New unwind-protect flavors to better type-check C callbacks.
[bpt/emacs.git] / src / xfaces.c
1 /* xfaces.c -- "Face" primitives.
2
3 Copyright (C) 1993-1994, 1998-2013 Free Software Foundation, Inc.
4
5 This file is part of GNU Emacs.
6
7 GNU Emacs is free software: you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation, either version 3 of the License, or
10 (at your option) any later version.
11
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
19
20 /* New face implementation by Gerd Moellmann <gerd@gnu.org>. */
21
22 /* Faces.
23
24 When using Emacs with X, the display style of characters can be
25 changed by defining `faces'. Each face can specify the following
26 display attributes:
27
28 1. Font family name.
29
30 2. Font foundry name.
31
32 3. Relative proportionate width, aka character set width or set
33 width (swidth), e.g. `semi-compressed'.
34
35 4. Font height in 1/10pt.
36
37 5. Font weight, e.g. `bold'.
38
39 6. Font slant, e.g. `italic'.
40
41 7. Foreground color.
42
43 8. Background color.
44
45 9. Whether or not characters should be underlined, and in what color.
46
47 10. Whether or not characters should be displayed in inverse video.
48
49 11. A background stipple, a bitmap.
50
51 12. Whether or not characters should be overlined, and in what color.
52
53 13. Whether or not characters should be strike-through, and in what
54 color.
55
56 14. Whether or not a box should be drawn around characters, the box
57 type, and, for simple boxes, in what color.
58
59 15. Font-spec, or nil. This is a special attribute.
60
61 A font-spec is a collection of font attributes (specs).
62
63 When this attribute is specified, the face uses a font matching
64 with the specs as is except for what overwritten by the specs in
65 the fontset (see below). In addition, the other font-related
66 attributes (1st thru 5th) are updated from the spec.
67
68 On the other hand, if one of the other font-related attributes are
69 specified, the corresponding specs in this attribute is set to nil.
70
71 15. A face name or list of face names from which to inherit attributes.
72
73 16. A specified average font width, which is invisible from Lisp,
74 and is used to ensure that a font specified on the command line,
75 for example, can be matched exactly.
76
77 17. A fontset name. This is another special attribute.
78
79 A fontset is a mappings from characters to font-specs, and the
80 specs overwrite the font-spec in the 14th attribute.
81
82
83 Faces are frame-local by nature because Emacs allows to define the
84 same named face (face names are symbols) differently for different
85 frames. Each frame has an alist of face definitions for all named
86 faces. The value of a named face in such an alist is a Lisp vector
87 with the symbol `face' in slot 0, and a slot for each of the face
88 attributes mentioned above.
89
90 There is also a global face alist `Vface_new_frame_defaults'. Face
91 definitions from this list are used to initialize faces of newly
92 created frames.
93
94 A face doesn't have to specify all attributes. Those not specified
95 have a value of `unspecified'. Faces specifying all attributes but
96 the 14th are called `fully-specified'.
97
98
99 Face merging.
100
101 The display style of a given character in the text is determined by
102 combining several faces. This process is called `face merging'.
103 Any aspect of the display style that isn't specified by overlays or
104 text properties is taken from the `default' face. Since it is made
105 sure that the default face is always fully-specified, face merging
106 always results in a fully-specified face.
107
108
109 Face realization.
110
111 After all face attributes for a character have been determined by
112 merging faces of that character, that face is `realized'. The
113 realization process maps face attributes to what is physically
114 available on the system where Emacs runs. The result is a
115 `realized face' in the form of a struct face which is stored in the
116 face cache of the frame on which it was realized.
117
118 Face realization is done in the context of the character to display
119 because different fonts may be used for different characters. In
120 other words, for characters that have different font
121 specifications, different realized faces are needed to display
122 them.
123
124 Font specification is done by fontsets. See the comment in
125 fontset.c for the details. In the current implementation, all ASCII
126 characters share the same font in a fontset.
127
128 Faces are at first realized for ASCII characters, and, at that
129 time, assigned a specific realized fontset. Hereafter, we call
130 such a face as `ASCII face'. When a face for a multibyte character
131 is realized, it inherits (thus shares) a fontset of an ASCII face
132 that has the same attributes other than font-related ones.
133
134 Thus, all realized faces have a realized fontset.
135
136
137 Unibyte text.
138
139 Unibyte text (i.e. raw 8-bit characters) is displayed with the same
140 font as ASCII characters. That is because it is expected that
141 unibyte text users specify a font that is suitable both for ASCII
142 and raw 8-bit characters.
143
144
145 Font selection.
146
147 Font selection tries to find the best available matching font for a
148 given (character, face) combination.
149
150 If the face specifies a fontset name, that fontset determines a
151 pattern for fonts of the given character. If the face specifies a
152 font name or the other font-related attributes, a fontset is
153 realized from the default fontset. In that case, that
154 specification determines a pattern for ASCII characters and the
155 default fontset determines a pattern for multibyte characters.
156
157 Available fonts on the system on which Emacs runs are then matched
158 against the font pattern. The result of font selection is the best
159 match for the given face attributes in this font list.
160
161 Font selection can be influenced by the user.
162
163 1. The user can specify the relative importance he gives the face
164 attributes width, height, weight, and slant by setting
165 face-font-selection-order (faces.el) to a list of face attribute
166 names. The default is '(:width :height :weight :slant), and means
167 that font selection first tries to find a good match for the font
168 width specified by a face, then---within fonts with that
169 width---tries to find a best match for the specified font height,
170 etc.
171
172 2. Setting face-font-family-alternatives allows the user to
173 specify alternative font families to try if a family specified by a
174 face doesn't exist.
175
176 3. Setting face-font-registry-alternatives allows the user to
177 specify all alternative font registries to try for a face
178 specifying a registry.
179
180 4. Setting face-ignored-fonts allows the user to ignore specific
181 fonts.
182
183
184 Character composition.
185
186 Usually, the realization process is already finished when Emacs
187 actually reflects the desired glyph matrix on the screen. However,
188 on displaying a composition (sequence of characters to be composed
189 on the screen), a suitable font for the components of the
190 composition is selected and realized while drawing them on the
191 screen, i.e. the realization process is delayed but in principle
192 the same.
193
194
195 Initialization of basic faces.
196
197 The faces `default', `modeline' are considered `basic faces'.
198 When redisplay happens the first time for a newly created frame,
199 basic faces are realized for CHARSET_ASCII. Frame parameters are
200 used to fill in unspecified attributes of the default face. */
201
202 #include <config.h>
203 #include "sysstdio.h"
204 #include <sys/types.h>
205 #include <sys/stat.h>
206
207 #include "lisp.h"
208 #include "character.h"
209 #include "charset.h"
210 #include "keyboard.h"
211 #include "frame.h"
212 #include "termhooks.h"
213
214 #ifdef HAVE_X_WINDOWS
215 #include "xterm.h"
216 #ifdef USE_MOTIF
217 #include <Xm/Xm.h>
218 #include <Xm/XmStrDefs.h>
219 #endif /* USE_MOTIF */
220 #endif /* HAVE_X_WINDOWS */
221
222 #ifdef MSDOS
223 #include "dosfns.h"
224 #endif
225
226 #ifdef HAVE_WINDOW_SYSTEM
227 #include TERM_HEADER
228 #include "fontset.h"
229 #ifdef HAVE_NTGUI
230 #undef FRAME_X_DISPLAY_INFO
231 #define FRAME_X_DISPLAY_INFO FRAME_W32_DISPLAY_INFO
232 #define x_display_info w32_display_info
233 #define GCGraphicsExposures 0
234 #endif /* HAVE_NTGUI */
235
236 #ifdef HAVE_NS
237 #undef FRAME_X_DISPLAY_INFO
238 #define FRAME_X_DISPLAY_INFO FRAME_NS_DISPLAY_INFO
239 #define x_display_info ns_display_info
240 #define GCGraphicsExposures 0
241 #endif /* HAVE_NS */
242 #endif /* HAVE_WINDOW_SYSTEM */
243
244 #include "buffer.h"
245 #include "dispextern.h"
246 #include "blockinput.h"
247 #include "window.h"
248 #include "intervals.h"
249 #include "termchar.h"
250
251 #include "font.h"
252
253 #ifdef HAVE_X_WINDOWS
254
255 /* Compensate for a bug in Xos.h on some systems, on which it requires
256 time.h. On some such systems, Xos.h tries to redefine struct
257 timeval and struct timezone if USG is #defined while it is
258 #included. */
259
260 #ifdef XOS_NEEDS_TIME_H
261 #include <time.h>
262 #undef USG
263 #include <X11/Xos.h>
264 #define USG
265 #define __TIMEVAL__
266 #if defined USG || defined __TIMEVAL__ /* Don't warn about unused macros. */
267 #endif
268 #else /* not XOS_NEEDS_TIME_H */
269 #include <X11/Xos.h>
270 #endif /* not XOS_NEEDS_TIME_H */
271
272 #endif /* HAVE_X_WINDOWS */
273
274 #include <c-ctype.h>
275
276 /* Number of pt per inch (from the TeXbook). */
277
278 #define PT_PER_INCH 72.27
279
280 /* Non-zero if face attribute ATTR is unspecified. */
281
282 #define UNSPECIFIEDP(ATTR) EQ ((ATTR), Qunspecified)
283
284 /* Non-zero if face attribute ATTR is `ignore-defface'. */
285
286 #define IGNORE_DEFFACE_P(ATTR) EQ ((ATTR), QCignore_defface)
287
288 /* Value is the number of elements of VECTOR. */
289
290 #define DIM(VECTOR) (sizeof (VECTOR) / sizeof *(VECTOR))
291
292 /* Size of hash table of realized faces in face caches (should be a
293 prime number). */
294
295 #define FACE_CACHE_BUCKETS_SIZE 1001
296
297 /* Keyword symbols used for face attribute names. */
298
299 Lisp_Object QCfamily, QCheight, QCweight, QCslant;
300 static Lisp_Object QCunderline;
301 static Lisp_Object QCinverse_video, QCstipple;
302 Lisp_Object QCforeground, QCbackground;
303 Lisp_Object QCwidth;
304 static Lisp_Object QCfont, QCbold, QCitalic;
305 static Lisp_Object QCreverse_video;
306 static Lisp_Object QCoverline, QCstrike_through, QCbox, QCinherit;
307 static Lisp_Object QCfontset;
308
309 /* Symbols used for attribute values. */
310
311 Lisp_Object Qnormal;
312 Lisp_Object Qbold;
313 static Lisp_Object Qline, Qwave;
314 Lisp_Object Qextra_light, Qlight;
315 Lisp_Object Qsemi_light, Qsemi_bold, Qextra_bold, Qultra_bold;
316 Lisp_Object Qoblique;
317 Lisp_Object Qitalic;
318 static Lisp_Object Qreleased_button, Qpressed_button;
319 static Lisp_Object QCstyle, QCcolor, QCline_width;
320 Lisp_Object Qunspecified; /* used in dosfns.c */
321 static Lisp_Object QCignore_defface;
322
323 char unspecified_fg[] = "unspecified-fg", unspecified_bg[] = "unspecified-bg";
324
325 /* The name of the function to call when the background of the frame
326 has changed, frame_set_background_mode. */
327
328 static Lisp_Object Qframe_set_background_mode;
329
330 /* Names of basic faces. */
331
332 Lisp_Object Qdefault, Qtool_bar, Qfringe;
333 static Lisp_Object Qregion;
334 Lisp_Object Qheader_line, Qscroll_bar, Qcursor;
335 static Lisp_Object Qborder, Qmouse, Qmenu;
336 Lisp_Object Qmode_line_inactive;
337 static Lisp_Object Qvertical_border;
338
339 /* The symbol `face-alias'. A symbols having that property is an
340 alias for another face. Value of the property is the name of
341 the aliased face. */
342
343 static Lisp_Object Qface_alias;
344
345 /* Alist of alternative font families. Each element is of the form
346 (FAMILY FAMILY1 FAMILY2 ...). If fonts of FAMILY can't be loaded,
347 try FAMILY1, then FAMILY2, ... */
348
349 Lisp_Object Vface_alternative_font_family_alist;
350
351 /* Alist of alternative font registries. Each element is of the form
352 (REGISTRY REGISTRY1 REGISTRY2...). If fonts of REGISTRY can't be
353 loaded, try REGISTRY1, then REGISTRY2, ... */
354
355 Lisp_Object Vface_alternative_font_registry_alist;
356
357 /* Allowed scalable fonts. A value of nil means don't allow any
358 scalable fonts. A value of t means allow the use of any scalable
359 font. Otherwise, value must be a list of regular expressions. A
360 font may be scaled if its name matches a regular expression in the
361 list. */
362
363 static Lisp_Object Qscalable_fonts_allowed;
364
365 /* The symbols `foreground-color' and `background-color' which can be
366 used as part of a `face' property. This is for compatibility with
367 Emacs 20.2. */
368
369 Lisp_Object Qforeground_color, Qbackground_color;
370
371 /* The symbols `face' and `mouse-face' used as text properties. */
372
373 Lisp_Object Qface;
374
375 /* Property for basic faces which other faces cannot inherit. */
376
377 static Lisp_Object Qface_no_inherit;
378
379 /* Error symbol for wrong_type_argument in load_pixmap. */
380
381 static Lisp_Object Qbitmap_spec_p;
382
383 /* The next ID to assign to Lisp faces. */
384
385 static int next_lface_id;
386
387 /* A vector mapping Lisp face Id's to face names. */
388
389 static Lisp_Object *lface_id_to_name;
390 static ptrdiff_t lface_id_to_name_size;
391
392 /* TTY color-related functions (defined in tty-colors.el). */
393
394 static Lisp_Object Qtty_color_desc, Qtty_color_by_index, Qtty_color_standard_values;
395
396 /* The name of the function used to compute colors on TTYs. */
397
398 static Lisp_Object Qtty_color_alist;
399
400 /* Counter for calls to clear_face_cache. If this counter reaches
401 CLEAR_FONT_TABLE_COUNT, and a frame has more than
402 CLEAR_FONT_TABLE_NFONTS load, unused fonts are freed. */
403
404 static int clear_font_table_count;
405 #define CLEAR_FONT_TABLE_COUNT 100
406 #define CLEAR_FONT_TABLE_NFONTS 10
407
408 /* Non-zero means face attributes have been changed since the last
409 redisplay. Used in redisplay_internal. */
410
411 int face_change_count;
412
413 /* Non-zero means don't display bold text if a face's foreground
414 and background colors are the inverse of the default colors of the
415 display. This is a kluge to suppress `bold black' foreground text
416 which is hard to read on an LCD monitor. */
417
418 static int tty_suppress_bold_inverse_default_colors_p;
419
420 /* A list of the form `((x . y))' used to avoid consing in
421 Finternal_set_lisp_face_attribute. */
422
423 static Lisp_Object Vparam_value_alist;
424
425 /* The total number of colors currently allocated. */
426
427 #ifdef GLYPH_DEBUG
428 static int ncolors_allocated;
429 static int npixmaps_allocated;
430 static int ngcs;
431 #endif
432
433 /* Non-zero means the definition of the `menu' face for new frames has
434 been changed. */
435
436 static int menu_face_changed_default;
437
438 \f
439 /* Function prototypes. */
440
441 struct table_entry;
442 struct named_merge_point;
443
444 static void set_font_frame_param (Lisp_Object, Lisp_Object);
445 static struct face *realize_face (struct face_cache *, Lisp_Object *,
446 int);
447 static struct face *realize_non_ascii_face (struct frame *, Lisp_Object,
448 struct face *);
449 static struct face *realize_x_face (struct face_cache *, Lisp_Object *);
450 static struct face *realize_tty_face (struct face_cache *, Lisp_Object *);
451 static int realize_basic_faces (struct frame *);
452 static int realize_default_face (struct frame *);
453 static void realize_named_face (struct frame *, Lisp_Object, int);
454 static struct face_cache *make_face_cache (struct frame *);
455 static void clear_face_gcs (struct face_cache *);
456 static void free_face_cache (struct face_cache *);
457 static int merge_face_ref (struct frame *, Lisp_Object, Lisp_Object *,
458 int, struct named_merge_point *);
459
460 \f
461 /***********************************************************************
462 Utilities
463 ***********************************************************************/
464
465 #ifdef HAVE_X_WINDOWS
466
467 #ifdef DEBUG_X_COLORS
468
469 /* The following is a poor mans infrastructure for debugging X color
470 allocation problems on displays with PseudoColor-8. Some X servers
471 like 3.3.5 XF86_SVGA with Matrox cards apparently don't implement
472 color reference counts completely so that they don't signal an
473 error when a color is freed whose reference count is already 0.
474 Other X servers do. To help me debug this, the following code
475 implements a simple reference counting schema of its own, for a
476 single display/screen. --gerd. */
477
478 /* Reference counts for pixel colors. */
479
480 int color_count[256];
481
482 /* Register color PIXEL as allocated. */
483
484 void
485 register_color (unsigned long pixel)
486 {
487 eassert (pixel < 256);
488 ++color_count[pixel];
489 }
490
491
492 /* Register color PIXEL as deallocated. */
493
494 void
495 unregister_color (unsigned long pixel)
496 {
497 eassert (pixel < 256);
498 if (color_count[pixel] > 0)
499 --color_count[pixel];
500 else
501 emacs_abort ();
502 }
503
504
505 /* Register N colors from PIXELS as deallocated. */
506
507 void
508 unregister_colors (unsigned long *pixels, int n)
509 {
510 int i;
511 for (i = 0; i < n; ++i)
512 unregister_color (pixels[i]);
513 }
514
515
516 DEFUN ("dump-colors", Fdump_colors, Sdump_colors, 0, 0, 0,
517 doc: /* Dump currently allocated colors to stderr. */)
518 (void)
519 {
520 int i, n;
521
522 fputc ('\n', stderr);
523
524 for (i = n = 0; i < sizeof color_count / sizeof color_count[0]; ++i)
525 if (color_count[i])
526 {
527 fprintf (stderr, "%3d: %5d", i, color_count[i]);
528 ++n;
529 if (n % 5 == 0)
530 fputc ('\n', stderr);
531 else
532 fputc ('\t', stderr);
533 }
534
535 if (n % 5 != 0)
536 fputc ('\n', stderr);
537 return Qnil;
538 }
539
540 #endif /* DEBUG_X_COLORS */
541
542
543 /* Free colors used on frame F. PIXELS is an array of NPIXELS pixel
544 color values. Interrupt input must be blocked when this function
545 is called. */
546
547 void
548 x_free_colors (struct frame *f, long unsigned int *pixels, int npixels)
549 {
550 int class = FRAME_X_DISPLAY_INFO (f)->visual->class;
551
552 /* If display has an immutable color map, freeing colors is not
553 necessary and some servers don't allow it. So don't do it. */
554 if (class != StaticColor && class != StaticGray && class != TrueColor)
555 {
556 #ifdef DEBUG_X_COLORS
557 unregister_colors (pixels, npixels);
558 #endif
559 XFreeColors (FRAME_X_DISPLAY (f), FRAME_X_COLORMAP (f),
560 pixels, npixels, 0);
561 }
562 }
563
564
565 #ifdef USE_X_TOOLKIT
566
567 /* Free colors used on frame F. PIXELS is an array of NPIXELS pixel
568 color values. Interrupt input must be blocked when this function
569 is called. */
570
571 void
572 x_free_dpy_colors (Display *dpy, Screen *screen, Colormap cmap,
573 long unsigned int *pixels, int npixels)
574 {
575 struct x_display_info *dpyinfo = x_display_info_for_display (dpy);
576 int class = dpyinfo->visual->class;
577
578 /* If display has an immutable color map, freeing colors is not
579 necessary and some servers don't allow it. So don't do it. */
580 if (class != StaticColor && class != StaticGray && class != TrueColor)
581 {
582 #ifdef DEBUG_X_COLORS
583 unregister_colors (pixels, npixels);
584 #endif
585 XFreeColors (dpy, cmap, pixels, npixels, 0);
586 }
587 }
588 #endif /* USE_X_TOOLKIT */
589
590 /* Create and return a GC for use on frame F. GC values and mask
591 are given by XGCV and MASK. */
592
593 static GC
594 x_create_gc (struct frame *f, long unsigned int mask, XGCValues *xgcv)
595 {
596 GC gc;
597 block_input ();
598 gc = XCreateGC (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f), mask, xgcv);
599 unblock_input ();
600 IF_DEBUG (++ngcs);
601 return gc;
602 }
603
604
605 /* Free GC which was used on frame F. */
606
607 static void
608 x_free_gc (struct frame *f, GC gc)
609 {
610 eassert (input_blocked_p ());
611 IF_DEBUG (eassert (--ngcs >= 0));
612 XFreeGC (FRAME_X_DISPLAY (f), gc);
613 }
614
615 #endif /* HAVE_X_WINDOWS */
616
617 #ifdef HAVE_NTGUI
618 /* W32 emulation of GCs */
619
620 static GC
621 x_create_gc (struct frame *f, unsigned long mask, XGCValues *xgcv)
622 {
623 GC gc;
624 block_input ();
625 gc = XCreateGC (NULL, FRAME_W32_WINDOW (f), mask, xgcv);
626 unblock_input ();
627 IF_DEBUG (++ngcs);
628 return gc;
629 }
630
631
632 /* Free GC which was used on frame F. */
633
634 static void
635 x_free_gc (struct frame *f, GC gc)
636 {
637 IF_DEBUG (eassert (--ngcs >= 0));
638 xfree (gc);
639 }
640
641 #endif /* HAVE_NTGUI */
642
643 #ifdef HAVE_NS
644 /* NS emulation of GCs */
645
646 static GC
647 x_create_gc (struct frame *f,
648 unsigned long mask,
649 XGCValues *xgcv)
650 {
651 GC gc = xmalloc (sizeof *gc);
652 *gc = *xgcv;
653 return gc;
654 }
655
656 static void
657 x_free_gc (struct frame *f, GC gc)
658 {
659 xfree (gc);
660 }
661 #endif /* HAVE_NS */
662
663 /***********************************************************************
664 Frames and faces
665 ***********************************************************************/
666
667 /* Initialize face cache and basic faces for frame F. */
668
669 void
670 init_frame_faces (struct frame *f)
671 {
672 /* Make a face cache, if F doesn't have one. */
673 if (FRAME_FACE_CACHE (f) == NULL)
674 FRAME_FACE_CACHE (f) = make_face_cache (f);
675
676 #ifdef HAVE_WINDOW_SYSTEM
677 /* Make the image cache. */
678 if (FRAME_WINDOW_P (f))
679 {
680 /* We initialize the image cache when creating the first frame
681 on a terminal, and not during terminal creation. This way,
682 `x-open-connection' on a tty won't create an image cache. */
683 if (FRAME_IMAGE_CACHE (f) == NULL)
684 FRAME_IMAGE_CACHE (f) = make_image_cache ();
685 ++FRAME_IMAGE_CACHE (f)->refcount;
686 }
687 #endif /* HAVE_WINDOW_SYSTEM */
688
689 /* Realize basic faces. Must have enough information in frame
690 parameters to realize basic faces at this point. */
691 #ifdef HAVE_X_WINDOWS
692 if (!FRAME_X_P (f) || FRAME_X_WINDOW (f))
693 #endif
694 #ifdef HAVE_NTGUI
695 if (!FRAME_WINDOW_P (f) || FRAME_W32_WINDOW (f))
696 #endif
697 #ifdef HAVE_NS
698 if (!FRAME_NS_P (f) || FRAME_NS_WINDOW (f))
699 #endif
700 if (!realize_basic_faces (f))
701 emacs_abort ();
702 }
703
704
705 /* Free face cache of frame F. Called from delete_frame. */
706
707 void
708 free_frame_faces (struct frame *f)
709 {
710 struct face_cache *face_cache = FRAME_FACE_CACHE (f);
711
712 if (face_cache)
713 {
714 free_face_cache (face_cache);
715 FRAME_FACE_CACHE (f) = NULL;
716 }
717
718 #ifdef HAVE_WINDOW_SYSTEM
719 if (FRAME_WINDOW_P (f))
720 {
721 struct image_cache *image_cache = FRAME_IMAGE_CACHE (f);
722 if (image_cache)
723 {
724 --image_cache->refcount;
725 if (image_cache->refcount == 0)
726 free_image_cache (f);
727 }
728 }
729 #endif /* HAVE_WINDOW_SYSTEM */
730 }
731
732
733 /* Clear face caches, and recompute basic faces for frame F. Call
734 this after changing frame parameters on which those faces depend,
735 or when realized faces have been freed due to changing attributes
736 of named faces. */
737
738 void
739 recompute_basic_faces (struct frame *f)
740 {
741 if (FRAME_FACE_CACHE (f))
742 {
743 clear_face_cache (0);
744 if (!realize_basic_faces (f))
745 emacs_abort ();
746 }
747 }
748
749
750 /* Clear the face caches of all frames. CLEAR_FONTS_P non-zero means
751 try to free unused fonts, too. */
752
753 void
754 clear_face_cache (int clear_fonts_p)
755 {
756 #ifdef HAVE_WINDOW_SYSTEM
757 Lisp_Object tail, frame;
758
759 if (clear_fonts_p
760 || ++clear_font_table_count == CLEAR_FONT_TABLE_COUNT)
761 {
762 #if 0
763 /* Not yet implemented. */
764 clear_font_cache (frame);
765 #endif
766
767 /* From time to time see if we can unload some fonts. This also
768 frees all realized faces on all frames. Fonts needed by
769 faces will be loaded again when faces are realized again. */
770 clear_font_table_count = 0;
771
772 FOR_EACH_FRAME (tail, frame)
773 {
774 struct frame *f = XFRAME (frame);
775 if (FRAME_WINDOW_P (f)
776 && FRAME_X_DISPLAY_INFO (f)->n_fonts > CLEAR_FONT_TABLE_NFONTS)
777 free_all_realized_faces (frame);
778 }
779 }
780 else
781 {
782 /* Clear GCs of realized faces. */
783 FOR_EACH_FRAME (tail, frame)
784 {
785 struct frame *f = XFRAME (frame);
786 if (FRAME_WINDOW_P (f))
787 clear_face_gcs (FRAME_FACE_CACHE (f));
788 }
789 clear_image_caches (Qnil);
790 }
791 #endif /* HAVE_WINDOW_SYSTEM */
792 }
793
794
795 DEFUN ("clear-face-cache", Fclear_face_cache, Sclear_face_cache, 0, 1, 0,
796 doc: /* Clear face caches on all frames.
797 Optional THOROUGHLY non-nil means try to free unused fonts, too. */)
798 (Lisp_Object thoroughly)
799 {
800 clear_face_cache (!NILP (thoroughly));
801 ++face_change_count;
802 ++windows_or_buffers_changed;
803 return Qnil;
804 }
805
806 \f
807 /***********************************************************************
808 X Pixmaps
809 ***********************************************************************/
810
811 #ifdef HAVE_WINDOW_SYSTEM
812
813 DEFUN ("bitmap-spec-p", Fbitmap_spec_p, Sbitmap_spec_p, 1, 1, 0,
814 doc: /* Value is non-nil if OBJECT is a valid bitmap specification.
815 A bitmap specification is either a string, a file name, or a list
816 \(WIDTH HEIGHT DATA) where WIDTH is the pixel width of the bitmap,
817 HEIGHT is its height, and DATA is a string containing the bits of
818 the pixmap. Bits are stored row by row, each row occupies
819 \(WIDTH + 7)/8 bytes. */)
820 (Lisp_Object object)
821 {
822 int pixmap_p = 0;
823
824 if (STRINGP (object))
825 /* If OBJECT is a string, it's a file name. */
826 pixmap_p = 1;
827 else if (CONSP (object))
828 {
829 /* Otherwise OBJECT must be (WIDTH HEIGHT DATA), WIDTH and
830 HEIGHT must be ints > 0, and DATA must be string large
831 enough to hold a bitmap of the specified size. */
832 Lisp_Object width, height, data;
833
834 height = width = data = Qnil;
835
836 if (CONSP (object))
837 {
838 width = XCAR (object);
839 object = XCDR (object);
840 if (CONSP (object))
841 {
842 height = XCAR (object);
843 object = XCDR (object);
844 if (CONSP (object))
845 data = XCAR (object);
846 }
847 }
848
849 if (STRINGP (data)
850 && RANGED_INTEGERP (1, width, INT_MAX)
851 && RANGED_INTEGERP (1, height, INT_MAX))
852 {
853 int bytes_per_row = ((XINT (width) + BITS_PER_CHAR - 1)
854 / BITS_PER_CHAR);
855 if (XINT (height) <= SBYTES (data) / bytes_per_row)
856 pixmap_p = 1;
857 }
858 }
859
860 return pixmap_p ? Qt : Qnil;
861 }
862
863
864 /* Load a bitmap according to NAME (which is either a file name or a
865 pixmap spec) for use on frame F. Value is the bitmap_id (see
866 xfns.c). If NAME is nil, return with a bitmap id of zero. If
867 bitmap cannot be loaded, display a message saying so, and return
868 zero. Store the bitmap width in *W_PTR and its height in *H_PTR,
869 if these pointers are not null. */
870
871 static ptrdiff_t
872 load_pixmap (FRAME_PTR f, Lisp_Object name, unsigned int *w_ptr,
873 unsigned int *h_ptr)
874 {
875 ptrdiff_t bitmap_id;
876
877 if (NILP (name))
878 return 0;
879
880 CHECK_TYPE (!NILP (Fbitmap_spec_p (name)), Qbitmap_spec_p, name);
881
882 block_input ();
883 if (CONSP (name))
884 {
885 /* Decode a bitmap spec into a bitmap. */
886
887 int h, w;
888 Lisp_Object bits;
889
890 w = XINT (Fcar (name));
891 h = XINT (Fcar (Fcdr (name)));
892 bits = Fcar (Fcdr (Fcdr (name)));
893
894 bitmap_id = x_create_bitmap_from_data (f, SSDATA (bits),
895 w, h);
896 }
897 else
898 {
899 /* It must be a string -- a file name. */
900 bitmap_id = x_create_bitmap_from_file (f, name);
901 }
902 unblock_input ();
903
904 if (bitmap_id < 0)
905 {
906 add_to_log ("Invalid or undefined bitmap `%s'", name, Qnil);
907 bitmap_id = 0;
908
909 if (w_ptr)
910 *w_ptr = 0;
911 if (h_ptr)
912 *h_ptr = 0;
913 }
914 else
915 {
916 #ifdef GLYPH_DEBUG
917 ++npixmaps_allocated;
918 #endif
919 if (w_ptr)
920 *w_ptr = x_bitmap_width (f, bitmap_id);
921
922 if (h_ptr)
923 *h_ptr = x_bitmap_height (f, bitmap_id);
924 }
925
926 return bitmap_id;
927 }
928
929 #endif /* HAVE_WINDOW_SYSTEM */
930
931
932 \f
933 /***********************************************************************
934 X Colors
935 ***********************************************************************/
936
937 /* Parse RGB_LIST, and fill in the RGB fields of COLOR.
938 RGB_LIST should contain (at least) 3 lisp integers.
939 Return 0 if there's a problem with RGB_LIST, otherwise return 1. */
940
941 static int
942 parse_rgb_list (Lisp_Object rgb_list, XColor *color)
943 {
944 #define PARSE_RGB_LIST_FIELD(field) \
945 if (CONSP (rgb_list) && INTEGERP (XCAR (rgb_list))) \
946 { \
947 color->field = XINT (XCAR (rgb_list)); \
948 rgb_list = XCDR (rgb_list); \
949 } \
950 else \
951 return 0;
952
953 PARSE_RGB_LIST_FIELD (red);
954 PARSE_RGB_LIST_FIELD (green);
955 PARSE_RGB_LIST_FIELD (blue);
956
957 return 1;
958 }
959
960
961 /* Lookup on frame F the color described by the lisp string COLOR.
962 The resulting tty color is returned in TTY_COLOR; if STD_COLOR is
963 non-zero, then the `standard' definition of the same color is
964 returned in it. */
965
966 static bool
967 tty_lookup_color (struct frame *f, Lisp_Object color, XColor *tty_color,
968 XColor *std_color)
969 {
970 Lisp_Object frame, color_desc;
971
972 if (!STRINGP (color) || NILP (Ffboundp (Qtty_color_desc)))
973 return 0;
974
975 XSETFRAME (frame, f);
976
977 color_desc = call2 (Qtty_color_desc, color, frame);
978 if (CONSP (color_desc) && CONSP (XCDR (color_desc)))
979 {
980 Lisp_Object rgb;
981
982 if (! INTEGERP (XCAR (XCDR (color_desc))))
983 return 0;
984
985 tty_color->pixel = XINT (XCAR (XCDR (color_desc)));
986
987 rgb = XCDR (XCDR (color_desc));
988 if (! parse_rgb_list (rgb, tty_color))
989 return 0;
990
991 /* Should we fill in STD_COLOR too? */
992 if (std_color)
993 {
994 /* Default STD_COLOR to the same as TTY_COLOR. */
995 *std_color = *tty_color;
996
997 /* Do a quick check to see if the returned descriptor is
998 actually _exactly_ equal to COLOR, otherwise we have to
999 lookup STD_COLOR separately. If it's impossible to lookup
1000 a standard color, we just give up and use TTY_COLOR. */
1001 if ((!STRINGP (XCAR (color_desc))
1002 || NILP (Fstring_equal (color, XCAR (color_desc))))
1003 && !NILP (Ffboundp (Qtty_color_standard_values)))
1004 {
1005 /* Look up STD_COLOR separately. */
1006 rgb = call1 (Qtty_color_standard_values, color);
1007 if (! parse_rgb_list (rgb, std_color))
1008 return 0;
1009 }
1010 }
1011
1012 return 1;
1013 }
1014 else if (NILP (Fsymbol_value (intern ("tty-defined-color-alist"))))
1015 /* We were called early during startup, and the colors are not
1016 yet set up in tty-defined-color-alist. Don't return a failure
1017 indication, since this produces the annoying "Unable to
1018 load color" messages in the *Messages* buffer. */
1019 return 1;
1020 else
1021 /* tty-color-desc seems to have returned a bad value. */
1022 return 0;
1023 }
1024
1025 /* A version of defined_color for non-X frames. */
1026
1027 static bool
1028 tty_defined_color (struct frame *f, const char *color_name,
1029 XColor *color_def, bool alloc)
1030 {
1031 bool status = 1;
1032
1033 /* Defaults. */
1034 color_def->pixel = FACE_TTY_DEFAULT_COLOR;
1035 color_def->red = 0;
1036 color_def->blue = 0;
1037 color_def->green = 0;
1038
1039 if (*color_name)
1040 status = tty_lookup_color (f, build_string (color_name), color_def, NULL);
1041
1042 if (color_def->pixel == FACE_TTY_DEFAULT_COLOR && *color_name)
1043 {
1044 if (strcmp (color_name, "unspecified-fg") == 0)
1045 color_def->pixel = FACE_TTY_DEFAULT_FG_COLOR;
1046 else if (strcmp (color_name, "unspecified-bg") == 0)
1047 color_def->pixel = FACE_TTY_DEFAULT_BG_COLOR;
1048 }
1049
1050 if (color_def->pixel != FACE_TTY_DEFAULT_COLOR)
1051 status = 1;
1052
1053 return status;
1054 }
1055
1056
1057 /* Decide if color named COLOR_NAME is valid for the display
1058 associated with the frame F; if so, return the rgb values in
1059 COLOR_DEF. If ALLOC, allocate a new colormap cell.
1060
1061 This does the right thing for any type of frame. */
1062
1063 static bool
1064 defined_color (struct frame *f, const char *color_name, XColor *color_def,
1065 bool alloc)
1066 {
1067 if (!FRAME_WINDOW_P (f))
1068 return tty_defined_color (f, color_name, color_def, alloc);
1069 #ifdef HAVE_X_WINDOWS
1070 else if (FRAME_X_P (f))
1071 return x_defined_color (f, color_name, color_def, alloc);
1072 #endif
1073 #ifdef HAVE_NTGUI
1074 else if (FRAME_W32_P (f))
1075 return w32_defined_color (f, color_name, color_def, alloc);
1076 #endif
1077 #ifdef HAVE_NS
1078 else if (FRAME_NS_P (f))
1079 return ns_defined_color (f, color_name, color_def, alloc, 1);
1080 #endif
1081 else
1082 emacs_abort ();
1083 }
1084
1085
1086 /* Given the index IDX of a tty color on frame F, return its name, a
1087 Lisp string. */
1088
1089 Lisp_Object
1090 tty_color_name (struct frame *f, int idx)
1091 {
1092 if (idx >= 0 && !NILP (Ffboundp (Qtty_color_by_index)))
1093 {
1094 Lisp_Object frame;
1095 Lisp_Object coldesc;
1096
1097 XSETFRAME (frame, f);
1098 coldesc = call2 (Qtty_color_by_index, make_number (idx), frame);
1099
1100 if (!NILP (coldesc))
1101 return XCAR (coldesc);
1102 }
1103 #ifdef MSDOS
1104 /* We can have an MSDOG frame under -nw for a short window of
1105 opportunity before internal_terminal_init is called. DTRT. */
1106 if (FRAME_MSDOS_P (f) && !inhibit_window_system)
1107 return msdos_stdcolor_name (idx);
1108 #endif
1109
1110 if (idx == FACE_TTY_DEFAULT_FG_COLOR)
1111 return build_string (unspecified_fg);
1112 if (idx == FACE_TTY_DEFAULT_BG_COLOR)
1113 return build_string (unspecified_bg);
1114
1115 return Qunspecified;
1116 }
1117
1118
1119 /* Return non-zero if COLOR_NAME is a shade of gray (or white or
1120 black) on frame F.
1121
1122 The criterion implemented here is not a terribly sophisticated one. */
1123
1124 static int
1125 face_color_gray_p (struct frame *f, const char *color_name)
1126 {
1127 XColor color;
1128 int gray_p;
1129
1130 if (defined_color (f, color_name, &color, 0))
1131 gray_p = (/* Any color sufficiently close to black counts as gray. */
1132 (color.red < 5000 && color.green < 5000 && color.blue < 5000)
1133 ||
1134 ((eabs (color.red - color.green)
1135 < max (color.red, color.green) / 20)
1136 && (eabs (color.green - color.blue)
1137 < max (color.green, color.blue) / 20)
1138 && (eabs (color.blue - color.red)
1139 < max (color.blue, color.red) / 20)));
1140 else
1141 gray_p = 0;
1142
1143 return gray_p;
1144 }
1145
1146
1147 /* Return non-zero if color COLOR_NAME can be displayed on frame F.
1148 BACKGROUND_P non-zero means the color will be used as background
1149 color. */
1150
1151 static int
1152 face_color_supported_p (struct frame *f, const char *color_name,
1153 int background_p)
1154 {
1155 Lisp_Object frame;
1156 XColor not_used;
1157
1158 XSETFRAME (frame, f);
1159 return
1160 #ifdef HAVE_WINDOW_SYSTEM
1161 FRAME_WINDOW_P (f)
1162 ? (!NILP (Fxw_display_color_p (frame))
1163 || xstrcasecmp (color_name, "black") == 0
1164 || xstrcasecmp (color_name, "white") == 0
1165 || (background_p
1166 && face_color_gray_p (f, color_name))
1167 || (!NILP (Fx_display_grayscale_p (frame))
1168 && face_color_gray_p (f, color_name)))
1169 :
1170 #endif
1171 tty_defined_color (f, color_name, &not_used, 0);
1172 }
1173
1174
1175 DEFUN ("color-gray-p", Fcolor_gray_p, Scolor_gray_p, 1, 2, 0,
1176 doc: /* Return non-nil if COLOR is a shade of gray (or white or black).
1177 FRAME specifies the frame and thus the display for interpreting COLOR.
1178 If FRAME is nil or omitted, use the selected frame. */)
1179 (Lisp_Object color, Lisp_Object frame)
1180 {
1181 CHECK_STRING (color);
1182 return (face_color_gray_p (decode_any_frame (frame), SSDATA (color))
1183 ? Qt : Qnil);
1184 }
1185
1186
1187 DEFUN ("color-supported-p", Fcolor_supported_p,
1188 Scolor_supported_p, 1, 3, 0,
1189 doc: /* Return non-nil if COLOR can be displayed on FRAME.
1190 BACKGROUND-P non-nil means COLOR is used as a background.
1191 Otherwise, this function tells whether it can be used as a foreground.
1192 If FRAME is nil or omitted, use the selected frame.
1193 COLOR must be a valid color name. */)
1194 (Lisp_Object color, Lisp_Object frame, Lisp_Object background_p)
1195 {
1196 CHECK_STRING (color);
1197 return (face_color_supported_p (decode_any_frame (frame),
1198 SSDATA (color), !NILP (background_p))
1199 ? Qt : Qnil);
1200 }
1201
1202
1203 /* Load color with name NAME for use by face FACE on frame F.
1204 TARGET_INDEX must be one of LFACE_FOREGROUND_INDEX,
1205 LFACE_BACKGROUND_INDEX, LFACE_UNDERLINE_INDEX, LFACE_OVERLINE_INDEX,
1206 LFACE_STRIKE_THROUGH_INDEX, or LFACE_BOX_INDEX. Value is the
1207 pixel color. If color cannot be loaded, display a message, and
1208 return the foreground, background or underline color of F, but
1209 record that fact in flags of the face so that we don't try to free
1210 these colors. */
1211
1212 unsigned long
1213 load_color (struct frame *f, struct face *face, Lisp_Object name,
1214 enum lface_attribute_index target_index)
1215 {
1216 XColor color;
1217
1218 eassert (STRINGP (name));
1219 eassert (target_index == LFACE_FOREGROUND_INDEX
1220 || target_index == LFACE_BACKGROUND_INDEX
1221 || target_index == LFACE_UNDERLINE_INDEX
1222 || target_index == LFACE_OVERLINE_INDEX
1223 || target_index == LFACE_STRIKE_THROUGH_INDEX
1224 || target_index == LFACE_BOX_INDEX);
1225
1226 /* if the color map is full, defined_color will return a best match
1227 to the values in an existing cell. */
1228 if (!defined_color (f, SSDATA (name), &color, 1))
1229 {
1230 add_to_log ("Unable to load color \"%s\"", name, Qnil);
1231
1232 switch (target_index)
1233 {
1234 case LFACE_FOREGROUND_INDEX:
1235 face->foreground_defaulted_p = 1;
1236 color.pixel = FRAME_FOREGROUND_PIXEL (f);
1237 break;
1238
1239 case LFACE_BACKGROUND_INDEX:
1240 face->background_defaulted_p = 1;
1241 color.pixel = FRAME_BACKGROUND_PIXEL (f);
1242 break;
1243
1244 case LFACE_UNDERLINE_INDEX:
1245 face->underline_defaulted_p = 1;
1246 color.pixel = FRAME_FOREGROUND_PIXEL (f);
1247 break;
1248
1249 case LFACE_OVERLINE_INDEX:
1250 face->overline_color_defaulted_p = 1;
1251 color.pixel = FRAME_FOREGROUND_PIXEL (f);
1252 break;
1253
1254 case LFACE_STRIKE_THROUGH_INDEX:
1255 face->strike_through_color_defaulted_p = 1;
1256 color.pixel = FRAME_FOREGROUND_PIXEL (f);
1257 break;
1258
1259 case LFACE_BOX_INDEX:
1260 face->box_color_defaulted_p = 1;
1261 color.pixel = FRAME_FOREGROUND_PIXEL (f);
1262 break;
1263
1264 default:
1265 emacs_abort ();
1266 }
1267 }
1268 #ifdef GLYPH_DEBUG
1269 else
1270 ++ncolors_allocated;
1271 #endif
1272
1273 return color.pixel;
1274 }
1275
1276
1277 #ifdef HAVE_WINDOW_SYSTEM
1278
1279 /* Load colors for face FACE which is used on frame F. Colors are
1280 specified by slots LFACE_BACKGROUND_INDEX and LFACE_FOREGROUND_INDEX
1281 of ATTRS. If the background color specified is not supported on F,
1282 try to emulate gray colors with a stipple from Vface_default_stipple. */
1283
1284 static void
1285 load_face_colors (struct frame *f, struct face *face,
1286 Lisp_Object attrs[LFACE_VECTOR_SIZE])
1287 {
1288 Lisp_Object fg, bg;
1289
1290 bg = attrs[LFACE_BACKGROUND_INDEX];
1291 fg = attrs[LFACE_FOREGROUND_INDEX];
1292
1293 /* Swap colors if face is inverse-video. */
1294 if (EQ (attrs[LFACE_INVERSE_INDEX], Qt))
1295 {
1296 Lisp_Object tmp;
1297 tmp = fg;
1298 fg = bg;
1299 bg = tmp;
1300 }
1301
1302 /* Check for support for foreground, not for background because
1303 face_color_supported_p is smart enough to know that grays are
1304 "supported" as background because we are supposed to use stipple
1305 for them. */
1306 if (!face_color_supported_p (f, SSDATA (bg), 0)
1307 && !NILP (Fbitmap_spec_p (Vface_default_stipple)))
1308 {
1309 x_destroy_bitmap (f, face->stipple);
1310 face->stipple = load_pixmap (f, Vface_default_stipple,
1311 &face->pixmap_w, &face->pixmap_h);
1312 }
1313
1314 face->background = load_color (f, face, bg, LFACE_BACKGROUND_INDEX);
1315 face->foreground = load_color (f, face, fg, LFACE_FOREGROUND_INDEX);
1316 }
1317
1318
1319 /* Free color PIXEL on frame F. */
1320
1321 void
1322 unload_color (struct frame *f, long unsigned int pixel)
1323 {
1324 #ifdef HAVE_X_WINDOWS
1325 if (pixel != -1)
1326 {
1327 block_input ();
1328 x_free_colors (f, &pixel, 1);
1329 unblock_input ();
1330 }
1331 #endif
1332 }
1333
1334
1335 /* Free colors allocated for FACE. */
1336
1337 static void
1338 free_face_colors (struct frame *f, struct face *face)
1339 {
1340 /* PENDING(NS): need to do something here? */
1341 #ifdef HAVE_X_WINDOWS
1342 if (face->colors_copied_bitwise_p)
1343 return;
1344
1345 block_input ();
1346
1347 if (!face->foreground_defaulted_p)
1348 {
1349 x_free_colors (f, &face->foreground, 1);
1350 IF_DEBUG (--ncolors_allocated);
1351 }
1352
1353 if (!face->background_defaulted_p)
1354 {
1355 x_free_colors (f, &face->background, 1);
1356 IF_DEBUG (--ncolors_allocated);
1357 }
1358
1359 if (face->underline_p
1360 && !face->underline_defaulted_p)
1361 {
1362 x_free_colors (f, &face->underline_color, 1);
1363 IF_DEBUG (--ncolors_allocated);
1364 }
1365
1366 if (face->overline_p
1367 && !face->overline_color_defaulted_p)
1368 {
1369 x_free_colors (f, &face->overline_color, 1);
1370 IF_DEBUG (--ncolors_allocated);
1371 }
1372
1373 if (face->strike_through_p
1374 && !face->strike_through_color_defaulted_p)
1375 {
1376 x_free_colors (f, &face->strike_through_color, 1);
1377 IF_DEBUG (--ncolors_allocated);
1378 }
1379
1380 if (face->box != FACE_NO_BOX
1381 && !face->box_color_defaulted_p)
1382 {
1383 x_free_colors (f, &face->box_color, 1);
1384 IF_DEBUG (--ncolors_allocated);
1385 }
1386
1387 unblock_input ();
1388 #endif /* HAVE_X_WINDOWS */
1389 }
1390
1391 #endif /* HAVE_WINDOW_SYSTEM */
1392
1393
1394 \f
1395 /***********************************************************************
1396 XLFD Font Names
1397 ***********************************************************************/
1398
1399 /* An enumerator for each field of an XLFD font name. */
1400
1401 enum xlfd_field
1402 {
1403 XLFD_FOUNDRY,
1404 XLFD_FAMILY,
1405 XLFD_WEIGHT,
1406 XLFD_SLANT,
1407 XLFD_SWIDTH,
1408 XLFD_ADSTYLE,
1409 XLFD_PIXEL_SIZE,
1410 XLFD_POINT_SIZE,
1411 XLFD_RESX,
1412 XLFD_RESY,
1413 XLFD_SPACING,
1414 XLFD_AVGWIDTH,
1415 XLFD_REGISTRY,
1416 XLFD_ENCODING,
1417 XLFD_LAST
1418 };
1419
1420 /* An enumerator for each possible slant value of a font. Taken from
1421 the XLFD specification. */
1422
1423 enum xlfd_slant
1424 {
1425 XLFD_SLANT_UNKNOWN,
1426 XLFD_SLANT_ROMAN,
1427 XLFD_SLANT_ITALIC,
1428 XLFD_SLANT_OBLIQUE,
1429 XLFD_SLANT_REVERSE_ITALIC,
1430 XLFD_SLANT_REVERSE_OBLIQUE,
1431 XLFD_SLANT_OTHER
1432 };
1433
1434 /* Relative font weight according to XLFD documentation. */
1435
1436 enum xlfd_weight
1437 {
1438 XLFD_WEIGHT_UNKNOWN,
1439 XLFD_WEIGHT_ULTRA_LIGHT, /* 10 */
1440 XLFD_WEIGHT_EXTRA_LIGHT, /* 20 */
1441 XLFD_WEIGHT_LIGHT, /* 30 */
1442 XLFD_WEIGHT_SEMI_LIGHT, /* 40: SemiLight, Book, ... */
1443 XLFD_WEIGHT_MEDIUM, /* 50: Medium, Normal, Regular, ... */
1444 XLFD_WEIGHT_SEMI_BOLD, /* 60: SemiBold, DemiBold, ... */
1445 XLFD_WEIGHT_BOLD, /* 70: Bold, ... */
1446 XLFD_WEIGHT_EXTRA_BOLD, /* 80: ExtraBold, Heavy, ... */
1447 XLFD_WEIGHT_ULTRA_BOLD /* 90: UltraBold, Black, ... */
1448 };
1449
1450 /* Relative proportionate width. */
1451
1452 enum xlfd_swidth
1453 {
1454 XLFD_SWIDTH_UNKNOWN,
1455 XLFD_SWIDTH_ULTRA_CONDENSED, /* 10 */
1456 XLFD_SWIDTH_EXTRA_CONDENSED, /* 20 */
1457 XLFD_SWIDTH_CONDENSED, /* 30: Condensed, Narrow, Compressed, ... */
1458 XLFD_SWIDTH_SEMI_CONDENSED, /* 40: semicondensed */
1459 XLFD_SWIDTH_MEDIUM, /* 50: Medium, Normal, Regular, ... */
1460 XLFD_SWIDTH_SEMI_EXPANDED, /* 60: SemiExpanded, DemiExpanded, ... */
1461 XLFD_SWIDTH_EXPANDED, /* 70: Expanded... */
1462 XLFD_SWIDTH_EXTRA_EXPANDED, /* 80: ExtraExpanded, Wide... */
1463 XLFD_SWIDTH_ULTRA_EXPANDED /* 90: UltraExpanded... */
1464 };
1465
1466 /* Order by which font selection chooses fonts. The default values
1467 mean `first, find a best match for the font width, then for the
1468 font height, then for weight, then for slant.' This variable can be
1469 set via set-face-font-sort-order. */
1470
1471 static int font_sort_order[4];
1472
1473 #ifdef HAVE_WINDOW_SYSTEM
1474
1475 static enum font_property_index font_props_for_sorting[FONT_SIZE_INDEX];
1476
1477 static int
1478 compare_fonts_by_sort_order (const void *v1, const void *v2)
1479 {
1480 Lisp_Object const *p1 = v1;
1481 Lisp_Object const *p2 = v2;
1482 Lisp_Object font1 = *p1;
1483 Lisp_Object font2 = *p2;
1484 int i;
1485
1486 for (i = 0; i < FONT_SIZE_INDEX; i++)
1487 {
1488 enum font_property_index idx = font_props_for_sorting[i];
1489 Lisp_Object val1 = AREF (font1, idx), val2 = AREF (font2, idx);
1490 int result;
1491
1492 if (idx <= FONT_REGISTRY_INDEX)
1493 {
1494 if (STRINGP (val1))
1495 result = STRINGP (val2) ? strcmp (SSDATA (val1), SSDATA (val2)) : -1;
1496 else
1497 result = STRINGP (val2) ? 1 : 0;
1498 }
1499 else
1500 {
1501 if (INTEGERP (val1))
1502 result = (INTEGERP (val2) && XINT (val1) >= XINT (val2)
1503 ? XINT (val1) > XINT (val2)
1504 : -1);
1505 else
1506 result = INTEGERP (val2) ? 1 : 0;
1507 }
1508 if (result)
1509 return result;
1510 }
1511 return 0;
1512 }
1513
1514 DEFUN ("x-family-fonts", Fx_family_fonts, Sx_family_fonts, 0, 2, 0,
1515 doc: /* Return a list of available fonts of family FAMILY on FRAME.
1516 If FAMILY is omitted or nil, list all families.
1517 Otherwise, FAMILY must be a string, possibly containing wildcards
1518 `?' and `*'.
1519 If FRAME is omitted or nil, use the selected frame.
1520 Each element of the result is a vector [FAMILY WIDTH POINT-SIZE WEIGHT
1521 SLANT FIXED-P FULL REGISTRY-AND-ENCODING].
1522 FAMILY is the font family name. POINT-SIZE is the size of the
1523 font in 1/10 pt. WIDTH, WEIGHT, and SLANT are symbols describing the
1524 width, weight and slant of the font. These symbols are the same as for
1525 face attributes. FIXED-P is non-nil if the font is fixed-pitch.
1526 FULL is the full name of the font, and REGISTRY-AND-ENCODING is a string
1527 giving the registry and encoding of the font.
1528 The result list is sorted according to the current setting of
1529 the face font sort order. */)
1530 (Lisp_Object family, Lisp_Object frame)
1531 {
1532 Lisp_Object font_spec, list, *drivers, vec;
1533 ptrdiff_t i, nfonts;
1534 EMACS_INT ndrivers;
1535 Lisp_Object result;
1536 USE_SAFE_ALLOCA;
1537
1538 if (NILP (frame))
1539 frame = selected_frame;
1540 CHECK_LIVE_FRAME (frame);
1541
1542 font_spec = Ffont_spec (0, NULL);
1543 if (!NILP (family))
1544 {
1545 CHECK_STRING (family);
1546 font_parse_family_registry (family, Qnil, font_spec);
1547 }
1548
1549 list = font_list_entities (frame, font_spec);
1550 if (NILP (list))
1551 return Qnil;
1552
1553 /* Sort the font entities. */
1554 for (i = 0; i < 4; i++)
1555 switch (font_sort_order[i])
1556 {
1557 case XLFD_SWIDTH:
1558 font_props_for_sorting[i] = FONT_WIDTH_INDEX; break;
1559 case XLFD_POINT_SIZE:
1560 font_props_for_sorting[i] = FONT_SIZE_INDEX; break;
1561 case XLFD_WEIGHT:
1562 font_props_for_sorting[i] = FONT_WEIGHT_INDEX; break;
1563 default:
1564 font_props_for_sorting[i] = FONT_SLANT_INDEX; break;
1565 }
1566 font_props_for_sorting[i++] = FONT_FAMILY_INDEX;
1567 font_props_for_sorting[i++] = FONT_FOUNDRY_INDEX;
1568 font_props_for_sorting[i++] = FONT_ADSTYLE_INDEX;
1569 font_props_for_sorting[i++] = FONT_REGISTRY_INDEX;
1570
1571 ndrivers = XINT (Flength (list));
1572 SAFE_ALLOCA_LISP (drivers, ndrivers);
1573 for (i = 0; i < ndrivers; i++, list = XCDR (list))
1574 drivers[i] = XCAR (list);
1575 vec = Fvconcat (ndrivers, drivers);
1576 nfonts = ASIZE (vec);
1577
1578 qsort (XVECTOR (vec)->contents, nfonts, word_size,
1579 compare_fonts_by_sort_order);
1580
1581 result = Qnil;
1582 for (i = nfonts - 1; i >= 0; --i)
1583 {
1584 Lisp_Object font = AREF (vec, i);
1585 Lisp_Object v = make_uninit_vector (8);
1586 int point;
1587 Lisp_Object spacing;
1588
1589 ASET (v, 0, AREF (font, FONT_FAMILY_INDEX));
1590 ASET (v, 1, FONT_WIDTH_SYMBOLIC (font));
1591 point = PIXEL_TO_POINT (XINT (AREF (font, FONT_SIZE_INDEX)) * 10,
1592 FRAME_RES_Y (XFRAME (frame)));
1593 ASET (v, 2, make_number (point));
1594 ASET (v, 3, FONT_WEIGHT_SYMBOLIC (font));
1595 ASET (v, 4, FONT_SLANT_SYMBOLIC (font));
1596 spacing = Ffont_get (font, QCspacing);
1597 ASET (v, 5, (NILP (spacing) || EQ (spacing, Qp)) ? Qnil : Qt);
1598 ASET (v, 6, Ffont_xlfd_name (font, Qnil));
1599 ASET (v, 7, AREF (font, FONT_REGISTRY_INDEX));
1600
1601 result = Fcons (v, result);
1602 }
1603
1604 SAFE_FREE ();
1605 return result;
1606 }
1607
1608 DEFUN ("x-list-fonts", Fx_list_fonts, Sx_list_fonts, 1, 5, 0,
1609 doc: /* Return a list of the names of available fonts matching PATTERN.
1610 If optional arguments FACE and FRAME are specified, return only fonts
1611 the same size as FACE on FRAME.
1612
1613 PATTERN should be a string containing a font name in the XLFD,
1614 Fontconfig, or GTK format. A font name given in the XLFD format may
1615 contain wildcard characters:
1616 the * character matches any substring, and
1617 the ? character matches any single character.
1618 PATTERN is case-insensitive.
1619
1620 The return value is a list of strings, suitable as arguments to
1621 `set-face-font'.
1622
1623 Fonts Emacs can't use may or may not be excluded
1624 even if they match PATTERN and FACE.
1625 The optional fourth argument MAXIMUM sets a limit on how many
1626 fonts to match. The first MAXIMUM fonts are reported.
1627 The optional fifth argument WIDTH, if specified, is a number of columns
1628 occupied by a character of a font. In that case, return only fonts
1629 the WIDTH times as wide as FACE on FRAME. */)
1630 (Lisp_Object pattern, Lisp_Object face, Lisp_Object frame,
1631 Lisp_Object maximum, Lisp_Object width)
1632 {
1633 struct frame *f;
1634 int size, avgwidth IF_LINT (= 0);
1635
1636 check_window_system (NULL);
1637 CHECK_STRING (pattern);
1638
1639 if (! NILP (maximum))
1640 CHECK_NATNUM (maximum);
1641
1642 if (!NILP (width))
1643 CHECK_NUMBER (width);
1644
1645 /* We can't simply call decode_window_system_frame because
1646 this function may be called before any frame is created. */
1647 f = decode_live_frame (frame);
1648 if (! FRAME_WINDOW_P (f))
1649 {
1650 /* Perhaps we have not yet created any frame. */
1651 f = NULL;
1652 frame = Qnil;
1653 face = Qnil;
1654 }
1655 else
1656 XSETFRAME (frame, f);
1657
1658 /* Determine the width standard for comparison with the fonts we find. */
1659
1660 if (NILP (face))
1661 size = 0;
1662 else
1663 {
1664 /* This is of limited utility since it works with character
1665 widths. Keep it for compatibility. --gerd. */
1666 int face_id = lookup_named_face (f, face, 0);
1667 struct face *width_face = (face_id < 0
1668 ? NULL
1669 : FACE_FROM_ID (f, face_id));
1670
1671 if (width_face && width_face->font)
1672 {
1673 size = width_face->font->pixel_size;
1674 avgwidth = width_face->font->average_width;
1675 }
1676 else
1677 {
1678 size = FRAME_FONT (f)->pixel_size;
1679 avgwidth = FRAME_FONT (f)->average_width;
1680 }
1681 if (!NILP (width))
1682 avgwidth *= XINT (width);
1683 }
1684
1685 {
1686 Lisp_Object font_spec;
1687 Lisp_Object args[2], tail;
1688
1689 font_spec = font_spec_from_name (pattern);
1690 if (!FONTP (font_spec))
1691 signal_error ("Invalid font name", pattern);
1692
1693 if (size)
1694 {
1695 Ffont_put (font_spec, QCsize, make_number (size));
1696 Ffont_put (font_spec, QCavgwidth, make_number (avgwidth));
1697 }
1698 args[0] = Flist_fonts (font_spec, frame, maximum, font_spec);
1699 for (tail = args[0]; CONSP (tail); tail = XCDR (tail))
1700 {
1701 Lisp_Object font_entity;
1702
1703 font_entity = XCAR (tail);
1704 if ((NILP (AREF (font_entity, FONT_SIZE_INDEX))
1705 || XINT (AREF (font_entity, FONT_SIZE_INDEX)) == 0)
1706 && ! NILP (AREF (font_spec, FONT_SIZE_INDEX)))
1707 {
1708 /* This is a scalable font. For backward compatibility,
1709 we set the specified size. */
1710 font_entity = copy_font_spec (font_entity);
1711 ASET (font_entity, FONT_SIZE_INDEX,
1712 AREF (font_spec, FONT_SIZE_INDEX));
1713 }
1714 XSETCAR (tail, Ffont_xlfd_name (font_entity, Qnil));
1715 }
1716 if (NILP (frame))
1717 /* We don't have to check fontsets. */
1718 return args[0];
1719 args[1] = list_fontsets (f, pattern, size);
1720 return Fnconc (2, args);
1721 }
1722 }
1723
1724 #endif /* HAVE_WINDOW_SYSTEM */
1725
1726 \f
1727 /***********************************************************************
1728 Lisp Faces
1729 ***********************************************************************/
1730
1731 /* Access face attributes of face LFACE, a Lisp vector. */
1732
1733 #define LFACE_FAMILY(LFACE) AREF ((LFACE), LFACE_FAMILY_INDEX)
1734 #define LFACE_FOUNDRY(LFACE) AREF ((LFACE), LFACE_FOUNDRY_INDEX)
1735 #define LFACE_HEIGHT(LFACE) AREF ((LFACE), LFACE_HEIGHT_INDEX)
1736 #define LFACE_WEIGHT(LFACE) AREF ((LFACE), LFACE_WEIGHT_INDEX)
1737 #define LFACE_SLANT(LFACE) AREF ((LFACE), LFACE_SLANT_INDEX)
1738 #define LFACE_UNDERLINE(LFACE) AREF ((LFACE), LFACE_UNDERLINE_INDEX)
1739 #define LFACE_INVERSE(LFACE) AREF ((LFACE), LFACE_INVERSE_INDEX)
1740 #define LFACE_FOREGROUND(LFACE) AREF ((LFACE), LFACE_FOREGROUND_INDEX)
1741 #define LFACE_BACKGROUND(LFACE) AREF ((LFACE), LFACE_BACKGROUND_INDEX)
1742 #define LFACE_STIPPLE(LFACE) AREF ((LFACE), LFACE_STIPPLE_INDEX)
1743 #define LFACE_SWIDTH(LFACE) AREF ((LFACE), LFACE_SWIDTH_INDEX)
1744 #define LFACE_OVERLINE(LFACE) AREF ((LFACE), LFACE_OVERLINE_INDEX)
1745 #define LFACE_STRIKE_THROUGH(LFACE) AREF ((LFACE), LFACE_STRIKE_THROUGH_INDEX)
1746 #define LFACE_BOX(LFACE) AREF ((LFACE), LFACE_BOX_INDEX)
1747 #define LFACE_FONT(LFACE) AREF ((LFACE), LFACE_FONT_INDEX)
1748 #define LFACE_INHERIT(LFACE) AREF ((LFACE), LFACE_INHERIT_INDEX)
1749 #define LFACE_FONTSET(LFACE) AREF ((LFACE), LFACE_FONTSET_INDEX)
1750
1751 /* Non-zero if LFACE is a Lisp face. A Lisp face is a vector of size
1752 LFACE_VECTOR_SIZE which has the symbol `face' in slot 0. */
1753
1754 #define LFACEP(LFACE) \
1755 (VECTORP (LFACE) \
1756 && ASIZE (LFACE) == LFACE_VECTOR_SIZE \
1757 && EQ (AREF (LFACE, 0), Qface))
1758
1759
1760 #ifdef GLYPH_DEBUG
1761
1762 /* Check consistency of Lisp face attribute vector ATTRS. */
1763
1764 static void
1765 check_lface_attrs (Lisp_Object attrs[LFACE_VECTOR_SIZE])
1766 {
1767 eassert (UNSPECIFIEDP (attrs[LFACE_FAMILY_INDEX])
1768 || IGNORE_DEFFACE_P (attrs[LFACE_FAMILY_INDEX])
1769 || STRINGP (attrs[LFACE_FAMILY_INDEX]));
1770 eassert (UNSPECIFIEDP (attrs[LFACE_FOUNDRY_INDEX])
1771 || IGNORE_DEFFACE_P (attrs[LFACE_FOUNDRY_INDEX])
1772 || STRINGP (attrs[LFACE_FOUNDRY_INDEX]));
1773 eassert (UNSPECIFIEDP (attrs[LFACE_SWIDTH_INDEX])
1774 || IGNORE_DEFFACE_P (attrs[LFACE_SWIDTH_INDEX])
1775 || SYMBOLP (attrs[LFACE_SWIDTH_INDEX]));
1776 eassert (UNSPECIFIEDP (attrs[LFACE_HEIGHT_INDEX])
1777 || IGNORE_DEFFACE_P (attrs[LFACE_HEIGHT_INDEX])
1778 || INTEGERP (attrs[LFACE_HEIGHT_INDEX])
1779 || FLOATP (attrs[LFACE_HEIGHT_INDEX])
1780 || FUNCTIONP (attrs[LFACE_HEIGHT_INDEX]));
1781 eassert (UNSPECIFIEDP (attrs[LFACE_WEIGHT_INDEX])
1782 || IGNORE_DEFFACE_P (attrs[LFACE_WEIGHT_INDEX])
1783 || SYMBOLP (attrs[LFACE_WEIGHT_INDEX]));
1784 eassert (UNSPECIFIEDP (attrs[LFACE_SLANT_INDEX])
1785 || IGNORE_DEFFACE_P (attrs[LFACE_SLANT_INDEX])
1786 || SYMBOLP (attrs[LFACE_SLANT_INDEX]));
1787 eassert (UNSPECIFIEDP (attrs[LFACE_UNDERLINE_INDEX])
1788 || IGNORE_DEFFACE_P (attrs[LFACE_UNDERLINE_INDEX])
1789 || SYMBOLP (attrs[LFACE_UNDERLINE_INDEX])
1790 || STRINGP (attrs[LFACE_UNDERLINE_INDEX])
1791 || CONSP (attrs[LFACE_UNDERLINE_INDEX]));
1792 eassert (UNSPECIFIEDP (attrs[LFACE_OVERLINE_INDEX])
1793 || IGNORE_DEFFACE_P (attrs[LFACE_OVERLINE_INDEX])
1794 || SYMBOLP (attrs[LFACE_OVERLINE_INDEX])
1795 || STRINGP (attrs[LFACE_OVERLINE_INDEX]));
1796 eassert (UNSPECIFIEDP (attrs[LFACE_STRIKE_THROUGH_INDEX])
1797 || IGNORE_DEFFACE_P (attrs[LFACE_STRIKE_THROUGH_INDEX])
1798 || SYMBOLP (attrs[LFACE_STRIKE_THROUGH_INDEX])
1799 || STRINGP (attrs[LFACE_STRIKE_THROUGH_INDEX]));
1800 eassert (UNSPECIFIEDP (attrs[LFACE_BOX_INDEX])
1801 || IGNORE_DEFFACE_P (attrs[LFACE_BOX_INDEX])
1802 || SYMBOLP (attrs[LFACE_BOX_INDEX])
1803 || STRINGP (attrs[LFACE_BOX_INDEX])
1804 || INTEGERP (attrs[LFACE_BOX_INDEX])
1805 || CONSP (attrs[LFACE_BOX_INDEX]));
1806 eassert (UNSPECIFIEDP (attrs[LFACE_INVERSE_INDEX])
1807 || IGNORE_DEFFACE_P (attrs[LFACE_INVERSE_INDEX])
1808 || SYMBOLP (attrs[LFACE_INVERSE_INDEX]));
1809 eassert (UNSPECIFIEDP (attrs[LFACE_FOREGROUND_INDEX])
1810 || IGNORE_DEFFACE_P (attrs[LFACE_FOREGROUND_INDEX])
1811 || STRINGP (attrs[LFACE_FOREGROUND_INDEX]));
1812 eassert (UNSPECIFIEDP (attrs[LFACE_BACKGROUND_INDEX])
1813 || IGNORE_DEFFACE_P (attrs[LFACE_BACKGROUND_INDEX])
1814 || STRINGP (attrs[LFACE_BACKGROUND_INDEX]));
1815 eassert (UNSPECIFIEDP (attrs[LFACE_INHERIT_INDEX])
1816 || IGNORE_DEFFACE_P (attrs[LFACE_INHERIT_INDEX])
1817 || NILP (attrs[LFACE_INHERIT_INDEX])
1818 || SYMBOLP (attrs[LFACE_INHERIT_INDEX])
1819 || CONSP (attrs[LFACE_INHERIT_INDEX]));
1820 #ifdef HAVE_WINDOW_SYSTEM
1821 eassert (UNSPECIFIEDP (attrs[LFACE_STIPPLE_INDEX])
1822 || IGNORE_DEFFACE_P (attrs[LFACE_STIPPLE_INDEX])
1823 || SYMBOLP (attrs[LFACE_STIPPLE_INDEX])
1824 || !NILP (Fbitmap_spec_p (attrs[LFACE_STIPPLE_INDEX])));
1825 eassert (UNSPECIFIEDP (attrs[LFACE_FONT_INDEX])
1826 || IGNORE_DEFFACE_P (attrs[LFACE_FONT_INDEX])
1827 || FONTP (attrs[LFACE_FONT_INDEX]));
1828 eassert (UNSPECIFIEDP (attrs[LFACE_FONTSET_INDEX])
1829 || STRINGP (attrs[LFACE_FONTSET_INDEX])
1830 || NILP (attrs[LFACE_FONTSET_INDEX]));
1831 #endif
1832 }
1833
1834
1835 /* Check consistency of attributes of Lisp face LFACE (a Lisp vector). */
1836
1837 static void
1838 check_lface (Lisp_Object lface)
1839 {
1840 if (!NILP (lface))
1841 {
1842 eassert (LFACEP (lface));
1843 check_lface_attrs (XVECTOR (lface)->contents);
1844 }
1845 }
1846
1847 #else /* not GLYPH_DEBUG */
1848
1849 #define check_lface_attrs(attrs) (void) 0
1850 #define check_lface(lface) (void) 0
1851
1852 #endif /* GLYPH_DEBUG */
1853
1854
1855 \f
1856 /* Face-merge cycle checking. */
1857
1858 enum named_merge_point_kind
1859 {
1860 NAMED_MERGE_POINT_NORMAL,
1861 NAMED_MERGE_POINT_REMAP
1862 };
1863
1864 /* A `named merge point' is simply a point during face-merging where we
1865 look up a face by name. We keep a stack of which named lookups we're
1866 currently processing so that we can easily detect cycles, using a
1867 linked- list of struct named_merge_point structures, typically
1868 allocated on the stack frame of the named lookup functions which are
1869 active (so no consing is required). */
1870 struct named_merge_point
1871 {
1872 Lisp_Object face_name;
1873 enum named_merge_point_kind named_merge_point_kind;
1874 struct named_merge_point *prev;
1875 };
1876
1877
1878 /* If a face merging cycle is detected for FACE_NAME, return 0,
1879 otherwise add NEW_NAMED_MERGE_POINT, which is initialized using
1880 FACE_NAME and NAMED_MERGE_POINT_KIND, as the head of the linked list
1881 pointed to by NAMED_MERGE_POINTS, and return 1. */
1882
1883 static int
1884 push_named_merge_point (struct named_merge_point *new_named_merge_point,
1885 Lisp_Object face_name,
1886 enum named_merge_point_kind named_merge_point_kind,
1887 struct named_merge_point **named_merge_points)
1888 {
1889 struct named_merge_point *prev;
1890
1891 for (prev = *named_merge_points; prev; prev = prev->prev)
1892 if (EQ (face_name, prev->face_name))
1893 {
1894 if (prev->named_merge_point_kind == named_merge_point_kind)
1895 /* A cycle, so fail. */
1896 return 0;
1897 else if (prev->named_merge_point_kind == NAMED_MERGE_POINT_REMAP)
1898 /* A remap `hides ' any previous normal merge points
1899 (because the remap means that it's actually different face),
1900 so as we know the current merge point must be normal, we
1901 can just assume it's OK. */
1902 break;
1903 }
1904
1905 new_named_merge_point->face_name = face_name;
1906 new_named_merge_point->named_merge_point_kind = named_merge_point_kind;
1907 new_named_merge_point->prev = *named_merge_points;
1908
1909 *named_merge_points = new_named_merge_point;
1910
1911 return 1;
1912 }
1913
1914 \f
1915 /* Resolve face name FACE_NAME. If FACE_NAME is a string, intern it
1916 to make it a symbol. If FACE_NAME is an alias for another face,
1917 return that face's name.
1918
1919 Return default face in case of errors. */
1920
1921 static Lisp_Object
1922 resolve_face_name (Lisp_Object face_name, int signal_p)
1923 {
1924 Lisp_Object orig_face;
1925 Lisp_Object tortoise, hare;
1926
1927 if (STRINGP (face_name))
1928 face_name = intern (SSDATA (face_name));
1929
1930 if (NILP (face_name) || !SYMBOLP (face_name))
1931 return face_name;
1932
1933 orig_face = face_name;
1934 tortoise = hare = face_name;
1935
1936 while (1)
1937 {
1938 face_name = hare;
1939 hare = Fget (hare, Qface_alias);
1940 if (NILP (hare) || !SYMBOLP (hare))
1941 break;
1942
1943 face_name = hare;
1944 hare = Fget (hare, Qface_alias);
1945 if (NILP (hare) || !SYMBOLP (hare))
1946 break;
1947
1948 tortoise = Fget (tortoise, Qface_alias);
1949 if (EQ (hare, tortoise))
1950 {
1951 if (signal_p)
1952 xsignal1 (Qcircular_list, orig_face);
1953 return Qdefault;
1954 }
1955 }
1956
1957 return face_name;
1958 }
1959
1960
1961 /* Return the face definition of FACE_NAME on frame F. F null means
1962 return the definition for new frames. FACE_NAME may be a string or
1963 a symbol (apparently Emacs 20.2 allowed strings as face names in
1964 face text properties; Ediff uses that). If SIGNAL_P is non-zero,
1965 signal an error if FACE_NAME is not a valid face name. If SIGNAL_P
1966 is zero, value is nil if FACE_NAME is not a valid face name. */
1967 static Lisp_Object
1968 lface_from_face_name_no_resolve (struct frame *f, Lisp_Object face_name,
1969 int signal_p)
1970 {
1971 Lisp_Object lface;
1972
1973 if (f)
1974 lface = assq_no_quit (face_name, f->face_alist);
1975 else
1976 lface = assq_no_quit (face_name, Vface_new_frame_defaults);
1977
1978 if (CONSP (lface))
1979 lface = XCDR (lface);
1980 else if (signal_p)
1981 signal_error ("Invalid face", face_name);
1982
1983 check_lface (lface);
1984
1985 return lface;
1986 }
1987
1988 /* Return the face definition of FACE_NAME on frame F. F null means
1989 return the definition for new frames. FACE_NAME may be a string or
1990 a symbol (apparently Emacs 20.2 allowed strings as face names in
1991 face text properties; Ediff uses that). If FACE_NAME is an alias
1992 for another face, return that face's definition. If SIGNAL_P is
1993 non-zero, signal an error if FACE_NAME is not a valid face name.
1994 If SIGNAL_P is zero, value is nil if FACE_NAME is not a valid face
1995 name. */
1996 static Lisp_Object
1997 lface_from_face_name (struct frame *f, Lisp_Object face_name, int signal_p)
1998 {
1999 face_name = resolve_face_name (face_name, signal_p);
2000 return lface_from_face_name_no_resolve (f, face_name, signal_p);
2001 }
2002
2003
2004 /* Get face attributes of face FACE_NAME from frame-local faces on
2005 frame F. Store the resulting attributes in ATTRS which must point
2006 to a vector of Lisp_Objects of size LFACE_VECTOR_SIZE. If SIGNAL_P
2007 is non-zero, signal an error if FACE_NAME does not name a face.
2008 Otherwise, value is zero if FACE_NAME is not a face. */
2009
2010 static int
2011 get_lface_attributes_no_remap (struct frame *f, Lisp_Object face_name,
2012 Lisp_Object attrs[LFACE_VECTOR_SIZE],
2013 int signal_p)
2014 {
2015 Lisp_Object lface;
2016
2017 lface = lface_from_face_name_no_resolve (f, face_name, signal_p);
2018
2019 if (! NILP (lface))
2020 memcpy (attrs, XVECTOR (lface)->contents,
2021 LFACE_VECTOR_SIZE * sizeof *attrs);
2022
2023 return !NILP (lface);
2024 }
2025
2026 /* Get face attributes of face FACE_NAME from frame-local faces on frame
2027 F. Store the resulting attributes in ATTRS which must point to a
2028 vector of Lisp_Objects of size LFACE_VECTOR_SIZE. If FACE_NAME is an
2029 alias for another face, use that face's definition. If SIGNAL_P is
2030 non-zero, signal an error if FACE_NAME does not name a face.
2031 Otherwise, value is zero if FACE_NAME is not a face. */
2032
2033 static int
2034 get_lface_attributes (struct frame *f, Lisp_Object face_name,
2035 Lisp_Object attrs[LFACE_VECTOR_SIZE], int signal_p,
2036 struct named_merge_point *named_merge_points)
2037 {
2038 Lisp_Object face_remapping;
2039
2040 face_name = resolve_face_name (face_name, signal_p);
2041
2042 /* See if SYMBOL has been remapped to some other face (usually this
2043 is done buffer-locally). */
2044 face_remapping = assq_no_quit (face_name, Vface_remapping_alist);
2045 if (CONSP (face_remapping))
2046 {
2047 struct named_merge_point named_merge_point;
2048
2049 if (push_named_merge_point (&named_merge_point,
2050 face_name, NAMED_MERGE_POINT_REMAP,
2051 &named_merge_points))
2052 {
2053 int i;
2054
2055 for (i = 1; i < LFACE_VECTOR_SIZE; ++i)
2056 attrs[i] = Qunspecified;
2057
2058 return merge_face_ref (f, XCDR (face_remapping), attrs,
2059 signal_p, named_merge_points);
2060 }
2061 }
2062
2063 /* Default case, no remapping. */
2064 return get_lface_attributes_no_remap (f, face_name, attrs, signal_p);
2065 }
2066
2067
2068 /* Non-zero if all attributes in face attribute vector ATTRS are
2069 specified, i.e. are non-nil. */
2070
2071 static int
2072 lface_fully_specified_p (Lisp_Object attrs[LFACE_VECTOR_SIZE])
2073 {
2074 int i;
2075
2076 for (i = 1; i < LFACE_VECTOR_SIZE; ++i)
2077 if (i != LFACE_FONT_INDEX && i != LFACE_INHERIT_INDEX)
2078 if ((UNSPECIFIEDP (attrs[i]) || IGNORE_DEFFACE_P (attrs[i])))
2079 break;
2080
2081 return i == LFACE_VECTOR_SIZE;
2082 }
2083
2084 #ifdef HAVE_WINDOW_SYSTEM
2085
2086 /* Set font-related attributes of Lisp face LFACE from FONT-OBJECT.
2087 If FORCE_P is zero, set only unspecified attributes of LFACE. The
2088 exception is `font' attribute. It is set to FONT_OBJECT regardless
2089 of FORCE_P. */
2090
2091 static int
2092 set_lface_from_font (struct frame *f, Lisp_Object lface,
2093 Lisp_Object font_object, int force_p)
2094 {
2095 Lisp_Object val;
2096 struct font *font = XFONT_OBJECT (font_object);
2097
2098 /* Set attributes only if unspecified, otherwise face defaults for
2099 new frames would never take effect. If the font doesn't have a
2100 specific property, set a normal value for that. */
2101
2102 if (force_p || UNSPECIFIEDP (LFACE_FAMILY (lface)))
2103 {
2104 Lisp_Object family = AREF (font_object, FONT_FAMILY_INDEX);
2105
2106 ASET (lface, LFACE_FAMILY_INDEX, SYMBOL_NAME (family));
2107 }
2108
2109 if (force_p || UNSPECIFIEDP (LFACE_FOUNDRY (lface)))
2110 {
2111 Lisp_Object foundry = AREF (font_object, FONT_FOUNDRY_INDEX);
2112
2113 ASET (lface, LFACE_FOUNDRY_INDEX, SYMBOL_NAME (foundry));
2114 }
2115
2116 if (force_p || UNSPECIFIEDP (LFACE_HEIGHT (lface)))
2117 {
2118 int pt = PIXEL_TO_POINT (font->pixel_size * 10, FRAME_RES_Y (f));
2119
2120 eassert (pt > 0);
2121 ASET (lface, LFACE_HEIGHT_INDEX, make_number (pt));
2122 }
2123
2124 if (force_p || UNSPECIFIEDP (LFACE_WEIGHT (lface)))
2125 {
2126 val = FONT_WEIGHT_FOR_FACE (font_object);
2127 ASET (lface, LFACE_WEIGHT_INDEX, ! NILP (val) ? val :Qnormal);
2128 }
2129 if (force_p || UNSPECIFIEDP (LFACE_SLANT (lface)))
2130 {
2131 val = FONT_SLANT_FOR_FACE (font_object);
2132 ASET (lface, LFACE_SLANT_INDEX, ! NILP (val) ? val : Qnormal);
2133 }
2134 if (force_p || UNSPECIFIEDP (LFACE_SWIDTH (lface)))
2135 {
2136 val = FONT_WIDTH_FOR_FACE (font_object);
2137 ASET (lface, LFACE_SWIDTH_INDEX, ! NILP (val) ? val : Qnormal);
2138 }
2139
2140 ASET (lface, LFACE_FONT_INDEX, font_object);
2141 return 1;
2142 }
2143
2144 #endif /* HAVE_WINDOW_SYSTEM */
2145
2146
2147 /* Merges the face height FROM with the face height TO, and returns the
2148 merged height. If FROM is an invalid height, then INVALID is
2149 returned instead. FROM and TO may be either absolute face heights or
2150 `relative' heights; the returned value is always an absolute height
2151 unless both FROM and TO are relative. */
2152
2153 static Lisp_Object
2154 merge_face_heights (Lisp_Object from, Lisp_Object to, Lisp_Object invalid)
2155 {
2156 Lisp_Object result = invalid;
2157
2158 if (INTEGERP (from))
2159 /* FROM is absolute, just use it as is. */
2160 result = from;
2161 else if (FLOATP (from))
2162 /* FROM is a scale, use it to adjust TO. */
2163 {
2164 if (INTEGERP (to))
2165 /* relative X absolute => absolute */
2166 result = make_number (XFLOAT_DATA (from) * XINT (to));
2167 else if (FLOATP (to))
2168 /* relative X relative => relative */
2169 result = make_float (XFLOAT_DATA (from) * XFLOAT_DATA (to));
2170 else if (UNSPECIFIEDP (to))
2171 result = from;
2172 }
2173 else if (FUNCTIONP (from))
2174 /* FROM is a function, which use to adjust TO. */
2175 {
2176 /* Call function with current height as argument.
2177 From is the new height. */
2178 result = safe_call1 (from, to);
2179
2180 /* Ensure that if TO was absolute, so is the result. */
2181 if (INTEGERP (to) && !INTEGERP (result))
2182 result = invalid;
2183 }
2184
2185 return result;
2186 }
2187
2188
2189 /* Merge two Lisp face attribute vectors on frame F, FROM and TO, and
2190 store the resulting attributes in TO, which must be already be
2191 completely specified and contain only absolute attributes. Every
2192 specified attribute of FROM overrides the corresponding attribute of
2193 TO; relative attributes in FROM are merged with the absolute value in
2194 TO and replace it. NAMED_MERGE_POINTS is used internally to detect
2195 loops in face inheritance/remapping; it should be 0 when called from
2196 other places. */
2197
2198 static void
2199 merge_face_vectors (struct frame *f, Lisp_Object *from, Lisp_Object *to,
2200 struct named_merge_point *named_merge_points)
2201 {
2202 int i;
2203 Lisp_Object font = Qnil;
2204
2205 /* If FROM inherits from some other faces, merge their attributes into
2206 TO before merging FROM's direct attributes. Note that an :inherit
2207 attribute of `unspecified' is the same as one of nil; we never
2208 merge :inherit attributes, so nil is more correct, but lots of
2209 other code uses `unspecified' as a generic value for face attributes. */
2210 if (!UNSPECIFIEDP (from[LFACE_INHERIT_INDEX])
2211 && !NILP (from[LFACE_INHERIT_INDEX]))
2212 merge_face_ref (f, from[LFACE_INHERIT_INDEX], to, 0, named_merge_points);
2213
2214 if (FONT_SPEC_P (from[LFACE_FONT_INDEX]))
2215 {
2216 if (!UNSPECIFIEDP (to[LFACE_FONT_INDEX]))
2217 font = merge_font_spec (from[LFACE_FONT_INDEX], to[LFACE_FONT_INDEX]);
2218 else
2219 font = copy_font_spec (from[LFACE_FONT_INDEX]);
2220 to[LFACE_FONT_INDEX] = font;
2221 }
2222
2223 for (i = 1; i < LFACE_VECTOR_SIZE; ++i)
2224 if (!UNSPECIFIEDP (from[i]))
2225 {
2226 if (i == LFACE_HEIGHT_INDEX && !INTEGERP (from[i]))
2227 {
2228 to[i] = merge_face_heights (from[i], to[i], to[i]);
2229 font_clear_prop (to, FONT_SIZE_INDEX);
2230 }
2231 else if (i != LFACE_FONT_INDEX && ! EQ (to[i], from[i]))
2232 {
2233 to[i] = from[i];
2234 if (i >= LFACE_FAMILY_INDEX && i <=LFACE_SLANT_INDEX)
2235 font_clear_prop (to,
2236 (i == LFACE_FAMILY_INDEX ? FONT_FAMILY_INDEX
2237 : i == LFACE_FOUNDRY_INDEX ? FONT_FOUNDRY_INDEX
2238 : i == LFACE_SWIDTH_INDEX ? FONT_WIDTH_INDEX
2239 : i == LFACE_HEIGHT_INDEX ? FONT_SIZE_INDEX
2240 : i == LFACE_WEIGHT_INDEX ? FONT_WEIGHT_INDEX
2241 : FONT_SLANT_INDEX));
2242 }
2243 }
2244
2245 /* If FROM specifies a font spec, make its contents take precedence
2246 over :family and other attributes. This is needed for face
2247 remapping using :font to work. */
2248
2249 if (!NILP (font))
2250 {
2251 if (! NILP (AREF (font, FONT_FOUNDRY_INDEX)))
2252 to[LFACE_FOUNDRY_INDEX] = SYMBOL_NAME (AREF (font, FONT_FOUNDRY_INDEX));
2253 if (! NILP (AREF (font, FONT_FAMILY_INDEX)))
2254 to[LFACE_FAMILY_INDEX] = SYMBOL_NAME (AREF (font, FONT_FAMILY_INDEX));
2255 if (! NILP (AREF (font, FONT_WEIGHT_INDEX)))
2256 to[LFACE_WEIGHT_INDEX] = FONT_WEIGHT_FOR_FACE (font);
2257 if (! NILP (AREF (font, FONT_SLANT_INDEX)))
2258 to[LFACE_SLANT_INDEX] = FONT_SLANT_FOR_FACE (font);
2259 if (! NILP (AREF (font, FONT_WIDTH_INDEX)))
2260 to[LFACE_SWIDTH_INDEX] = FONT_WIDTH_FOR_FACE (font);
2261 ASET (font, FONT_SIZE_INDEX, Qnil);
2262 }
2263
2264 /* TO is always an absolute face, which should inherit from nothing.
2265 We blindly copy the :inherit attribute above and fix it up here. */
2266 to[LFACE_INHERIT_INDEX] = Qnil;
2267 }
2268
2269 /* Merge the named face FACE_NAME on frame F, into the vector of face
2270 attributes TO. NAMED_MERGE_POINTS is used to detect loops in face
2271 inheritance. Returns true if FACE_NAME is a valid face name and
2272 merging succeeded. */
2273
2274 static int
2275 merge_named_face (struct frame *f, Lisp_Object face_name, Lisp_Object *to,
2276 struct named_merge_point *named_merge_points)
2277 {
2278 struct named_merge_point named_merge_point;
2279
2280 if (push_named_merge_point (&named_merge_point,
2281 face_name, NAMED_MERGE_POINT_NORMAL,
2282 &named_merge_points))
2283 {
2284 struct gcpro gcpro1;
2285 Lisp_Object from[LFACE_VECTOR_SIZE];
2286 int ok = get_lface_attributes (f, face_name, from, 0, named_merge_points);
2287
2288 if (ok)
2289 {
2290 GCPRO1 (named_merge_point.face_name);
2291 merge_face_vectors (f, from, to, named_merge_points);
2292 UNGCPRO;
2293 }
2294
2295 return ok;
2296 }
2297 else
2298 return 0;
2299 }
2300
2301
2302 /* Merge face attributes from the lisp `face reference' FACE_REF on
2303 frame F into the face attribute vector TO. If ERR_MSGS is non-zero,
2304 problems with FACE_REF cause an error message to be shown. Return
2305 non-zero if no errors occurred (regardless of the value of ERR_MSGS).
2306 NAMED_MERGE_POINTS is used to detect loops in face inheritance or
2307 list structure; it may be 0 for most callers.
2308
2309 FACE_REF may be a single face specification or a list of such
2310 specifications. Each face specification can be:
2311
2312 1. A symbol or string naming a Lisp face.
2313
2314 2. A property list of the form (KEYWORD VALUE ...) where each
2315 KEYWORD is a face attribute name, and value is an appropriate value
2316 for that attribute.
2317
2318 3. Conses or the form (FOREGROUND-COLOR . COLOR) or
2319 (BACKGROUND-COLOR . COLOR) where COLOR is a color name. This is
2320 for compatibility with 20.2.
2321
2322 Face specifications earlier in lists take precedence over later
2323 specifications. */
2324
2325 static int
2326 merge_face_ref (struct frame *f, Lisp_Object face_ref, Lisp_Object *to,
2327 int err_msgs, struct named_merge_point *named_merge_points)
2328 {
2329 int ok = 1; /* Succeed without an error? */
2330
2331 if (CONSP (face_ref))
2332 {
2333 Lisp_Object first = XCAR (face_ref);
2334
2335 if (EQ (first, Qforeground_color)
2336 || EQ (first, Qbackground_color))
2337 {
2338 /* One of (FOREGROUND-COLOR . COLOR) or (BACKGROUND-COLOR
2339 . COLOR). COLOR must be a string. */
2340 Lisp_Object color_name = XCDR (face_ref);
2341 Lisp_Object color = first;
2342
2343 if (STRINGP (color_name))
2344 {
2345 if (EQ (color, Qforeground_color))
2346 to[LFACE_FOREGROUND_INDEX] = color_name;
2347 else
2348 to[LFACE_BACKGROUND_INDEX] = color_name;
2349 }
2350 else
2351 {
2352 if (err_msgs)
2353 add_to_log ("Invalid face color", color_name, Qnil);
2354 ok = 0;
2355 }
2356 }
2357 else if (SYMBOLP (first)
2358 && *SDATA (SYMBOL_NAME (first)) == ':')
2359 {
2360 /* Assume this is the property list form. */
2361 while (CONSP (face_ref) && CONSP (XCDR (face_ref)))
2362 {
2363 Lisp_Object keyword = XCAR (face_ref);
2364 Lisp_Object value = XCAR (XCDR (face_ref));
2365 int err = 0;
2366
2367 /* Specifying `unspecified' is a no-op. */
2368 if (EQ (value, Qunspecified))
2369 ;
2370 else if (EQ (keyword, QCfamily))
2371 {
2372 if (STRINGP (value))
2373 {
2374 to[LFACE_FAMILY_INDEX] = value;
2375 font_clear_prop (to, FONT_FAMILY_INDEX);
2376 }
2377 else
2378 err = 1;
2379 }
2380 else if (EQ (keyword, QCfoundry))
2381 {
2382 if (STRINGP (value))
2383 {
2384 to[LFACE_FOUNDRY_INDEX] = value;
2385 font_clear_prop (to, FONT_FOUNDRY_INDEX);
2386 }
2387 else
2388 err = 1;
2389 }
2390 else if (EQ (keyword, QCheight))
2391 {
2392 Lisp_Object new_height =
2393 merge_face_heights (value, to[LFACE_HEIGHT_INDEX], Qnil);
2394
2395 if (! NILP (new_height))
2396 {
2397 to[LFACE_HEIGHT_INDEX] = new_height;
2398 font_clear_prop (to, FONT_SIZE_INDEX);
2399 }
2400 else
2401 err = 1;
2402 }
2403 else if (EQ (keyword, QCweight))
2404 {
2405 if (SYMBOLP (value) && FONT_WEIGHT_NAME_NUMERIC (value) >= 0)
2406 {
2407 to[LFACE_WEIGHT_INDEX] = value;
2408 font_clear_prop (to, FONT_WEIGHT_INDEX);
2409 }
2410 else
2411 err = 1;
2412 }
2413 else if (EQ (keyword, QCslant))
2414 {
2415 if (SYMBOLP (value) && FONT_SLANT_NAME_NUMERIC (value) >= 0)
2416 {
2417 to[LFACE_SLANT_INDEX] = value;
2418 font_clear_prop (to, FONT_SLANT_INDEX);
2419 }
2420 else
2421 err = 1;
2422 }
2423 else if (EQ (keyword, QCunderline))
2424 {
2425 if (EQ (value, Qt)
2426 || NILP (value)
2427 || STRINGP (value)
2428 || CONSP (value))
2429 to[LFACE_UNDERLINE_INDEX] = value;
2430 else
2431 err = 1;
2432 }
2433 else if (EQ (keyword, QCoverline))
2434 {
2435 if (EQ (value, Qt)
2436 || NILP (value)
2437 || STRINGP (value))
2438 to[LFACE_OVERLINE_INDEX] = value;
2439 else
2440 err = 1;
2441 }
2442 else if (EQ (keyword, QCstrike_through))
2443 {
2444 if (EQ (value, Qt)
2445 || NILP (value)
2446 || STRINGP (value))
2447 to[LFACE_STRIKE_THROUGH_INDEX] = value;
2448 else
2449 err = 1;
2450 }
2451 else if (EQ (keyword, QCbox))
2452 {
2453 if (EQ (value, Qt))
2454 value = make_number (1);
2455 if (INTEGERP (value)
2456 || STRINGP (value)
2457 || CONSP (value)
2458 || NILP (value))
2459 to[LFACE_BOX_INDEX] = value;
2460 else
2461 err = 1;
2462 }
2463 else if (EQ (keyword, QCinverse_video)
2464 || EQ (keyword, QCreverse_video))
2465 {
2466 if (EQ (value, Qt) || NILP (value))
2467 to[LFACE_INVERSE_INDEX] = value;
2468 else
2469 err = 1;
2470 }
2471 else if (EQ (keyword, QCforeground))
2472 {
2473 if (STRINGP (value))
2474 to[LFACE_FOREGROUND_INDEX] = value;
2475 else
2476 err = 1;
2477 }
2478 else if (EQ (keyword, QCbackground))
2479 {
2480 if (STRINGP (value))
2481 to[LFACE_BACKGROUND_INDEX] = value;
2482 else
2483 err = 1;
2484 }
2485 else if (EQ (keyword, QCstipple))
2486 {
2487 #if defined (HAVE_WINDOW_SYSTEM)
2488 Lisp_Object pixmap_p = Fbitmap_spec_p (value);
2489 if (!NILP (pixmap_p))
2490 to[LFACE_STIPPLE_INDEX] = value;
2491 else
2492 err = 1;
2493 #endif /* HAVE_WINDOW_SYSTEM */
2494 }
2495 else if (EQ (keyword, QCwidth))
2496 {
2497 if (SYMBOLP (value) && FONT_WIDTH_NAME_NUMERIC (value) >= 0)
2498 {
2499 to[LFACE_SWIDTH_INDEX] = value;
2500 font_clear_prop (to, FONT_WIDTH_INDEX);
2501 }
2502 else
2503 err = 1;
2504 }
2505 else if (EQ (keyword, QCfont))
2506 {
2507 if (FONTP (value))
2508 to[LFACE_FONT_INDEX] = value;
2509 else
2510 err = 1;
2511 }
2512 else if (EQ (keyword, QCinherit))
2513 {
2514 /* This is not really very useful; it's just like a
2515 normal face reference. */
2516 if (! merge_face_ref (f, value, to,
2517 err_msgs, named_merge_points))
2518 err = 1;
2519 }
2520 else
2521 err = 1;
2522
2523 if (err)
2524 {
2525 add_to_log ("Invalid face attribute %S %S", keyword, value);
2526 ok = 0;
2527 }
2528
2529 face_ref = XCDR (XCDR (face_ref));
2530 }
2531 }
2532 else
2533 {
2534 /* This is a list of face refs. Those at the beginning of the
2535 list take precedence over what follows, so we have to merge
2536 from the end backwards. */
2537 Lisp_Object next = XCDR (face_ref);
2538
2539 if (! NILP (next))
2540 ok = merge_face_ref (f, next, to, err_msgs, named_merge_points);
2541
2542 if (! merge_face_ref (f, first, to, err_msgs, named_merge_points))
2543 ok = 0;
2544 }
2545 }
2546 else
2547 {
2548 /* FACE_REF ought to be a face name. */
2549 ok = merge_named_face (f, face_ref, to, named_merge_points);
2550 if (!ok && err_msgs)
2551 add_to_log ("Invalid face reference: %s", face_ref, Qnil);
2552 }
2553
2554 return ok;
2555 }
2556
2557
2558 DEFUN ("internal-make-lisp-face", Finternal_make_lisp_face,
2559 Sinternal_make_lisp_face, 1, 2, 0,
2560 doc: /* Make FACE, a symbol, a Lisp face with all attributes nil.
2561 If FACE was not known as a face before, create a new one.
2562 If optional argument FRAME is specified, make a frame-local face
2563 for that frame. Otherwise operate on the global face definition.
2564 Value is a vector of face attributes. */)
2565 (Lisp_Object face, Lisp_Object frame)
2566 {
2567 Lisp_Object global_lface, lface;
2568 struct frame *f;
2569 int i;
2570
2571 CHECK_SYMBOL (face);
2572 global_lface = lface_from_face_name (NULL, face, 0);
2573
2574 if (!NILP (frame))
2575 {
2576 CHECK_LIVE_FRAME (frame);
2577 f = XFRAME (frame);
2578 lface = lface_from_face_name (f, face, 0);
2579 }
2580 else
2581 f = NULL, lface = Qnil;
2582
2583 /* Add a global definition if there is none. */
2584 if (NILP (global_lface))
2585 {
2586 global_lface = Fmake_vector (make_number (LFACE_VECTOR_SIZE),
2587 Qunspecified);
2588 ASET (global_lface, 0, Qface);
2589 Vface_new_frame_defaults = Fcons (Fcons (face, global_lface),
2590 Vface_new_frame_defaults);
2591
2592 /* Assign the new Lisp face a unique ID. The mapping from Lisp
2593 face id to Lisp face is given by the vector lface_id_to_name.
2594 The mapping from Lisp face to Lisp face id is given by the
2595 property `face' of the Lisp face name. */
2596 if (next_lface_id == lface_id_to_name_size)
2597 lface_id_to_name =
2598 xpalloc (lface_id_to_name, &lface_id_to_name_size, 1, MAX_FACE_ID,
2599 sizeof *lface_id_to_name);
2600
2601 lface_id_to_name[next_lface_id] = face;
2602 Fput (face, Qface, make_number (next_lface_id));
2603 ++next_lface_id;
2604 }
2605 else if (f == NULL)
2606 for (i = 1; i < LFACE_VECTOR_SIZE; ++i)
2607 ASET (global_lface, i, Qunspecified);
2608
2609 /* Add a frame-local definition. */
2610 if (f)
2611 {
2612 if (NILP (lface))
2613 {
2614 lface = Fmake_vector (make_number (LFACE_VECTOR_SIZE),
2615 Qunspecified);
2616 ASET (lface, 0, Qface);
2617 fset_face_alist (f, Fcons (Fcons (face, lface), f->face_alist));
2618 }
2619 else
2620 for (i = 1; i < LFACE_VECTOR_SIZE; ++i)
2621 ASET (lface, i, Qunspecified);
2622 }
2623 else
2624 lface = global_lface;
2625
2626 /* Changing a named face means that all realized faces depending on
2627 that face are invalid. Since we cannot tell which realized faces
2628 depend on the face, make sure they are all removed. This is done
2629 by incrementing face_change_count. The next call to
2630 init_iterator will then free realized faces. */
2631 if (NILP (Fget (face, Qface_no_inherit)))
2632 {
2633 ++face_change_count;
2634 ++windows_or_buffers_changed;
2635 }
2636
2637 eassert (LFACEP (lface));
2638 check_lface (lface);
2639 return lface;
2640 }
2641
2642
2643 DEFUN ("internal-lisp-face-p", Finternal_lisp_face_p,
2644 Sinternal_lisp_face_p, 1, 2, 0,
2645 doc: /* Return non-nil if FACE names a face.
2646 FACE should be a symbol or string.
2647 If optional second argument FRAME is non-nil, check for the
2648 existence of a frame-local face with name FACE on that frame.
2649 Otherwise check for the existence of a global face. */)
2650 (Lisp_Object face, Lisp_Object frame)
2651 {
2652 Lisp_Object lface;
2653
2654 face = resolve_face_name (face, 1);
2655
2656 if (!NILP (frame))
2657 {
2658 CHECK_LIVE_FRAME (frame);
2659 lface = lface_from_face_name (XFRAME (frame), face, 0);
2660 }
2661 else
2662 lface = lface_from_face_name (NULL, face, 0);
2663
2664 return lface;
2665 }
2666
2667
2668 DEFUN ("internal-copy-lisp-face", Finternal_copy_lisp_face,
2669 Sinternal_copy_lisp_face, 4, 4, 0,
2670 doc: /* Copy face FROM to TO.
2671 If FRAME is t, copy the global face definition of FROM.
2672 Otherwise, copy the frame-local definition of FROM on FRAME.
2673 If NEW-FRAME is a frame, copy that data into the frame-local
2674 definition of TO on NEW-FRAME. If NEW-FRAME is nil,
2675 FRAME controls where the data is copied to.
2676
2677 The value is TO. */)
2678 (Lisp_Object from, Lisp_Object to, Lisp_Object frame, Lisp_Object new_frame)
2679 {
2680 Lisp_Object lface, copy;
2681
2682 CHECK_SYMBOL (from);
2683 CHECK_SYMBOL (to);
2684
2685 if (EQ (frame, Qt))
2686 {
2687 /* Copy global definition of FROM. We don't make copies of
2688 strings etc. because 20.2 didn't do it either. */
2689 lface = lface_from_face_name (NULL, from, 1);
2690 copy = Finternal_make_lisp_face (to, Qnil);
2691 }
2692 else
2693 {
2694 /* Copy frame-local definition of FROM. */
2695 if (NILP (new_frame))
2696 new_frame = frame;
2697 CHECK_LIVE_FRAME (frame);
2698 CHECK_LIVE_FRAME (new_frame);
2699 lface = lface_from_face_name (XFRAME (frame), from, 1);
2700 copy = Finternal_make_lisp_face (to, new_frame);
2701 }
2702
2703 vcopy (copy, 0, XVECTOR (lface)->contents, LFACE_VECTOR_SIZE);
2704
2705 /* Changing a named face means that all realized faces depending on
2706 that face are invalid. Since we cannot tell which realized faces
2707 depend on the face, make sure they are all removed. This is done
2708 by incrementing face_change_count. The next call to
2709 init_iterator will then free realized faces. */
2710 if (NILP (Fget (to, Qface_no_inherit)))
2711 {
2712 ++face_change_count;
2713 ++windows_or_buffers_changed;
2714 }
2715
2716 return to;
2717 }
2718
2719
2720 DEFUN ("internal-set-lisp-face-attribute", Finternal_set_lisp_face_attribute,
2721 Sinternal_set_lisp_face_attribute, 3, 4, 0,
2722 doc: /* Set attribute ATTR of FACE to VALUE.
2723 FRAME being a frame means change the face on that frame.
2724 FRAME nil means change the face of the selected frame.
2725 FRAME t means change the default for new frames.
2726 FRAME 0 means change the face on all frames, and change the default
2727 for new frames. */)
2728 (Lisp_Object face, Lisp_Object attr, Lisp_Object value, Lisp_Object frame)
2729 {
2730 Lisp_Object lface;
2731 Lisp_Object old_value = Qnil;
2732 /* Set one of enum font_property_index (> 0) if ATTR is one of
2733 font-related attributes other than QCfont and QCfontset. */
2734 enum font_property_index prop_index = 0;
2735
2736 CHECK_SYMBOL (face);
2737 CHECK_SYMBOL (attr);
2738
2739 face = resolve_face_name (face, 1);
2740
2741 /* If FRAME is 0, change face on all frames, and change the
2742 default for new frames. */
2743 if (INTEGERP (frame) && XINT (frame) == 0)
2744 {
2745 Lisp_Object tail;
2746 Finternal_set_lisp_face_attribute (face, attr, value, Qt);
2747 FOR_EACH_FRAME (tail, frame)
2748 Finternal_set_lisp_face_attribute (face, attr, value, frame);
2749 return face;
2750 }
2751
2752 /* Set lface to the Lisp attribute vector of FACE. */
2753 if (EQ (frame, Qt))
2754 {
2755 lface = lface_from_face_name (NULL, face, 1);
2756
2757 /* When updating face-new-frame-defaults, we put :ignore-defface
2758 where the caller wants `unspecified'. This forces the frame
2759 defaults to ignore the defface value. Otherwise, the defface
2760 will take effect, which is generally not what is intended.
2761 The value of that attribute will be inherited from some other
2762 face during face merging. See internal_merge_in_global_face. */
2763 if (UNSPECIFIEDP (value))
2764 value = QCignore_defface;
2765 }
2766 else
2767 {
2768 if (NILP (frame))
2769 frame = selected_frame;
2770
2771 CHECK_LIVE_FRAME (frame);
2772 lface = lface_from_face_name (XFRAME (frame), face, 0);
2773
2774 /* If a frame-local face doesn't exist yet, create one. */
2775 if (NILP (lface))
2776 lface = Finternal_make_lisp_face (face, frame);
2777 }
2778
2779 if (EQ (attr, QCfamily))
2780 {
2781 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
2782 {
2783 CHECK_STRING (value);
2784 if (SCHARS (value) == 0)
2785 signal_error ("Invalid face family", value);
2786 }
2787 old_value = LFACE_FAMILY (lface);
2788 ASET (lface, LFACE_FAMILY_INDEX, value);
2789 prop_index = FONT_FAMILY_INDEX;
2790 }
2791 else if (EQ (attr, QCfoundry))
2792 {
2793 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
2794 {
2795 CHECK_STRING (value);
2796 if (SCHARS (value) == 0)
2797 signal_error ("Invalid face foundry", value);
2798 }
2799 old_value = LFACE_FOUNDRY (lface);
2800 ASET (lface, LFACE_FOUNDRY_INDEX, value);
2801 prop_index = FONT_FOUNDRY_INDEX;
2802 }
2803 else if (EQ (attr, QCheight))
2804 {
2805 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
2806 {
2807 if (EQ (face, Qdefault))
2808 {
2809 /* The default face must have an absolute size. */
2810 if (!INTEGERP (value) || XINT (value) <= 0)
2811 signal_error ("Default face height not absolute and positive",
2812 value);
2813 }
2814 else
2815 {
2816 /* For non-default faces, do a test merge with a random
2817 height to see if VALUE's ok. */
2818 Lisp_Object test = merge_face_heights (value,
2819 make_number (10),
2820 Qnil);
2821 if (!INTEGERP (test) || XINT (test) <= 0)
2822 signal_error ("Face height does not produce a positive integer",
2823 value);
2824 }
2825 }
2826
2827 old_value = LFACE_HEIGHT (lface);
2828 ASET (lface, LFACE_HEIGHT_INDEX, value);
2829 prop_index = FONT_SIZE_INDEX;
2830 }
2831 else if (EQ (attr, QCweight))
2832 {
2833 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
2834 {
2835 CHECK_SYMBOL (value);
2836 if (FONT_WEIGHT_NAME_NUMERIC (value) < 0)
2837 signal_error ("Invalid face weight", value);
2838 }
2839 old_value = LFACE_WEIGHT (lface);
2840 ASET (lface, LFACE_WEIGHT_INDEX, value);
2841 prop_index = FONT_WEIGHT_INDEX;
2842 }
2843 else if (EQ (attr, QCslant))
2844 {
2845 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
2846 {
2847 CHECK_SYMBOL (value);
2848 if (FONT_SLANT_NAME_NUMERIC (value) < 0)
2849 signal_error ("Invalid face slant", value);
2850 }
2851 old_value = LFACE_SLANT (lface);
2852 ASET (lface, LFACE_SLANT_INDEX, value);
2853 prop_index = FONT_SLANT_INDEX;
2854 }
2855 else if (EQ (attr, QCunderline))
2856 {
2857 int valid_p = 0;
2858
2859 if (UNSPECIFIEDP (value) || IGNORE_DEFFACE_P (value))
2860 valid_p = 1;
2861 else if (NILP (value) || EQ (value, Qt))
2862 valid_p = 1;
2863 else if (STRINGP (value) && SCHARS (value) > 0)
2864 valid_p = 1;
2865 else if (CONSP (value))
2866 {
2867 Lisp_Object key, val, list;
2868
2869 list = value;
2870 /* FIXME? This errs on the side of acceptance. Eg it accepts:
2871 (defface foo '((t :underline 'foo) "doc")
2872 Maybe this is intentional, maybe it isn't.
2873 Non-nil symbols other than t are not documented as being valid.
2874 Eg compare with inverse-video, which explicitly rejects them.
2875 */
2876 valid_p = 1;
2877
2878 while (!NILP (CAR_SAFE(list)))
2879 {
2880 key = CAR_SAFE (list);
2881 list = CDR_SAFE (list);
2882 val = CAR_SAFE (list);
2883 list = CDR_SAFE (list);
2884
2885 if (NILP (key) || NILP (val))
2886 {
2887 valid_p = 0;
2888 break;
2889 }
2890
2891 else if (EQ (key, QCcolor)
2892 && !(EQ (val, Qforeground_color)
2893 || (STRINGP (val) && SCHARS (val) > 0)))
2894 {
2895 valid_p = 0;
2896 break;
2897 }
2898
2899 else if (EQ (key, QCstyle)
2900 && !(EQ (val, Qline) || EQ (val, Qwave)))
2901 {
2902 valid_p = 0;
2903 break;
2904 }
2905 }
2906 }
2907
2908 if (!valid_p)
2909 signal_error ("Invalid face underline", value);
2910
2911 old_value = LFACE_UNDERLINE (lface);
2912 ASET (lface, LFACE_UNDERLINE_INDEX, value);
2913 }
2914 else if (EQ (attr, QCoverline))
2915 {
2916 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
2917 if ((SYMBOLP (value)
2918 && !EQ (value, Qt)
2919 && !EQ (value, Qnil))
2920 /* Overline color. */
2921 || (STRINGP (value)
2922 && SCHARS (value) == 0))
2923 signal_error ("Invalid face overline", value);
2924
2925 old_value = LFACE_OVERLINE (lface);
2926 ASET (lface, LFACE_OVERLINE_INDEX, value);
2927 }
2928 else if (EQ (attr, QCstrike_through))
2929 {
2930 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
2931 if ((SYMBOLP (value)
2932 && !EQ (value, Qt)
2933 && !EQ (value, Qnil))
2934 /* Strike-through color. */
2935 || (STRINGP (value)
2936 && SCHARS (value) == 0))
2937 signal_error ("Invalid face strike-through", value);
2938
2939 old_value = LFACE_STRIKE_THROUGH (lface);
2940 ASET (lface, LFACE_STRIKE_THROUGH_INDEX, value);
2941 }
2942 else if (EQ (attr, QCbox))
2943 {
2944 int valid_p;
2945
2946 /* Allow t meaning a simple box of width 1 in foreground color
2947 of the face. */
2948 if (EQ (value, Qt))
2949 value = make_number (1);
2950
2951 if (UNSPECIFIEDP (value) || IGNORE_DEFFACE_P (value))
2952 valid_p = 1;
2953 else if (NILP (value))
2954 valid_p = 1;
2955 else if (INTEGERP (value))
2956 valid_p = XINT (value) != 0;
2957 else if (STRINGP (value))
2958 valid_p = SCHARS (value) > 0;
2959 else if (CONSP (value))
2960 {
2961 Lisp_Object tem;
2962
2963 tem = value;
2964 while (CONSP (tem))
2965 {
2966 Lisp_Object k, v;
2967
2968 k = XCAR (tem);
2969 tem = XCDR (tem);
2970 if (!CONSP (tem))
2971 break;
2972 v = XCAR (tem);
2973 tem = XCDR (tem);
2974
2975 if (EQ (k, QCline_width))
2976 {
2977 if (!INTEGERP (v) || XINT (v) == 0)
2978 break;
2979 }
2980 else if (EQ (k, QCcolor))
2981 {
2982 if (!NILP (v) && (!STRINGP (v) || SCHARS (v) == 0))
2983 break;
2984 }
2985 else if (EQ (k, QCstyle))
2986 {
2987 if (!EQ (v, Qpressed_button) && !EQ (v, Qreleased_button))
2988 break;
2989 }
2990 else
2991 break;
2992 }
2993
2994 valid_p = NILP (tem);
2995 }
2996 else
2997 valid_p = 0;
2998
2999 if (!valid_p)
3000 signal_error ("Invalid face box", value);
3001
3002 old_value = LFACE_BOX (lface);
3003 ASET (lface, LFACE_BOX_INDEX, value);
3004 }
3005 else if (EQ (attr, QCinverse_video)
3006 || EQ (attr, QCreverse_video))
3007 {
3008 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
3009 {
3010 CHECK_SYMBOL (value);
3011 if (!EQ (value, Qt) && !NILP (value))
3012 signal_error ("Invalid inverse-video face attribute value", value);
3013 }
3014 old_value = LFACE_INVERSE (lface);
3015 ASET (lface, LFACE_INVERSE_INDEX, value);
3016 }
3017 else if (EQ (attr, QCforeground))
3018 {
3019 /* Compatibility with 20.x. */
3020 if (NILP (value))
3021 value = Qunspecified;
3022 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
3023 {
3024 /* Don't check for valid color names here because it depends
3025 on the frame (display) whether the color will be valid
3026 when the face is realized. */
3027 CHECK_STRING (value);
3028 if (SCHARS (value) == 0)
3029 signal_error ("Empty foreground color value", value);
3030 }
3031 old_value = LFACE_FOREGROUND (lface);
3032 ASET (lface, LFACE_FOREGROUND_INDEX, value);
3033 }
3034 else if (EQ (attr, QCbackground))
3035 {
3036 /* Compatibility with 20.x. */
3037 if (NILP (value))
3038 value = Qunspecified;
3039 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
3040 {
3041 /* Don't check for valid color names here because it depends
3042 on the frame (display) whether the color will be valid
3043 when the face is realized. */
3044 CHECK_STRING (value);
3045 if (SCHARS (value) == 0)
3046 signal_error ("Empty background color value", value);
3047 }
3048 old_value = LFACE_BACKGROUND (lface);
3049 ASET (lface, LFACE_BACKGROUND_INDEX, value);
3050 }
3051 else if (EQ (attr, QCstipple))
3052 {
3053 #if defined (HAVE_WINDOW_SYSTEM)
3054 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value)
3055 && !NILP (value)
3056 && NILP (Fbitmap_spec_p (value)))
3057 signal_error ("Invalid stipple attribute", value);
3058 old_value = LFACE_STIPPLE (lface);
3059 ASET (lface, LFACE_STIPPLE_INDEX, value);
3060 #endif /* HAVE_WINDOW_SYSTEM */
3061 }
3062 else if (EQ (attr, QCwidth))
3063 {
3064 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
3065 {
3066 CHECK_SYMBOL (value);
3067 if (FONT_WIDTH_NAME_NUMERIC (value) < 0)
3068 signal_error ("Invalid face width", value);
3069 }
3070 old_value = LFACE_SWIDTH (lface);
3071 ASET (lface, LFACE_SWIDTH_INDEX, value);
3072 prop_index = FONT_WIDTH_INDEX;
3073 }
3074 else if (EQ (attr, QCfont))
3075 {
3076 #ifdef HAVE_WINDOW_SYSTEM
3077 if (EQ (frame, Qt) || FRAME_WINDOW_P (XFRAME (frame)))
3078 {
3079 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value))
3080 {
3081 FRAME_PTR f;
3082
3083 old_value = LFACE_FONT (lface);
3084 if (! FONTP (value))
3085 {
3086 if (STRINGP (value))
3087 {
3088 Lisp_Object name = value;
3089 int fontset = fs_query_fontset (name, 0);
3090
3091 if (fontset >= 0)
3092 name = fontset_ascii (fontset);
3093 value = font_spec_from_name (name);
3094 if (!FONTP (value))
3095 signal_error ("Invalid font name", name);
3096 }
3097 else
3098 signal_error ("Invalid font or font-spec", value);
3099 }
3100 if (EQ (frame, Qt))
3101 f = XFRAME (selected_frame);
3102 else
3103 f = XFRAME (frame);
3104 if (! FONT_OBJECT_P (value))
3105 {
3106 Lisp_Object *attrs = XVECTOR (lface)->contents;
3107 Lisp_Object font_object;
3108
3109 font_object = font_load_for_lface (f, attrs, value);
3110 if (NILP (font_object))
3111 signal_error ("Font not available", value);
3112 value = font_object;
3113 }
3114 set_lface_from_font (f, lface, value, 1);
3115 }
3116 else
3117 ASET (lface, LFACE_FONT_INDEX, value);
3118 }
3119 #endif /* HAVE_WINDOW_SYSTEM */
3120 }
3121 else if (EQ (attr, QCfontset))
3122 {
3123 #ifdef HAVE_WINDOW_SYSTEM
3124 if (EQ (frame, Qt) || FRAME_WINDOW_P (XFRAME (frame)))
3125 {
3126 Lisp_Object tmp;
3127
3128 old_value = LFACE_FONTSET (lface);
3129 tmp = Fquery_fontset (value, Qnil);
3130 if (NILP (tmp))
3131 signal_error ("Invalid fontset name", value);
3132 ASET (lface, LFACE_FONTSET_INDEX, value = tmp);
3133 }
3134 #endif /* HAVE_WINDOW_SYSTEM */
3135 }
3136 else if (EQ (attr, QCinherit))
3137 {
3138 Lisp_Object tail;
3139 if (SYMBOLP (value))
3140 tail = Qnil;
3141 else
3142 for (tail = value; CONSP (tail); tail = XCDR (tail))
3143 if (!SYMBOLP (XCAR (tail)))
3144 break;
3145 if (NILP (tail))
3146 ASET (lface, LFACE_INHERIT_INDEX, value);
3147 else
3148 signal_error ("Invalid face inheritance", value);
3149 }
3150 else if (EQ (attr, QCbold))
3151 {
3152 old_value = LFACE_WEIGHT (lface);
3153 ASET (lface, LFACE_WEIGHT_INDEX, NILP (value) ? Qnormal : Qbold);
3154 prop_index = FONT_WEIGHT_INDEX;
3155 }
3156 else if (EQ (attr, QCitalic))
3157 {
3158 attr = QCslant;
3159 old_value = LFACE_SLANT (lface);
3160 ASET (lface, LFACE_SLANT_INDEX, NILP (value) ? Qnormal : Qitalic);
3161 prop_index = FONT_SLANT_INDEX;
3162 }
3163 else
3164 signal_error ("Invalid face attribute name", attr);
3165
3166 if (prop_index)
3167 {
3168 /* If a font-related attribute other than QCfont and QCfontset
3169 is specified, and if the original QCfont attribute has a font
3170 (font-spec or font-object), set the corresponding property in
3171 the font to nil so that the font selector doesn't think that
3172 the attribute is mandatory. Also, clear the average
3173 width. */
3174 font_clear_prop (XVECTOR (lface)->contents, prop_index);
3175 }
3176
3177 /* Changing a named face means that all realized faces depending on
3178 that face are invalid. Since we cannot tell which realized faces
3179 depend on the face, make sure they are all removed. This is done
3180 by incrementing face_change_count. The next call to
3181 init_iterator will then free realized faces. */
3182 if (!EQ (frame, Qt)
3183 && NILP (Fget (face, Qface_no_inherit))
3184 && NILP (Fequal (old_value, value)))
3185 {
3186 ++face_change_count;
3187 ++windows_or_buffers_changed;
3188 }
3189
3190 if (!UNSPECIFIEDP (value) && !IGNORE_DEFFACE_P (value)
3191 && NILP (Fequal (old_value, value)))
3192 {
3193 Lisp_Object param;
3194
3195 param = Qnil;
3196
3197 if (EQ (face, Qdefault))
3198 {
3199 #ifdef HAVE_WINDOW_SYSTEM
3200 /* Changed font-related attributes of the `default' face are
3201 reflected in changed `font' frame parameters. */
3202 if (FRAMEP (frame)
3203 && (prop_index || EQ (attr, QCfont))
3204 && lface_fully_specified_p (XVECTOR (lface)->contents))
3205 set_font_frame_param (frame, lface);
3206 else
3207 #endif /* HAVE_WINDOW_SYSTEM */
3208
3209 if (EQ (attr, QCforeground))
3210 param = Qforeground_color;
3211 else if (EQ (attr, QCbackground))
3212 param = Qbackground_color;
3213 }
3214 #ifdef HAVE_WINDOW_SYSTEM
3215 #ifndef HAVE_NTGUI
3216 else if (EQ (face, Qscroll_bar))
3217 {
3218 /* Changing the colors of `scroll-bar' sets frame parameters
3219 `scroll-bar-foreground' and `scroll-bar-background'. */
3220 if (EQ (attr, QCforeground))
3221 param = Qscroll_bar_foreground;
3222 else if (EQ (attr, QCbackground))
3223 param = Qscroll_bar_background;
3224 }
3225 #endif /* not HAVE_NTGUI */
3226 else if (EQ (face, Qborder))
3227 {
3228 /* Changing background color of `border' sets frame parameter
3229 `border-color'. */
3230 if (EQ (attr, QCbackground))
3231 param = Qborder_color;
3232 }
3233 else if (EQ (face, Qcursor))
3234 {
3235 /* Changing background color of `cursor' sets frame parameter
3236 `cursor-color'. */
3237 if (EQ (attr, QCbackground))
3238 param = Qcursor_color;
3239 }
3240 else if (EQ (face, Qmouse))
3241 {
3242 /* Changing background color of `mouse' sets frame parameter
3243 `mouse-color'. */
3244 if (EQ (attr, QCbackground))
3245 param = Qmouse_color;
3246 }
3247 #endif /* HAVE_WINDOW_SYSTEM */
3248 else if (EQ (face, Qmenu))
3249 {
3250 /* Indicate that we have to update the menu bar when
3251 realizing faces on FRAME. FRAME t change the
3252 default for new frames. We do this by setting
3253 setting the flag in new face caches */
3254 if (FRAMEP (frame))
3255 {
3256 struct frame *f = XFRAME (frame);
3257 if (FRAME_FACE_CACHE (f) == NULL)
3258 FRAME_FACE_CACHE (f) = make_face_cache (f);
3259 FRAME_FACE_CACHE (f)->menu_face_changed_p = 1;
3260 }
3261 else
3262 menu_face_changed_default = 1;
3263 }
3264
3265 if (!NILP (param))
3266 {
3267 if (EQ (frame, Qt))
3268 /* Update `default-frame-alist', which is used for new frames. */
3269 {
3270 store_in_alist (&Vdefault_frame_alist, param, value);
3271 }
3272 else
3273 /* Update the current frame's parameters. */
3274 {
3275 Lisp_Object cons;
3276 cons = XCAR (Vparam_value_alist);
3277 XSETCAR (cons, param);
3278 XSETCDR (cons, value);
3279 Fmodify_frame_parameters (frame, Vparam_value_alist);
3280 }
3281 }
3282 }
3283
3284 return face;
3285 }
3286
3287
3288 /* Update the corresponding face when frame parameter PARAM on frame F
3289 has been assigned the value NEW_VALUE. */
3290
3291 void
3292 update_face_from_frame_parameter (struct frame *f, Lisp_Object param,
3293 Lisp_Object new_value)
3294 {
3295 Lisp_Object face = Qnil;
3296 Lisp_Object lface;
3297
3298 /* If there are no faces yet, give up. This is the case when called
3299 from Fx_create_frame, and we do the necessary things later in
3300 face-set-after-frame-defaults. */
3301 if (NILP (f->face_alist))
3302 return;
3303
3304 if (EQ (param, Qforeground_color))
3305 {
3306 face = Qdefault;
3307 lface = lface_from_face_name (f, face, 1);
3308 ASET (lface, LFACE_FOREGROUND_INDEX,
3309 (STRINGP (new_value) ? new_value : Qunspecified));
3310 realize_basic_faces (f);
3311 }
3312 else if (EQ (param, Qbackground_color))
3313 {
3314 Lisp_Object frame;
3315
3316 /* Changing the background color might change the background
3317 mode, so that we have to load new defface specs.
3318 Call frame-set-background-mode to do that. */
3319 XSETFRAME (frame, f);
3320 call1 (Qframe_set_background_mode, frame);
3321
3322 face = Qdefault;
3323 lface = lface_from_face_name (f, face, 1);
3324 ASET (lface, LFACE_BACKGROUND_INDEX,
3325 (STRINGP (new_value) ? new_value : Qunspecified));
3326 realize_basic_faces (f);
3327 }
3328 #ifdef HAVE_WINDOW_SYSTEM
3329 else if (EQ (param, Qborder_color))
3330 {
3331 face = Qborder;
3332 lface = lface_from_face_name (f, face, 1);
3333 ASET (lface, LFACE_BACKGROUND_INDEX,
3334 (STRINGP (new_value) ? new_value : Qunspecified));
3335 }
3336 else if (EQ (param, Qcursor_color))
3337 {
3338 face = Qcursor;
3339 lface = lface_from_face_name (f, face, 1);
3340 ASET (lface, LFACE_BACKGROUND_INDEX,
3341 (STRINGP (new_value) ? new_value : Qunspecified));
3342 }
3343 else if (EQ (param, Qmouse_color))
3344 {
3345 face = Qmouse;
3346 lface = lface_from_face_name (f, face, 1);
3347 ASET (lface, LFACE_BACKGROUND_INDEX,
3348 (STRINGP (new_value) ? new_value : Qunspecified));
3349 }
3350 #endif
3351
3352 /* Changing a named face means that all realized faces depending on
3353 that face are invalid. Since we cannot tell which realized faces
3354 depend on the face, make sure they are all removed. This is done
3355 by incrementing face_change_count. The next call to
3356 init_iterator will then free realized faces. */
3357 if (!NILP (face)
3358 && NILP (Fget (face, Qface_no_inherit)))
3359 {
3360 ++face_change_count;
3361 ++windows_or_buffers_changed;
3362 }
3363 }
3364
3365
3366 #ifdef HAVE_WINDOW_SYSTEM
3367
3368 /* Set the `font' frame parameter of FRAME determined from the
3369 font-object set in `default' face attributes LFACE. */
3370
3371 static void
3372 set_font_frame_param (Lisp_Object frame, Lisp_Object lface)
3373 {
3374 struct frame *f = XFRAME (frame);
3375 Lisp_Object font;
3376
3377 if (FRAME_WINDOW_P (f)
3378 /* Don't do anything if the font is `unspecified'. This can
3379 happen during frame creation. */
3380 && (font = LFACE_FONT (lface),
3381 ! UNSPECIFIEDP (font)))
3382 {
3383 if (FONT_SPEC_P (font))
3384 {
3385 font = font_load_for_lface (f, XVECTOR (lface)->contents, font);
3386 if (NILP (font))
3387 return;
3388 ASET (lface, LFACE_FONT_INDEX, font);
3389 }
3390 f->default_face_done_p = 0;
3391 Fmodify_frame_parameters (frame, list1 (Fcons (Qfont, font)));
3392 }
3393 }
3394
3395 DEFUN ("internal-face-x-get-resource", Finternal_face_x_get_resource,
3396 Sinternal_face_x_get_resource, 2, 3, 0,
3397 doc: /* Get the value of X resource RESOURCE, class CLASS.
3398 Returned value is for the display of frame FRAME. If FRAME is not
3399 specified or nil, use selected frame. This function exists because
3400 ordinary `x-get-resource' doesn't take a frame argument. */)
3401 (Lisp_Object resource, Lisp_Object class, Lisp_Object frame)
3402 {
3403 Lisp_Object value = Qnil;
3404 struct frame *f;
3405
3406 CHECK_STRING (resource);
3407 CHECK_STRING (class);
3408 f = decode_live_frame (frame);
3409 block_input ();
3410 value = display_x_get_resource (FRAME_X_DISPLAY_INFO (f),
3411 resource, class, Qnil, Qnil);
3412 unblock_input ();
3413 return value;
3414 }
3415
3416
3417 /* Return resource string VALUE as a boolean value, i.e. nil, or t.
3418 If VALUE is "on" or "true", return t. If VALUE is "off" or
3419 "false", return nil. Otherwise, if SIGNAL_P is non-zero, signal an
3420 error; if SIGNAL_P is zero, return 0. */
3421
3422 static Lisp_Object
3423 face_boolean_x_resource_value (Lisp_Object value, int signal_p)
3424 {
3425 Lisp_Object result = make_number (0);
3426
3427 eassert (STRINGP (value));
3428
3429 if (xstrcasecmp (SSDATA (value), "on") == 0
3430 || xstrcasecmp (SSDATA (value), "true") == 0)
3431 result = Qt;
3432 else if (xstrcasecmp (SSDATA (value), "off") == 0
3433 || xstrcasecmp (SSDATA (value), "false") == 0)
3434 result = Qnil;
3435 else if (xstrcasecmp (SSDATA (value), "unspecified") == 0)
3436 result = Qunspecified;
3437 else if (signal_p)
3438 signal_error ("Invalid face attribute value from X resource", value);
3439
3440 return result;
3441 }
3442
3443
3444 DEFUN ("internal-set-lisp-face-attribute-from-resource",
3445 Finternal_set_lisp_face_attribute_from_resource,
3446 Sinternal_set_lisp_face_attribute_from_resource,
3447 3, 4, 0, doc: /* */)
3448 (Lisp_Object face, Lisp_Object attr, Lisp_Object value, Lisp_Object frame)
3449 {
3450 CHECK_SYMBOL (face);
3451 CHECK_SYMBOL (attr);
3452 CHECK_STRING (value);
3453
3454 if (xstrcasecmp (SSDATA (value), "unspecified") == 0)
3455 value = Qunspecified;
3456 else if (EQ (attr, QCheight))
3457 {
3458 value = Fstring_to_number (value, make_number (10));
3459 if (XINT (value) <= 0)
3460 signal_error ("Invalid face height from X resource", value);
3461 }
3462 else if (EQ (attr, QCbold) || EQ (attr, QCitalic))
3463 value = face_boolean_x_resource_value (value, 1);
3464 else if (EQ (attr, QCweight) || EQ (attr, QCslant) || EQ (attr, QCwidth))
3465 value = intern (SSDATA (value));
3466 else if (EQ (attr, QCreverse_video) || EQ (attr, QCinverse_video))
3467 value = face_boolean_x_resource_value (value, 1);
3468 else if (EQ (attr, QCunderline)
3469 || EQ (attr, QCoverline)
3470 || EQ (attr, QCstrike_through))
3471 {
3472 Lisp_Object boolean_value;
3473
3474 /* If the result of face_boolean_x_resource_value is t or nil,
3475 VALUE does NOT specify a color. */
3476 boolean_value = face_boolean_x_resource_value (value, 0);
3477 if (SYMBOLP (boolean_value))
3478 value = boolean_value;
3479 }
3480 else if (EQ (attr, QCbox) || EQ (attr, QCinherit))
3481 value = Fcar (Fread_from_string (value, Qnil, Qnil));
3482
3483 return Finternal_set_lisp_face_attribute (face, attr, value, frame);
3484 }
3485
3486 #endif /* HAVE_WINDOW_SYSTEM */
3487
3488 \f
3489 /***********************************************************************
3490 Menu face
3491 ***********************************************************************/
3492
3493 #if defined HAVE_X_WINDOWS && defined USE_X_TOOLKIT
3494
3495 /* Make menus on frame F appear as specified by the `menu' face. */
3496
3497 static void
3498 x_update_menu_appearance (struct frame *f)
3499 {
3500 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
3501 XrmDatabase rdb;
3502
3503 if (dpyinfo
3504 && (rdb = XrmGetDatabase (FRAME_X_DISPLAY (f)),
3505 rdb != NULL))
3506 {
3507 char line[512];
3508 char *buf = line;
3509 ptrdiff_t bufsize = sizeof line;
3510 Lisp_Object lface = lface_from_face_name (f, Qmenu, 1);
3511 struct face *face = FACE_FROM_ID (f, MENU_FACE_ID);
3512 const char *myname = SSDATA (Vx_resource_name);
3513 int changed_p = 0;
3514 #ifdef USE_MOTIF
3515 const char *popup_path = "popup_menu";
3516 #else
3517 const char *popup_path = "menu.popup";
3518 #endif
3519
3520 if (STRINGP (LFACE_FOREGROUND (lface)))
3521 {
3522 exprintf (&buf, &bufsize, line, -1, "%s.%s*foreground: %s",
3523 myname, popup_path,
3524 SDATA (LFACE_FOREGROUND (lface)));
3525 XrmPutLineResource (&rdb, line);
3526 exprintf (&buf, &bufsize, line, -1, "%s.pane.menubar*foreground: %s",
3527 myname, SDATA (LFACE_FOREGROUND (lface)));
3528 XrmPutLineResource (&rdb, line);
3529 changed_p = 1;
3530 }
3531
3532 if (STRINGP (LFACE_BACKGROUND (lface)))
3533 {
3534 exprintf (&buf, &bufsize, line, -1, "%s.%s*background: %s",
3535 myname, popup_path,
3536 SDATA (LFACE_BACKGROUND (lface)));
3537 XrmPutLineResource (&rdb, line);
3538
3539 exprintf (&buf, &bufsize, line, -1, "%s.pane.menubar*background: %s",
3540 myname, SDATA (LFACE_BACKGROUND (lface)));
3541 XrmPutLineResource (&rdb, line);
3542 changed_p = 1;
3543 }
3544
3545 if (face->font
3546 /* On Solaris 5.8, it's been reported that the `menu' face
3547 can be unspecified here, during startup. Why this
3548 happens remains unknown. -- cyd */
3549 && FONTP (LFACE_FONT (lface))
3550 && (!UNSPECIFIEDP (LFACE_FAMILY (lface))
3551 || !UNSPECIFIEDP (LFACE_FOUNDRY (lface))
3552 || !UNSPECIFIEDP (LFACE_SWIDTH (lface))
3553 || !UNSPECIFIEDP (LFACE_WEIGHT (lface))
3554 || !UNSPECIFIEDP (LFACE_SLANT (lface))
3555 || !UNSPECIFIEDP (LFACE_HEIGHT (lface))))
3556 {
3557 Lisp_Object xlfd = Ffont_xlfd_name (LFACE_FONT (lface), Qnil);
3558 #ifdef USE_MOTIF
3559 const char *suffix = "List";
3560 Bool motif = True;
3561 #else
3562 #if defined HAVE_X_I18N
3563
3564 const char *suffix = "Set";
3565 #else
3566 const char *suffix = "";
3567 #endif
3568 Bool motif = False;
3569 #endif
3570
3571 if (! NILP (xlfd))
3572 {
3573 #if defined HAVE_X_I18N
3574 char *fontsetname = xic_create_fontsetname (SSDATA (xlfd), motif);
3575 #else
3576 char *fontsetname = SSDATA (xlfd);
3577 #endif
3578 exprintf (&buf, &bufsize, line, -1, "%s.pane.menubar*font%s: %s",
3579 myname, suffix, fontsetname);
3580 XrmPutLineResource (&rdb, line);
3581
3582 exprintf (&buf, &bufsize, line, -1, "%s.%s*font%s: %s",
3583 myname, popup_path, suffix, fontsetname);
3584 XrmPutLineResource (&rdb, line);
3585 changed_p = 1;
3586 if (fontsetname != SSDATA (xlfd))
3587 xfree (fontsetname);
3588 }
3589 }
3590
3591 if (changed_p && f->output_data.x->menubar_widget)
3592 free_frame_menubar (f);
3593
3594 if (buf != line)
3595 xfree (buf);
3596 }
3597 }
3598
3599 #endif /* HAVE_X_WINDOWS && USE_X_TOOLKIT */
3600
3601
3602 DEFUN ("face-attribute-relative-p", Fface_attribute_relative_p,
3603 Sface_attribute_relative_p,
3604 2, 2, 0,
3605 doc: /* Check whether a face attribute value is relative.
3606 Specifically, this function returns t if the attribute ATTRIBUTE
3607 with the value VALUE is relative.
3608
3609 A relative value is one that doesn't entirely override whatever is
3610 inherited from another face. For most possible attributes,
3611 the only relative value that users see is `unspecified'.
3612 However, for :height, floating point values are also relative. */)
3613 (Lisp_Object attribute, Lisp_Object value)
3614 {
3615 if (EQ (value, Qunspecified) || (EQ (value, QCignore_defface)))
3616 return Qt;
3617 else if (EQ (attribute, QCheight))
3618 return INTEGERP (value) ? Qnil : Qt;
3619 else
3620 return Qnil;
3621 }
3622
3623 DEFUN ("merge-face-attribute", Fmerge_face_attribute, Smerge_face_attribute,
3624 3, 3, 0,
3625 doc: /* Return face ATTRIBUTE VALUE1 merged with VALUE2.
3626 If VALUE1 or VALUE2 are absolute (see `face-attribute-relative-p'), then
3627 the result will be absolute, otherwise it will be relative. */)
3628 (Lisp_Object attribute, Lisp_Object value1, Lisp_Object value2)
3629 {
3630 if (EQ (value1, Qunspecified) || EQ (value1, QCignore_defface))
3631 return value2;
3632 else if (EQ (attribute, QCheight))
3633 return merge_face_heights (value1, value2, value1);
3634 else
3635 return value1;
3636 }
3637
3638
3639 DEFUN ("internal-get-lisp-face-attribute", Finternal_get_lisp_face_attribute,
3640 Sinternal_get_lisp_face_attribute,
3641 2, 3, 0,
3642 doc: /* Return face attribute KEYWORD of face SYMBOL.
3643 If SYMBOL does not name a valid Lisp face or KEYWORD isn't a valid
3644 face attribute name, signal an error.
3645 If the optional argument FRAME is given, report on face SYMBOL in that
3646 frame. If FRAME is t, report on the defaults for face SYMBOL (for new
3647 frames). If FRAME is omitted or nil, use the selected frame. */)
3648 (Lisp_Object symbol, Lisp_Object keyword, Lisp_Object frame)
3649 {
3650 struct frame *f = EQ (frame, Qt) ? NULL : decode_live_frame (frame);
3651 Lisp_Object lface = lface_from_face_name (f, symbol, 1), value = Qnil;
3652
3653 CHECK_SYMBOL (symbol);
3654 CHECK_SYMBOL (keyword);
3655
3656 if (EQ (keyword, QCfamily))
3657 value = LFACE_FAMILY (lface);
3658 else if (EQ (keyword, QCfoundry))
3659 value = LFACE_FOUNDRY (lface);
3660 else if (EQ (keyword, QCheight))
3661 value = LFACE_HEIGHT (lface);
3662 else if (EQ (keyword, QCweight))
3663 value = LFACE_WEIGHT (lface);
3664 else if (EQ (keyword, QCslant))
3665 value = LFACE_SLANT (lface);
3666 else if (EQ (keyword, QCunderline))
3667 value = LFACE_UNDERLINE (lface);
3668 else if (EQ (keyword, QCoverline))
3669 value = LFACE_OVERLINE (lface);
3670 else if (EQ (keyword, QCstrike_through))
3671 value = LFACE_STRIKE_THROUGH (lface);
3672 else if (EQ (keyword, QCbox))
3673 value = LFACE_BOX (lface);
3674 else if (EQ (keyword, QCinverse_video)
3675 || EQ (keyword, QCreverse_video))
3676 value = LFACE_INVERSE (lface);
3677 else if (EQ (keyword, QCforeground))
3678 value = LFACE_FOREGROUND (lface);
3679 else if (EQ (keyword, QCbackground))
3680 value = LFACE_BACKGROUND (lface);
3681 else if (EQ (keyword, QCstipple))
3682 value = LFACE_STIPPLE (lface);
3683 else if (EQ (keyword, QCwidth))
3684 value = LFACE_SWIDTH (lface);
3685 else if (EQ (keyword, QCinherit))
3686 value = LFACE_INHERIT (lface);
3687 else if (EQ (keyword, QCfont))
3688 value = LFACE_FONT (lface);
3689 else if (EQ (keyword, QCfontset))
3690 value = LFACE_FONTSET (lface);
3691 else
3692 signal_error ("Invalid face attribute name", keyword);
3693
3694 if (IGNORE_DEFFACE_P (value))
3695 return Qunspecified;
3696
3697 return value;
3698 }
3699
3700
3701 DEFUN ("internal-lisp-face-attribute-values",
3702 Finternal_lisp_face_attribute_values,
3703 Sinternal_lisp_face_attribute_values, 1, 1, 0,
3704 doc: /* Return a list of valid discrete values for face attribute ATTR.
3705 Value is nil if ATTR doesn't have a discrete set of valid values. */)
3706 (Lisp_Object attr)
3707 {
3708 Lisp_Object result = Qnil;
3709
3710 CHECK_SYMBOL (attr);
3711
3712 if (EQ (attr, QCunderline) || EQ (attr, QCoverline)
3713 || EQ (attr, QCstrike_through)
3714 || EQ (attr, QCinverse_video) || EQ (attr, QCreverse_video))
3715 result = list2 (Qt, Qnil);
3716
3717 return result;
3718 }
3719
3720
3721 DEFUN ("internal-merge-in-global-face", Finternal_merge_in_global_face,
3722 Sinternal_merge_in_global_face, 2, 2, 0,
3723 doc: /* Add attributes from frame-default definition of FACE to FACE on FRAME.
3724 Default face attributes override any local face attributes. */)
3725 (Lisp_Object face, Lisp_Object frame)
3726 {
3727 int i;
3728 Lisp_Object global_lface, local_lface, *gvec, *lvec;
3729 struct frame *f = XFRAME (frame);
3730
3731 CHECK_LIVE_FRAME (frame);
3732 global_lface = lface_from_face_name (NULL, face, 1);
3733 local_lface = lface_from_face_name (f, face, 0);
3734 if (NILP (local_lface))
3735 local_lface = Finternal_make_lisp_face (face, frame);
3736
3737 /* Make every specified global attribute override the local one.
3738 BEWARE!! This is only used from `face-set-after-frame-default' where
3739 the local frame is defined from default specs in `face-defface-spec'
3740 and those should be overridden by global settings. Hence the strange
3741 "global before local" priority. */
3742 lvec = XVECTOR (local_lface)->contents;
3743 gvec = XVECTOR (global_lface)->contents;
3744 for (i = 1; i < LFACE_VECTOR_SIZE; ++i)
3745 if (IGNORE_DEFFACE_P (gvec[i]))
3746 ASET (local_lface, i, Qunspecified);
3747 else if (! UNSPECIFIEDP (gvec[i]))
3748 ASET (local_lface, i, AREF (global_lface, i));
3749
3750 /* If the default face was changed, update the face cache and the
3751 `font' frame parameter. */
3752 if (EQ (face, Qdefault))
3753 {
3754 struct face_cache *c = FRAME_FACE_CACHE (f);
3755 struct face *newface, *oldface = FACE_FROM_ID (f, DEFAULT_FACE_ID);
3756 Lisp_Object attrs[LFACE_VECTOR_SIZE];
3757
3758 /* This can be NULL (e.g., in batch mode). */
3759 if (oldface)
3760 {
3761 /* Ensure that the face vector is fully specified by merging
3762 the previously-cached vector. */
3763 memcpy (attrs, oldface->lface, sizeof attrs);
3764 merge_face_vectors (f, lvec, attrs, 0);
3765 vcopy (local_lface, 0, attrs, LFACE_VECTOR_SIZE);
3766 newface = realize_face (c, lvec, DEFAULT_FACE_ID);
3767
3768 if ((! UNSPECIFIEDP (gvec[LFACE_FAMILY_INDEX])
3769 || ! UNSPECIFIEDP (gvec[LFACE_FOUNDRY_INDEX])
3770 || ! UNSPECIFIEDP (gvec[LFACE_HEIGHT_INDEX])
3771 || ! UNSPECIFIEDP (gvec[LFACE_WEIGHT_INDEX])
3772 || ! UNSPECIFIEDP (gvec[LFACE_SLANT_INDEX])
3773 || ! UNSPECIFIEDP (gvec[LFACE_SWIDTH_INDEX])
3774 || ! UNSPECIFIEDP (gvec[LFACE_FONT_INDEX]))
3775 && newface->font)
3776 {
3777 Lisp_Object name = newface->font->props[FONT_NAME_INDEX];
3778 Fmodify_frame_parameters (frame, list1 (Fcons (Qfont, name)));
3779 }
3780
3781 if (STRINGP (gvec[LFACE_FOREGROUND_INDEX]))
3782 Fmodify_frame_parameters (frame,
3783 list1 (Fcons (Qforeground_color,
3784 gvec[LFACE_FOREGROUND_INDEX])));
3785
3786 if (STRINGP (gvec[LFACE_BACKGROUND_INDEX]))
3787 Fmodify_frame_parameters (frame,
3788 list1 (Fcons (Qbackground_color,
3789 gvec[LFACE_BACKGROUND_INDEX])));
3790 }
3791 }
3792
3793 return Qnil;
3794 }
3795
3796
3797 /* The following function is implemented for compatibility with 20.2.
3798 The function is used in x-resolve-fonts when it is asked to
3799 return fonts with the same size as the font of a face. This is
3800 done in fontset.el. */
3801
3802 DEFUN ("face-font", Fface_font, Sface_font, 1, 3, 0,
3803 doc: /* Return the font name of face FACE, or nil if it is unspecified.
3804 The font name is, by default, for ASCII characters.
3805 If the optional argument FRAME is given, report on face FACE in that frame.
3806 If FRAME is t, report on the defaults for face FACE (for new frames).
3807 The font default for a face is either nil, or a list
3808 of the form (bold), (italic) or (bold italic).
3809 If FRAME is omitted or nil, use the selected frame. And, in this case,
3810 if the optional third argument CHARACTER is given,
3811 return the font name used for CHARACTER. */)
3812 (Lisp_Object face, Lisp_Object frame, Lisp_Object character)
3813 {
3814 if (EQ (frame, Qt))
3815 {
3816 Lisp_Object result = Qnil;
3817 Lisp_Object lface = lface_from_face_name (NULL, face, 1);
3818
3819 if (!UNSPECIFIEDP (LFACE_WEIGHT (lface))
3820 && !EQ (LFACE_WEIGHT (lface), Qnormal))
3821 result = Fcons (Qbold, result);
3822
3823 if (!UNSPECIFIEDP (LFACE_SLANT (lface))
3824 && !EQ (LFACE_SLANT (lface), Qnormal))
3825 result = Fcons (Qitalic, result);
3826
3827 return result;
3828 }
3829 else
3830 {
3831 struct frame *f = decode_live_frame (frame);
3832 int face_id = lookup_named_face (f, face, 1);
3833 struct face *fface = FACE_FROM_ID (f, face_id);
3834
3835 if (! fface)
3836 return Qnil;
3837 #ifdef HAVE_WINDOW_SYSTEM
3838 if (FRAME_WINDOW_P (f) && !NILP (character))
3839 {
3840 CHECK_CHARACTER (character);
3841 face_id = FACE_FOR_CHAR (f, fface, XINT (character), -1, Qnil);
3842 fface = FACE_FROM_ID (f, face_id);
3843 }
3844 return (fface->font
3845 ? fface->font->props[FONT_NAME_INDEX]
3846 : Qnil);
3847 #else /* !HAVE_WINDOW_SYSTEM */
3848 return build_string (FRAME_MSDOS_P (f)
3849 ? "ms-dos"
3850 : FRAME_W32_P (f) ? "w32term"
3851 :"tty");
3852 #endif
3853 }
3854 }
3855
3856
3857 /* Compare face-attribute values v1 and v2 for equality. Value is non-zero if
3858 all attributes are `equal'. Tries to be fast because this function
3859 is called quite often. */
3860
3861 static int
3862 face_attr_equal_p (Lisp_Object v1, Lisp_Object v2)
3863 {
3864 /* Type can differ, e.g. when one attribute is unspecified, i.e. nil,
3865 and the other is specified. */
3866 if (XTYPE (v1) != XTYPE (v2))
3867 return 0;
3868
3869 if (EQ (v1, v2))
3870 return 1;
3871
3872 switch (XTYPE (v1))
3873 {
3874 case Lisp_String:
3875 if (SBYTES (v1) != SBYTES (v2))
3876 return 0;
3877
3878 return memcmp (SDATA (v1), SDATA (v2), SBYTES (v1)) == 0;
3879
3880 case_Lisp_Int:
3881 case Lisp_Symbol:
3882 return 0;
3883
3884 default:
3885 return !NILP (Fequal (v1, v2));
3886 }
3887 }
3888
3889
3890 /* Compare face vectors V1 and V2 for equality. Value is non-zero if
3891 all attributes are `equal'. Tries to be fast because this function
3892 is called quite often. */
3893
3894 static int
3895 lface_equal_p (Lisp_Object *v1, Lisp_Object *v2)
3896 {
3897 int i, equal_p = 1;
3898
3899 for (i = 1; i < LFACE_VECTOR_SIZE && equal_p; ++i)
3900 equal_p = face_attr_equal_p (v1[i], v2[i]);
3901
3902 return equal_p;
3903 }
3904
3905
3906 DEFUN ("internal-lisp-face-equal-p", Finternal_lisp_face_equal_p,
3907 Sinternal_lisp_face_equal_p, 2, 3, 0,
3908 doc: /* True if FACE1 and FACE2 are equal.
3909 If the optional argument FRAME is given, report on FACE1 and FACE2 in that frame.
3910 If FRAME is t, report on the defaults for FACE1 and FACE2 (for new frames).
3911 If FRAME is omitted or nil, use the selected frame. */)
3912 (Lisp_Object face1, Lisp_Object face2, Lisp_Object frame)
3913 {
3914 int equal_p;
3915 struct frame *f;
3916 Lisp_Object lface1, lface2;
3917
3918 /* Don't use decode_window_system_frame here because this function
3919 is called before X frames exist. At that time, if FRAME is nil,
3920 selected_frame will be used which is the frame dumped with
3921 Emacs. That frame is not an X frame. */
3922 f = EQ (frame, Qt) ? NULL : decode_live_frame (frame);
3923
3924 lface1 = lface_from_face_name (f, face1, 1);
3925 lface2 = lface_from_face_name (f, face2, 1);
3926 equal_p = lface_equal_p (XVECTOR (lface1)->contents,
3927 XVECTOR (lface2)->contents);
3928 return equal_p ? Qt : Qnil;
3929 }
3930
3931
3932 DEFUN ("internal-lisp-face-empty-p", Finternal_lisp_face_empty_p,
3933 Sinternal_lisp_face_empty_p, 1, 2, 0,
3934 doc: /* True if FACE has no attribute specified.
3935 If the optional argument FRAME is given, report on face FACE in that frame.
3936 If FRAME is t, report on the defaults for face FACE (for new frames).
3937 If FRAME is omitted or nil, use the selected frame. */)
3938 (Lisp_Object face, Lisp_Object frame)
3939 {
3940 struct frame *f = EQ (frame, Qt) ? NULL : decode_live_frame (frame);
3941 Lisp_Object lface = lface_from_face_name (f, face, 1);
3942 int i;
3943
3944 for (i = 1; i < LFACE_VECTOR_SIZE; ++i)
3945 if (!UNSPECIFIEDP (AREF (lface, i)))
3946 break;
3947
3948 return i == LFACE_VECTOR_SIZE ? Qt : Qnil;
3949 }
3950
3951
3952 DEFUN ("frame-face-alist", Fframe_face_alist, Sframe_face_alist,
3953 0, 1, 0,
3954 doc: /* Return an alist of frame-local faces defined on FRAME.
3955 For internal use only. */)
3956 (Lisp_Object frame)
3957 {
3958 return decode_live_frame (frame)->face_alist;
3959 }
3960
3961
3962 /* Return a hash code for Lisp string STRING with case ignored. Used
3963 below in computing a hash value for a Lisp face. */
3964
3965 static unsigned
3966 hash_string_case_insensitive (Lisp_Object string)
3967 {
3968 const unsigned char *s;
3969 unsigned hash = 0;
3970 eassert (STRINGP (string));
3971 for (s = SDATA (string); *s; ++s)
3972 hash = (hash << 1) ^ c_tolower (*s);
3973 return hash;
3974 }
3975
3976
3977 /* Return a hash code for face attribute vector V. */
3978
3979 static unsigned
3980 lface_hash (Lisp_Object *v)
3981 {
3982 return (hash_string_case_insensitive (v[LFACE_FAMILY_INDEX])
3983 ^ hash_string_case_insensitive (v[LFACE_FOUNDRY_INDEX])
3984 ^ hash_string_case_insensitive (v[LFACE_FOREGROUND_INDEX])
3985 ^ hash_string_case_insensitive (v[LFACE_BACKGROUND_INDEX])
3986 ^ XHASH (v[LFACE_WEIGHT_INDEX])
3987 ^ XHASH (v[LFACE_SLANT_INDEX])
3988 ^ XHASH (v[LFACE_SWIDTH_INDEX])
3989 ^ XHASH (v[LFACE_HEIGHT_INDEX]));
3990 }
3991
3992
3993 /* Return non-zero if LFACE1 and LFACE2 specify the same font (without
3994 considering charsets/registries). They do if they specify the same
3995 family, point size, weight, width, slant, and font. Both
3996 LFACE1 and LFACE2 must be fully-specified. */
3997
3998 static int
3999 lface_same_font_attributes_p (Lisp_Object *lface1, Lisp_Object *lface2)
4000 {
4001 eassert (lface_fully_specified_p (lface1)
4002 && lface_fully_specified_p (lface2));
4003 return (xstrcasecmp (SSDATA (lface1[LFACE_FAMILY_INDEX]),
4004 SSDATA (lface2[LFACE_FAMILY_INDEX])) == 0
4005 && xstrcasecmp (SSDATA (lface1[LFACE_FOUNDRY_INDEX]),
4006 SSDATA (lface2[LFACE_FOUNDRY_INDEX])) == 0
4007 && EQ (lface1[LFACE_HEIGHT_INDEX], lface2[LFACE_HEIGHT_INDEX])
4008 && EQ (lface1[LFACE_SWIDTH_INDEX], lface2[LFACE_SWIDTH_INDEX])
4009 && EQ (lface1[LFACE_WEIGHT_INDEX], lface2[LFACE_WEIGHT_INDEX])
4010 && EQ (lface1[LFACE_SLANT_INDEX], lface2[LFACE_SLANT_INDEX])
4011 && EQ (lface1[LFACE_FONT_INDEX], lface2[LFACE_FONT_INDEX])
4012 && (EQ (lface1[LFACE_FONTSET_INDEX], lface2[LFACE_FONTSET_INDEX])
4013 || (STRINGP (lface1[LFACE_FONTSET_INDEX])
4014 && STRINGP (lface2[LFACE_FONTSET_INDEX])
4015 && ! xstrcasecmp (SSDATA (lface1[LFACE_FONTSET_INDEX]),
4016 SSDATA (lface2[LFACE_FONTSET_INDEX]))))
4017 );
4018 }
4019
4020
4021 \f
4022 /***********************************************************************
4023 Realized Faces
4024 ***********************************************************************/
4025
4026 /* Allocate and return a new realized face for Lisp face attribute
4027 vector ATTR. */
4028
4029 static struct face *
4030 make_realized_face (Lisp_Object *attr)
4031 {
4032 struct face *face = xzalloc (sizeof *face);
4033 face->ascii_face = face;
4034 memcpy (face->lface, attr, sizeof face->lface);
4035 return face;
4036 }
4037
4038
4039 /* Free realized face FACE, including its X resources. FACE may
4040 be null. */
4041
4042 static void
4043 free_realized_face (struct frame *f, struct face *face)
4044 {
4045 if (face)
4046 {
4047 #ifdef HAVE_WINDOW_SYSTEM
4048 if (FRAME_WINDOW_P (f))
4049 {
4050 /* Free fontset of FACE if it is ASCII face. */
4051 if (face->fontset >= 0 && face == face->ascii_face)
4052 free_face_fontset (f, face);
4053 if (face->gc)
4054 {
4055 block_input ();
4056 if (face->font)
4057 font_done_for_face (f, face);
4058 x_free_gc (f, face->gc);
4059 face->gc = 0;
4060 unblock_input ();
4061 }
4062
4063 free_face_colors (f, face);
4064 x_destroy_bitmap (f, face->stipple);
4065 }
4066 #endif /* HAVE_WINDOW_SYSTEM */
4067
4068 xfree (face);
4069 }
4070 }
4071
4072
4073 /* Prepare face FACE for subsequent display on frame F. This
4074 allocated GCs if they haven't been allocated yet or have been freed
4075 by clearing the face cache. */
4076
4077 void
4078 prepare_face_for_display (struct frame *f, struct face *face)
4079 {
4080 #ifdef HAVE_WINDOW_SYSTEM
4081 eassert (FRAME_WINDOW_P (f));
4082
4083 if (face->gc == 0)
4084 {
4085 XGCValues xgcv;
4086 unsigned long mask = GCForeground | GCBackground | GCGraphicsExposures;
4087
4088 xgcv.foreground = face->foreground;
4089 xgcv.background = face->background;
4090 #ifdef HAVE_X_WINDOWS
4091 xgcv.graphics_exposures = False;
4092 #endif
4093
4094 block_input ();
4095 #ifdef HAVE_X_WINDOWS
4096 if (face->stipple)
4097 {
4098 xgcv.fill_style = FillOpaqueStippled;
4099 xgcv.stipple = x_bitmap_pixmap (f, face->stipple);
4100 mask |= GCFillStyle | GCStipple;
4101 }
4102 #endif
4103 face->gc = x_create_gc (f, mask, &xgcv);
4104 if (face->font)
4105 font_prepare_for_face (f, face);
4106 unblock_input ();
4107 }
4108 #endif /* HAVE_WINDOW_SYSTEM */
4109 }
4110
4111 \f
4112 /* Returns the `distance' between the colors X and Y. */
4113
4114 static int
4115 color_distance (XColor *x, XColor *y)
4116 {
4117 /* This formula is from a paper titled `Colour metric' by Thiadmer Riemersma.
4118 Quoting from that paper:
4119
4120 This formula has results that are very close to L*u*v* (with the
4121 modified lightness curve) and, more importantly, it is a more even
4122 algorithm: it does not have a range of colors where it suddenly
4123 gives far from optimal results.
4124
4125 See <http://www.compuphase.com/cmetric.htm> for more info. */
4126
4127 long r = (x->red - y->red) >> 8;
4128 long g = (x->green - y->green) >> 8;
4129 long b = (x->blue - y->blue) >> 8;
4130 long r_mean = (x->red + y->red) >> 9;
4131
4132 return
4133 (((512 + r_mean) * r * r) >> 8)
4134 + 4 * g * g
4135 + (((767 - r_mean) * b * b) >> 8);
4136 }
4137
4138
4139 DEFUN ("color-distance", Fcolor_distance, Scolor_distance, 2, 3, 0,
4140 doc: /* Return an integer distance between COLOR1 and COLOR2 on FRAME.
4141 COLOR1 and COLOR2 may be either strings containing the color name,
4142 or lists of the form (RED GREEN BLUE).
4143 If FRAME is unspecified or nil, the current frame is used. */)
4144 (Lisp_Object color1, Lisp_Object color2, Lisp_Object frame)
4145 {
4146 struct frame *f = decode_live_frame (frame);
4147 XColor cdef1, cdef2;
4148
4149 if (!(CONSP (color1) && parse_rgb_list (color1, &cdef1))
4150 && !(STRINGP (color1) && defined_color (f, SSDATA (color1), &cdef1, 0)))
4151 signal_error ("Invalid color", color1);
4152 if (!(CONSP (color2) && parse_rgb_list (color2, &cdef2))
4153 && !(STRINGP (color2) && defined_color (f, SSDATA (color2), &cdef2, 0)))
4154 signal_error ("Invalid color", color2);
4155
4156 return make_number (color_distance (&cdef1, &cdef2));
4157 }
4158
4159 \f
4160 /***********************************************************************
4161 Face Cache
4162 ***********************************************************************/
4163
4164 /* Return a new face cache for frame F. */
4165
4166 static struct face_cache *
4167 make_face_cache (struct frame *f)
4168 {
4169 struct face_cache *c;
4170 int size;
4171
4172 c = xzalloc (sizeof *c);
4173 size = FACE_CACHE_BUCKETS_SIZE * sizeof *c->buckets;
4174 c->buckets = xzalloc (size);
4175 c->size = 50;
4176 c->faces_by_id = xmalloc (c->size * sizeof *c->faces_by_id);
4177 c->f = f;
4178 c->menu_face_changed_p = menu_face_changed_default;
4179 return c;
4180 }
4181
4182
4183 /* Clear out all graphics contexts for all realized faces, except for
4184 the basic faces. This should be done from time to time just to avoid
4185 keeping too many graphics contexts that are no longer needed. */
4186
4187 static void
4188 clear_face_gcs (struct face_cache *c)
4189 {
4190 if (c && FRAME_WINDOW_P (c->f))
4191 {
4192 #ifdef HAVE_WINDOW_SYSTEM
4193 int i;
4194 for (i = BASIC_FACE_ID_SENTINEL; i < c->used; ++i)
4195 {
4196 struct face *face = c->faces_by_id[i];
4197 if (face && face->gc)
4198 {
4199 block_input ();
4200 if (face->font)
4201 font_done_for_face (c->f, face);
4202 x_free_gc (c->f, face->gc);
4203 face->gc = 0;
4204 unblock_input ();
4205 }
4206 }
4207 #endif /* HAVE_WINDOW_SYSTEM */
4208 }
4209 }
4210
4211
4212 /* Free all realized faces in face cache C, including basic faces.
4213 C may be null. If faces are freed, make sure the frame's current
4214 matrix is marked invalid, so that a display caused by an expose
4215 event doesn't try to use faces we destroyed. */
4216
4217 static void
4218 free_realized_faces (struct face_cache *c)
4219 {
4220 if (c && c->used)
4221 {
4222 int i, size;
4223 struct frame *f = c->f;
4224
4225 /* We must block input here because we can't process X events
4226 safely while only some faces are freed, or when the frame's
4227 current matrix still references freed faces. */
4228 block_input ();
4229
4230 for (i = 0; i < c->used; ++i)
4231 {
4232 free_realized_face (f, c->faces_by_id[i]);
4233 c->faces_by_id[i] = NULL;
4234 }
4235
4236 c->used = 0;
4237 size = FACE_CACHE_BUCKETS_SIZE * sizeof *c->buckets;
4238 memset (c->buckets, 0, size);
4239
4240 /* Must do a thorough redisplay the next time. Mark current
4241 matrices as invalid because they will reference faces freed
4242 above. This function is also called when a frame is
4243 destroyed. In this case, the root window of F is nil. */
4244 if (WINDOWP (f->root_window))
4245 {
4246 clear_current_matrices (f);
4247 ++windows_or_buffers_changed;
4248 }
4249
4250 unblock_input ();
4251 }
4252 }
4253
4254
4255 /* Free all realized faces on FRAME or on all frames if FRAME is nil.
4256 This is done after attributes of a named face have been changed,
4257 because we can't tell which realized faces depend on that face. */
4258
4259 void
4260 free_all_realized_faces (Lisp_Object frame)
4261 {
4262 if (NILP (frame))
4263 {
4264 Lisp_Object rest;
4265 FOR_EACH_FRAME (rest, frame)
4266 free_realized_faces (FRAME_FACE_CACHE (XFRAME (frame)));
4267 }
4268 else
4269 free_realized_faces (FRAME_FACE_CACHE (XFRAME (frame)));
4270 }
4271
4272
4273 /* Free face cache C and faces in it, including their X resources. */
4274
4275 static void
4276 free_face_cache (struct face_cache *c)
4277 {
4278 if (c)
4279 {
4280 free_realized_faces (c);
4281 xfree (c->buckets);
4282 xfree (c->faces_by_id);
4283 xfree (c);
4284 }
4285 }
4286
4287
4288 /* Cache realized face FACE in face cache C. HASH is the hash value
4289 of FACE. If FACE is for ASCII characters (i.e. FACE->ascii_face ==
4290 FACE), insert the new face to the beginning of the collision list
4291 of the face hash table of C. Otherwise, add the new face to the
4292 end of the collision list. This way, lookup_face can quickly find
4293 that a requested face is not cached. */
4294
4295 static void
4296 cache_face (struct face_cache *c, struct face *face, unsigned int hash)
4297 {
4298 int i = hash % FACE_CACHE_BUCKETS_SIZE;
4299
4300 face->hash = hash;
4301
4302 if (face->ascii_face != face)
4303 {
4304 struct face *last = c->buckets[i];
4305 if (last)
4306 {
4307 while (last->next)
4308 last = last->next;
4309 last->next = face;
4310 face->prev = last;
4311 face->next = NULL;
4312 }
4313 else
4314 {
4315 c->buckets[i] = face;
4316 face->prev = face->next = NULL;
4317 }
4318 }
4319 else
4320 {
4321 face->prev = NULL;
4322 face->next = c->buckets[i];
4323 if (face->next)
4324 face->next->prev = face;
4325 c->buckets[i] = face;
4326 }
4327
4328 /* Find a free slot in C->faces_by_id and use the index of the free
4329 slot as FACE->id. */
4330 for (i = 0; i < c->used; ++i)
4331 if (c->faces_by_id[i] == NULL)
4332 break;
4333 face->id = i;
4334
4335 #ifdef GLYPH_DEBUG
4336 /* Check that FACE got a unique id. */
4337 {
4338 int j, n;
4339 struct face *face1;
4340
4341 for (j = n = 0; j < FACE_CACHE_BUCKETS_SIZE; ++j)
4342 for (face1 = c->buckets[j]; face1; face1 = face1->next)
4343 if (face1->id == i)
4344 ++n;
4345
4346 eassert (n == 1);
4347 }
4348 #endif /* GLYPH_DEBUG */
4349
4350 /* Maybe enlarge C->faces_by_id. */
4351 if (i == c->used)
4352 {
4353 if (c->used == c->size)
4354 c->faces_by_id = xpalloc (c->faces_by_id, &c->size, 1, MAX_FACE_ID,
4355 sizeof *c->faces_by_id);
4356 c->used++;
4357 }
4358
4359 c->faces_by_id[i] = face;
4360 }
4361
4362
4363 /* Remove face FACE from cache C. */
4364
4365 static void
4366 uncache_face (struct face_cache *c, struct face *face)
4367 {
4368 int i = face->hash % FACE_CACHE_BUCKETS_SIZE;
4369
4370 if (face->prev)
4371 face->prev->next = face->next;
4372 else
4373 c->buckets[i] = face->next;
4374
4375 if (face->next)
4376 face->next->prev = face->prev;
4377
4378 c->faces_by_id[face->id] = NULL;
4379 if (face->id == c->used)
4380 --c->used;
4381 }
4382
4383
4384 /* Look up a realized face with face attributes ATTR in the face cache
4385 of frame F. The face will be used to display ASCII characters.
4386 Value is the ID of the face found. If no suitable face is found,
4387 realize a new one. */
4388
4389 static int
4390 lookup_face (struct frame *f, Lisp_Object *attr)
4391 {
4392 struct face_cache *cache = FRAME_FACE_CACHE (f);
4393 unsigned hash;
4394 int i;
4395 struct face *face;
4396
4397 eassert (cache != NULL);
4398 check_lface_attrs (attr);
4399
4400 /* Look up ATTR in the face cache. */
4401 hash = lface_hash (attr);
4402 i = hash % FACE_CACHE_BUCKETS_SIZE;
4403
4404 for (face = cache->buckets[i]; face; face = face->next)
4405 {
4406 if (face->ascii_face != face)
4407 {
4408 /* There's no more ASCII face. */
4409 face = NULL;
4410 break;
4411 }
4412 if (face->hash == hash
4413 && lface_equal_p (face->lface, attr))
4414 break;
4415 }
4416
4417 /* If not found, realize a new face. */
4418 if (face == NULL)
4419 face = realize_face (cache, attr, -1);
4420
4421 #ifdef GLYPH_DEBUG
4422 eassert (face == FACE_FROM_ID (f, face->id));
4423 #endif /* GLYPH_DEBUG */
4424
4425 return face->id;
4426 }
4427
4428 #ifdef HAVE_WINDOW_SYSTEM
4429 /* Look up a realized face that has the same attributes as BASE_FACE
4430 except for the font in the face cache of frame F. If FONT-OBJECT
4431 is not nil, it is an already opened font. If FONT-OBJECT is nil,
4432 the face has no font. Value is the ID of the face found. If no
4433 suitable face is found, realize a new one. */
4434
4435 int
4436 face_for_font (struct frame *f, Lisp_Object font_object, struct face *base_face)
4437 {
4438 struct face_cache *cache = FRAME_FACE_CACHE (f);
4439 unsigned hash;
4440 int i;
4441 struct face *face;
4442
4443 eassert (cache != NULL);
4444 base_face = base_face->ascii_face;
4445 hash = lface_hash (base_face->lface);
4446 i = hash % FACE_CACHE_BUCKETS_SIZE;
4447
4448 for (face = cache->buckets[i]; face; face = face->next)
4449 {
4450 if (face->ascii_face == face)
4451 continue;
4452 if (face->ascii_face == base_face
4453 && face->font == (NILP (font_object) ? NULL
4454 : XFONT_OBJECT (font_object))
4455 && lface_equal_p (face->lface, base_face->lface))
4456 return face->id;
4457 }
4458
4459 /* If not found, realize a new face. */
4460 face = realize_non_ascii_face (f, font_object, base_face);
4461 return face->id;
4462 }
4463 #endif /* HAVE_WINDOW_SYSTEM */
4464
4465 /* Return the face id of the realized face for named face SYMBOL on
4466 frame F suitable for displaying ASCII characters. Value is -1 if
4467 the face couldn't be determined, which might happen if the default
4468 face isn't realized and cannot be realized. */
4469
4470 int
4471 lookup_named_face (struct frame *f, Lisp_Object symbol, int signal_p)
4472 {
4473 Lisp_Object attrs[LFACE_VECTOR_SIZE];
4474 Lisp_Object symbol_attrs[LFACE_VECTOR_SIZE];
4475 struct face *default_face = FACE_FROM_ID (f, DEFAULT_FACE_ID);
4476
4477 if (default_face == NULL)
4478 {
4479 if (!realize_basic_faces (f))
4480 return -1;
4481 default_face = FACE_FROM_ID (f, DEFAULT_FACE_ID);
4482 if (default_face == NULL)
4483 emacs_abort (); /* realize_basic_faces must have set it up */
4484 }
4485
4486 if (! get_lface_attributes (f, symbol, symbol_attrs, signal_p, 0))
4487 return -1;
4488
4489 memcpy (attrs, default_face->lface, sizeof attrs);
4490 merge_face_vectors (f, symbol_attrs, attrs, 0);
4491
4492 return lookup_face (f, attrs);
4493 }
4494
4495
4496 /* Return the display face-id of the basic face whose canonical face-id
4497 is FACE_ID. The return value will usually simply be FACE_ID, unless that
4498 basic face has bee remapped via Vface_remapping_alist. This function is
4499 conservative: if something goes wrong, it will simply return FACE_ID
4500 rather than signal an error. */
4501
4502 int
4503 lookup_basic_face (struct frame *f, int face_id)
4504 {
4505 Lisp_Object name, mapping;
4506 int remapped_face_id;
4507
4508 if (NILP (Vface_remapping_alist))
4509 return face_id; /* Nothing to do. */
4510
4511 switch (face_id)
4512 {
4513 case DEFAULT_FACE_ID: name = Qdefault; break;
4514 case MODE_LINE_FACE_ID: name = Qmode_line; break;
4515 case MODE_LINE_INACTIVE_FACE_ID: name = Qmode_line_inactive; break;
4516 case HEADER_LINE_FACE_ID: name = Qheader_line; break;
4517 case TOOL_BAR_FACE_ID: name = Qtool_bar; break;
4518 case FRINGE_FACE_ID: name = Qfringe; break;
4519 case SCROLL_BAR_FACE_ID: name = Qscroll_bar; break;
4520 case BORDER_FACE_ID: name = Qborder; break;
4521 case CURSOR_FACE_ID: name = Qcursor; break;
4522 case MOUSE_FACE_ID: name = Qmouse; break;
4523 case MENU_FACE_ID: name = Qmenu; break;
4524
4525 default:
4526 emacs_abort (); /* the caller is supposed to pass us a basic face id */
4527 }
4528
4529 /* Do a quick scan through Vface_remapping_alist, and return immediately
4530 if there is no remapping for face NAME. This is just an optimization
4531 for the very common no-remapping case. */
4532 mapping = assq_no_quit (name, Vface_remapping_alist);
4533 if (NILP (mapping))
4534 return face_id; /* Give up. */
4535
4536 /* If there is a remapping entry, lookup the face using NAME, which will
4537 handle the remapping too. */
4538 remapped_face_id = lookup_named_face (f, name, 0);
4539 if (remapped_face_id < 0)
4540 return face_id; /* Give up. */
4541
4542 return remapped_face_id;
4543 }
4544
4545
4546 /* Return a face for charset ASCII that is like the face with id
4547 FACE_ID on frame F, but has a font that is STEPS steps smaller.
4548 STEPS < 0 means larger. Value is the id of the face. */
4549
4550 int
4551 smaller_face (struct frame *f, int face_id, int steps)
4552 {
4553 #ifdef HAVE_WINDOW_SYSTEM
4554 struct face *face;
4555 Lisp_Object attrs[LFACE_VECTOR_SIZE];
4556 int pt, last_pt, last_height;
4557 int delta;
4558 int new_face_id;
4559 struct face *new_face;
4560
4561 /* If not called for an X frame, just return the original face. */
4562 if (FRAME_TERMCAP_P (f))
4563 return face_id;
4564
4565 /* Try in increments of 1/2 pt. */
4566 delta = steps < 0 ? 5 : -5;
4567 steps = eabs (steps);
4568
4569 face = FACE_FROM_ID (f, face_id);
4570 memcpy (attrs, face->lface, sizeof attrs);
4571 pt = last_pt = XFASTINT (attrs[LFACE_HEIGHT_INDEX]);
4572 new_face_id = face_id;
4573 last_height = FONT_HEIGHT (face->font);
4574
4575 while (steps
4576 && pt + delta > 0
4577 /* Give up if we cannot find a font within 10pt. */
4578 && eabs (last_pt - pt) < 100)
4579 {
4580 /* Look up a face for a slightly smaller/larger font. */
4581 pt += delta;
4582 attrs[LFACE_HEIGHT_INDEX] = make_number (pt);
4583 new_face_id = lookup_face (f, attrs);
4584 new_face = FACE_FROM_ID (f, new_face_id);
4585
4586 /* If height changes, count that as one step. */
4587 if ((delta < 0 && FONT_HEIGHT (new_face->font) < last_height)
4588 || (delta > 0 && FONT_HEIGHT (new_face->font) > last_height))
4589 {
4590 --steps;
4591 last_height = FONT_HEIGHT (new_face->font);
4592 last_pt = pt;
4593 }
4594 }
4595
4596 return new_face_id;
4597
4598 #else /* not HAVE_WINDOW_SYSTEM */
4599
4600 return face_id;
4601
4602 #endif /* not HAVE_WINDOW_SYSTEM */
4603 }
4604
4605
4606 /* Return a face for charset ASCII that is like the face with id
4607 FACE_ID on frame F, but has height HEIGHT. */
4608
4609 int
4610 face_with_height (struct frame *f, int face_id, int height)
4611 {
4612 #ifdef HAVE_WINDOW_SYSTEM
4613 struct face *face;
4614 Lisp_Object attrs[LFACE_VECTOR_SIZE];
4615
4616 if (FRAME_TERMCAP_P (f)
4617 || height <= 0)
4618 return face_id;
4619
4620 face = FACE_FROM_ID (f, face_id);
4621 memcpy (attrs, face->lface, sizeof attrs);
4622 attrs[LFACE_HEIGHT_INDEX] = make_number (height);
4623 font_clear_prop (attrs, FONT_SIZE_INDEX);
4624 face_id = lookup_face (f, attrs);
4625 #endif /* HAVE_WINDOW_SYSTEM */
4626
4627 return face_id;
4628 }
4629
4630
4631 /* Return the face id of the realized face for named face SYMBOL on
4632 frame F suitable for displaying ASCII characters, and use
4633 attributes of the face FACE_ID for attributes that aren't
4634 completely specified by SYMBOL. This is like lookup_named_face,
4635 except that the default attributes come from FACE_ID, not from the
4636 default face. FACE_ID is assumed to be already realized. */
4637
4638 int
4639 lookup_derived_face (struct frame *f, Lisp_Object symbol, int face_id,
4640 int signal_p)
4641 {
4642 Lisp_Object attrs[LFACE_VECTOR_SIZE];
4643 Lisp_Object symbol_attrs[LFACE_VECTOR_SIZE];
4644 struct face *default_face = FACE_FROM_ID (f, face_id);
4645
4646 if (!default_face)
4647 emacs_abort ();
4648
4649 if (!get_lface_attributes (f, symbol, symbol_attrs, signal_p, 0))
4650 return -1;
4651
4652 memcpy (attrs, default_face->lface, sizeof attrs);
4653 merge_face_vectors (f, symbol_attrs, attrs, 0);
4654 return lookup_face (f, attrs);
4655 }
4656
4657 DEFUN ("face-attributes-as-vector", Fface_attributes_as_vector,
4658 Sface_attributes_as_vector, 1, 1, 0,
4659 doc: /* Return a vector of face attributes corresponding to PLIST. */)
4660 (Lisp_Object plist)
4661 {
4662 Lisp_Object lface;
4663 lface = Fmake_vector (make_number (LFACE_VECTOR_SIZE),
4664 Qunspecified);
4665 merge_face_ref (XFRAME (selected_frame), plist, XVECTOR (lface)->contents,
4666 1, 0);
4667 return lface;
4668 }
4669
4670
4671 \f
4672 /***********************************************************************
4673 Face capability testing
4674 ***********************************************************************/
4675
4676
4677 /* If the distance (as returned by color_distance) between two colors is
4678 less than this, then they are considered the same, for determining
4679 whether a color is supported or not. The range of values is 0-65535. */
4680
4681 #define TTY_SAME_COLOR_THRESHOLD 10000
4682
4683 #ifdef HAVE_WINDOW_SYSTEM
4684
4685 /* Return non-zero if all the face attributes in ATTRS are supported
4686 on the window-system frame F.
4687
4688 The definition of `supported' is somewhat heuristic, but basically means
4689 that a face containing all the attributes in ATTRS, when merged with the
4690 default face for display, can be represented in a way that's
4691
4692 \(1) different in appearance than the default face, and
4693 \(2) `close in spirit' to what the attributes specify, if not exact. */
4694
4695 static int
4696 x_supports_face_attributes_p (struct frame *f,
4697 Lisp_Object attrs[LFACE_VECTOR_SIZE],
4698 struct face *def_face)
4699 {
4700 Lisp_Object *def_attrs = def_face->lface;
4701
4702 /* Check that other specified attributes are different that the default
4703 face. */
4704 if ((!UNSPECIFIEDP (attrs[LFACE_UNDERLINE_INDEX])
4705 && face_attr_equal_p (attrs[LFACE_UNDERLINE_INDEX],
4706 def_attrs[LFACE_UNDERLINE_INDEX]))
4707 || (!UNSPECIFIEDP (attrs[LFACE_INVERSE_INDEX])
4708 && face_attr_equal_p (attrs[LFACE_INVERSE_INDEX],
4709 def_attrs[LFACE_INVERSE_INDEX]))
4710 || (!UNSPECIFIEDP (attrs[LFACE_FOREGROUND_INDEX])
4711 && face_attr_equal_p (attrs[LFACE_FOREGROUND_INDEX],
4712 def_attrs[LFACE_FOREGROUND_INDEX]))
4713 || (!UNSPECIFIEDP (attrs[LFACE_BACKGROUND_INDEX])
4714 && face_attr_equal_p (attrs[LFACE_BACKGROUND_INDEX],
4715 def_attrs[LFACE_BACKGROUND_INDEX]))
4716 || (!UNSPECIFIEDP (attrs[LFACE_STIPPLE_INDEX])
4717 && face_attr_equal_p (attrs[LFACE_STIPPLE_INDEX],
4718 def_attrs[LFACE_STIPPLE_INDEX]))
4719 || (!UNSPECIFIEDP (attrs[LFACE_OVERLINE_INDEX])
4720 && face_attr_equal_p (attrs[LFACE_OVERLINE_INDEX],
4721 def_attrs[LFACE_OVERLINE_INDEX]))
4722 || (!UNSPECIFIEDP (attrs[LFACE_STRIKE_THROUGH_INDEX])
4723 && face_attr_equal_p (attrs[LFACE_STRIKE_THROUGH_INDEX],
4724 def_attrs[LFACE_STRIKE_THROUGH_INDEX]))
4725 || (!UNSPECIFIEDP (attrs[LFACE_BOX_INDEX])
4726 && face_attr_equal_p (attrs[LFACE_BOX_INDEX],
4727 def_attrs[LFACE_BOX_INDEX])))
4728 return 0;
4729
4730 /* Check font-related attributes, as those are the most commonly
4731 "unsupported" on a window-system (because of missing fonts). */
4732 if (!UNSPECIFIEDP (attrs[LFACE_FAMILY_INDEX])
4733 || !UNSPECIFIEDP (attrs[LFACE_FOUNDRY_INDEX])
4734 || !UNSPECIFIEDP (attrs[LFACE_HEIGHT_INDEX])
4735 || !UNSPECIFIEDP (attrs[LFACE_WEIGHT_INDEX])
4736 || !UNSPECIFIEDP (attrs[LFACE_SLANT_INDEX])
4737 || !UNSPECIFIEDP (attrs[LFACE_SWIDTH_INDEX]))
4738 {
4739 int face_id;
4740 struct face *face;
4741 Lisp_Object merged_attrs[LFACE_VECTOR_SIZE];
4742 int i;
4743
4744 memcpy (merged_attrs, def_attrs, sizeof merged_attrs);
4745
4746 merge_face_vectors (f, attrs, merged_attrs, 0);
4747
4748 face_id = lookup_face (f, merged_attrs);
4749 face = FACE_FROM_ID (f, face_id);
4750
4751 if (! face)
4752 error ("Cannot make face");
4753
4754 /* If the font is the same, or no font is found, then not
4755 supported. */
4756 if (face->font == def_face->font
4757 || ! face->font)
4758 return 0;
4759 for (i = FONT_TYPE_INDEX; i <= FONT_SIZE_INDEX; i++)
4760 if (! EQ (face->font->props[i], def_face->font->props[i]))
4761 {
4762 Lisp_Object s1, s2;
4763
4764 if (i < FONT_FOUNDRY_INDEX || i > FONT_REGISTRY_INDEX
4765 || face->font->driver->case_sensitive)
4766 return 1;
4767 s1 = SYMBOL_NAME (face->font->props[i]);
4768 s2 = SYMBOL_NAME (def_face->font->props[i]);
4769 if (! EQ (Fcompare_strings (s1, make_number (0), Qnil,
4770 s2, make_number (0), Qnil, Qt), Qt))
4771 return 1;
4772 }
4773 return 0;
4774 }
4775
4776 /* Everything checks out, this face is supported. */
4777 return 1;
4778 }
4779
4780 #endif /* HAVE_WINDOW_SYSTEM */
4781
4782 /* Return non-zero if all the face attributes in ATTRS are supported
4783 on the tty frame F.
4784
4785 The definition of `supported' is somewhat heuristic, but basically means
4786 that a face containing all the attributes in ATTRS, when merged
4787 with the default face for display, can be represented in a way that's
4788
4789 \(1) different in appearance than the default face, and
4790 \(2) `close in spirit' to what the attributes specify, if not exact.
4791
4792 Point (2) implies that a `:weight black' attribute will be satisfied
4793 by any terminal that can display bold, and a `:foreground "yellow"' as
4794 long as the terminal can display a yellowish color, but `:slant italic'
4795 will _not_ be satisfied by the tty display code's automatic
4796 substitution of a `dim' face for italic. */
4797
4798 static int
4799 tty_supports_face_attributes_p (struct frame *f,
4800 Lisp_Object attrs[LFACE_VECTOR_SIZE],
4801 struct face *def_face)
4802 {
4803 int weight, slant;
4804 Lisp_Object val, fg, bg;
4805 XColor fg_tty_color, fg_std_color;
4806 XColor bg_tty_color, bg_std_color;
4807 unsigned test_caps = 0;
4808 Lisp_Object *def_attrs = def_face->lface;
4809
4810 /* First check some easy-to-check stuff; ttys support none of the
4811 following attributes, so we can just return false if any are requested
4812 (even if `nominal' values are specified, we should still return false,
4813 as that will be the same value that the default face uses). We
4814 consider :slant unsupportable on ttys, even though the face code
4815 actually `fakes' them using a dim attribute if possible. This is
4816 because the faked result is too different from what the face
4817 specifies. */
4818 if (!UNSPECIFIEDP (attrs[LFACE_FAMILY_INDEX])
4819 || !UNSPECIFIEDP (attrs[LFACE_FOUNDRY_INDEX])
4820 || !UNSPECIFIEDP (attrs[LFACE_STIPPLE_INDEX])
4821 || !UNSPECIFIEDP (attrs[LFACE_HEIGHT_INDEX])
4822 || !UNSPECIFIEDP (attrs[LFACE_SWIDTH_INDEX])
4823 || !UNSPECIFIEDP (attrs[LFACE_OVERLINE_INDEX])
4824 || !UNSPECIFIEDP (attrs[LFACE_STRIKE_THROUGH_INDEX])
4825 || !UNSPECIFIEDP (attrs[LFACE_BOX_INDEX]))
4826 return 0;
4827
4828 /* Test for terminal `capabilities' (non-color character attributes). */
4829
4830 /* font weight (bold/dim) */
4831 val = attrs[LFACE_WEIGHT_INDEX];
4832 if (!UNSPECIFIEDP (val)
4833 && (weight = FONT_WEIGHT_NAME_NUMERIC (val), weight >= 0))
4834 {
4835 int def_weight = FONT_WEIGHT_NAME_NUMERIC (def_attrs[LFACE_WEIGHT_INDEX]);
4836
4837 if (weight > 100)
4838 {
4839 if (def_weight > 100)
4840 return 0; /* same as default */
4841 test_caps = TTY_CAP_BOLD;
4842 }
4843 else if (weight < 100)
4844 {
4845 if (def_weight < 100)
4846 return 0; /* same as default */
4847 test_caps = TTY_CAP_DIM;
4848 }
4849 else if (def_weight == 100)
4850 return 0; /* same as default */
4851 }
4852
4853 /* font slant */
4854 val = attrs[LFACE_SLANT_INDEX];
4855 if (!UNSPECIFIEDP (val)
4856 && (slant = FONT_SLANT_NAME_NUMERIC (val), slant >= 0))
4857 {
4858 int def_slant = FONT_SLANT_NAME_NUMERIC (def_attrs[LFACE_SLANT_INDEX]);
4859 if (slant == 100 || slant == def_slant)
4860 return 0; /* same as default */
4861 else
4862 test_caps |= TTY_CAP_ITALIC;
4863 }
4864
4865 /* underlining */
4866 val = attrs[LFACE_UNDERLINE_INDEX];
4867 if (!UNSPECIFIEDP (val))
4868 {
4869 if (STRINGP (val))
4870 return 0; /* ttys can't use colored underlines */
4871 else if (EQ (CAR_SAFE (val), QCstyle) && EQ (CAR_SAFE (CDR_SAFE (val)), Qwave))
4872 return 0; /* ttys can't use wave underlines */
4873 else if (face_attr_equal_p (val, def_attrs[LFACE_UNDERLINE_INDEX]))
4874 return 0; /* same as default */
4875 else
4876 test_caps |= TTY_CAP_UNDERLINE;
4877 }
4878
4879 /* inverse video */
4880 val = attrs[LFACE_INVERSE_INDEX];
4881 if (!UNSPECIFIEDP (val))
4882 {
4883 if (face_attr_equal_p (val, def_attrs[LFACE_INVERSE_INDEX]))
4884 return 0; /* same as default */
4885 else
4886 test_caps |= TTY_CAP_INVERSE;
4887 }
4888
4889
4890 /* Color testing. */
4891
4892 /* Default the color indices in FG_TTY_COLOR and BG_TTY_COLOR, since
4893 we use them when calling `tty_capable_p' below, even if the face
4894 specifies no colors. */
4895 fg_tty_color.pixel = FACE_TTY_DEFAULT_FG_COLOR;
4896 bg_tty_color.pixel = FACE_TTY_DEFAULT_BG_COLOR;
4897
4898 /* Check if foreground color is close enough. */
4899 fg = attrs[LFACE_FOREGROUND_INDEX];
4900 if (STRINGP (fg))
4901 {
4902 Lisp_Object def_fg = def_attrs[LFACE_FOREGROUND_INDEX];
4903
4904 if (face_attr_equal_p (fg, def_fg))
4905 return 0; /* same as default */
4906 else if (! tty_lookup_color (f, fg, &fg_tty_color, &fg_std_color))
4907 return 0; /* not a valid color */
4908 else if (color_distance (&fg_tty_color, &fg_std_color)
4909 > TTY_SAME_COLOR_THRESHOLD)
4910 return 0; /* displayed color is too different */
4911 else
4912 /* Make sure the color is really different than the default. */
4913 {
4914 XColor def_fg_color;
4915 if (tty_lookup_color (f, def_fg, &def_fg_color, 0)
4916 && (color_distance (&fg_tty_color, &def_fg_color)
4917 <= TTY_SAME_COLOR_THRESHOLD))
4918 return 0;
4919 }
4920 }
4921
4922 /* Check if background color is close enough. */
4923 bg = attrs[LFACE_BACKGROUND_INDEX];
4924 if (STRINGP (bg))
4925 {
4926 Lisp_Object def_bg = def_attrs[LFACE_BACKGROUND_INDEX];
4927
4928 if (face_attr_equal_p (bg, def_bg))
4929 return 0; /* same as default */
4930 else if (! tty_lookup_color (f, bg, &bg_tty_color, &bg_std_color))
4931 return 0; /* not a valid color */
4932 else if (color_distance (&bg_tty_color, &bg_std_color)
4933 > TTY_SAME_COLOR_THRESHOLD)
4934 return 0; /* displayed color is too different */
4935 else
4936 /* Make sure the color is really different than the default. */
4937 {
4938 XColor def_bg_color;
4939 if (tty_lookup_color (f, def_bg, &def_bg_color, 0)
4940 && (color_distance (&bg_tty_color, &def_bg_color)
4941 <= TTY_SAME_COLOR_THRESHOLD))
4942 return 0;
4943 }
4944 }
4945
4946 /* If both foreground and background are requested, see if the
4947 distance between them is OK. We just check to see if the distance
4948 between the tty's foreground and background is close enough to the
4949 distance between the standard foreground and background. */
4950 if (STRINGP (fg) && STRINGP (bg))
4951 {
4952 int delta_delta
4953 = (color_distance (&fg_std_color, &bg_std_color)
4954 - color_distance (&fg_tty_color, &bg_tty_color));
4955 if (delta_delta > TTY_SAME_COLOR_THRESHOLD
4956 || delta_delta < -TTY_SAME_COLOR_THRESHOLD)
4957 return 0;
4958 }
4959
4960
4961 /* See if the capabilities we selected above are supported, with the
4962 given colors. */
4963 if (test_caps != 0 &&
4964 ! tty_capable_p (FRAME_TTY (f), test_caps, fg_tty_color.pixel,
4965 bg_tty_color.pixel))
4966 return 0;
4967
4968
4969 /* Hmmm, everything checks out, this terminal must support this face. */
4970 return 1;
4971 }
4972
4973
4974 DEFUN ("display-supports-face-attributes-p",
4975 Fdisplay_supports_face_attributes_p, Sdisplay_supports_face_attributes_p,
4976 1, 2, 0,
4977 doc: /* Return non-nil if all the face attributes in ATTRIBUTES are supported.
4978 The optional argument DISPLAY can be a display name, a frame, or
4979 nil (meaning the selected frame's display).
4980
4981 The definition of `supported' is somewhat heuristic, but basically means
4982 that a face containing all the attributes in ATTRIBUTES, when merged
4983 with the default face for display, can be represented in a way that's
4984
4985 \(1) different in appearance than the default face, and
4986 \(2) `close in spirit' to what the attributes specify, if not exact.
4987
4988 Point (2) implies that a `:weight black' attribute will be satisfied by
4989 any display that can display bold, and a `:foreground \"yellow\"' as long
4990 as it can display a yellowish color, but `:slant italic' will _not_ be
4991 satisfied by the tty display code's automatic substitution of a `dim'
4992 face for italic. */)
4993 (Lisp_Object attributes, Lisp_Object display)
4994 {
4995 int supports = 0, i;
4996 Lisp_Object frame;
4997 struct frame *f;
4998 struct face *def_face;
4999 Lisp_Object attrs[LFACE_VECTOR_SIZE];
5000
5001 if (noninteractive || !initialized)
5002 /* We may not be able to access low-level face information in batch
5003 mode, or before being dumped, and this function is not going to
5004 be very useful in those cases anyway, so just give up. */
5005 return Qnil;
5006
5007 if (NILP (display))
5008 frame = selected_frame;
5009 else if (FRAMEP (display))
5010 frame = display;
5011 else
5012 {
5013 /* Find any frame on DISPLAY. */
5014 Lisp_Object tail;
5015
5016 frame = Qnil;
5017 FOR_EACH_FRAME (tail, frame)
5018 if (!NILP (Fequal (Fcdr (Fassq (Qdisplay,
5019 XFRAME (frame)->param_alist)),
5020 display)))
5021 break;
5022 }
5023
5024 CHECK_LIVE_FRAME (frame);
5025 f = XFRAME (frame);
5026
5027 for (i = 0; i < LFACE_VECTOR_SIZE; i++)
5028 attrs[i] = Qunspecified;
5029 merge_face_ref (f, attributes, attrs, 1, 0);
5030
5031 def_face = FACE_FROM_ID (f, DEFAULT_FACE_ID);
5032 if (def_face == NULL)
5033 {
5034 if (! realize_basic_faces (f))
5035 error ("Cannot realize default face");
5036 def_face = FACE_FROM_ID (f, DEFAULT_FACE_ID);
5037 if (def_face == NULL)
5038 emacs_abort (); /* realize_basic_faces must have set it up */
5039 }
5040
5041 /* Dispatch to the appropriate handler. */
5042 if (FRAME_TERMCAP_P (f) || FRAME_MSDOS_P (f))
5043 supports = tty_supports_face_attributes_p (f, attrs, def_face);
5044 #ifdef HAVE_WINDOW_SYSTEM
5045 else
5046 supports = x_supports_face_attributes_p (f, attrs, def_face);
5047 #endif
5048
5049 return supports ? Qt : Qnil;
5050 }
5051
5052 \f
5053 /***********************************************************************
5054 Font selection
5055 ***********************************************************************/
5056
5057 DEFUN ("internal-set-font-selection-order",
5058 Finternal_set_font_selection_order,
5059 Sinternal_set_font_selection_order, 1, 1, 0,
5060 doc: /* Set font selection order for face font selection to ORDER.
5061 ORDER must be a list of length 4 containing the symbols `:width',
5062 `:height', `:weight', and `:slant'. Face attributes appearing
5063 first in ORDER are matched first, e.g. if `:height' appears before
5064 `:weight' in ORDER, font selection first tries to find a font with
5065 a suitable height, and then tries to match the font weight.
5066 Value is ORDER. */)
5067 (Lisp_Object order)
5068 {
5069 Lisp_Object list;
5070 int i;
5071 int indices[DIM (font_sort_order)];
5072
5073 CHECK_LIST (order);
5074 memset (indices, 0, sizeof indices);
5075 i = 0;
5076
5077 for (list = order;
5078 CONSP (list) && i < DIM (indices);
5079 list = XCDR (list), ++i)
5080 {
5081 Lisp_Object attr = XCAR (list);
5082 int xlfd;
5083
5084 if (EQ (attr, QCwidth))
5085 xlfd = XLFD_SWIDTH;
5086 else if (EQ (attr, QCheight))
5087 xlfd = XLFD_POINT_SIZE;
5088 else if (EQ (attr, QCweight))
5089 xlfd = XLFD_WEIGHT;
5090 else if (EQ (attr, QCslant))
5091 xlfd = XLFD_SLANT;
5092 else
5093 break;
5094
5095 if (indices[i] != 0)
5096 break;
5097 indices[i] = xlfd;
5098 }
5099
5100 if (!NILP (list) || i != DIM (indices))
5101 signal_error ("Invalid font sort order", order);
5102 for (i = 0; i < DIM (font_sort_order); ++i)
5103 if (indices[i] == 0)
5104 signal_error ("Invalid font sort order", order);
5105
5106 if (memcmp (indices, font_sort_order, sizeof indices) != 0)
5107 {
5108 memcpy (font_sort_order, indices, sizeof font_sort_order);
5109 free_all_realized_faces (Qnil);
5110 }
5111
5112 font_update_sort_order (font_sort_order);
5113
5114 return Qnil;
5115 }
5116
5117
5118 DEFUN ("internal-set-alternative-font-family-alist",
5119 Finternal_set_alternative_font_family_alist,
5120 Sinternal_set_alternative_font_family_alist, 1, 1, 0,
5121 doc: /* Define alternative font families to try in face font selection.
5122 ALIST is an alist of (FAMILY ALTERNATIVE1 ALTERNATIVE2 ...) entries.
5123 Each ALTERNATIVE is tried in order if no fonts of font family FAMILY can
5124 be found. Value is ALIST. */)
5125 (Lisp_Object alist)
5126 {
5127 Lisp_Object entry, tail, tail2;
5128
5129 CHECK_LIST (alist);
5130 alist = Fcopy_sequence (alist);
5131 for (tail = alist; CONSP (tail); tail = XCDR (tail))
5132 {
5133 entry = XCAR (tail);
5134 CHECK_LIST (entry);
5135 entry = Fcopy_sequence (entry);
5136 XSETCAR (tail, entry);
5137 for (tail2 = entry; CONSP (tail2); tail2 = XCDR (tail2))
5138 XSETCAR (tail2, Fintern (XCAR (tail2), Qnil));
5139 }
5140
5141 Vface_alternative_font_family_alist = alist;
5142 free_all_realized_faces (Qnil);
5143 return alist;
5144 }
5145
5146
5147 DEFUN ("internal-set-alternative-font-registry-alist",
5148 Finternal_set_alternative_font_registry_alist,
5149 Sinternal_set_alternative_font_registry_alist, 1, 1, 0,
5150 doc: /* Define alternative font registries to try in face font selection.
5151 ALIST is an alist of (REGISTRY ALTERNATIVE1 ALTERNATIVE2 ...) entries.
5152 Each ALTERNATIVE is tried in order if no fonts of font registry REGISTRY can
5153 be found. Value is ALIST. */)
5154 (Lisp_Object alist)
5155 {
5156 Lisp_Object entry, tail, tail2;
5157
5158 CHECK_LIST (alist);
5159 alist = Fcopy_sequence (alist);
5160 for (tail = alist; CONSP (tail); tail = XCDR (tail))
5161 {
5162 entry = XCAR (tail);
5163 CHECK_LIST (entry);
5164 entry = Fcopy_sequence (entry);
5165 XSETCAR (tail, entry);
5166 for (tail2 = entry; CONSP (tail2); tail2 = XCDR (tail2))
5167 XSETCAR (tail2, Fdowncase (XCAR (tail2)));
5168 }
5169 Vface_alternative_font_registry_alist = alist;
5170 free_all_realized_faces (Qnil);
5171 return alist;
5172 }
5173
5174
5175 #ifdef HAVE_WINDOW_SYSTEM
5176
5177 /* Return the fontset id of the base fontset name or alias name given
5178 by the fontset attribute of ATTRS. Value is -1 if the fontset
5179 attribute of ATTRS doesn't name a fontset. */
5180
5181 static int
5182 face_fontset (Lisp_Object attrs[LFACE_VECTOR_SIZE])
5183 {
5184 Lisp_Object name;
5185
5186 name = attrs[LFACE_FONTSET_INDEX];
5187 if (!STRINGP (name))
5188 return -1;
5189 return fs_query_fontset (name, 0);
5190 }
5191
5192 #endif /* HAVE_WINDOW_SYSTEM */
5193
5194
5195 \f
5196 /***********************************************************************
5197 Face Realization
5198 ***********************************************************************/
5199
5200 /* Realize basic faces on frame F. Value is zero if frame parameters
5201 of F don't contain enough information needed to realize the default
5202 face. */
5203
5204 static int
5205 realize_basic_faces (struct frame *f)
5206 {
5207 int success_p = 0;
5208 ptrdiff_t count = SPECPDL_INDEX ();
5209
5210 /* Block input here so that we won't be surprised by an X expose
5211 event, for instance, without having the faces set up. */
5212 block_input ();
5213 specbind (Qscalable_fonts_allowed, Qt);
5214
5215 if (realize_default_face (f))
5216 {
5217 realize_named_face (f, Qmode_line, MODE_LINE_FACE_ID);
5218 realize_named_face (f, Qmode_line_inactive, MODE_LINE_INACTIVE_FACE_ID);
5219 realize_named_face (f, Qtool_bar, TOOL_BAR_FACE_ID);
5220 realize_named_face (f, Qfringe, FRINGE_FACE_ID);
5221 realize_named_face (f, Qheader_line, HEADER_LINE_FACE_ID);
5222 realize_named_face (f, Qscroll_bar, SCROLL_BAR_FACE_ID);
5223 realize_named_face (f, Qborder, BORDER_FACE_ID);
5224 realize_named_face (f, Qcursor, CURSOR_FACE_ID);
5225 realize_named_face (f, Qmouse, MOUSE_FACE_ID);
5226 realize_named_face (f, Qmenu, MENU_FACE_ID);
5227 realize_named_face (f, Qvertical_border, VERTICAL_BORDER_FACE_ID);
5228
5229 /* Reflect changes in the `menu' face in menu bars. */
5230 if (FRAME_FACE_CACHE (f)->menu_face_changed_p)
5231 {
5232 FRAME_FACE_CACHE (f)->menu_face_changed_p = 0;
5233 #ifdef USE_X_TOOLKIT
5234 if (FRAME_WINDOW_P (f))
5235 x_update_menu_appearance (f);
5236 #endif
5237 }
5238
5239 success_p = 1;
5240 }
5241
5242 unbind_to (count, Qnil);
5243 unblock_input ();
5244 return success_p;
5245 }
5246
5247
5248 /* Realize the default face on frame F. If the face is not fully
5249 specified, make it fully-specified. Attributes of the default face
5250 that are not explicitly specified are taken from frame parameters. */
5251
5252 static int
5253 realize_default_face (struct frame *f)
5254 {
5255 struct face_cache *c = FRAME_FACE_CACHE (f);
5256 Lisp_Object lface;
5257 Lisp_Object attrs[LFACE_VECTOR_SIZE];
5258 struct face *face;
5259
5260 /* If the `default' face is not yet known, create it. */
5261 lface = lface_from_face_name (f, Qdefault, 0);
5262 if (NILP (lface))
5263 {
5264 Lisp_Object frame;
5265 XSETFRAME (frame, f);
5266 lface = Finternal_make_lisp_face (Qdefault, frame);
5267 }
5268
5269 #ifdef HAVE_WINDOW_SYSTEM
5270 if (FRAME_WINDOW_P (f))
5271 {
5272 Lisp_Object font_object;
5273
5274 XSETFONT (font_object, FRAME_FONT (f));
5275 set_lface_from_font (f, lface, font_object, f->default_face_done_p);
5276 ASET (lface, LFACE_FONTSET_INDEX, fontset_name (FRAME_FONTSET (f)));
5277 f->default_face_done_p = 1;
5278 }
5279 #endif /* HAVE_WINDOW_SYSTEM */
5280
5281 if (!FRAME_WINDOW_P (f))
5282 {
5283 ASET (lface, LFACE_FAMILY_INDEX, build_string ("default"));
5284 ASET (lface, LFACE_FOUNDRY_INDEX, LFACE_FAMILY (lface));
5285 ASET (lface, LFACE_SWIDTH_INDEX, Qnormal);
5286 ASET (lface, LFACE_HEIGHT_INDEX, make_number (1));
5287 if (UNSPECIFIEDP (LFACE_WEIGHT (lface)))
5288 ASET (lface, LFACE_WEIGHT_INDEX, Qnormal);
5289 if (UNSPECIFIEDP (LFACE_SLANT (lface)))
5290 ASET (lface, LFACE_SLANT_INDEX, Qnormal);
5291 if (UNSPECIFIEDP (LFACE_FONTSET (lface)))
5292 ASET (lface, LFACE_FONTSET_INDEX, Qnil);
5293 }
5294
5295 if (UNSPECIFIEDP (LFACE_UNDERLINE (lface)))
5296 ASET (lface, LFACE_UNDERLINE_INDEX, Qnil);
5297
5298 if (UNSPECIFIEDP (LFACE_OVERLINE (lface)))
5299 ASET (lface, LFACE_OVERLINE_INDEX, Qnil);
5300
5301 if (UNSPECIFIEDP (LFACE_STRIKE_THROUGH (lface)))
5302 ASET (lface, LFACE_STRIKE_THROUGH_INDEX, Qnil);
5303
5304 if (UNSPECIFIEDP (LFACE_BOX (lface)))
5305 ASET (lface, LFACE_BOX_INDEX, Qnil);
5306
5307 if (UNSPECIFIEDP (LFACE_INVERSE (lface)))
5308 ASET (lface, LFACE_INVERSE_INDEX, Qnil);
5309
5310 if (UNSPECIFIEDP (LFACE_FOREGROUND (lface)))
5311 {
5312 /* This function is called so early that colors are not yet
5313 set in the frame parameter list. */
5314 Lisp_Object color = Fassq (Qforeground_color, f->param_alist);
5315
5316 if (CONSP (color) && STRINGP (XCDR (color)))
5317 ASET (lface, LFACE_FOREGROUND_INDEX, XCDR (color));
5318 else if (FRAME_WINDOW_P (f))
5319 return 0;
5320 else if (FRAME_INITIAL_P (f) || FRAME_TERMCAP_P (f) || FRAME_MSDOS_P (f))
5321 ASET (lface, LFACE_FOREGROUND_INDEX, build_string (unspecified_fg));
5322 else
5323 emacs_abort ();
5324 }
5325
5326 if (UNSPECIFIEDP (LFACE_BACKGROUND (lface)))
5327 {
5328 /* This function is called so early that colors are not yet
5329 set in the frame parameter list. */
5330 Lisp_Object color = Fassq (Qbackground_color, f->param_alist);
5331 if (CONSP (color) && STRINGP (XCDR (color)))
5332 ASET (lface, LFACE_BACKGROUND_INDEX, XCDR (color));
5333 else if (FRAME_WINDOW_P (f))
5334 return 0;
5335 else if (FRAME_INITIAL_P (f) || FRAME_TERMCAP_P (f) || FRAME_MSDOS_P (f))
5336 ASET (lface, LFACE_BACKGROUND_INDEX, build_string (unspecified_bg));
5337 else
5338 emacs_abort ();
5339 }
5340
5341 if (UNSPECIFIEDP (LFACE_STIPPLE (lface)))
5342 ASET (lface, LFACE_STIPPLE_INDEX, Qnil);
5343
5344 /* Realize the face; it must be fully-specified now. */
5345 eassert (lface_fully_specified_p (XVECTOR (lface)->contents));
5346 check_lface (lface);
5347 memcpy (attrs, XVECTOR (lface)->contents, sizeof attrs);
5348 face = realize_face (c, attrs, DEFAULT_FACE_ID);
5349
5350 #ifdef HAVE_WINDOW_SYSTEM
5351 #ifdef HAVE_X_WINDOWS
5352 if (FRAME_X_P (f) && face->font != FRAME_FONT (f))
5353 {
5354 /* This can happen when making a frame on a display that does
5355 not support the default font. */
5356 if (!face->font)
5357 return 0;
5358
5359 /* Otherwise, the font specified for the frame was not
5360 acceptable as a font for the default face (perhaps because
5361 auto-scaled fonts are rejected), so we must adjust the frame
5362 font. */
5363 x_set_font (f, LFACE_FONT (lface), Qnil);
5364 }
5365 #endif /* HAVE_X_WINDOWS */
5366 #endif /* HAVE_WINDOW_SYSTEM */
5367 return 1;
5368 }
5369
5370
5371 /* Realize basic faces other than the default face in face cache C.
5372 SYMBOL is the face name, ID is the face id the realized face must
5373 have. The default face must have been realized already. */
5374
5375 static void
5376 realize_named_face (struct frame *f, Lisp_Object symbol, int id)
5377 {
5378 struct face_cache *c = FRAME_FACE_CACHE (f);
5379 Lisp_Object lface = lface_from_face_name (f, symbol, 0);
5380 Lisp_Object attrs[LFACE_VECTOR_SIZE];
5381 Lisp_Object symbol_attrs[LFACE_VECTOR_SIZE];
5382
5383 /* The default face must exist and be fully specified. */
5384 get_lface_attributes_no_remap (f, Qdefault, attrs, 1);
5385 check_lface_attrs (attrs);
5386 eassert (lface_fully_specified_p (attrs));
5387
5388 /* If SYMBOL isn't know as a face, create it. */
5389 if (NILP (lface))
5390 {
5391 Lisp_Object frame;
5392 XSETFRAME (frame, f);
5393 lface = Finternal_make_lisp_face (symbol, frame);
5394 }
5395
5396 /* Merge SYMBOL's face with the default face. */
5397 get_lface_attributes_no_remap (f, symbol, symbol_attrs, 1);
5398 merge_face_vectors (f, symbol_attrs, attrs, 0);
5399
5400 /* Realize the face. */
5401 realize_face (c, attrs, id);
5402 }
5403
5404
5405 /* Realize the fully-specified face with attributes ATTRS in face
5406 cache CACHE for ASCII characters. If FORMER_FACE_ID is
5407 non-negative, it is an ID of face to remove before caching the new
5408 face. Value is a pointer to the newly created realized face. */
5409
5410 static struct face *
5411 realize_face (struct face_cache *cache, Lisp_Object attrs[LFACE_VECTOR_SIZE],
5412 int former_face_id)
5413 {
5414 struct face *face;
5415
5416 /* LFACE must be fully specified. */
5417 eassert (cache != NULL);
5418 check_lface_attrs (attrs);
5419
5420 if (former_face_id >= 0 && cache->used > former_face_id)
5421 {
5422 /* Remove the former face. */
5423 struct face *former_face = cache->faces_by_id[former_face_id];
5424 uncache_face (cache, former_face);
5425 free_realized_face (cache->f, former_face);
5426 SET_FRAME_GARBAGED (cache->f);
5427 }
5428
5429 if (FRAME_WINDOW_P (cache->f))
5430 face = realize_x_face (cache, attrs);
5431 else if (FRAME_TERMCAP_P (cache->f) || FRAME_MSDOS_P (cache->f))
5432 face = realize_tty_face (cache, attrs);
5433 else if (FRAME_INITIAL_P (cache->f))
5434 {
5435 /* Create a dummy face. */
5436 face = make_realized_face (attrs);
5437 }
5438 else
5439 emacs_abort ();
5440
5441 /* Insert the new face. */
5442 cache_face (cache, face, lface_hash (attrs));
5443 return face;
5444 }
5445
5446
5447 #ifdef HAVE_WINDOW_SYSTEM
5448 /* Realize the fully-specified face that uses FONT-OBJECT and has the
5449 same attributes as BASE_FACE except for the font on frame F.
5450 FONT-OBJECT may be nil, in which case, realized a face of
5451 no-font. */
5452
5453 static struct face *
5454 realize_non_ascii_face (struct frame *f, Lisp_Object font_object,
5455 struct face *base_face)
5456 {
5457 struct face_cache *cache = FRAME_FACE_CACHE (f);
5458 struct face *face;
5459
5460 face = xmalloc (sizeof *face);
5461 *face = *base_face;
5462 face->gc = 0;
5463 face->extra = NULL;
5464 face->overstrike
5465 = (! NILP (font_object)
5466 && FONT_WEIGHT_NAME_NUMERIC (face->lface[LFACE_WEIGHT_INDEX]) > 100
5467 && FONT_WEIGHT_NUMERIC (font_object) <= 100);
5468
5469 /* Don't try to free the colors copied bitwise from BASE_FACE. */
5470 face->colors_copied_bitwise_p = 1;
5471 face->font = NILP (font_object) ? NULL : XFONT_OBJECT (font_object);
5472 face->gc = 0;
5473
5474 cache_face (cache, face, face->hash);
5475
5476 return face;
5477 }
5478 #endif /* HAVE_WINDOW_SYSTEM */
5479
5480
5481 /* Realize the fully-specified face with attributes ATTRS in face
5482 cache CACHE for ASCII characters. Do it for X frame CACHE->f. If
5483 the new face doesn't share font with the default face, a fontname
5484 is allocated from the heap and set in `font_name' of the new face,
5485 but it is not yet loaded here. Value is a pointer to the newly
5486 created realized face. */
5487
5488 static struct face *
5489 realize_x_face (struct face_cache *cache, Lisp_Object attrs[LFACE_VECTOR_SIZE])
5490 {
5491 struct face *face = NULL;
5492 #ifdef HAVE_WINDOW_SYSTEM
5493 struct face *default_face;
5494 struct frame *f;
5495 Lisp_Object stipple, underline, overline, strike_through, box;
5496
5497 eassert (FRAME_WINDOW_P (cache->f));
5498
5499 /* Allocate a new realized face. */
5500 face = make_realized_face (attrs);
5501 face->ascii_face = face;
5502
5503 f = cache->f;
5504
5505 /* Determine the font to use. Most of the time, the font will be
5506 the same as the font of the default face, so try that first. */
5507 default_face = FACE_FROM_ID (f, DEFAULT_FACE_ID);
5508 if (default_face
5509 && lface_same_font_attributes_p (default_face->lface, attrs))
5510 {
5511 face->font = default_face->font;
5512 face->fontset
5513 = make_fontset_for_ascii_face (f, default_face->fontset, face);
5514 }
5515 else
5516 {
5517 /* If the face attribute ATTRS specifies a fontset, use it as
5518 the base of a new realized fontset. Otherwise, use the same
5519 base fontset as of the default face. The base determines
5520 registry and encoding of a font. It may also determine
5521 foundry and family. The other fields of font name pattern
5522 are constructed from ATTRS. */
5523 int fontset = face_fontset (attrs);
5524
5525 /* If we are realizing the default face, ATTRS should specify a
5526 fontset. In other words, if FONTSET is -1, we are not
5527 realizing the default face, thus the default face should have
5528 already been realized. */
5529 if (fontset == -1)
5530 {
5531 if (default_face)
5532 fontset = default_face->fontset;
5533 if (fontset == -1)
5534 emacs_abort ();
5535 }
5536 if (! FONT_OBJECT_P (attrs[LFACE_FONT_INDEX]))
5537 attrs[LFACE_FONT_INDEX]
5538 = font_load_for_lface (f, attrs, attrs[LFACE_FONT_INDEX]);
5539 if (FONT_OBJECT_P (attrs[LFACE_FONT_INDEX]))
5540 {
5541 face->font = XFONT_OBJECT (attrs[LFACE_FONT_INDEX]);
5542 face->fontset = make_fontset_for_ascii_face (f, fontset, face);
5543 }
5544 else
5545 {
5546 face->font = NULL;
5547 face->fontset = -1;
5548 }
5549 }
5550
5551 if (face->font
5552 && FONT_WEIGHT_NAME_NUMERIC (attrs[LFACE_WEIGHT_INDEX]) > 100
5553 && FONT_WEIGHT_NUMERIC (attrs[LFACE_FONT_INDEX]) <= 100)
5554 face->overstrike = 1;
5555
5556 /* Load colors, and set remaining attributes. */
5557
5558 load_face_colors (f, face, attrs);
5559
5560 /* Set up box. */
5561 box = attrs[LFACE_BOX_INDEX];
5562 if (STRINGP (box))
5563 {
5564 /* A simple box of line width 1 drawn in color given by
5565 the string. */
5566 face->box_color = load_color (f, face, attrs[LFACE_BOX_INDEX],
5567 LFACE_BOX_INDEX);
5568 face->box = FACE_SIMPLE_BOX;
5569 face->box_line_width = 1;
5570 }
5571 else if (INTEGERP (box))
5572 {
5573 /* Simple box of specified line width in foreground color of the
5574 face. */
5575 eassert (XINT (box) != 0);
5576 face->box = FACE_SIMPLE_BOX;
5577 face->box_line_width = XINT (box);
5578 face->box_color = face->foreground;
5579 face->box_color_defaulted_p = 1;
5580 }
5581 else if (CONSP (box))
5582 {
5583 /* `(:width WIDTH :color COLOR :shadow SHADOW)'. SHADOW
5584 being one of `raised' or `sunken'. */
5585 face->box = FACE_SIMPLE_BOX;
5586 face->box_color = face->foreground;
5587 face->box_color_defaulted_p = 1;
5588 face->box_line_width = 1;
5589
5590 while (CONSP (box))
5591 {
5592 Lisp_Object keyword, value;
5593
5594 keyword = XCAR (box);
5595 box = XCDR (box);
5596
5597 if (!CONSP (box))
5598 break;
5599 value = XCAR (box);
5600 box = XCDR (box);
5601
5602 if (EQ (keyword, QCline_width))
5603 {
5604 if (INTEGERP (value) && XINT (value) != 0)
5605 face->box_line_width = XINT (value);
5606 }
5607 else if (EQ (keyword, QCcolor))
5608 {
5609 if (STRINGP (value))
5610 {
5611 face->box_color = load_color (f, face, value,
5612 LFACE_BOX_INDEX);
5613 face->use_box_color_for_shadows_p = 1;
5614 }
5615 }
5616 else if (EQ (keyword, QCstyle))
5617 {
5618 if (EQ (value, Qreleased_button))
5619 face->box = FACE_RAISED_BOX;
5620 else if (EQ (value, Qpressed_button))
5621 face->box = FACE_SUNKEN_BOX;
5622 }
5623 }
5624 }
5625
5626 /* Text underline, overline, strike-through. */
5627
5628 underline = attrs[LFACE_UNDERLINE_INDEX];
5629 if (EQ (underline, Qt))
5630 {
5631 /* Use default color (same as foreground color). */
5632 face->underline_p = 1;
5633 face->underline_type = FACE_UNDER_LINE;
5634 face->underline_defaulted_p = 1;
5635 face->underline_color = 0;
5636 }
5637 else if (STRINGP (underline))
5638 {
5639 /* Use specified color. */
5640 face->underline_p = 1;
5641 face->underline_type = FACE_UNDER_LINE;
5642 face->underline_defaulted_p = 0;
5643 face->underline_color
5644 = load_color (f, face, underline,
5645 LFACE_UNDERLINE_INDEX);
5646 }
5647 else if (NILP (underline))
5648 {
5649 face->underline_p = 0;
5650 face->underline_defaulted_p = 0;
5651 face->underline_color = 0;
5652 }
5653 else if (CONSP (underline))
5654 {
5655 /* `(:color COLOR :style STYLE)'.
5656 STYLE being one of `line' or `wave'. */
5657 face->underline_p = 1;
5658 face->underline_color = 0;
5659 face->underline_defaulted_p = 1;
5660 face->underline_type = FACE_UNDER_LINE;
5661
5662 /* FIXME? This is also not robust about checking the precise form.
5663 See comments in Finternal_set_lisp_face_attribute. */
5664 while (CONSP (underline))
5665 {
5666 Lisp_Object keyword, value;
5667
5668 keyword = XCAR (underline);
5669 underline = XCDR (underline);
5670
5671 if (!CONSP (underline))
5672 break;
5673 value = XCAR (underline);
5674 underline = XCDR (underline);
5675
5676 if (EQ (keyword, QCcolor))
5677 {
5678 if (EQ (value, Qforeground_color))
5679 {
5680 face->underline_defaulted_p = 1;
5681 face->underline_color = 0;
5682 }
5683 else if (STRINGP (value))
5684 {
5685 face->underline_defaulted_p = 0;
5686 face->underline_color = load_color (f, face, value,
5687 LFACE_UNDERLINE_INDEX);
5688 }
5689 }
5690 else if (EQ (keyword, QCstyle))
5691 {
5692 if (EQ (value, Qline))
5693 face->underline_type = FACE_UNDER_LINE;
5694 else if (EQ (value, Qwave))
5695 face->underline_type = FACE_UNDER_WAVE;
5696 }
5697 }
5698 }
5699
5700 overline = attrs[LFACE_OVERLINE_INDEX];
5701 if (STRINGP (overline))
5702 {
5703 face->overline_color
5704 = load_color (f, face, attrs[LFACE_OVERLINE_INDEX],
5705 LFACE_OVERLINE_INDEX);
5706 face->overline_p = 1;
5707 }
5708 else if (EQ (overline, Qt))
5709 {
5710 face->overline_color = face->foreground;
5711 face->overline_color_defaulted_p = 1;
5712 face->overline_p = 1;
5713 }
5714
5715 strike_through = attrs[LFACE_STRIKE_THROUGH_INDEX];
5716 if (STRINGP (strike_through))
5717 {
5718 face->strike_through_color
5719 = load_color (f, face, attrs[LFACE_STRIKE_THROUGH_INDEX],
5720 LFACE_STRIKE_THROUGH_INDEX);
5721 face->strike_through_p = 1;
5722 }
5723 else if (EQ (strike_through, Qt))
5724 {
5725 face->strike_through_color = face->foreground;
5726 face->strike_through_color_defaulted_p = 1;
5727 face->strike_through_p = 1;
5728 }
5729
5730 stipple = attrs[LFACE_STIPPLE_INDEX];
5731 if (!NILP (stipple))
5732 face->stipple = load_pixmap (f, stipple, &face->pixmap_w, &face->pixmap_h);
5733 #endif /* HAVE_WINDOW_SYSTEM */
5734
5735 return face;
5736 }
5737
5738
5739 /* Map a specified color of face FACE on frame F to a tty color index.
5740 IDX is either LFACE_FOREGROUND_INDEX or LFACE_BACKGROUND_INDEX, and
5741 specifies which color to map. Set *DEFAULTED to 1 if mapping to the
5742 default foreground/background colors. */
5743
5744 static void
5745 map_tty_color (struct frame *f, struct face *face,
5746 enum lface_attribute_index idx, int *defaulted)
5747 {
5748 Lisp_Object frame, color, def;
5749 int foreground_p = idx == LFACE_FOREGROUND_INDEX;
5750 unsigned long default_pixel =
5751 foreground_p ? FACE_TTY_DEFAULT_FG_COLOR : FACE_TTY_DEFAULT_BG_COLOR;
5752 unsigned long pixel = default_pixel;
5753 #ifdef MSDOS
5754 unsigned long default_other_pixel =
5755 foreground_p ? FACE_TTY_DEFAULT_BG_COLOR : FACE_TTY_DEFAULT_FG_COLOR;
5756 #endif
5757
5758 eassert (idx == LFACE_FOREGROUND_INDEX || idx == LFACE_BACKGROUND_INDEX);
5759
5760 XSETFRAME (frame, f);
5761 color = face->lface[idx];
5762
5763 if (STRINGP (color)
5764 && SCHARS (color)
5765 && CONSP (Vtty_defined_color_alist)
5766 && (def = assq_no_quit (color, call1 (Qtty_color_alist, frame)),
5767 CONSP (def)))
5768 {
5769 /* Associations in tty-defined-color-alist are of the form
5770 (NAME INDEX R G B). We need the INDEX part. */
5771 pixel = XINT (XCAR (XCDR (def)));
5772 }
5773
5774 if (pixel == default_pixel && STRINGP (color))
5775 {
5776 pixel = load_color (f, face, color, idx);
5777
5778 #ifdef MSDOS
5779 /* If the foreground of the default face is the default color,
5780 use the foreground color defined by the frame. */
5781 if (FRAME_MSDOS_P (f))
5782 {
5783 if (pixel == default_pixel
5784 || pixel == FACE_TTY_DEFAULT_COLOR)
5785 {
5786 if (foreground_p)
5787 pixel = FRAME_FOREGROUND_PIXEL (f);
5788 else
5789 pixel = FRAME_BACKGROUND_PIXEL (f);
5790 face->lface[idx] = tty_color_name (f, pixel);
5791 *defaulted = 1;
5792 }
5793 else if (pixel == default_other_pixel)
5794 {
5795 if (foreground_p)
5796 pixel = FRAME_BACKGROUND_PIXEL (f);
5797 else
5798 pixel = FRAME_FOREGROUND_PIXEL (f);
5799 face->lface[idx] = tty_color_name (f, pixel);
5800 *defaulted = 1;
5801 }
5802 }
5803 #endif /* MSDOS */
5804 }
5805
5806 if (foreground_p)
5807 face->foreground = pixel;
5808 else
5809 face->background = pixel;
5810 }
5811
5812
5813 /* Realize the fully-specified face with attributes ATTRS in face
5814 cache CACHE for ASCII characters. Do it for TTY frame CACHE->f.
5815 Value is a pointer to the newly created realized face. */
5816
5817 static struct face *
5818 realize_tty_face (struct face_cache *cache,
5819 Lisp_Object attrs[LFACE_VECTOR_SIZE])
5820 {
5821 struct face *face;
5822 int weight, slant;
5823 int face_colors_defaulted = 0;
5824 struct frame *f = cache->f;
5825
5826 /* Frame must be a termcap frame. */
5827 eassert (FRAME_TERMCAP_P (cache->f) || FRAME_MSDOS_P (cache->f));
5828
5829 /* Allocate a new realized face. */
5830 face = make_realized_face (attrs);
5831 #if 0
5832 face->font_name = FRAME_MSDOS_P (cache->f) ? "ms-dos" : "tty";
5833 #endif
5834
5835 /* Map face attributes to TTY appearances. */
5836 weight = FONT_WEIGHT_NAME_NUMERIC (attrs[LFACE_WEIGHT_INDEX]);
5837 slant = FONT_SLANT_NAME_NUMERIC (attrs[LFACE_SLANT_INDEX]);
5838 if (weight > 100)
5839 face->tty_bold_p = 1;
5840 if (slant != 100)
5841 face->tty_italic_p = 1;
5842 if (!NILP (attrs[LFACE_UNDERLINE_INDEX]))
5843 face->tty_underline_p = 1;
5844 if (!NILP (attrs[LFACE_INVERSE_INDEX]))
5845 face->tty_reverse_p = 1;
5846
5847 /* Map color names to color indices. */
5848 map_tty_color (f, face, LFACE_FOREGROUND_INDEX, &face_colors_defaulted);
5849 map_tty_color (f, face, LFACE_BACKGROUND_INDEX, &face_colors_defaulted);
5850
5851 /* Swap colors if face is inverse-video. If the colors are taken
5852 from the frame colors, they are already inverted, since the
5853 frame-creation function calls x-handle-reverse-video. */
5854 if (face->tty_reverse_p && !face_colors_defaulted)
5855 {
5856 unsigned long tem = face->foreground;
5857 face->foreground = face->background;
5858 face->background = tem;
5859 }
5860
5861 if (tty_suppress_bold_inverse_default_colors_p
5862 && face->tty_bold_p
5863 && face->background == FACE_TTY_DEFAULT_FG_COLOR
5864 && face->foreground == FACE_TTY_DEFAULT_BG_COLOR)
5865 face->tty_bold_p = 0;
5866
5867 return face;
5868 }
5869
5870
5871 DEFUN ("tty-suppress-bold-inverse-default-colors",
5872 Ftty_suppress_bold_inverse_default_colors,
5873 Stty_suppress_bold_inverse_default_colors, 1, 1, 0,
5874 doc: /* Suppress/allow boldness of faces with inverse default colors.
5875 SUPPRESS non-nil means suppress it.
5876 This affects bold faces on TTYs whose foreground is the default background
5877 color of the display and whose background is the default foreground color.
5878 For such faces, the bold face attribute is ignored if this variable
5879 is non-nil. */)
5880 (Lisp_Object suppress)
5881 {
5882 tty_suppress_bold_inverse_default_colors_p = !NILP (suppress);
5883 ++face_change_count;
5884 return suppress;
5885 }
5886
5887
5888 \f
5889 /***********************************************************************
5890 Computing Faces
5891 ***********************************************************************/
5892
5893 /* Return the ID of the face to use to display character CH with face
5894 property PROP on frame F in current_buffer. */
5895
5896 int
5897 compute_char_face (struct frame *f, int ch, Lisp_Object prop)
5898 {
5899 int face_id;
5900
5901 if (NILP (BVAR (current_buffer, enable_multibyte_characters)))
5902 ch = 0;
5903
5904 if (NILP (prop))
5905 {
5906 struct face *face = FACE_FROM_ID (f, DEFAULT_FACE_ID);
5907 face_id = FACE_FOR_CHAR (f, face, ch, -1, Qnil);
5908 }
5909 else
5910 {
5911 Lisp_Object attrs[LFACE_VECTOR_SIZE];
5912 struct face *default_face = FACE_FROM_ID (f, DEFAULT_FACE_ID);
5913 memcpy (attrs, default_face->lface, sizeof attrs);
5914 merge_face_ref (f, prop, attrs, 1, 0);
5915 face_id = lookup_face (f, attrs);
5916 }
5917
5918 return face_id;
5919 }
5920
5921 /* Return the face ID associated with buffer position POS for
5922 displaying ASCII characters. Return in *ENDPTR the position at
5923 which a different face is needed, as far as text properties and
5924 overlays are concerned. W is a window displaying current_buffer.
5925
5926 REGION_BEG, REGION_END delimit the region, so it can be
5927 highlighted.
5928
5929 LIMIT is a position not to scan beyond. That is to limit the time
5930 this function can take.
5931
5932 If MOUSE is non-zero, use the character's mouse-face, not its face.
5933
5934 BASE_FACE_ID, if non-negative, specifies a base face id to use
5935 instead of DEFAULT_FACE_ID.
5936
5937 The face returned is suitable for displaying ASCII characters. */
5938
5939 int
5940 face_at_buffer_position (struct window *w, ptrdiff_t pos,
5941 ptrdiff_t region_beg, ptrdiff_t region_end,
5942 ptrdiff_t *endptr, ptrdiff_t limit,
5943 int mouse, int base_face_id)
5944 {
5945 struct frame *f = XFRAME (w->frame);
5946 Lisp_Object attrs[LFACE_VECTOR_SIZE];
5947 Lisp_Object prop, position;
5948 ptrdiff_t i, noverlays;
5949 Lisp_Object *overlay_vec;
5950 ptrdiff_t endpos;
5951 Lisp_Object propname = mouse ? Qmouse_face : Qface;
5952 Lisp_Object limit1, end;
5953 struct face *default_face;
5954
5955 /* W must display the current buffer. We could write this function
5956 to use the frame and buffer of W, but right now it doesn't. */
5957 /* eassert (XBUFFER (w->contents) == current_buffer); */
5958
5959 XSETFASTINT (position, pos);
5960
5961 endpos = ZV;
5962 if (pos < region_beg && region_beg < endpos)
5963 endpos = region_beg;
5964
5965 /* Get the `face' or `mouse_face' text property at POS, and
5966 determine the next position at which the property changes. */
5967 prop = Fget_text_property (position, propname, w->contents);
5968 XSETFASTINT (limit1, (limit < endpos ? limit : endpos));
5969 end = Fnext_single_property_change (position, propname, w->contents, limit1);
5970 if (INTEGERP (end))
5971 endpos = XINT (end);
5972
5973 /* Look at properties from overlays. */
5974 {
5975 ptrdiff_t next_overlay;
5976
5977 GET_OVERLAYS_AT (pos, overlay_vec, noverlays, &next_overlay, 0);
5978 if (next_overlay < endpos)
5979 endpos = next_overlay;
5980 }
5981
5982 *endptr = endpos;
5983
5984 {
5985 int face_id;
5986
5987 if (base_face_id >= 0)
5988 face_id = base_face_id;
5989 else if (NILP (Vface_remapping_alist))
5990 face_id = DEFAULT_FACE_ID;
5991 else
5992 face_id = lookup_basic_face (f, DEFAULT_FACE_ID);
5993
5994 default_face = FACE_FROM_ID (f, face_id);
5995 }
5996
5997 /* Optimize common cases where we can use the default face. */
5998 if (noverlays == 0
5999 && NILP (prop)
6000 && !(pos >= region_beg && pos < region_end))
6001 return default_face->id;
6002
6003 /* Begin with attributes from the default face. */
6004 memcpy (attrs, default_face->lface, sizeof attrs);
6005
6006 /* Merge in attributes specified via text properties. */
6007 if (!NILP (prop))
6008 merge_face_ref (f, prop, attrs, 1, 0);
6009
6010 /* Now merge the overlay data. */
6011 noverlays = sort_overlays (overlay_vec, noverlays, w);
6012 for (i = 0; i < noverlays; i++)
6013 {
6014 Lisp_Object oend;
6015 ptrdiff_t oendpos;
6016
6017 prop = Foverlay_get (overlay_vec[i], propname);
6018 if (!NILP (prop))
6019 merge_face_ref (f, prop, attrs, 1, 0);
6020
6021 oend = OVERLAY_END (overlay_vec[i]);
6022 oendpos = OVERLAY_POSITION (oend);
6023 if (oendpos < endpos)
6024 endpos = oendpos;
6025 }
6026
6027 /* If in the region, merge in the region face. */
6028 if (pos >= region_beg && pos < region_end)
6029 {
6030 merge_named_face (f, Qregion, attrs, 0);
6031
6032 if (region_end < endpos)
6033 endpos = region_end;
6034 }
6035
6036 *endptr = endpos;
6037
6038 /* Look up a realized face with the given face attributes,
6039 or realize a new one for ASCII characters. */
6040 return lookup_face (f, attrs);
6041 }
6042
6043 /* Return the face ID at buffer position POS for displaying ASCII
6044 characters associated with overlay strings for overlay OVERLAY.
6045
6046 Like face_at_buffer_position except for OVERLAY. Currently it
6047 simply disregards the `face' properties of all overlays. */
6048
6049 int
6050 face_for_overlay_string (struct window *w, ptrdiff_t pos,
6051 ptrdiff_t region_beg, ptrdiff_t region_end,
6052 ptrdiff_t *endptr, ptrdiff_t limit,
6053 int mouse, Lisp_Object overlay)
6054 {
6055 struct frame *f = XFRAME (w->frame);
6056 Lisp_Object attrs[LFACE_VECTOR_SIZE];
6057 Lisp_Object prop, position;
6058 ptrdiff_t endpos;
6059 Lisp_Object propname = mouse ? Qmouse_face : Qface;
6060 Lisp_Object limit1, end;
6061 struct face *default_face;
6062
6063 /* W must display the current buffer. We could write this function
6064 to use the frame and buffer of W, but right now it doesn't. */
6065 /* eassert (XBUFFER (w->contents) == current_buffer); */
6066
6067 XSETFASTINT (position, pos);
6068
6069 endpos = ZV;
6070 if (pos < region_beg && region_beg < endpos)
6071 endpos = region_beg;
6072
6073 /* Get the `face' or `mouse_face' text property at POS, and
6074 determine the next position at which the property changes. */
6075 prop = Fget_text_property (position, propname, w->contents);
6076 XSETFASTINT (limit1, (limit < endpos ? limit : endpos));
6077 end = Fnext_single_property_change (position, propname, w->contents, limit1);
6078 if (INTEGERP (end))
6079 endpos = XINT (end);
6080
6081 *endptr = endpos;
6082
6083 /* Optimize common case where we can use the default face. */
6084 if (NILP (prop)
6085 && !(pos >= region_beg && pos < region_end)
6086 && NILP (Vface_remapping_alist))
6087 return DEFAULT_FACE_ID;
6088
6089 /* Begin with attributes from the default face. */
6090 default_face = FACE_FROM_ID (f, lookup_basic_face (f, DEFAULT_FACE_ID));
6091 memcpy (attrs, default_face->lface, sizeof attrs);
6092
6093 /* Merge in attributes specified via text properties. */
6094 if (!NILP (prop))
6095 merge_face_ref (f, prop, attrs, 1, 0);
6096
6097 /* If in the region, merge in the region face. */
6098 if (pos >= region_beg && pos < region_end)
6099 {
6100 merge_named_face (f, Qregion, attrs, 0);
6101
6102 if (region_end < endpos)
6103 endpos = region_end;
6104 }
6105
6106 *endptr = endpos;
6107
6108 /* Look up a realized face with the given face attributes,
6109 or realize a new one for ASCII characters. */
6110 return lookup_face (f, attrs);
6111 }
6112
6113
6114 /* Compute the face at character position POS in Lisp string STRING on
6115 window W, for ASCII characters.
6116
6117 If STRING is an overlay string, it comes from position BUFPOS in
6118 current_buffer, otherwise BUFPOS is zero to indicate that STRING is
6119 not an overlay string. W must display the current buffer.
6120 REGION_BEG and REGION_END give the start and end positions of the
6121 region; both are -1 if no region is visible.
6122
6123 BASE_FACE_ID is the id of a face to merge with. For strings coming
6124 from overlays or the `display' property it is the face at BUFPOS.
6125
6126 If MOUSE_P is non-zero, use the character's mouse-face, not its face.
6127
6128 Set *ENDPTR to the next position where to check for faces in
6129 STRING; -1 if the face is constant from POS to the end of the
6130 string.
6131
6132 Value is the id of the face to use. The face returned is suitable
6133 for displaying ASCII characters. */
6134
6135 int
6136 face_at_string_position (struct window *w, Lisp_Object string,
6137 ptrdiff_t pos, ptrdiff_t bufpos,
6138 ptrdiff_t region_beg, ptrdiff_t region_end,
6139 ptrdiff_t *endptr, enum face_id base_face_id,
6140 int mouse_p)
6141 {
6142 Lisp_Object prop, position, end, limit;
6143 struct frame *f = XFRAME (WINDOW_FRAME (w));
6144 Lisp_Object attrs[LFACE_VECTOR_SIZE];
6145 struct face *base_face;
6146 bool multibyte_p = STRING_MULTIBYTE (string);
6147 Lisp_Object prop_name = mouse_p ? Qmouse_face : Qface;
6148
6149 /* Get the value of the face property at the current position within
6150 STRING. Value is nil if there is no face property. */
6151 XSETFASTINT (position, pos);
6152 prop = Fget_text_property (position, prop_name, string);
6153
6154 /* Get the next position at which to check for faces. Value of end
6155 is nil if face is constant all the way to the end of the string.
6156 Otherwise it is a string position where to check faces next.
6157 Limit is the maximum position up to which to check for property
6158 changes in Fnext_single_property_change. Strings are usually
6159 short, so set the limit to the end of the string. */
6160 XSETFASTINT (limit, SCHARS (string));
6161 end = Fnext_single_property_change (position, prop_name, string, limit);
6162 if (INTEGERP (end))
6163 *endptr = XFASTINT (end);
6164 else
6165 *endptr = -1;
6166
6167 base_face = FACE_FROM_ID (f, base_face_id);
6168 eassert (base_face);
6169
6170 /* Optimize the default case that there is no face property and we
6171 are not in the region. */
6172 if (NILP (prop)
6173 && (base_face_id != DEFAULT_FACE_ID
6174 /* BUFPOS <= 0 means STRING is not an overlay string, so
6175 that the region doesn't have to be taken into account. */
6176 || bufpos <= 0
6177 || bufpos < region_beg
6178 || bufpos >= region_end)
6179 && (multibyte_p
6180 /* We can't realize faces for different charsets differently
6181 if we don't have fonts, so we can stop here if not working
6182 on a window-system frame. */
6183 || !FRAME_WINDOW_P (f)
6184 || FACE_SUITABLE_FOR_ASCII_CHAR_P (base_face, 0)))
6185 return base_face->id;
6186
6187 /* Begin with attributes from the base face. */
6188 memcpy (attrs, base_face->lface, sizeof attrs);
6189
6190 /* Merge in attributes specified via text properties. */
6191 if (!NILP (prop))
6192 merge_face_ref (f, prop, attrs, 1, 0);
6193
6194 /* If in the region, merge in the region face. */
6195 if (bufpos
6196 && bufpos >= region_beg
6197 && bufpos < region_end)
6198 merge_named_face (f, Qregion, attrs, 0);
6199
6200 /* Look up a realized face with the given face attributes,
6201 or realize a new one for ASCII characters. */
6202 return lookup_face (f, attrs);
6203 }
6204
6205
6206 /* Merge a face into a realized face.
6207
6208 F is frame where faces are (to be) realized.
6209
6210 FACE_NAME is named face to merge.
6211
6212 If FACE_NAME is nil, FACE_ID is face_id of realized face to merge.
6213
6214 If FACE_NAME is t, FACE_ID is lface_id of face to merge.
6215
6216 BASE_FACE_ID is realized face to merge into.
6217
6218 Return new face id.
6219 */
6220
6221 int
6222 merge_faces (struct frame *f, Lisp_Object face_name, int face_id,
6223 int base_face_id)
6224 {
6225 Lisp_Object attrs[LFACE_VECTOR_SIZE];
6226 struct face *base_face;
6227
6228 base_face = FACE_FROM_ID (f, base_face_id);
6229 if (!base_face)
6230 return base_face_id;
6231
6232 if (EQ (face_name, Qt))
6233 {
6234 if (face_id < 0 || face_id >= lface_id_to_name_size)
6235 return base_face_id;
6236 face_name = lface_id_to_name[face_id];
6237 /* When called during make-frame, lookup_derived_face may fail
6238 if the faces are uninitialized. Don't signal an error. */
6239 face_id = lookup_derived_face (f, face_name, base_face_id, 0);
6240 return (face_id >= 0 ? face_id : base_face_id);
6241 }
6242
6243 /* Begin with attributes from the base face. */
6244 memcpy (attrs, base_face->lface, sizeof attrs);
6245
6246 if (!NILP (face_name))
6247 {
6248 if (!merge_named_face (f, face_name, attrs, 0))
6249 return base_face_id;
6250 }
6251 else
6252 {
6253 struct face *face;
6254 if (face_id < 0)
6255 return base_face_id;
6256 face = FACE_FROM_ID (f, face_id);
6257 if (!face)
6258 return base_face_id;
6259 merge_face_vectors (f, face->lface, attrs, 0);
6260 }
6261
6262 /* Look up a realized face with the given face attributes,
6263 or realize a new one for ASCII characters. */
6264 return lookup_face (f, attrs);
6265 }
6266
6267 \f
6268
6269 #ifndef HAVE_X_WINDOWS
6270 DEFUN ("x-load-color-file", Fx_load_color_file,
6271 Sx_load_color_file, 1, 1, 0,
6272 doc: /* Create an alist of color entries from an external file.
6273
6274 The file should define one named RGB color per line like so:
6275 R G B name
6276 where R,G,B are numbers between 0 and 255 and name is an arbitrary string. */)
6277 (Lisp_Object filename)
6278 {
6279 FILE *fp;
6280 Lisp_Object cmap = Qnil;
6281 Lisp_Object abspath;
6282
6283 CHECK_STRING (filename);
6284 abspath = Fexpand_file_name (filename, Qnil);
6285
6286 fp = emacs_fopen (SSDATA (abspath), "rt");
6287 if (fp)
6288 {
6289 char buf[512];
6290 int red, green, blue;
6291 int num;
6292
6293 block_input ();
6294
6295 while (fgets (buf, sizeof (buf), fp) != NULL) {
6296 if (sscanf (buf, "%u %u %u %n", &red, &green, &blue, &num) == 3)
6297 {
6298 char *name = buf + num;
6299 num = strlen (name) - 1;
6300 if (num >= 0 && name[num] == '\n')
6301 name[num] = 0;
6302 cmap = Fcons (Fcons (build_string (name),
6303 #ifdef HAVE_NTGUI
6304 make_number (RGB (red, green, blue))),
6305 #else
6306 make_number ((red << 16) | (green << 8) | blue)),
6307 #endif
6308 cmap);
6309 }
6310 }
6311 fclose (fp);
6312
6313 unblock_input ();
6314 }
6315
6316 return cmap;
6317 }
6318 #endif
6319
6320 \f
6321 /***********************************************************************
6322 Tests
6323 ***********************************************************************/
6324
6325 #ifdef GLYPH_DEBUG
6326
6327 /* Print the contents of the realized face FACE to stderr. */
6328
6329 static void
6330 dump_realized_face (struct face *face)
6331 {
6332 fprintf (stderr, "ID: %d\n", face->id);
6333 #ifdef HAVE_X_WINDOWS
6334 fprintf (stderr, "gc: %ld\n", (long) face->gc);
6335 #endif
6336 fprintf (stderr, "foreground: 0x%lx (%s)\n",
6337 face->foreground,
6338 SDATA (face->lface[LFACE_FOREGROUND_INDEX]));
6339 fprintf (stderr, "background: 0x%lx (%s)\n",
6340 face->background,
6341 SDATA (face->lface[LFACE_BACKGROUND_INDEX]));
6342 if (face->font)
6343 fprintf (stderr, "font_name: %s (%s)\n",
6344 SDATA (face->font->props[FONT_NAME_INDEX]),
6345 SDATA (face->lface[LFACE_FAMILY_INDEX]));
6346 #ifdef HAVE_X_WINDOWS
6347 fprintf (stderr, "font = %p\n", face->font);
6348 #endif
6349 fprintf (stderr, "fontset: %d\n", face->fontset);
6350 fprintf (stderr, "underline: %d (%s)\n",
6351 face->underline_p,
6352 SDATA (Fsymbol_name (face->lface[LFACE_UNDERLINE_INDEX])));
6353 fprintf (stderr, "hash: %d\n", face->hash);
6354 }
6355
6356
6357 DEFUN ("dump-face", Fdump_face, Sdump_face, 0, 1, 0, doc: /* */)
6358 (Lisp_Object n)
6359 {
6360 if (NILP (n))
6361 {
6362 int i;
6363
6364 fprintf (stderr, "font selection order: ");
6365 for (i = 0; i < DIM (font_sort_order); ++i)
6366 fprintf (stderr, "%d ", font_sort_order[i]);
6367 fprintf (stderr, "\n");
6368
6369 fprintf (stderr, "alternative fonts: ");
6370 debug_print (Vface_alternative_font_family_alist);
6371 fprintf (stderr, "\n");
6372
6373 for (i = 0; i < FRAME_FACE_CACHE (SELECTED_FRAME ())->used; ++i)
6374 Fdump_face (make_number (i));
6375 }
6376 else
6377 {
6378 struct face *face;
6379 CHECK_NUMBER (n);
6380 face = FACE_FROM_ID (SELECTED_FRAME (), XINT (n));
6381 if (face == NULL)
6382 error ("Not a valid face");
6383 dump_realized_face (face);
6384 }
6385
6386 return Qnil;
6387 }
6388
6389
6390 DEFUN ("show-face-resources", Fshow_face_resources, Sshow_face_resources,
6391 0, 0, 0, doc: /* */)
6392 (void)
6393 {
6394 fprintf (stderr, "number of colors = %d\n", ncolors_allocated);
6395 fprintf (stderr, "number of pixmaps = %d\n", npixmaps_allocated);
6396 fprintf (stderr, "number of GCs = %d\n", ngcs);
6397 return Qnil;
6398 }
6399
6400 #endif /* GLYPH_DEBUG */
6401
6402
6403 \f
6404 /***********************************************************************
6405 Initialization
6406 ***********************************************************************/
6407
6408 void
6409 syms_of_xfaces (void)
6410 {
6411 DEFSYM (Qface, "face");
6412 DEFSYM (Qface_no_inherit, "face-no-inherit");
6413 DEFSYM (Qbitmap_spec_p, "bitmap-spec-p");
6414 DEFSYM (Qframe_set_background_mode, "frame-set-background-mode");
6415
6416 /* Lisp face attribute keywords. */
6417 DEFSYM (QCfamily, ":family");
6418 DEFSYM (QCheight, ":height");
6419 DEFSYM (QCweight, ":weight");
6420 DEFSYM (QCslant, ":slant");
6421 DEFSYM (QCunderline, ":underline");
6422 DEFSYM (QCinverse_video, ":inverse-video");
6423 DEFSYM (QCreverse_video, ":reverse-video");
6424 DEFSYM (QCforeground, ":foreground");
6425 DEFSYM (QCbackground, ":background");
6426 DEFSYM (QCstipple, ":stipple");
6427 DEFSYM (QCwidth, ":width");
6428 DEFSYM (QCfont, ":font");
6429 DEFSYM (QCfontset, ":fontset");
6430 DEFSYM (QCbold, ":bold");
6431 DEFSYM (QCitalic, ":italic");
6432 DEFSYM (QCoverline, ":overline");
6433 DEFSYM (QCstrike_through, ":strike-through");
6434 DEFSYM (QCbox, ":box");
6435 DEFSYM (QCinherit, ":inherit");
6436
6437 /* Symbols used for Lisp face attribute values. */
6438 DEFSYM (QCcolor, ":color");
6439 DEFSYM (QCline_width, ":line-width");
6440 DEFSYM (QCstyle, ":style");
6441 DEFSYM (Qline, "line");
6442 DEFSYM (Qwave, "wave");
6443 DEFSYM (Qreleased_button, "released-button");
6444 DEFSYM (Qpressed_button, "pressed-button");
6445 DEFSYM (Qnormal, "normal");
6446 DEFSYM (Qextra_light, "extra-light");
6447 DEFSYM (Qlight, "light");
6448 DEFSYM (Qsemi_light, "semi-light");
6449 DEFSYM (Qsemi_bold, "semi-bold");
6450 DEFSYM (Qbold, "bold");
6451 DEFSYM (Qextra_bold, "extra-bold");
6452 DEFSYM (Qultra_bold, "ultra-bold");
6453 DEFSYM (Qoblique, "oblique");
6454 DEFSYM (Qitalic, "italic");
6455 DEFSYM (Qbackground_color, "background-color");
6456 DEFSYM (Qforeground_color, "foreground-color");
6457 DEFSYM (Qunspecified, "unspecified");
6458 DEFSYM (QCignore_defface, ":ignore-defface");
6459
6460 DEFSYM (Qface_alias, "face-alias");
6461 DEFSYM (Qdefault, "default");
6462 DEFSYM (Qtool_bar, "tool-bar");
6463 DEFSYM (Qregion, "region");
6464 DEFSYM (Qfringe, "fringe");
6465 DEFSYM (Qheader_line, "header-line");
6466 DEFSYM (Qscroll_bar, "scroll-bar");
6467 DEFSYM (Qmenu, "menu");
6468 DEFSYM (Qcursor, "cursor");
6469 DEFSYM (Qborder, "border");
6470 DEFSYM (Qmouse, "mouse");
6471 DEFSYM (Qmode_line_inactive, "mode-line-inactive");
6472 DEFSYM (Qvertical_border, "vertical-border");
6473 DEFSYM (Qtty_color_desc, "tty-color-desc");
6474 DEFSYM (Qtty_color_standard_values, "tty-color-standard-values");
6475 DEFSYM (Qtty_color_by_index, "tty-color-by-index");
6476 DEFSYM (Qtty_color_alist, "tty-color-alist");
6477 DEFSYM (Qscalable_fonts_allowed, "scalable-fonts-allowed");
6478
6479 Vparam_value_alist = list1 (Fcons (Qnil, Qnil));
6480 staticpro (&Vparam_value_alist);
6481 Vface_alternative_font_family_alist = Qnil;
6482 staticpro (&Vface_alternative_font_family_alist);
6483 Vface_alternative_font_registry_alist = Qnil;
6484 staticpro (&Vface_alternative_font_registry_alist);
6485
6486 defsubr (&Sinternal_make_lisp_face);
6487 defsubr (&Sinternal_lisp_face_p);
6488 defsubr (&Sinternal_set_lisp_face_attribute);
6489 #ifdef HAVE_WINDOW_SYSTEM
6490 defsubr (&Sinternal_set_lisp_face_attribute_from_resource);
6491 #endif
6492 defsubr (&Scolor_gray_p);
6493 defsubr (&Scolor_supported_p);
6494 #ifndef HAVE_X_WINDOWS
6495 defsubr (&Sx_load_color_file);
6496 #endif
6497 defsubr (&Sface_attribute_relative_p);
6498 defsubr (&Smerge_face_attribute);
6499 defsubr (&Sinternal_get_lisp_face_attribute);
6500 defsubr (&Sinternal_lisp_face_attribute_values);
6501 defsubr (&Sinternal_lisp_face_equal_p);
6502 defsubr (&Sinternal_lisp_face_empty_p);
6503 defsubr (&Sinternal_copy_lisp_face);
6504 defsubr (&Sinternal_merge_in_global_face);
6505 defsubr (&Sface_font);
6506 defsubr (&Sframe_face_alist);
6507 defsubr (&Sdisplay_supports_face_attributes_p);
6508 defsubr (&Scolor_distance);
6509 defsubr (&Sinternal_set_font_selection_order);
6510 defsubr (&Sinternal_set_alternative_font_family_alist);
6511 defsubr (&Sinternal_set_alternative_font_registry_alist);
6512 defsubr (&Sface_attributes_as_vector);
6513 #ifdef GLYPH_DEBUG
6514 defsubr (&Sdump_face);
6515 defsubr (&Sshow_face_resources);
6516 #endif /* GLYPH_DEBUG */
6517 defsubr (&Sclear_face_cache);
6518 defsubr (&Stty_suppress_bold_inverse_default_colors);
6519
6520 #if defined DEBUG_X_COLORS && defined HAVE_X_WINDOWS
6521 defsubr (&Sdump_colors);
6522 #endif
6523
6524 DEFVAR_LISP ("face-new-frame-defaults", Vface_new_frame_defaults,
6525 doc: /* List of global face definitions (for internal use only.) */);
6526 Vface_new_frame_defaults = Qnil;
6527
6528 DEFVAR_LISP ("face-default-stipple", Vface_default_stipple,
6529 doc: /* Default stipple pattern used on monochrome displays.
6530 This stipple pattern is used on monochrome displays
6531 instead of shades of gray for a face background color.
6532 See `set-face-stipple' for possible values for this variable. */);
6533 Vface_default_stipple = build_pure_c_string ("gray3");
6534
6535 DEFVAR_LISP ("tty-defined-color-alist", Vtty_defined_color_alist,
6536 doc: /* An alist of defined terminal colors and their RGB values.
6537 See the docstring of `tty-color-alist' for the details. */);
6538 Vtty_defined_color_alist = Qnil;
6539
6540 DEFVAR_LISP ("scalable-fonts-allowed", Vscalable_fonts_allowed,
6541 doc: /* Allowed scalable fonts.
6542 A value of nil means don't allow any scalable fonts.
6543 A value of t means allow any scalable font.
6544 Otherwise, value must be a list of regular expressions. A font may be
6545 scaled if its name matches a regular expression in the list.
6546 Note that if value is nil, a scalable font might still be used, if no
6547 other font of the appropriate family and registry is available. */);
6548 Vscalable_fonts_allowed = Qnil;
6549
6550 DEFVAR_LISP ("face-ignored-fonts", Vface_ignored_fonts,
6551 doc: /* List of ignored fonts.
6552 Each element is a regular expression that matches names of fonts to
6553 ignore. */);
6554 Vface_ignored_fonts = Qnil;
6555
6556 DEFVAR_LISP ("face-remapping-alist", Vface_remapping_alist,
6557 doc: /* Alist of face remappings.
6558 Each element is of the form:
6559
6560 (FACE . REPLACEMENT),
6561
6562 which causes display of the face FACE to use REPLACEMENT instead.
6563 REPLACEMENT is a face specification, i.e. one of the following:
6564
6565 (1) a face name
6566 (2) a property list of attribute/value pairs, or
6567 (3) a list in which each element has the form of (1) or (2).
6568
6569 List values for REPLACEMENT are merged to form the final face
6570 specification, with earlier entries taking precedence, in the same as
6571 as in the `face' text property.
6572
6573 Face-name remapping cycles are suppressed; recursive references use
6574 the underlying face instead of the remapped face. So a remapping of
6575 the form:
6576
6577 (FACE EXTRA-FACE... FACE)
6578
6579 or:
6580
6581 (FACE (FACE-ATTR VAL ...) FACE)
6582
6583 causes EXTRA-FACE... or (FACE-ATTR VAL ...) to be _merged_ with the
6584 existing definition of FACE. Note that this isn't necessary for the
6585 default face, since every face inherits from the default face.
6586
6587 If this variable is made buffer-local, the face remapping takes effect
6588 only in that buffer. For instance, the mode my-mode could define a
6589 face `my-mode-default', and then in the mode setup function, do:
6590
6591 (set (make-local-variable 'face-remapping-alist)
6592 '((default my-mode-default)))).
6593
6594 Because Emacs normally only redraws screen areas when the underlying
6595 buffer contents change, you may need to call `redraw-display' after
6596 changing this variable for it to take effect. */);
6597 Vface_remapping_alist = Qnil;
6598
6599 DEFVAR_LISP ("face-font-rescale-alist", Vface_font_rescale_alist,
6600 doc: /* Alist of fonts vs the rescaling factors.
6601 Each element is a cons (FONT-PATTERN . RESCALE-RATIO), where
6602 FONT-PATTERN is a font-spec or a regular expression matching a font name, and
6603 RESCALE-RATIO is a floating point number to specify how much larger
6604 \(or smaller) font we should use. For instance, if a face requests
6605 a font of 10 point, we actually use a font of 10 * RESCALE-RATIO point. */);
6606 Vface_font_rescale_alist = Qnil;
6607
6608 #ifdef HAVE_WINDOW_SYSTEM
6609 defsubr (&Sbitmap_spec_p);
6610 defsubr (&Sx_list_fonts);
6611 defsubr (&Sinternal_face_x_get_resource);
6612 defsubr (&Sx_family_fonts);
6613 #endif
6614 }