_keyword fmt[PBM_LAST];
5098
72af86bd 5099 memcpy (fmt, pbm_format, sizeof fmt);
4ef0d4d0
KS
5100
5101 if (!parse_image_spec (object, fmt, PBM_LAST, Qpbm))
5102 return 0;
5103
5104 /* Must specify either :data or :file. */
5105 return fmt[PBM_DATA].count + fmt[PBM_FILE].count == 1;
5106}
5107
5108
5109/* Scan a decimal number from *S and return it. Advance *S while
5110 reading the number. END is the end of the string. Value is -1 at
5111 end of input. */
5112
5113static int
d3da34e0 5114pbm_scan_number (unsigned char **s, unsigned char *end)
4ef0d4d0
KS
5115{
5116 int c = 0, val = -1;
5117
5118 while (*s < end)
5119 {
5120 /* Skip white-space. */
620f13b0 5121 while (*s < end && (c = *(*s)++, c_isspace (c)))
4ef0d4d0
KS
5122 ;
5123
5124 if (c == '#')
5125 {
5126 /* Skip comment to end of line. */
5127 while (*s < end && (c = *(*s)++, c != '\n'))
5128 ;
5129 }
620f13b0 5130 else if (c_isdigit (c))
4ef0d4d0
KS
5131 {
5132 /* Read decimal number. */
5133 val = c - '0';
620f13b0 5134 while (*s < end && (c = *(*s)++, c_isdigit (c)))
4ef0d4d0
KS
5135 val = 10 * val + c - '0';
5136 break;
5137 }
5138 else
5139 break;
5140 }
5141
5142 return val;
5143}
5144
5145
4ef0d4d0
KS
5146/* Load PBM image IMG for use on frame F. */
5147
578098f3 5148static bool
d3da34e0 5149pbm_load (struct frame *f, struct image *img)
4ef0d4d0 5150{
578098f3
PE
5151 bool raw_p;
5152 int x, y;
4ef0d4d0
KS
5153 int width, height, max_color_idx = 0;
5154 XImagePtr ximg;
5155 Lisp_Object file, specified_file;
5156 enum {PBM_MONO, PBM_GRAY, PBM_COLOR} type;
4ef0d4d0
KS
5157 unsigned char *contents = NULL;
5158 unsigned char *end, *p;
dd52fcea 5159 ptrdiff_t size;
4ef0d4d0
KS
5160
5161 specified_file = image_spec_value (img->spec, QCfile, NULL);
4ef0d4d0
KS
5162
5163 if (STRINGP (specified_file))
5164 {
5165 file = x_find_image_file (specified_file);
5166 if (!STRINGP (file))
5167 {
5168 image_error ("Cannot find image file `%s'", specified_file, Qnil);
4ef0d4d0
KS
5169 return 0;
5170 }
5171
42a5b22f 5172 contents = slurp_file (SSDATA (file), &size);
4ef0d4d0
KS
5173 if (contents == NULL)
5174 {
5175 image_error ("Error reading `%s'", file, Qnil);
4ef0d4d0
KS
5176 return 0;
5177 }
5178
5179 p = contents;
5180 end = contents + size;
5181 }
5182 else
5183 {
5184 Lisp_Object data;
5185 data = image_spec_value (img->spec, QCdata, NULL);
7574650a
AS
5186 if (!STRINGP (data))
5187 {
5188 image_error ("Invalid image data `%s'", data, Qnil);
5189 return 0;
5190 }
4ef0d4d0
KS
5191 p = SDATA (data);
5192 end = p + SBYTES (data);
5193 }
5194
5195 /* Check magic number. */
5196 if (end - p < 2 || *p++ != 'P')
5197 {
5198 image_error ("Not a PBM image: `%s'", img->spec, Qnil);
5199 error:
5200 xfree (contents);
4ef0d4d0
KS
5201 return 0;
5202 }
5203
5204 switch (*p++)
5205 {
5206 case '1':
5207 raw_p = 0, type = PBM_MONO;
5208 break;
5209
5210 case '2':
5211 raw_p = 0, type = PBM_GRAY;
5212 break;
5213
5214 case '3':
5215 raw_p = 0, type = PBM_COLOR;
5216 break;
5217
5218 case '4':
5219 raw_p = 1, type = PBM_MONO;
5220 break;
5221
5222 case '5':
5223 raw_p = 1, type = PBM_GRAY;
5224 break;
5225
5226 case '6':
5227 raw_p = 1, type = PBM_COLOR;
5228 break;
5229
5230 default:
5231 image_error ("Not a PBM image: `%s'", img->spec, Qnil);
5232 goto error;
5233 }
5234
5235 /* Read width, height, maximum color-component. Characters
5236 starting with `#' up to the end of a line are ignored. */
5237 width = pbm_scan_number (&p, end);
5238 height = pbm_scan_number (&p, end);
5239
5240 if (type != PBM_MONO)
5241 {
5242 max_color_idx = pbm_scan_number (&p, end);
b9c89e11
JR
5243 if (max_color_idx > 65535 || max_color_idx < 0)
5244 {
5245 image_error ("Unsupported maximum PBM color value", Qnil, Qnil);
5246 goto error;
5247 }
4ef0d4d0
KS
5248 }
5249
b9c89e11
JR
5250 if (!check_image_size (f, width, height))
5251 {
10ea2b82 5252 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
b9c89e11
JR
5253 goto error;
5254 }
4ef0d4d0 5255
547c9269 5256 if (!image_create_x_image_and_pixmap (f, img, width, height, 0, &ximg, 0))
4ef0d4d0
KS
5257 goto error;
5258
5259 /* Initialize the color hash table. */
5260 init_color_table ();
5261
5262 if (type == PBM_MONO)
5263 {
5264 int c = 0, g;
5265 struct image_keyword fmt[PBM_LAST];
5266 unsigned long fg = FRAME_FOREGROUND_PIXEL (f);
5267 unsigned long bg = FRAME_BACKGROUND_PIXEL (f);
5268
5269 /* Parse the image specification. */
72af86bd 5270 memcpy (fmt, pbm_format, sizeof fmt);
4ef0d4d0
KS
5271 parse_image_spec (img->spec, fmt, PBM_LAST, Qpbm);
5272
5273 /* Get foreground and background colors, maybe allocate colors. */
5274 if (fmt[PBM_FOREGROUND].count
5275 && STRINGP (fmt[PBM_FOREGROUND].value))
5276 fg = x_alloc_image_color (f, img, fmt[PBM_FOREGROUND].value, fg);
5277 if (fmt[PBM_BACKGROUND].count
5278 && STRINGP (fmt[PBM_BACKGROUND].value))
5279 {
5280 bg = x_alloc_image_color (f, img, fmt[PBM_BACKGROUND].value, bg);
5281 img->background = bg;
5282 img->background_valid = 1;
5283 }
5284
5285 for (y = 0; y < height; ++y)
5286 for (x = 0; x < width; ++x)
5287 {
5288 if (raw_p)
5289 {
5290 if ((x & 7) == 0)
c295e710
CY
5291 {
5292 if (p >= end)
5293 {
5294 x_destroy_x_image (ximg);
5295 x_clear_image (f, img);
5296 image_error ("Invalid image size in image `%s'",
5297 img->spec, Qnil);
5298 goto error;
5299 }
5300 c = *p++;
5301 }
4ef0d4d0
KS
5302 g = c & 0x80;
5303 c <<= 1;
5304 }
5305 else
5306 g = pbm_scan_number (&p, end);
5307
5308 XPutPixel (ximg, x, y, g ? fg : bg);
5309 }
5310 }
5311 else
5312 {
b9c89e11
JR
5313 int expected_size = height * width;
5314 if (max_color_idx > 255)
5315 expected_size *= 2;
5316 if (type == PBM_COLOR)
5317 expected_size *= 3;
5318
5319 if (raw_p && p + expected_size > end)
39e653ea
CY
5320 {
5321 x_destroy_x_image (ximg);
fb0b0862 5322 x_clear_image (f, img);
39e653ea
CY
5323 image_error ("Invalid image size in image `%s'",
5324 img->spec, Qnil);
5325 goto error;
5326 }
5327
4ef0d4d0
KS
5328 for (y = 0; y < height; ++y)
5329 for (x = 0; x < width; ++x)
5330 {
5331 int r, g, b;
5332
b9c89e11
JR
5333 if (type == PBM_GRAY && raw_p)
5334 {
5335 r = g = b = *p++;
5336 if (max_color_idx > 255)
5337 r = g = b = r * 256 + *p++;
5338 }
5339 else if (type == PBM_GRAY)
5340 r = g = b = pbm_scan_number (&p, end);
4ef0d4d0
KS
5341 else if (raw_p)
5342 {
5343 r = *p++;
b9c89e11
JR
5344 if (max_color_idx > 255)
5345 r = r * 256 + *p++;
4ef0d4d0 5346 g = *p++;
b9c89e11
JR
5347 if (max_color_idx > 255)
5348 g = g * 256 + *p++;
4ef0d4d0 5349 b = *p++;
b9c89e11
JR
5350 if (max_color_idx > 255)
5351 b = b * 256 + *p++;
4ef0d4d0
KS
5352 }
5353 else
5354 {
5355 r = pbm_scan_number (&p, end);
5356 g = pbm_scan_number (&p, end);
5357 b = pbm_scan_number (&p, end);
5358 }
5359
5360 if (r < 0 || g < 0 || b < 0)
5361 {
5362 x_destroy_x_image (ximg);
5363 image_error ("Invalid pixel value in image `%s'",
5364 img->spec, Qnil);
5365 goto error;
5366 }
5367
5368 /* RGB values are now in the range 0..max_color_idx.
5369 Scale this to the range 0..0xffff supported by X. */
5370 r = (double) r * 65535 / max_color_idx;
5371 g = (double) g * 65535 / max_color_idx;
5372 b = (double) b * 65535 / max_color_idx;
5373 XPutPixel (ximg, x, y, lookup_rgb_color (f, r, g, b));
5374 }
5375 }
5376
5377#ifdef COLOR_TABLE_SUPPORT
5378 /* Store in IMG->colors the colors allocated for the image, and
5379 free the color table. */
5380 img->colors = colors_in_color_table (&img->ncolors);
5381 free_color_table ();
5382#endif /* COLOR_TABLE_SUPPORT */
5383
5384 img->width = width;
5385 img->height = height;
5386
5387 /* Maybe fill in the background field while we have ximg handy. */
5388
5389 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
2e09fef1
EZ
5390 /* Casting avoids a GCC warning. */
5391 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
4ef0d4d0 5392
547c9269
YM
5393 /* Put ximg into the image. */
5394 image_put_x_image (f, img, ximg, 0);
4ef0d4d0
KS
5395
5396 /* X and W32 versions did it here, MAC version above. ++kfs
1f026899 5397 img->width = width;
4ef0d4d0
KS
5398 img->height = height; */
5399
4ef0d4d0
KS
5400 xfree (contents);
5401 return 1;
5402}
5403
5404\f
5405/***********************************************************************
5406 PNG
5407 ***********************************************************************/
5408
9e2a2647 5409#if defined (HAVE_PNG) || defined (HAVE_NS)
4ef0d4d0
KS
5410
5411/* Function prototypes. */
5412
578098f3
PE
5413static bool png_image_p (Lisp_Object object);
5414static bool png_load (struct frame *f, struct image *img);
4ef0d4d0
KS
5415
5416/* The symbol `png' identifying images of this type. */
5417
955cbe7b 5418static Lisp_Object Qpng;
4ef0d4d0
KS
5419
5420/* Indices of image specification fields in png_format, below. */
5421
5422enum png_keyword_index
5423{
5424 PNG_TYPE,
5425 PNG_DATA,
5426 PNG_FILE,
5427 PNG_ASCENT,
5428 PNG_MARGIN,
5429 PNG_RELIEF,
5430 PNG_ALGORITHM,
5431 PNG_HEURISTIC_MASK,
5432 PNG_MASK,
5433 PNG_BACKGROUND,
5434 PNG_LAST
5435};
5436
5437/* Vector of image_keyword structures describing the format
5438 of valid user-defined image specifications. */
5439
91433552 5440static const struct image_keyword png_format[PNG_LAST] =
4ef0d4d0
KS
5441{
5442 {":type", IMAGE_SYMBOL_VALUE, 1},
5443 {":data", IMAGE_STRING_VALUE, 0},
5444 {":file", IMAGE_STRING_VALUE, 0},
5445 {":ascent", IMAGE_ASCENT_VALUE, 0},
c4a07a4c 5446 {":margin", IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR, 0},
4ef0d4d0
KS
5447 {":relief", IMAGE_INTEGER_VALUE, 0},
5448 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5449 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5450 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
5451 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
5452};
5453
a9e7a9d5 5454#if defined HAVE_NTGUI && defined WINDOWSNT
578098f3 5455static bool init_png_functions (void);
bb4d86b4
CY
5456#else
5457#define init_png_functions NULL
5458#endif
5459
4ef0d4d0
KS
5460/* Structure describing the image type `png'. */
5461
5462static struct image_type png_type =
5463{
5464 &Qpng,
5465 png_image_p,
5466 png_load,
5467 x_clear_image,
bb4d86b4 5468 init_png_functions,
4ef0d4d0
KS
5469 NULL
5470};
5471
578098f3 5472/* Return true if OBJECT is a valid PNG image specification. */
4ef0d4d0 5473
578098f3 5474static bool
d3da34e0 5475png_image_p (Lisp_Object object)
4ef0d4d0
KS
5476{
5477 struct image_keyword fmt[PNG_LAST];
72af86bd 5478 memcpy (fmt, png_format, sizeof fmt);
4ef0d4d0
KS
5479
5480 if (!parse_image_spec (object, fmt, PNG_LAST, Qpng))
5481 return 0;
5482
5483 /* Must specify either the :data or :file keyword. */
5484 return fmt[PNG_FILE].count + fmt[PNG_DATA].count == 1;
5485}
5486
9e2a2647 5487#endif /* HAVE_PNG || HAVE_NS */
4ef0d4d0
KS
5488
5489
5490#ifdef HAVE_PNG
5491
0fda9b75 5492#ifdef WINDOWSNT
4ef0d4d0
KS
5493/* PNG library details. */
5494
14beddf4
CY
5495DEF_IMGLIB_FN (png_voidp, png_get_io_ptr, (png_structp));
5496DEF_IMGLIB_FN (int, png_sig_cmp, (png_bytep, png_size_t, png_size_t));
5497DEF_IMGLIB_FN (png_structp, png_create_read_struct, (png_const_charp, png_voidp,
5498 png_error_ptr, png_error_ptr));
5499DEF_IMGLIB_FN (png_infop, png_create_info_struct, (png_structp));
5500DEF_IMGLIB_FN (void, png_destroy_read_struct, (png_structpp, png_infopp, png_infopp));
5501DEF_IMGLIB_FN (void, png_set_read_fn, (png_structp, png_voidp, png_rw_ptr));
5502DEF_IMGLIB_FN (void, png_set_sig_bytes, (png_structp, int));
5503DEF_IMGLIB_FN (void, png_read_info, (png_structp, png_infop));
5504DEF_IMGLIB_FN (png_uint_32, png_get_IHDR, (png_structp, png_infop,
850690cc
JB
5505 png_uint_32 *, png_uint_32 *,
5506 int *, int *, int *, int *, int *));
14beddf4
CY
5507DEF_IMGLIB_FN (png_uint_32, png_get_valid, (png_structp, png_infop, png_uint_32));
5508DEF_IMGLIB_FN (void, png_set_strip_16, (png_structp));
5509DEF_IMGLIB_FN (void, png_set_expand, (png_structp));
5510DEF_IMGLIB_FN (void, png_set_gray_to_rgb, (png_structp));
5511DEF_IMGLIB_FN (void, png_set_background, (png_structp, png_color_16p,
850690cc 5512 int, int, double));
14beddf4
CY
5513DEF_IMGLIB_FN (png_uint_32, png_get_bKGD, (png_structp, png_infop, png_color_16p *));
5514DEF_IMGLIB_FN (void, png_read_update_info, (png_structp, png_infop));
5515DEF_IMGLIB_FN (png_byte, png_get_channels, (png_structp, png_infop));
5516DEF_IMGLIB_FN (png_size_t, png_get_rowbytes, (png_structp, png_infop));
5517DEF_IMGLIB_FN (void, png_read_image, (png_structp, png_bytepp));
5518DEF_IMGLIB_FN (void, png_read_end, (png_structp, png_infop));
5519DEF_IMGLIB_FN (void, png_error, (png_structp, png_const_charp));
4ef0d4d0 5520
7f9c5df9 5521#if (PNG_LIBPNG_VER >= 10500)
14beddf4
CY
5522DEF_IMGLIB_FN (void, png_longjmp, (png_structp, int));
5523DEF_IMGLIB_FN (jmp_buf *, png_set_longjmp_fn, (png_structp, png_longjmp_ptr, size_t));
7f9c5df9 5524#endif /* libpng version >= 1.5 */
4ef0d4d0 5525
578098f3 5526static bool
d07ff9db 5527init_png_functions (void)
4ef0d4d0
KS
5528{
5529 HMODULE library;
5530
d07ff9db 5531 if (!(library = w32_delayed_load (Qpng)))
4ef0d4d0
KS
5532 return 0;
5533
5534 LOAD_IMGLIB_FN (library, png_get_io_ptr);
285d07e2 5535 LOAD_IMGLIB_FN (library, png_sig_cmp);
4ef0d4d0
KS
5536 LOAD_IMGLIB_FN (library, png_create_read_struct);
5537 LOAD_IMGLIB_FN (library, png_create_info_struct);
5538 LOAD_IMGLIB_FN (library, png_destroy_read_struct);
5539 LOAD_IMGLIB_FN (library, png_set_read_fn);
4ef0d4d0
KS
5540 LOAD_IMGLIB_FN (library, png_set_sig_bytes);
5541 LOAD_IMGLIB_FN (library, png_read_info);
5542 LOAD_IMGLIB_FN (library, png_get_IHDR);
5543 LOAD_IMGLIB_FN (library, png_get_valid);
5544 LOAD_IMGLIB_FN (library, png_set_strip_16);
5545 LOAD_IMGLIB_FN (library, png_set_expand);
5546 LOAD_IMGLIB_FN (library, png_set_gray_to_rgb);
5547 LOAD_IMGLIB_FN (library, png_set_background);
5548 LOAD_IMGLIB_FN (library, png_get_bKGD);
5549 LOAD_IMGLIB_FN (library, png_read_update_info);
5550 LOAD_IMGLIB_FN (library, png_get_channels);
5551 LOAD_IMGLIB_FN (library, png_get_rowbytes);
5552 LOAD_IMGLIB_FN (library, png_read_image);
5553 LOAD_IMGLIB_FN (library, png_read_end);
5554 LOAD_IMGLIB_FN (library, png_error);
7f9c5df9
CY
5555
5556#if (PNG_LIBPNG_VER >= 10500)
5557 LOAD_IMGLIB_FN (library, png_longjmp);
5558 LOAD_IMGLIB_FN (library, png_set_longjmp_fn);
5559#endif /* libpng version >= 1.5 */
5560
4ef0d4d0
KS
5561 return 1;
5562}
5563#else
5564
5565#define fn_png_get_io_ptr png_get_io_ptr
285d07e2 5566#define fn_png_sig_cmp png_sig_cmp
4ef0d4d0
KS
5567#define fn_png_create_read_struct png_create_read_struct
5568#define fn_png_create_info_struct png_create_info_struct
5569#define fn_png_destroy_read_struct png_destroy_read_struct
5570#define fn_png_set_read_fn png_set_read_fn
4ef0d4d0
KS
5571#define fn_png_set_sig_bytes png_set_sig_bytes
5572#define fn_png_read_info png_read_info
5573#define fn_png_get_IHDR png_get_IHDR
5574#define fn_png_get_valid png_get_valid
5575#define fn_png_set_strip_16 png_set_strip_16
5576#define fn_png_set_expand png_set_expand
5577#define fn_png_set_gray_to_rgb png_set_gray_to_rgb
5578#define fn_png_set_background png_set_background
5579#define fn_png_get_bKGD png_get_bKGD
5580#define fn_png_read_update_info png_read_update_info
5581#define fn_png_get_channels png_get_channels
5582#define fn_png_get_rowbytes png_get_rowbytes
5583#define fn_png_read_image png_read_image
5584#define fn_png_read_end png_read_end
5585#define fn_png_error png_error
5586
7f9c5df9
CY
5587#if (PNG_LIBPNG_VER >= 10500)
5588#define fn_png_longjmp png_longjmp
5589#define fn_png_set_longjmp_fn png_set_longjmp_fn
5590#endif /* libpng version >= 1.5 */
5591
0fda9b75 5592#endif /* WINDOWSNT */
4ef0d4d0 5593
0328b6de
PE
5594/* Possibly inefficient/inexact substitutes for _setjmp and _longjmp.
5595 Do not use sys_setjmp, as PNG supports only jmp_buf. The _longjmp
7105c8cb
EZ
5596 substitute may munge the signal mask, but that should be OK here.
5597 MinGW (MS-Windows) uses _setjmp and defines setjmp to _setjmp in
5598 the system header setjmp.h; don't mess up that. */
0328b6de 5599#ifndef HAVE__SETJMP
39a57ad0 5600# define _setjmp(j) setjmp (j)
0328b6de
PE
5601# define _longjmp longjmp
5602#endif
7f9c5df9
CY
5603
5604#if (PNG_LIBPNG_VER < 10500)
af26b72c 5605#define PNG_LONGJMP(ptr) (_longjmp ((ptr)->jmpbuf, 1))
7f9c5df9
CY
5606#define PNG_JMPBUF(ptr) ((ptr)->jmpbuf)
5607#else
df61c790 5608/* In libpng version 1.5, the jmpbuf member is hidden. (Bug#7908) */
c2e79cb4 5609#define PNG_LONGJMP(ptr) (fn_png_longjmp ((ptr), 1))
7f9c5df9 5610#define PNG_JMPBUF(ptr) \
af26b72c 5611 (*fn_png_set_longjmp_fn ((ptr), _longjmp, sizeof (jmp_buf)))
7f9c5df9
CY
5612#endif
5613
4ef0d4d0
KS
5614/* Error and warning handlers installed when the PNG library
5615 is initialized. */
5616
845ca893 5617static _Noreturn void
d3da34e0 5618my_png_error (png_struct *png_ptr, const char *msg)
4ef0d4d0 5619{
a54e2c05 5620 eassert (png_ptr != NULL);
5be1c984
EZ
5621 /* Avoid compiler warning about deprecated direct access to
5622 png_ptr's fields in libpng versions 1.4.x. */
4ef0d4d0 5623 image_error ("PNG error: %s", build_string (msg), Qnil);
7f9c5df9 5624 PNG_LONGJMP (png_ptr);
4ef0d4d0
KS
5625}
5626
5627
5628static void
d3da34e0 5629my_png_warning (png_struct *png_ptr, const char *msg)
4ef0d4d0 5630{
a54e2c05 5631 eassert (png_ptr != NULL);
4ef0d4d0
KS
5632 image_error ("PNG warning: %s", build_string (msg), Qnil);
5633}
5634
5635/* Memory source for PNG decoding. */
5636
5637struct png_memory_storage
5638{
5639 unsigned char *bytes; /* The data */
3f791afe
PE
5640 ptrdiff_t len; /* How big is it? */
5641 ptrdiff_t index; /* Where are we? */
4ef0d4d0
KS
5642};
5643
5644
5645/* Function set as reader function when reading PNG image from memory.
5646 PNG_PTR is a pointer to the PNG control structure. Copy LENGTH
5647 bytes from the input to DATA. */
5648
5649static void
d3da34e0 5650png_read_from_memory (png_structp png_ptr, png_bytep data, png_size_t length)
4ef0d4d0
KS
5651{
5652 struct png_memory_storage *tbr
5653 = (struct png_memory_storage *) fn_png_get_io_ptr (png_ptr);
5654
5655 if (length > tbr->len - tbr->index)
5656 fn_png_error (png_ptr, "Read error");
5657
72af86bd 5658 memcpy (data, tbr->bytes + tbr->index, length);
4ef0d4d0
KS
5659 tbr->index = tbr->index + length;
5660}
5661
b0da69a7 5662
9a22a004
JB
5663/* Function set as reader function when reading PNG image from a file.
5664 PNG_PTR is a pointer to the PNG control structure. Copy LENGTH
5665 bytes from the input to DATA. */
5666
5667static void
d3da34e0 5668png_read_from_file (png_structp png_ptr, png_bytep data, png_size_t length)
9a22a004
JB
5669{
5670 FILE *fp = (FILE *) fn_png_get_io_ptr (png_ptr);
5671
5672 if (fread (data, 1, length, fp) < length)
5673 fn_png_error (png_ptr, "Read error");
5674}
5675
5676
578098f3 5677/* Load PNG image IMG for use on frame F. Value is true if
4ef0d4d0
KS
5678 successful. */
5679
40bce90b
PE
5680struct png_load_context
5681{
0328b6de 5682 /* These are members so that longjmp doesn't munge local variables. */
40bce90b
PE
5683 png_struct *png_ptr;
5684 png_info *info_ptr;
5685 png_info *end_info;
5686 FILE *fp;
5687 png_byte *pixels;
5688 png_byte **rows;
5689};
5690
578098f3 5691static bool
40bce90b 5692png_load_body (struct frame *f, struct image *img, struct png_load_context *c)
4ef0d4d0
KS
5693{
5694 Lisp_Object file, specified_file;
5695 Lisp_Object specified_data;
5adf60bc
PE
5696 int x, y;
5697 ptrdiff_t i;
4ef0d4d0 5698 XImagePtr ximg, mask_img = NULL;
40bce90b 5699 png_struct *png_ptr;
4ef0d4d0 5700 png_info *info_ptr = NULL, *end_info = NULL;
40bce90b 5701 FILE *fp = NULL;
4ef0d4d0 5702 png_byte sig[8];
40bce90b
PE
5703 png_byte *pixels = NULL;
5704 png_byte **rows = NULL;
4ef0d4d0
KS
5705 png_uint_32 width, height;
5706 int bit_depth, color_type, interlace_type;
5707 png_byte channels;
5708 png_uint_32 row_bytes;
578098f3 5709 bool transparent_p;
4ef0d4d0
KS
5710 struct png_memory_storage tbr; /* Data to be read */
5711
5712 /* Find out what file to load. */
5713 specified_file = image_spec_value (img->spec, QCfile, NULL);
5714 specified_data = image_spec_value (img->spec, QCdata, NULL);
4ef0d4d0
KS
5715
5716 if (NILP (specified_data))
5717 {
5718 file = x_find_image_file (specified_file);
5719 if (!STRINGP (file))
5720 {
5721 image_error ("Cannot find image file `%s'", specified_file, Qnil);
4ef0d4d0
KS
5722 return 0;
5723 }
5724
5725 /* Open the image file. */
42a5b22f 5726 fp = fopen (SSDATA (file), "rb");
4ef0d4d0
KS
5727 if (!fp)
5728 {
5729 image_error ("Cannot open image file `%s'", file, Qnil);
4ef0d4d0
KS
5730 return 0;
5731 }
5732
5733 /* Check PNG signature. */
5734 if (fread (sig, 1, sizeof sig, fp) != sizeof sig
285d07e2 5735 || fn_png_sig_cmp (sig, 0, sizeof sig))
4ef0d4d0
KS
5736 {
5737 image_error ("Not a PNG file: `%s'", file, Qnil);
4ef0d4d0
KS
5738 fclose (fp);
5739 return 0;
5740 }
5741 }
5742 else
5743 {
7574650a
AS
5744 if (!STRINGP (specified_data))
5745 {
5746 image_error ("Invalid image data `%s'", specified_data, Qnil);
5747 return 0;
5748 }
5749
4ef0d4d0
KS
5750 /* Read from memory. */
5751 tbr.bytes = SDATA (specified_data);
5752 tbr.len = SBYTES (specified_data);
5753 tbr.index = 0;
5754
5755 /* Check PNG signature. */
5756 if (tbr.len < sizeof sig
285d07e2 5757 || fn_png_sig_cmp (tbr.bytes, 0, sizeof sig))
4ef0d4d0
KS
5758 {
5759 image_error ("Not a PNG image: `%s'", img->spec, Qnil);
4ef0d4d0
KS
5760 return 0;
5761 }
5762
5763 /* Need to skip past the signature. */
5764 tbr.bytes += sizeof (sig);
5765 }
5766
df61c790
AS
5767 /* Initialize read and info structs for PNG lib. */
5768 png_ptr = fn_png_create_read_struct (PNG_LIBPNG_VER_STRING,
5769 NULL, my_png_error,
5770 my_png_warning);
40bce90b 5771 if (png_ptr)
4ef0d4d0 5772 {
40bce90b
PE
5773 info_ptr = fn_png_create_info_struct (png_ptr);
5774 end_info = fn_png_create_info_struct (png_ptr);
4ef0d4d0
KS
5775 }
5776
40bce90b
PE
5777 c->png_ptr = png_ptr;
5778 c->info_ptr = info_ptr;
5779 c->end_info = end_info;
5780 c->fp = fp;
5781 c->pixels = pixels;
5782 c->rows = rows;
5783
5784 if (! (info_ptr && end_info))
4ef0d4d0 5785 {
40bce90b
PE
5786 fn_png_destroy_read_struct (&c->png_ptr, &c->info_ptr, &c->end_info);
5787 png_ptr = 0;
4ef0d4d0 5788 }
40bce90b 5789 if (! png_ptr)
4ef0d4d0 5790 {
4ef0d4d0 5791 if (fp) fclose (fp);
4ef0d4d0
KS
5792 return 0;
5793 }
5794
5795 /* Set error jump-back. We come back here when the PNG library
5796 detects an error. */
af26b72c 5797 if (_setjmp (PNG_JMPBUF (png_ptr)))
4ef0d4d0
KS
5798 {
5799 error:
40bce90b
PE
5800 if (c->png_ptr)
5801 fn_png_destroy_read_struct (&c->png_ptr, &c->info_ptr, &c->end_info);
5802 xfree (c->pixels);
5803 xfree (c->rows);
5804 if (c->fp)
5805 fclose (c->fp);
4ef0d4d0
KS
5806 return 0;
5807 }
5808
40bce90b
PE
5809 /* Silence a bogus diagnostic; see GCC bug 54561. */
5810 IF_LINT (fp = c->fp);
5811
4ef0d4d0
KS
5812 /* Read image info. */
5813 if (!NILP (specified_data))
5814 fn_png_set_read_fn (png_ptr, (void *) &tbr, png_read_from_memory);
5815 else
9a22a004 5816 fn_png_set_read_fn (png_ptr, (void *) fp, png_read_from_file);
4ef0d4d0
KS
5817
5818 fn_png_set_sig_bytes (png_ptr, sizeof sig);
5819 fn_png_read_info (png_ptr, info_ptr);
5820 fn_png_get_IHDR (png_ptr, info_ptr, &width, &height, &bit_depth, &color_type,
5821 &interlace_type, NULL, NULL);
5822
3f791afe
PE
5823 if (! (width <= INT_MAX && height <= INT_MAX
5824 && check_image_size (f, width, height)))
10ea2b82
JR
5825 {
5826 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
5827 goto error;
5828 }
ca4aa935
PE
5829
5830 /* Create the X image and pixmap now, so that the work below can be
5831 omitted if the image is too large for X. */
547c9269 5832 if (!image_create_x_image_and_pixmap (f, img, width, height, 0, &ximg, 0))
ca4aa935
PE
5833 goto error;
5834
4ef0d4d0
KS
5835 /* If image contains simply transparency data, we prefer to
5836 construct a clipping mask. */
5837 if (fn_png_get_valid (png_ptr, info_ptr, PNG_INFO_tRNS))
5838 transparent_p = 1;
5839 else
5840 transparent_p = 0;
5841
5842 /* This function is easier to write if we only have to handle
5843 one data format: RGB or RGBA with 8 bits per channel. Let's
5844 transform other formats into that format. */
5845
5846 /* Strip more than 8 bits per channel. */
5847 if (bit_depth == 16)
5848 fn_png_set_strip_16 (png_ptr);
5849
5850 /* Expand data to 24 bit RGB, or 8 bit grayscale, with alpha channel
5851 if available. */
5852 fn_png_set_expand (png_ptr);
5853
5854 /* Convert grayscale images to RGB. */
5855 if (color_type == PNG_COLOR_TYPE_GRAY
5856 || color_type == PNG_COLOR_TYPE_GRAY_ALPHA)
5857 fn_png_set_gray_to_rgb (png_ptr);
5858
4ef0d4d0
KS
5859 /* Handle alpha channel by combining the image with a background
5860 color. Do this only if a real alpha channel is supplied. For
5861 simple transparency, we prefer a clipping mask. */
5862 if (!transparent_p)
5863 {
917ac1a9 5864 /* png_color_16 *image_bg; */
4ef0d4d0
KS
5865 Lisp_Object specified_bg
5866 = image_spec_value (img->spec, QCbackground, NULL);
c4f13f44 5867 int shift = (bit_depth == 16) ? 0 : 8;
4ef0d4d0
KS
5868
5869 if (STRINGP (specified_bg))
5870 /* The user specified `:background', use that. */
5871 {
4ef0d4d0 5872 XColor color;
42a5b22f 5873 if (x_defined_color (f, SSDATA (specified_bg), &color, 0))
4ef0d4d0
KS
5874 {
5875 png_color_16 user_bg;
5876
72af86bd 5877 memset (&user_bg, 0, sizeof user_bg);
c4f13f44
CY
5878 user_bg.red = color.red >> shift;
5879 user_bg.green = color.green >> shift;
5880 user_bg.blue = color.blue >> shift;
4ef0d4d0
KS
5881
5882 fn_png_set_background (png_ptr, &user_bg,
5883 PNG_BACKGROUND_GAMMA_SCREEN, 0, 1.0);
5884 }
5885 }
4ef0d4d0
KS
5886 else
5887 {
c4f13f44
CY
5888 /* We use the current frame background, ignoring any default
5889 background color set by the image. */
8b7d0a16 5890#if defined (HAVE_X_WINDOWS) || defined (HAVE_NTGUI)
4ef0d4d0
KS
5891 XColor color;
5892 png_color_16 frame_background;
5893
5894 color.pixel = FRAME_BACKGROUND_PIXEL (f);
5895 x_query_color (f, &color);
5896
72af86bd 5897 memset (&frame_background, 0, sizeof frame_background);
c4f13f44
CY
5898 frame_background.red = color.red >> shift;
5899 frame_background.green = color.green >> shift;
5900 frame_background.blue = color.blue >> shift;
4ef0d4d0
KS
5901#endif /* HAVE_X_WINDOWS */
5902
4ef0d4d0
KS
5903 fn_png_set_background (png_ptr, &frame_background,
5904 PNG_BACKGROUND_GAMMA_SCREEN, 0, 1.0);
5905 }
5906 }
5907
5908 /* Update info structure. */
5909 fn_png_read_update_info (png_ptr, info_ptr);
5910
5911 /* Get number of channels. Valid values are 1 for grayscale images
5912 and images with a palette, 2 for grayscale images with transparency
5913 information (alpha channel), 3 for RGB images, and 4 for RGB
5914 images with alpha channel, i.e. RGBA. If conversions above were
5915 sufficient we should only have 3 or 4 channels here. */
5916 channels = fn_png_get_channels (png_ptr, info_ptr);
a54e2c05 5917 eassert (channels == 3 || channels == 4);
4ef0d4d0
KS
5918
5919 /* Number of bytes needed for one row of the image. */
5920 row_bytes = fn_png_get_rowbytes (png_ptr, info_ptr);
5921
5922 /* Allocate memory for the image. */
3f791afe
PE
5923 if (min (PTRDIFF_MAX, SIZE_MAX) / sizeof *rows < height
5924 || min (PTRDIFF_MAX, SIZE_MAX) / sizeof *pixels / height < row_bytes)
5925 memory_full (SIZE_MAX);
40bce90b
PE
5926 c->pixels = pixels = xmalloc (sizeof *pixels * row_bytes * height);
5927 c->rows = rows = xmalloc (height * sizeof *rows);
4ef0d4d0
KS
5928 for (i = 0; i < height; ++i)
5929 rows[i] = pixels + i * row_bytes;
5930
5931 /* Read the entire image. */
5932 fn_png_read_image (png_ptr, rows);
5933 fn_png_read_end (png_ptr, info_ptr);
5934 if (fp)
5935 {
5936 fclose (fp);
40bce90b 5937 c->fp = NULL;
4ef0d4d0
KS
5938 }
5939
4ef0d4d0
KS
5940 /* Create an image and pixmap serving as mask if the PNG image
5941 contains an alpha channel. */
5942 if (channels == 4
5943 && !transparent_p
547c9269
YM
5944 && !image_create_x_image_and_pixmap (f, img, width, height, 1,
5945 &mask_img, 1))
4ef0d4d0
KS
5946 {
5947 x_destroy_x_image (ximg);
547c9269 5948 x_clear_image_1 (f, img, CLEAR_IMAGE_PIXMAP);
4ef0d4d0
KS
5949 goto error;
5950 }
5951
5952 /* Fill the X image and mask from PNG data. */
5953 init_color_table ();
5954
5955 for (y = 0; y < height; ++y)
5956 {
5957 png_byte *p = rows[y];
5958
5959 for (x = 0; x < width; ++x)
5960 {
13464394 5961 int r, g, b;
4ef0d4d0
KS
5962
5963 r = *p++ << 8;
5964 g = *p++ << 8;
5965 b = *p++ << 8;
5966 XPutPixel (ximg, x, y, lookup_rgb_color (f, r, g, b));
5967 /* An alpha channel, aka mask channel, associates variable
5968 transparency with an image. Where other image formats
5969 support binary transparency---fully transparent or fully
5970 opaque---PNG allows up to 254 levels of partial transparency.
5971 The PNG library implements partial transparency by combining
5972 the image with a specified background color.
5973
5974 I'm not sure how to handle this here nicely: because the
5975 background on which the image is displayed may change, for
5976 real alpha channel support, it would be necessary to create
5977 a new image for each possible background.
5978
5979 What I'm doing now is that a mask is created if we have
5980 boolean transparency information. Otherwise I'm using
5981 the frame's background color to combine the image with. */
5982
5983 if (channels == 4)
5984 {
5985 if (mask_img)
9ecf6403 5986 XPutPixel (mask_img, x, y, *p > 0 ? PIX_MASK_DRAW : PIX_MASK_RETAIN);
4ef0d4d0
KS
5987 ++p;
5988 }
5989 }
5990 }
5991
5992 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
5993 /* Set IMG's background color from the PNG image, unless the user
5994 overrode it. */
5995 {
5996 png_color_16 *bg;
5997 if (fn_png_get_bKGD (png_ptr, info_ptr, &bg))
5998 {
5999 img->background = lookup_rgb_color (f, bg->red, bg->green, bg->blue);
6000 img->background_valid = 1;
6001 }
6002 }
6003
6004#ifdef COLOR_TABLE_SUPPORT
6005 /* Remember colors allocated for this image. */
6006 img->colors = colors_in_color_table (&img->ncolors);
6007 free_color_table ();
6008#endif /* COLOR_TABLE_SUPPORT */
6009
6010 /* Clean up. */
40bce90b 6011 fn_png_destroy_read_struct (&c->png_ptr, &c->info_ptr, &c->end_info);
4ef0d4d0
KS
6012 xfree (rows);
6013 xfree (pixels);
6014
6015 img->width = width;
6016 img->height = height;
6017
2e09fef1
EZ
6018 /* Maybe fill in the background field while we have ximg handy.
6019 Casting avoids a GCC warning. */
6020 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
4ef0d4d0 6021
547c9269
YM
6022 /* Put ximg into the image. */
6023 image_put_x_image (f, img, ximg, 0);
4ef0d4d0
KS
6024
6025 /* Same for the mask. */
6026 if (mask_img)
6027 {
2e09fef1
EZ
6028 /* Fill in the background_transparent field while we have the
6029 mask handy. Casting avoids a GCC warning. */
6030 image_background_transparent (img, f, (XImagePtr_or_DC)mask_img);
4ef0d4d0 6031
547c9269 6032 image_put_x_image (f, img, mask_img, 1);
4ef0d4d0
KS
6033 }
6034
4ef0d4d0
KS
6035 return 1;
6036}
6037
578098f3 6038static bool
40bce90b
PE
6039png_load (struct frame *f, struct image *img)
6040{
6041 struct png_load_context c;
6042 return png_load_body (f, img, &c);
6043}
6044
4ef0d4d0
KS
6045#else /* HAVE_PNG */
6046
edfda783 6047#ifdef HAVE_NS
578098f3 6048static bool
edfda783
AR
6049png_load (struct frame *f, struct image *img)
6050{
5e617bc2
JB
6051 return ns_load_image (f, img,
6052 image_spec_value (img->spec, QCfile, NULL),
6053 image_spec_value (img->spec, QCdata, NULL));
edfda783
AR
6054}
6055#endif /* HAVE_NS */
6056
6057
4ef0d4d0
KS
6058#endif /* !HAVE_PNG */
6059
6060
6061\f
6062/***********************************************************************
6063 JPEG
6064 ***********************************************************************/
6065
9e2a2647 6066#if defined (HAVE_JPEG) || defined (HAVE_NS)
4ef0d4d0 6067
578098f3
PE
6068static bool jpeg_image_p (Lisp_Object object);
6069static bool jpeg_load (struct frame *f, struct image *img);
4ef0d4d0
KS
6070
6071/* The symbol `jpeg' identifying images of this type. */
6072
955cbe7b 6073static Lisp_Object Qjpeg;
4ef0d4d0
KS
6074
6075/* Indices of image specification fields in gs_format, below. */
6076
6077enum jpeg_keyword_index
6078{
6079 JPEG_TYPE,
6080 JPEG_DATA,
6081 JPEG_FILE,
6082 JPEG_ASCENT,
6083 JPEG_MARGIN,
6084 JPEG_RELIEF,
6085 JPEG_ALGORITHM,
6086 JPEG_HEURISTIC_MASK,
6087 JPEG_MASK,
6088 JPEG_BACKGROUND,
6089 JPEG_LAST
6090};
6091
6092/* Vector of image_keyword structures describing the format
6093 of valid user-defined image specifications. */
6094
91433552 6095static const struct image_keyword jpeg_format[JPEG_LAST] =
4ef0d4d0
KS
6096{
6097 {":type", IMAGE_SYMBOL_VALUE, 1},
6098 {":data", IMAGE_STRING_VALUE, 0},
6099 {":file", IMAGE_STRING_VALUE, 0},
6100 {":ascent", IMAGE_ASCENT_VALUE, 0},
c4a07a4c 6101 {":margin", IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR, 0},
4ef0d4d0
KS
6102 {":relief", IMAGE_INTEGER_VALUE, 0},
6103 {":conversions", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6104 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6105 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6106 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
6107};
6108
a9e7a9d5 6109#if defined HAVE_NTGUI && defined WINDOWSNT
578098f3 6110static bool init_jpeg_functions (void);
bb4d86b4
CY
6111#else
6112#define init_jpeg_functions NULL
6113#endif
6114
4ef0d4d0
KS
6115/* Structure describing the image type `jpeg'. */
6116
6117static struct image_type jpeg_type =
6118{
6119 &Qjpeg,
6120 jpeg_image_p,
6121 jpeg_load,
6122 x_clear_image,
bb4d86b4 6123 init_jpeg_functions,
4ef0d4d0
KS
6124 NULL
6125};
6126
578098f3 6127/* Return true if OBJECT is a valid JPEG image specification. */
4ef0d4d0 6128
578098f3 6129static bool
d3da34e0 6130jpeg_image_p (Lisp_Object object)
4ef0d4d0
KS
6131{
6132 struct image_keyword fmt[JPEG_LAST];
6133
72af86bd 6134 memcpy (fmt, jpeg_format, sizeof fmt);
4ef0d4d0
KS
6135
6136 if (!parse_image_spec (object, fmt, JPEG_LAST, Qjpeg))
6137 return 0;
6138
6139 /* Must specify either the :data or :file keyword. */
6140 return fmt[JPEG_FILE].count + fmt[JPEG_DATA].count == 1;
6141}
6142
9e2a2647 6143#endif /* HAVE_JPEG || HAVE_NS */
4ef0d4d0
KS
6144
6145#ifdef HAVE_JPEG
6146
6147/* Work around a warning about HAVE_STDLIB_H being redefined in
6148 jconfig.h. */
6149#ifdef HAVE_STDLIB_H
4ef0d4d0
KS
6150#undef HAVE_STDLIB_H
6151#endif /* HAVE_STLIB_H */
6152
66354420 6153#if defined (HAVE_NTGUI) && !defined (__WIN32__)
28893db2
JB
6154/* In older releases of the jpeg library, jpeglib.h will define boolean
6155 differently depending on __WIN32__, so make sure it is defined. */
66354420
JR
6156#define __WIN32__ 1
6157#endif
6158
93aa5c81
DC
6159/* rpcndr.h (via windows.h) and jpeglib.h both define boolean types.
6160 Some versions of jpeglib try to detect whether rpcndr.h is loaded,
6161 using the Windows boolean type instead of the jpeglib boolean type
6162 if so. Cygwin jpeglib, however, doesn't try to detect whether its
6163 headers are included along with windows.h, so under Cygwin, jpeglib
6164 attempts to define a conflicting boolean type. Worse, forcing
6165 Cygwin jpeglib headers to use the Windows boolean type doesn't work
6166 because it created an ABI incompatibility between the
6167 already-compiled jpeg library and the header interface definition.
6168
6169 The best we can do is to define jpeglib's boolean type to a
6170 different name. This name, jpeg_boolean, remains in effect through
6171 the rest of image.c.
6172*/
a9e7a9d5 6173#if defined CYGWIN && defined HAVE_NTGUI
0fda9b75 6174#define boolean jpeg_boolean
2ae3a8a7 6175#endif
4ef0d4d0
KS
6176#include <jpeglib.h>
6177#include <jerror.h>
4ef0d4d0 6178
0fda9b75 6179#ifdef WINDOWSNT
4ef0d4d0
KS
6180
6181/* JPEG library details. */
14beddf4
CY
6182DEF_IMGLIB_FN (void, jpeg_CreateDecompress, (j_decompress_ptr, int, size_t));
6183DEF_IMGLIB_FN (boolean, jpeg_start_decompress, (j_decompress_ptr));
6184DEF_IMGLIB_FN (boolean, jpeg_finish_decompress, (j_decompress_ptr));
6185DEF_IMGLIB_FN (void, jpeg_destroy_decompress, (j_decompress_ptr));
6186DEF_IMGLIB_FN (int, jpeg_read_header, (j_decompress_ptr, boolean));
6187DEF_IMGLIB_FN (JDIMENSION, jpeg_read_scanlines, (j_decompress_ptr, JSAMPARRAY, JDIMENSION));
6188DEF_IMGLIB_FN (struct jpeg_error_mgr *, jpeg_std_error, (struct jpeg_error_mgr *));
6189DEF_IMGLIB_FN (boolean, jpeg_resync_to_restart, (j_decompress_ptr, int));
4ef0d4d0 6190
578098f3 6191static bool
d07ff9db 6192init_jpeg_functions (void)
4ef0d4d0
KS
6193{
6194 HMODULE library;
6195
d07ff9db 6196 if (!(library = w32_delayed_load (Qjpeg)))
4ef0d4d0
KS
6197 return 0;
6198
6199 LOAD_IMGLIB_FN (library, jpeg_finish_decompress);
6200 LOAD_IMGLIB_FN (library, jpeg_read_scanlines);
6201 LOAD_IMGLIB_FN (library, jpeg_start_decompress);
6202 LOAD_IMGLIB_FN (library, jpeg_read_header);
4ef0d4d0
KS
6203 LOAD_IMGLIB_FN (library, jpeg_CreateDecompress);
6204 LOAD_IMGLIB_FN (library, jpeg_destroy_decompress);
6205 LOAD_IMGLIB_FN (library, jpeg_std_error);
6206 LOAD_IMGLIB_FN (library, jpeg_resync_to_restart);
6207 return 1;
6208}
6209
6210/* Wrapper since we can't directly assign the function pointer
6211 to another function pointer that was declared more completely easily. */
6212static boolean
7c3320d8 6213jpeg_resync_to_restart_wrapper (j_decompress_ptr cinfo, int desired)
4ef0d4d0
KS
6214{
6215 return fn_jpeg_resync_to_restart (cinfo, desired);
6216}
6217
6218#else
6219
5e617bc2 6220#define fn_jpeg_CreateDecompress(a,b,c) jpeg_create_decompress (a)
4ef0d4d0
KS
6221#define fn_jpeg_start_decompress jpeg_start_decompress
6222#define fn_jpeg_finish_decompress jpeg_finish_decompress
6223#define fn_jpeg_destroy_decompress jpeg_destroy_decompress
6224#define fn_jpeg_read_header jpeg_read_header
6225#define fn_jpeg_read_scanlines jpeg_read_scanlines
4ef0d4d0
KS
6226#define fn_jpeg_std_error jpeg_std_error
6227#define jpeg_resync_to_restart_wrapper jpeg_resync_to_restart
6228
0fda9b75 6229#endif /* WINDOWSNT */
4ef0d4d0
KS
6230
6231struct my_jpeg_error_mgr
6232{
6233 struct jpeg_error_mgr pub;
0328b6de 6234 sys_jmp_buf setjmp_buffer;
40bce90b 6235
0328b6de 6236 /* The remaining members are so that longjmp doesn't munge local
40bce90b
PE
6237 variables. */
6238 struct jpeg_decompress_struct cinfo;
6239 enum
6240 {
6241 MY_JPEG_ERROR_EXIT,
6242 MY_JPEG_INVALID_IMAGE_SIZE,
6243 MY_JPEG_CANNOT_CREATE_X
6244 } failure_code;
5f0cb45a
PE
6245#ifdef lint
6246 FILE *fp;
6247#endif
4ef0d4d0
KS
6248};
6249
6250
845ca893 6251static _Noreturn void
d3da34e0 6252my_error_exit (j_common_ptr cinfo)
4ef0d4d0
KS
6253{
6254 struct my_jpeg_error_mgr *mgr = (struct my_jpeg_error_mgr *) cinfo->err;
40bce90b 6255 mgr->failure_code = MY_JPEG_ERROR_EXIT;
0328b6de 6256 sys_longjmp (mgr->setjmp_buffer, 1);
4ef0d4d0
KS
6257}
6258
6259
6260/* Init source method for JPEG data source manager. Called by
6261 jpeg_read_header() before any data is actually read. See
6262 libjpeg.doc from the JPEG lib distribution. */
6263
6264static void
d3da34e0 6265our_common_init_source (j_decompress_ptr cinfo)
b25a72ab
JB
6266{
6267}
6268
6269
6270/* Method to terminate data source. Called by
6271 jpeg_finish_decompress() after all data has been processed. */
6272
6273static void
d3da34e0 6274our_common_term_source (j_decompress_ptr cinfo)
4ef0d4d0
KS
6275{
6276}
6277
6278
6279/* Fill input buffer method for JPEG data source manager. Called
6280 whenever more data is needed. We read the whole image in one step,
6281 so this only adds a fake end of input marker at the end. */
6282
5a1539f3 6283static JOCTET our_memory_buffer[2];
aca946f3 6284
4ef0d4d0 6285static boolean
d3da34e0 6286our_memory_fill_input_buffer (j_decompress_ptr cinfo)
4ef0d4d0
KS
6287{
6288 /* Insert a fake EOI marker. */
6289 struct jpeg_source_mgr *src = cinfo->src;
4ef0d4d0 6290
5a1539f3
MB
6291 our_memory_buffer[0] = (JOCTET) 0xFF;
6292 our_memory_buffer[1] = (JOCTET) JPEG_EOI;
4ef0d4d0 6293
5a1539f3 6294 src->next_input_byte = our_memory_buffer;
4ef0d4d0 6295 src->bytes_in_buffer = 2;
e0e30823 6296 return 1;
4ef0d4d0
KS
6297}
6298
6299
6300/* Method to skip over NUM_BYTES bytes in the image data. CINFO->src
6301 is the JPEG data source manager. */
6302
6303static void
d3da34e0 6304our_memory_skip_input_data (j_decompress_ptr cinfo, long int num_bytes)
4ef0d4d0
KS
6305{
6306 struct jpeg_source_mgr *src = (struct jpeg_source_mgr *) cinfo->src;
6307
6308 if (src)
6309 {
6310 if (num_bytes > src->bytes_in_buffer)
6311 ERREXIT (cinfo, JERR_INPUT_EOF);
6312
6313 src->bytes_in_buffer -= num_bytes;
6314 src->next_input_byte += num_bytes;
6315 }
6316}
6317
6318
4ef0d4d0
KS
6319/* Set up the JPEG lib for reading an image from DATA which contains
6320 LEN bytes. CINFO is the decompression info structure created for
6321 reading the image. */
6322
6323static void
92547ff9 6324jpeg_memory_src (j_decompress_ptr cinfo, JOCTET *data, ptrdiff_t len)
4ef0d4d0
KS
6325{
6326 struct jpeg_source_mgr *src;
6327
6328 if (cinfo->src == NULL)
6329 {
6330 /* First time for this JPEG object? */
6331 cinfo->src = (struct jpeg_source_mgr *)
6332 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
6333 sizeof (struct jpeg_source_mgr));
6334 src = (struct jpeg_source_mgr *) cinfo->src;
6335 src->next_input_byte = data;
6336 }
6337
6338 src = (struct jpeg_source_mgr *) cinfo->src;
b25a72ab
JB
6339 src->init_source = our_common_init_source;
6340 src->fill_input_buffer = our_memory_fill_input_buffer;
6341 src->skip_input_data = our_memory_skip_input_data;
4ef0d4d0 6342 src->resync_to_restart = jpeg_resync_to_restart_wrapper; /* Use default method. */
b25a72ab 6343 src->term_source = our_common_term_source;
4ef0d4d0
KS
6344 src->bytes_in_buffer = len;
6345 src->next_input_byte = data;
6346}
6347
6348
b25a72ab
JB
6349struct jpeg_stdio_mgr
6350{
6351 struct jpeg_source_mgr mgr;
6352 boolean finished;
6353 FILE *file;
6354 JOCTET *buffer;
6355};
6356
6357
6358/* Size of buffer to read JPEG from file.
6359 Not too big, as we want to use alloc_small. */
6360#define JPEG_STDIO_BUFFER_SIZE 8192
6361
6362
6363/* Fill input buffer method for JPEG data source manager. Called
6364 whenever more data is needed. The data is read from a FILE *. */
6365
6366static boolean
d3da34e0 6367our_stdio_fill_input_buffer (j_decompress_ptr cinfo)
b25a72ab
JB
6368{
6369 struct jpeg_stdio_mgr *src;
6370
6371 src = (struct jpeg_stdio_mgr *) cinfo->src;
6372 if (!src->finished)
6373 {
3f791afe 6374 ptrdiff_t bytes;
b25a72ab
JB
6375
6376 bytes = fread (src->buffer, 1, JPEG_STDIO_BUFFER_SIZE, src->file);
6377 if (bytes > 0)
6378 src->mgr.bytes_in_buffer = bytes;
6379 else
6380 {
6381 WARNMS (cinfo, JWRN_JPEG_EOF);
6382 src->finished = 1;
6383 src->buffer[0] = (JOCTET) 0xFF;
6384 src->buffer[1] = (JOCTET) JPEG_EOI;
6385 src->mgr.bytes_in_buffer = 2;
6386 }
6387 src->mgr.next_input_byte = src->buffer;
6388 }
6389
6390 return 1;
6391}
6392
6393
6394/* Method to skip over NUM_BYTES bytes in the image data. CINFO->src
6395 is the JPEG data source manager. */
6396
6397static void
d3da34e0 6398our_stdio_skip_input_data (j_decompress_ptr cinfo, long int num_bytes)
b25a72ab
JB
6399{
6400 struct jpeg_stdio_mgr *src;
6401 src = (struct jpeg_stdio_mgr *) cinfo->src;
6402
6403 while (num_bytes > 0 && !src->finished)
6404 {
6405 if (num_bytes <= src->mgr.bytes_in_buffer)
6406 {
6407 src->mgr.bytes_in_buffer -= num_bytes;
6408 src->mgr.next_input_byte += num_bytes;
6409 break;
6410 }
6411 else
6412 {
6413 num_bytes -= src->mgr.bytes_in_buffer;
6414 src->mgr.bytes_in_buffer = 0;
6415 src->mgr.next_input_byte = NULL;
6416
6417 our_stdio_fill_input_buffer (cinfo);
6418 }
6419 }
6420}
6421
6422
6423/* Set up the JPEG lib for reading an image from a FILE *.
6424 CINFO is the decompression info structure created for
6425 reading the image. */
6426
6427static void
d3da34e0 6428jpeg_file_src (j_decompress_ptr cinfo, FILE *fp)
b25a72ab
JB
6429{
6430 struct jpeg_stdio_mgr *src;
6431
6432 if (cinfo->src != NULL)
6433 src = (struct jpeg_stdio_mgr *) cinfo->src;
6434 else
6435 {
6436 /* First time for this JPEG object? */
6437 cinfo->src = (struct jpeg_source_mgr *)
6438 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
6439 sizeof (struct jpeg_stdio_mgr));
6440 src = (struct jpeg_stdio_mgr *) cinfo->src;
6441 src->buffer = (JOCTET *)
6442 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
6443 JPEG_STDIO_BUFFER_SIZE);
6444 }
6445
6446 src->file = fp;
6447 src->finished = 0;
6448 src->mgr.init_source = our_common_init_source;
6449 src->mgr.fill_input_buffer = our_stdio_fill_input_buffer;
6450 src->mgr.skip_input_data = our_stdio_skip_input_data;
6451 src->mgr.resync_to_restart = jpeg_resync_to_restart_wrapper; /* Use default method. */
6452 src->mgr.term_source = our_common_term_source;
6453 src->mgr.bytes_in_buffer = 0;
6454 src->mgr.next_input_byte = NULL;
6455}
6456
6457
4ef0d4d0
KS
6458/* Load image IMG for use on frame F. Patterned after example.c
6459 from the JPEG lib. */
6460
578098f3 6461static bool
40bce90b
PE
6462jpeg_load_body (struct frame *f, struct image *img,
6463 struct my_jpeg_error_mgr *mgr)
4ef0d4d0 6464{
4ef0d4d0
KS
6465 Lisp_Object file, specified_file;
6466 Lisp_Object specified_data;
40bce90b 6467 FILE *fp = NULL;
4ef0d4d0
KS
6468 JSAMPARRAY buffer;
6469 int row_stride, x, y;
6470 XImagePtr ximg = NULL;
4ef0d4d0
KS
6471 unsigned long *colors;
6472 int width, height;
4ef0d4d0
KS
6473
6474 /* Open the JPEG file. */
6475 specified_file = image_spec_value (img->spec, QCfile, NULL);
6476 specified_data = image_spec_value (img->spec, QCdata, NULL);
4ef0d4d0
KS
6477
6478 if (NILP (specified_data))
6479 {
6480 file = x_find_image_file (specified_file);
6481 if (!STRINGP (file))
6482 {
6483 image_error ("Cannot find image file `%s'", specified_file, Qnil);
4ef0d4d0
KS
6484 return 0;
6485 }
6486
42a5b22f 6487 fp = fopen (SSDATA (file), "rb");
4ef0d4d0
KS
6488 if (fp == NULL)
6489 {
6490 image_error ("Cannot open `%s'", file, Qnil);
4ef0d4d0
KS
6491 return 0;
6492 }
6493 }
7574650a
AS
6494 else if (!STRINGP (specified_data))
6495 {
6496 image_error ("Invalid image data `%s'", specified_data, Qnil);
6497 return 0;
6498 }
4ef0d4d0 6499
5f0cb45a
PE
6500 IF_LINT (mgr->fp = fp);
6501
4ef0d4d0 6502 /* Customize libjpeg's error handling to call my_error_exit when an
df61c790 6503 error is detected. This function will perform a longjmp. */
40bce90b
PE
6504 mgr->cinfo.err = fn_jpeg_std_error (&mgr->pub);
6505 mgr->pub.error_exit = my_error_exit;
0328b6de 6506 if (sys_setjmp (mgr->setjmp_buffer))
4ef0d4d0 6507 {
40bce90b 6508 switch (mgr->failure_code)
4ef0d4d0 6509 {
40bce90b
PE
6510 case MY_JPEG_ERROR_EXIT:
6511 {
6512 char buf[JMSG_LENGTH_MAX];
6513 mgr->cinfo.err->format_message ((j_common_ptr) &mgr->cinfo, buf);
6514 image_error ("Error reading JPEG image `%s': %s", img->spec,
6515 build_string (buf));
6516 break;
6517 }
6518
6519 case MY_JPEG_INVALID_IMAGE_SIZE:
6520 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
6521 break;
6522
6523 case MY_JPEG_CANNOT_CREATE_X:
6524 break;
4ef0d4d0
KS
6525 }
6526
6527 /* Close the input file and destroy the JPEG object. */
6528 if (fp)
40bce90b
PE
6529 fclose (fp);
6530 fn_jpeg_destroy_decompress (&mgr->cinfo);
4ef0d4d0
KS
6531
6532 /* If we already have an XImage, free that. */
6533 x_destroy_x_image (ximg);
6534
6535 /* Free pixmap and colors. */
6536 x_clear_image (f, img);
4ef0d4d0
KS
6537 return 0;
6538 }
6539
5f0cb45a
PE
6540 /* Silence a bogus diagnostic; see GCC bug 54561. */
6541 IF_LINT (fp = mgr->fp);
6542
4ef0d4d0
KS
6543 /* Create the JPEG decompression object. Let it read from fp.
6544 Read the JPEG image header. */
40bce90b 6545 fn_jpeg_CreateDecompress (&mgr->cinfo, JPEG_LIB_VERSION, sizeof *&mgr->cinfo);
4ef0d4d0
KS
6546
6547 if (NILP (specified_data))
40bce90b 6548 jpeg_file_src (&mgr->cinfo, fp);
4ef0d4d0 6549 else
40bce90b 6550 jpeg_memory_src (&mgr->cinfo, SDATA (specified_data),
4ef0d4d0
KS
6551 SBYTES (specified_data));
6552
40bce90b 6553 fn_jpeg_read_header (&mgr->cinfo, 1);
4ef0d4d0
KS
6554
6555 /* Customize decompression so that color quantization will be used.
6556 Start decompression. */
40bce90b
PE
6557 mgr->cinfo.quantize_colors = 1;
6558 fn_jpeg_start_decompress (&mgr->cinfo);
6559 width = img->width = mgr->cinfo.output_width;
6560 height = img->height = mgr->cinfo.output_height;
4ef0d4d0 6561
f1f25b99
CY
6562 if (!check_image_size (f, width, height))
6563 {
40bce90b 6564 mgr->failure_code = MY_JPEG_INVALID_IMAGE_SIZE;
0328b6de 6565 sys_longjmp (mgr->setjmp_buffer, 1);
f1f25b99
CY
6566 }
6567
4ef0d4d0 6568 /* Create X image and pixmap. */
547c9269 6569 if (!image_create_x_image_and_pixmap (f, img, width, height, 0, &ximg, 0))
40bce90b
PE
6570 {
6571 mgr->failure_code = MY_JPEG_CANNOT_CREATE_X;
0328b6de 6572 sys_longjmp (mgr->setjmp_buffer, 1);
40bce90b 6573 }
4ef0d4d0
KS
6574
6575 /* Allocate colors. When color quantization is used,
40bce90b
PE
6576 mgr->cinfo.actual_number_of_colors has been set with the number of
6577 colors generated, and mgr->cinfo.colormap is a two-dimensional array
6578 of color indices in the range 0..mgr->cinfo.actual_number_of_colors.
4ef0d4d0
KS
6579 No more than 255 colors will be generated. */
6580 {
6581 int i, ir, ig, ib;
6582
40bce90b 6583 if (mgr->cinfo.out_color_components > 2)
4ef0d4d0 6584 ir = 0, ig = 1, ib = 2;
40bce90b 6585 else if (mgr->cinfo.out_color_components > 1)
4ef0d4d0
KS
6586 ir = 0, ig = 1, ib = 0;
6587 else
6588 ir = 0, ig = 0, ib = 0;
6589
6590 /* Use the color table mechanism because it handles colors that
6591 cannot be allocated nicely. Such colors will be replaced with
6592 a default color, and we don't have to care about which colors
6593 can be freed safely, and which can't. */
6594 init_color_table ();
40bce90b 6595 colors = alloca (mgr->cinfo.actual_number_of_colors * sizeof *colors);
4ef0d4d0 6596
40bce90b 6597 for (i = 0; i < mgr->cinfo.actual_number_of_colors; ++i)
4ef0d4d0
KS
6598 {
6599 /* Multiply RGB values with 255 because X expects RGB values
6600 in the range 0..0xffff. */
40bce90b
PE
6601 int r = mgr->cinfo.colormap[ir][i] << 8;
6602 int g = mgr->cinfo.colormap[ig][i] << 8;
6603 int b = mgr->cinfo.colormap[ib][i] << 8;
4ef0d4d0
KS
6604 colors[i] = lookup_rgb_color (f, r, g, b);
6605 }
6606
6607#ifdef COLOR_TABLE_SUPPORT
6608 /* Remember those colors actually allocated. */
6609 img->colors = colors_in_color_table (&img->ncolors);
6610 free_color_table ();
6611#endif /* COLOR_TABLE_SUPPORT */
6612 }
6613
6614 /* Read pixels. */
40bce90b
PE
6615 row_stride = width * mgr->cinfo.output_components;
6616 buffer = mgr->cinfo.mem->alloc_sarray ((j_common_ptr) &mgr->cinfo,
6617 JPOOL_IMAGE, row_stride, 1);
4ef0d4d0
KS
6618 for (y = 0; y < height; ++y)
6619 {
40bce90b
PE
6620 fn_jpeg_read_scanlines (&mgr->cinfo, buffer, 1);
6621 for (x = 0; x < mgr->cinfo.output_width; ++x)
4ef0d4d0
KS
6622 XPutPixel (ximg, x, y, colors[buffer[0][x]]);
6623 }
6624
6625 /* Clean up. */
40bce90b
PE
6626 fn_jpeg_finish_decompress (&mgr->cinfo);
6627 fn_jpeg_destroy_decompress (&mgr->cinfo);
4ef0d4d0 6628 if (fp)
40bce90b 6629 fclose (fp);
4ef0d4d0
KS
6630
6631 /* Maybe fill in the background field while we have ximg handy. */
6632 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
2e09fef1
EZ
6633 /* Casting avoids a GCC warning. */
6634 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
4ef0d4d0 6635
547c9269
YM
6636 /* Put ximg into the image. */
6637 image_put_x_image (f, img, ximg, 0);
4ef0d4d0
KS
6638 return 1;
6639}
6640
578098f3 6641static bool
40bce90b
PE
6642jpeg_load (struct frame *f, struct image *img)
6643{
6644 struct my_jpeg_error_mgr mgr;
6645 return jpeg_load_body (f, img, &mgr);
6646}
6647
4ef0d4d0
KS
6648#else /* HAVE_JPEG */
6649
edfda783 6650#ifdef HAVE_NS
578098f3 6651static bool
edfda783
AR
6652jpeg_load (struct frame *f, struct image *img)
6653{
ed3751c8
JB
6654 return ns_load_image (f, img,
6655 image_spec_value (img->spec, QCfile, NULL),
6656 image_spec_value (img->spec, QCdata, NULL));
edfda783
AR
6657}
6658#endif /* HAVE_NS */
6659
4ef0d4d0
KS
6660#endif /* !HAVE_JPEG */
6661
6662
6663\f
6664/***********************************************************************
6665 TIFF
6666 ***********************************************************************/
6667
9e2a2647 6668#if defined (HAVE_TIFF) || defined (HAVE_NS)
4ef0d4d0 6669
578098f3
PE
6670static bool tiff_image_p (Lisp_Object object);
6671static bool tiff_load (struct frame *f, struct image *img);
4ef0d4d0
KS
6672
6673/* The symbol `tiff' identifying images of this type. */
6674
955cbe7b 6675static Lisp_Object Qtiff;
4ef0d4d0
KS
6676
6677/* Indices of image specification fields in tiff_format, below. */
6678
6679enum tiff_keyword_index
6680{
6681 TIFF_TYPE,
6682 TIFF_DATA,
6683 TIFF_FILE,
6684 TIFF_ASCENT,
6685 TIFF_MARGIN,
6686 TIFF_RELIEF,
6687 TIFF_ALGORITHM,
6688 TIFF_HEURISTIC_MASK,
6689 TIFF_MASK,
6690 TIFF_BACKGROUND,
58279503 6691 TIFF_INDEX,
4ef0d4d0
KS
6692 TIFF_LAST
6693};
6694
6695/* Vector of image_keyword structures describing the format
6696 of valid user-defined image specifications. */
6697
91433552 6698static const struct image_keyword tiff_format[TIFF_LAST] =
4ef0d4d0
KS
6699{
6700 {":type", IMAGE_SYMBOL_VALUE, 1},
6701 {":data", IMAGE_STRING_VALUE, 0},
6702 {":file", IMAGE_STRING_VALUE, 0},
6703 {":ascent", IMAGE_ASCENT_VALUE, 0},
c4a07a4c 6704 {":margin", IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR, 0},
4ef0d4d0
KS
6705 {":relief", IMAGE_INTEGER_VALUE, 0},
6706 {":conversions", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6707 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
6708 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
58279503
JR
6709 {":background", IMAGE_STRING_OR_NIL_VALUE, 0},
6710 {":index", IMAGE_NON_NEGATIVE_INTEGER_VALUE, 0}
4ef0d4d0
KS
6711};
6712
33d4113c 6713#if defined HAVE_NTGUI && defined WINDOWSNT
578098f3 6714static bool init_tiff_functions (void);
bb4d86b4
CY
6715#else
6716#define init_tiff_functions NULL
6717#endif
6718
4ef0d4d0
KS
6719/* Structure describing the image type `tiff'. */
6720
6721static struct image_type tiff_type =
6722{
6723 &Qtiff,
6724 tiff_image_p,
6725 tiff_load,
6726 x_clear_image,
bb4d86b4 6727 init_tiff_functions,
4ef0d4d0
KS
6728 NULL
6729};
6730
578098f3 6731/* Return true if OBJECT is a valid TIFF image specification. */
4ef0d4d0 6732
578098f3 6733static bool
d3da34e0 6734tiff_image_p (Lisp_Object object)
4ef0d4d0
KS
6735{
6736 struct image_keyword fmt[TIFF_LAST];
72af86bd 6737 memcpy (fmt, tiff_format, sizeof fmt);
4ef0d4d0
KS
6738
6739 if (!parse_image_spec (object, fmt, TIFF_LAST, Qtiff))
6740 return 0;
6741
6742 /* Must specify either the :data or :file keyword. */
6743 return fmt[TIFF_FILE].count + fmt[TIFF_DATA].count == 1;
6744}
6745
9e2a2647 6746#endif /* HAVE_TIFF || HAVE_NS */
4ef0d4d0
KS
6747
6748#ifdef HAVE_TIFF
6749
6750#include <tiffio.h>
6751
0fda9b75 6752#ifdef WINDOWSNT
4ef0d4d0
KS
6753
6754/* TIFF library details. */
14beddf4
CY
6755DEF_IMGLIB_FN (TIFFErrorHandler, TIFFSetErrorHandler, (TIFFErrorHandler));
6756DEF_IMGLIB_FN (TIFFErrorHandler, TIFFSetWarningHandler, (TIFFErrorHandler));
6757DEF_IMGLIB_FN (TIFF *, TIFFOpen, (const char *, const char *));
6758DEF_IMGLIB_FN (TIFF *, TIFFClientOpen, (const char *, const char *, thandle_t,
850690cc
JB
6759 TIFFReadWriteProc, TIFFReadWriteProc,
6760 TIFFSeekProc, TIFFCloseProc, TIFFSizeProc,
6761 TIFFMapFileProc, TIFFUnmapFileProc));
14beddf4
CY
6762DEF_IMGLIB_FN (int, TIFFGetField, (TIFF *, ttag_t, ...));
6763DEF_IMGLIB_FN (int, TIFFReadRGBAImage, (TIFF *, uint32, uint32, uint32 *, int));
6764DEF_IMGLIB_FN (void, TIFFClose, (TIFF *));
6765DEF_IMGLIB_FN (int, TIFFSetDirectory, (TIFF *, tdir_t));
4ef0d4d0 6766
578098f3 6767static bool
d07ff9db 6768init_tiff_functions (void)
4ef0d4d0
KS
6769{
6770 HMODULE library;
6771
d07ff9db 6772 if (!(library = w32_delayed_load (Qtiff)))
4ef0d4d0
KS
6773 return 0;
6774
6775 LOAD_IMGLIB_FN (library, TIFFSetErrorHandler);
6776 LOAD_IMGLIB_FN (library, TIFFSetWarningHandler);
6777 LOAD_IMGLIB_FN (library, TIFFOpen);
6778 LOAD_IMGLIB_FN (library, TIFFClientOpen);
6779 LOAD_IMGLIB_FN (library, TIFFGetField);
6780 LOAD_IMGLIB_FN (library, TIFFReadRGBAImage);
6781 LOAD_IMGLIB_FN (library, TIFFClose);
58279503 6782 LOAD_IMGLIB_FN (library, TIFFSetDirectory);
4ef0d4d0
KS
6783 return 1;
6784}
6785
6786#else
6787
6788#define fn_TIFFSetErrorHandler TIFFSetErrorHandler
6789#define fn_TIFFSetWarningHandler TIFFSetWarningHandler
6790#define fn_TIFFOpen TIFFOpen
6791#define fn_TIFFClientOpen TIFFClientOpen
6792#define fn_TIFFGetField TIFFGetField
6793#define fn_TIFFReadRGBAImage TIFFReadRGBAImage
6794#define fn_TIFFClose TIFFClose
58279503 6795#define fn_TIFFSetDirectory TIFFSetDirectory
0fda9b75 6796#endif /* WINDOWSNT */
4ef0d4d0
KS
6797
6798
6799/* Reading from a memory buffer for TIFF images Based on the PNG
6800 memory source, but we have to provide a lot of extra functions.
6801 Blah.
6802
6803 We really only need to implement read and seek, but I am not
6804 convinced that the TIFF library is smart enough not to destroy
6805 itself if we only hand it the function pointers we need to
6806 override. */
6807
6808typedef struct
6809{
6810 unsigned char *bytes;
3f791afe
PE
6811 ptrdiff_t len;
6812 ptrdiff_t index;
4ef0d4d0
KS
6813}
6814tiff_memory_source;
6815
3f791afe 6816static tsize_t
d3da34e0 6817tiff_read_from_memory (thandle_t data, tdata_t buf, tsize_t size)
4ef0d4d0
KS
6818{
6819 tiff_memory_source *src = (tiff_memory_source *) data;
6820
3f791afe 6821 size = min (size, src->len - src->index);
72af86bd 6822 memcpy (buf, src->bytes + src->index, size);
4ef0d4d0
KS
6823 src->index += size;
6824 return size;
6825}
6826
3f791afe 6827static tsize_t
d3da34e0 6828tiff_write_from_memory (thandle_t data, tdata_t buf, tsize_t size)
4ef0d4d0 6829{
3f791afe 6830 return -1;
4ef0d4d0
KS
6831}
6832
6833static toff_t
d3da34e0 6834tiff_seek_in_memory (thandle_t data, toff_t off, int whence)
4ef0d4d0
KS
6835{
6836 tiff_memory_source *src = (tiff_memory_source *) data;
3f791afe 6837 ptrdiff_t idx;
4ef0d4d0
KS
6838
6839 switch (whence)
6840 {
6841 case SEEK_SET: /* Go from beginning of source. */
6842 idx = off;
6843 break;
6844
6845 case SEEK_END: /* Go from end of source. */
6846 idx = src->len + off;
6847 break;
6848
6849 case SEEK_CUR: /* Go from current position. */
6850 idx = src->index + off;
6851 break;
6852
6853 default: /* Invalid `whence'. */
6854 return -1;
6855 }
6856
6857 if (idx > src->len || idx < 0)
6858 return -1;
6859
6860 src->index = idx;
6861 return src->index;
6862}
6863
6864static int
d3da34e0 6865tiff_close_memory (thandle_t data)
4ef0d4d0
KS
6866{
6867 /* NOOP */
6868 return 0;
6869}
6870
6871static int
d3da34e0 6872tiff_mmap_memory (thandle_t data, tdata_t *pbase, toff_t *psize)
4ef0d4d0
KS
6873{
6874 /* It is already _IN_ memory. */
6875 return 0;
6876}
6877
6878static void
d3da34e0 6879tiff_unmap_memory (thandle_t data, tdata_t base, toff_t size)
4ef0d4d0
KS
6880{
6881 /* We don't need to do this. */
6882}
6883
6884static toff_t
d3da34e0 6885tiff_size_of_memory (thandle_t data)
4ef0d4d0
KS
6886{
6887 return ((tiff_memory_source *) data)->len;
6888}
6889
b41c3a35
EZ
6890/* GCC 3.x on x86 Windows targets has a bug that triggers an internal
6891 compiler error compiling tiff_handler, see Bugzilla bug #17406
6892 (http://gcc.gnu.org/bugzilla/show_bug.cgi?id=17406). Declaring
6893 this function as external works around that problem. */
6894#if defined (__MINGW32__) && __GNUC__ == 3
6895# define MINGW_STATIC
6896#else
6897# define MINGW_STATIC static
6898#endif
4ef0d4d0 6899
b41c3a35
EZ
6900MINGW_STATIC void
6901tiff_handler (const char *, const char *, const char *, va_list)
13464394 6902 ATTRIBUTE_FORMAT_PRINTF (3, 0);
b41c3a35 6903MINGW_STATIC void
13464394
PE
6904tiff_handler (const char *log_format, const char *title,
6905 const char *format, va_list ap)
6906{
6907 /* doprnt is not suitable here, as TIFF handlers are called from
6908 libtiff and are passed arbitrary printf directives. Instead, use
6909 vsnprintf, taking care to be portable to nonstandard environments
6910 where vsnprintf returns -1 on buffer overflow. Since it's just a
6911 log entry, it's OK to truncate it. */
6912 char buf[4000];
6913 int len = vsnprintf (buf, sizeof buf, format, ap);
6914 add_to_log (log_format, build_string (title),
6915 make_string (buf, max (0, min (len, sizeof buf - 1))));
6916}
b41c3a35 6917#undef MINGW_STATIC
13464394 6918
5e2d4a30
PE
6919static void tiff_error_handler (const char *, const char *, va_list)
6920 ATTRIBUTE_FORMAT_PRINTF (2, 0);
4ef0d4d0 6921static void
d3da34e0 6922tiff_error_handler (const char *title, const char *format, va_list ap)
4ef0d4d0 6923{
13464394 6924 tiff_handler ("TIFF error: %s %s", title, format, ap);
4ef0d4d0
KS
6925}
6926
6927
5e2d4a30
PE
6928static void tiff_warning_handler (const char *, const char *, va_list)
6929 ATTRIBUTE_FORMAT_PRINTF (2, 0);
4ef0d4d0 6930static void
d3da34e0 6931tiff_warning_handler (const char *title, const char *format, va_list ap)
4ef0d4d0 6932{
13464394 6933 tiff_handler ("TIFF warning: %s %s", title, format, ap);
4ef0d4d0
KS
6934}
6935
6936
578098f3 6937/* Load TIFF image IMG for use on frame F. Value is true if
4ef0d4d0
KS
6938 successful. */
6939
578098f3 6940static bool
d3da34e0 6941tiff_load (struct frame *f, struct image *img)
4ef0d4d0
KS
6942{
6943 Lisp_Object file, specified_file;
6944 Lisp_Object specified_data;
6945 TIFF *tiff;
58279503 6946 int width, height, x, y, count;
4ef0d4d0 6947 uint32 *buf;
03d0a109 6948 int rc;
4ef0d4d0 6949 XImagePtr ximg;
4ef0d4d0 6950 tiff_memory_source memsrc;
58279503 6951 Lisp_Object image;
4ef0d4d0
KS
6952
6953 specified_file = image_spec_value (img->spec, QCfile, NULL);
6954 specified_data = image_spec_value (img->spec, QCdata, NULL);
4ef0d4d0 6955
5e2d4a30
PE
6956 fn_TIFFSetErrorHandler ((TIFFErrorHandler) tiff_error_handler);
6957 fn_TIFFSetWarningHandler ((TIFFErrorHandler) tiff_warning_handler);
4ef0d4d0
KS
6958
6959 if (NILP (specified_data))
6960 {
6961 /* Read from a file */
6962 file = x_find_image_file (specified_file);
6963 if (!STRINGP (file))
6964 {
6965 image_error ("Cannot find image file `%s'", specified_file, Qnil);
4ef0d4d0
KS
6966 return 0;
6967 }
6968
df61c790 6969 /* Try to open the image file. */
b19beacc 6970 tiff = fn_TIFFOpen (SSDATA (file), "r");
4ef0d4d0
KS
6971 if (tiff == NULL)
6972 {
6973 image_error ("Cannot open `%s'", file, Qnil);
4ef0d4d0
KS
6974 return 0;
6975 }
6976 }
6977 else
6978 {
7574650a
AS
6979 if (!STRINGP (specified_data))
6980 {
6981 image_error ("Invalid image data `%s'", specified_data, Qnil);
6982 return 0;
6983 }
6984
4ef0d4d0
KS
6985 /* Memory source! */
6986 memsrc.bytes = SDATA (specified_data);
6987 memsrc.len = SBYTES (specified_data);
6988 memsrc.index = 0;
6989
3082f617 6990 tiff = fn_TIFFClientOpen ("memory_source", "r", (thandle_t)&memsrc,
3f791afe
PE
6991 tiff_read_from_memory,
6992 tiff_write_from_memory,
df61c790
AS
6993 tiff_seek_in_memory,
6994 tiff_close_memory,
6995 tiff_size_of_memory,
6996 tiff_mmap_memory,
6997 tiff_unmap_memory);
4ef0d4d0
KS
6998
6999 if (!tiff)
7000 {
7001 image_error ("Cannot open memory source for `%s'", img->spec, Qnil);
4ef0d4d0
KS
7002 return 0;
7003 }
7004 }
7005
58279503
JR
7006 image = image_spec_value (img->spec, QCindex, NULL);
7007 if (INTEGERP (image))
7008 {
13464394
PE
7009 EMACS_INT ino = XFASTINT (image);
7010 if (! (TYPE_MINIMUM (tdir_t) <= ino && ino <= TYPE_MAXIMUM (tdir_t)
7011 && fn_TIFFSetDirectory (tiff, ino)))
58279503
JR
7012 {
7013 image_error ("Invalid image number `%s' in image `%s'",
7014 image, img->spec);
7015 fn_TIFFClose (tiff);
58279503
JR
7016 return 0;
7017 }
7018 }
7019
4ef0d4d0
KS
7020 /* Get width and height of the image, and allocate a raster buffer
7021 of width x height 32-bit values. */
7022 fn_TIFFGetField (tiff, TIFFTAG_IMAGEWIDTH, &width);
7023 fn_TIFFGetField (tiff, TIFFTAG_IMAGELENGTH, &height);
f1f25b99
CY
7024
7025 if (!check_image_size (f, width, height))
7026 {
10ea2b82 7027 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
58279503 7028 fn_TIFFClose (tiff);
f1f25b99
CY
7029 return 0;
7030 }
7031
ca4aa935
PE
7032 /* Create the X image and pixmap. */
7033 if (! (height <= min (PTRDIFF_MAX, SIZE_MAX) / sizeof *buf / width
547c9269
YM
7034 && image_create_x_image_and_pixmap (f, img, width, height, 0,
7035 &ximg, 0)))
ca4aa935
PE
7036 {
7037 fn_TIFFClose (tiff);
7038 return 0;
7039 }
7040
23f86fce 7041 buf = xmalloc (sizeof *buf * width * height);
4ef0d4d0
KS
7042
7043 rc = fn_TIFFReadRGBAImage (tiff, width, height, buf, 0);
58279503
JR
7044
7045 /* Count the number of images in the file. */
03d0a109
PE
7046 for (count = 1; fn_TIFFSetDirectory (tiff, count); count++)
7047 continue;
58279503
JR
7048
7049 if (count > 1)
b50691aa
CY
7050 img->lisp_data = Fcons (Qcount,
7051 Fcons (make_number (count),
7052 img->lisp_data));
58279503 7053
4ef0d4d0
KS
7054 fn_TIFFClose (tiff);
7055 if (!rc)
7056 {
7057 image_error ("Error reading TIFF image `%s'", img->spec, Qnil);
7058 xfree (buf);
4ef0d4d0
KS
7059 return 0;
7060 }
7061
4ef0d4d0
KS
7062 /* Initialize the color table. */
7063 init_color_table ();
7064
7065 /* Process the pixel raster. Origin is in the lower-left corner. */
7066 for (y = 0; y < height; ++y)
7067 {
7068 uint32 *row = buf + y * width;
7069
7070 for (x = 0; x < width; ++x)
7071 {
7072 uint32 abgr = row[x];
7073 int r = TIFFGetR (abgr) << 8;
7074 int g = TIFFGetG (abgr) << 8;
7075 int b = TIFFGetB (abgr) << 8;
7076 XPutPixel (ximg, x, height - 1 - y, lookup_rgb_color (f, r, g, b));
7077 }
7078 }
7079
7080#ifdef COLOR_TABLE_SUPPORT
7081 /* Remember the colors allocated for the image. Free the color table. */
7082 img->colors = colors_in_color_table (&img->ncolors);
7083 free_color_table ();
7084#endif /* COLOR_TABLE_SUPPORT */
7085
7086 img->width = width;
7087 img->height = height;
7088
7089 /* Maybe fill in the background field while we have ximg handy. */
7090 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
2e09fef1
EZ
7091 /* Casting avoids a GCC warning on W32. */
7092 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
4ef0d4d0 7093
547c9269
YM
7094 /* Put ximg into the image. */
7095 image_put_x_image (f, img, ximg, 0);
4ef0d4d0
KS
7096 xfree (buf);
7097
4ef0d4d0
KS
7098 return 1;
7099}
7100
7101#else /* HAVE_TIFF */
7102
edfda783 7103#ifdef HAVE_NS
578098f3 7104static bool
edfda783
AR
7105tiff_load (struct frame *f, struct image *img)
7106{
ed3751c8
JB
7107 return ns_load_image (f, img,
7108 image_spec_value (img->spec, QCfile, NULL),
7109 image_spec_value (img->spec, QCdata, NULL));
edfda783
AR
7110}
7111#endif /* HAVE_NS */
7112
4ef0d4d0
KS
7113#endif /* !HAVE_TIFF */
7114
7115
7116\f
7117/***********************************************************************
7118 GIF
7119 ***********************************************************************/
7120
9e2a2647 7121#if defined (HAVE_GIF) || defined (HAVE_NS)
4ef0d4d0 7122
578098f3
PE
7123static bool gif_image_p (Lisp_Object object);
7124static bool gif_load (struct frame *f, struct image *img);
f57e2426 7125static void gif_clear_image (struct frame *f, struct image *img);
4ef0d4d0
KS
7126
7127/* The symbol `gif' identifying images of this type. */
7128
955cbe7b 7129static Lisp_Object Qgif;
4ef0d4d0
KS
7130
7131/* Indices of image specification fields in gif_format, below. */
7132
7133enum gif_keyword_index
7134{
7135 GIF_TYPE,
7136 GIF_DATA,
7137 GIF_FILE,
7138 GIF_ASCENT,
7139 GIF_MARGIN,
7140 GIF_RELIEF,
7141 GIF_ALGORITHM,
7142 GIF_HEURISTIC_MASK,
7143 GIF_MASK,
7144 GIF_IMAGE,
7145 GIF_BACKGROUND,
7146 GIF_LAST
7147};
7148
7149/* Vector of image_keyword structures describing the format
7150 of valid user-defined image specifications. */
7151
91433552 7152static const struct image_keyword gif_format[GIF_LAST] =
4ef0d4d0
KS
7153{
7154 {":type", IMAGE_SYMBOL_VALUE, 1},
7155 {":data", IMAGE_STRING_VALUE, 0},
7156 {":file", IMAGE_STRING_VALUE, 0},
7157 {":ascent", IMAGE_ASCENT_VALUE, 0},
c4a07a4c 7158 {":margin", IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR, 0},
4ef0d4d0
KS
7159 {":relief", IMAGE_INTEGER_VALUE, 0},
7160 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7161 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7162 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
58279503 7163 {":index", IMAGE_NON_NEGATIVE_INTEGER_VALUE, 0},
4ef0d4d0
KS
7164 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
7165};
7166
a9e7a9d5 7167#if defined HAVE_NTGUI && defined WINDOWSNT
578098f3 7168static bool init_gif_functions (void);
bb4d86b4
CY
7169#else
7170#define init_gif_functions NULL
7171#endif
7172
4ef0d4d0
KS
7173/* Structure describing the image type `gif'. */
7174
7175static struct image_type gif_type =
7176{
7177 &Qgif,
7178 gif_image_p,
7179 gif_load,
6ac3c7bb 7180 gif_clear_image,
bb4d86b4 7181 init_gif_functions,
4ef0d4d0
KS
7182 NULL
7183};
7184
6ac3c7bb
KS
7185/* Free X resources of GIF image IMG which is used on frame F. */
7186
7187static void
d3da34e0 7188gif_clear_image (struct frame *f, struct image *img)
6ac3c7bb 7189{
b50691aa 7190 img->lisp_data = Qnil;
6ac3c7bb
KS
7191 x_clear_image (f, img);
7192}
7193
578098f3 7194/* Return true if OBJECT is a valid GIF image specification. */
4ef0d4d0 7195
578098f3 7196static bool
d3da34e0 7197gif_image_p (Lisp_Object object)
4ef0d4d0
KS
7198{
7199 struct image_keyword fmt[GIF_LAST];
72af86bd 7200 memcpy (fmt, gif_format, sizeof fmt);
4ef0d4d0
KS
7201
7202 if (!parse_image_spec (object, fmt, GIF_LAST, Qgif))
7203 return 0;
7204
7205 /* Must specify either the :data or :file keyword. */
7206 return fmt[GIF_FILE].count + fmt[GIF_DATA].count == 1;
7207}
7208
9e2a2647 7209#endif /* HAVE_GIF */
4ef0d4d0
KS
7210
7211#ifdef HAVE_GIF
7212
9e2a2647 7213#if defined (HAVE_NTGUI)
2e09fef1
EZ
7214/* winuser.h might define DrawText to DrawTextA or DrawTextW.
7215 Undefine before redefining to avoid a preprocessor warning. */
7216#ifdef DrawText
7217#undef DrawText
7218#endif
4ef0d4d0
KS
7219/* avoid conflict with QuickdrawText.h */
7220#define DrawText gif_DrawText
7221#include <gif_lib.h>
7222#undef DrawText
7223
9e2a2647 7224#else /* HAVE_NTGUI */
4ef0d4d0
KS
7225
7226#include <gif_lib.h>
7227
9e2a2647 7228#endif /* HAVE_NTGUI */
4ef0d4d0
KS
7229
7230
0fda9b75 7231#ifdef WINDOWSNT
4ef0d4d0
KS
7232
7233/* GIF library details. */
14beddf4
CY
7234DEF_IMGLIB_FN (int, DGifCloseFile, (GifFileType *));
7235DEF_IMGLIB_FN (int, DGifSlurp, (GifFileType *));
7236DEF_IMGLIB_FN (GifFileType *, DGifOpen, (void *, InputFunc));
7237DEF_IMGLIB_FN (GifFileType *, DGifOpenFileName, (const char *));
4ef0d4d0 7238
578098f3 7239static bool
d07ff9db 7240init_gif_functions (void)
4ef0d4d0
KS
7241{
7242 HMODULE library;
7243
d07ff9db 7244 if (!(library = w32_delayed_load (Qgif)))
4ef0d4d0
KS
7245 return 0;
7246
7247 LOAD_IMGLIB_FN (library, DGifCloseFile);
7248 LOAD_IMGLIB_FN (library, DGifSlurp);
7249 LOAD_IMGLIB_FN (library, DGifOpen);
7250 LOAD_IMGLIB_FN (library, DGifOpenFileName);
7251 return 1;
7252}
7253
7254#else
7255
7256#define fn_DGifCloseFile DGifCloseFile
7257#define fn_DGifSlurp DGifSlurp
7258#define fn_DGifOpen DGifOpen
7259#define fn_DGifOpenFileName DGifOpenFileName
7260
0fda9b75 7261#endif /* WINDOWSNT */
4ef0d4d0
KS
7262
7263/* Reading a GIF image from memory
7264 Based on the PNG memory stuff to a certain extent. */
7265
7266typedef struct
7267{
7268 unsigned char *bytes;
3f791afe
PE
7269 ptrdiff_t len;
7270 ptrdiff_t index;
4ef0d4d0
KS
7271}
7272gif_memory_source;
7273
7274/* Make the current memory source available to gif_read_from_memory.
7275 It's done this way because not all versions of libungif support
7276 a UserData field in the GifFileType structure. */
7277static gif_memory_source *current_gif_memory_src;
7278
7279static int
d3da34e0 7280gif_read_from_memory (GifFileType *file, GifByteType *buf, int len)
4ef0d4d0
KS
7281{
7282 gif_memory_source *src = current_gif_memory_src;
7283
7284 if (len > src->len - src->index)
7285 return -1;
7286
72af86bd 7287 memcpy (buf, src->bytes + src->index, len);
4ef0d4d0
KS
7288 src->index += len;
7289 return len;
7290}
7291
7292
578098f3 7293/* Load GIF image IMG for use on frame F. Value is true if
4ef0d4d0
KS
7294 successful. */
7295
91433552
DN
7296static const int interlace_start[] = {0, 4, 2, 1};
7297static const int interlace_increment[] = {8, 8, 4, 2};
aca946f3 7298
17c0c952
JD
7299#define GIF_LOCAL_DESCRIPTOR_EXTENSION 249
7300
578098f3 7301static bool
d3da34e0 7302gif_load (struct frame *f, struct image *img)
4ef0d4d0 7303{
60002bf5
CY
7304 Lisp_Object file;
7305 int rc, width, height, x, y, i, j;
4ef0d4d0
KS
7306 XImagePtr ximg;
7307 ColorMapObject *gif_color_map;
7308 unsigned long pixel_colors[256];
7309 GifFileType *gif;
4ef0d4d0 7310 gif_memory_source memsrc;
60002bf5
CY
7311 Lisp_Object specified_bg = image_spec_value (img->spec, QCbackground, NULL);
7312 Lisp_Object specified_file = image_spec_value (img->spec, QCfile, NULL);
7313 Lisp_Object specified_data = image_spec_value (img->spec, QCdata, NULL);
7314 unsigned long bgcolor = 0;
13464394 7315 EMACS_INT idx;
4ef0d4d0
KS
7316
7317 if (NILP (specified_data))
7318 {
7319 file = x_find_image_file (specified_file);
7320 if (!STRINGP (file))
7321 {
7322 image_error ("Cannot find image file `%s'", specified_file, Qnil);
4ef0d4d0
KS
7323 return 0;
7324 }
7325
df61c790 7326 /* Open the GIF file. */
2037898d 7327 gif = fn_DGifOpenFileName (SSDATA (file));
4ef0d4d0
KS
7328 if (gif == NULL)
7329 {
7330 image_error ("Cannot open `%s'", file, Qnil);
4ef0d4d0
KS
7331 return 0;
7332 }
7333 }
7334 else
7335 {
7574650a
AS
7336 if (!STRINGP (specified_data))
7337 {
7338 image_error ("Invalid image data `%s'", specified_data, Qnil);
7339 return 0;
7340 }
7341
4ef0d4d0
KS
7342 /* Read from memory! */
7343 current_gif_memory_src = &memsrc;
7344 memsrc.bytes = SDATA (specified_data);
7345 memsrc.len = SBYTES (specified_data);
7346 memsrc.index = 0;
7347
df61c790 7348 gif = fn_DGifOpen (&memsrc, gif_read_from_memory);
4ef0d4d0
KS
7349 if (!gif)
7350 {
7351 image_error ("Cannot open memory source `%s'", img->spec, Qnil);
4ef0d4d0
KS
7352 return 0;
7353 }
7354 }
7355
f1f25b99
CY
7356 /* Before reading entire contents, check the declared image size. */
7357 if (!check_image_size (f, gif->SWidth, gif->SHeight))
7358 {
10ea2b82 7359 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
f1f25b99 7360 fn_DGifCloseFile (gif);
f1f25b99
CY
7361 return 0;
7362 }
7363
4ef0d4d0
KS
7364 /* Read entire contents. */
7365 rc = fn_DGifSlurp (gif);
60002bf5 7366 if (rc == GIF_ERROR || gif->ImageCount <= 0)
4ef0d4d0
KS
7367 {
7368 image_error ("Error reading `%s'", img->spec, Qnil);
7369 fn_DGifCloseFile (gif);
4ef0d4d0
KS
7370 return 0;
7371 }
7372
60002bf5
CY
7373 /* Which sub-image are we to display? */
7374 {
33290528
PE
7375 Lisp_Object image_number = image_spec_value (img->spec, QCindex, NULL);
7376 idx = INTEGERP (image_number) ? XFASTINT (image_number) : 0;
60002bf5 7377 if (idx < 0 || idx >= gif->ImageCount)
17c0c952 7378 {
60002bf5 7379 image_error ("Invalid image number `%s' in image `%s'",
33290528 7380 image_number, img->spec);
60002bf5
CY
7381 fn_DGifCloseFile (gif);
7382 return 0;
17c0c952 7383 }
60002bf5 7384 }
17c0c952 7385
e013fb34
CY
7386 width = img->width = gif->SWidth;
7387 height = img->height = gif->SHeight;
0f4aca46 7388
e013fb34
CY
7389 img->corners[TOP_CORNER] = gif->SavedImages[0].ImageDesc.Top;
7390 img->corners[LEFT_CORNER] = gif->SavedImages[0].ImageDesc.Left;
8d903f4e
AS
7391 img->corners[BOT_CORNER]
7392 = img->corners[TOP_CORNER] + gif->SavedImages[0].ImageDesc.Height;
7393 img->corners[RIGHT_CORNER]
7394 = img->corners[LEFT_CORNER] + gif->SavedImages[0].ImageDesc.Width;
4ef0d4d0 7395
f1f25b99
CY
7396 if (!check_image_size (f, width, height))
7397 {
10ea2b82 7398 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
f1f25b99 7399 fn_DGifCloseFile (gif);
f1f25b99
CY
7400 return 0;
7401 }
7402
44aa9ee6
PE
7403 /* Check that the selected subimages fit. It's not clear whether
7404 the GIF spec requires this, but Emacs can crash if they don't fit. */
7405 for (j = 0; j <= idx; ++j)
7406 {
7407 struct SavedImage *subimage = gif->SavedImages + j;
7408 int subimg_width = subimage->ImageDesc.Width;
7409 int subimg_height = subimage->ImageDesc.Height;
7410 int subimg_top = subimage->ImageDesc.Top;
7411 int subimg_left = subimage->ImageDesc.Left;
7412 if (! (0 <= subimg_width && 0 <= subimg_height
7413 && 0 <= subimg_top && subimg_top <= height - subimg_height
7414 && 0 <= subimg_left && subimg_left <= width - subimg_width))
7415 {
7416 image_error ("Subimage does not fit in image", Qnil, Qnil);
7417 fn_DGifCloseFile (gif);
7418 return 0;
7419 }
7420 }
7421
4ef0d4d0 7422 /* Create the X image and pixmap. */
547c9269 7423 if (!image_create_x_image_and_pixmap (f, img, width, height, 0, &ximg, 0))
4ef0d4d0
KS
7424 {
7425 fn_DGifCloseFile (gif);
4ef0d4d0
KS
7426 return 0;
7427 }
7428
60002bf5
CY
7429 /* Clear the part of the screen image not covered by the image.
7430 Full animated GIF support requires more here (see the gif89 spec,
7431 disposal methods). Let's simply assume that the part not covered
7432 by a sub-image is in the frame's background color. */
6ac3c7bb 7433 for (y = 0; y < img->corners[TOP_CORNER]; ++y)
4ef0d4d0
KS
7434 for (x = 0; x < width; ++x)
7435 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7436
6ac3c7bb 7437 for (y = img->corners[BOT_CORNER]; y < height; ++y)
4ef0d4d0
KS
7438 for (x = 0; x < width; ++x)
7439 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7440
6ac3c7bb 7441 for (y = img->corners[TOP_CORNER]; y < img->corners[BOT_CORNER]; ++y)
4ef0d4d0 7442 {
6ac3c7bb 7443 for (x = 0; x < img->corners[LEFT_CORNER]; ++x)
4ef0d4d0 7444 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
6ac3c7bb 7445 for (x = img->corners[RIGHT_CORNER]; x < width; ++x)
4ef0d4d0
KS
7446 XPutPixel (ximg, x, y, FRAME_BACKGROUND_PIXEL (f));
7447 }
7448
60002bf5 7449 /* Read the GIF image into the X image. */
4ef0d4d0 7450
60002bf5
CY
7451 /* FIXME: With the current implementation, loading an animated gif
7452 is quadratic in the number of animation frames, since each frame
7453 is a separate struct image. We must provide a way for a single
7454 gif_load call to construct and save all animation frames. */
4ef0d4d0 7455
60002bf5
CY
7456 init_color_table ();
7457 if (STRINGP (specified_bg))
7458 bgcolor = x_alloc_image_color (f, img, specified_bg,
7459 FRAME_BACKGROUND_PIXEL (f));
7460 for (j = 0; j <= idx; ++j)
7461 {
7462 /* We use a local variable `raster' here because RasterBits is a
7463 char *, which invites problems with bytes >= 0x80. */
7464 struct SavedImage *subimage = gif->SavedImages + j;
7465 unsigned char *raster = (unsigned char *) subimage->RasterBits;
7466 int transparency_color_index = -1;
7467 int disposal = 0;
e013fb34
CY
7468 int subimg_width = subimage->ImageDesc.Width;
7469 int subimg_height = subimage->ImageDesc.Height;
7470 int subimg_top = subimage->ImageDesc.Top;
7471 int subimg_left = subimage->ImageDesc.Left;
60002bf5
CY
7472
7473 /* Find the Graphic Control Extension block for this sub-image.
7474 Extract the disposal method and transparency color. */
7475 for (i = 0; i < subimage->ExtensionBlockCount; i++)
4ef0d4d0 7476 {
60002bf5 7477 ExtensionBlock *extblock = subimage->ExtensionBlocks + i;
4ef0d4d0 7478
60002bf5
CY
7479 if ((extblock->Function == GIF_LOCAL_DESCRIPTOR_EXTENSION)
7480 && extblock->ByteCount == 4
7481 && extblock->Bytes[0] & 1)
4ef0d4d0 7482 {
60002bf5
CY
7483 /* From gif89a spec: 1 = "keep in place", 2 = "restore
7484 to background". Treat any other value like 2. */
7485 disposal = (extblock->Bytes[0] >> 2) & 7;
2547adb1 7486 transparency_color_index = (unsigned char) extblock->Bytes[3];
60002bf5 7487 break;
4ef0d4d0 7488 }
4ef0d4d0 7489 }
60002bf5
CY
7490
7491 /* We can't "keep in place" the first subimage. */
7492 if (j == 0)
7493 disposal = 2;
7494
e013fb34
CY
7495 /* For disposal == 0, the spec says "No disposal specified. The
7496 decoder is not required to take any action." In practice, it
7497 seems we need to treat this like "keep in place", see e.g.
7498 http://upload.wikimedia.org/wikipedia/commons/3/37/Clock.gif */
7499 if (disposal == 0)
7500 disposal = 1;
7501
60002bf5
CY
7502 /* Allocate subimage colors. */
7503 memset (pixel_colors, 0, sizeof pixel_colors);
7504 gif_color_map = subimage->ImageDesc.ColorMap;
7505 if (!gif_color_map)
7506 gif_color_map = gif->SColorMap;
7507
7508 if (gif_color_map)
7509 for (i = 0; i < gif_color_map->ColorCount; ++i)
4ef0d4d0 7510 {
60002bf5
CY
7511 if (transparency_color_index == i)
7512 pixel_colors[i] = STRINGP (specified_bg)
7513 ? bgcolor : FRAME_BACKGROUND_PIXEL (f);
7514 else
7515 {
7516 int r = gif_color_map->Colors[i].Red << 8;
7517 int g = gif_color_map->Colors[i].Green << 8;
7518 int b = gif_color_map->Colors[i].Blue << 8;
7519 pixel_colors[i] = lookup_rgb_color (f, r, g, b);
7520 }
4ef0d4d0 7521 }
60002bf5
CY
7522
7523 /* Apply the pixel values. */
7524 if (gif->SavedImages[j].ImageDesc.Interlace)
7525 {
7526 int row, pass;
7527
7528 for (y = 0, row = interlace_start[0], pass = 0;
e013fb34 7529 y < subimg_height;
60002bf5
CY
7530 y++, row += interlace_increment[pass])
7531 {
a9ebfa0b 7532 while (subimg_height <= row)
60002bf5 7533 {
a9ebfa0b 7534 lint_assume (pass < 3);
60002bf5 7535 row = interlace_start[++pass];
60002bf5
CY
7536 }
7537
e013fb34 7538 for (x = 0; x < subimg_width; x++)
60002bf5 7539 {
e013fb34 7540 int c = raster[y * subimg_width + x];
60002bf5 7541 if (transparency_color_index != c || disposal != 1)
e013fb34
CY
7542 XPutPixel (ximg, x + subimg_left, row + subimg_top,
7543 pixel_colors[c]);
60002bf5
CY
7544 }
7545 }
7546 }
7547 else
7548 {
e013fb34
CY
7549 for (y = 0; y < subimg_height; ++y)
7550 for (x = 0; x < subimg_width; ++x)
60002bf5 7551 {
e013fb34 7552 int c = raster[y * subimg_width + x];
60002bf5 7553 if (transparency_color_index != c || disposal != 1)
e013fb34
CY
7554 XPutPixel (ximg, x + subimg_left, y + subimg_top,
7555 pixel_colors[c]);
60002bf5
CY
7556 }
7557 }
4ef0d4d0
KS
7558 }
7559
60002bf5
CY
7560#ifdef COLOR_TABLE_SUPPORT
7561 img->colors = colors_in_color_table (&img->ncolors);
7562 free_color_table ();
7563#endif /* COLOR_TABLE_SUPPORT */
7564
1546c559
JL
7565 /* Save GIF image extension data for `image-metadata'.
7566 Format is (count IMAGES extension-data (FUNCTION "BYTES" ...)). */
b50691aa 7567 img->lisp_data = Qnil;
60002bf5 7568 if (gif->SavedImages[idx].ExtensionBlockCount > 0)
6ac3c7bb 7569 {
13464394 7570 int delay = 0;
60002bf5
CY
7571 ExtensionBlock *ext = gif->SavedImages[idx].ExtensionBlocks;
7572 for (i = 0; i < gif->SavedImages[idx].ExtensionBlockCount; i++, ext++)
6ac3c7bb 7573 /* Append (... FUNCTION "BYTES") */
1100a63c
CY
7574 {
7575 img->lisp_data
7576 = Fcons (make_number (ext->Function),
7577 Fcons (make_unibyte_string (ext->Bytes, ext->ByteCount),
7578 img->lisp_data));
7579 if (ext->Function == GIF_LOCAL_DESCRIPTOR_EXTENSION
7580 && ext->ByteCount == 4)
7581 {
7582 delay = ext->Bytes[2] << CHAR_BIT;
7583 delay |= ext->Bytes[1];
7584 }
7585 }
b50691aa 7586 img->lisp_data = Fcons (Qextension_data,
1100a63c
CY
7587 Fcons (img->lisp_data, Qnil));
7588 if (delay)
7589 img->lisp_data
7590 = Fcons (Qdelay,
13464394 7591 Fcons (make_float (delay / 100.0),
1100a63c 7592 img->lisp_data));
6ac3c7bb 7593 }
1100a63c 7594
6ac3c7bb 7595 if (gif->ImageCount > 1)
b50691aa
CY
7596 img->lisp_data = Fcons (Qcount,
7597 Fcons (make_number (gif->ImageCount),
7598 img->lisp_data));
6ac3c7bb 7599
4ef0d4d0
KS
7600 fn_DGifCloseFile (gif);
7601
7602 /* Maybe fill in the background field while we have ximg handy. */
7603 if (NILP (image_spec_value (img->spec, QCbackground, NULL)))
2e09fef1
EZ
7604 /* Casting avoids a GCC warning. */
7605 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
4ef0d4d0 7606
547c9269
YM
7607 /* Put ximg into the image. */
7608 image_put_x_image (f, img, ximg, 0);
4ef0d4d0 7609
4ef0d4d0
KS
7610 return 1;
7611}
7612
2e09fef1 7613#else /* !HAVE_GIF */
4ef0d4d0 7614
edfda783 7615#ifdef HAVE_NS
578098f3 7616static bool
edfda783
AR
7617gif_load (struct frame *f, struct image *img)
7618{
ed3751c8
JB
7619 return ns_load_image (f, img,
7620 image_spec_value (img->spec, QCfile, NULL),
7621 image_spec_value (img->spec, QCdata, NULL));
edfda783
AR
7622}
7623#endif /* HAVE_NS */
7624
4ef0d4d0
KS
7625#endif /* HAVE_GIF */
7626
7627
f3f9606c
LMI
7628static void
7629compute_image_size (size_t width, size_t height,
7630 Lisp_Object spec,
7631 int *d_width, int *d_height)
7632{
7633 Lisp_Object value;
7634 int desired_width, desired_height;
7635
7636 /* If width and/or height is set in the display spec assume we want
7637 to scale to those values. If either h or w is unspecified, the
7638 unspecified should be calculated from the specified to preserve
7639 aspect ratio. */
7640 value = image_spec_value (spec, QCwidth, NULL);
7641 desired_width = (INTEGERP (value) ? XFASTINT (value) : -1);
7642 value = image_spec_value (spec, QCheight, NULL);
7643 desired_height = (INTEGERP (value) ? XFASTINT (value) : -1);
7644
7645 if (desired_width == -1)
7646 {
7647 value = image_spec_value (spec, QCmax_width, NULL);
7648 if (INTEGERP (value) &&
7649 width > XFASTINT (value))
7650 {
7651 /* The image is wider than :max-width. */
7652 desired_width = XFASTINT (value);
7653 if (desired_height == -1)
7654 {
7655 value = image_spec_value (spec, QCmax_height, NULL);
7656 if (INTEGERP (value))
7657 {
7658 /* We have no specified height, but we have a
7659 :max-height value, so check that we satisfy both
7660 conditions. */
7661 desired_height = (double) desired_width / width * height;
7662 if (desired_height > XFASTINT (value))
7663 {
7664 desired_height = XFASTINT (value);
7665 desired_width = (double) desired_height / height * width;
7666 }
7667 }
7668 else
7669 {
7670 /* We have no specified height and no specified
7671 max-height, so just compute the height. */
7672 desired_height = (double) desired_width / width * height;
7673 }
7674 }
7675 }
7676 }
7677
7678 if (desired_height == -1)
7679 {
7680 value = image_spec_value (spec, QCmax_height, NULL);
7681 if (INTEGERP (value) &&
7682 height > XFASTINT (value))
7683 desired_height = XFASTINT (value);
7684 }
7685
7686 if (desired_width != -1 && desired_height == -1)
7687 /* w known, calculate h. */
7688 desired_height = (double) desired_width / width * height;
7689
7690 if (desired_width == -1 && desired_height != -1)
7691 /* h known, calculate w. */
7692 desired_width = (double) desired_height / height * width;
7693
7694 *d_width = desired_width;
7695 *d_height = desired_height;
7696}
7697
3de25479 7698/***********************************************************************
a32d4040 7699 ImageMagick
4917006b 7700***********************************************************************/
3de25479 7701#if defined (HAVE_IMAGEMAGICK)
3de25479 7702
4b66faf3 7703static Lisp_Object Qimagemagick;
a32d4040 7704
578098f3
PE
7705static bool imagemagick_image_p (Lisp_Object);
7706static bool imagemagick_load (struct frame *, struct image *);
d66c4c7c
CY
7707static void imagemagick_clear_image (struct frame *, struct image *);
7708
a32d4040 7709/* Indices of image specification fields in imagemagick_format. */
3de25479
JV
7710
7711enum imagemagick_keyword_index
4917006b
JV
7712 {
7713 IMAGEMAGICK_TYPE,
7714 IMAGEMAGICK_DATA,
7715 IMAGEMAGICK_FILE,
7716 IMAGEMAGICK_ASCENT,
7717 IMAGEMAGICK_MARGIN,
7718 IMAGEMAGICK_RELIEF,
7719 IMAGEMAGICK_ALGORITHM,
7720 IMAGEMAGICK_HEURISTIC_MASK,
7721 IMAGEMAGICK_MASK,
7722 IMAGEMAGICK_BACKGROUND,
c7f514b5
JV
7723 IMAGEMAGICK_HEIGHT,
7724 IMAGEMAGICK_WIDTH,
f3f9606c
LMI
7725 IMAGEMAGICK_MAX_HEIGHT,
7726 IMAGEMAGICK_MAX_WIDTH,
c7f514b5
JV
7727 IMAGEMAGICK_ROTATION,
7728 IMAGEMAGICK_CROP,
4917006b
JV
7729 IMAGEMAGICK_LAST
7730 };
3de25479
JV
7731
7732/* Vector of image_keyword structures describing the format
7733 of valid user-defined image specifications. */
7734
7735static struct image_keyword imagemagick_format[IMAGEMAGICK_LAST] =
4917006b
JV
7736 {
7737 {":type", IMAGE_SYMBOL_VALUE, 1},
7738 {":data", IMAGE_STRING_VALUE, 0},
7739 {":file", IMAGE_STRING_VALUE, 0},
7740 {":ascent", IMAGE_ASCENT_VALUE, 0},
c4a07a4c 7741 {":margin", IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR, 0},
4917006b
JV
7742 {":relief", IMAGE_INTEGER_VALUE, 0},
7743 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7744 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
7745 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
c7f514b5 7746 {":background", IMAGE_STRING_OR_NIL_VALUE, 0},
7574650a
AS
7747 {":height", IMAGE_INTEGER_VALUE, 0},
7748 {":width", IMAGE_INTEGER_VALUE, 0},
f3f9606c
LMI
7749 {":max-height", IMAGE_INTEGER_VALUE, 0},
7750 {":max-width", IMAGE_INTEGER_VALUE, 0},
7574650a 7751 {":rotation", IMAGE_NUMBER_VALUE, 0},
c7f514b5 7752 {":crop", IMAGE_DONT_CHECK_VALUE_TYPE, 0}
4917006b 7753 };
a32d4040 7754
33d4113c 7755#if defined HAVE_NTGUI && defined WINDOWSNT
578098f3 7756static bool init_imagemagick_functions (void);
bb4d86b4
CY
7757#else
7758#define init_imagemagick_functions NULL
7759#endif
7760
d66c4c7c
CY
7761/* Structure describing the image type for any image handled via
7762 ImageMagick. */
7763
7764static struct image_type imagemagick_type =
7765 {
7766 &Qimagemagick,
7767 imagemagick_image_p,
7768 imagemagick_load,
7769 imagemagick_clear_image,
bb4d86b4 7770 init_imagemagick_functions,
d66c4c7c
CY
7771 NULL
7772 };
7773
3de25479
JV
7774/* Free X resources of imagemagick image IMG which is used on frame F. */
7775
7776static void
4917006b
JV
7777imagemagick_clear_image (struct frame *f,
7778 struct image *img)
3de25479 7779{
3de25479
JV
7780 x_clear_image (f, img);
7781}
7782
578098f3 7783/* Return true if OBJECT is a valid IMAGEMAGICK image specification. Do
3de25479
JV
7784 this by calling parse_image_spec and supplying the keywords that
7785 identify the IMAGEMAGICK format. */
7786
578098f3 7787static bool
4917006b 7788imagemagick_image_p (Lisp_Object object)
3de25479
JV
7789{
7790 struct image_keyword fmt[IMAGEMAGICK_LAST];
dbfe4532 7791 memcpy (fmt, imagemagick_format, sizeof fmt);
3de25479
JV
7792
7793 if (!parse_image_spec (object, fmt, IMAGEMAGICK_LAST, Qimagemagick))
7794 return 0;
7795
7796 /* Must specify either the :data or :file keyword. */
7797 return fmt[IMAGEMAGICK_FILE].count + fmt[IMAGEMAGICK_DATA].count == 1;
7798}
7799
7800/* The GIF library also defines DrawRectangle, but its never used in Emacs.
c7015153 7801 Therefore rename the function so it doesn't collide with ImageMagick. */
3de25479
JV
7802#define DrawRectangle DrawRectangleGif
7803#include <wand/MagickWand.h>
7804
60737f02
PE
7805/* ImageMagick 6.5.3 through 6.6.5 hid PixelGetMagickColor for some reason.
7806 Emacs seems to work fine with the hidden version, so unhide it. */
7807#include <magick/version.h>
7808#if 0x653 <= MagickLibVersion && MagickLibVersion <= 0x665
7809extern WandExport void PixelGetMagickColor (const PixelWand *,
7810 MagickPixelPacket *);
7811#endif
7812
d1d7b339
JL
7813/* Log ImageMagick error message.
7814 Useful when a ImageMagick function returns the status `MagickFalse'. */
7815
7816static void
7817imagemagick_error (MagickWand *wand)
7818{
7819 char *description;
7820 ExceptionType severity;
7821
7822 description = MagickGetException (wand, &severity);
7823 image_error ("ImageMagick error: %s",
1130ecfc 7824 build_string (description),
d1d7b339
JL
7825 Qnil);
7826 description = (char *) MagickRelinquishMemory (description);
7827}
7828
d66c4c7c
CY
7829/* Helper function for imagemagick_load, which does the actual loading
7830 given contents and size, apart from frame and image structures,
7831 passed from imagemagick_load. Uses librimagemagick to do most of
7832 the image processing.
3de25479 7833
d66c4c7c
CY
7834 F is a pointer to the Emacs frame; IMG to the image structure to
7835 prepare; CONTENTS is the string containing the IMAGEMAGICK data to
7836 be parsed; SIZE is the number of bytes of data; and FILENAME is
7837 either the file name or the image data.
3de25479 7838
578098f3 7839 Return true if successful. */
3de25479 7840
578098f3 7841static bool
d66c4c7c
CY
7842imagemagick_load_image (struct frame *f, struct image *img,
7843 unsigned char *contents, unsigned int size,
33290528 7844 char *filename)
3de25479 7845{
1b9b4cf4 7846 size_t width, height;
d66c4c7c 7847 MagickBooleanType status;
3de25479 7848 XImagePtr ximg;
1b9b4cf4
CY
7849 int x, y;
7850 MagickWand *image_wand;
7851 MagickWand *ping_wand;
3de25479 7852 PixelIterator *iterator;
1b9b4cf4 7853 PixelWand **pixels, *bg_wand = NULL;
3de25479 7854 MagickPixelPacket pixel;
4917006b 7855 Lisp_Object image;
7574650a 7856 Lisp_Object value;
33290528 7857 Lisp_Object crop;
13464394 7858 EMACS_INT ino;
4917006b
JV
7859 int desired_width, desired_height;
7860 double rotation;
7574650a 7861 int pixelwidth;
7574650a 7862
a32d4040
CY
7863 /* Handle image index for image types who can contain more than one image.
7864 Interface :index is same as for GIF. First we "ping" the image to see how
7865 many sub-images it contains. Pinging is faster than loading the image to
7866 find out things about it. */
f853f599 7867
a32d4040 7868 /* Initialize the imagemagick environment. */
f853f599 7869 MagickWandGenesis ();
3de25479
JV
7870 image = image_spec_value (img->spec, QCindex, NULL);
7871 ino = INTEGERP (image) ? XFASTINT (image) : 0;
7574650a 7872 ping_wand = NewMagickWand ();
d1d7b339 7873 /* MagickSetResolution (ping_wand, 2, 2); (Bug#10112) */
fa4fdb5c 7874
1b9b4cf4
CY
7875 status = filename
7876 ? MagickPingImage (ping_wand, filename)
7877 : MagickPingImageBlob (ping_wand, contents, size);
7574650a 7878
d1d7b339
JL
7879 if (status == MagickFalse)
7880 {
7881 imagemagick_error (ping_wand);
7882 DestroyMagickWand (ping_wand);
7883 return 0;
7884 }
fa4fdb5c 7885
1b9b4cf4 7886 if (ino < 0 || ino >= MagickGetNumberImages (ping_wand))
7574650a
AS
7887 {
7888 image_error ("Invalid image number `%s' in image `%s'",
7889 image, img->spec);
7890 DestroyMagickWand (ping_wand);
7891 return 0;
f3700365 7892 }
431dab04 7893
5e617bc2 7894 if (MagickGetNumberImages (ping_wand) > 1)
b50691aa 7895 img->lisp_data =
d2a2d277 7896 Fcons (Qcount,
7574650a 7897 Fcons (make_number (MagickGetNumberImages (ping_wand)),
b50691aa 7898 img->lisp_data));
f3700365
JV
7899
7900 DestroyMagickWand (ping_wand);
f853f599 7901
d66c4c7c 7902 /* Now we know how many images are inside the file. If it's not a
1b9b4cf4 7903 bundle, the number is one. Load the image data. */
f3700365 7904
1b9b4cf4 7905 image_wand = NewMagickWand ();
f3700365 7906
1b9b4cf4
CY
7907 if ((filename
7908 ? MagickReadImage (image_wand, filename)
7909 : MagickReadImageBlob (image_wand, contents, size))
7910 == MagickFalse)
f3700365 7911 {
1b9b4cf4
CY
7912 imagemagick_error (image_wand);
7913 goto imagemagick_error;
f3700365 7914 }
f853f599 7915
1b9b4cf4
CY
7916 /* Retrieve the frame's background color, for use later. */
7917 {
7918 XColor bgcolor;
7919 Lisp_Object specified_bg;
7920
7921 specified_bg = image_spec_value (img->spec, QCbackground, NULL);
7922 if (!STRINGP (specified_bg)
7923 || !x_defined_color (f, SSDATA (specified_bg), &bgcolor, 0))
7924 {
7925#ifndef HAVE_NS
7926 bgcolor.pixel = FRAME_BACKGROUND_PIXEL (f);
7927 x_query_color (f, &bgcolor);
7928#else
7929 ns_query_color (FRAME_BACKGROUND_COLOR (f), &bgcolor, 1);
7930#endif
7931 }
7932
7933 bg_wand = NewPixelWand ();
7934 PixelSetRed (bg_wand, (double) bgcolor.red / 65535);
7935 PixelSetGreen (bg_wand, (double) bgcolor.green / 65535);
7936 PixelSetBlue (bg_wand, (double) bgcolor.blue / 65535);
7937 }
7938
f3f9606c
LMI
7939 compute_image_size (MagickGetImageWidth (image_wand),
7940 MagickGetImageHeight (image_wand),
7941 img->spec, &desired_width, &desired_height);
bdf6a35d 7942
a32d4040 7943 if (desired_width != -1 && desired_height != -1)
4917006b 7944 {
7574650a
AS
7945 status = MagickScaleImage (image_wand, desired_width, desired_height);
7946 if (status == MagickFalse)
7947 {
7948 image_error ("Imagemagick scale failed", Qnil, Qnil);
d1d7b339 7949 imagemagick_error (image_wand);
7574650a
AS
7950 goto imagemagick_error;
7951 }
3de25479 7952 }
3de25479 7953
f3700365 7954 /* crop behaves similar to image slicing in Emacs but is more memory
7574650a
AS
7955 efficient. */
7956 crop = image_spec_value (img->spec, QCcrop, NULL);
7957
13464394 7958 if (CONSP (crop) && TYPE_RANGED_INTEGERP (size_t, XCAR (crop)))
7574650a 7959 {
a32d4040
CY
7960 /* After some testing, it seems MagickCropImage is the fastest crop
7961 function in ImageMagick. This crop function seems to do less copying
7962 than the alternatives, but it still reads the entire image into memory
13464394 7963 before cropping, which is apparently difficult to avoid when using
a32d4040 7964 imagemagick. */
13464394 7965 size_t crop_width = XINT (XCAR (crop));
7574650a 7966 crop = XCDR (crop);
13464394 7967 if (CONSP (crop) && TYPE_RANGED_INTEGERP (size_t, XCAR (crop)))
7574650a 7968 {
13464394 7969 size_t crop_height = XINT (XCAR (crop));
7574650a 7970 crop = XCDR (crop);
13464394 7971 if (CONSP (crop) && TYPE_RANGED_INTEGERP (ssize_t, XCAR (crop)))
7574650a 7972 {
13464394 7973 ssize_t crop_x = XINT (XCAR (crop));
7574650a 7974 crop = XCDR (crop);
13464394 7975 if (CONSP (crop) && TYPE_RANGED_INTEGERP (ssize_t, XCAR (crop)))
7574650a 7976 {
13464394
PE
7977 ssize_t crop_y = XINT (XCAR (crop));
7978 MagickCropImage (image_wand, crop_width, crop_height,
7979 crop_x, crop_y);
7574650a
AS
7980 }
7981 }
7982 }
7983 }
7984
d2a2d277
JV
7985 /* Furthermore :rotation. we need background color and angle for
7986 rotation. */
3de25479 7987 /*
d2a2d277
JV
7988 TODO background handling for rotation specified_bg =
7989 image_spec_value (img->spec, QCbackground, NULL); if (!STRINGP
549a73b9 7990 (specified_bg). */
4917006b
JV
7991 value = image_spec_value (img->spec, QCrotation, NULL);
7992 if (FLOATP (value))
7993 {
3de25479 7994 rotation = extract_float (value);
1b9b4cf4 7995 status = MagickRotateImage (image_wand, bg_wand, rotation);
4917006b
JV
7996 if (status == MagickFalse)
7997 {
7998 image_error ("Imagemagick image rotate failed", Qnil, Qnil);
d1d7b339 7999 imagemagick_error (image_wand);
4917006b
JV
8000 goto imagemagick_error;
8001 }
3de25479 8002 }
7574650a 8003
1b9b4cf4
CY
8004 /* Set the canvas background color to the frame or specified
8005 background, and flatten the image. Note: as of ImageMagick
8006 6.6.0, SVG image transparency is not handled properly
8007 (e.g. etc/images/splash.svg shows a white background always). */
8008 {
8009 MagickWand *new_wand;
8010 MagickSetImageBackgroundColor (image_wand, bg_wand);
0e25d334 8011#ifdef HAVE_MAGICKMERGEIMAGELAYERS
1b9b4cf4 8012 new_wand = MagickMergeImageLayers (image_wand, MergeLayer);
0e25d334
CY
8013#else
8014 new_wand = MagickFlattenImages (image_wand);
8015#endif
1b9b4cf4
CY
8016 DestroyMagickWand (image_wand);
8017 image_wand = new_wand;
8018 }
8019
84ac6f9d
PE
8020 /* Finally we are done manipulating the image. Figure out the
8021 resulting width/height and transfer ownership to Emacs. */
8022 height = MagickGetImageHeight (image_wand);
8023 width = MagickGetImageWidth (image_wand);
8024
3f791afe
PE
8025 if (! (width <= INT_MAX && height <= INT_MAX
8026 && check_image_size (f, width, height)))
3de25479
JV
8027 {
8028 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
8029 goto imagemagick_error;
8030 }
7574650a 8031
3de25479
JV
8032 /* We can now get a valid pixel buffer from the imagemagick file, if all
8033 went ok. */
3de25479
JV
8034
8035 init_color_table ();
af008560 8036
0e25d334
CY
8037#ifdef HAVE_MAGICKEXPORTIMAGEPIXELS
8038 if (imagemagick_render_type != 0)
8039 {
8040 /* Magicexportimage is normally faster than pixelpushing. This
8041 method is also well tested. Some aspects of this method are
8042 ad-hoc and needs to be more researched. */
8043 int imagedepth = 24; /*MagickGetImageDepth(image_wand);*/
8044 const char *exportdepth = imagedepth <= 8 ? "I" : "BGRP"; /*"RGBP";*/
8045 /* Try to create a x pixmap to hold the imagemagick pixmap. */
547c9269
YM
8046 if (!image_create_x_image_and_pixmap (f, img, width, height, imagedepth,
8047 &ximg, 0))
0e25d334
CY
8048 {
8049#ifdef COLOR_TABLE_SUPPORT
8050 free_color_table ();
8051#endif
8052 image_error ("Imagemagick X bitmap allocation failure", Qnil, Qnil);
8053 goto imagemagick_error;
8054 }
8055
8056 /* Oddly, the below code doesn't seem to work:*/
8057 /* switch(ximg->bitmap_unit){ */
8058 /* case 8: */
8059 /* pixelwidth=CharPixel; */
8060 /* break; */
8061 /* case 16: */
8062 /* pixelwidth=ShortPixel; */
8063 /* break; */
8064 /* case 32: */
8065 /* pixelwidth=LongPixel; */
8066 /* break; */
8067 /* } */
8068 /*
8069 Here im just guessing the format of the bitmap.
8070 happens to work fine for:
8071 - bw djvu images
8072 on rgb display.
8073 seems about 3 times as fast as pixel pushing(not carefully measured)
8074 */
8075 pixelwidth = CharPixel; /*??? TODO figure out*/
8076 MagickExportImagePixels (image_wand, 0, 0, width, height,
8077 exportdepth, pixelwidth, ximg->data);
8078 }
8079 else
8080#endif /* HAVE_MAGICKEXPORTIMAGEPIXELS */
4917006b 8081 {
13464394
PE
8082 size_t image_height;
8083
4917006b 8084 /* Try to create a x pixmap to hold the imagemagick pixmap. */
547c9269
YM
8085 if (!image_create_x_image_and_pixmap (f, img, width, height, 0,
8086 &ximg, 0))
4917006b 8087 {
466cbae9
AS
8088#ifdef COLOR_TABLE_SUPPORT
8089 free_color_table ();
8090#endif
5e617bc2 8091 image_error ("Imagemagick X bitmap allocation failure", Qnil, Qnil);
4917006b
JV
8092 goto imagemagick_error;
8093 }
7574650a 8094
53964682 8095 /* Copy imagemagick image to x with primitive yet robust pixel
4917006b 8096 pusher loop. This has been tested a lot with many different
549a73b9 8097 images. */
7574650a 8098
4917006b
JV
8099 /* Copy pixels from the imagemagick image structure to the x image map. */
8100 iterator = NewPixelIterator (image_wand);
7574650a 8101 if (iterator == (PixelIterator *) NULL)
4917006b 8102 {
466cbae9
AS
8103#ifdef COLOR_TABLE_SUPPORT
8104 free_color_table ();
8105#endif
8106 x_destroy_x_image (ximg);
d2a2d277
JV
8107 image_error ("Imagemagick pixel iterator creation failed",
8108 Qnil, Qnil);
3de25479 8109 goto imagemagick_error;
4917006b
JV
8110 }
8111
13464394
PE
8112 image_height = MagickGetImageHeight (image_wand);
8113 for (y = 0; y < image_height; y++)
4917006b
JV
8114 {
8115 pixels = PixelGetNextIteratorRow (iterator, &width);
7574650a 8116 if (pixels == (PixelWand **) NULL)
4917006b
JV
8117 break;
8118 for (x = 0; x < (long) width; x++)
8119 {
8120 PixelGetMagickColor (pixels[x], &pixel);
d2a2d277
JV
8121 XPutPixel (ximg, x, y,
8122 lookup_rgb_color (f,
8123 pixel.red,
8124 pixel.green,
8125 pixel.blue));
4917006b
JV
8126 }
8127 }
8128 DestroyPixelIterator (iterator);
3de25479 8129 }
3ed42149 8130
3de25479
JV
8131#ifdef COLOR_TABLE_SUPPORT
8132 /* Remember colors allocated for this image. */
8133 img->colors = colors_in_color_table (&img->ncolors);
8134 free_color_table ();
8135#endif /* COLOR_TABLE_SUPPORT */
8136
3de25479
JV
8137 img->width = width;
8138 img->height = height;
8139
547c9269
YM
8140 /* Put ximg into the image. */
8141 image_put_x_image (f, img, ximg, 0);
3de25479 8142
f3700365 8143 /* Final cleanup. image_wand should be the only resource left. */
3de25479 8144 DestroyMagickWand (image_wand);
1b9b4cf4
CY
8145 if (bg_wand) DestroyPixelWand (bg_wand);
8146
03d32f1b 8147 /* `MagickWandTerminus' terminates the imagemagick environment. */
f853f599 8148 MagickWandTerminus ();
3de25479
JV
8149
8150 return 1;
8151
8152 imagemagick_error:
466cbae9 8153 DestroyMagickWand (image_wand);
1b9b4cf4
CY
8154 if (bg_wand) DestroyPixelWand (bg_wand);
8155
f853f599 8156 MagickWandTerminus ();
3de25479
JV
8157 /* TODO more cleanup. */
8158 image_error ("Error parsing IMAGEMAGICK image `%s'", img->spec, Qnil);
3de25479
JV
8159 return 0;
8160}
8161
4917006b 8162
578098f3 8163/* Load IMAGEMAGICK image IMG for use on frame F. Value is true if
4917006b
JV
8164 successful. this function will go into the imagemagick_type structure, and
8165 the prototype thus needs to be compatible with that structure. */
8166
578098f3 8167static bool
d66c4c7c 8168imagemagick_load (struct frame *f, struct image *img)
4917006b 8169{
578098f3 8170 bool success_p = 0;
4917006b
JV
8171 Lisp_Object file_name;
8172
8173 /* If IMG->spec specifies a file name, create a non-file spec from it. */
8174 file_name = image_spec_value (img->spec, QCfile, NULL);
8175 if (STRINGP (file_name))
8176 {
8177 Lisp_Object file;
4917006b
JV
8178
8179 file = x_find_image_file (file_name);
4917006b
JV
8180 if (!STRINGP (file))
8181 {
8182 image_error ("Cannot find image file `%s'", file_name, Qnil);
4917006b
JV
8183 return 0;
8184 }
33290528 8185 success_p = imagemagick_load_image (f, img, 0, 0, SSDATA (file));
4917006b
JV
8186 }
8187 /* Else its not a file, its a lisp object. Load the image from a
8188 lisp object rather than a file. */
8189 else
8190 {
8191 Lisp_Object data;
8192
8193 data = image_spec_value (img->spec, QCdata, NULL);
7574650a
AS
8194 if (!STRINGP (data))
8195 {
8196 image_error ("Invalid image data `%s'", data, Qnil);
8197 return 0;
8198 }
d2a2d277
JV
8199 success_p = imagemagick_load_image (f, img, SDATA (data),
8200 SBYTES (data), NULL);
4917006b
JV
8201 }
8202
8203 return success_p;
8204}
8205
a7ca3326 8206DEFUN ("imagemagick-types", Fimagemagick_types, Simagemagick_types, 0, 0, 0,
d66c4c7c
CY
8207 doc: /* Return a list of image types supported by ImageMagick.
8208Each entry in this list is a symbol named after an ImageMagick format
8209tag. See the ImageMagick manual for a list of ImageMagick formats and
8210their descriptions (http://www.imagemagick.org/script/formats.php).
dd605cc4 8211You can also try the shell command: `identify -list format'.
d66c4c7c
CY
8212
8213Note that ImageMagick recognizes many file-types that Emacs does not
32d72c2f
GM
8214recognize as images, such as C. See `imagemagick-types-enable'
8215and `imagemagick-types-inhibit'. */)
a8101f66 8216 (void)
3de25479
JV
8217{
8218 Lisp_Object typelist = Qnil;
1ab0dee5 8219 size_t numf = 0;
3de25479 8220 ExceptionInfo ex;
2277de02 8221 char **imtypes;
3f791afe 8222 size_t i;
3de25479 8223 Lisp_Object Qimagemagicktype;
2277de02
JD
8224
8225 GetExceptionInfo(&ex);
8226 imtypes = GetMagickList ("*", &numf, &ex);
8227 DestroyExceptionInfo(&ex);
8228
4917006b
JV
8229 for (i = 0; i < numf; i++)
8230 {
8231 Qimagemagicktype = intern (imtypes[i]);
f3700365
JV
8232 typelist = Fcons (Qimagemagicktype, typelist);
8233 }
d1d7b339 8234 return Fnreverse (typelist);
3de25479 8235}
7574650a 8236
3de25479
JV
8237#endif /* defined (HAVE_IMAGEMAGICK) */
8238
8239
4ef0d4d0 8240\f
4ab27a43
GM
8241/***********************************************************************
8242 SVG
8243 ***********************************************************************/
8244
8245#if defined (HAVE_RSVG)
8246
8247/* Function prototypes. */
8248
578098f3
PE
8249static bool svg_image_p (Lisp_Object object);
8250static bool svg_load (struct frame *f, struct image *img);
4ab27a43 8251
578098f3
PE
8252static bool svg_load_image (struct frame *, struct image *,
8253 unsigned char *, ptrdiff_t);
4ab27a43
GM
8254
8255/* The symbol `svg' identifying images of this type. */
8256
4b66faf3 8257static Lisp_Object Qsvg;
4ab27a43
GM
8258
8259/* Indices of image specification fields in svg_format, below. */
8260
8261enum svg_keyword_index
8262{
8263 SVG_TYPE,
8264 SVG_DATA,
8265 SVG_FILE,
8266 SVG_ASCENT,
8267 SVG_MARGIN,
8268 SVG_RELIEF,
8269 SVG_ALGORITHM,
8270 SVG_HEURISTIC_MASK,
8271 SVG_MASK,
8272 SVG_BACKGROUND,
8273 SVG_LAST
8274};
8275
8276/* Vector of image_keyword structures describing the format
8277 of valid user-defined image specifications. */
8278
91433552 8279static const struct image_keyword svg_format[SVG_LAST] =
4ab27a43
GM
8280{
8281 {":type", IMAGE_SYMBOL_VALUE, 1},
8282 {":data", IMAGE_STRING_VALUE, 0},
8283 {":file", IMAGE_STRING_VALUE, 0},
8284 {":ascent", IMAGE_ASCENT_VALUE, 0},
c4a07a4c 8285 {":margin", IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR, 0},
4ab27a43
GM
8286 {":relief", IMAGE_INTEGER_VALUE, 0},
8287 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8288 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8289 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8290 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
8291};
8292
33d4113c 8293#if defined HAVE_NTGUI && defined WINDOWSNT
578098f3 8294static bool init_svg_functions (void);
bb4d86b4
CY
8295#else
8296#define init_svg_functions NULL
8297#endif
8298
4ab27a43
GM
8299/* Structure describing the image type `svg'. Its the same type of
8300 structure defined for all image formats, handled by emacs image
8301 functions. See struct image_type in dispextern.h. */
8302
8303static struct image_type svg_type =
8304{
4ab27a43 8305 &Qsvg,
4ab27a43 8306 svg_image_p,
4ab27a43 8307 svg_load,
4ab27a43 8308 x_clear_image,
bb4d86b4 8309 init_svg_functions,
c21e6151 8310 NULL
4ab27a43
GM
8311};
8312
8313
578098f3 8314/* Return true if OBJECT is a valid SVG image specification. Do
4ab27a43
GM
8315 this by calling parse_image_spec and supplying the keywords that
8316 identify the SVG format. */
8317
578098f3 8318static bool
d3da34e0 8319svg_image_p (Lisp_Object object)
4ab27a43
GM
8320{
8321 struct image_keyword fmt[SVG_LAST];
72af86bd 8322 memcpy (fmt, svg_format, sizeof fmt);
4ab27a43
GM
8323
8324 if (!parse_image_spec (object, fmt, SVG_LAST, Qsvg))
8325 return 0;
8326
8327 /* Must specify either the :data or :file keyword. */
8328 return fmt[SVG_FILE].count + fmt[SVG_DATA].count == 1;
8329}
8330
8331#include <librsvg/rsvg.h>
8332
0fda9b75 8333#ifdef WINDOWSNT
5fc9fdeb
JR
8334
8335/* SVG library functions. */
40693bba 8336DEF_IMGLIB_FN (RsvgHandle *, rsvg_handle_new, (void));
8337DEF_IMGLIB_FN (void, rsvg_handle_get_dimensions, (RsvgHandle *, RsvgDimensionData *));
8338DEF_IMGLIB_FN (gboolean, rsvg_handle_write, (RsvgHandle *, const guchar *, gsize, GError **));
8339DEF_IMGLIB_FN (gboolean, rsvg_handle_close, (RsvgHandle *, GError **));
8340DEF_IMGLIB_FN (GdkPixbuf *, rsvg_handle_get_pixbuf, (RsvgHandle *));
8341DEF_IMGLIB_FN (void *, rsvg_handle_set_size_callback, (RsvgHandle *, RsvgSizeFunc, gpointer, GDestroyNotify));
8342
8343DEF_IMGLIB_FN (int, gdk_pixbuf_get_width, (const GdkPixbuf *));
8344DEF_IMGLIB_FN (int, gdk_pixbuf_get_height, (const GdkPixbuf *));
8345DEF_IMGLIB_FN (guchar *, gdk_pixbuf_get_pixels, (const GdkPixbuf *));
8346DEF_IMGLIB_FN (int, gdk_pixbuf_get_rowstride, (const GdkPixbuf *));
8347DEF_IMGLIB_FN (GdkColorspace, gdk_pixbuf_get_colorspace, (const GdkPixbuf *));
8348DEF_IMGLIB_FN (int, gdk_pixbuf_get_n_channels, (const GdkPixbuf *));
8349DEF_IMGLIB_FN (gboolean, gdk_pixbuf_get_has_alpha, (const GdkPixbuf *));
8350DEF_IMGLIB_FN (int, gdk_pixbuf_get_bits_per_sample, (const GdkPixbuf *));
8351
8352DEF_IMGLIB_FN (void, g_type_init, (void));
8353DEF_IMGLIB_FN (void, g_object_unref, (gpointer));
121ab1cd 8354DEF_IMGLIB_FN (void, g_error_free, (GError *));
5fc9fdeb 8355
df23bf08 8356Lisp_Object Qgdk_pixbuf, Qglib, Qgobject;
5fc9fdeb 8357
578098f3 8358static bool
d07ff9db 8359init_svg_functions (void)
5fc9fdeb 8360{
df23bf08 8361 HMODULE library, gdklib, glib, gobject;
5fc9fdeb 8362
d07ff9db
CY
8363 if (!(glib = w32_delayed_load (Qglib))
8364 || !(gobject = w32_delayed_load (Qgobject))
8365 || !(gdklib = w32_delayed_load (Qgdk_pixbuf))
8366 || !(library = w32_delayed_load (Qsvg)))
5fc9fdeb
JR
8367 return 0;
8368
8369 LOAD_IMGLIB_FN (library, rsvg_handle_new);
e025c9c2 8370 LOAD_IMGLIB_FN (library, rsvg_handle_get_dimensions);
5fc9fdeb
JR
8371 LOAD_IMGLIB_FN (library, rsvg_handle_write);
8372 LOAD_IMGLIB_FN (library, rsvg_handle_close);
8373 LOAD_IMGLIB_FN (library, rsvg_handle_get_pixbuf);
5fc9fdeb
JR
8374
8375 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_width);
8376 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_height);
8377 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_pixels);
8378 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_rowstride);
8379 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_colorspace);
8380 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_n_channels);
8381 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_has_alpha);
8382 LOAD_IMGLIB_FN (gdklib, gdk_pixbuf_get_bits_per_sample);
8383
df23bf08
JR
8384 LOAD_IMGLIB_FN (gobject, g_type_init);
8385 LOAD_IMGLIB_FN (gobject, g_object_unref);
5fc9fdeb 8386 LOAD_IMGLIB_FN (glib, g_error_free);
df23bf08 8387
5fc9fdeb
JR
8388 return 1;
8389}
4ab27a43 8390
5fc9fdeb
JR
8391#else
8392/* The following aliases for library functions allow dynamic loading
8393 to be used on some platforms. */
4ab27a43 8394#define fn_rsvg_handle_new rsvg_handle_new
e025c9c2 8395#define fn_rsvg_handle_get_dimensions rsvg_handle_get_dimensions
4ab27a43
GM
8396#define fn_rsvg_handle_write rsvg_handle_write
8397#define fn_rsvg_handle_close rsvg_handle_close
8398#define fn_rsvg_handle_get_pixbuf rsvg_handle_get_pixbuf
4ab27a43 8399
5fc9fdeb
JR
8400#define fn_gdk_pixbuf_get_width gdk_pixbuf_get_width
8401#define fn_gdk_pixbuf_get_height gdk_pixbuf_get_height
8402#define fn_gdk_pixbuf_get_pixels gdk_pixbuf_get_pixels
8403#define fn_gdk_pixbuf_get_rowstride gdk_pixbuf_get_rowstride
8404#define fn_gdk_pixbuf_get_colorspace gdk_pixbuf_get_colorspace
8405#define fn_gdk_pixbuf_get_n_channels gdk_pixbuf_get_n_channels
8406#define fn_gdk_pixbuf_get_has_alpha gdk_pixbuf_get_has_alpha
4ab27a43
GM
8407#define fn_gdk_pixbuf_get_bits_per_sample gdk_pixbuf_get_bits_per_sample
8408
5fc9fdeb
JR
8409#define fn_g_type_init g_type_init
8410#define fn_g_object_unref g_object_unref
8411#define fn_g_error_free g_error_free
0fda9b75 8412#endif /* !WINDOWSNT */
4ab27a43 8413
578098f3
PE
8414/* Load SVG image IMG for use on frame F. Value is true if
8415 successful. */
4ab27a43 8416
578098f3 8417static bool
d3da34e0 8418svg_load (struct frame *f, struct image *img)
4ab27a43 8419{
578098f3 8420 bool success_p = 0;
4ab27a43
GM
8421 Lisp_Object file_name;
8422
8423 /* If IMG->spec specifies a file name, create a non-file spec from it. */
8424 file_name = image_spec_value (img->spec, QCfile, NULL);
8425 if (STRINGP (file_name))
8426 {
8427 Lisp_Object file;
8428 unsigned char *contents;
dd52fcea 8429 ptrdiff_t size;
4ab27a43
GM
8430
8431 file = x_find_image_file (file_name);
4ab27a43 8432 if (!STRINGP (file))
c21e6151
YM
8433 {
8434 image_error ("Cannot find image file `%s'", file_name, Qnil);
c21e6151
YM
8435 return 0;
8436 }
8437
4ab27a43 8438 /* Read the entire file into memory. */
33290528 8439 contents = slurp_file (SSDATA (file), &size);
4ab27a43 8440 if (contents == NULL)
c21e6151
YM
8441 {
8442 image_error ("Error loading SVG image `%s'", img->spec, Qnil);
c21e6151
YM
8443 return 0;
8444 }
4ab27a43 8445 /* If the file was slurped into memory properly, parse it. */
c21e6151 8446 success_p = svg_load_image (f, img, contents, size);
4ab27a43 8447 xfree (contents);
4ab27a43
GM
8448 }
8449 /* Else its not a file, its a lisp object. Load the image from a
8450 lisp object rather than a file. */
8451 else
8452 {
8453 Lisp_Object data;
8454
8455 data = image_spec_value (img->spec, QCdata, NULL);
7574650a
AS
8456 if (!STRINGP (data))
8457 {
8458 image_error ("Invalid image data `%s'", data, Qnil);
8459 return 0;
8460 }
4ab27a43
GM
8461 success_p = svg_load_image (f, img, SDATA (data), SBYTES (data));
8462 }
8463
8464 return success_p;
8465}
8466
bbe6f2aa
JB
8467/* svg_load_image is a helper function for svg_load, which does the
8468 actual loading given contents and size, apart from frame and image
8469 structures, passed from svg_load.
4ab27a43 8470
bbe6f2aa 8471 Uses librsvg to do most of the image processing.
c21e6151 8472
578098f3
PE
8473 Returns true when successful. */
8474static bool
d3da34e0
JB
8475svg_load_image (struct frame *f, /* Pointer to emacs frame structure. */
8476 struct image *img, /* Pointer to emacs image structure. */
8477 unsigned char *contents, /* String containing the SVG XML data to be parsed. */
dd52fcea 8478 ptrdiff_t size) /* Size of data in bytes. */
4ab27a43
GM
8479{
8480 RsvgHandle *rsvg_handle;
e025c9c2 8481 RsvgDimensionData dimension_data;
33290528 8482 GError *err = NULL;
4ab27a43
GM
8483 GdkPixbuf *pixbuf;
8484 int width;
8485 int height;
8486 const guint8 *pixels;
8487 int rowstride;
8488 XImagePtr ximg;
c21e6151 8489 Lisp_Object specified_bg;
4ab27a43
GM
8490 XColor background;
8491 int x;
8492 int y;
8493
8494 /* g_type_init is a glib function that must be called prior to using
8495 gnome type library functions. */
5fc9fdeb 8496 fn_g_type_init ();
4ab27a43 8497 /* Make a handle to a new rsvg object. */
df61c790 8498 rsvg_handle = fn_rsvg_handle_new ();
4ab27a43
GM
8499
8500 /* Parse the contents argument and fill in the rsvg_handle. */
33290528
PE
8501 fn_rsvg_handle_write (rsvg_handle, contents, size, &err);
8502 if (err) goto rsvg_error;
4ab27a43
GM
8503
8504 /* The parsing is complete, rsvg_handle is ready to used, close it
8505 for further writes. */
33290528
PE
8506 fn_rsvg_handle_close (rsvg_handle, &err);
8507 if (err) goto rsvg_error;
e025c9c2
CY
8508
8509 fn_rsvg_handle_get_dimensions (rsvg_handle, &dimension_data);
8510 if (! check_image_size (f, dimension_data.width, dimension_data.height))
10ea2b82
JR
8511 {
8512 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
8513 goto rsvg_error;
8514 }
b2996e57 8515
4ab27a43
GM
8516 /* We can now get a valid pixel buffer from the svg file, if all
8517 went ok. */
df61c790 8518 pixbuf = fn_rsvg_handle_get_pixbuf (rsvg_handle);
e025c9c2
CY
8519 if (!pixbuf) goto rsvg_error;
8520 fn_g_object_unref (rsvg_handle);
4ab27a43
GM
8521
8522 /* Extract some meta data from the svg handle. */
8523 width = fn_gdk_pixbuf_get_width (pixbuf);
8524 height = fn_gdk_pixbuf_get_height (pixbuf);
df61c790 8525 pixels = fn_gdk_pixbuf_get_pixels (pixbuf);
4ab27a43
GM
8526 rowstride = fn_gdk_pixbuf_get_rowstride (pixbuf);
8527
8528 /* Validate the svg meta data. */
8529 eassert (fn_gdk_pixbuf_get_colorspace (pixbuf) == GDK_COLORSPACE_RGB);
8530 eassert (fn_gdk_pixbuf_get_n_channels (pixbuf) == 4);
8531 eassert (fn_gdk_pixbuf_get_has_alpha (pixbuf));
8532 eassert (fn_gdk_pixbuf_get_bits_per_sample (pixbuf) == 8);
8533
8534 /* Try to create a x pixmap to hold the svg pixmap. */
547c9269 8535 if (!image_create_x_image_and_pixmap (f, img, width, height, 0, &ximg, 0))
c21e6151 8536 {
5fc9fdeb 8537 fn_g_object_unref (pixbuf);
c21e6151
YM
8538 return 0;
8539 }
4ab27a43
GM
8540
8541 init_color_table ();
8542
c21e6151
YM
8543 /* Handle alpha channel by combining the image with a background
8544 color. */
8545 specified_bg = image_spec_value (img->spec, QCbackground, NULL);
8d3c4e79 8546 if (!STRINGP (specified_bg)
33290528 8547 || !x_defined_color (f, SSDATA (specified_bg), &background, 0))
c21e6151 8548 {
d7e008d0 8549#ifndef HAVE_NS
c21e6151
YM
8550 background.pixel = FRAME_BACKGROUND_PIXEL (f);
8551 x_query_color (f, &background);
d7e008d0 8552#else
ed3751c8 8553 ns_query_color (FRAME_BACKGROUND_COLOR (f), &background, 1);
d7e008d0 8554#endif
c21e6151 8555 }
4ab27a43 8556
8d3c4e79
CY
8557 /* SVG pixmaps specify transparency in the last byte, so right
8558 shift 8 bits to get rid of it, since emacs doesn't support
8559 transparency. */
8560 background.red >>= 8;
8561 background.green >>= 8;
8562 background.blue >>= 8;
8563
4ab27a43
GM
8564 /* This loop handles opacity values, since Emacs assumes
8565 non-transparent images. Each pixel must be "flattened" by
bbe6f2aa
JB
8566 calculating the resulting color, given the transparency of the
8567 pixel, and the image background color. */
4ab27a43
GM
8568 for (y = 0; y < height; ++y)
8569 {
8570 for (x = 0; x < width; ++x)
8571 {
13464394
PE
8572 int red;
8573 int green;
8574 int blue;
8575 int opacity;
4ab27a43
GM
8576
8577 red = *pixels++;
8578 green = *pixels++;
8579 blue = *pixels++;
8580 opacity = *pixels++;
8581
8582 red = ((red * opacity)
8583 + (background.red * ((1 << 8) - opacity)));
8584 green = ((green * opacity)
8585 + (background.green * ((1 << 8) - opacity)));
8586 blue = ((blue * opacity)
8587 + (background.blue * ((1 << 8) - opacity)));
8588
8589 XPutPixel (ximg, x, y, lookup_rgb_color (f, red, green, blue));
8590 }
8591
8592 pixels += rowstride - 4 * width;
8593 }
8594
8595#ifdef COLOR_TABLE_SUPPORT
8596 /* Remember colors allocated for this image. */
8597 img->colors = colors_in_color_table (&img->ncolors);
8598 free_color_table ();
8599#endif /* COLOR_TABLE_SUPPORT */
8600
5fc9fdeb 8601 fn_g_object_unref (pixbuf);
4ab27a43 8602
c21e6151
YM
8603 img->width = width;
8604 img->height = height;
8605
8606 /* Maybe fill in the background field while we have ximg handy.
8607 Casting avoids a GCC warning. */
8608 IMAGE_BACKGROUND (img, f, (XImagePtr_or_DC)ximg);
8609
547c9269
YM
8610 /* Put ximg into the image. */
8611 image_put_x_image (f, img, ximg, 0);
4ab27a43 8612
4ab27a43
GM
8613 return 1;
8614
8615 rsvg_error:
e025c9c2 8616 fn_g_object_unref (rsvg_handle);
4ab27a43
GM
8617 /* FIXME: Use error->message so the user knows what is the actual
8618 problem with the image. */
8619 image_error ("Error parsing SVG image `%s'", img->spec, Qnil);
33290528 8620 fn_g_error_free (err);
4ab27a43
GM
8621 return 0;
8622}
8623
8624#endif /* defined (HAVE_RSVG) */
8625
8626
8627
4ef0d4d0
KS
8628\f
8629/***********************************************************************
8630 Ghostscript
8631 ***********************************************************************/
8632
8633#ifdef HAVE_X_WINDOWS
8634#define HAVE_GHOSTSCRIPT 1
8635#endif /* HAVE_X_WINDOWS */
8636
4ef0d4d0
KS
8637#ifdef HAVE_GHOSTSCRIPT
8638
578098f3
PE
8639static bool gs_image_p (Lisp_Object object);
8640static bool gs_load (struct frame *f, struct image *img);
f57e2426 8641static void gs_clear_image (struct frame *f, struct image *img);
4ef0d4d0
KS
8642
8643/* Keyword symbols. */
8644
955cbe7b 8645static Lisp_Object QCloader, QCbounding_box, QCpt_width, QCpt_height;
4ef0d4d0
KS
8646
8647/* Indices of image specification fields in gs_format, below. */
8648
8649enum gs_keyword_index
8650{
8651 GS_TYPE,
8652 GS_PT_WIDTH,
8653 GS_PT_HEIGHT,
8654 GS_FILE,
8655 GS_LOADER,
8656 GS_BOUNDING_BOX,
8657 GS_ASCENT,
8658 GS_MARGIN,
8659 GS_RELIEF,
8660 GS_ALGORITHM,
8661 GS_HEURISTIC_MASK,
8662 GS_MASK,
8663 GS_BACKGROUND,
8664 GS_LAST
8665};
8666
8667/* Vector of image_keyword structures describing the format
8668 of valid user-defined image specifications. */
8669
91433552 8670static const struct image_keyword gs_format[GS_LAST] =
4ef0d4d0
KS
8671{
8672 {":type", IMAGE_SYMBOL_VALUE, 1},
8673 {":pt-width", IMAGE_POSITIVE_INTEGER_VALUE, 1},
8674 {":pt-height", IMAGE_POSITIVE_INTEGER_VALUE, 1},
8675 {":file", IMAGE_STRING_VALUE, 1},
8676 {":loader", IMAGE_FUNCTION_VALUE, 0},
8677 {":bounding-box", IMAGE_DONT_CHECK_VALUE_TYPE, 1},
8678 {":ascent", IMAGE_ASCENT_VALUE, 0},
c4a07a4c 8679 {":margin", IMAGE_NON_NEGATIVE_INTEGER_VALUE_OR_PAIR, 0},
4ef0d4d0
KS
8680 {":relief", IMAGE_INTEGER_VALUE, 0},
8681 {":conversion", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8682 {":heuristic-mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8683 {":mask", IMAGE_DONT_CHECK_VALUE_TYPE, 0},
8684 {":background", IMAGE_STRING_OR_NIL_VALUE, 0}
8685};
8686
8687/* Structure describing the image type `ghostscript'. */
8688
8689static struct image_type gs_type =
8690{
8691 &Qpostscript,
8692 gs_image_p,
8693 gs_load,
8694 gs_clear_image,
d07ff9db 8695 NULL,
4ef0d4d0
KS
8696 NULL
8697};
8698
8699
8700/* Free X resources of Ghostscript image IMG which is used on frame F. */
8701
8702static void
d3da34e0 8703gs_clear_image (struct frame *f, struct image *img)
4ef0d4d0 8704{
4ef0d4d0
KS
8705 x_clear_image (f, img);
8706}
8707
8708
578098f3 8709/* Return true if OBJECT is a valid Ghostscript image
4ef0d4d0
KS
8710 specification. */
8711
578098f3 8712static bool
d3da34e0 8713gs_image_p (Lisp_Object object)
4ef0d4d0
KS
8714{
8715 struct image_keyword fmt[GS_LAST];
8716 Lisp_Object tem;
8717 int i;
8718
72af86bd 8719 memcpy (fmt, gs_format, sizeof fmt);
4ef0d4d0
KS
8720
8721 if (!parse_image_spec (object, fmt, GS_LAST, Qpostscript))
8722 return 0;
8723
8724 /* Bounding box must be a list or vector containing 4 integers. */
8725 tem = fmt[GS_BOUNDING_BOX].value;
8726 if (CONSP (tem))
8727 {
8728 for (i = 0; i < 4; ++i, tem = XCDR (tem))
8729 if (!CONSP (tem) || !INTEGERP (XCAR (tem)))
8730 return 0;
8731 if (!NILP (tem))
8732 return 0;
8733 }
8734 else if (VECTORP (tem))
8735 {
77b37c05 8736 if (ASIZE (tem) != 4)
4ef0d4d0
KS
8737 return 0;
8738 for (i = 0; i < 4; ++i)
28be1ada 8739 if (!INTEGERP (AREF (tem, i)))
4ef0d4d0
KS
8740 return 0;
8741 }
8742 else
8743 return 0;
8744
8745 return 1;
8746}
8747
8748
578098f3 8749/* Load Ghostscript image IMG for use on frame F. Value is true
4ef0d4d0
KS
8750 if successful. */
8751
578098f3 8752static bool
d3da34e0 8753gs_load (struct frame *f, struct image *img)
4ef0d4d0 8754{
13464394
PE
8755 uprintmax_t printnum1, printnum2;
8756 char buffer[sizeof " " + INT_STRLEN_BOUND (printmax_t)];
4ef0d4d0 8757 Lisp_Object window_and_pixmap_id = Qnil, loader, pt_height, pt_width;
4ef0d4d0
KS
8758 Lisp_Object frame;
8759 double in_width, in_height;
8760 Lisp_Object pixel_colors = Qnil;
8761
8762 /* Compute pixel size of pixmap needed from the given size in the
8763 image specification. Sizes in the specification are in pt. 1 pt
8764 = 1/72 in, xdpi and ydpi are stored in the frame's X display
8765 info. */
8766 pt_width = image_spec_value (img->spec, QCpt_width, NULL);
7574650a 8767 in_width = INTEGERP (pt_width) ? XFASTINT (pt_width) / 72.0 : 0;
42143acd 8768 in_width *= FRAME_RES_X (f);
4ef0d4d0 8769 pt_height = image_spec_value (img->spec, QCpt_height, NULL);
7574650a 8770 in_height = INTEGERP (pt_height) ? XFASTINT (pt_height) / 72.0 : 0;
42143acd 8771 in_height *= FRAME_RES_Y (f);
4ef0d4d0 8772
13464394
PE
8773 if (! (in_width <= INT_MAX && in_height <= INT_MAX
8774 && check_image_size (f, in_width, in_height)))
f1f25b99 8775 {
10ea2b82 8776 image_error ("Invalid image size (see `max-image-size')", Qnil, Qnil);
f1f25b99
CY
8777 return 0;
8778 }
13464394
PE
8779 img->width = in_width;
8780 img->height = in_height;
f1f25b99 8781
4ef0d4d0 8782 /* Create the pixmap. */
a54e2c05 8783 eassert (img->pixmap == NO_PIXMAP);
4ef0d4d0 8784
ca4aa935
PE
8785 if (x_check_image_size (0, img->width, img->height))
8786 {
8787 /* Only W32 version did BLOCK_INPUT here. ++kfs */
4d7e6e51 8788 block_input ();
ca4aa935
PE
8789 img->pixmap = XCreatePixmap (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
8790 img->width, img->height,
8791 DefaultDepthOfScreen (FRAME_X_SCREEN (f)));
4d7e6e51 8792 unblock_input ();
ca4aa935 8793 }
4ef0d4d0
KS
8794
8795 if (!img->pixmap)
8796 {
8797 image_error ("Unable to create pixmap for `%s'", img->spec, Qnil);
8798 return 0;
8799 }
8800
8801 /* Call the loader to fill the pixmap. It returns a process object
8802 if successful. We do not record_unwind_protect here because
8803 other places in redisplay like calling window scroll functions
8804 don't either. Let the Lisp loader use `unwind-protect' instead. */
13464394
PE
8805 printnum1 = FRAME_X_WINDOW (f);
8806 printnum2 = img->pixmap;
620f13b0 8807 window_and_pixmap_id
a8290ec3 8808 = make_formatted_string (buffer, "%"pMu" %"pMu, printnum1, printnum2);
4ef0d4d0 8809
13464394
PE
8810 printnum1 = FRAME_FOREGROUND_PIXEL (f);
8811 printnum2 = FRAME_BACKGROUND_PIXEL (f);
a8290ec3
DA
8812 pixel_colors
8813 = make_formatted_string (buffer, "%"pMu" %"pMu, printnum1, printnum2);
4ef0d4d0
KS
8814
8815 XSETFRAME (frame, f);
8816 loader = image_spec_value (img->spec, QCloader, NULL);
8817 if (NILP (loader))
8818 loader = intern ("gs-load-image");
8819
b50691aa
CY
8820 img->lisp_data = call6 (loader, frame, img->spec,
8821 make_number (img->width),
8822 make_number (img->height),
8823 window_and_pixmap_id,
8824 pixel_colors);
8825 return PROCESSP (img->lisp_data);
4ef0d4d0
KS
8826}
8827
8828
8829/* Kill the Ghostscript process that was started to fill PIXMAP on
8830 frame F. Called from XTread_socket when receiving an event
8831 telling Emacs that Ghostscript has finished drawing. */
8832
8833void
d3da34e0 8834x_kill_gs_process (Pixmap pixmap, struct frame *f)
4ef0d4d0 8835{
354884c4 8836 struct image_cache *c = FRAME_IMAGE_CACHE (f);
13464394
PE
8837 int class;
8838 ptrdiff_t i;
4ef0d4d0
KS
8839 struct image *img;
8840
8841 /* Find the image containing PIXMAP. */
8842 for (i = 0; i < c->used; ++i)
8843 if (c->images[i]->pixmap == pixmap)
8844 break;
8845
8846 /* Should someone in between have cleared the image cache, for
8847 instance, give up. */
8848 if (i == c->used)
8849 return;
8850
8851 /* Kill the GS process. We should have found PIXMAP in the image
8852 cache and its image should contain a process object. */
8853 img = c->images[i];
a54e2c05 8854 eassert (PROCESSP (img->lisp_data));
b50691aa
CY
8855 Fkill_process (img->lisp_data, Qnil);
8856 img->lisp_data = Qnil;
4ef0d4d0
KS
8857
8858#if defined (HAVE_X_WINDOWS)
8859
8860 /* On displays with a mutable colormap, figure out the colors
8861 allocated for the image by looking at the pixels of an XImage for
8862 img->pixmap. */
8863 class = FRAME_X_VISUAL (f)->class;
8864 if (class != StaticColor && class != StaticGray && class != TrueColor)
8865 {
8866 XImagePtr ximg;
8867
4d7e6e51 8868 block_input ();
4ef0d4d0
KS
8869
8870 /* Try to get an XImage for img->pixmep. */
8871 ximg = XGetImage (FRAME_X_DISPLAY (f), img->pixmap,
8872 0, 0, img->width, img->height, ~0, ZPixmap);
8873 if (ximg)
8874 {
8875 int x, y;
8876
8877 /* Initialize the color table. */
8878 init_color_table ();
8879
8880 /* For each pixel of the image, look its color up in the
8881 color table. After having done so, the color table will
8882 contain an entry for each color used by the image. */
8883 for (y = 0; y < img->height; ++y)
8884 for (x = 0; x < img->width; ++x)
8885 {
8886 unsigned long pixel = XGetPixel (ximg, x, y);
8887 lookup_pixel_color (f, pixel);
8888 }
8889
8890 /* Record colors in the image. Free color table and XImage. */
8891#ifdef COLOR_TABLE_SUPPORT
8892 img->colors = colors_in_color_table (&img->ncolors);
8893 free_color_table ();
8894#endif
8895 XDestroyImage (ximg);
8896
8897#if 0 /* This doesn't seem to be the case. If we free the colors
8898 here, we get a BadAccess later in x_clear_image when
8899 freeing the colors. */
8900 /* We have allocated colors once, but Ghostscript has also
8901 allocated colors on behalf of us. So, to get the
8902 reference counts right, free them once. */
8903 if (img->ncolors)
8904 x_free_colors (f, img->colors, img->ncolors);
8905#endif
8906 }
8907 else
8908 image_error ("Cannot get X image of `%s'; colors will not be freed",
8909 img->spec, Qnil);
8910
4d7e6e51 8911 unblock_input ();
4ef0d4d0
KS
8912 }
8913#endif /* HAVE_X_WINDOWS */
8914
8915 /* Now that we have the pixmap, compute mask and transform the
8916 image if requested. */
4d7e6e51 8917 block_input ();
4ef0d4d0 8918 postprocess_image (f, img);
4d7e6e51 8919 unblock_input ();
4ef0d4d0
KS
8920}
8921
8922#endif /* HAVE_GHOSTSCRIPT */
8923
8924\f
8925/***********************************************************************
8926 Tests
8927 ***********************************************************************/
8928
e509cfa6 8929#ifdef GLYPH_DEBUG
4ef0d4d0 8930
a7ca3326 8931DEFUN ("imagep", Fimagep, Simagep, 1, 1, 0,
4ef0d4d0 8932 doc: /* Value is non-nil if SPEC is a valid image specification. */)
5842a27b 8933 (Lisp_Object spec)
4ef0d4d0
KS
8934{
8935 return valid_image_p (spec) ? Qt : Qnil;
8936}
8937
8938
a7ca3326 8939DEFUN ("lookup-image", Flookup_image, Slookup_image, 1, 1, 0, "")
5842a27b 8940 (Lisp_Object spec)
4ef0d4d0 8941{
13464394 8942 ptrdiff_t id = -1;
4ef0d4d0
KS
8943
8944 if (valid_image_p (spec))
8945 id = lookup_image (SELECTED_FRAME (), spec);
8946
8947 debug_print (spec);
8948 return make_number (id);
8949}
8950
e509cfa6 8951#endif /* GLYPH_DEBUG */
4ef0d4d0
KS
8952
8953
8954/***********************************************************************
8955 Initialization
8956 ***********************************************************************/
8957
d07ff9db 8958DEFUN ("init-image-library", Finit_image_library, Sinit_image_library, 1, 1, 0,
0855eb52
JB
8959 doc: /* Initialize image library implementing image type TYPE.
8960Return non-nil if TYPE is a supported image type.
8961
d07ff9db
CY
8962If image libraries are loaded dynamically (currently only the case on
8963MS-Windows), load the library for TYPE if it is not yet loaded, using
8964the library file(s) specified by `dynamic-library-alist'. */)
8965 (Lisp_Object type)
0855eb52 8966{
d07ff9db 8967 return lookup_image_type (type) ? Qt : Qnil;
bb4d86b4 8968}
0855eb52 8969
bb4d86b4 8970/* Look up image type TYPE, and return a pointer to its image_type
d07ff9db 8971 structure. Return 0 if TYPE is not a known image type. */
bb4d86b4
CY
8972
8973static struct image_type *
d07ff9db 8974lookup_image_type (Lisp_Object type)
bb4d86b4 8975{
2f142cc5 8976 /* Types pbm and xbm are built-in and always available. */
bb4d86b4 8977 if (EQ (type, Qpbm))
d07ff9db 8978 return define_image_type (&pbm_type);
bb4d86b4
CY
8979
8980 if (EQ (type, Qxbm))
d07ff9db 8981 return define_image_type (&xbm_type);
2f142cc5 8982
9e2a2647 8983#if defined (HAVE_XPM) || defined (HAVE_NS)
0855eb52 8984 if (EQ (type, Qxpm))
d07ff9db 8985 return define_image_type (&xpm_type);
0855eb52
JB
8986#endif
8987
9e2a2647 8988#if defined (HAVE_JPEG) || defined (HAVE_NS)
0855eb52 8989 if (EQ (type, Qjpeg))
d07ff9db 8990 return define_image_type (&jpeg_type);
0855eb52
JB
8991#endif
8992
9e2a2647 8993#if defined (HAVE_TIFF) || defined (HAVE_NS)
0855eb52 8994 if (EQ (type, Qtiff))
d07ff9db 8995 return define_image_type (&tiff_type);
0855eb52
JB
8996#endif
8997
9e2a2647 8998#if defined (HAVE_GIF) || defined (HAVE_NS)
0855eb52 8999 if (EQ (type, Qgif))
d07ff9db 9000 return define_image_type (&gif_type);
0855eb52
JB
9001#endif
9002
9e2a2647 9003#if defined (HAVE_PNG) || defined (HAVE_NS)
0855eb52 9004 if (EQ (type, Qpng))
d07ff9db 9005 return define_image_type (&png_type);
0855eb52
JB
9006#endif
9007
4ab27a43
GM
9008#if defined (HAVE_RSVG)
9009 if (EQ (type, Qsvg))
d07ff9db 9010 return define_image_type (&svg_type);
4ab27a43 9011#endif
c21e6151 9012
3de25479 9013#if defined (HAVE_IMAGEMAGICK)
7574650a 9014 if (EQ (type, Qimagemagick))
d07ff9db 9015 return define_image_type (&imagemagick_type);
3de25479
JV
9016#endif
9017
0855eb52
JB
9018#ifdef HAVE_GHOSTSCRIPT
9019 if (EQ (type, Qpostscript))
d07ff9db 9020 return define_image_type (&gs_type);
0855eb52
JB
9021#endif
9022
bb4d86b4 9023 return NULL;
0855eb52
JB
9024}
9025
aa15c6bb
JB
9026/* Reset image_types before dumping.
9027 Called from Fdump_emacs. */
9028
9029void
9030reset_image_types (void)
9031{
9032 while (image_types)
9033 {
9034 struct image_type *next = image_types->next;
9035 xfree (image_types);
9036 image_types = next;
9037 }
0855eb52
JB
9038}
9039
4ef0d4d0 9040void
d3da34e0 9041syms_of_image (void)
4ef0d4d0 9042{
aa15c6bb 9043 /* Initialize this only once; it will be reset before dumping. */
6e6fc3fd
RS
9044 image_types = NULL;
9045
91af3942 9046 /* Must be defined now because we're going to update it below, while
0855eb52 9047 defining the supported image types. */
29208e82 9048 DEFVAR_LISP ("image-types", Vimage_types,
0855eb52 9049 doc: /* List of potentially supported image types.
bbe6f2aa 9050Each element of the list is a symbol for an image type, like 'jpeg or 'png.
0855eb52
JB
9051To check whether it is really supported, use `image-type-available-p'. */);
9052 Vimage_types = Qnil;
9053
29208e82 9054 DEFVAR_LISP ("max-image-size", Vmax_image_size,
7df4765a
KS
9055 doc: /* Maximum size of images.
9056Emacs will not load an image into memory if its pixel width or
9057pixel height exceeds this limit.
9058
9059If the value is an integer, it directly specifies the maximum
9060image height and width, measured in pixels. If it is a floating
9061point number, it specifies the maximum image height and width
9062as a ratio to the frame height and width. If the value is
9063non-numeric, there is no explicit limit on the size of images. */);
f1f25b99
CY
9064 Vmax_image_size = make_float (MAX_IMAGE_SIZE);
9065
1100a63c
CY
9066 DEFSYM (Qcount, "count");
9067 DEFSYM (Qextension_data, "extension-data");
9068 DEFSYM (Qdelay, "delay");
9069
9070 DEFSYM (QCascent, ":ascent");
9071 DEFSYM (QCmargin, ":margin");
9072 DEFSYM (QCrelief, ":relief");
9073 DEFSYM (QCconversion, ":conversion");
9074 DEFSYM (QCcolor_symbols, ":color-symbols");
9075 DEFSYM (QCheuristic_mask, ":heuristic-mask");
9076 DEFSYM (QCindex, ":index");
9077 DEFSYM (QCgeometry, ":geometry");
9078 DEFSYM (QCcrop, ":crop");
9079 DEFSYM (QCrotation, ":rotation");
9080 DEFSYM (QCmatrix, ":matrix");
9081 DEFSYM (QCcolor_adjustment, ":color-adjustment");
9082 DEFSYM (QCmask, ":mask");
9083
9084 DEFSYM (Qlaplace, "laplace");
9085 DEFSYM (Qemboss, "emboss");
9086 DEFSYM (Qedge_detection, "edge-detection");
9087 DEFSYM (Qheuristic, "heuristic");
9088
9089 DEFSYM (Qpostscript, "postscript");
f3f9606c
LMI
9090 DEFSYM (QCmax_width, ":max-width");
9091 DEFSYM (QCmax_height, ":max-height");
4ef0d4d0 9092#ifdef HAVE_GHOSTSCRIPT
5fc9fdeb 9093 ADD_IMAGE_TYPE (Qpostscript);
1100a63c
CY
9094 DEFSYM (QCloader, ":loader");
9095 DEFSYM (QCbounding_box, ":bounding-box");
9096 DEFSYM (QCpt_width, ":pt-width");
9097 DEFSYM (QCpt_height, ":pt-height");
4ef0d4d0
KS
9098#endif /* HAVE_GHOSTSCRIPT */
9099
5be1c984 9100#ifdef HAVE_NTGUI
1100a63c 9101 DEFSYM (Qlibpng_version, "libpng-version");
0514b4be 9102 Fset (Qlibpng_version,
5be1c984 9103#if HAVE_PNG
0514b4be 9104 make_number (PNG_LIBPNG_VER)
5be1c984 9105#else
0514b4be 9106 make_number (-1)
5be1c984 9107#endif
0514b4be 9108 );
5be1c984
EZ
9109#endif
9110
bb4d86b4
CY
9111 DEFSYM (Qpbm, "pbm");
9112 ADD_IMAGE_TYPE (Qpbm);
9113
9114 DEFSYM (Qxbm, "xbm");
9115 ADD_IMAGE_TYPE (Qxbm);
9116
9e2a2647 9117#if defined (HAVE_XPM) || defined (HAVE_NS)
1100a63c 9118 DEFSYM (Qxpm, "xpm");
5fc9fdeb 9119 ADD_IMAGE_TYPE (Qxpm);
4ef0d4d0
KS
9120#endif
9121
9e2a2647 9122#if defined (HAVE_JPEG) || defined (HAVE_NS)
1100a63c 9123 DEFSYM (Qjpeg, "jpeg");
5fc9fdeb 9124 ADD_IMAGE_TYPE (Qjpeg);
4ef0d4d0
KS
9125#endif
9126
9e2a2647 9127#if defined (HAVE_TIFF) || defined (HAVE_NS)
1100a63c 9128 DEFSYM (Qtiff, "tiff");
5fc9fdeb 9129 ADD_IMAGE_TYPE (Qtiff);
4ef0d4d0
KS
9130#endif
9131
9e2a2647 9132#if defined (HAVE_GIF) || defined (HAVE_NS)
1100a63c 9133 DEFSYM (Qgif, "gif");
5fc9fdeb 9134 ADD_IMAGE_TYPE (Qgif);
4ef0d4d0
KS
9135#endif
9136
9e2a2647 9137#if defined (HAVE_PNG) || defined (HAVE_NS)
1100a63c 9138 DEFSYM (Qpng, "png");
5fc9fdeb 9139 ADD_IMAGE_TYPE (Qpng);
4ef0d4d0
KS
9140#endif
9141
3de25479 9142#if defined (HAVE_IMAGEMAGICK)
1100a63c 9143 DEFSYM (Qimagemagick, "imagemagick");
3de25479
JV
9144 ADD_IMAGE_TYPE (Qimagemagick);
9145#endif
7574650a 9146
4ab27a43 9147#if defined (HAVE_RSVG)
1100a63c 9148 DEFSYM (Qsvg, "svg");
5fc9fdeb
JR
9149 ADD_IMAGE_TYPE (Qsvg);
9150#ifdef HAVE_NTGUI
df23bf08 9151 /* Other libraries used directly by svg code. */
1100a63c
CY
9152 DEFSYM (Qgdk_pixbuf, "gdk-pixbuf");
9153 DEFSYM (Qglib, "glib");
9154 DEFSYM (Qgobject, "gobject");
5fc9fdeb
JR
9155#endif /* HAVE_NTGUI */
9156#endif /* HAVE_RSVG */
4ab27a43 9157
0855eb52 9158 defsubr (&Sinit_image_library);
7574650a 9159#ifdef HAVE_IMAGEMAGICK
3de25479 9160 defsubr (&Simagemagick_types);
7574650a 9161#endif
4ef0d4d0 9162 defsubr (&Sclear_image_cache);
110683ad 9163 defsubr (&Simage_flush);
4ef0d4d0
KS
9164 defsubr (&Simage_size);
9165 defsubr (&Simage_mask_p);
1546c559 9166 defsubr (&Simage_metadata);
4ef0d4d0 9167
e509cfa6 9168#ifdef GLYPH_DEBUG
4ef0d4d0
KS
9169 defsubr (&Simagep);
9170 defsubr (&Slookup_image);
9171#endif
9172
29208e82 9173 DEFVAR_BOOL ("cross-disabled-images", cross_disabled_images,
4ef0d4d0 9174 doc: /* Non-nil means always draw a cross over disabled images.
3046a84b 9175Disabled images are those having a `:conversion disabled' property.
4ef0d4d0
KS
9176A cross is always drawn on black & white displays. */);
9177 cross_disabled_images = 0;
9178
29208e82 9179 DEFVAR_LISP ("x-bitmap-file-path", Vx_bitmap_file_path,
4ef0d4d0
KS
9180 doc: /* List of directories to search for window system bitmap files. */);
9181 Vx_bitmap_file_path = decode_env_path ((char *) 0, PATH_BITMAPS);
9182
29208e82 9183 DEFVAR_LISP ("image-cache-eviction-delay", Vimage_cache_eviction_delay,
98fe5161
CY
9184 doc: /* Maximum time after which images are removed from the cache.
9185When an image has not been displayed this many seconds, Emacs
9186automatically removes it from the image cache. If the cache contains
9187a large number of images, the actual eviction time may be shorter.
9188The value can also be nil, meaning the cache is never cleared.
9189
9190The function `clear-image-cache' disregards this variable. */);
9191 Vimage_cache_eviction_delay = make_number (300);
7574650a 9192#ifdef HAVE_IMAGEMAGICK
af008560
GM
9193 DEFVAR_INT ("imagemagick-render-type", imagemagick_render_type,
9194 doc: /* Integer indicating which ImageMagick rendering method to use.
9195The options are:
9196 0 -- the default method (pixel pushing)
9197 1 -- a newer method ("MagickExportImagePixels") that may perform
9198 better (speed etc) in some cases, but has not been as thoroughly
9199 tested with Emacs as the default method. This method requires
9200 ImageMagick version 6.4.6 (approximately) or later.
9201*/);
9202 /* MagickExportImagePixels is in 6.4.6-9, but not 6.4.4-10. */
9203 imagemagick_render_type = 0;
7574650a 9204#endif
4ef0d4d0 9205
4ef0d4d0 9206}