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1 /* Basic multilingual character support.
2 Copyright (C) 1995, 1997 Electrotechnical Laboratory, JAPAN.
3 Licensed to the Free Software Foundation.
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 2, or (at your option)
10 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; see the file COPYING. If not, write to
19 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
21
22 /* At first, see the document in `charset.h' to understand the code in
23 this file. */
24
25 #include <stdio.h>
26
27 #ifdef emacs
28
29 #include <sys/types.h>
30 #include <config.h>
31 #include "lisp.h"
32 #include "buffer.h"
33 #include "charset.h"
34 #include "coding.h"
35 #include "disptab.h"
36
37 #else /* not emacs */
38
39 #include "mulelib.h"
40
41 #endif /* emacs */
42
43 Lisp_Object Qcharset, Qascii, Qcomposition;
44
45 /* Declaration of special leading-codes. */
46 int leading_code_composition; /* for composite characters */
47 int leading_code_private_11; /* for private DIMENSION1 of 1-column */
48 int leading_code_private_12; /* for private DIMENSION1 of 2-column */
49 int leading_code_private_21; /* for private DIMENSION2 of 1-column */
50 int leading_code_private_22; /* for private DIMENSION2 of 2-column */
51
52 /* Declaration of special charsets. */
53 int charset_ascii; /* ASCII */
54 int charset_composition; /* for a composite character */
55 int charset_latin_iso8859_1; /* ISO8859-1 (Latin-1) */
56 int charset_jisx0208_1978; /* JISX0208.1978 (Japanese Kanji old set) */
57 int charset_jisx0208; /* JISX0208.1983 (Japanese Kanji) */
58 int charset_katakana_jisx0201; /* JISX0201.Kana (Japanese Katakana) */
59 int charset_latin_jisx0201; /* JISX0201.Roman (Japanese Roman) */
60 int charset_big5_1; /* Big5 Level 1 (Chinese Traditional) */
61 int charset_big5_2; /* Big5 Level 2 (Chinese Traditional) */
62
63 Lisp_Object Qcharset_table;
64
65 /* A char-table containing information of each character set. */
66 Lisp_Object Vcharset_table;
67
68 /* A vector of charset symbol indexed by charset-id. This is used
69 only for returning charset symbol from C functions. */
70 Lisp_Object Vcharset_symbol_table;
71
72 /* A list of charset symbols ever defined. */
73 Lisp_Object Vcharset_list;
74
75 /* Tables used by macros BYTES_BY_CHAR_HEAD and WIDTH_BY_CHAR_HEAD. */
76 int bytes_by_char_head[256];
77 int width_by_char_head[256];
78
79 /* Mapping table from ISO2022's charset (specified by DIMENSION,
80 CHARS, and FINAL-CHAR) to Emacs' charset. */
81 int iso_charset_table[2][2][128];
82
83 /* Table of pointers to the structure `cmpchar_info' indexed by
84 CMPCHAR-ID. */
85 struct cmpchar_info **cmpchar_table;
86 /* The current size of `cmpchar_table'. */
87 static int cmpchar_table_size;
88 /* Number of the current composite characters. */
89 int n_cmpchars;
90
91 /* Variables used locally in the macro FETCH_MULTIBYTE_CHAR. */
92 unsigned char *_fetch_multibyte_char_p;
93 int _fetch_multibyte_char_len;
94
95 #define min(X, Y) ((X) < (Y) ? (X) : (Y))
96 #define max(X, Y) ((X) > (Y) ? (X) : (Y))
97 \f
98 /* Set STR a pointer to the multi-byte form of the character C. If C
99 is not a composite character, the multi-byte form is set in WORKBUF
100 and STR points WORKBUF. The caller should allocate at least 4-byte
101 area at WORKBUF in advance. Returns the length of the multi-byte
102 form. If C is an invalid character to have a multi-byte form,
103 signal an error.
104
105 Use macro `CHAR_STRING (C, WORKBUF, STR)' instead of calling this
106 function directly if C can be an ASCII character. */
107
108 int
109 non_ascii_char_to_string (c, workbuf, str)
110 int c;
111 unsigned char *workbuf, **str;
112 {
113 int charset, c1, c2;
114
115 if (COMPOSITE_CHAR_P (c))
116 {
117 int cmpchar_id = COMPOSITE_CHAR_ID (c);
118
119 if (cmpchar_id < n_cmpchars)
120 {
121 *str = cmpchar_table[cmpchar_id]->data;
122 return cmpchar_table[cmpchar_id]->len;
123 }
124 else
125 {
126 error ("Invalid character: %d", c);
127 }
128 }
129
130 SPLIT_NON_ASCII_CHAR (c, charset, c1, c2);
131 if (!charset
132 || ! CHARSET_DEFINED_P (charset)
133 || c1 >= 0 && c1 < 32
134 || c2 >= 0 && c2 < 32)
135 error ("Invalid character: %d", c);
136
137 *str = workbuf;
138 *workbuf++ = CHARSET_LEADING_CODE_BASE (charset);
139 if (*workbuf = CHARSET_LEADING_CODE_EXT (charset))
140 workbuf++;
141 *workbuf++ = c1 | 0x80;
142 if (c2 >= 0)
143 *workbuf++ = c2 | 0x80;
144
145 return (workbuf - *str);
146 }
147
148 /* Return a non-ASCII character of which multi-byte form is at STR of
149 length LEN. If ACTUAL_LEN is not NULL, the actual length of the
150 character is set to the address ACTUAL_LEN.
151
152 Use macro `STRING_CHAR (STR, LEN)' instead of calling this function
153 directly if STR can hold an ASCII character. */
154
155 string_to_non_ascii_char (str, len, actual_len)
156 unsigned char *str;
157 int len, *actual_len;
158 {
159 int charset;
160 unsigned char c1, c2;
161 register int c;
162
163 if (SPLIT_STRING (str, len, charset, c1, c2) == CHARSET_ASCII)
164 {
165 if (actual_len)
166 *actual_len = 1;
167 return (int) *str;
168 }
169
170 c = MAKE_NON_ASCII_CHAR (charset, c1, c2);
171
172 if (actual_len)
173 *actual_len = (charset == CHARSET_COMPOSITION
174 ? cmpchar_table[COMPOSITE_CHAR_ID (c)]->len
175 : BYTES_BY_CHAR_HEAD (*str));
176 return c;
177 }
178
179 /* Return the length of the multi-byte form at string STR of length LEN. */
180 int
181 multibyte_form_length (str, len)
182 unsigned char *str;
183 int len;
184 {
185 int charset;
186 unsigned char c1, c2;
187 register int c;
188
189 if (SPLIT_STRING (str, len, charset, c1, c2) == CHARSET_ASCII)
190 return 1;
191
192 return (charset == CHARSET_COMPOSITION
193 ? cmpchar_table[(c1 << 7) | c2]->len
194 : BYTES_BY_CHAR_HEAD (*str));
195 }
196
197 /* Check if string STR of length LEN contains valid multi-byte form of
198 a character. If valid, charset and position codes of the character
199 is set at *CHARSET, *C1, and *C2, and return 0. If not valid,
200 return -1. This should be used only in the macro SPLIT_STRING
201 which checks range of STR in advance. */
202
203 split_non_ascii_string (str, len, charset, c1, c2)
204 register unsigned char *str, *c1, *c2;
205 register int len, *charset;
206 {
207 register unsigned int cs = *str++;
208
209 if (cs == LEADING_CODE_COMPOSITION)
210 {
211 int cmpchar_id = str_cmpchar_id (str - 1, len);
212
213 if (cmpchar_id < 0)
214 return -1;
215 *charset = cs, *c1 = cmpchar_id >> 7, *c2 = cmpchar_id & 0x7F;
216 }
217 else if ((cs < LEADING_CODE_PRIVATE_11 || (cs = *str++) >= 0xA0)
218 && CHARSET_DEFINED_P (cs))
219 {
220 *charset = cs;
221 if (*str < 0xA0)
222 return -1;
223 *c1 = (*str++) & 0x7F;
224 if (CHARSET_DIMENSION (cs) == 2)
225 {
226 if (*str < 0xA0)
227 return -1;
228 *c2 = (*str++) & 0x7F;
229 }
230 }
231 else
232 return -1;
233 return 0;
234 }
235
236 /* Return a character unified with C (or a character made of CHARSET,
237 C1, and C2) in unification table TABLE. If no unification is found
238 in TABLE, return C. */
239 unify_char (table, c, charset, c1, c2)
240 Lisp_Object table;
241 int c, charset, c1, c2;
242 {
243 Lisp_Object ch;
244 int alt_charset, alt_c1, alt_c2, dimension;
245
246 if (c < 0) c = MAKE_CHAR (charset, c1, c2);
247 if (!CHAR_TABLE_P (table)
248 || (ch = Faref (table, make_number (c)), !INTEGERP (ch))
249 || XINT (ch) < 0)
250 return c;
251
252 SPLIT_CHAR (XFASTINT (ch), alt_charset, alt_c1, alt_c2);
253 dimension = CHARSET_DIMENSION (alt_charset);
254 if (dimension == 1 && alt_c1 > 0 || dimension == 2 && alt_c2 > 0)
255 /* CH is not a generic character, just return it. */
256 return XFASTINT (ch);
257
258 /* Since CH is a generic character, we must return a specific
259 charater which has the same position codes as C from CH. */
260 if (charset < 0)
261 SPLIT_CHAR (c, charset, c1, c2);
262 if (dimension != CHARSET_DIMENSION (charset))
263 /* We can't make such a character because of dimension mismatch. */
264 return c;
265 if (!alt_c1) alt_c1 = c1;
266 if (!alt_c2) alt_c2 = c2;
267 return MAKE_CHAR (alt_charset, c1, c2);
268 }
269
270 /* Update the table Vcharset_table with the given arguments (see the
271 document of `define-charset' for the meaning of each argument).
272 Several other table contents are also updated. The caller should
273 check the validity of CHARSET-ID and the remaining arguments in
274 advance. */
275
276 void
277 update_charset_table (charset_id, dimension, chars, width, direction,
278 iso_final_char, iso_graphic_plane,
279 short_name, long_name, description)
280 Lisp_Object charset_id, dimension, chars, width, direction;
281 Lisp_Object iso_final_char, iso_graphic_plane;
282 Lisp_Object short_name, long_name, description;
283 {
284 int charset = XINT (charset_id);
285 int bytes;
286 unsigned char leading_code_base, leading_code_ext;
287
288 if (NILP (CHARSET_TABLE_ENTRY (charset)))
289 CHARSET_TABLE_ENTRY (charset)
290 = Fmake_vector (make_number (CHARSET_MAX_IDX), Qnil);
291
292 /* Get byte length of multibyte form, base leading-code, and
293 extended leading-code of the charset. See the comment under the
294 title "GENERAL NOTE on CHARACTER SET (CHARSET)" in charset.h. */
295 bytes = XINT (dimension);
296 if (charset < MIN_CHARSET_PRIVATE_DIMENSION1)
297 {
298 /* Official charset, it doesn't have an extended leading-code. */
299 if (charset != CHARSET_ASCII)
300 bytes += 1; /* For a base leading-code. */
301 leading_code_base = charset;
302 leading_code_ext = 0;
303 }
304 else
305 {
306 /* Private charset. */
307 bytes += 2; /* For base and extended leading-codes. */
308 leading_code_base
309 = (charset < LEADING_CODE_EXT_12
310 ? LEADING_CODE_PRIVATE_11
311 : (charset < LEADING_CODE_EXT_21
312 ? LEADING_CODE_PRIVATE_12
313 : (charset < LEADING_CODE_EXT_22
314 ? LEADING_CODE_PRIVATE_21
315 : LEADING_CODE_PRIVATE_22)));
316 leading_code_ext = charset;
317 }
318
319 CHARSET_TABLE_INFO (charset, CHARSET_ID_IDX) = charset_id;
320 CHARSET_TABLE_INFO (charset, CHARSET_BYTES_IDX) = make_number (bytes);
321 CHARSET_TABLE_INFO (charset, CHARSET_DIMENSION_IDX) = dimension;
322 CHARSET_TABLE_INFO (charset, CHARSET_CHARS_IDX) = chars;
323 CHARSET_TABLE_INFO (charset, CHARSET_WIDTH_IDX) = width;
324 CHARSET_TABLE_INFO (charset, CHARSET_DIRECTION_IDX) = direction;
325 CHARSET_TABLE_INFO (charset, CHARSET_LEADING_CODE_BASE_IDX)
326 = make_number (leading_code_base);
327 CHARSET_TABLE_INFO (charset, CHARSET_LEADING_CODE_EXT_IDX)
328 = make_number (leading_code_ext);
329 CHARSET_TABLE_INFO (charset, CHARSET_ISO_FINAL_CHAR_IDX) = iso_final_char;
330 CHARSET_TABLE_INFO (charset, CHARSET_ISO_GRAPHIC_PLANE_IDX)
331 = iso_graphic_plane;
332 CHARSET_TABLE_INFO (charset, CHARSET_SHORT_NAME_IDX) = short_name;
333 CHARSET_TABLE_INFO (charset, CHARSET_LONG_NAME_IDX) = long_name;
334 CHARSET_TABLE_INFO (charset, CHARSET_DESCRIPTION_IDX) = description;
335 CHARSET_TABLE_INFO (charset, CHARSET_PLIST_IDX) = Qnil;
336
337 {
338 /* If we have already defined a charset which has the same
339 DIMENSION, CHARS and ISO-FINAL-CHAR but the different
340 DIRECTION, we must update the entry REVERSE-CHARSET of both
341 charsets. If there's no such charset, the value of the entry
342 is set to nil. */
343 int i;
344
345 for (i = 0; i <= MAX_CHARSET; i++)
346 if (!NILP (CHARSET_TABLE_ENTRY (i)))
347 {
348 if (CHARSET_DIMENSION (i) == XINT (dimension)
349 && CHARSET_CHARS (i) == XINT (chars)
350 && CHARSET_ISO_FINAL_CHAR (i) == XINT (iso_final_char)
351 && CHARSET_DIRECTION (i) != XINT (direction))
352 {
353 CHARSET_TABLE_INFO (charset, CHARSET_REVERSE_CHARSET_IDX)
354 = make_number (i);
355 CHARSET_TABLE_INFO (i, CHARSET_REVERSE_CHARSET_IDX) = charset_id;
356 break;
357 }
358 }
359 if (i > MAX_CHARSET)
360 /* No such a charset. */
361 CHARSET_TABLE_INFO (charset, CHARSET_REVERSE_CHARSET_IDX)
362 = make_number (-1);
363 }
364
365 if (charset != CHARSET_ASCII
366 && charset < MIN_CHARSET_PRIVATE_DIMENSION1)
367 {
368 /* Update tables bytes_by_char_head and width_by_char_head. */
369 bytes_by_char_head[leading_code_base] = bytes;
370 width_by_char_head[leading_code_base] = XINT (width);
371
372 /* Update table emacs_code_class. */
373 emacs_code_class[charset] = (bytes == 2
374 ? EMACS_leading_code_2
375 : (bytes == 3
376 ? EMACS_leading_code_3
377 : EMACS_leading_code_4));
378 }
379
380 /* Update table iso_charset_table. */
381 if (ISO_CHARSET_TABLE (dimension, chars, iso_final_char) < 0)
382 ISO_CHARSET_TABLE (dimension, chars, iso_final_char) = charset;
383 }
384
385 #ifdef emacs
386
387 /* Return charset id of CHARSET_SYMBOL, or return -1 if CHARSET_SYMBOL
388 is invalid. */
389 int
390 get_charset_id (charset_symbol)
391 Lisp_Object charset_symbol;
392 {
393 Lisp_Object val;
394 int charset;
395
396 return ((SYMBOLP (charset_symbol)
397 && (val = Fget (charset_symbol, Qcharset), VECTORP (val))
398 && (charset = XINT (XVECTOR (val)->contents[CHARSET_ID_IDX]),
399 CHARSET_VALID_P (charset)))
400 ? charset : -1);
401 }
402
403 /* Return an identification number for a new private charset of
404 DIMENSION and WIDTH. If there's no more room for the new charset,
405 return 0. */
406 Lisp_Object
407 get_new_private_charset_id (dimension, width)
408 int dimension, width;
409 {
410 int charset, from, to;
411
412 if (dimension == 1)
413 {
414 if (width == 1)
415 from = LEADING_CODE_EXT_11, to = LEADING_CODE_EXT_12;
416 else
417 from = LEADING_CODE_EXT_12, to = LEADING_CODE_EXT_21;
418 }
419 else
420 {
421 if (width == 1)
422 from = LEADING_CODE_EXT_21, to = LEADING_CODE_EXT_22;
423 else
424 from = LEADING_CODE_EXT_22, to = LEADING_CODE_EXT_MAX - 1;
425 }
426
427 for (charset = from; charset < to; charset++)
428 if (!CHARSET_DEFINED_P (charset)) break;
429
430 return make_number (charset < to ? charset : 0);
431 }
432
433 DEFUN ("define-charset", Fdefine_charset, Sdefine_charset, 3, 3, 0,
434 "Define CHARSET-ID as the identification number of CHARSET with INFO-VECTOR.\n\
435 If CHARSET-ID is nil, it is decided automatically, which means CHARSET is\n\
436 treated as a private charset.\n\
437 INFO-VECTOR is a vector of the format:\n\
438 [DIMENSION CHARS WIDTH DIRECTION ISO-FINAL-CHAR ISO-GRAPHIC-PLANE\n\
439 SHORT-NAME LONG-NAME DESCRIPTION]\n\
440 The meanings of each elements is as follows:\n\
441 DIMENSION (integer) is the number of bytes to represent a character: 1 or 2.\n\
442 CHARS (integer) is the number of characters in a dimension: 94 or 96.\n\
443 WIDTH (integer) is the number of columns a character in the charset\n\
444 occupies on the screen: one of 0, 1, and 2.\n\
445 \n\
446 DIRECTION (integer) is the rendering direction of characters in the\n\
447 charset when rendering. If 0, render from right to left, else\n\
448 render from left to right.\n\
449 \n\
450 ISO-FINAL-CHAR (character) is the final character of the\n\
451 corresponding ISO 2022 charset.\n\
452 \n\
453 ISO-GRAPHIC-PLANE (integer) is the graphic plane to be invoked\n\
454 while encoding to variants of ISO 2022 coding system, one of the\n\
455 following: 0/graphic-plane-left(GL), 1/graphic-plane-right(GR).\n\
456 \n\
457 SHORT-NAME (string) is the short name to refer to the charset.\n\
458 \n\
459 LONG-NAME (string) is the long name to refer to the charset.\n\
460 \n\
461 DESCRIPTION (string) is the description string of the charset.")
462 (charset_id, charset_symbol, info_vector)
463 Lisp_Object charset_id, charset_symbol, info_vector;
464 {
465 Lisp_Object *vec;
466
467 if (!NILP (charset_id))
468 CHECK_NUMBER (charset_id, 0);
469 CHECK_SYMBOL (charset_symbol, 1);
470 CHECK_VECTOR (info_vector, 2);
471
472 if (! NILP (charset_id))
473 {
474 if (! CHARSET_VALID_P (XINT (charset_id)))
475 error ("Invalid CHARSET: %d", XINT (charset_id));
476 else if (CHARSET_DEFINED_P (XINT (charset_id)))
477 error ("Already defined charset: %d", XINT (charset_id));
478 }
479
480 vec = XVECTOR (info_vector)->contents;
481 if (XVECTOR (info_vector)->size != 9
482 || !INTEGERP (vec[0]) || !(XINT (vec[0]) == 1 || XINT (vec[0]) == 2)
483 || !INTEGERP (vec[1]) || !(XINT (vec[1]) == 94 || XINT (vec[1]) == 96)
484 || !INTEGERP (vec[2]) || !(XINT (vec[2]) == 1 || XINT (vec[2]) == 2)
485 || !INTEGERP (vec[3]) || !(XINT (vec[3]) == 0 || XINT (vec[3]) == 1)
486 || !INTEGERP (vec[4]) || !(XINT (vec[4]) >= '0' && XINT (vec[4]) <= '~')
487 || !INTEGERP (vec[5]) || !(XINT (vec[5]) == 0 || XINT (vec[5]) == 1)
488 || !STRINGP (vec[6])
489 || !STRINGP (vec[7])
490 || !STRINGP (vec[8]))
491 error ("Invalid info-vector argument for defining charset %s",
492 XSYMBOL (charset_symbol)->name->data);
493
494 if (NILP (charset_id))
495 {
496 charset_id = get_new_private_charset_id (XINT (vec[0]), XINT (vec[2]));
497 if (XINT (charset_id) == 0)
498 error ("There's no room for a new private charset %s",
499 XSYMBOL (charset_symbol)->name->data);
500 }
501
502 update_charset_table (charset_id, vec[0], vec[1], vec[2], vec[3],
503 vec[4], vec[5], vec[6], vec[7], vec[8]);
504 Fput (charset_symbol, Qcharset, CHARSET_TABLE_ENTRY (XINT (charset_id)));
505 CHARSET_SYMBOL (XINT (charset_id)) = charset_symbol;
506 Vcharset_list = Fcons (charset_symbol, Vcharset_list);
507 return Qnil;
508 }
509
510 DEFUN ("get-unused-iso-final-char", Fget_unused_iso_final_char,
511 Sget_unused_iso_final_char, 2, 2, 0,
512 "Return an unsed ISO's final char for a charset of DIMENISION and CHARS.\n\
513 DIMENSION is the number of bytes to represent a character: 1 or 2.\n\
514 CHARS is the number of characters in a dimension: 94 or 96.\n\
515 \n\
516 This final char is for private use, thus the range is `0' (48) .. `?' (63).\n\
517 If there's no unused final char for the specified kind of charset,\n\
518 return nil.")
519 (dimension, chars)
520 Lisp_Object dimension, chars;
521 {
522 int final_char;
523
524 CHECK_NUMBER (dimension, 0);
525 CHECK_NUMBER (chars, 1);
526 if (XINT (dimension) != 1 && XINT (dimension) != 2)
527 error ("Invalid charset dimension %d, it should be 1 or 2",
528 XINT (dimension));
529 if (XINT (chars) != 94 && XINT (chars) != 96)
530 error ("Invalid charset chars %d, it should be 94 or 96",
531 XINT (chars));
532 for (final_char = '0'; final_char <= '?'; final_char++)
533 {
534 if (ISO_CHARSET_TABLE (dimension, chars, make_number (final_char)) < 0)
535 break;
536 }
537 return (final_char <= '?' ? make_number (final_char) : Qnil);
538 }
539
540 DEFUN ("declare-equiv-charset", Fdeclare_equiv_charset, Sdeclare_equiv_charset,
541 4, 4, 0,
542 "Declare a charset of DIMENSION, CHARS, FINAL-CHAR is the same as CHARSET.\n\
543 CHARSET should be defined by `defined-charset' in advance.")
544 (dimension, chars, final_char, charset_symbol)
545 Lisp_Object dimension, chars, final_char, charset_symbol;
546 {
547 int charset;
548
549 CHECK_NUMBER (dimension, 0);
550 CHECK_NUMBER (chars, 1);
551 CHECK_NUMBER (final_char, 2);
552 CHECK_SYMBOL (charset_symbol, 3);
553
554 if (XINT (dimension) != 1 && XINT (dimension) != 2)
555 error ("Invalid DIMENSION %d, it should be 1 or 2", XINT (dimension));
556 if (XINT (chars) != 94 && XINT (chars) != 96)
557 error ("Invalid CHARS %d, it should be 94 or 96", XINT (chars));
558 if (XINT (final_char) < '0' || XFASTINT (final_char) > '~')
559 error ("Invalid FINAL-CHAR %c, it should be `0'..`~'", XINT (chars));
560 if ((charset = get_charset_id (charset_symbol)) < 0)
561 error ("Invalid charset %s", XSYMBOL (charset_symbol)->name->data);
562
563 ISO_CHARSET_TABLE (dimension, chars, final_char) = charset;
564 return Qnil;
565 }
566
567 /* Return number of different charsets in STR of length LEN. In
568 addition, for each found charset N, CHARSETS[N] is set 1. The
569 caller should allocate CHARSETS (MAX_CHARSET + 1 elements) in advance.
570 It may lookup a unification table TABLE if supplied. */
571
572 int
573 find_charset_in_str (str, len, charsets, table)
574 unsigned char *str;
575 int len, *charsets;
576 Lisp_Object table;
577 {
578 register int num = 0, c;
579
580 if (! CHAR_TABLE_P (table))
581 table = Qnil;
582
583 while (len > 0)
584 {
585 int bytes, charset;
586 c = *str;
587
588 if (c == LEADING_CODE_COMPOSITION)
589 {
590 int cmpchar_id = str_cmpchar_id (str, len);
591 GLYPH *glyph;
592
593 if (cmpchar_id > 0)
594 {
595 struct cmpchar_info *cmpcharp = cmpchar_table[cmpchar_id];
596 int i;
597
598 for (i = 0; i < cmpcharp->glyph_len; i++)
599 {
600 c = cmpcharp->glyph[i];
601 if (!NILP (table))
602 {
603 if ((c = unify_char (table, c, 0, 0, 0)) < 0)
604 c = cmpcharp->glyph[i];
605 }
606 if ((charset = CHAR_CHARSET (c)) < 0)
607 charset = CHARSET_ASCII;
608 if (!charsets[charset])
609 {
610 charsets[charset] = 1;
611 num += 1;
612 }
613 }
614 str += cmpcharp->len;
615 len -= cmpcharp->len;
616 continue;
617 }
618
619 charset = CHARSET_ASCII;
620 bytes = 1;
621 }
622 else
623 {
624 c = STRING_CHAR_AND_LENGTH (str, len, bytes);
625 if (! NILP (table))
626 {
627 int c1 = unify_char (table, c, 0, 0, 0);
628 if (c1 >= 0)
629 c = c1;
630 }
631 charset = CHAR_CHARSET (c);
632 }
633
634 if (!charsets[charset])
635 {
636 charsets[charset] = 1;
637 num += 1;
638 }
639 str += bytes;
640 len -= bytes;
641 }
642 return num;
643 }
644
645 DEFUN ("find-charset-region", Ffind_charset_region, Sfind_charset_region,
646 2, 3, 0,
647 "Return a list of charsets in the region between BEG and END.\n\
648 BEG and END are buffer positions.\n\
649 Optional arg TABLE if non-nil is a unification table to look up.")
650 (beg, end, table)
651 Lisp_Object beg, end, table;
652 {
653 int charsets[MAX_CHARSET + 1];
654 int from, from_byte, to, stop, stop_byte, i;
655 Lisp_Object val;
656
657 validate_region (&beg, &end);
658 from = XFASTINT (beg);
659 stop = to = XFASTINT (end);
660
661 if (from < GPT && GPT < to)
662 {
663 stop = GPT;
664 stop_byte = GPT_BYTE;
665 }
666 else
667 stop_byte = CHAR_TO_BYTE (stop);
668
669 from_byte = CHAR_TO_BYTE (from);
670
671 bzero (charsets, (MAX_CHARSET + 1) * sizeof (int));
672 while (1)
673 {
674 find_charset_in_str (BYTE_POS_ADDR (from_byte), stop_byte - from_byte,
675 charsets, table);
676 if (stop < to)
677 {
678 from = stop, from_byte = stop_byte;
679 stop = to, stop_byte = CHAR_TO_BYTE (stop);
680 }
681 else
682 break;
683 }
684
685 val = Qnil;
686 for (i = MAX_CHARSET; i >= 0; i--)
687 if (charsets[i])
688 val = Fcons (CHARSET_SYMBOL (i), val);
689 return val;
690 }
691
692 DEFUN ("find-charset-string", Ffind_charset_string, Sfind_charset_string,
693 1, 2, 0,
694 "Return a list of charsets in STR.\n\
695 Optional arg TABLE if non-nil is a unification table to look up.")
696 (str, table)
697 Lisp_Object str, table;
698 {
699 int charsets[MAX_CHARSET + 1];
700 int i;
701 Lisp_Object val;
702
703 CHECK_STRING (str, 0);
704 bzero (charsets, (MAX_CHARSET + 1) * sizeof (int));
705 find_charset_in_str (XSTRING (str)->data, XSTRING (str)->size,
706 charsets, table);
707 val = Qnil;
708 for (i = MAX_CHARSET; i >= 0; i--)
709 if (charsets[i])
710 val = Fcons (CHARSET_SYMBOL (i), val);
711 return val;
712 }
713 \f
714 DEFUN ("make-char-internal", Fmake_char_internal, Smake_char_internal, 1, 3, 0,
715 "")
716 (charset, code1, code2)
717 Lisp_Object charset, code1, code2;
718 {
719 CHECK_NUMBER (charset, 0);
720
721 if (NILP (code1))
722 XSETFASTINT (code1, 0);
723 else
724 CHECK_NUMBER (code1, 1);
725 if (NILP (code2))
726 XSETFASTINT (code2, 0);
727 else
728 CHECK_NUMBER (code2, 2);
729
730 if (!CHARSET_DEFINED_P (XINT (charset)))
731 error ("Invalid charset: %d", XINT (charset));
732
733 return make_number (MAKE_CHAR (XINT (charset), XINT (code1), XINT (code2)));
734 }
735
736 DEFUN ("split-char", Fsplit_char, Ssplit_char, 1, 1, 0,
737 "Return list of charset and one or two position-codes of CHAR.")
738 (ch)
739 Lisp_Object ch;
740 {
741 Lisp_Object val;
742 int charset, c1, c2;
743
744 CHECK_NUMBER (ch, 0);
745 SPLIT_CHAR (XFASTINT (ch), charset, c1, c2);
746 return (c2 >= 0
747 ? Fcons (CHARSET_SYMBOL (charset),
748 Fcons (make_number (c1), Fcons (make_number (c2), Qnil)))
749 : Fcons (CHARSET_SYMBOL (charset), Fcons (make_number (c1), Qnil)));
750 }
751
752 DEFUN ("char-charset", Fchar_charset, Schar_charset, 1, 1, 0,
753 "Return charset of CHAR.")
754 (ch)
755 Lisp_Object ch;
756 {
757 CHECK_NUMBER (ch, 0);
758
759 return CHARSET_SYMBOL (CHAR_CHARSET (XINT (ch)));
760 }
761
762 DEFUN ("iso-charset", Fiso_charset, Siso_charset, 3, 3, 0,
763 "Return charset of ISO's specification DIMENSION, CHARS, and FINAL-CHAR.")
764 (dimension, chars, final_char)
765 Lisp_Object dimension, chars, final_char;
766 {
767 int charset;
768
769 CHECK_NUMBER (dimension, 0);
770 CHECK_NUMBER (chars, 1);
771 CHECK_NUMBER (final_char, 2);
772
773 if ((charset = ISO_CHARSET_TABLE (dimension, chars, final_char)) < 0)
774 return Qnil;
775 return CHARSET_SYMBOL (charset);
776 }
777
778 /* If GENERICP is nonzero, return nonzero iff C is a valid normal or
779 generic character. If GENERICP is zero, return nonzero iff C is a
780 valid normal character. Do not call this function directly,
781 instead use macro CHAR_VALID_P. */
782 int
783 char_valid_p (c, genericp)
784 int c, genericp;
785 {
786 int charset, c1, c2;
787
788 if (c < 0)
789 return 0;
790 if (SINGLE_BYTE_CHAR_P (c))
791 return 1;
792 SPLIT_NON_ASCII_CHAR (c, charset, c1, c2);
793 if (!CHARSET_VALID_P (charset))
794 return 0;
795 return (c < MIN_CHAR_COMPOSITION
796 ? ((c & CHAR_FIELD1_MASK) /* i.e. dimension of C is two. */
797 ? (genericp && c1 == 0 && c2 == 0
798 || c1 >= 32 && c2 >= 32)
799 : (genericp && c1 == 0
800 || c1 >= 32))
801 : c < MIN_CHAR_COMPOSITION + n_cmpchars);
802 }
803
804 DEFUN ("char-valid-p", Fchar_valid_p, Schar_valid_p, 1, 2, 0,
805 "Return t if OBJECT is a valid normal character.
806 If optional arg GENERICP is non-nil, also return t if OBJECT is
807 a valid generic character.")
808 (object, genericp)
809 Lisp_Object object, genericp;
810 {
811 if (! NATNUMP (object))
812 return Qnil;
813 return (CHAR_VALID_P (XFASTINT (object), !NILP (genericp)) ? Qt : Qnil);
814 }
815
816 DEFUN ("char-bytes", Fchar_bytes, Schar_bytes, 1, 1, 0,
817 "Return byte length of multi-byte form of CHAR.")
818 (ch)
819 Lisp_Object ch;
820 {
821 Lisp_Object val;
822 int bytes;
823
824 CHECK_NUMBER (ch, 0);
825 if (COMPOSITE_CHAR_P (XFASTINT (ch)))
826 {
827 unsigned int id = COMPOSITE_CHAR_ID (XFASTINT (ch));
828
829 bytes = (id < n_cmpchars ? cmpchar_table[id]->len : 1);
830 }
831 else
832 {
833 int charset = CHAR_CHARSET (XFASTINT (ch));
834
835 bytes = CHARSET_DEFINED_P (charset) ? CHARSET_BYTES (charset) : 1;
836 }
837
838 XSETFASTINT (val, bytes);
839 return val;
840 }
841
842 /* Return the width of character of which multi-byte form starts with
843 C. The width is measured by how many columns occupied on the
844 screen when displayed in the current buffer. */
845
846 #define ONE_BYTE_CHAR_WIDTH(c) \
847 (c < 0x20 \
848 ? (c == '\t' \
849 ? XFASTINT (current_buffer->tab_width) \
850 : (c == '\n' ? 0 : (NILP (current_buffer->ctl_arrow) ? 4 : 2))) \
851 : (c < 0x7f \
852 ? 1 \
853 : (c == 0x7F \
854 ? (NILP (current_buffer->ctl_arrow) ? 4 : 2) \
855 : ((! NILP (current_buffer->enable_multibyte_characters) \
856 && BASE_LEADING_CODE_P (c)) \
857 ? WIDTH_BY_CHAR_HEAD (c) \
858 : 4)))) \
859
860
861 DEFUN ("char-width", Fchar_width, Schar_width, 1, 1, 0,
862 "Return width of CHAR when displayed in the current buffer.\n\
863 The width is measured by how many columns it occupies on the screen.")
864 (ch)
865 Lisp_Object ch;
866 {
867 Lisp_Object val, disp;
868 int c;
869 struct Lisp_Char_Table *dp = buffer_display_table ();
870
871 CHECK_NUMBER (ch, 0);
872
873 c = XINT (ch);
874
875 /* Get the way the display table would display it. */
876 disp = dp ? DISP_CHAR_VECTOR (dp, c) : Qnil;
877
878 if (VECTORP (disp))
879 XSETINT (val, XVECTOR (disp)->size);
880 else if (SINGLE_BYTE_CHAR_P (c))
881 XSETINT (val, ONE_BYTE_CHAR_WIDTH (c));
882 else if (COMPOSITE_CHAR_P (c))
883 {
884 int id = COMPOSITE_CHAR_ID (XFASTINT (ch));
885 XSETFASTINT (val, (id < n_cmpchars ? cmpchar_table[id]->width : 0));
886 }
887 else
888 {
889 int charset = CHAR_CHARSET (c);
890
891 XSETFASTINT (val, CHARSET_WIDTH (charset));
892 }
893 return val;
894 }
895
896 /* Return width of string STR of length LEN when displayed in the
897 current buffer. The width is measured by how many columns it
898 occupies on the screen. */
899
900 int
901 strwidth (str, len)
902 unsigned char *str;
903 int len;
904 {
905 unsigned char *endp = str + len;
906 int width = 0;
907 struct Lisp_Char_Table *dp = buffer_display_table ();
908
909 while (str < endp)
910 {
911 if (*str == LEADING_CODE_COMPOSITION)
912 {
913 int id = str_cmpchar_id (str, endp - str);
914
915 if (id < 0)
916 {
917 width += 4;
918 str++;
919 }
920 else
921 {
922 width += cmpchar_table[id]->width;
923 str += cmpchar_table[id]->len;
924 }
925 }
926 else
927 {
928 Lisp_Object disp;
929 int thiswidth;
930 int c = STRING_CHAR (str, endp - str);
931
932 /* Get the way the display table would display it. */
933 if (dp)
934 disp = DISP_CHAR_VECTOR (dp, c);
935 else
936 disp = Qnil;
937
938 if (VECTORP (disp))
939 thiswidth = XVECTOR (disp)->size;
940 else
941 thiswidth = ONE_BYTE_CHAR_WIDTH (*str);
942
943 width += thiswidth;
944 str += BYTES_BY_CHAR_HEAD (*str);
945 }
946 }
947 return width;
948 }
949
950 DEFUN ("string-width", Fstring_width, Sstring_width, 1, 1, 0,
951 "Return width of STRING when displayed in the current buffer.\n\
952 Width is measured by how many columns it occupies on the screen.\n\
953 When calculating width of a multibyte character in STRING,\n\
954 only the base leading-code is considered; the validity of\n\
955 the following bytes is not checked.")
956 (str)
957 Lisp_Object str;
958 {
959 Lisp_Object val;
960
961 CHECK_STRING (str, 0);
962 XSETFASTINT (val, strwidth (XSTRING (str)->data, XSTRING (str)->size));
963 return val;
964 }
965
966 DEFUN ("char-direction", Fchar_direction, Schar_direction, 1, 1, 0,
967 "Return the direction of CHAR.\n\
968 The returned value is 0 for left-to-right and 1 for right-to-left.")
969 (ch)
970 Lisp_Object ch;
971 {
972 int charset;
973
974 CHECK_NUMBER (ch, 0);
975 charset = CHAR_CHARSET (XFASTINT (ch));
976 if (!CHARSET_DEFINED_P (charset))
977 error ("Invalid character: %d", XINT (ch));
978 return CHARSET_TABLE_INFO (charset, CHARSET_DIRECTION_IDX);
979 }
980
981 DEFUN ("chars-in-string", Fchars_in_string, Schars_in_string, 1, 1, 0,
982 "Return number of characters in STRING.\n\
983 When using multibyte characters, this is not the necessarily same as\n\
984 the length of STRING; the length counts a multibyte characters as\n\
985 several bytes, but this function counts a multibyte character as one\n\
986 character.")
987 (str)
988 Lisp_Object str;
989 {
990 Lisp_Object val;
991 unsigned char *p, *endp;
992 int chars;
993
994 CHECK_STRING (str, 0);
995
996 if (NILP (current_buffer->enable_multibyte_characters))
997 return make_number (XSTRING (str)->size);
998
999 p = XSTRING (str)->data; endp = p + XSTRING (str)->size;
1000 chars = 0;
1001 while (p < endp)
1002 {
1003 if (*p == LEADING_CODE_COMPOSITION)
1004 {
1005 p++;
1006 while (p < endp && ! CHAR_HEAD_P (*p)) p++;
1007 }
1008 else
1009 p += BYTES_BY_CHAR_HEAD (*p);
1010 chars++;
1011 }
1012
1013 XSETFASTINT (val, chars);
1014 return val;
1015 }
1016
1017 DEFUN ("chars-in-region", Fchars_in_region, Schars_in_region, 2, 2, 0,
1018 "Return number of characters between BEG and END.")
1019 (beg, end)
1020 Lisp_Object beg, end;
1021 {
1022 int from, to;
1023
1024 from = min (XFASTINT (beg), XFASTINT (end));
1025 to = max (XFASTINT (beg), XFASTINT (end));
1026
1027 return to - from;
1028 }
1029
1030 int
1031 chars_in_text (ptr, nbytes)
1032 unsigned char *ptr;
1033 int nbytes;
1034 {
1035 unsigned char *endp;
1036 int chars;
1037
1038 if (NILP (current_buffer->enable_multibyte_characters))
1039 return nbytes;
1040
1041 endp = ptr + nbytes;
1042 chars = 0;
1043
1044 while (ptr < endp)
1045 {
1046 if (*ptr == LEADING_CODE_COMPOSITION)
1047 {
1048 ptr++;
1049 while (ptr < endp && ! CHAR_HEAD_P (*ptr)) ptr++;
1050 }
1051 else
1052 ptr += BYTES_BY_CHAR_HEAD (*ptr);
1053 chars++;
1054 }
1055
1056 return chars;
1057 }
1058
1059 DEFUN ("char-boundary-p", Fchar_boundary_p, Schar_boundary_p, 1, 1, 0,
1060 "Return non-nil value if POS is at character boundary of multibyte form.\n\
1061 When the value is non-nil, it contains some additional information:\n\
1062 0 if POS is at an ASCII character or at the end of range,\n\
1063 1 if POS is before a 2-byte length multi-byte form,\n\
1064 2 if POS is before a 3-byte length multi-byte form,\n\
1065 3 if POS is before a 4-byte length multi-byte form,\n\
1066 4 if POS is before a composite character.\n\
1067 If POS is out of range or not at character boundary, return NIL.")
1068 (pos)
1069 Lisp_Object pos;
1070 {
1071 return make_number (0);
1072 }
1073
1074 DEFUN ("concat-chars", Fconcat_chars, Sconcat_chars, 1, MANY, 0,
1075 "Concatenate all the argument characters and make the result a string.")
1076 (n, args)
1077 int n;
1078 Lisp_Object *args;
1079 {
1080 int i;
1081 unsigned char *buf
1082 = (unsigned char *) alloca (MAX_LENGTH_OF_MULTI_BYTE_FORM * n);
1083 unsigned char *p = buf;
1084 Lisp_Object val;
1085
1086 for (i = 0; i < n; i++)
1087 {
1088 int c, len;
1089 unsigned char *str;
1090
1091 if (!INTEGERP (args[i]))
1092 {
1093 free (buf);
1094 CHECK_NUMBER (args[i], 0);
1095 }
1096 c = XINT (args[i]);
1097 len = CHAR_STRING (c, p, str);
1098 if (p != str)
1099 /* C is a composite character. */
1100 bcopy (str, p, len);
1101 p += len;
1102 }
1103
1104 val = make_string (buf, p - buf);
1105 return val;
1106 }
1107
1108 #endif /* emacs */
1109 \f
1110 /*** Composite characters staffs ***/
1111
1112 /* Each composite character is identified by CMPCHAR-ID which is
1113 assigned when Emacs needs the character code of the composite
1114 character (e.g. when displaying it on the screen). See the
1115 document "GENERAL NOTE on COMPOSITE CHARACTER" in `charset.h' how a
1116 composite character is represented in Emacs. */
1117
1118 /* If `static' is defined, it means that it is defined to null string. */
1119 #ifndef static
1120 /* The following function is copied from lread.c. */
1121 static int
1122 hash_string (ptr, len)
1123 unsigned char *ptr;
1124 int len;
1125 {
1126 register unsigned char *p = ptr;
1127 register unsigned char *end = p + len;
1128 register unsigned char c;
1129 register int hash = 0;
1130
1131 while (p != end)
1132 {
1133 c = *p++;
1134 if (c >= 0140) c -= 40;
1135 hash = ((hash<<3) + (hash>>28) + c);
1136 }
1137 return hash & 07777777777;
1138 }
1139 #endif
1140
1141 #define CMPCHAR_HASH_TABLE_SIZE 0xFFF
1142
1143 static int *cmpchar_hash_table[CMPCHAR_HASH_TABLE_SIZE];
1144
1145 /* Each element of `cmpchar_hash_table' is a pointer to an array of
1146 integer, where the 1st element is the size of the array, the 2nd
1147 element is how many elements are actually used in the array, and
1148 the remaining elements are CMPCHAR-IDs of composite characters of
1149 the same hash value. */
1150 #define CMPCHAR_HASH_SIZE(table) table[0]
1151 #define CMPCHAR_HASH_USED(table) table[1]
1152 #define CMPCHAR_HASH_CMPCHAR_ID(table, i) table[i]
1153
1154 /* Return CMPCHAR-ID of the composite character in STR of the length
1155 LEN. If the composite character has not yet been registered,
1156 register it in `cmpchar_table' and assign new CMPCHAR-ID. This
1157 is the sole function for assigning CMPCHAR-ID. */
1158 int
1159 str_cmpchar_id (str, len)
1160 unsigned char *str;
1161 int len;
1162 {
1163 int hash_idx, *hashp;
1164 unsigned char *buf;
1165 int embedded_rule; /* 1 if composition rule is embedded. */
1166 int chars; /* number of components. */
1167 int i;
1168 struct cmpchar_info *cmpcharp;
1169
1170 if (len < 5)
1171 /* Any composite char have at least 3-byte length. */
1172 return -1;
1173
1174 /* The second byte 0xFF means compostion rule is embedded. */
1175 embedded_rule = (str[1] == 0xFF);
1176
1177 /* At first, get the actual length of the composite character. */
1178 {
1179 unsigned char *p, *endp = str + 1, *lastp = str + len;
1180 int bytes;
1181
1182 while (endp < lastp && ! CHAR_HEAD_P (*endp)) endp++;
1183 chars = 0;
1184 p = str + 1 + embedded_rule;
1185 while (p < endp)
1186 {
1187 /* No need of checking if *P is 0xA0 because
1188 BYTES_BY_CHAR_HEAD (0x80) surely returns 2. */
1189 p += (bytes = BYTES_BY_CHAR_HEAD (*p - 0x20) + embedded_rule);
1190 chars++;
1191 }
1192 len = (p -= embedded_rule) - str;
1193 if (p > endp)
1194 len -= - bytes, chars--;
1195
1196 if (chars < 2 || chars > MAX_COMPONENT_COUNT)
1197 /* Invalid number of components. */
1198 return -1;
1199 }
1200 hash_idx = hash_string (str, len) % CMPCHAR_HASH_TABLE_SIZE;
1201 hashp = cmpchar_hash_table[hash_idx];
1202
1203 /* Then, look into the hash table. */
1204 if (hashp != NULL)
1205 /* Find the correct one among composite characters of the same
1206 hash value. */
1207 for (i = 2; i < CMPCHAR_HASH_USED (hashp); i++)
1208 {
1209 cmpcharp = cmpchar_table[CMPCHAR_HASH_CMPCHAR_ID (hashp, i)];
1210 if (len == cmpcharp->len
1211 && ! bcmp (str, cmpcharp->data, len))
1212 return CMPCHAR_HASH_CMPCHAR_ID (hashp, i);
1213 }
1214
1215 /* We have to register the composite character in cmpchar_table. */
1216 if (n_cmpchars > (CHAR_FIELD2_MASK | CHAR_FIELD3_MASK))
1217 /* No, we have no more room for a new composite character. */
1218 return -1;
1219
1220 /* Make the entry in hash table. */
1221 if (hashp == NULL)
1222 {
1223 /* Make a table for 8 composite characters initially. */
1224 hashp = (cmpchar_hash_table[hash_idx]
1225 = (int *) xmalloc (sizeof (int) * (2 + 8)));
1226 CMPCHAR_HASH_SIZE (hashp) = 10;
1227 CMPCHAR_HASH_USED (hashp) = 2;
1228 }
1229 else if (CMPCHAR_HASH_USED (hashp) >= CMPCHAR_HASH_SIZE (hashp))
1230 {
1231 CMPCHAR_HASH_SIZE (hashp) += 8;
1232 hashp = (cmpchar_hash_table[hash_idx]
1233 = (int *) xrealloc (hashp,
1234 sizeof (int) * CMPCHAR_HASH_SIZE (hashp)));
1235 }
1236 CMPCHAR_HASH_CMPCHAR_ID (hashp, CMPCHAR_HASH_USED (hashp)) = n_cmpchars;
1237 CMPCHAR_HASH_USED (hashp)++;
1238
1239 /* Set information of the composite character in cmpchar_table. */
1240 if (cmpchar_table_size == 0)
1241 {
1242 /* This is the first composite character to be registered. */
1243 cmpchar_table_size = 256;
1244 cmpchar_table
1245 = (struct cmpchar_info **) xmalloc (sizeof (cmpchar_table[0])
1246 * cmpchar_table_size);
1247 }
1248 else if (cmpchar_table_size <= n_cmpchars)
1249 {
1250 cmpchar_table_size += 256;
1251 cmpchar_table
1252 = (struct cmpchar_info **) xrealloc (cmpchar_table,
1253 sizeof (cmpchar_table[0])
1254 * cmpchar_table_size);
1255 }
1256
1257 cmpcharp = (struct cmpchar_info *) xmalloc (sizeof (struct cmpchar_info));
1258
1259 cmpcharp->len = len;
1260 cmpcharp->data = (unsigned char *) xmalloc (len + 1);
1261 bcopy (str, cmpcharp->data, len);
1262 cmpcharp->data[len] = 0;
1263 cmpcharp->glyph_len = chars;
1264 cmpcharp->glyph = (GLYPH *) xmalloc (sizeof (GLYPH) * chars);
1265 if (embedded_rule)
1266 {
1267 cmpcharp->cmp_rule = (unsigned char *) xmalloc (chars);
1268 cmpcharp->col_offset = (float *) xmalloc (sizeof (float) * chars);
1269 }
1270 else
1271 {
1272 cmpcharp->cmp_rule = NULL;
1273 cmpcharp->col_offset = NULL;
1274 }
1275
1276 /* Setup GLYPH data and composition rules (if any) so as not to make
1277 them every time on displaying. */
1278 {
1279 unsigned char *bufp;
1280 int width;
1281 float leftmost = 0.0, rightmost = 1.0;
1282
1283 if (embedded_rule)
1284 /* At first, col_offset[N] is set to relative to col_offset[0]. */
1285 cmpcharp->col_offset[0] = 0;
1286
1287 for (i = 0, bufp = cmpcharp->data + 1; i < chars; i++)
1288 {
1289 if (embedded_rule)
1290 cmpcharp->cmp_rule[i] = *bufp++;
1291
1292 if (*bufp == 0xA0) /* This is an ASCII character. */
1293 {
1294 cmpcharp->glyph[i] = FAST_MAKE_GLYPH ((*++bufp & 0x7F), 0);
1295 width = 1;
1296 bufp++;
1297 }
1298 else /* Multibyte character. */
1299 {
1300 /* Make `bufp' point normal multi-byte form temporally. */
1301 *bufp -= 0x20;
1302 cmpcharp->glyph[i]
1303 = FAST_MAKE_GLYPH (string_to_non_ascii_char (bufp, 4, 0), 0);
1304 width = WIDTH_BY_CHAR_HEAD (*bufp);
1305 *bufp += 0x20;
1306 bufp += BYTES_BY_CHAR_HEAD (*bufp - 0x20);
1307 }
1308
1309 if (embedded_rule && i > 0)
1310 {
1311 /* Reference points (global_ref and new_ref) are
1312 encoded as below:
1313
1314 0--1--2 -- ascent
1315 | |
1316 | |
1317 | 4 -+--- center
1318 -- 3 5 -- baseline
1319 | |
1320 6--7--8 -- descent
1321
1322 Now, we calculate the column offset of the new glyph
1323 from the left edge of the first glyph. This can avoid
1324 the same calculation everytime displaying this
1325 composite character. */
1326
1327 /* Reference points of global glyph and new glyph. */
1328 int global_ref = (cmpcharp->cmp_rule[i] - 0xA0) / 9;
1329 int new_ref = (cmpcharp->cmp_rule[i] - 0xA0) % 9;
1330 /* Column offset relative to the first glyph. */
1331 float left = (leftmost
1332 + (global_ref % 3) * (rightmost - leftmost) / 2.0
1333 - (new_ref % 3) * width / 2.0);
1334
1335 cmpcharp->col_offset[i] = left;
1336 if (left < leftmost)
1337 leftmost = left;
1338 if (left + width > rightmost)
1339 rightmost = left + width;
1340 }
1341 else
1342 {
1343 if (width > rightmost)
1344 rightmost = width;
1345 }
1346 }
1347 if (embedded_rule)
1348 {
1349 /* Now col_offset[N] are relative to the left edge of the
1350 first component. Make them relative to the left edge of
1351 overall glyph. */
1352 for (i = 0; i < chars; i++)
1353 cmpcharp->col_offset[i] -= leftmost;
1354 /* Make rightmost holds width of overall glyph. */
1355 rightmost -= leftmost;
1356 }
1357
1358 cmpcharp->width = rightmost;
1359 if (cmpcharp->width < rightmost)
1360 /* To get a ceiling integer value. */
1361 cmpcharp->width++;
1362 }
1363
1364 cmpchar_table[n_cmpchars] = cmpcharp;
1365
1366 return n_cmpchars++;
1367 }
1368
1369 /* Return the Nth element of the composite character C. */
1370 int
1371 cmpchar_component (c, n)
1372 unsigned int c, n;
1373 {
1374 int id = COMPOSITE_CHAR_ID (c);
1375
1376 if (id >= n_cmpchars /* C is not a valid composite character. */
1377 || n >= cmpchar_table[id]->glyph_len) /* No such component. */
1378 return -1;
1379 /* No face data is stored in glyph code. */
1380 return ((int) (cmpchar_table[id]->glyph[n]));
1381 }
1382
1383 DEFUN ("cmpcharp", Fcmpcharp, Scmpcharp, 1, 1, 0,
1384 "T if CHAR is a composite character.")
1385 (ch)
1386 Lisp_Object ch;
1387 {
1388 CHECK_NUMBER (ch, 0);
1389 return (COMPOSITE_CHAR_P (XINT (ch)) ? Qt : Qnil);
1390 }
1391
1392 DEFUN ("composite-char-component", Fcmpchar_component, Scmpchar_component,
1393 2, 2, 0,
1394 "Return the IDXth component character of composite character CHARACTER.")
1395 (character, idx)
1396 Lisp_Object character, idx;
1397 {
1398 int c;
1399
1400 CHECK_NUMBER (character, 0);
1401 CHECK_NUMBER (idx, 1);
1402
1403 if ((c = cmpchar_component (XINT (character), XINT (idx))) < 0)
1404 args_out_of_range (character, idx);
1405
1406 return make_number (c);
1407 }
1408
1409 DEFUN ("composite-char-composition-rule", Fcmpchar_cmp_rule, Scmpchar_cmp_rule,
1410 2, 2, 0,
1411 "Return the Nth composition rule embedded in composite character CHARACTER.\n\
1412 The returned rule is for composing the Nth component\n\
1413 on the (N-1)th component. If N is 0, the returned value is always 255.")
1414 (character, n)
1415 Lisp_Object character, n;
1416 {
1417 int id, i;
1418
1419 CHECK_NUMBER (character, 0);
1420 CHECK_NUMBER (n, 1);
1421
1422 id = COMPOSITE_CHAR_ID (XINT (character));
1423 if (id < 0 || id >= n_cmpchars)
1424 error ("Invalid composite character: %d", XINT (character));
1425 i = XINT (n);
1426 if (i > cmpchar_table[id]->glyph_len)
1427 args_out_of_range (character, n);
1428
1429 return make_number (cmpchar_table[id]->cmp_rule[i]);
1430 }
1431
1432 DEFUN ("composite-char-composition-rule-p", Fcmpchar_cmp_rule_p,
1433 Scmpchar_cmp_rule_p, 1, 1, 0,
1434 "Return non-nil if composite character CHARACTER contains a embedded rule.")
1435 (character)
1436 Lisp_Object character;
1437 {
1438 int id;
1439
1440 CHECK_NUMBER (character, 0);
1441 id = COMPOSITE_CHAR_ID (XINT (character));
1442 if (id < 0 || id >= n_cmpchars)
1443 error ("Invalid composite character: %d", XINT (character));
1444
1445 return (cmpchar_table[id]->cmp_rule ? Qt : Qnil);
1446 }
1447
1448 DEFUN ("composite-char-component-count", Fcmpchar_cmp_count,
1449 Scmpchar_cmp_count, 1, 1, 0,
1450 "Return number of compoents of composite character CHARACTER.")
1451 (character)
1452 Lisp_Object character;
1453 {
1454 int id;
1455
1456 CHECK_NUMBER (character, 0);
1457 id = COMPOSITE_CHAR_ID (XINT (character));
1458 if (id < 0 || id >= n_cmpchars)
1459 error ("Invalid composite character: %d", XINT (character));
1460
1461 return (make_number (cmpchar_table[id]->glyph_len));
1462 }
1463
1464 DEFUN ("compose-string", Fcompose_string, Scompose_string,
1465 1, 1, 0,
1466 "Return one char string composed from all characters in STRING.")
1467 (str)
1468 Lisp_Object str;
1469 {
1470 unsigned char buf[MAX_LENGTH_OF_MULTI_BYTE_FORM], *p, *pend, *ptemp;
1471 int len, i;
1472
1473 CHECK_STRING (str, 0);
1474
1475 buf[0] = LEADING_CODE_COMPOSITION;
1476 p = XSTRING (str)->data;
1477 pend = p + XSTRING (str)->size;
1478 i = 1;
1479 while (p < pend)
1480 {
1481 if (*p < 0x20 || *p == 127) /* control code */
1482 error ("Invalid component character: %d", *p);
1483 else if (*p < 0x80) /* ASCII */
1484 {
1485 if (i + 2 >= MAX_LENGTH_OF_MULTI_BYTE_FORM)
1486 error ("Too long string to be composed: %s", XSTRING (str)->data);
1487 /* Prepend an ASCII charset indicator 0xA0, set MSB of the
1488 code itself. */
1489 buf[i++] = 0xA0;
1490 buf[i++] = *p++ + 0x80;
1491 }
1492 else if (*p == LEADING_CODE_COMPOSITION) /* composite char */
1493 {
1494 /* Already composed. Eliminate the heading
1495 LEADING_CODE_COMPOSITION, keep the remaining bytes
1496 unchanged. */
1497 p++;
1498 ptemp = p;
1499 while (! CHAR_HEAD_P (*p)) p++;
1500 if (i + (p - ptemp) >= MAX_LENGTH_OF_MULTI_BYTE_FORM)
1501 error ("Too long string to be composed: %s", XSTRING (str)->data);
1502 bcopy (ptemp, buf + i, p - ptemp);
1503 i += p - ptemp;
1504 }
1505 else /* multibyte char */
1506 {
1507 /* Add 0x20 to the base leading-code, keep the remaining
1508 bytes unchanged. */
1509 len = BYTES_BY_CHAR_HEAD (*p);
1510 if (i + len >= MAX_LENGTH_OF_MULTI_BYTE_FORM)
1511 error ("Too long string to be composed: %s", XSTRING (str)->data);
1512 bcopy (p, buf + i, len);
1513 buf[i] += 0x20;
1514 p += len, i += len;
1515 }
1516 }
1517
1518 if (i < 5)
1519 /* STR contains only one character, which can't be composed. */
1520 error ("Too short string to be composed: %s", XSTRING (str)->data);
1521
1522 return make_string (buf, i);
1523 }
1524
1525 \f
1526 charset_id_internal (charset_name)
1527 char *charset_name;
1528 {
1529 Lisp_Object val = Fget (intern (charset_name), Qcharset);
1530
1531 if (!VECTORP (val))
1532 error ("Charset %s is not defined", charset_name);
1533
1534 return (XINT (XVECTOR (val)->contents[0]));
1535 }
1536
1537 DEFUN ("setup-special-charsets", Fsetup_special_charsets,
1538 Ssetup_special_charsets, 0, 0, 0, "Internal use only.")
1539 ()
1540 {
1541 charset_latin_iso8859_1 = charset_id_internal ("latin-iso8859-1");
1542 charset_jisx0208_1978 = charset_id_internal ("japanese-jisx0208-1978");
1543 charset_jisx0208 = charset_id_internal ("japanese-jisx0208");
1544 charset_katakana_jisx0201 = charset_id_internal ("katakana-jisx0201");
1545 charset_latin_jisx0201 = charset_id_internal ("latin-jisx0201");
1546 charset_big5_1 = charset_id_internal ("chinese-big5-1");
1547 charset_big5_2 = charset_id_internal ("chinese-big5-2");
1548 return Qnil;
1549 }
1550
1551 init_charset_once ()
1552 {
1553 int i, j, k;
1554
1555 staticpro (&Vcharset_table);
1556 staticpro (&Vcharset_symbol_table);
1557
1558 /* This has to be done here, before we call Fmake_char_table. */
1559 Qcharset_table = intern ("charset-table");
1560 staticpro (&Qcharset_table);
1561
1562 /* Intern this now in case it isn't already done.
1563 Setting this variable twice is harmless.
1564 But don't staticpro it here--that is done in alloc.c. */
1565 Qchar_table_extra_slots = intern ("char-table-extra-slots");
1566
1567 /* Now we are ready to set up this property, so we can
1568 create the charset table. */
1569 Fput (Qcharset_table, Qchar_table_extra_slots, make_number (0));
1570 Vcharset_table = Fmake_char_table (Qcharset_table, Qnil);
1571
1572 Vcharset_symbol_table = Fmake_vector (make_number (MAX_CHARSET + 1), Qnil);
1573
1574 /* Setup tables. */
1575 for (i = 0; i < 2; i++)
1576 for (j = 0; j < 2; j++)
1577 for (k = 0; k < 128; k++)
1578 iso_charset_table [i][j][k] = -1;
1579
1580 bzero (cmpchar_hash_table, sizeof cmpchar_hash_table);
1581 cmpchar_table_size = n_cmpchars = 0;
1582
1583 for (i = 0; i < 256; i++)
1584 BYTES_BY_CHAR_HEAD (i) = 1;
1585 BYTES_BY_CHAR_HEAD (LEADING_CODE_PRIVATE_11) = 3;
1586 BYTES_BY_CHAR_HEAD (LEADING_CODE_PRIVATE_12) = 3;
1587 BYTES_BY_CHAR_HEAD (LEADING_CODE_PRIVATE_21) = 4;
1588 BYTES_BY_CHAR_HEAD (LEADING_CODE_PRIVATE_22) = 4;
1589 /* The following doesn't reflect the actual bytes, but just to tell
1590 that it is a start of a multibyte character. */
1591 BYTES_BY_CHAR_HEAD (LEADING_CODE_COMPOSITION) = 2;
1592
1593 for (i = 0; i < 128; i++)
1594 WIDTH_BY_CHAR_HEAD (i) = 1;
1595 for (; i < 256; i++)
1596 WIDTH_BY_CHAR_HEAD (i) = 4;
1597 WIDTH_BY_CHAR_HEAD (LEADING_CODE_PRIVATE_11) = 1;
1598 WIDTH_BY_CHAR_HEAD (LEADING_CODE_PRIVATE_12) = 2;
1599 WIDTH_BY_CHAR_HEAD (LEADING_CODE_PRIVATE_21) = 1;
1600 WIDTH_BY_CHAR_HEAD (LEADING_CODE_PRIVATE_22) = 2;
1601 }
1602
1603 #ifdef emacs
1604
1605 syms_of_charset ()
1606 {
1607 Qascii = intern ("ascii");
1608 staticpro (&Qascii);
1609
1610 Qcharset = intern ("charset");
1611 staticpro (&Qcharset);
1612
1613 /* Define ASCII charset now. */
1614 update_charset_table (make_number (CHARSET_ASCII),
1615 make_number (1), make_number (94),
1616 make_number (1),
1617 make_number (0),
1618 make_number ('B'),
1619 make_number (0),
1620 build_string ("ASCII"),
1621 build_string ("ASCII"),
1622 build_string ("ASCII (ISO646 IRV)"));
1623 CHARSET_SYMBOL (CHARSET_ASCII) = Qascii;
1624 Fput (Qascii, Qcharset, CHARSET_TABLE_ENTRY (CHARSET_ASCII));
1625
1626 Qcomposition = intern ("composition");
1627 staticpro (&Qcomposition);
1628 CHARSET_SYMBOL (CHARSET_COMPOSITION) = Qcomposition;
1629
1630 defsubr (&Sdefine_charset);
1631 defsubr (&Sget_unused_iso_final_char);
1632 defsubr (&Sdeclare_equiv_charset);
1633 defsubr (&Sfind_charset_region);
1634 defsubr (&Sfind_charset_string);
1635 defsubr (&Smake_char_internal);
1636 defsubr (&Ssplit_char);
1637 defsubr (&Schar_charset);
1638 defsubr (&Siso_charset);
1639 defsubr (&Schar_valid_p);
1640 defsubr (&Schar_bytes);
1641 defsubr (&Schar_width);
1642 defsubr (&Sstring_width);
1643 defsubr (&Schar_direction);
1644 defsubr (&Schars_in_string);
1645 defsubr (&Schars_in_region);
1646 defsubr (&Schar_boundary_p);
1647 defsubr (&Sconcat_chars);
1648 defsubr (&Scmpcharp);
1649 defsubr (&Scmpchar_component);
1650 defsubr (&Scmpchar_cmp_rule);
1651 defsubr (&Scmpchar_cmp_rule_p);
1652 defsubr (&Scmpchar_cmp_count);
1653 defsubr (&Scompose_string);
1654 defsubr (&Ssetup_special_charsets);
1655
1656 DEFVAR_LISP ("charset-list", &Vcharset_list,
1657 "List of charsets ever defined.");
1658 Vcharset_list = Fcons (Qascii, Qnil);
1659
1660 DEFVAR_INT ("leading-code-composition", &leading_code_composition,
1661 "Leading-code of composite characters.");
1662 leading_code_composition = LEADING_CODE_COMPOSITION;
1663
1664 DEFVAR_INT ("leading-code-private-11", &leading_code_private_11,
1665 "Leading-code of private TYPE9N charset of column-width 1.");
1666 leading_code_private_11 = LEADING_CODE_PRIVATE_11;
1667
1668 DEFVAR_INT ("leading-code-private-12", &leading_code_private_12,
1669 "Leading-code of private TYPE9N charset of column-width 2.");
1670 leading_code_private_12 = LEADING_CODE_PRIVATE_12;
1671
1672 DEFVAR_INT ("leading-code-private-21", &leading_code_private_21,
1673 "Leading-code of private TYPE9Nx9N charset of column-width 1.");
1674 leading_code_private_21 = LEADING_CODE_PRIVATE_21;
1675
1676 DEFVAR_INT ("leading-code-private-22", &leading_code_private_22,
1677 "Leading-code of private TYPE9Nx9N charset of column-width 2.");
1678 leading_code_private_22 = LEADING_CODE_PRIVATE_22;
1679 }
1680
1681 #endif /* emacs */