Merge from emacs-24; up to 2013-01-03T02:37:57Z!rgm@gnu.org
[bpt/emacs.git] / src / charset.c
1 /* Basic character set support.
2 Copyright (C) 2001-2013 Free Software Foundation, Inc.
3 Copyright (C) 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004,
4 2005, 2006, 2007, 2008, 2009, 2010, 2011
5 National Institute of Advanced Industrial Science and Technology (AIST)
6 Registration Number H14PRO021
7
8 Copyright (C) 2003, 2004
9 National Institute of Advanced Industrial Science and Technology (AIST)
10 Registration Number H13PRO009
11
12 This file is part of GNU Emacs.
13
14 GNU Emacs is free software: you can redistribute it and/or modify
15 it under the terms of the GNU General Public License as published by
16 the Free Software Foundation, either version 3 of the License, or
17 (at your option) any later version.
18
19 GNU Emacs is distributed in the hope that it will be useful,
20 but WITHOUT ANY WARRANTY; without even the implied warranty of
21 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
22 GNU General Public License for more details.
23
24 You should have received a copy of the GNU General Public License
25 along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
26
27 #include <config.h>
28
29 #include <errno.h>
30 #include <stdio.h>
31 #include <unistd.h>
32 #include <limits.h>
33 #include <sys/types.h>
34 #include <c-ctype.h>
35 #include "lisp.h"
36 #include "character.h"
37 #include "charset.h"
38 #include "coding.h"
39 #include "disptab.h"
40 #include "buffer.h"
41
42 /*** GENERAL NOTES on CODED CHARACTER SETS (CHARSETS) ***
43
44 A coded character set ("charset" hereafter) is a meaningful
45 collection (i.e. language, culture, functionality, etc.) of
46 characters. Emacs handles multiple charsets at once. In Emacs Lisp
47 code, a charset is represented by a symbol. In C code, a charset is
48 represented by its ID number or by a pointer to a struct charset.
49
50 The actual information about each charset is stored in two places.
51 Lispy information is stored in the hash table Vcharset_hash_table as
52 a vector (charset attributes). The other information is stored in
53 charset_table as a struct charset.
54
55 */
56
57 /* Hash table that contains attributes of each charset. Keys are
58 charset symbols, and values are vectors of charset attributes. */
59 Lisp_Object Vcharset_hash_table;
60
61 /* Table of struct charset. */
62 struct charset *charset_table;
63
64 static ptrdiff_t charset_table_size;
65 static int charset_table_used;
66
67 Lisp_Object Qcharsetp;
68
69 /* Special charset symbols. */
70 Lisp_Object Qascii;
71 static Lisp_Object Qeight_bit;
72 static Lisp_Object Qiso_8859_1;
73 static Lisp_Object Qunicode;
74 static Lisp_Object Qemacs;
75
76 /* The corresponding charsets. */
77 int charset_ascii;
78 int charset_eight_bit;
79 static int charset_iso_8859_1;
80 int charset_unicode;
81 static int charset_emacs;
82
83 /* The other special charsets. */
84 int charset_jisx0201_roman;
85 int charset_jisx0208_1978;
86 int charset_jisx0208;
87 int charset_ksc5601;
88
89 /* Value of charset attribute `charset-iso-plane'. */
90 static Lisp_Object Qgl, Qgr;
91
92 /* Charset of unibyte characters. */
93 int charset_unibyte;
94
95 /* List of charsets ordered by the priority. */
96 Lisp_Object Vcharset_ordered_list;
97
98 /* Sub-list of Vcharset_ordered_list that contains all non-preferred
99 charsets. */
100 Lisp_Object Vcharset_non_preferred_head;
101
102 /* Incremented everytime we change Vcharset_ordered_list. This is
103 unsigned short so that it fits in Lisp_Int and never matches
104 -1. */
105 unsigned short charset_ordered_list_tick;
106
107 /* List of iso-2022 charsets. */
108 Lisp_Object Viso_2022_charset_list;
109
110 /* List of emacs-mule charsets. */
111 Lisp_Object Vemacs_mule_charset_list;
112
113 int emacs_mule_charset[256];
114
115 /* Mapping table from ISO2022's charset (specified by DIMENSION,
116 CHARS, and FINAL-CHAR) to Emacs' charset. */
117 int iso_charset_table[ISO_MAX_DIMENSION][ISO_MAX_CHARS][ISO_MAX_FINAL];
118
119 #define CODE_POINT_TO_INDEX(charset, code) \
120 ((charset)->code_linear_p \
121 ? (int) ((code) - (charset)->min_code) \
122 : (((charset)->code_space_mask[(code) >> 24] & 0x8) \
123 && ((charset)->code_space_mask[((code) >> 16) & 0xFF] & 0x4) \
124 && ((charset)->code_space_mask[((code) >> 8) & 0xFF] & 0x2) \
125 && ((charset)->code_space_mask[(code) & 0xFF] & 0x1)) \
126 ? (int) (((((code) >> 24) - (charset)->code_space[12]) \
127 * (charset)->code_space[11]) \
128 + (((((code) >> 16) & 0xFF) - (charset)->code_space[8]) \
129 * (charset)->code_space[7]) \
130 + (((((code) >> 8) & 0xFF) - (charset)->code_space[4]) \
131 * (charset)->code_space[3]) \
132 + (((code) & 0xFF) - (charset)->code_space[0]) \
133 - ((charset)->char_index_offset)) \
134 : -1)
135
136
137 /* Return the code-point for the character index IDX in CHARSET.
138 IDX should be an unsigned int variable in a valid range (which is
139 always in nonnegative int range too). IDX contains garbage afterwards. */
140
141 #define INDEX_TO_CODE_POINT(charset, idx) \
142 ((charset)->code_linear_p \
143 ? (idx) + (charset)->min_code \
144 : (idx += (charset)->char_index_offset, \
145 (((charset)->code_space[0] + (idx) % (charset)->code_space[2]) \
146 | (((charset)->code_space[4] \
147 + ((idx) / (charset)->code_space[3] % (charset)->code_space[6])) \
148 << 8) \
149 | (((charset)->code_space[8] \
150 + ((idx) / (charset)->code_space[7] % (charset)->code_space[10])) \
151 << 16) \
152 | (((charset)->code_space[12] + ((idx) / (charset)->code_space[11])) \
153 << 24))))
154
155 /* Structure to hold mapping tables for a charset. Used by temacs
156 invoked for dumping. */
157
158 static struct
159 {
160 /* The current charset for which the following tables are setup. */
161 struct charset *current;
162
163 /* 1 iff the following table is used for encoder. */
164 short for_encoder;
165
166 /* When the following table is used for encoding, minimum and
167 maximum character of the current charset. */
168 int min_char, max_char;
169
170 /* A Unicode character corresponding to the code index 0 (i.e. the
171 minimum code-point) of the current charset, or -1 if the code
172 index 0 is not a Unicode character. This is checked when
173 table.encoder[CHAR] is zero. */
174 int zero_index_char;
175
176 union {
177 /* Table mapping code-indices (not code-points) of the current
178 charset to Unicode characters. If decoder[CHAR] is -1, CHAR
179 doesn't belong to the current charset. */
180 int decoder[0x10000];
181 /* Table mapping Unicode characters to code-indices of the current
182 charset. The first 0x10000 elements are for BMP (0..0xFFFF),
183 and the last 0x10000 are for SMP (0x10000..0x1FFFF) or SIP
184 (0x20000..0x2FFFF). Note that there is no charset map that
185 uses both SMP and SIP. */
186 unsigned short encoder[0x20000];
187 } table;
188 } *temp_charset_work;
189
190 #define SET_TEMP_CHARSET_WORK_ENCODER(C, CODE) \
191 do { \
192 if ((CODE) == 0) \
193 temp_charset_work->zero_index_char = (C); \
194 else if ((C) < 0x20000) \
195 temp_charset_work->table.encoder[(C)] = (CODE); \
196 else \
197 temp_charset_work->table.encoder[(C) - 0x10000] = (CODE); \
198 } while (0)
199
200 #define GET_TEMP_CHARSET_WORK_ENCODER(C) \
201 ((C) == temp_charset_work->zero_index_char ? 0 \
202 : (C) < 0x20000 ? (temp_charset_work->table.encoder[(C)] \
203 ? (int) temp_charset_work->table.encoder[(C)] : -1) \
204 : temp_charset_work->table.encoder[(C) - 0x10000] \
205 ? temp_charset_work->table.encoder[(C) - 0x10000] : -1)
206
207 #define SET_TEMP_CHARSET_WORK_DECODER(C, CODE) \
208 (temp_charset_work->table.decoder[(CODE)] = (C))
209
210 #define GET_TEMP_CHARSET_WORK_DECODER(CODE) \
211 (temp_charset_work->table.decoder[(CODE)])
212 \f
213
214 /* Set to 1 to warn that a charset map is loaded and thus a buffer
215 text and a string data may be relocated. */
216 bool charset_map_loaded;
217
218 struct charset_map_entries
219 {
220 struct {
221 unsigned from, to;
222 int c;
223 } entry[0x10000];
224 struct charset_map_entries *next;
225 };
226
227 /* Load the mapping information of CHARSET from ENTRIES for
228 initializing (CONTROL_FLAG == 0), decoding (CONTROL_FLAG == 1), and
229 encoding (CONTROL_FLAG == 2).
230
231 If CONTROL_FLAG is 0, setup CHARSET->min_char, CHARSET->max_char,
232 and CHARSET->fast_map.
233
234 If CONTROL_FLAG is 1, setup the following tables according to
235 CHARSET->method and inhibit_load_charset_map.
236
237 CHARSET->method | inhibit_lcm == 0 | inhibit_lcm == 1
238 ----------------------+--------------------+---------------------------
239 CHARSET_METHOD_MAP | CHARSET->decoder | temp_charset_work->decoder
240 ----------------------+--------------------+---------------------------
241 CHARSET_METHOD_OFFSET | Vchar_unify_table | temp_charset_work->decoder
242
243 If CONTROL_FLAG is 2, setup the following tables.
244
245 CHARSET->method | inhibit_lcm == 0 | inhibit_lcm == 1
246 ----------------------+--------------------+---------------------------
247 CHARSET_METHOD_MAP | CHARSET->encoder | temp_charset_work->encoder
248 ----------------------+--------------------+--------------------------
249 CHARSET_METHOD_OFFSET | CHARSET->deunifier | temp_charset_work->encoder
250 */
251
252 static void
253 load_charset_map (struct charset *charset, struct charset_map_entries *entries, int n_entries, int control_flag)
254 {
255 Lisp_Object vec IF_LINT (= Qnil), table IF_LINT (= Qnil);
256 unsigned max_code = CHARSET_MAX_CODE (charset);
257 bool ascii_compatible_p = charset->ascii_compatible_p;
258 int min_char, max_char, nonascii_min_char;
259 int i;
260 unsigned char *fast_map = charset->fast_map;
261
262 if (n_entries <= 0)
263 return;
264
265 if (control_flag)
266 {
267 if (! inhibit_load_charset_map)
268 {
269 if (control_flag == 1)
270 {
271 if (charset->method == CHARSET_METHOD_MAP)
272 {
273 int n = CODE_POINT_TO_INDEX (charset, max_code) + 1;
274
275 vec = Fmake_vector (make_number (n), make_number (-1));
276 set_charset_attr (charset, charset_decoder, vec);
277 }
278 else
279 {
280 char_table_set_range (Vchar_unify_table,
281 charset->min_char, charset->max_char,
282 Qnil);
283 }
284 }
285 else
286 {
287 table = Fmake_char_table (Qnil, Qnil);
288 set_charset_attr (charset,
289 (charset->method == CHARSET_METHOD_MAP
290 ? charset_encoder : charset_deunifier),
291 table);
292 }
293 }
294 else
295 {
296 if (! temp_charset_work)
297 temp_charset_work = xmalloc (sizeof *temp_charset_work);
298 if (control_flag == 1)
299 {
300 memset (temp_charset_work->table.decoder, -1,
301 sizeof (int) * 0x10000);
302 }
303 else
304 {
305 memset (temp_charset_work->table.encoder, 0,
306 sizeof (unsigned short) * 0x20000);
307 temp_charset_work->zero_index_char = -1;
308 }
309 temp_charset_work->current = charset;
310 temp_charset_work->for_encoder = (control_flag == 2);
311 control_flag += 2;
312 }
313 charset_map_loaded = 1;
314 }
315
316 min_char = max_char = entries->entry[0].c;
317 nonascii_min_char = MAX_CHAR;
318 for (i = 0; i < n_entries; i++)
319 {
320 unsigned from, to;
321 int from_index, to_index, lim_index;
322 int from_c, to_c;
323 int idx = i % 0x10000;
324
325 if (i > 0 && idx == 0)
326 entries = entries->next;
327 from = entries->entry[idx].from;
328 to = entries->entry[idx].to;
329 from_c = entries->entry[idx].c;
330 from_index = CODE_POINT_TO_INDEX (charset, from);
331 if (from == to)
332 {
333 to_index = from_index;
334 to_c = from_c;
335 }
336 else
337 {
338 to_index = CODE_POINT_TO_INDEX (charset, to);
339 to_c = from_c + (to_index - from_index);
340 }
341 if (from_index < 0 || to_index < 0)
342 continue;
343 lim_index = to_index + 1;
344
345 if (to_c > max_char)
346 max_char = to_c;
347 else if (from_c < min_char)
348 min_char = from_c;
349
350 if (control_flag == 1)
351 {
352 if (charset->method == CHARSET_METHOD_MAP)
353 for (; from_index < lim_index; from_index++, from_c++)
354 ASET (vec, from_index, make_number (from_c));
355 else
356 for (; from_index < lim_index; from_index++, from_c++)
357 CHAR_TABLE_SET (Vchar_unify_table,
358 CHARSET_CODE_OFFSET (charset) + from_index,
359 make_number (from_c));
360 }
361 else if (control_flag == 2)
362 {
363 if (charset->method == CHARSET_METHOD_MAP
364 && CHARSET_COMPACT_CODES_P (charset))
365 for (; from_index < lim_index; from_index++, from_c++)
366 {
367 unsigned code = from_index;
368 code = INDEX_TO_CODE_POINT (charset, code);
369
370 if (NILP (CHAR_TABLE_REF (table, from_c)))
371 CHAR_TABLE_SET (table, from_c, make_number (code));
372 }
373 else
374 for (; from_index < lim_index; from_index++, from_c++)
375 {
376 if (NILP (CHAR_TABLE_REF (table, from_c)))
377 CHAR_TABLE_SET (table, from_c, make_number (from_index));
378 }
379 }
380 else if (control_flag == 3)
381 for (; from_index < lim_index; from_index++, from_c++)
382 SET_TEMP_CHARSET_WORK_DECODER (from_c, from_index);
383 else if (control_flag == 4)
384 for (; from_index < lim_index; from_index++, from_c++)
385 SET_TEMP_CHARSET_WORK_ENCODER (from_c, from_index);
386 else /* control_flag == 0 */
387 {
388 if (ascii_compatible_p)
389 {
390 if (! ASCII_BYTE_P (from_c))
391 {
392 if (from_c < nonascii_min_char)
393 nonascii_min_char = from_c;
394 }
395 else if (! ASCII_BYTE_P (to_c))
396 {
397 nonascii_min_char = 0x80;
398 }
399 }
400
401 for (; from_c <= to_c; from_c++)
402 CHARSET_FAST_MAP_SET (from_c, fast_map);
403 }
404 }
405
406 if (control_flag == 0)
407 {
408 CHARSET_MIN_CHAR (charset) = (ascii_compatible_p
409 ? nonascii_min_char : min_char);
410 CHARSET_MAX_CHAR (charset) = max_char;
411 }
412 else if (control_flag == 4)
413 {
414 temp_charset_work->min_char = min_char;
415 temp_charset_work->max_char = max_char;
416 }
417 }
418
419
420 /* Read a hexadecimal number (preceded by "0x") from the file FP while
421 paying attention to comment character '#'. */
422
423 static unsigned
424 read_hex (FILE *fp, bool *eof, bool *overflow)
425 {
426 int c;
427 unsigned n;
428
429 while ((c = getc (fp)) != EOF)
430 {
431 if (c == '#')
432 {
433 while ((c = getc (fp)) != EOF && c != '\n');
434 }
435 else if (c == '0')
436 {
437 if ((c = getc (fp)) == EOF || c == 'x')
438 break;
439 }
440 }
441 if (c == EOF)
442 {
443 *eof = 1;
444 return 0;
445 }
446 n = 0;
447 while (c_isxdigit (c = getc (fp)))
448 {
449 if (UINT_MAX >> 4 < n)
450 *overflow = 1;
451 n = ((n << 4)
452 | (c - ('0' <= c && c <= '9' ? '0'
453 : 'A' <= c && c <= 'F' ? 'A' - 10
454 : 'a' - 10)));
455 }
456 if (c != EOF)
457 ungetc (c, fp);
458 return n;
459 }
460
461 /* Return a mapping vector for CHARSET loaded from MAPFILE.
462 Each line of MAPFILE has this form
463 0xAAAA 0xCCCC
464 where 0xAAAA is a code-point and 0xCCCC is the corresponding
465 character code, or this form
466 0xAAAA-0xBBBB 0xCCCC
467 where 0xAAAA and 0xBBBB are code-points specifying a range, and
468 0xCCCC is the first character code of the range.
469
470 The returned vector has this form:
471 [ CODE1 CHAR1 CODE2 CHAR2 .... ]
472 where CODE1 is a code-point or a cons of code-points specifying a
473 range.
474
475 Note that this function uses `openp' to open MAPFILE but ignores
476 `file-name-handler-alist' to avoid running any Lisp code. */
477
478 static void
479 load_charset_map_from_file (struct charset *charset, Lisp_Object mapfile,
480 int control_flag)
481 {
482 unsigned min_code = CHARSET_MIN_CODE (charset);
483 unsigned max_code = CHARSET_MAX_CODE (charset);
484 int fd;
485 FILE *fp;
486 Lisp_Object suffixes;
487 struct charset_map_entries *head, *entries;
488 int n_entries;
489 ptrdiff_t count;
490
491 suffixes = list2 (build_string (".map"), build_string (".TXT"));
492
493 count = SPECPDL_INDEX ();
494 record_unwind_protect_nothing ();
495 specbind (Qfile_name_handler_alist, Qnil);
496 fd = openp (Vcharset_map_path, mapfile, suffixes, NULL, Qnil);
497 fp = fd < 0 ? 0 : fdopen (fd, "r");
498 if (!fp)
499 {
500 int open_errno = errno;
501 emacs_close (fd);
502 report_file_errno ("Loading charset map", mapfile, open_errno);
503 }
504 set_unwind_protect_ptr (count, fclose_unwind, fp);
505 unbind_to (count + 1, Qnil);
506
507 /* Use record_xmalloc, as `charset_map_entries' is
508 large (larger than MAX_ALLOCA). */
509 head = record_xmalloc (sizeof *head);
510 entries = head;
511 memset (entries, 0, sizeof (struct charset_map_entries));
512
513 n_entries = 0;
514 while (1)
515 {
516 unsigned from, to, c;
517 int idx;
518 bool eof = 0, overflow = 0;
519
520 from = read_hex (fp, &eof, &overflow);
521 if (eof)
522 break;
523 if (getc (fp) == '-')
524 to = read_hex (fp, &eof, &overflow);
525 else
526 to = from;
527 if (eof)
528 break;
529 c = read_hex (fp, &eof, &overflow);
530 if (eof)
531 break;
532
533 if (overflow)
534 continue;
535 if (from < min_code || to > max_code || from > to || c > MAX_CHAR)
536 continue;
537
538 if (n_entries == 0x10000)
539 {
540 entries->next = record_xmalloc (sizeof *entries->next);
541 entries = entries->next;
542 memset (entries, 0, sizeof (struct charset_map_entries));
543 n_entries = 0;
544 }
545 idx = n_entries;
546 entries->entry[idx].from = from;
547 entries->entry[idx].to = to;
548 entries->entry[idx].c = c;
549 n_entries++;
550 }
551 fclose (fp);
552 clear_unwind_protect (count);
553
554 load_charset_map (charset, head, n_entries, control_flag);
555 unbind_to (count, Qnil);
556 }
557
558 static void
559 load_charset_map_from_vector (struct charset *charset, Lisp_Object vec, int control_flag)
560 {
561 unsigned min_code = CHARSET_MIN_CODE (charset);
562 unsigned max_code = CHARSET_MAX_CODE (charset);
563 struct charset_map_entries *head, *entries;
564 int n_entries;
565 int len = ASIZE (vec);
566 int i;
567 USE_SAFE_ALLOCA;
568
569 if (len % 2 == 1)
570 {
571 add_to_log ("Failure in loading charset map: %V", vec, Qnil);
572 return;
573 }
574
575 /* Use SAFE_ALLOCA instead of alloca, as `charset_map_entries' is
576 large (larger than MAX_ALLOCA). */
577 head = SAFE_ALLOCA (sizeof *head);
578 entries = head;
579 memset (entries, 0, sizeof (struct charset_map_entries));
580
581 n_entries = 0;
582 for (i = 0; i < len; i += 2)
583 {
584 Lisp_Object val, val2;
585 unsigned from, to;
586 EMACS_INT c;
587 int idx;
588
589 val = AREF (vec, i);
590 if (CONSP (val))
591 {
592 val2 = XCDR (val);
593 val = XCAR (val);
594 from = XFASTINT (val);
595 to = XFASTINT (val2);
596 }
597 else
598 from = to = XFASTINT (val);
599 val = AREF (vec, i + 1);
600 CHECK_NATNUM (val);
601 c = XFASTINT (val);
602
603 if (from < min_code || to > max_code || from > to || c > MAX_CHAR)
604 continue;
605
606 if (n_entries > 0 && (n_entries % 0x10000) == 0)
607 {
608 entries->next = SAFE_ALLOCA (sizeof *entries->next);
609 entries = entries->next;
610 memset (entries, 0, sizeof (struct charset_map_entries));
611 }
612 idx = n_entries % 0x10000;
613 entries->entry[idx].from = from;
614 entries->entry[idx].to = to;
615 entries->entry[idx].c = c;
616 n_entries++;
617 }
618
619 load_charset_map (charset, head, n_entries, control_flag);
620 SAFE_FREE ();
621 }
622
623
624 /* Load a mapping table for CHARSET. CONTROL-FLAG tells what kind of
625 map it is (see the comment of load_charset_map for the detail). */
626
627 static void
628 load_charset (struct charset *charset, int control_flag)
629 {
630 Lisp_Object map;
631
632 if (inhibit_load_charset_map
633 && temp_charset_work
634 && charset == temp_charset_work->current
635 && ((control_flag == 2) == temp_charset_work->for_encoder))
636 return;
637
638 if (CHARSET_METHOD (charset) == CHARSET_METHOD_MAP)
639 map = CHARSET_MAP (charset);
640 else
641 {
642 if (! CHARSET_UNIFIED_P (charset))
643 emacs_abort ();
644 map = CHARSET_UNIFY_MAP (charset);
645 }
646 if (STRINGP (map))
647 load_charset_map_from_file (charset, map, control_flag);
648 else
649 load_charset_map_from_vector (charset, map, control_flag);
650 }
651
652
653 DEFUN ("charsetp", Fcharsetp, Scharsetp, 1, 1, 0,
654 doc: /* Return non-nil if and only if OBJECT is a charset.*/)
655 (Lisp_Object object)
656 {
657 return (CHARSETP (object) ? Qt : Qnil);
658 }
659
660
661 static void
662 map_charset_for_dump (void (*c_function) (Lisp_Object, Lisp_Object),
663 Lisp_Object function, Lisp_Object arg,
664 unsigned int from, unsigned int to)
665 {
666 int from_idx = CODE_POINT_TO_INDEX (temp_charset_work->current, from);
667 int to_idx = CODE_POINT_TO_INDEX (temp_charset_work->current, to);
668 Lisp_Object range;
669 int c, stop;
670 struct gcpro gcpro1;
671
672 range = Fcons (Qnil, Qnil);
673 GCPRO1 (range);
674
675 c = temp_charset_work->min_char;
676 stop = (temp_charset_work->max_char < 0x20000
677 ? temp_charset_work->max_char : 0xFFFF);
678
679 while (1)
680 {
681 int idx = GET_TEMP_CHARSET_WORK_ENCODER (c);
682
683 if (idx >= from_idx && idx <= to_idx)
684 {
685 if (NILP (XCAR (range)))
686 XSETCAR (range, make_number (c));
687 }
688 else if (! NILP (XCAR (range)))
689 {
690 XSETCDR (range, make_number (c - 1));
691 if (c_function)
692 (*c_function) (arg, range);
693 else
694 call2 (function, range, arg);
695 XSETCAR (range, Qnil);
696 }
697 if (c == stop)
698 {
699 if (c == temp_charset_work->max_char)
700 {
701 if (! NILP (XCAR (range)))
702 {
703 XSETCDR (range, make_number (c));
704 if (c_function)
705 (*c_function) (arg, range);
706 else
707 call2 (function, range, arg);
708 }
709 break;
710 }
711 c = 0x1FFFF;
712 stop = temp_charset_work->max_char;
713 }
714 c++;
715 }
716 UNGCPRO;
717 }
718
719 void
720 map_charset_chars (void (*c_function)(Lisp_Object, Lisp_Object), Lisp_Object function,
721 Lisp_Object arg, struct charset *charset, unsigned from, unsigned to)
722 {
723 Lisp_Object range;
724 bool partial = (from > CHARSET_MIN_CODE (charset)
725 || to < CHARSET_MAX_CODE (charset));
726
727 if (CHARSET_METHOD (charset) == CHARSET_METHOD_OFFSET)
728 {
729 int from_idx = CODE_POINT_TO_INDEX (charset, from);
730 int to_idx = CODE_POINT_TO_INDEX (charset, to);
731 int from_c = from_idx + CHARSET_CODE_OFFSET (charset);
732 int to_c = to_idx + CHARSET_CODE_OFFSET (charset);
733
734 if (CHARSET_UNIFIED_P (charset))
735 {
736 if (! CHAR_TABLE_P (CHARSET_DEUNIFIER (charset)))
737 load_charset (charset, 2);
738 if (CHAR_TABLE_P (CHARSET_DEUNIFIER (charset)))
739 map_char_table_for_charset (c_function, function,
740 CHARSET_DEUNIFIER (charset), arg,
741 partial ? charset : NULL, from, to);
742 else
743 map_charset_for_dump (c_function, function, arg, from, to);
744 }
745
746 range = Fcons (make_number (from_c), make_number (to_c));
747 if (NILP (function))
748 (*c_function) (arg, range);
749 else
750 call2 (function, range, arg);
751 }
752 else if (CHARSET_METHOD (charset) == CHARSET_METHOD_MAP)
753 {
754 if (! CHAR_TABLE_P (CHARSET_ENCODER (charset)))
755 load_charset (charset, 2);
756 if (CHAR_TABLE_P (CHARSET_ENCODER (charset)))
757 map_char_table_for_charset (c_function, function,
758 CHARSET_ENCODER (charset), arg,
759 partial ? charset : NULL, from, to);
760 else
761 map_charset_for_dump (c_function, function, arg, from, to);
762 }
763 else if (CHARSET_METHOD (charset) == CHARSET_METHOD_SUBSET)
764 {
765 Lisp_Object subset_info;
766 int offset;
767
768 subset_info = CHARSET_SUBSET (charset);
769 charset = CHARSET_FROM_ID (XFASTINT (AREF (subset_info, 0)));
770 offset = XINT (AREF (subset_info, 3));
771 from -= offset;
772 if (from < XFASTINT (AREF (subset_info, 1)))
773 from = XFASTINT (AREF (subset_info, 1));
774 to -= offset;
775 if (to > XFASTINT (AREF (subset_info, 2)))
776 to = XFASTINT (AREF (subset_info, 2));
777 map_charset_chars (c_function, function, arg, charset, from, to);
778 }
779 else /* i.e. CHARSET_METHOD_SUPERSET */
780 {
781 Lisp_Object parents;
782
783 for (parents = CHARSET_SUPERSET (charset); CONSP (parents);
784 parents = XCDR (parents))
785 {
786 int offset;
787 unsigned this_from, this_to;
788
789 charset = CHARSET_FROM_ID (XFASTINT (XCAR (XCAR (parents))));
790 offset = XINT (XCDR (XCAR (parents)));
791 this_from = from > offset ? from - offset : 0;
792 this_to = to > offset ? to - offset : 0;
793 if (this_from < CHARSET_MIN_CODE (charset))
794 this_from = CHARSET_MIN_CODE (charset);
795 if (this_to > CHARSET_MAX_CODE (charset))
796 this_to = CHARSET_MAX_CODE (charset);
797 map_charset_chars (c_function, function, arg, charset,
798 this_from, this_to);
799 }
800 }
801 }
802
803 DEFUN ("map-charset-chars", Fmap_charset_chars, Smap_charset_chars, 2, 5, 0,
804 doc: /* Call FUNCTION for all characters in CHARSET.
805 FUNCTION is called with an argument RANGE and the optional 3rd
806 argument ARG.
807
808 RANGE is a cons (FROM . TO), where FROM and TO indicate a range of
809 characters contained in CHARSET.
810
811 The optional 4th and 5th arguments FROM-CODE and TO-CODE specify the
812 range of code points (in CHARSET) of target characters. */)
813 (Lisp_Object function, Lisp_Object charset, Lisp_Object arg, Lisp_Object from_code, Lisp_Object to_code)
814 {
815 struct charset *cs;
816 unsigned from, to;
817
818 CHECK_CHARSET_GET_CHARSET (charset, cs);
819 if (NILP (from_code))
820 from = CHARSET_MIN_CODE (cs);
821 else
822 {
823 from = XINT (from_code);
824 if (from < CHARSET_MIN_CODE (cs))
825 from = CHARSET_MIN_CODE (cs);
826 }
827 if (NILP (to_code))
828 to = CHARSET_MAX_CODE (cs);
829 else
830 {
831 to = XINT (to_code);
832 if (to > CHARSET_MAX_CODE (cs))
833 to = CHARSET_MAX_CODE (cs);
834 }
835 map_charset_chars (NULL, function, arg, cs, from, to);
836 return Qnil;
837 }
838
839
840 /* Define a charset according to the arguments. The Nth argument is
841 the Nth attribute of the charset (the last attribute `charset-id'
842 is not included). See the docstring of `define-charset' for the
843 detail. */
844
845 DEFUN ("define-charset-internal", Fdefine_charset_internal,
846 Sdefine_charset_internal, charset_arg_max, MANY, 0,
847 doc: /* For internal use only.
848 usage: (define-charset-internal ...) */)
849 (ptrdiff_t nargs, Lisp_Object *args)
850 {
851 /* Charset attr vector. */
852 Lisp_Object attrs;
853 Lisp_Object val;
854 EMACS_UINT hash_code;
855 struct Lisp_Hash_Table *hash_table = XHASH_TABLE (Vcharset_hash_table);
856 int i, j;
857 struct charset charset;
858 int id;
859 int dimension;
860 bool new_definition_p;
861 int nchars;
862
863 if (nargs != charset_arg_max)
864 return Fsignal (Qwrong_number_of_arguments,
865 Fcons (intern ("define-charset-internal"),
866 make_number (nargs)));
867
868 attrs = Fmake_vector (make_number (charset_attr_max), Qnil);
869
870 CHECK_SYMBOL (args[charset_arg_name]);
871 ASET (attrs, charset_name, args[charset_arg_name]);
872
873 val = args[charset_arg_code_space];
874 for (i = 0, dimension = 0, nchars = 1; ; i++)
875 {
876 Lisp_Object min_byte_obj, max_byte_obj;
877 int min_byte, max_byte;
878
879 min_byte_obj = Faref (val, make_number (i * 2));
880 max_byte_obj = Faref (val, make_number (i * 2 + 1));
881 CHECK_RANGED_INTEGER (min_byte_obj, 0, 255);
882 min_byte = XINT (min_byte_obj);
883 CHECK_RANGED_INTEGER (max_byte_obj, min_byte, 255);
884 max_byte = XINT (max_byte_obj);
885 charset.code_space[i * 4] = min_byte;
886 charset.code_space[i * 4 + 1] = max_byte;
887 charset.code_space[i * 4 + 2] = max_byte - min_byte + 1;
888 if (max_byte > 0)
889 dimension = i + 1;
890 if (i == 3)
891 break;
892 nchars *= charset.code_space[i * 4 + 2];
893 charset.code_space[i * 4 + 3] = nchars;
894 }
895
896 val = args[charset_arg_dimension];
897 if (NILP (val))
898 charset.dimension = dimension;
899 else
900 {
901 CHECK_RANGED_INTEGER (val, 1, 4);
902 charset.dimension = XINT (val);
903 }
904
905 charset.code_linear_p
906 = (charset.dimension == 1
907 || (charset.code_space[2] == 256
908 && (charset.dimension == 2
909 || (charset.code_space[6] == 256
910 && (charset.dimension == 3
911 || charset.code_space[10] == 256)))));
912
913 if (! charset.code_linear_p)
914 {
915 charset.code_space_mask = xzalloc (256);
916 for (i = 0; i < 4; i++)
917 for (j = charset.code_space[i * 4]; j <= charset.code_space[i * 4 + 1];
918 j++)
919 charset.code_space_mask[j] |= (1 << i);
920 }
921
922 charset.iso_chars_96 = charset.code_space[2] == 96;
923
924 charset.min_code = (charset.code_space[0]
925 | (charset.code_space[4] << 8)
926 | (charset.code_space[8] << 16)
927 | ((unsigned) charset.code_space[12] << 24));
928 charset.max_code = (charset.code_space[1]
929 | (charset.code_space[5] << 8)
930 | (charset.code_space[9] << 16)
931 | ((unsigned) charset.code_space[13] << 24));
932 charset.char_index_offset = 0;
933
934 val = args[charset_arg_min_code];
935 if (! NILP (val))
936 {
937 unsigned code = cons_to_unsigned (val, UINT_MAX);
938
939 if (code < charset.min_code
940 || code > charset.max_code)
941 args_out_of_range_3 (make_fixnum_or_float (charset.min_code),
942 make_fixnum_or_float (charset.max_code), val);
943 charset.char_index_offset = CODE_POINT_TO_INDEX (&charset, code);
944 charset.min_code = code;
945 }
946
947 val = args[charset_arg_max_code];
948 if (! NILP (val))
949 {
950 unsigned code = cons_to_unsigned (val, UINT_MAX);
951
952 if (code < charset.min_code
953 || code > charset.max_code)
954 args_out_of_range_3 (make_fixnum_or_float (charset.min_code),
955 make_fixnum_or_float (charset.max_code), val);
956 charset.max_code = code;
957 }
958
959 charset.compact_codes_p = charset.max_code < 0x10000;
960
961 val = args[charset_arg_invalid_code];
962 if (NILP (val))
963 {
964 if (charset.min_code > 0)
965 charset.invalid_code = 0;
966 else
967 {
968 if (charset.max_code < UINT_MAX)
969 charset.invalid_code = charset.max_code + 1;
970 else
971 error ("Attribute :invalid-code must be specified");
972 }
973 }
974 else
975 charset.invalid_code = cons_to_unsigned (val, UINT_MAX);
976
977 val = args[charset_arg_iso_final];
978 if (NILP (val))
979 charset.iso_final = -1;
980 else
981 {
982 CHECK_NUMBER (val);
983 if (XINT (val) < '0' || XINT (val) > 127)
984 error ("Invalid iso-final-char: %"pI"d", XINT (val));
985 charset.iso_final = XINT (val);
986 }
987
988 val = args[charset_arg_iso_revision];
989 if (NILP (val))
990 charset.iso_revision = -1;
991 else
992 {
993 CHECK_RANGED_INTEGER (val, -1, 63);
994 charset.iso_revision = XINT (val);
995 }
996
997 val = args[charset_arg_emacs_mule_id];
998 if (NILP (val))
999 charset.emacs_mule_id = -1;
1000 else
1001 {
1002 CHECK_NATNUM (val);
1003 if ((XINT (val) > 0 && XINT (val) <= 128) || XINT (val) >= 256)
1004 error ("Invalid emacs-mule-id: %"pI"d", XINT (val));
1005 charset.emacs_mule_id = XINT (val);
1006 }
1007
1008 charset.ascii_compatible_p = ! NILP (args[charset_arg_ascii_compatible_p]);
1009
1010 charset.supplementary_p = ! NILP (args[charset_arg_supplementary_p]);
1011
1012 charset.unified_p = 0;
1013
1014 memset (charset.fast_map, 0, sizeof (charset.fast_map));
1015
1016 if (! NILP (args[charset_arg_code_offset]))
1017 {
1018 val = args[charset_arg_code_offset];
1019 CHECK_CHARACTER (val);
1020
1021 charset.method = CHARSET_METHOD_OFFSET;
1022 charset.code_offset = XINT (val);
1023
1024 i = CODE_POINT_TO_INDEX (&charset, charset.max_code);
1025 if (MAX_CHAR - charset.code_offset < i)
1026 error ("Unsupported max char: %d", charset.max_char);
1027 charset.max_char = i + charset.code_offset;
1028 i = CODE_POINT_TO_INDEX (&charset, charset.min_code);
1029 charset.min_char = i + charset.code_offset;
1030
1031 i = (charset.min_char >> 7) << 7;
1032 for (; i < 0x10000 && i <= charset.max_char; i += 128)
1033 CHARSET_FAST_MAP_SET (i, charset.fast_map);
1034 i = (i >> 12) << 12;
1035 for (; i <= charset.max_char; i += 0x1000)
1036 CHARSET_FAST_MAP_SET (i, charset.fast_map);
1037 if (charset.code_offset == 0 && charset.max_char >= 0x80)
1038 charset.ascii_compatible_p = 1;
1039 }
1040 else if (! NILP (args[charset_arg_map]))
1041 {
1042 val = args[charset_arg_map];
1043 ASET (attrs, charset_map, val);
1044 charset.method = CHARSET_METHOD_MAP;
1045 }
1046 else if (! NILP (args[charset_arg_subset]))
1047 {
1048 Lisp_Object parent;
1049 Lisp_Object parent_min_code, parent_max_code, parent_code_offset;
1050 struct charset *parent_charset;
1051
1052 val = args[charset_arg_subset];
1053 parent = Fcar (val);
1054 CHECK_CHARSET_GET_CHARSET (parent, parent_charset);
1055 parent_min_code = Fnth (make_number (1), val);
1056 CHECK_NATNUM (parent_min_code);
1057 parent_max_code = Fnth (make_number (2), val);
1058 CHECK_NATNUM (parent_max_code);
1059 parent_code_offset = Fnth (make_number (3), val);
1060 CHECK_NUMBER (parent_code_offset);
1061 val = make_uninit_vector (4);
1062 ASET (val, 0, make_number (parent_charset->id));
1063 ASET (val, 1, parent_min_code);
1064 ASET (val, 2, parent_max_code);
1065 ASET (val, 3, parent_code_offset);
1066 ASET (attrs, charset_subset, val);
1067
1068 charset.method = CHARSET_METHOD_SUBSET;
1069 /* Here, we just copy the parent's fast_map. It's not accurate,
1070 but at least it works for quickly detecting which character
1071 DOESN'T belong to this charset. */
1072 for (i = 0; i < 190; i++)
1073 charset.fast_map[i] = parent_charset->fast_map[i];
1074
1075 /* We also copy these for parents. */
1076 charset.min_char = parent_charset->min_char;
1077 charset.max_char = parent_charset->max_char;
1078 }
1079 else if (! NILP (args[charset_arg_superset]))
1080 {
1081 val = args[charset_arg_superset];
1082 charset.method = CHARSET_METHOD_SUPERSET;
1083 val = Fcopy_sequence (val);
1084 ASET (attrs, charset_superset, val);
1085
1086 charset.min_char = MAX_CHAR;
1087 charset.max_char = 0;
1088 for (; ! NILP (val); val = Fcdr (val))
1089 {
1090 Lisp_Object elt, car_part, cdr_part;
1091 int this_id, offset;
1092 struct charset *this_charset;
1093
1094 elt = Fcar (val);
1095 if (CONSP (elt))
1096 {
1097 car_part = XCAR (elt);
1098 cdr_part = XCDR (elt);
1099 CHECK_CHARSET_GET_ID (car_part, this_id);
1100 CHECK_TYPE_RANGED_INTEGER (int, cdr_part);
1101 offset = XINT (cdr_part);
1102 }
1103 else
1104 {
1105 CHECK_CHARSET_GET_ID (elt, this_id);
1106 offset = 0;
1107 }
1108 XSETCAR (val, Fcons (make_number (this_id), make_number (offset)));
1109
1110 this_charset = CHARSET_FROM_ID (this_id);
1111 if (charset.min_char > this_charset->min_char)
1112 charset.min_char = this_charset->min_char;
1113 if (charset.max_char < this_charset->max_char)
1114 charset.max_char = this_charset->max_char;
1115 for (i = 0; i < 190; i++)
1116 charset.fast_map[i] |= this_charset->fast_map[i];
1117 }
1118 }
1119 else
1120 error ("None of :code-offset, :map, :parents are specified");
1121
1122 val = args[charset_arg_unify_map];
1123 if (! NILP (val) && !STRINGP (val))
1124 CHECK_VECTOR (val);
1125 ASET (attrs, charset_unify_map, val);
1126
1127 CHECK_LIST (args[charset_arg_plist]);
1128 ASET (attrs, charset_plist, args[charset_arg_plist]);
1129
1130 charset.hash_index = hash_lookup (hash_table, args[charset_arg_name],
1131 &hash_code);
1132 if (charset.hash_index >= 0)
1133 {
1134 new_definition_p = 0;
1135 id = XFASTINT (CHARSET_SYMBOL_ID (args[charset_arg_name]));
1136 set_hash_value_slot (hash_table, charset.hash_index, attrs);
1137 }
1138 else
1139 {
1140 charset.hash_index = hash_put (hash_table, args[charset_arg_name], attrs,
1141 hash_code);
1142 if (charset_table_used == charset_table_size)
1143 {
1144 /* Ensure that charset IDs fit into 'int' as well as into the
1145 restriction imposed by fixnums. Although the 'int' restriction
1146 could be removed, too much other code would need altering; for
1147 example, the IDs are stuffed into struct
1148 coding_system.charbuf[i] entries, which are 'int'. */
1149 int old_size = charset_table_size;
1150 ptrdiff_t new_size = old_size;
1151 struct charset *new_table =
1152 xpalloc (0, &new_size, 1,
1153 min (INT_MAX, MOST_POSITIVE_FIXNUM),
1154 sizeof *charset_table);
1155 memcpy (new_table, charset_table, old_size * sizeof *new_table);
1156 charset_table = new_table;
1157 charset_table_size = new_size;
1158 /* FIXME: This leaks memory, as the old charset_table becomes
1159 unreachable. If the old charset table is charset_table_init
1160 then this leak is intentional; otherwise, it's unclear.
1161 If the latter memory leak is intentional, a
1162 comment should be added to explain this. If not, the old
1163 charset_table should be freed, by passing it as the 1st argument
1164 to xpalloc and removing the memcpy. */
1165 }
1166 id = charset_table_used++;
1167 new_definition_p = 1;
1168 }
1169
1170 ASET (attrs, charset_id, make_number (id));
1171 charset.id = id;
1172 charset_table[id] = charset;
1173
1174 if (charset.method == CHARSET_METHOD_MAP)
1175 {
1176 load_charset (&charset, 0);
1177 charset_table[id] = charset;
1178 }
1179
1180 if (charset.iso_final >= 0)
1181 {
1182 ISO_CHARSET_TABLE (charset.dimension, charset.iso_chars_96,
1183 charset.iso_final) = id;
1184 if (new_definition_p)
1185 Viso_2022_charset_list = nconc2 (Viso_2022_charset_list,
1186 list1 (make_number (id)));
1187 if (ISO_CHARSET_TABLE (1, 0, 'J') == id)
1188 charset_jisx0201_roman = id;
1189 else if (ISO_CHARSET_TABLE (2, 0, '@') == id)
1190 charset_jisx0208_1978 = id;
1191 else if (ISO_CHARSET_TABLE (2, 0, 'B') == id)
1192 charset_jisx0208 = id;
1193 else if (ISO_CHARSET_TABLE (2, 0, 'C') == id)
1194 charset_ksc5601 = id;
1195 }
1196
1197 if (charset.emacs_mule_id >= 0)
1198 {
1199 emacs_mule_charset[charset.emacs_mule_id] = id;
1200 if (charset.emacs_mule_id < 0xA0)
1201 emacs_mule_bytes[charset.emacs_mule_id] = charset.dimension + 1;
1202 else
1203 emacs_mule_bytes[charset.emacs_mule_id] = charset.dimension + 2;
1204 if (new_definition_p)
1205 Vemacs_mule_charset_list = nconc2 (Vemacs_mule_charset_list,
1206 list1 (make_number (id)));
1207 }
1208
1209 if (new_definition_p)
1210 {
1211 Vcharset_list = Fcons (args[charset_arg_name], Vcharset_list);
1212 if (charset.supplementary_p)
1213 Vcharset_ordered_list = nconc2 (Vcharset_ordered_list,
1214 list1 (make_number (id)));
1215 else
1216 {
1217 Lisp_Object tail;
1218
1219 for (tail = Vcharset_ordered_list; CONSP (tail); tail = XCDR (tail))
1220 {
1221 struct charset *cs = CHARSET_FROM_ID (XINT (XCAR (tail)));
1222
1223 if (cs->supplementary_p)
1224 break;
1225 }
1226 if (EQ (tail, Vcharset_ordered_list))
1227 Vcharset_ordered_list = Fcons (make_number (id),
1228 Vcharset_ordered_list);
1229 else if (NILP (tail))
1230 Vcharset_ordered_list = nconc2 (Vcharset_ordered_list,
1231 list1 (make_number (id)));
1232 else
1233 {
1234 val = Fcons (XCAR (tail), XCDR (tail));
1235 XSETCDR (tail, val);
1236 XSETCAR (tail, make_number (id));
1237 }
1238 }
1239 charset_ordered_list_tick++;
1240 }
1241
1242 return Qnil;
1243 }
1244
1245
1246 /* Same as Fdefine_charset_internal but arguments are more convenient
1247 to call from C (typically in syms_of_charset). This can define a
1248 charset of `offset' method only. Return the ID of the new
1249 charset. */
1250
1251 static int
1252 define_charset_internal (Lisp_Object name,
1253 int dimension,
1254 const char *code_space_chars,
1255 unsigned min_code, unsigned max_code,
1256 int iso_final, int iso_revision, int emacs_mule_id,
1257 bool ascii_compatible, bool supplementary,
1258 int code_offset)
1259 {
1260 const unsigned char *code_space = (const unsigned char *) code_space_chars;
1261 Lisp_Object args[charset_arg_max];
1262 Lisp_Object val;
1263 int i;
1264
1265 args[charset_arg_name] = name;
1266 args[charset_arg_dimension] = make_number (dimension);
1267 val = make_uninit_vector (8);
1268 for (i = 0; i < 8; i++)
1269 ASET (val, i, make_number (code_space[i]));
1270 args[charset_arg_code_space] = val;
1271 args[charset_arg_min_code] = make_number (min_code);
1272 args[charset_arg_max_code] = make_number (max_code);
1273 args[charset_arg_iso_final]
1274 = (iso_final < 0 ? Qnil : make_number (iso_final));
1275 args[charset_arg_iso_revision] = make_number (iso_revision);
1276 args[charset_arg_emacs_mule_id]
1277 = (emacs_mule_id < 0 ? Qnil : make_number (emacs_mule_id));
1278 args[charset_arg_ascii_compatible_p] = ascii_compatible ? Qt : Qnil;
1279 args[charset_arg_supplementary_p] = supplementary ? Qt : Qnil;
1280 args[charset_arg_invalid_code] = Qnil;
1281 args[charset_arg_code_offset] = make_number (code_offset);
1282 args[charset_arg_map] = Qnil;
1283 args[charset_arg_subset] = Qnil;
1284 args[charset_arg_superset] = Qnil;
1285 args[charset_arg_unify_map] = Qnil;
1286
1287 args[charset_arg_plist] =
1288 listn (CONSTYPE_HEAP, 14,
1289 intern_c_string (":name"),
1290 args[charset_arg_name],
1291 intern_c_string (":dimension"),
1292 args[charset_arg_dimension],
1293 intern_c_string (":code-space"),
1294 args[charset_arg_code_space],
1295 intern_c_string (":iso-final-char"),
1296 args[charset_arg_iso_final],
1297 intern_c_string (":emacs-mule-id"),
1298 args[charset_arg_emacs_mule_id],
1299 intern_c_string (":ascii-compatible-p"),
1300 args[charset_arg_ascii_compatible_p],
1301 intern_c_string (":code-offset"),
1302 args[charset_arg_code_offset]);
1303 Fdefine_charset_internal (charset_arg_max, args);
1304
1305 return XINT (CHARSET_SYMBOL_ID (name));
1306 }
1307
1308
1309 DEFUN ("define-charset-alias", Fdefine_charset_alias,
1310 Sdefine_charset_alias, 2, 2, 0,
1311 doc: /* Define ALIAS as an alias for charset CHARSET. */)
1312 (Lisp_Object alias, Lisp_Object charset)
1313 {
1314 Lisp_Object attr;
1315
1316 CHECK_CHARSET_GET_ATTR (charset, attr);
1317 Fputhash (alias, attr, Vcharset_hash_table);
1318 Vcharset_list = Fcons (alias, Vcharset_list);
1319 return Qnil;
1320 }
1321
1322
1323 DEFUN ("charset-plist", Fcharset_plist, Scharset_plist, 1, 1, 0,
1324 doc: /* Return the property list of CHARSET. */)
1325 (Lisp_Object charset)
1326 {
1327 Lisp_Object attrs;
1328
1329 CHECK_CHARSET_GET_ATTR (charset, attrs);
1330 return CHARSET_ATTR_PLIST (attrs);
1331 }
1332
1333
1334 DEFUN ("set-charset-plist", Fset_charset_plist, Sset_charset_plist, 2, 2, 0,
1335 doc: /* Set CHARSET's property list to PLIST. */)
1336 (Lisp_Object charset, Lisp_Object plist)
1337 {
1338 Lisp_Object attrs;
1339
1340 CHECK_CHARSET_GET_ATTR (charset, attrs);
1341 ASET (attrs, charset_plist, plist);
1342 return plist;
1343 }
1344
1345
1346 DEFUN ("unify-charset", Funify_charset, Sunify_charset, 1, 3, 0,
1347 doc: /* Unify characters of CHARSET with Unicode.
1348 This means reading the relevant file and installing the table defined
1349 by CHARSET's `:unify-map' property.
1350
1351 Optional second arg UNIFY-MAP is a file name string or a vector. It has
1352 the same meaning as the `:unify-map' attribute in the function
1353 `define-charset' (which see).
1354
1355 Optional third argument DEUNIFY, if non-nil, means to de-unify CHARSET. */)
1356 (Lisp_Object charset, Lisp_Object unify_map, Lisp_Object deunify)
1357 {
1358 int id;
1359 struct charset *cs;
1360
1361 CHECK_CHARSET_GET_ID (charset, id);
1362 cs = CHARSET_FROM_ID (id);
1363 if (NILP (deunify)
1364 ? CHARSET_UNIFIED_P (cs) && ! NILP (CHARSET_DEUNIFIER (cs))
1365 : ! CHARSET_UNIFIED_P (cs))
1366 return Qnil;
1367
1368 CHARSET_UNIFIED_P (cs) = 0;
1369 if (NILP (deunify))
1370 {
1371 if (CHARSET_METHOD (cs) != CHARSET_METHOD_OFFSET
1372 || CHARSET_CODE_OFFSET (cs) < 0x110000)
1373 error ("Can't unify charset: %s", SDATA (SYMBOL_NAME (charset)));
1374 if (NILP (unify_map))
1375 unify_map = CHARSET_UNIFY_MAP (cs);
1376 else
1377 {
1378 if (! STRINGP (unify_map) && ! VECTORP (unify_map))
1379 signal_error ("Bad unify-map", unify_map);
1380 set_charset_attr (cs, charset_unify_map, unify_map);
1381 }
1382 if (NILP (Vchar_unify_table))
1383 Vchar_unify_table = Fmake_char_table (Qnil, Qnil);
1384 char_table_set_range (Vchar_unify_table,
1385 cs->min_char, cs->max_char, charset);
1386 CHARSET_UNIFIED_P (cs) = 1;
1387 }
1388 else if (CHAR_TABLE_P (Vchar_unify_table))
1389 {
1390 unsigned min_code = CHARSET_MIN_CODE (cs);
1391 unsigned max_code = CHARSET_MAX_CODE (cs);
1392 int min_char = DECODE_CHAR (cs, min_code);
1393 int max_char = DECODE_CHAR (cs, max_code);
1394
1395 char_table_set_range (Vchar_unify_table, min_char, max_char, Qnil);
1396 }
1397
1398 return Qnil;
1399 }
1400
1401 DEFUN ("get-unused-iso-final-char", Fget_unused_iso_final_char,
1402 Sget_unused_iso_final_char, 2, 2, 0,
1403 doc: /*
1404 Return an unused ISO final char for a charset of DIMENSION and CHARS.
1405 DIMENSION is the number of bytes to represent a character: 1 or 2.
1406 CHARS is the number of characters in a dimension: 94 or 96.
1407
1408 This final char is for private use, thus the range is `0' (48) .. `?' (63).
1409 If there's no unused final char for the specified kind of charset,
1410 return nil. */)
1411 (Lisp_Object dimension, Lisp_Object chars)
1412 {
1413 int final_char;
1414
1415 CHECK_NUMBER (dimension);
1416 CHECK_NUMBER (chars);
1417 if (XINT (dimension) != 1 && XINT (dimension) != 2 && XINT (dimension) != 3)
1418 args_out_of_range_3 (dimension, make_number (1), make_number (3));
1419 if (XINT (chars) != 94 && XINT (chars) != 96)
1420 args_out_of_range_3 (chars, make_number (94), make_number (96));
1421 for (final_char = '0'; final_char <= '?'; final_char++)
1422 if (ISO_CHARSET_TABLE (XINT (dimension), XINT (chars), final_char) < 0)
1423 break;
1424 return (final_char <= '?' ? make_number (final_char) : Qnil);
1425 }
1426
1427 static void
1428 check_iso_charset_parameter (Lisp_Object dimension, Lisp_Object chars, Lisp_Object final_char)
1429 {
1430 CHECK_NATNUM (dimension);
1431 CHECK_NATNUM (chars);
1432 CHECK_CHARACTER (final_char);
1433
1434 if (XINT (dimension) > 3)
1435 error ("Invalid DIMENSION %"pI"d, it should be 1, 2, or 3",
1436 XINT (dimension));
1437 if (XINT (chars) != 94 && XINT (chars) != 96)
1438 error ("Invalid CHARS %"pI"d, it should be 94 or 96", XINT (chars));
1439 if (XINT (final_char) < '0' || XINT (final_char) > '~')
1440 error ("Invalid FINAL-CHAR %c, it should be `0'..`~'",
1441 (int)XINT (final_char));
1442 }
1443
1444
1445 DEFUN ("declare-equiv-charset", Fdeclare_equiv_charset, Sdeclare_equiv_charset,
1446 4, 4, 0,
1447 doc: /* Declare an equivalent charset for ISO-2022 decoding.
1448
1449 On decoding by an ISO-2022 base coding system, when a charset
1450 specified by DIMENSION, CHARS, and FINAL-CHAR is designated, behave as
1451 if CHARSET is designated instead. */)
1452 (Lisp_Object dimension, Lisp_Object chars, Lisp_Object final_char, Lisp_Object charset)
1453 {
1454 int id;
1455 bool chars_flag;
1456
1457 CHECK_CHARSET_GET_ID (charset, id);
1458 check_iso_charset_parameter (dimension, chars, final_char);
1459 chars_flag = XINT (chars) == 96;
1460 ISO_CHARSET_TABLE (XINT (dimension), chars_flag, XINT (final_char)) = id;
1461 return Qnil;
1462 }
1463
1464
1465 /* Return information about charsets in the text at PTR of NBYTES
1466 bytes, which are NCHARS characters. The value is:
1467
1468 0: Each character is represented by one byte. This is always
1469 true for a unibyte string. For a multibyte string, true if
1470 it contains only ASCII characters.
1471
1472 1: No charsets other than ascii, control-1, and latin-1 are
1473 found.
1474
1475 2: Otherwise.
1476 */
1477
1478 int
1479 string_xstring_p (Lisp_Object string)
1480 {
1481 const unsigned char *p = SDATA (string);
1482 const unsigned char *endp = p + SBYTES (string);
1483
1484 if (SCHARS (string) == SBYTES (string))
1485 return 0;
1486
1487 while (p < endp)
1488 {
1489 int c = STRING_CHAR_ADVANCE (p);
1490
1491 if (c >= 0x100)
1492 return 2;
1493 }
1494 return 1;
1495 }
1496
1497
1498 /* Find charsets in the string at PTR of NCHARS and NBYTES.
1499
1500 CHARSETS is a vector. If Nth element is non-nil, it means the
1501 charset whose id is N is already found.
1502
1503 It may lookup a translation table TABLE if supplied. */
1504
1505 static void
1506 find_charsets_in_text (const unsigned char *ptr, ptrdiff_t nchars,
1507 ptrdiff_t nbytes, Lisp_Object charsets,
1508 Lisp_Object table, bool multibyte)
1509 {
1510 const unsigned char *pend = ptr + nbytes;
1511
1512 if (nchars == nbytes)
1513 {
1514 if (multibyte)
1515 ASET (charsets, charset_ascii, Qt);
1516 else
1517 while (ptr < pend)
1518 {
1519 int c = *ptr++;
1520
1521 if (!NILP (table))
1522 c = translate_char (table, c);
1523 if (ASCII_BYTE_P (c))
1524 ASET (charsets, charset_ascii, Qt);
1525 else
1526 ASET (charsets, charset_eight_bit, Qt);
1527 }
1528 }
1529 else
1530 {
1531 while (ptr < pend)
1532 {
1533 int c = STRING_CHAR_ADVANCE (ptr);
1534 struct charset *charset;
1535
1536 if (!NILP (table))
1537 c = translate_char (table, c);
1538 charset = CHAR_CHARSET (c);
1539 ASET (charsets, CHARSET_ID (charset), Qt);
1540 }
1541 }
1542 }
1543
1544 DEFUN ("find-charset-region", Ffind_charset_region, Sfind_charset_region,
1545 2, 3, 0,
1546 doc: /* Return a list of charsets in the region between BEG and END.
1547 BEG and END are buffer positions.
1548 Optional arg TABLE if non-nil is a translation table to look up.
1549
1550 If the current buffer is unibyte, the returned list may contain
1551 only `ascii', `eight-bit-control', and `eight-bit-graphic'. */)
1552 (Lisp_Object beg, Lisp_Object end, Lisp_Object table)
1553 {
1554 Lisp_Object charsets;
1555 ptrdiff_t from, from_byte, to, stop, stop_byte;
1556 int i;
1557 Lisp_Object val;
1558 bool multibyte = ! NILP (BVAR (current_buffer, enable_multibyte_characters));
1559
1560 validate_region (&beg, &end);
1561 from = XFASTINT (beg);
1562 stop = to = XFASTINT (end);
1563
1564 if (from < GPT && GPT < to)
1565 {
1566 stop = GPT;
1567 stop_byte = GPT_BYTE;
1568 }
1569 else
1570 stop_byte = CHAR_TO_BYTE (stop);
1571
1572 from_byte = CHAR_TO_BYTE (from);
1573
1574 charsets = Fmake_vector (make_number (charset_table_used), Qnil);
1575 while (1)
1576 {
1577 find_charsets_in_text (BYTE_POS_ADDR (from_byte), stop - from,
1578 stop_byte - from_byte, charsets, table,
1579 multibyte);
1580 if (stop < to)
1581 {
1582 from = stop, from_byte = stop_byte;
1583 stop = to, stop_byte = CHAR_TO_BYTE (stop);
1584 }
1585 else
1586 break;
1587 }
1588
1589 val = Qnil;
1590 for (i = charset_table_used - 1; i >= 0; i--)
1591 if (!NILP (AREF (charsets, i)))
1592 val = Fcons (CHARSET_NAME (charset_table + i), val);
1593 return val;
1594 }
1595
1596 DEFUN ("find-charset-string", Ffind_charset_string, Sfind_charset_string,
1597 1, 2, 0,
1598 doc: /* Return a list of charsets in STR.
1599 Optional arg TABLE if non-nil is a translation table to look up.
1600
1601 If STR is unibyte, the returned list may contain
1602 only `ascii', `eight-bit-control', and `eight-bit-graphic'. */)
1603 (Lisp_Object str, Lisp_Object table)
1604 {
1605 Lisp_Object charsets;
1606 int i;
1607 Lisp_Object val;
1608
1609 CHECK_STRING (str);
1610
1611 charsets = Fmake_vector (make_number (charset_table_used), Qnil);
1612 find_charsets_in_text (SDATA (str), SCHARS (str), SBYTES (str),
1613 charsets, table,
1614 STRING_MULTIBYTE (str));
1615 val = Qnil;
1616 for (i = charset_table_used - 1; i >= 0; i--)
1617 if (!NILP (AREF (charsets, i)))
1618 val = Fcons (CHARSET_NAME (charset_table + i), val);
1619 return val;
1620 }
1621
1622 \f
1623
1624 /* Return a unified character code for C (>= 0x110000). VAL is a
1625 value of Vchar_unify_table for C; i.e. it is nil, an integer, or a
1626 charset symbol. */
1627 static int
1628 maybe_unify_char (int c, Lisp_Object val)
1629 {
1630 struct charset *charset;
1631
1632 if (INTEGERP (val))
1633 return XFASTINT (val);
1634 if (NILP (val))
1635 return c;
1636
1637 CHECK_CHARSET_GET_CHARSET (val, charset);
1638 #ifdef REL_ALLOC
1639 /* The call to load_charset below can allocate memory, which screws
1640 callers of this function through STRING_CHAR_* macros that hold C
1641 pointers to buffer text, if REL_ALLOC is used. */
1642 r_alloc_inhibit_buffer_relocation (1);
1643 #endif
1644 load_charset (charset, 1);
1645 if (! inhibit_load_charset_map)
1646 {
1647 val = CHAR_TABLE_REF (Vchar_unify_table, c);
1648 if (! NILP (val))
1649 c = XFASTINT (val);
1650 }
1651 else
1652 {
1653 int code_index = c - CHARSET_CODE_OFFSET (charset);
1654 int unified = GET_TEMP_CHARSET_WORK_DECODER (code_index);
1655
1656 if (unified > 0)
1657 c = unified;
1658 }
1659 #ifdef REL_ALLOC
1660 r_alloc_inhibit_buffer_relocation (0);
1661 #endif
1662 return c;
1663 }
1664
1665
1666 /* Return a character corresponding to the code-point CODE of
1667 CHARSET. */
1668
1669 int
1670 decode_char (struct charset *charset, unsigned int code)
1671 {
1672 int c, char_index;
1673 enum charset_method method = CHARSET_METHOD (charset);
1674
1675 if (code < CHARSET_MIN_CODE (charset) || code > CHARSET_MAX_CODE (charset))
1676 return -1;
1677
1678 if (method == CHARSET_METHOD_SUBSET)
1679 {
1680 Lisp_Object subset_info;
1681
1682 subset_info = CHARSET_SUBSET (charset);
1683 charset = CHARSET_FROM_ID (XFASTINT (AREF (subset_info, 0)));
1684 code -= XINT (AREF (subset_info, 3));
1685 if (code < XFASTINT (AREF (subset_info, 1))
1686 || code > XFASTINT (AREF (subset_info, 2)))
1687 c = -1;
1688 else
1689 c = DECODE_CHAR (charset, code);
1690 }
1691 else if (method == CHARSET_METHOD_SUPERSET)
1692 {
1693 Lisp_Object parents;
1694
1695 parents = CHARSET_SUPERSET (charset);
1696 c = -1;
1697 for (; CONSP (parents); parents = XCDR (parents))
1698 {
1699 int id = XINT (XCAR (XCAR (parents)));
1700 int code_offset = XINT (XCDR (XCAR (parents)));
1701 unsigned this_code = code - code_offset;
1702
1703 charset = CHARSET_FROM_ID (id);
1704 if ((c = DECODE_CHAR (charset, this_code)) >= 0)
1705 break;
1706 }
1707 }
1708 else
1709 {
1710 char_index = CODE_POINT_TO_INDEX (charset, code);
1711 if (char_index < 0)
1712 return -1;
1713
1714 if (method == CHARSET_METHOD_MAP)
1715 {
1716 Lisp_Object decoder;
1717
1718 decoder = CHARSET_DECODER (charset);
1719 if (! VECTORP (decoder))
1720 {
1721 load_charset (charset, 1);
1722 decoder = CHARSET_DECODER (charset);
1723 }
1724 if (VECTORP (decoder))
1725 c = XINT (AREF (decoder, char_index));
1726 else
1727 c = GET_TEMP_CHARSET_WORK_DECODER (char_index);
1728 }
1729 else /* method == CHARSET_METHOD_OFFSET */
1730 {
1731 c = char_index + CHARSET_CODE_OFFSET (charset);
1732 if (CHARSET_UNIFIED_P (charset)
1733 && MAX_UNICODE_CHAR < c && c <= MAX_5_BYTE_CHAR)
1734 {
1735 /* Unify C with a Unicode character if possible. */
1736 Lisp_Object val = CHAR_TABLE_REF (Vchar_unify_table, c);
1737 c = maybe_unify_char (c, val);
1738 }
1739 }
1740 }
1741
1742 return c;
1743 }
1744
1745 /* Variable used temporarily by the macro ENCODE_CHAR. */
1746 Lisp_Object charset_work;
1747
1748 /* Return a code-point of C in CHARSET. If C doesn't belong to
1749 CHARSET, return CHARSET_INVALID_CODE (CHARSET). If STRICT is true,
1750 use CHARSET's strict_max_char instead of max_char. */
1751
1752 unsigned
1753 encode_char (struct charset *charset, int c)
1754 {
1755 unsigned code;
1756 enum charset_method method = CHARSET_METHOD (charset);
1757
1758 if (CHARSET_UNIFIED_P (charset))
1759 {
1760 Lisp_Object deunifier;
1761 int code_index = -1;
1762
1763 deunifier = CHARSET_DEUNIFIER (charset);
1764 if (! CHAR_TABLE_P (deunifier))
1765 {
1766 load_charset (charset, 2);
1767 deunifier = CHARSET_DEUNIFIER (charset);
1768 }
1769 if (CHAR_TABLE_P (deunifier))
1770 {
1771 Lisp_Object deunified = CHAR_TABLE_REF (deunifier, c);
1772
1773 if (INTEGERP (deunified))
1774 code_index = XINT (deunified);
1775 }
1776 else
1777 {
1778 code_index = GET_TEMP_CHARSET_WORK_ENCODER (c);
1779 }
1780 if (code_index >= 0)
1781 c = CHARSET_CODE_OFFSET (charset) + code_index;
1782 }
1783
1784 if (method == CHARSET_METHOD_SUBSET)
1785 {
1786 Lisp_Object subset_info;
1787 struct charset *this_charset;
1788
1789 subset_info = CHARSET_SUBSET (charset);
1790 this_charset = CHARSET_FROM_ID (XFASTINT (AREF (subset_info, 0)));
1791 code = ENCODE_CHAR (this_charset, c);
1792 if (code == CHARSET_INVALID_CODE (this_charset)
1793 || code < XFASTINT (AREF (subset_info, 1))
1794 || code > XFASTINT (AREF (subset_info, 2)))
1795 return CHARSET_INVALID_CODE (charset);
1796 code += XINT (AREF (subset_info, 3));
1797 return code;
1798 }
1799
1800 if (method == CHARSET_METHOD_SUPERSET)
1801 {
1802 Lisp_Object parents;
1803
1804 parents = CHARSET_SUPERSET (charset);
1805 for (; CONSP (parents); parents = XCDR (parents))
1806 {
1807 int id = XINT (XCAR (XCAR (parents)));
1808 int code_offset = XINT (XCDR (XCAR (parents)));
1809 struct charset *this_charset = CHARSET_FROM_ID (id);
1810
1811 code = ENCODE_CHAR (this_charset, c);
1812 if (code != CHARSET_INVALID_CODE (this_charset))
1813 return code + code_offset;
1814 }
1815 return CHARSET_INVALID_CODE (charset);
1816 }
1817
1818 if (! CHARSET_FAST_MAP_REF ((c), charset->fast_map)
1819 || c < CHARSET_MIN_CHAR (charset) || c > CHARSET_MAX_CHAR (charset))
1820 return CHARSET_INVALID_CODE (charset);
1821
1822 if (method == CHARSET_METHOD_MAP)
1823 {
1824 Lisp_Object encoder;
1825 Lisp_Object val;
1826
1827 encoder = CHARSET_ENCODER (charset);
1828 if (! CHAR_TABLE_P (CHARSET_ENCODER (charset)))
1829 {
1830 load_charset (charset, 2);
1831 encoder = CHARSET_ENCODER (charset);
1832 }
1833 if (CHAR_TABLE_P (encoder))
1834 {
1835 val = CHAR_TABLE_REF (encoder, c);
1836 if (NILP (val))
1837 return CHARSET_INVALID_CODE (charset);
1838 code = XINT (val);
1839 if (! CHARSET_COMPACT_CODES_P (charset))
1840 code = INDEX_TO_CODE_POINT (charset, code);
1841 }
1842 else
1843 {
1844 code = GET_TEMP_CHARSET_WORK_ENCODER (c);
1845 code = INDEX_TO_CODE_POINT (charset, code);
1846 }
1847 }
1848 else /* method == CHARSET_METHOD_OFFSET */
1849 {
1850 unsigned code_index = c - CHARSET_CODE_OFFSET (charset);
1851
1852 code = INDEX_TO_CODE_POINT (charset, code_index);
1853 }
1854
1855 return code;
1856 }
1857
1858
1859 DEFUN ("decode-char", Fdecode_char, Sdecode_char, 2, 3, 0,
1860 doc: /* Decode the pair of CHARSET and CODE-POINT into a character.
1861 Return nil if CODE-POINT is not valid in CHARSET.
1862
1863 CODE-POINT may be a cons (HIGHER-16-BIT-VALUE . LOWER-16-BIT-VALUE). */)
1864 (Lisp_Object charset, Lisp_Object code_point, Lisp_Object restriction)
1865 {
1866 int c, id;
1867 unsigned code;
1868 struct charset *charsetp;
1869
1870 CHECK_CHARSET_GET_ID (charset, id);
1871 code = cons_to_unsigned (code_point, UINT_MAX);
1872 charsetp = CHARSET_FROM_ID (id);
1873 c = DECODE_CHAR (charsetp, code);
1874 return (c >= 0 ? make_number (c) : Qnil);
1875 }
1876
1877
1878 DEFUN ("encode-char", Fencode_char, Sencode_char, 2, 3, 0,
1879 doc: /* Encode the character CH into a code-point of CHARSET.
1880 Return nil if CHARSET doesn't include CH. */)
1881 (Lisp_Object ch, Lisp_Object charset, Lisp_Object restriction)
1882 {
1883 int c, id;
1884 unsigned code;
1885 struct charset *charsetp;
1886
1887 CHECK_CHARSET_GET_ID (charset, id);
1888 CHECK_CHARACTER (ch);
1889 c = XFASTINT (ch);
1890 charsetp = CHARSET_FROM_ID (id);
1891 code = ENCODE_CHAR (charsetp, c);
1892 if (code == CHARSET_INVALID_CODE (charsetp))
1893 return Qnil;
1894 return INTEGER_TO_CONS (code);
1895 }
1896
1897
1898 DEFUN ("make-char", Fmake_char, Smake_char, 1, 5, 0,
1899 doc:
1900 /* Return a character of CHARSET whose position codes are CODEn.
1901
1902 CODE1 through CODE4 are optional, but if you don't supply sufficient
1903 position codes, it is assumed that the minimum code in each dimension
1904 is specified. */)
1905 (Lisp_Object charset, Lisp_Object code1, Lisp_Object code2, Lisp_Object code3, Lisp_Object code4)
1906 {
1907 int id, dimension;
1908 struct charset *charsetp;
1909 unsigned code;
1910 int c;
1911
1912 CHECK_CHARSET_GET_ID (charset, id);
1913 charsetp = CHARSET_FROM_ID (id);
1914
1915 dimension = CHARSET_DIMENSION (charsetp);
1916 if (NILP (code1))
1917 code = (CHARSET_ASCII_COMPATIBLE_P (charsetp)
1918 ? 0 : CHARSET_MIN_CODE (charsetp));
1919 else
1920 {
1921 CHECK_NATNUM (code1);
1922 if (XFASTINT (code1) >= 0x100)
1923 args_out_of_range (make_number (0xFF), code1);
1924 code = XFASTINT (code1);
1925
1926 if (dimension > 1)
1927 {
1928 code <<= 8;
1929 if (NILP (code2))
1930 code |= charsetp->code_space[(dimension - 2) * 4];
1931 else
1932 {
1933 CHECK_NATNUM (code2);
1934 if (XFASTINT (code2) >= 0x100)
1935 args_out_of_range (make_number (0xFF), code2);
1936 code |= XFASTINT (code2);
1937 }
1938
1939 if (dimension > 2)
1940 {
1941 code <<= 8;
1942 if (NILP (code3))
1943 code |= charsetp->code_space[(dimension - 3) * 4];
1944 else
1945 {
1946 CHECK_NATNUM (code3);
1947 if (XFASTINT (code3) >= 0x100)
1948 args_out_of_range (make_number (0xFF), code3);
1949 code |= XFASTINT (code3);
1950 }
1951
1952 if (dimension > 3)
1953 {
1954 code <<= 8;
1955 if (NILP (code4))
1956 code |= charsetp->code_space[0];
1957 else
1958 {
1959 CHECK_NATNUM (code4);
1960 if (XFASTINT (code4) >= 0x100)
1961 args_out_of_range (make_number (0xFF), code4);
1962 code |= XFASTINT (code4);
1963 }
1964 }
1965 }
1966 }
1967 }
1968
1969 if (CHARSET_ISO_FINAL (charsetp) >= 0)
1970 code &= 0x7F7F7F7F;
1971 c = DECODE_CHAR (charsetp, code);
1972 if (c < 0)
1973 error ("Invalid code(s)");
1974 return make_number (c);
1975 }
1976
1977
1978 /* Return the first charset in CHARSET_LIST that contains C.
1979 CHARSET_LIST is a list of charset IDs. If it is nil, use
1980 Vcharset_ordered_list. */
1981
1982 struct charset *
1983 char_charset (int c, Lisp_Object charset_list, unsigned int *code_return)
1984 {
1985 bool maybe_null = 0;
1986
1987 if (NILP (charset_list))
1988 charset_list = Vcharset_ordered_list;
1989 else
1990 maybe_null = 1;
1991
1992 while (CONSP (charset_list))
1993 {
1994 struct charset *charset = CHARSET_FROM_ID (XINT (XCAR (charset_list)));
1995 unsigned code = ENCODE_CHAR (charset, c);
1996
1997 if (code != CHARSET_INVALID_CODE (charset))
1998 {
1999 if (code_return)
2000 *code_return = code;
2001 return charset;
2002 }
2003 charset_list = XCDR (charset_list);
2004 if (! maybe_null
2005 && c <= MAX_UNICODE_CHAR
2006 && EQ (charset_list, Vcharset_non_preferred_head))
2007 return CHARSET_FROM_ID (charset_unicode);
2008 }
2009 return (maybe_null ? NULL
2010 : c <= MAX_5_BYTE_CHAR ? CHARSET_FROM_ID (charset_emacs)
2011 : CHARSET_FROM_ID (charset_eight_bit));
2012 }
2013
2014
2015 DEFUN ("split-char", Fsplit_char, Ssplit_char, 1, 1, 0,
2016 doc:
2017 /*Return list of charset and one to four position-codes of CH.
2018 The charset is decided by the current priority order of charsets.
2019 A position-code is a byte value of each dimension of the code-point of
2020 CH in the charset. */)
2021 (Lisp_Object ch)
2022 {
2023 struct charset *charset;
2024 int c, dimension;
2025 unsigned code;
2026 Lisp_Object val;
2027
2028 CHECK_CHARACTER (ch);
2029 c = XFASTINT (ch);
2030 charset = CHAR_CHARSET (c);
2031 if (! charset)
2032 emacs_abort ();
2033 code = ENCODE_CHAR (charset, c);
2034 if (code == CHARSET_INVALID_CODE (charset))
2035 emacs_abort ();
2036 dimension = CHARSET_DIMENSION (charset);
2037 for (val = Qnil; dimension > 0; dimension--)
2038 {
2039 val = Fcons (make_number (code & 0xFF), val);
2040 code >>= 8;
2041 }
2042 return Fcons (CHARSET_NAME (charset), val);
2043 }
2044
2045
2046 DEFUN ("char-charset", Fchar_charset, Schar_charset, 1, 2, 0,
2047 doc: /* Return the charset of highest priority that contains CH.
2048 ASCII characters are an exception: for them, this function always
2049 returns `ascii'.
2050 If optional 2nd arg RESTRICTION is non-nil, it is a list of charsets
2051 from which to find the charset. It may also be a coding system. In
2052 that case, find the charset from what supported by that coding system. */)
2053 (Lisp_Object ch, Lisp_Object restriction)
2054 {
2055 struct charset *charset;
2056
2057 CHECK_CHARACTER (ch);
2058 if (NILP (restriction))
2059 charset = CHAR_CHARSET (XINT (ch));
2060 else
2061 {
2062 if (CONSP (restriction))
2063 {
2064 int c = XFASTINT (ch);
2065
2066 for (; CONSP (restriction); restriction = XCDR (restriction))
2067 {
2068 struct charset *rcharset;
2069
2070 CHECK_CHARSET_GET_CHARSET (XCAR (restriction), rcharset);
2071 if (ENCODE_CHAR (rcharset, c) != CHARSET_INVALID_CODE (rcharset))
2072 return XCAR (restriction);
2073 }
2074 return Qnil;
2075 }
2076 restriction = coding_system_charset_list (restriction);
2077 charset = char_charset (XINT (ch), restriction, NULL);
2078 if (! charset)
2079 return Qnil;
2080 }
2081 return (CHARSET_NAME (charset));
2082 }
2083
2084
2085 DEFUN ("charset-after", Fcharset_after, Scharset_after, 0, 1, 0,
2086 doc: /*
2087 Return charset of a character in the current buffer at position POS.
2088 If POS is nil, it defaults to the current point.
2089 If POS is out of range, the value is nil. */)
2090 (Lisp_Object pos)
2091 {
2092 Lisp_Object ch;
2093 struct charset *charset;
2094
2095 ch = Fchar_after (pos);
2096 if (! INTEGERP (ch))
2097 return ch;
2098 charset = CHAR_CHARSET (XINT (ch));
2099 return (CHARSET_NAME (charset));
2100 }
2101
2102
2103 DEFUN ("iso-charset", Fiso_charset, Siso_charset, 3, 3, 0,
2104 doc: /*
2105 Return charset of ISO's specification DIMENSION, CHARS, and FINAL-CHAR.
2106
2107 ISO 2022's designation sequence (escape sequence) distinguishes charsets
2108 by their DIMENSION, CHARS, and FINAL-CHAR,
2109 whereas Emacs distinguishes them by charset symbol.
2110 See the documentation of the function `charset-info' for the meanings of
2111 DIMENSION, CHARS, and FINAL-CHAR. */)
2112 (Lisp_Object dimension, Lisp_Object chars, Lisp_Object final_char)
2113 {
2114 int id;
2115 bool chars_flag;
2116
2117 check_iso_charset_parameter (dimension, chars, final_char);
2118 chars_flag = XFASTINT (chars) == 96;
2119 id = ISO_CHARSET_TABLE (XFASTINT (dimension), chars_flag,
2120 XFASTINT (final_char));
2121 return (id >= 0 ? CHARSET_NAME (CHARSET_FROM_ID (id)) : Qnil);
2122 }
2123
2124
2125 DEFUN ("clear-charset-maps", Fclear_charset_maps, Sclear_charset_maps,
2126 0, 0, 0,
2127 doc: /*
2128 Internal use only.
2129 Clear temporary charset mapping tables.
2130 It should be called only from temacs invoked for dumping. */)
2131 (void)
2132 {
2133 if (temp_charset_work)
2134 {
2135 xfree (temp_charset_work);
2136 temp_charset_work = NULL;
2137 }
2138
2139 if (CHAR_TABLE_P (Vchar_unify_table))
2140 Foptimize_char_table (Vchar_unify_table, Qnil);
2141
2142 return Qnil;
2143 }
2144
2145 DEFUN ("charset-priority-list", Fcharset_priority_list,
2146 Scharset_priority_list, 0, 1, 0,
2147 doc: /* Return the list of charsets ordered by priority.
2148 HIGHESTP non-nil means just return the highest priority one. */)
2149 (Lisp_Object highestp)
2150 {
2151 Lisp_Object val = Qnil, list = Vcharset_ordered_list;
2152
2153 if (!NILP (highestp))
2154 return CHARSET_NAME (CHARSET_FROM_ID (XINT (Fcar (list))));
2155
2156 while (!NILP (list))
2157 {
2158 val = Fcons (CHARSET_NAME (CHARSET_FROM_ID (XINT (XCAR (list)))), val);
2159 list = XCDR (list);
2160 }
2161 return Fnreverse (val);
2162 }
2163
2164 DEFUN ("set-charset-priority", Fset_charset_priority, Sset_charset_priority,
2165 1, MANY, 0,
2166 doc: /* Assign higher priority to the charsets given as arguments.
2167 usage: (set-charset-priority &rest charsets) */)
2168 (ptrdiff_t nargs, Lisp_Object *args)
2169 {
2170 Lisp_Object new_head, old_list, arglist[2];
2171 Lisp_Object list_2022, list_emacs_mule;
2172 ptrdiff_t i;
2173 int id;
2174
2175 old_list = Fcopy_sequence (Vcharset_ordered_list);
2176 new_head = Qnil;
2177 for (i = 0; i < nargs; i++)
2178 {
2179 CHECK_CHARSET_GET_ID (args[i], id);
2180 if (! NILP (Fmemq (make_number (id), old_list)))
2181 {
2182 old_list = Fdelq (make_number (id), old_list);
2183 new_head = Fcons (make_number (id), new_head);
2184 }
2185 }
2186 arglist[0] = Fnreverse (new_head);
2187 arglist[1] = Vcharset_non_preferred_head = old_list;
2188 Vcharset_ordered_list = Fnconc (2, arglist);
2189 charset_ordered_list_tick++;
2190
2191 charset_unibyte = -1;
2192 for (old_list = Vcharset_ordered_list, list_2022 = list_emacs_mule = Qnil;
2193 CONSP (old_list); old_list = XCDR (old_list))
2194 {
2195 if (! NILP (Fmemq (XCAR (old_list), Viso_2022_charset_list)))
2196 list_2022 = Fcons (XCAR (old_list), list_2022);
2197 if (! NILP (Fmemq (XCAR (old_list), Vemacs_mule_charset_list)))
2198 list_emacs_mule = Fcons (XCAR (old_list), list_emacs_mule);
2199 if (charset_unibyte < 0)
2200 {
2201 struct charset *charset = CHARSET_FROM_ID (XINT (XCAR (old_list)));
2202
2203 if (CHARSET_DIMENSION (charset) == 1
2204 && CHARSET_ASCII_COMPATIBLE_P (charset)
2205 && CHARSET_MAX_CHAR (charset) >= 0x80)
2206 charset_unibyte = CHARSET_ID (charset);
2207 }
2208 }
2209 Viso_2022_charset_list = Fnreverse (list_2022);
2210 Vemacs_mule_charset_list = Fnreverse (list_emacs_mule);
2211 if (charset_unibyte < 0)
2212 charset_unibyte = charset_iso_8859_1;
2213
2214 return Qnil;
2215 }
2216
2217 DEFUN ("charset-id-internal", Fcharset_id_internal, Scharset_id_internal,
2218 0, 1, 0,
2219 doc: /* Internal use only.
2220 Return charset identification number of CHARSET. */)
2221 (Lisp_Object charset)
2222 {
2223 int id;
2224
2225 CHECK_CHARSET_GET_ID (charset, id);
2226 return make_number (id);
2227 }
2228
2229 struct charset_sort_data
2230 {
2231 Lisp_Object charset;
2232 int id;
2233 ptrdiff_t priority;
2234 };
2235
2236 static int
2237 charset_compare (const void *d1, const void *d2)
2238 {
2239 const struct charset_sort_data *data1 = d1, *data2 = d2;
2240 if (data1->priority != data2->priority)
2241 return data1->priority < data2->priority ? -1 : 1;
2242 return 0;
2243 }
2244
2245 DEFUN ("sort-charsets", Fsort_charsets, Ssort_charsets, 1, 1, 0,
2246 doc: /* Sort charset list CHARSETS by a priority of each charset.
2247 Return the sorted list. CHARSETS is modified by side effects.
2248 See also `charset-priority-list' and `set-charset-priority'. */)
2249 (Lisp_Object charsets)
2250 {
2251 Lisp_Object len = Flength (charsets);
2252 ptrdiff_t n = XFASTINT (len), i, j;
2253 int done;
2254 Lisp_Object tail, elt, attrs;
2255 struct charset_sort_data *sort_data;
2256 int id, min_id = INT_MAX, max_id = INT_MIN;
2257 USE_SAFE_ALLOCA;
2258
2259 if (n == 0)
2260 return Qnil;
2261 SAFE_NALLOCA (sort_data, 1, n);
2262 for (tail = charsets, i = 0; CONSP (tail); tail = XCDR (tail), i++)
2263 {
2264 elt = XCAR (tail);
2265 CHECK_CHARSET_GET_ATTR (elt, attrs);
2266 sort_data[i].charset = elt;
2267 sort_data[i].id = id = XINT (CHARSET_ATTR_ID (attrs));
2268 if (id < min_id)
2269 min_id = id;
2270 if (id > max_id)
2271 max_id = id;
2272 }
2273 for (done = 0, tail = Vcharset_ordered_list, i = 0;
2274 done < n && CONSP (tail); tail = XCDR (tail), i++)
2275 {
2276 elt = XCAR (tail);
2277 id = XFASTINT (elt);
2278 if (id >= min_id && id <= max_id)
2279 for (j = 0; j < n; j++)
2280 if (sort_data[j].id == id)
2281 {
2282 sort_data[j].priority = i;
2283 done++;
2284 }
2285 }
2286 qsort (sort_data, n, sizeof *sort_data, charset_compare);
2287 for (i = 0, tail = charsets; CONSP (tail); tail = XCDR (tail), i++)
2288 XSETCAR (tail, sort_data[i].charset);
2289 SAFE_FREE ();
2290 return charsets;
2291 }
2292
2293 \f
2294 void
2295 init_charset (void)
2296 {
2297 Lisp_Object tempdir;
2298 tempdir = Fexpand_file_name (build_string ("charsets"), Vdata_directory);
2299 if (! file_accessible_directory_p (SSDATA (tempdir)))
2300 {
2301 /* This used to be non-fatal (dir_warning), but it should not
2302 happen, and if it does sooner or later it will cause some
2303 obscure problem (eg bug#6401), so better abort. */
2304 fprintf (stderr, "Error: charsets directory not found:\n\
2305 %s\n\
2306 Emacs will not function correctly without the character map files.\n\
2307 Please check your installation!\n",
2308 SDATA (tempdir));
2309 exit (1);
2310 }
2311
2312 Vcharset_map_path = list1 (tempdir);
2313 }
2314
2315
2316 void
2317 init_charset_once (void)
2318 {
2319 int i, j, k;
2320
2321 for (i = 0; i < ISO_MAX_DIMENSION; i++)
2322 for (j = 0; j < ISO_MAX_CHARS; j++)
2323 for (k = 0; k < ISO_MAX_FINAL; k++)
2324 iso_charset_table[i][j][k] = -1;
2325
2326 for (i = 0; i < 256; i++)
2327 emacs_mule_charset[i] = -1;
2328
2329 charset_jisx0201_roman = -1;
2330 charset_jisx0208_1978 = -1;
2331 charset_jisx0208 = -1;
2332 charset_ksc5601 = -1;
2333 }
2334
2335 #ifdef emacs
2336
2337 /* Allocate an initial charset table that is large enough to handle
2338 Emacs while it is bootstrapping. As of September 2011, the size
2339 needs to be at least 166; make it a bit bigger to allow for future
2340 expansion.
2341
2342 Don't make the value so small that the table is reallocated during
2343 bootstrapping, as glibc malloc calls larger than just under 64 KiB
2344 during an initial bootstrap wreak havoc after dumping; see the
2345 M_MMAP_THRESHOLD value in alloc.c, plus there is a extra overhead
2346 internal to glibc malloc and perhaps to Emacs malloc debugging. */
2347 static struct charset charset_table_init[180];
2348
2349 void
2350 syms_of_charset (void)
2351 {
2352 DEFSYM (Qcharsetp, "charsetp");
2353
2354 DEFSYM (Qascii, "ascii");
2355 DEFSYM (Qunicode, "unicode");
2356 DEFSYM (Qemacs, "emacs");
2357 DEFSYM (Qeight_bit, "eight-bit");
2358 DEFSYM (Qiso_8859_1, "iso-8859-1");
2359
2360 DEFSYM (Qgl, "gl");
2361 DEFSYM (Qgr, "gr");
2362
2363 staticpro (&Vcharset_ordered_list);
2364 Vcharset_ordered_list = Qnil;
2365
2366 staticpro (&Viso_2022_charset_list);
2367 Viso_2022_charset_list = Qnil;
2368
2369 staticpro (&Vemacs_mule_charset_list);
2370 Vemacs_mule_charset_list = Qnil;
2371
2372 /* Don't staticpro them here. It's done in syms_of_fns. */
2373 QCtest = intern_c_string (":test");
2374 Qeq = intern_c_string ("eq");
2375
2376 staticpro (&Vcharset_hash_table);
2377 {
2378 Lisp_Object args[2];
2379 args[0] = QCtest;
2380 args[1] = Qeq;
2381 Vcharset_hash_table = Fmake_hash_table (2, args);
2382 }
2383
2384 charset_table = charset_table_init;
2385 charset_table_size = sizeof charset_table_init / sizeof *charset_table_init;
2386 charset_table_used = 0;
2387
2388 defsubr (&Scharsetp);
2389 defsubr (&Smap_charset_chars);
2390 defsubr (&Sdefine_charset_internal);
2391 defsubr (&Sdefine_charset_alias);
2392 defsubr (&Scharset_plist);
2393 defsubr (&Sset_charset_plist);
2394 defsubr (&Sunify_charset);
2395 defsubr (&Sget_unused_iso_final_char);
2396 defsubr (&Sdeclare_equiv_charset);
2397 defsubr (&Sfind_charset_region);
2398 defsubr (&Sfind_charset_string);
2399 defsubr (&Sdecode_char);
2400 defsubr (&Sencode_char);
2401 defsubr (&Ssplit_char);
2402 defsubr (&Smake_char);
2403 defsubr (&Schar_charset);
2404 defsubr (&Scharset_after);
2405 defsubr (&Siso_charset);
2406 defsubr (&Sclear_charset_maps);
2407 defsubr (&Scharset_priority_list);
2408 defsubr (&Sset_charset_priority);
2409 defsubr (&Scharset_id_internal);
2410 defsubr (&Ssort_charsets);
2411
2412 DEFVAR_LISP ("charset-map-path", Vcharset_map_path,
2413 doc: /* List of directories to search for charset map files. */);
2414 Vcharset_map_path = Qnil;
2415
2416 DEFVAR_BOOL ("inhibit-load-charset-map", inhibit_load_charset_map,
2417 doc: /* Inhibit loading of charset maps. Used when dumping Emacs. */);
2418 inhibit_load_charset_map = 0;
2419
2420 DEFVAR_LISP ("charset-list", Vcharset_list,
2421 doc: /* List of all charsets ever defined. */);
2422 Vcharset_list = Qnil;
2423
2424 DEFVAR_LISP ("current-iso639-language", Vcurrent_iso639_language,
2425 doc: /* ISO639 language mnemonic symbol for the current language environment.
2426 If the current language environment is for multiple languages (e.g. "Latin-1"),
2427 the value may be a list of mnemonics. */);
2428 Vcurrent_iso639_language = Qnil;
2429
2430 charset_ascii
2431 = define_charset_internal (Qascii, 1, "\x00\x7F\0\0\0\0\0",
2432 0, 127, 'B', -1, 0, 1, 0, 0);
2433 charset_iso_8859_1
2434 = define_charset_internal (Qiso_8859_1, 1, "\x00\xFF\0\0\0\0\0",
2435 0, 255, -1, -1, -1, 1, 0, 0);
2436 charset_unicode
2437 = define_charset_internal (Qunicode, 3, "\x00\xFF\x00\xFF\x00\x10\0",
2438 0, MAX_UNICODE_CHAR, -1, 0, -1, 1, 0, 0);
2439 charset_emacs
2440 = define_charset_internal (Qemacs, 3, "\x00\xFF\x00\xFF\x00\x3F\0",
2441 0, MAX_5_BYTE_CHAR, -1, 0, -1, 1, 1, 0);
2442 charset_eight_bit
2443 = define_charset_internal (Qeight_bit, 1, "\x80\xFF\0\0\0\0\0",
2444 128, 255, -1, 0, -1, 0, 1,
2445 MAX_5_BYTE_CHAR + 1);
2446 charset_unibyte = charset_iso_8859_1;
2447 }
2448
2449 #endif /* emacs */