rmailmm doc fixes.
[bpt/emacs.git] / src / font.h
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c2f5bfd6 1/* font.h -- Interface definition for font handling.
73b0cd50 2 Copyright (C) 2006-2011 Free Software Foundation, Inc.
5df4f04c 3 Copyright (C) 2006, 2007, 2008, 2009, 2010, 2011
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4 National Institute of Advanced Industrial Science and Technology (AIST)
5 Registration Number H13PRO009
6
7This file is part of GNU Emacs.
8
b9b1cc14 9GNU Emacs is free software: you can redistribute it and/or modify
c2f5bfd6 10it under the terms of the GNU General Public License as published by
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11the Free Software Foundation, either version 3 of the License, or
12(at your option) any later version.
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13
14GNU Emacs is distributed in the hope that it will be useful,
15but WITHOUT ANY WARRANTY; without even the implied warranty of
16MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17GNU General Public License for more details.
18
19You should have received a copy of the GNU General Public License
b9b1cc14 20along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
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21
22#ifndef EMACS_FONT_H
23#define EMACS_FONT_H
24
25#include "ccl.h"
26
27/* We have three types of Lisp objects related to font.
28
29 FONT-SPEC
30
875003e5 31 Pseudo vector (length FONT_SPEC_MAX) of font properties. Some
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32 properties can be left unspecified (i.e. nil). Emacs asks
33 font-drivers to find a font by FONT-SPEC. A fontset entry
34 specifies requisite properties whereas a face specifies just
875003e5 35 preferable properties.
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36
37 FONT-ENTITY
38
56dd2d86 39 Pseudo vector (length FONT_ENTITY_MAX) of fully instantiated
875003e5 40 font properties that a font-driver returns upon a request of
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41 FONT-SPEC.
42
875003e5 43 Note: Only the method `list' and `match' of a font-driver can
56dd2d86 44 create this object, and it should never be modified by Lisp.
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45
46 FONT-OBJECT
47
56dd2d86 48 Pseudo vector (length FONT_OBJECT_MAX) of an opened font.
c2f5bfd6 49
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50 Lisp object encapsulating "struct font". This corresponds to
51 an opened font.
52
53 Note: Only the method `open' of a font-driver can create this
56dd2d86 54 object, and it should never be modified by Lisp. */
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55
56extern Lisp_Object Qfont_spec, Qfont_entity, Qfont_object;
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57
58
59struct font_driver;
60struct font;
e6aca9f3 61struct glyph_string;
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62
63/* An enumerator for each font property. This is used as an index to
64 the vector of FONT-SPEC and FONT-ENTITY.
65
66 Note: The order is important and should not be changed. */
67
68enum font_property_index
69 {
70 /* FONT-TYPE is a symbol indicating a font backend; currently `x',
56dd2d86 71 `xft', and `ftx' are available on X, `uniscribe' and `gdi' on
4a3f9f7f 72 Windows, and `ns' under Cocoa / GNUstep. */
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73 FONT_TYPE_INDEX,
74
75 /* FONT-FOUNDRY is a foundry name (symbol). */
76 FONT_FOUNDRY_INDEX,
77
78 /* FONT-FAMILY is a family name (symbol). */
79 FONT_FAMILY_INDEX,
80
81 /* FONT-ADSTYLE is an additional style name (symbol). */
82 FONT_ADSTYLE_INDEX,
83
84 /* FONT-REGISTRY is a combination of a charset-registry and
875003e5 85 charset-encoding name (symbol). */
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86 FONT_REGISTRY_INDEX,
87
88 /* FONT-WEIGHT is a numeric value of weight (e.g. medium, bold) of
56dd2d86 89 the font. The lowest 8 bits is an index determining the
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90 symbolic name, and the higher bits is the actual numeric value
91 defined in `font-weight-table'. */
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92 FONT_WEIGHT_INDEX,
93
94 /* FONT-SLANT is a numeric value of slant (e.g. r, i, o) of the
56dd2d86 95 font. The lowest 8 bits is an index determining the symbolic
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96 name, and the higher bits is the actual numeric value defined
97 in `font-slant-table'. */
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98 FONT_SLANT_INDEX,
99
875003e5 100 /* FONT-WIDTH is a numeric value of setwidth (e.g. normal) of the
56dd2d86 101 font. The lowest 8 bits is an index determining the symbolic
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102 name, and the higher bits is the actual numeric value defined
103 `font-width-table'. */
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104 FONT_WIDTH_INDEX,
105
106 /* FONT-SIZE is a size of the font. If integer, it is a pixel
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107 size. For a font-spec, the value can be a float specifying
108 the point size. The value zero means that the font is
875003e5 109 scalable. */
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110 FONT_SIZE_INDEX,
111
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112 /* FONT-DPI is a resolution (dot per inch) for which the font is
113 designed. */
114 FONT_DPI_INDEX,
115
116 /* FONT-SPACING is a spacing (mono, proportional, charcell) of the
117 font (integer; one of enum font_spacing). */
118 FONT_SPACING_INDEX,
119
120 /* FONT-AVGWIDTH is an average width (1/10 pixel unit) of the
121 font. */
122 FONT_AVGWIDTH_INDEX,
123
124#if 0
125 /* The following two members are to substitute for the above 6
126 members (FONT_WEIGHT_INDEX to FONT_AVGWIDTH_INDEX excluding
127 FONT_SIZE_INDEX) if it is found that font-entities consumes too
128 much memory. */
129
130 /* FONT-STYLE is a 24-bit integer containing indices for
131 style-related properties WEIGHT, SLANT, and WIDTH. The lowest
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132 8 bits is an index to the weight table AREF (font_style_table,
133 0), the next 8 bits is an index to the slant table AREF
134 (font_style_table, 1), the highest 8 bits is an index to the
135 slant table AREF (font_style_table, 2). The index 0 indicates
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136 that the corresponding style is not specified. This way, we
137 can represent at most 255 different names for each style, which
138 is surely sufficient. */
139 FONT_STYLE_INDEX,
140
141 /* FONT-METRICS is a 27-bit integer containing metrics-related
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142 properties DPI, AVGWIDTH, SPACING. The lowest 12 bits is for
143 DPI, the next 12 bits is for AVGWIDTH, the highest 3 bits is for
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144 SPACING. In each bit field, the highest bit indicates that the
145 corresponding value is set or not. This way, we can represent
146 DPI by 11-bit (0 to 2047), AVGWIDTH by 11-bit (0 to 2047),
147 SPACING by 3-bit (0 for proportional, 1 for dual, 2 for mono, 3
148 for charcell), which is surely sufficient. */
149 FONT_METRICS_INDEX,
150#endif
151
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152 /* In a font-spec, the value is an alist of extra information of a
153 font such as name, OpenType features, and language coverage.
875003e5 154 In addition, in a font-entity, the value may contain a pair
ebb26565 155 (font-entity . INFO) where INFO is extra information to identify
f6b4d85c 156 a font (font-driver dependent). */
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157 FONT_EXTRA_INDEX, /* alist alist */
158
159 /* This value is the length of font-spec vector. */
160 FONT_SPEC_MAX,
161
a7840ffb 162 /* The followings are used only for a font-entity and a font-object. */
c2f5bfd6 163
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164 /* List of font-objects opened from the font-entity. */
165 FONT_OBJLIST_INDEX = FONT_SPEC_MAX,
c2f5bfd6 166
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167 /* Font-entity from which the font-object is opened. */
168 FONT_ENTITY_INDEX = FONT_SPEC_MAX,
169
c2f5bfd6 170 /* This value is the length of font-entity vector. */
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171 FONT_ENTITY_MAX,
172
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173 /* The followings are used only for a font-object. */
174
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175 /* XLFD name of the font (string). */
176 FONT_NAME_INDEX = FONT_ENTITY_MAX,
4a3f9f7f 177
875003e5 178 /* Full name of the font (string). It is the name extracted from
56dd2d86 179 the opened font, and may be different from the above. It may be
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180 nil if the opened font doesn't give a name. */
181 FONT_FULLNAME_INDEX,
182
183 /* File name of the font or nil if a file associated with the font
184 is not available. */
185 FONT_FILE_INDEX,
186
25b81df4 187 /* Format of the font (symbol) or nil if unknown. */
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188 FONT_FORMAT_INDEX,
189
190 /* This value is the length of font-object vector. */
191 FONT_OBJECT_MAX
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192 };
193
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194/* Return the numeric weight value of FONT. */
195#define FONT_WEIGHT_NUMERIC(font) \
196 (INTEGERP (AREF ((font), FONT_WEIGHT_INDEX)) \
197 ? (XINT (AREF ((font), FONT_WEIGHT_INDEX)) >> 8) : -1)
198/* Return the numeric slant value of FONT. */
199#define FONT_SLANT_NUMERIC(font) \
200 (INTEGERP (AREF ((font), FONT_SLANT_INDEX)) \
201 ? (XINT (AREF ((font), FONT_SLANT_INDEX)) >> 8) : -1)
202/* Return the numeric width value of FONT. */
203#define FONT_WIDTH_NUMERIC(font) \
204 (INTEGERP (AREF ((font), FONT_WIDTH_INDEX)) \
205 ? (XINT (AREF ((font), FONT_WIDTH_INDEX)) >> 8) : -1)
206/* Return the symbolic weight value of FONT. */
207#define FONT_WEIGHT_SYMBOLIC(font) \
208 font_style_symbolic (font, FONT_WEIGHT_INDEX, 0)
209/* Return the symbolic slant value of FONT. */
210#define FONT_SLANT_SYMBOLIC(font) \
211 font_style_symbolic (font, FONT_SLANT_INDEX, 0)
212/* Return the symbolic width value of FONT. */
213#define FONT_WIDTH_SYMBOLIC(font) \
214 font_style_symbolic (font, FONT_WIDTH_INDEX, 0)
215/* Return the face-weight corresponding to the weight of FONT. */
216#define FONT_WEIGHT_FOR_FACE(font) \
217 font_style_symbolic (font, FONT_WEIGHT_INDEX, 1)
218/* Return the face-slant corresponding to the slant of FONT. */
219#define FONT_SLANT_FOR_FACE(font) \
220 font_style_symbolic (font, FONT_SLANT_INDEX, 1)
221/* Return the face-swidth corresponding to the slant of FONT. */
222#define FONT_WIDTH_FOR_FACE(font) \
223 font_style_symbolic (font, FONT_WIDTH_INDEX, 1)
224
225/* Return the numeric weight value corresponding ot the symbol NAME. */
226#define FONT_WEIGHT_NAME_NUMERIC(name) \
227 (font_style_to_value (FONT_WEIGHT_INDEX, (name), 0) >> 8)
228/* Return the numeric slant value corresponding ot the symbol NAME. */
229#define FONT_SLANT_NAME_NUMERIC(name) \
230 (font_style_to_value (FONT_SLANT_INDEX, (name), 0) >> 8)
231/* Return the numeric width value corresponding ot the symbol NAME. */
232#define FONT_WIDTH_NAME_NUMERIC(name) \
233 (font_style_to_value (FONT_WIDTH_INDEX, (name), 0) >> 8)
234
235/* Set the font property PROP of FONT to VAL. PROP is one of
236 style-related font property index (FONT_WEIGHT/SLANT/WIDTH_INDEX).
237 VAL (integer or symbol) is the numeric or symbolic style value. */
238#define FONT_SET_STYLE(font, prop, val) \
239 ASET ((font), prop, make_number (font_style_to_value (prop, val, 1)))
240
241extern Lisp_Object QCspacing, QCdpi, QCscalable, QCotf, QClang, QCscript;
955cbe7b 242extern Lisp_Object QCavgwidth, QCantialias, QCfont_entity;
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243extern Lisp_Object Qp;
244
c2f5bfd6 245
3223c449 246/* Important character set symbols. */
366664ad 247extern Lisp_Object Qascii_0;
32d497b1 248extern Lisp_Object Qiso8859_1, Qiso10646_1, Qunicode_bmp, Qunicode_sip;
3223c449 249
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250/* Special ADSTYLE properties to avoid fonts used for Latin characters. */
251extern Lisp_Object Qja, Qko;
252
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253/* Structure for a font-spec. */
254
255struct font_spec
256{
b102ceb1 257 struct vectorlike_header header;
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258 Lisp_Object props[FONT_SPEC_MAX];
259};
260
261/* Structure for a font-entity. */
262
263struct font_entity
264{
b102ceb1 265 struct vectorlike_header header;
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266 Lisp_Object props[FONT_ENTITY_MAX];
267};
c2f5bfd6 268
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269/* A value which may appear in the member `encoding' of struct font
270 indicating that a font itself doesn't tell which encoding to be
271 used. */
272#define FONT_ENCODING_NOT_DECIDED 255
273
274/* Structure for a font-object. */
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275
276struct font
277{
b102ceb1 278 struct vectorlike_header header;
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279
280 /* All Lisp_Object components must come first.
281 That ensures they are all aligned normally. */
c2f5bfd6 282
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283 Lisp_Object props[FONT_OBJECT_MAX];
284
285 /* Beyond here, there should be no more Lisp_Object components. */
286
287 /* Maximum bound width over all existing characters of the font. On
288 X window, this is same as (font->max_bounds.width). */
289 int max_width;
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290
291 /* By which pixel size the font is opened. */
292 int pixel_size;
293
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294 /* Height of the font. On X window, this is the same as
295 (font->ascent + font->descent). */
296 int height;
297
298 /* Width of the space glyph of the font. If the font doesn't have a
299 SPACE glyph, the value is 0. */
300 int space_width;
301
302 /* Average width of glyphs in the font. If the font itself doesn't
56dd2d86 303 have that information but has glyphs of ASCII characters, the
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304 value is the average with of those glyphs. Otherwise, the value
305 is 0. */
306 int average_width;
307
308 /* Minimum glyph width (in pixels). */
309 int min_width;
c2f5bfd6 310
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311 /* Ascent and descent of the font (in pixels). */
312 int ascent, descent;
c6666169 313
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314 /* Vertical pixel width of the underline. If is zero if that
315 information is not in the font. */
316 int underline_thickness;
317
318 /* Vertical pixel position (relative to the baseline) of the
319 underline. If it is positive, it is below the baseline. It is
320 negative if that information is not in the font. */
321 int underline_position;
322
323 /* 1 if `vertical-centering-font-regexp' matches this font name.
56dd2d86 324 In this case, we render characters at vertical center positions
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325 of lines. */
326 int vertical_centering;
327
328 /* Encoding type of the font. The value is one of
329 0, 1, 2, or 3:
330 0: code points 0x20..0x7F or 0x2020..0x7F7F are used
331 1: code points 0xA0..0xFF or 0xA0A0..0xFFFF are used
332 2: code points 0x20A0..0x7FFF are used
333 3: code points 0xA020..0xFF7F are used
334 If the member `font_encoder' is not NULL, this member is ignored. */
335 unsigned char encoding_type;
336
337 /* The baseline position of a font is normally `ascent' value of the
56dd2d86 338 font. However, there exist many fonts which don't set `ascent' to
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339 an appropriate value to be used as baseline position. This is
340 typical in such ASCII fonts which are designed to be used with
341 Chinese, Japanese, Korean characters. When we use mixture of
342 such fonts and normal fonts (having correct `ascent' value), a
343 display line gets very ugly. Since we have no way to fix it
56dd2d86 344 automatically, it is user's responsibility to supply well designed
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345 fonts or correct `ascent' value of fonts. But, the latter
346 requires heavy work (modifying all bitmap data in BDF files).
347 So, Emacs accepts a private font property
348 `_MULE_BASELINE_OFFSET'. If a font has this property, we
349 calculate the baseline position by subtracting the value from
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350 `ascent'. In other words, the value indicates how many pixels
351 higher than normal ASCII text we should draw a character of the
352 font for better appearance.
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353
354 We also have to consider the fact that the concept of `baseline'
355 differs among scripts to which each character belongs. For
56dd2d86 356 instance, baseline should be at the bottom-most position of all
875003e5 357 glyphs for Chinese, Japanese, and Korean. But, many of existing
56dd2d86 358 fonts for those characters don't have correct `ascent' values
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359 because they are designed to be used with ASCII fonts. To
360 display characters of different language on the same line, the
361 best way will be to arrange them in the middle of the line. So,
362 in such a case, again, we utilize the font property
363 `_MULE_BASELINE_OFFSET'. If the value is larger than `ascent' we
364 calculate baseline so that a character is arranged in the middle
365 of a line. */
366 int baseline_offset;
367
56dd2d86 368 /* Non-zero means a character should be composed at a position
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369 relative to the height (or depth) of previous glyphs in the
370 following cases:
371 (1) The bottom of the character is higher than this value. In
372 this case, the character is drawn above the previous glyphs.
373 (2) The top of the character is lower than 0 (i.e. baseline
56dd2d86 374 height). In this case, the character is drawn below the
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375 previous glyphs.
376
377 This value is taken from a private font property
378 `_MULE_RELATIVE_COMPOSE' which is introduced by Emacs. */
379 int relative_compose;
380
56dd2d86 381 /* Non-zero means an ascent value to be used for a character
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382 registered in char-table `use-default-ascent'. */
383 int default_ascent;
384
385 /* CCL program to calculate code points of the font. */
386 struct ccl_program *font_encoder;
387
388 /* Font-driver for the font. */
389 struct font_driver *driver;
c2f5bfd6 390
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391 /* Charset to encode a character code into a glyph code of the font.
392 -1 means that the font doesn't require this information to encode
393 a character. */
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394 int encoding_charset;
395
396 /* Charset to check if a character code is supported by the font.
397 -1 means that the contents of the font must be looked up to
64c9fe54 398 determine it. */
e2a3f5b2 399 int repertory_charset;
c2f5bfd6 400
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401 /* There are more members in this structure, but they are private
402 to the font-driver. */
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403};
404
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405enum font_spacing
406 {
407 FONT_SPACING_PROPORTIONAL = 0,
408 FONT_SPACING_DUAL = 90,
409 FONT_SPACING_MONO = 100,
410 FONT_SPACING_CHARCELL = 110
411 };
412
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413struct font_metrics
414{
415 short lbearing, rbearing, width, ascent, descent;
416};
417
418struct font_bitmap
419{
5a74d0e5 420 int bits_per_pixel;
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421 int rows;
422 int width;
423 int pitch;
424 unsigned char *buffer;
425 int left;
426 int top;
427 int advance;
428 void *extra;
429};
430
431/* Predicates to check various font-related objects. */
432
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433/* 1 iff X is one of font-spec, font-entity, and font-object. */
434#define FONTP(x) PSEUDOVECTORP (x, PVEC_FONT)
435/* 1 iff X is font-spec. */
c2f5bfd6 436#define FONT_SPEC_P(x) \
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437 (FONTP (x) && (ASIZE (x) & PSEUDOVECTOR_SIZE_MASK) == FONT_SPEC_MAX)
438/* 1 iff X is font-entity. */
c2f5bfd6 439#define FONT_ENTITY_P(x) \
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440 (FONTP (x) && (ASIZE (x) & PSEUDOVECTOR_SIZE_MASK) == FONT_ENTITY_MAX)
441/* 1 iff X is font-object. */
c2f5bfd6 442#define FONT_OBJECT_P(x) \
875003e5 443 (FONTP (x) && (ASIZE (x) & PSEUDOVECTOR_SIZE_MASK) == FONT_OBJECT_MAX)
c2f5bfd6 444
875003e5 445/* 1 iff ENTITY can't be loaded. */
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446#define FONT_ENTITY_NOT_LOADABLE(entity) \
447 EQ (AREF (entity, FONT_OBJLIST_INDEX), Qt)
448
875003e5 449/* Flag ENTITY not loadable. */
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450#define FONT_ENTITY_SET_NOT_LOADABLE(entity) \
451 ASET (entity, FONT_OBJLIST_INDEX, Qt)
452
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453
454/* Check macros for various font-related objects. */
455
456#define CHECK_FONT(x) \
02dfeba8 457 do { if (! FONTP (x)) wrong_type_argument (Qfont, x); } while (0)
c2f5bfd6 458#define CHECK_FONT_SPEC(x) \
875003e5 459 do { if (! FONT_SPEC_P (x)) wrong_type_argument (Qfont_spec, x); } while (0)
c2f5bfd6 460#define CHECK_FONT_ENTITY(x) \
875003e5 461 do { if (! FONT_ENTITY_P (x)) wrong_type_argument (Qfont_entity, x); } while (0)
c2f5bfd6 462#define CHECK_FONT_OBJECT(x) \
875003e5 463 do { if (! FONT_OBJECT_P (x)) wrong_type_argument (Qfont_object, x); } while (0)
c2f5bfd6 464
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465#define CHECK_FONT_GET_OBJECT(x, font) \
466 do { \
467 CHECK_FONT_OBJECT (x); \
468 font = XFONT_OBJECT (x); \
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469 } while (0)
470
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471#define XFONT_SPEC(p) \
472 (eassert (FONT_SPEC_P(p)), (struct font_spec *) XPNTR (p))
473#define XFONT_ENTITY(p) \
474 (eassert (FONT_ENTITY_P(p)), (struct font_entity *) XPNTR (p))
475#define XFONT_OBJECT(p) \
476 (eassert (FONT_OBJECT_P(p)), (struct font *) XPNTR (p))
477#define XSETFONT(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_FONT))
478
479/* Number of pt per inch (from the TeXbook). */
480#define PT_PER_INCH 72.27
481
482/* Return a pixel size (integer) corresponding to POINT size (double)
483 on resolution DPI. */
484#define POINT_TO_PIXEL(POINT, DPI) ((POINT) * (DPI) / PT_PER_INCH + 0.5)
485
c4e8ee5e 486/* Return a point size corresponding to POINT size (integer)
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487 on resolution DPI. Note that though point size is a double, we expect
488 it to be rounded to an int, so we add 0.5 here. If the desired value
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489 is tenths of points (as in xfld specs), then the pixel size should
490 be multiplied BEFORE the conversion to avoid magnifying the error. */
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491#define PIXEL_TO_POINT(PIXEL, DPI) ((PIXEL) * PT_PER_INCH / (DPI) + 0.5)
492
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493/* Ignore the difference of font pixel sizes less than or equal to
494 this value. */
495#define FONT_PIXEL_SIZE_QUANTUM 1
496
c2f5bfd6 497struct face;
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498
499#define FONT_INVALID_CODE 0xFFFFFFFF
500
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501/* Font driver. Members specified as "optional" can be NULL. */
502
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503struct font_driver
504{
505 /* Symbol indicating the type of the font-driver. */
506 Lisp_Object type;
507
f6b4d85c 508 /* 1 iff the font's foundry, family, and adstyle names are case
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509 sensitve. */
510 int case_sensitive;
511
69ea039a 512 /* Return a cache of font-entities on frame F. The cache must be a
c2f5bfd6 513 cons whose cdr part is the actual cache area. */
383e0970 514 Lisp_Object (*get_cache) (FRAME_PTR F);
c2f5bfd6 515
dc377380 516 /* List fonts exactly matching with FONT_SPEC on FRAME. The value
e38b9ee9 517 is a list of font-entities. The font properties to be considered
81903466 518 are: :foundry, :family, :adstyle, :registry, :script, :lang, and
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519 :otf. See the function `font-spec' for their meanings. Note
520 that the last three properties are stored in FONT_EXTRA_INDEX
521 slot of FONT_SPEC.
522
523 The returned value is a list of font-entities. Each font-entity
524 has :type property whose value is the same as the above `type'.
525 It also has these properties if they are available from the
526 corresponding font; :foundry, :family, :adstyle, :registry,
527 :weight, :slant, :width, :size, :dpi, :spacing, :avgwidth. If
528 the font is scalable, :size and :avgwidth must be 0.
529
530 The `open' method of the same font-backend is called with one of
531 the returned font-entities. If the backend needs additional
532 information to be used in `open' method, this method can add any
533 Lispy value by the property :font-entity to the entities.
534
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535 This and the following `match' are the only APIs that allocate
536 font-entities. */
383e0970 537 Lisp_Object (*list) (Lisp_Object frame, Lisp_Object font_spec);
c2f5bfd6 538
81903466 539 /* Return a font-entity most closely matching with FONT_SPEC on
e38b9ee9 540 FRAME. Which font property to consider, and how to calculate the
81903466 541 closeness is determined by the font backend, thus
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542 `face-font-selection-order' is ignored here.
543
544 The properties that the font-entity has is the same as `list'
545 method. */
383e0970 546 Lisp_Object (*match) (Lisp_Object frame, Lisp_Object font_spec);
dc377380 547
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548 /* Optional.
549 List available families. The value is a list of family names
550 (symbols). */
383e0970 551 Lisp_Object (*list_family) (Lisp_Object frame);
c2f5bfd6 552
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553 /* Optional (if FONT_EXTRA_INDEX is not Lisp_Save_Value).
554 Free FONT_EXTRA_INDEX field of FONT_ENTITY. */
383e0970 555 void (*free_entity) (Lisp_Object font_entity);
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556
557 /* Open a font specified by FONT_ENTITY on frame F. If the font is
558 scalable, open it with PIXEL_SIZE. */
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559 Lisp_Object (*open) (FRAME_PTR f, Lisp_Object font_entity,
560 int pixel_size);
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561
562 /* Close FONT on frame F. */
383e0970 563 void (*close) (FRAME_PTR f, struct font *font);
c2f5bfd6 564
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565 /* Optional (if FACE->extra is not used).
566 Prepare FACE for displaying characters by FONT on frame F by
567 storing some data in FACE->extra. If successful, return 0.
568 Otherwise, return -1. */
383e0970 569 int (*prepare_face) (FRAME_PTR f, struct face *face);
c2f5bfd6 570
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571 /* Optional.
572 Done FACE for displaying characters by FACE->font on frame F. */
383e0970 573 void (*done_face) (FRAME_PTR f, struct face *face);
c2f5bfd6 574
217caa37 575 /* Optional.
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576 If FONT (FONT-ENTITY or FONT-OBJECT) has a glyph for character C
577 (Unicode code point), return 1. If not, return 0. If FONT is
578 FONT-ENTITY and it must be opened to check it, return -1. */
383e0970 579 int (*has_char) (Lisp_Object font, int c);
c2f5bfd6 580
51e4f4a8 581 /* Return a glyph code of FONT for character C (Unicode code point).
217caa37 582 If FONT doesn't have such a glyph, return FONT_INVALID_CODE. */
383e0970 583 unsigned (*encode_char) (struct font *font, int c);
c2f5bfd6 584
56dd2d86 585 /* Compute the total metrics of the NGLYPHS glyphs specified by
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586 the font FONT and the sequence of glyph codes CODE, and store the
587 result in METRICS. */
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588 int (*text_extents) (struct font *font,
589 unsigned *code, int nglyphs,
590 struct font_metrics *metrics);
c2f5bfd6 591
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592 /* Optional.
593 Draw glyphs between FROM and TO of S->char2b at (X Y) pixel
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594 position of frame F with S->FACE and S->GC. If WITH_BACKGROUND
595 is nonzero, fill the background in advance. It is assured that
596 WITH_BACKGROUND is zero when (FROM > 0 || TO < S->nchars). */
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597 int (*draw) (struct glyph_string *s, int from, int to,
598 int x, int y, int with_background);
c2f5bfd6 599
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600 /* Optional.
601 Store bitmap data for glyph-code CODE of FONT in BITMAP. It is
602 intended that this method is callled from the other font-driver
603 for actual drawing. */
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604 int (*get_bitmap) (struct font *font, unsigned code,
605 struct font_bitmap *bitmap,
606 int bits_per_pixel);
c2f5bfd6 607
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608 /* Optional.
609 Free bitmap data in BITMAP. */
383e0970 610 void (*free_bitmap) (struct font *font, struct font_bitmap *bitmap);
c2f5bfd6 611
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612 /* Optional.
613 Return an outline data for glyph-code CODE of FONT. The format
614 of the outline data depends on the font-driver. */
383e0970 615 void *(*get_outline) (struct font *font, unsigned code);
c2f5bfd6 616
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617 /* Optional.
618 Free OUTLINE (that is obtained by the above method). */
383e0970 619 void (*free_outline) (struct font *font, void *outline);
c2f5bfd6 620
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621 /* Optional.
622 Get coordinates of the INDEXth anchor point of the glyph whose
c2f5bfd6 623 code is CODE. Store the coordinates in *X and *Y. Return 0 if
217caa37 624 the operations was successfull. Otherwise return -1. */
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625 int (*anchor_point) (struct font *font, unsigned code, int index,
626 int *x, int *y);
c2f5bfd6 627
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628 /* Optional.
629 Return a list describing which scripts/languages FONT
c2f5bfd6 630 supports by which GSUB/GPOS features of OpenType tables. */
383e0970 631 Lisp_Object (*otf_capability) (struct font *font);
c2f5bfd6 632
217caa37 633 /* Optional.
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634 Apply FONT's OTF-FEATURES to the glyph string.
635
636 FEATURES specifies which OTF features to apply in this format:
637 (SCRIPT LANGSYS GSUB-FEATURE GPOS-FEATURE)
56dd2d86 638 See the documentation of `font-drive-otf' for the details.
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639
640 This method applies the specified features to the codes in the
641 elements of GSTRING-IN (between FROMth and TOth). The output
642 codes are stored in GSTRING-OUT at the IDXth element and the
643 following elements.
644
645 Return the number of output codes. If none of the features are
646 applicable to the input data, return 0. If GSTRING-OUT is too
647 short, return -1. */
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648 int (*otf_drive) (struct font *font, Lisp_Object features,
649 Lisp_Object gstring_in, int from, int to,
650 Lisp_Object gstring_out, int idx, int alternate_subst);
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651
652 /* Optional.
653 Make the font driver ready for frame F. Usually this function
8057d3c0 654 makes some data specific to F and stores it in F by calling
5a74d0e5 655 font_put_frame_data (). */
383e0970 656 int (*start_for_frame) (FRAME_PTR f);
4a3f9f7f 657
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658 /* Optional.
659 End using the driver for frame F. Usually this function free
660 some data stored for F. */
383e0970 661 int (*end_for_frame) (FRAME_PTR f);
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662
663 /* Optional.
778686b1 664
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665 Shape text in GSTRING. See the docstring of
666 `composition-get-gstring' for the format of GSTRING. If the
667 (N+1)th element of GSTRING is nil, input of shaping is from the
668 1st to (N)th elements. In each input glyph, FROM, TO, CHAR, and
669 CODE are already set.
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670
671 This function updates all fields of the input glyphs. If the
672 output glyphs (M) are more than the input glyphs (N), (N+1)th
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673 through (M)th elements of GSTRING are updated possibly by making
674 a new glyph object and storing it in GSTRING. If (M) is greater
675 than the length of GSTRING, nil should be return. In that case,
676 this function is called again with the larger GSTRING. */
383e0970 677 Lisp_Object (*shape) (Lisp_Object lgstring);
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678
679 /* Optional.
680
681 If FONT is usable on frame F, return 0. Otherwise return -1.
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682 This method is used only for debugging. If this method is NULL,
683 Emacs assumes that the font is usable on any frame. */
383e0970 684 int (*check) (FRAME_PTR F, struct font *font);
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685
686 /* Optional.
687
688 Return the number of variation glyphs of character C supported by
689 FONT. VARIATIONS is an array of 256 elements. If the variation
690 selector N (1..256) defines a glyph, that glyph code is stored in
691 the (N-1)th element of VARIATIONS. */
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692 int (*get_variation_glyphs) (struct font *font,
693 int c, unsigned variations[256]);
637fa988 694
383e0970 695 void (*filter_properties) (Lisp_Object font, Lisp_Object properties);
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696
697 /* Optional.
698
699 Return non-zero if FONT_OBJECT can be used as a (cached) font
700 for ENTITY on frame F. */
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701 int (*cached_font_ok) (struct frame *f,
702 Lisp_Object font_object,
703 Lisp_Object entity);
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704};
705
706
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707/* Chain of font drivers. There's one global font driver list
708 (font_driver_list in font.c). In addition, each frame has it's own
709 font driver list at FRAME_PTR->font_driver_list. */
710
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711struct font_driver_list
712{
56dd2d86 713 /* 1 iff this driver is currently used. It is ignored in the global
5a74d0e5 714 font driver list.*/
484ca464 715 int on;
5a74d0e5 716 /* Pointer to the font driver. */
c2f5bfd6 717 struct font_driver *driver;
5a74d0e5 718 /* Pointer to the next element of the chain. */
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719 struct font_driver_list *next;
720};
721
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722
723/* Chain of arbitrary data specific to each font driver. Each frame
724 has it's own font data list at FRAME_PTR->font_data_list. */
725
726struct font_data_list
727{
728 /* Pointer to the font driver. */
729 struct font_driver *driver;
730 /* Data specific to the font driver. */
731 void *data;
732 /* Pointer to the next element of the chain. */
733 struct font_data_list *next;
734};
735
c2f5bfd6 736EXFUN (Ffont_spec, MANY);
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737extern Lisp_Object copy_font_spec (Lisp_Object);
738extern Lisp_Object merge_font_spec (Lisp_Object, Lisp_Object);
4b4836de 739EXFUN (Ffont_get, 2);
875003e5 740EXFUN (Ffont_put, 3);
8d3251f2 741EXFUN (Flist_fonts, 4);
f6a651cb 742EXFUN (Ffont_xlfd_name, 2);
c2f5bfd6 743
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744extern Lisp_Object font_make_entity (void);
745extern Lisp_Object font_make_object (int, Lisp_Object, int);
746
747extern Lisp_Object find_font_encoding (Lisp_Object);
748extern int font_registry_charsets (Lisp_Object, struct charset **,
749 struct charset **);
750extern int font_style_to_value (enum font_property_index prop,
751 Lisp_Object name, int noerror);
752extern Lisp_Object font_style_symbolic (Lisp_Object font,
753 enum font_property_index prop,
754 int for_face);
755
756extern int font_match_p (Lisp_Object spec, Lisp_Object font);
757extern Lisp_Object font_list_entities (Lisp_Object frame,
758 Lisp_Object spec);
759
760extern Lisp_Object font_get_name (Lisp_Object font_object);
761extern Lisp_Object font_spec_from_name (Lisp_Object font_name);
762extern Lisp_Object font_get_frame (Lisp_Object font_object);
763extern int font_has_char (FRAME_PTR, Lisp_Object, int);
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764
765extern void font_clear_prop (Lisp_Object *attrs,
766 enum font_property_index prop);
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767extern Lisp_Object font_find_for_lface (FRAME_PTR f, Lisp_Object *lface,
768 Lisp_Object spec, int c);
769extern Lisp_Object font_open_for_lface (FRAME_PTR f, Lisp_Object entity,
770 Lisp_Object *lface,
771 Lisp_Object spec);
772extern Lisp_Object font_load_for_lface (FRAME_PTR f, Lisp_Object *lface,
773 Lisp_Object spec);
774extern void font_prepare_for_face (FRAME_PTR f, struct face *face);
775extern void font_done_for_face (FRAME_PTR f, struct face *face);
776
777extern Lisp_Object font_open_by_spec (FRAME_PTR f, Lisp_Object spec);
42ca4633 778extern Lisp_Object font_open_by_name (FRAME_PTR f, const char *name);
c2f5bfd6 779
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780extern Lisp_Object font_intern_prop (const char *str, ptrdiff_t len,
781 int force_symbol);
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782extern void font_update_sort_order (int *order);
783
784extern void font_parse_family_registry (Lisp_Object family,
785 Lisp_Object registry,
786 Lisp_Object spec);
383e0970 787
09d93395 788extern int font_parse_xlfd (char *name, Lisp_Object font);
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789extern int font_unparse_xlfd (Lisp_Object font, int pixel_size,
790 char *name, int bytes);
383e0970 791extern int font_unparse_fcname (Lisp_Object font, int pixel_size,
09d93395 792 char *name, int bytes);
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793extern void register_font_driver (struct font_driver *driver, FRAME_PTR f);
794extern void free_font_driver_list (FRAME_PTR f);
795extern Lisp_Object font_update_drivers (FRAME_PTR f, Lisp_Object list);
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796extern Lisp_Object font_range (EMACS_INT, EMACS_INT *,
797 struct window *, struct face *,
798 Lisp_Object);
383e0970 799extern void font_fill_lglyph_metrics (Lisp_Object, Lisp_Object);
c2f5bfd6 800
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801extern Lisp_Object font_put_extra (Lisp_Object font, Lisp_Object prop,
802 Lisp_Object val);
c2f5bfd6 803
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804extern int font_put_frame_data (FRAME_PTR f,
805 struct font_driver *driver,
806 void *data);
807extern void *font_get_frame_data (FRAME_PTR f,
808 struct font_driver *driver);
5a74d0e5 809
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810extern void font_filter_properties (Lisp_Object font,
811 Lisp_Object alist,
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812 const char *const boolean_properties[],
813 const char *const non_boolean_properties[]);
9fa82824 814
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815#ifdef HAVE_FREETYPE
816extern struct font_driver ftfont_driver;
99f3388e 817extern void syms_of_ftfont (void);
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818#endif /* HAVE_FREETYPE */
819#ifdef HAVE_X_WINDOWS
820extern struct font_driver xfont_driver;
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821extern void syms_of_xfont (void);
822extern void syms_of_ftxfont (void);
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823#ifdef HAVE_XFT
824extern struct font_driver xftfont_driver;
99f3388e 825extern void syms_of_xftfont (void);
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826#elif defined HAVE_FREETYPE
827extern struct font_driver ftxfont_driver;
828#endif
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829#ifdef HAVE_BDFFONT
830extern void syms_of_bdffont (void);
831#endif /* HAVE_BDFFONT */
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832#endif /* HAVE_X_WINDOWS */
833#ifdef WINDOWSNT
834extern struct font_driver w32font_driver;
97724679 835extern struct font_driver uniscribe_font_driver;
99f3388e 836extern void syms_of_w32font (void);
c2f5bfd6 837#endif /* WINDOWSNT */
edfda783 838#ifdef HAVE_NS
99f3388e 839extern Lisp_Object Qfontsize;
edfda783 840extern struct font_driver nsfont_driver;
99f3388e 841extern void syms_of_nsfont (void);
edfda783 842#endif /* HAVE_NS */
c2f5bfd6 843
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844#ifndef FONT_DEBUG
845#define FONT_DEBUG
846#endif
847
2f7c71a1 848extern Lisp_Object QCfoundry;
99f3388e 849
675e2c69
DN
850extern void font_add_log (const char *, Lisp_Object, Lisp_Object);
851extern void font_deferred_log (const char *, Lisp_Object, Lisp_Object);
f6a651cb 852
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853#define FONT_ADD_LOG(ACTION, ARG, RESULT) \
854 do { \
855 if (! EQ (Vfont_log, Qt)) \
856 font_add_log ((ACTION), (ARG), (RESULT)); \
857 } while (0)
858
859#define FONT_DEFERRED_LOG(ACTION, ARG, RESULT) \
860 do { \
861 if (! EQ (Vfont_log, Qt)) \
862 font_deferred_log ((ACTION), (ARG), (RESULT)); \
863 } while (0)
864
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865#ifdef FONT_DEBUG
866#define font_assert(X) do {if (!(X)) abort ();} while (0)
867#else /* not FONT_DEBUG */
868#define font_assert(X) (void) 0
869#endif /* not FONT_DEBUG */
870
c2f5bfd6 871#endif /* not EMACS_FONT_H */