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1 ;;; mule.el --- basic commands for mulitilingual environment
2
3 ;; Copyright (C) 1995 Electrotechnical Laboratory, JAPAN.
4 ;; Licensed to the Free Software Foundation.
5 ;; Copyright (C) 2001, 2002 Free Software Foundation, Inc.
6
7 ;; Keywords: mule, multilingual, character set, coding system
8
9 ;; This file is part of GNU Emacs.
10
11 ;; GNU Emacs is free software; you can redistribute it and/or modify
12 ;; it under the terms of the GNU General Public License as published by
13 ;; the Free Software Foundation; either version 2, or (at your option)
14 ;; any later version.
15
16 ;; GNU Emacs is distributed in the hope that it will be useful,
17 ;; but WITHOUT ANY WARRANTY; without even the implied warranty of
18 ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19 ;; GNU General Public License for more details.
20
21 ;; You should have received a copy of the GNU General Public License
22 ;; along with GNU Emacs; see the file COPYING. If not, write to the
23 ;; Free Software Foundation, Inc., 59 Temple Place - Suite 330,
24 ;; Boston, MA 02111-1307, USA.
25
26 ;;; Commentary:
27
28 ;;; Code:
29
30 (defconst mule-version "5.0 (SAKAKI)" "\
31 Version number and name of this version of MULE (multilingual environment).")
32
33 (defconst mule-version-date "1999.12.7" "\
34 Distribution date of this version of MULE (multilingual environment).")
35
36 (defun load-with-code-conversion (fullname file &optional noerror nomessage)
37 "Execute a file of Lisp code named FILE whose absolute name is FULLNAME.
38 The file contents are decoded before evaluation if necessary.
39 If optional second arg NOERROR is non-nil,
40 report no error if FILE doesn't exist.
41 Print messages at start and end of loading unless
42 optional third arg NOMESSAGE is non-nil.
43 Return t if file exists."
44 (if (null (file-readable-p fullname))
45 (and (null noerror)
46 (signal 'file-error (list "Cannot open load file" file)))
47 ;; Read file with code conversion, and then eval.
48 (let* ((buffer
49 ;; To avoid any autoloading, set default-major-mode to
50 ;; fundamental-mode.
51 ;; So that we don't get completely screwed if the
52 ;; file is encoded in some complicated character set,
53 ;; read it with real decoding, as a multibyte buffer,
54 ;; even if this is a --unibyte Emacs session.
55 (let ((default-major-mode 'fundamental-mode)
56 (default-enable-multibyte-characters t))
57 ;; We can't use `generate-new-buffer' because files.el
58 ;; is not yet loaded.
59 (get-buffer-create (generate-new-buffer-name " *load*"))))
60 (load-in-progress t)
61 (source (save-match-data (string-match "\\.el\\'" fullname))))
62 (unless nomessage
63 (if source
64 (message "Loading %s (source)..." file)
65 (message "Loading %s..." file)))
66 (when purify-flag
67 (push file preloaded-file-list))
68 (unwind-protect
69 (let ((load-file-name fullname)
70 (set-auto-coding-for-load t)
71 (inhibit-file-name-operation nil))
72 (save-excursion
73 (set-buffer buffer)
74 (insert-file-contents fullname)
75 ;; If the loaded file was inserted with no-conversion or
76 ;; raw-text coding system, make the buffer unibyte.
77 ;; Otherwise, eval-buffer might try to interpret random
78 ;; binary junk as multibyte characters.
79 (if (and enable-multibyte-characters
80 (or (eq (coding-system-type last-coding-system-used) 5)
81 (eq last-coding-system-used 'no-conversion)))
82 (set-buffer-multibyte nil))
83 ;; Make `kill-buffer' quiet.
84 (set-buffer-modified-p nil))
85 ;; Have the original buffer current while we eval.
86 (eval-buffer buffer nil file
87 ;; If this Emacs is running with --unibyte,
88 ;; convert multibyte strings to unibyte
89 ;; after reading them.
90 ;; (not default-enable-multibyte-characters)
91 nil t
92 ))
93 (let (kill-buffer-hook kill-buffer-query-functions)
94 (kill-buffer buffer)))
95 (let ((hook (assoc file after-load-alist)))
96 (when hook
97 (mapcar (function eval) (cdr hook))))
98 (unless (or nomessage noninteractive)
99 (if source
100 (message "Loading %s (source)...done" file)
101 (message "Loading %s...done" file)))
102 t)))
103
104 ;; API (Application Program Interface) for charsets.
105
106 (defsubst charset-quoted-standard-p (obj)
107 "Return t if OBJ is a quoted symbol, and is the name of a standard charset."
108 (and (listp obj) (eq (car obj) 'quote)
109 (symbolp (car-safe (cdr obj)))
110 (let ((vector (get (car-safe (cdr obj)) 'charset)))
111 (and (vectorp vector)
112 (< (aref vector 0) 160)))))
113
114 (defsubst charsetp (object)
115 "T if OBJECT is a charset."
116 (and (symbolp object) (vectorp (get object 'charset))))
117
118 (defsubst charset-info (charset)
119 "Return a vector of information of CHARSET.
120 The elements of the vector are:
121 CHARSET-ID, BYTES, DIMENSION, CHARS, WIDTH, DIRECTION,
122 LEADING-CODE-BASE, LEADING-CODE-EXT,
123 ISO-FINAL-CHAR, ISO-GRAPHIC-PLANE,
124 REVERSE-CHARSET, SHORT-NAME, LONG-NAME, DESCRIPTION,
125 PLIST,
126 where
127 CHARSET-ID (integer) is the identification number of the charset.
128 BYTES (integer) is the length of multi-byte form of a character in
129 the charset: one of 1, 2, 3, and 4.
130 DIMENSION (integer) is the number of bytes to represent a character of
131 the charset: 1 or 2.
132 CHARS (integer) is the number of characters in a dimension: 94 or 96.
133 WIDTH (integer) is the number of columns a character in the charset
134 occupies on the screen: one of 0, 1, and 2.
135 DIRECTION (integer) is the rendering direction of characters in the
136 charset when rendering. If 0, render from left to right, else
137 render from right to left.
138 LEADING-CODE-BASE (integer) is the base leading-code for the
139 charset.
140 LEADING-CODE-EXT (integer) is the extended leading-code for the
141 charset. All charsets of less than 0xA0 has the value 0.
142 ISO-FINAL-CHAR (character) is the final character of the
143 corresponding ISO 2022 charset. If the charset is not assigned
144 any final character, the value is -1.
145 ISO-GRAPHIC-PLANE (integer) is the graphic plane to be invoked
146 while encoding to variants of ISO 2022 coding system, one of the
147 following: 0/graphic-plane-left(GL), 1/graphic-plane-right(GR).
148 If the charset is not assigned any final character, the value is -1.
149 REVERSE-CHARSET (integer) is the charset which differs only in
150 LEFT-TO-RIGHT value from the charset. If there's no such a
151 charset, the value is -1.
152 SHORT-NAME (string) is the short name to refer to the charset.
153 LONG-NAME (string) is the long name to refer to the charset
154 DESCRIPTION (string) is the description string of the charset.
155 PLIST (property list) may contain any type of information a user
156 want to put and get by functions `put-charset-property' and
157 `get-charset-property' respectively."
158 (get charset 'charset))
159
160 ;; It is better not to use backquote in this file,
161 ;; because that makes a bootstrapping problem
162 ;; if you need to recompile all the Lisp files using interpreted code.
163
164 (defmacro charset-id (charset)
165 "Return charset identification number of CHARSET."
166 (if (charset-quoted-standard-p charset)
167 (aref (charset-info (nth 1 charset)) 0)
168 (list 'aref (list 'charset-info charset) 0)))
169
170 (defmacro charset-bytes (charset)
171 "Return bytes of CHARSET.
172 See the function `charset-info' for more detail."
173 (if (charset-quoted-standard-p charset)
174 (aref (charset-info (nth 1 charset)) 1)
175 (list 'aref (list 'charset-info charset) 1)))
176
177 (defmacro charset-dimension (charset)
178 "Return dimension of CHARSET.
179 See the function `charset-info' for more detail."
180 (if (charset-quoted-standard-p charset)
181 (aref (charset-info (nth 1 charset)) 2)
182 (list 'aref (list 'charset-info charset) 2)))
183
184 (defmacro charset-chars (charset)
185 "Return character numbers contained in a dimension of CHARSET.
186 See the function `charset-info' for more detail."
187 (if (charset-quoted-standard-p charset)
188 (aref (charset-info (nth 1 charset)) 3)
189 (list 'aref (list 'charset-info charset) 3)))
190
191 (defmacro charset-width (charset)
192 "Return width (how many column occupied on a screen) of CHARSET.
193 See the function `charset-info' for more detail."
194 (if (charset-quoted-standard-p charset)
195 (aref (charset-info (nth 1 charset)) 4)
196 (list 'aref (list 'charset-info charset) 4)))
197
198 (defmacro charset-direction (charset)
199 "Return direction of CHARSET.
200 See the function `charset-info' for more detail."
201 (if (charset-quoted-standard-p charset)
202 (aref (charset-info (nth 1 charset)) 5)
203 (list 'aref (list 'charset-info charset) 5)))
204
205 (defmacro charset-iso-final-char (charset)
206 "Return final char of CHARSET.
207 See the function `charset-info' for more detail."
208 (if (charset-quoted-standard-p charset)
209 (aref (charset-info (nth 1 charset)) 8)
210 (list 'aref (list 'charset-info charset) 8)))
211
212 (defmacro charset-iso-graphic-plane (charset)
213 "Return graphic plane of CHARSET.
214 See the function `charset-info' for more detail."
215 (if (charset-quoted-standard-p charset)
216 (aref (charset-info (nth 1 charset)) 9)
217 (list 'aref (list 'charset-info charset) 9)))
218
219 (defmacro charset-reverse-charset (charset)
220 "Return reverse charset of CHARSET.
221 See the function `charset-info' for more detail."
222 (if (charset-quoted-standard-p charset)
223 (aref (charset-info (nth 1 charset)) 10)
224 (list 'aref (list 'charset-info charset) 10)))
225
226 (defmacro charset-short-name (charset)
227 "Return short name of CHARSET.
228 See the function `charset-info' for more detail."
229 (if (charset-quoted-standard-p charset)
230 (aref (charset-info (nth 1 charset)) 11)
231 (list 'aref (list 'charset-info charset) 11)))
232
233 (defmacro charset-long-name (charset)
234 "Return long name of CHARSET.
235 See the function `charset-info' for more detail."
236 (if (charset-quoted-standard-p charset)
237 (aref (charset-info (nth 1 charset)) 12)
238 (list 'aref (list 'charset-info charset) 12)))
239
240 (defmacro charset-description (charset)
241 "Return description of CHARSET.
242 See the function `charset-info' for more detail."
243 (if (charset-quoted-standard-p charset)
244 (aref (charset-info (nth 1 charset)) 13)
245 (list 'aref (list 'charset-info charset) 13)))
246
247 (defmacro charset-plist (charset)
248 "Return list charset property of CHARSET.
249 See the function `charset-info' for more detail."
250 (list 'aref
251 (if (charset-quoted-standard-p charset)
252 (charset-info (nth 1 charset))
253 (list 'charset-info charset))
254 14))
255
256 (defun set-charset-plist (charset plist)
257 "Set CHARSET's property list to PLIST, and return PLIST."
258 (aset (charset-info charset) 14 plist))
259
260 (defun make-char (charset &optional code1 code2)
261 "Return a character of CHARSET whose position codes are CODE1 and CODE2.
262 CODE1 and CODE2 are optional, but if you don't supply
263 sufficient position codes, return a generic character which stands for
264 all characters or group of characters in the character set.
265 A generic character can be used to index a char table (e.g. syntax-table).
266
267 Such character sets as ascii, eight-bit-control, and eight-bit-graphic
268 don't have corresponding generic characters. If CHARSET is one of
269 them and you don't supply CODE1, return the character of the smallest
270 code in CHARSET.
271
272 If CODE1 or CODE2 are invalid (out of range), this function signals an
273 error. However, the eighth bit of both CODE1 and CODE2 is zeroed
274 before they are used to index CHARSET. Thus you may use, say, the
275 actual ISO 8859 character code rather than subtracting 128, as you
276 would need to index the corresponding Emacs charset."
277 (make-char-internal (charset-id charset) code1 code2))
278
279 (put 'make-char 'byte-compile
280 (function
281 (lambda (form)
282 (let ((charset (nth 1 form)))
283 (if (charset-quoted-standard-p charset)
284 (byte-compile-normal-call
285 (cons 'make-char-internal
286 (cons (charset-id (nth 1 charset)) (nthcdr 2 form))))
287 (byte-compile-normal-call
288 (cons 'make-char-internal
289 (cons (list 'charset-id charset) (nthcdr 2 form)))))))))
290
291 (defun charset-list ()
292 "Return list of charsets ever defined.
293
294 This function is provided for backward compatibility.
295 Now we have the variable `charset-list'."
296 charset-list)
297
298 (defsubst generic-char-p (char)
299 "Return t if and only if CHAR is a generic character.
300 See also the documentation of `make-char'."
301 (and (>= char 0400)
302 (let ((l (split-char char)))
303 (and (or (= (nth 1 l) 0) (eq (nth 2 l) 0))
304 (not (eq (car l) 'composition))))))
305
306 (defun decode-char (ccs code-point &optional restriction)
307 "Return character specified by coded character set CCS and CODE-POINT in it.
308 Return nil if such a character is not supported.
309 Currently the only supported coded character set is `ucs' (ISO/IEC
310 10646: Universal Multi-Octet Coded Character Set), and the result is
311 translated through the translation-table named
312 `utf-translation-table-for-decode' or the translation-hash-table named
313 `utf-subst-table-for-decode'.
314
315 Optional argument RESTRICTION specifies a way to map the pair of CCS
316 and CODE-POINT to a character. Currently not supported and just ignored."
317 (cond
318 ((eq ccs 'ucs)
319 (or (utf-lookup-subst-table-for-decode code-point)
320 (let ((c (cond
321 ((< code-point 160)
322 code-point)
323 ((< code-point 256)
324 (make-char 'latin-iso8859-1 code-point))
325 ((< code-point #x2500)
326 (setq code-point (- code-point #x0100))
327 (make-char 'mule-unicode-0100-24ff
328 (+ (/ code-point 96) 32) (+ (% code-point 96) 32)))
329 ((< code-point #x3400)
330 (setq code-point (- code-point #x2500))
331 (make-char 'mule-unicode-2500-33ff
332 (+ (/ code-point 96) 32) (+ (% code-point 96) 32)))
333 ((and (>= code-point #xe000) (< code-point #x10000))
334 (setq code-point (- code-point #xe000))
335 (make-char 'mule-unicode-e000-ffff
336 (+ (/ code-point 96) 32)
337 (+ (% code-point 96) 32))))))
338 (when c
339 (or (aref (get 'utf-translation-table-for-decode
340 'translation-table) c)
341 c)))))))
342
343 (defun encode-char (char ccs &optional restriction)
344 "Return code-point in coded character set CCS that corresponds to CHAR.
345 Return nil if CHAR is not included in CCS.
346 Currently the only supported coded character set is `ucs' (ISO/IEC
347 10646: Universal Multi-Octet Coded Character Set), and CHAR is first
348 translated through the translation-table named
349 `utf-translation-table-for-encode' or the translation-hash-table named
350 `utf-subst-table-for-encode'.
351
352 CHAR should be in one of these charsets:
353 ascii, latin-iso8859-1, mule-unicode-0100-24ff, mule-unicode-2500-33ff,
354 mule-unicode-e000-ffff, eight-bit-control
355 Otherwise, return nil.
356
357 Optional argument RESTRICTION specifies a way to map CHAR to a
358 code-point in CCS. Currently not supported and just ignored."
359 (let* ((split (split-char char))
360 (charset (car split))
361 trans)
362 (cond ((eq ccs 'ucs)
363 (or (utf-lookup-subst-table-for-encode char)
364 (let ((table (get 'utf-translation-table-for-encode
365 'translation-table)))
366 (setq trans (aref table char))
367 (if trans
368 (setq split (split-char trans)
369 charset (car split)))
370 (cond ((eq charset 'ascii)
371 (or trans char))
372 ((eq charset 'latin-iso8859-1)
373 (+ (nth 1 split) 128))
374 ((eq charset 'mule-unicode-0100-24ff)
375 (+ #x0100 (+ (* (- (nth 1 split) 32) 96)
376 (- (nth 2 split) 32))))
377 ((eq charset 'mule-unicode-2500-33ff)
378 (+ #x2500 (+ (* (- (nth 1 split) 32) 96)
379 (- (nth 2 split) 32))))
380 ((eq charset 'mule-unicode-e000-ffff)
381 (+ #xe000 (+ (* (- (nth 1 split) 32) 96)
382 (- (nth 2 split) 32))))
383 ((eq charset 'eight-bit-control)
384 char))))))))
385
386 \f
387 ;; Coding system stuff
388
389 ;; Coding system is a symbol that has the property `coding-system'.
390 ;;
391 ;; The value of the property `coding-system' is a vector of the
392 ;; following format:
393 ;; [TYPE MNEMONIC DOC-STRING PLIST FLAGS]
394 ;; We call this vector as coding-spec. See comments in src/coding.c
395 ;; for more detail.
396
397 (defconst coding-spec-type-idx 0)
398 (defconst coding-spec-mnemonic-idx 1)
399 (defconst coding-spec-doc-string-idx 2)
400 (defconst coding-spec-plist-idx 3)
401 (defconst coding-spec-flags-idx 4)
402
403 ;; PLIST is a property list of a coding system. To share PLIST among
404 ;; alias coding systems, a coding system has PLIST in coding-spec
405 ;; instead of having it in normal property list of Lisp symbol.
406 ;; Here's a list of coding system properties currently being used.
407 ;;
408 ;; o coding-category
409 ;;
410 ;; The value is a coding category the coding system belongs to. The
411 ;; function `make-coding-system' sets this value automatically
412 ;; unless its argument PROPERTIES specifies this property.
413 ;;
414 ;; o alias-coding-systems
415 ;;
416 ;; The value is a list of coding systems of the same alias group. The
417 ;; first element is the coding system made at first, which we call as
418 ;; `base coding system'. The function `make-coding-system' sets this
419 ;; value automatically and `define-coding-system-alias' updates it.
420 ;;
421 ;; See the documentation of make-coding-system for the meanings of the
422 ;; following properties.
423 ;;
424 ;; o post-read-conversion
425 ;; o pre-write-conversion
426 ;; o translation-table-for-decode
427 ;; o translation-table-for-encode
428 ;; o safe-chars
429 ;; o safe-charsets
430 ;; o mime-charset
431 ;; o valid-codes (meaningful only for a coding system based on CCL)
432
433
434 (defsubst coding-system-spec (coding-system)
435 "Return coding-spec of CODING-SYSTEM."
436 (get (check-coding-system coding-system) 'coding-system))
437
438 (defun coding-system-type (coding-system)
439 "Return the coding type of CODING-SYSTEM.
440 A coding type is an integer value indicating the encoding method
441 of CODING-SYSTEM. See the function `make-coding-system' for more detail."
442 (aref (coding-system-spec coding-system) coding-spec-type-idx))
443
444 (defun coding-system-mnemonic (coding-system)
445 "Return the mnemonic character of CODING-SYSTEM.
446 The mnemonic character of a coding system is used in mode line
447 to indicate the coding system. If the arg is nil, return ?-."
448 (let ((spec (coding-system-spec coding-system)))
449 (if spec (aref spec coding-spec-mnemonic-idx) ?-)))
450
451 (defun coding-system-doc-string (coding-system)
452 "Return the documentation string for CODING-SYSTEM."
453 (aref (coding-system-spec coding-system) coding-spec-doc-string-idx))
454
455 (defun coding-system-plist (coding-system)
456 "Return the property list of CODING-SYSTEM."
457 (aref (coding-system-spec coding-system) coding-spec-plist-idx))
458
459 (defun coding-system-flags (coding-system)
460 "Return `flags' of CODING-SYSTEM.
461 A `flags' of a coding system is a vector of length 32 indicating detailed
462 information of a coding system. See the function `make-coding-system'
463 for more detail."
464 (aref (coding-system-spec coding-system) coding-spec-flags-idx))
465
466 (defun coding-system-get (coding-system prop)
467 "Extract a value from CODING-SYSTEM's property list for property PROP."
468 (plist-get (coding-system-plist coding-system) prop))
469
470 (defun coding-system-put (coding-system prop val)
471 "Change value in CODING-SYSTEM's property list PROP to VAL."
472 (let ((plist (coding-system-plist coding-system)))
473 (if plist
474 (plist-put plist prop val)
475 (aset (coding-system-spec coding-system) coding-spec-plist-idx
476 (list prop val)))))
477
478 (defun coding-system-category (coding-system)
479 "Return the coding category of CODING-SYSTEM.
480 See also `coding-category-list'."
481 (coding-system-get coding-system 'coding-category))
482
483 (defun coding-system-base (coding-system)
484 "Return the base coding system of CODING-SYSTEM.
485 A base coding system is what made by `make-coding-system'.
486 Any alias nor subsidiary coding systems are not base coding system."
487 (car (coding-system-get coding-system 'alias-coding-systems)))
488
489 (defalias 'coding-system-parent 'coding-system-base)
490 (make-obsolete 'coding-system-parent 'coding-system-base "20.3")
491
492 ;; Coding system also has a property `eol-type'.
493 ;;
494 ;; This property indicates how the coding system handles end-of-line
495 ;; format. The value is integer 0, 1, 2, or a vector of three coding
496 ;; systems. Each integer value 0, 1, and 2 indicates the format of
497 ;; end-of-line LF, CRLF, and CR respectively. A vector value
498 ;; indicates that the format of end-of-line should be detected
499 ;; automatically. Nth element of the vector is the subsidiary coding
500 ;; system whose `eol-type' property is N.
501
502 (defun coding-system-eol-type (coding-system)
503 "Return eol-type of CODING-SYSTEM.
504 An eol-type is integer 0, 1, 2, or a vector of coding systems.
505
506 Integer values 0, 1, and 2 indicate a format of end-of-line; LF,
507 CRLF, and CR respectively.
508
509 A vector value indicates that a format of end-of-line should be
510 detected automatically. Nth element of the vector is the subsidiary
511 coding system whose eol-type is N."
512 (get coding-system 'eol-type))
513
514 (defun coding-system-eol-type-mnemonic (coding-system)
515 "Return the string indicating end-of-line format of CODING-SYSTEM."
516 (let* ((eol-type (coding-system-eol-type coding-system))
517 (val (cond ((eq eol-type 0) eol-mnemonic-unix)
518 ((eq eol-type 1) eol-mnemonic-dos)
519 ((eq eol-type 2) eol-mnemonic-mac)
520 (t eol-mnemonic-undecided))))
521 (if (stringp val)
522 val
523 (char-to-string val))))
524
525 (defun coding-system-lessp (x y)
526 (cond ((eq x 'no-conversion) t)
527 ((eq y 'no-conversion) nil)
528 ((eq x 'emacs-mule) t)
529 ((eq y 'emacs-mule) nil)
530 ((eq x 'undecided) t)
531 ((eq y 'undecided) nil)
532 (t (let ((c1 (coding-system-mnemonic x))
533 (c2 (coding-system-mnemonic y)))
534 (or (< (downcase c1) (downcase c2))
535 (and (not (> (downcase c1) (downcase c2)))
536 (< c1 c2)))))))
537
538 (defun add-to-coding-system-list (coding-system)
539 "Add CODING-SYSTEM to `coding-system-list' while keeping it sorted."
540 (if (or (null coding-system-list)
541 (coding-system-lessp coding-system (car coding-system-list)))
542 (setq coding-system-list (cons coding-system coding-system-list))
543 (let ((len (length coding-system-list))
544 mid (tem coding-system-list))
545 (while (> len 1)
546 (setq mid (nthcdr (/ len 2) tem))
547 (if (coding-system-lessp (car mid) coding-system)
548 (setq tem mid
549 len (- len (/ len 2)))
550 (setq len (/ len 2))))
551 (setcdr tem (cons coding-system (cdr tem))))))
552
553 (defun coding-system-list (&optional base-only)
554 "Return a list of all existing non-subsidiary coding systems.
555 If optional arg BASE-ONLY is non-nil, only base coding systems are listed.
556 The value doesn't include subsidiary coding systems which are what
557 made from bases and aliases automatically for various end-of-line
558 formats (e.g. iso-latin-1-unix, koi8-r-dos)."
559 (let* ((codings (copy-sequence coding-system-list))
560 (tail (cons nil codings)))
561 ;; Remove subsidiary coding systems (eol variants) and alias
562 ;; coding systems (if necessary).
563 (while (cdr tail)
564 (let* ((coding (car (cdr tail)))
565 (aliases (coding-system-get coding 'alias-coding-systems)))
566 (if (or
567 ;; CODING is an eol variant if not in ALIASES.
568 (not (memq coding aliases))
569 ;; CODING is an alias if it is not car of ALIASES.
570 (and base-only (not (eq coding (car aliases)))))
571 (setcdr tail (cdr (cdr tail)))
572 (setq tail (cdr tail)))))
573 codings))
574
575 (defun map-charset-chars (func charset)
576 "Use FUNC to map over all characters in CHARSET for side effects.
577 FUNC is a function of two args, the start and end (inclusive) of a
578 character code range. Thus FUNC should iterate over [START, END]."
579 (let* ((dim (charset-dimension charset))
580 (chars (charset-chars charset))
581 (start (if (= chars 94)
582 33
583 32)))
584 (if (= dim 1)
585 (funcall func
586 (make-char charset start)
587 (make-char charset (+ start chars -1)))
588 (dotimes (i chars)
589 (funcall func
590 (make-char charset (+ i start) start)
591 (make-char charset (+ i start) (+ start chars -1)))))))
592
593 (defalias 'register-char-codings 'ignore "")
594 (make-obsolete 'register-char-codings
595 "it exists just for backward compatibility, and does nothing."
596 "21.3")
597
598 (defconst char-coding-system-table nil
599 "This is an obsolete variable.
600 It exists just for backward compatibility, and the value is always nil.")
601
602 (defun make-subsidiary-coding-system (coding-system)
603 "Make subsidiary coding systems (eol-type variants) of CODING-SYSTEM."
604 (let ((coding-spec (coding-system-spec coding-system))
605 (subsidiaries (vector (intern (format "%s-unix" coding-system))
606 (intern (format "%s-dos" coding-system))
607 (intern (format "%s-mac" coding-system))))
608 (i 0)
609 temp)
610 (while (< i 3)
611 (put (aref subsidiaries i) 'coding-system coding-spec)
612 (put (aref subsidiaries i) 'eol-type i)
613 (add-to-coding-system-list (aref subsidiaries i))
614 (setq coding-system-alist
615 (cons (list (symbol-name (aref subsidiaries i)))
616 coding-system-alist))
617 (setq i (1+ i)))
618 subsidiaries))
619
620 (defun transform-make-coding-system-args (name type &optional doc-string props)
621 "For internal use only.
622 Transform XEmacs style args for `make-coding-system' to Emacs style.
623 Value is a list of transformed arguments."
624 (let ((mnemonic (string-to-char (or (plist-get props 'mnemonic) "?")))
625 (eol-type (plist-get props 'eol-type))
626 properties tmp)
627 (cond
628 ((eq eol-type 'lf) (setq eol-type 'unix))
629 ((eq eol-type 'crlf) (setq eol-type 'dos))
630 ((eq eol-type 'cr) (setq eol-type 'mac)))
631 (if (setq tmp (plist-get props 'post-read-conversion))
632 (setq properties (plist-put properties 'post-read-conversion tmp)))
633 (if (setq tmp (plist-get props 'pre-write-conversion))
634 (setq properties (plist-put properties 'pre-write-conversion tmp)))
635 (cond
636 ((eq type 'shift-jis)
637 `(,name 1 ,mnemonic ,doc-string () ,properties ,eol-type))
638 ((eq type 'iso2022) ; This is not perfect.
639 (if (plist-get props 'escape-quoted)
640 (error "escape-quoted is not supported: %S"
641 `(,name ,type ,doc-string ,props)))
642 (let ((g0 (plist-get props 'charset-g0))
643 (g1 (plist-get props 'charset-g1))
644 (g2 (plist-get props 'charset-g2))
645 (g3 (plist-get props 'charset-g3))
646 (use-roman
647 (and
648 (eq (cadr (assoc 'latin-jisx0201
649 (plist-get props 'input-charset-conversion)))
650 'ascii)
651 (eq (cadr (assoc 'ascii
652 (plist-get props 'output-charset-conversion)))
653 'latin-jisx0201)))
654 (use-oldjis
655 (and
656 (eq (cadr (assoc 'japanese-jisx0208-1978
657 (plist-get props 'input-charset-conversion)))
658 'japanese-jisx0208)
659 (eq (cadr (assoc 'japanese-jisx0208
660 (plist-get props 'output-charset-conversion)))
661 'japanese-jisx0208-1978))))
662 (if (charsetp g0)
663 (if (plist-get props 'force-g0-on-output)
664 (setq g0 `(nil ,g0))
665 (setq g0 `(,g0 t))))
666 (if (charsetp g1)
667 (if (plist-get props 'force-g1-on-output)
668 (setq g1 `(nil ,g1))
669 (setq g1 `(,g1 t))))
670 (if (charsetp g2)
671 (if (plist-get props 'force-g2-on-output)
672 (setq g2 `(nil ,g2))
673 (setq g2 `(,g2 t))))
674 (if (charsetp g3)
675 (if (plist-get props 'force-g3-on-output)
676 (setq g3 `(nil ,g3))
677 (setq g3 `(,g3 t))))
678 `(,name 2 ,mnemonic ,doc-string
679 (,g0 ,g1 ,g2 ,g3
680 ,(plist-get props 'short)
681 ,(not (plist-get props 'no-ascii-eol))
682 ,(not (plist-get props 'no-ascii-cntl))
683 ,(plist-get props 'seven)
684 t
685 ,(not (plist-get props 'lock-shift))
686 ,use-roman
687 ,use-oldjis
688 ,(plist-get props 'no-iso6429)
689 nil nil nil nil)
690 ,properties ,eol-type)))
691 ((eq type 'big5)
692 `(,name 3 ,mnemonic ,doc-string () ,properties ,eol-type))
693 ((eq type 'ccl)
694 `(,name 4 ,mnemonic ,doc-string
695 (,(plist-get props 'decode) . ,(plist-get props 'encode))
696 ,properties ,eol-type))
697 (t
698 (error "unsupported XEmacs style make-coding-style arguments: %S"
699 `(,name ,type ,doc-string ,props))))))
700
701 (defun make-coding-system (coding-system type mnemonic doc-string
702 &optional
703 flags
704 properties
705 eol-type)
706 "Define a new coding system CODING-SYSTEM (symbol).
707 Remaining arguments are TYPE, MNEMONIC, DOC-STRING, FLAGS (optional),
708 and PROPERTIES (optional) which construct a coding-spec of CODING-SYSTEM
709 in the following format:
710 [TYPE MNEMONIC DOC-STRING PLIST FLAGS]
711
712 TYPE is an integer value indicating the type of the coding system as follows:
713 0: Emacs internal format,
714 1: Shift-JIS (or MS-Kanji) used mainly on Japanese PCs,
715 2: ISO-2022 including many variants,
716 3: Big5 used mainly on Chinese PCs,
717 4: private, CCL programs provide encoding/decoding algorithm,
718 5: Raw-text, which means that text contains random 8-bit codes.
719
720 MNEMONIC is a character to be displayed on mode line for the coding system.
721
722 DOC-STRING is a documentation string for the coding system.
723
724 FLAGS specifies more detailed information of the coding system as follows:
725
726 If TYPE is 2 (ISO-2022), FLAGS is a list of these elements:
727 CHARSET0, CHARSET1, CHARSET2, CHARSET3, SHORT-FORM,
728 ASCII-EOL, ASCII-CNTL, SEVEN, LOCKING-SHIFT, SINGLE-SHIFT,
729 USE-ROMAN, USE-OLDJIS, NO-ISO6429, INIT-BOL, DESIGNATION-BOL,
730 SAFE, ACCEPT-LATIN-EXTRA-CODE.
731 CHARSETn are character sets initially designated to Gn graphic registers.
732 If CHARSETn is nil, Gn is never used.
733 If CHARSETn is t, Gn can be used but nothing designated initially.
734 If CHARSETn is a list of character sets, those character sets are
735 designated to Gn on output, but nothing designated to Gn initially.
736 But, character set `ascii' can be designated only to G0.
737 SHORT-FORM non-nil means use short designation sequence on output.
738 ASCII-EOL non-nil means designate ASCII to g0 at end of line on output.
739 ASCII-CNTL non-nil means designate ASCII to g0 before control codes and
740 SPACE on output.
741 SEVEN non-nil means use 7-bit code only on output.
742 LOCKING-SHIFT non-nil means use locking-shift.
743 SINGLE-SHIFT non-nil means use single-shift.
744 USE-ROMAN non-nil means designate JIS0201-1976-Roman instead of ASCII.
745 USE-OLDJIS non-nil means designate JIS0208-1976 instead of JIS0208-1983.
746 NO-ISO6429 non-nil means not use ISO6429's direction specification.
747 INIT-BOL non-nil means any designation state is assumed to be reset
748 to initial at each beginning of line on output.
749 DESIGNATION-BOL non-nil means designation sequences should be placed
750 at beginning of line on output.
751 SAFE non-nil means convert unsafe characters to `?' on output.
752 Characters not specified in the property `safe-charsets' nor
753 `safe-chars' are unsafe.
754 ACCEPT-LATIN-EXTRA-CODE non-nil means code-detection routine accepts
755 a code specified in `latin-extra-code-table' (which see) as a valid
756 code of the coding system.
757
758 If TYPE is 4 (private), FLAGS should be a cons of CCL programs, for
759 decoding and encoding. CCL programs should be specified by their
760 symbols.
761
762 PROPERTIES is an alist of properties vs the corresponding values. The
763 following properties are recognized:
764
765 o post-read-conversion
766
767 The value is a function to call after some text is inserted and
768 decoded by the coding system itself and before any functions in
769 `after-insert-functions' are called. The argument of this
770 function is the same as for a function in
771 `after-insert-file-functions', i.e. LENGTH of the text inserted,
772 with point at the head of the text to be decoded.
773
774 o pre-write-conversion
775
776 The value is a function to call after all functions in
777 `write-region-annotate-functions' and `buffer-file-format' are
778 called, and before the text is encoded by the coding system itself.
779 The arguments to this function are the same as those of a function
780 in `write-region-annotate-functions', i.e. FROM and TO, specifying
781 a region of text.
782
783 o translation-table-for-decode
784
785 The value is a translation table to be applied on decoding. See
786 the function `make-translation-table' for the format of translation
787 table. This is not applicable to type 4 (CCL-based) coding systems.
788
789 o translation-table-for-encode
790
791 The value is a translation table to be applied on encoding. This is
792 not applicable to type 4 (CCL-based) coding systems.
793
794 o safe-chars
795
796 The value is a char table. If a character has non-nil value in it,
797 the character is safely supported by the coding system. This
798 overrides the specification of safe-charsets.
799
800 o safe-charsets
801
802 The value is a list of charsets safely supported by the coding
803 system. The value t means that all charsets Emacs handles are
804 supported. Even if some charset is not in this list, it doesn't
805 mean that the charset can't be encoded in the coding system;
806 it just means that some other receiver of text encoded
807 in the coding system won't be able to handle that charset.
808
809 o mime-charset
810
811 The value is a symbol whose name is the `MIME-charset' parameter of
812 the coding system.
813
814 o mime-text-unsuitable
815
816 A non-nil value means the `mime-charset' property names a charset
817 which is unsuitable for the top-level media type \"text\".
818
819 o valid-codes (meaningful only for a coding system based on CCL)
820
821 The value is a list to indicate valid byte ranges of the encoded
822 file. Each element of the list is an integer or a cons of integer.
823 In the former case, the integer value is a valid byte code. In the
824 latter case, the integers specify the range of valid byte codes.
825
826 o composition (meaningful only when TYPE is 0 or 2)
827
828 If the value is non-nil, the coding system preserves composition
829 information.
830
831 These properties are set in PLIST, a property list. This function
832 also sets properties `coding-category' and `alias-coding-systems'
833 automatically.
834
835 EOL-TYPE specifies the EOL type of the coding-system in one of the
836 following formats:
837
838 o symbol (unix, dos, or mac)
839
840 The symbol `unix' means Unix-like EOL (LF), `dos' means
841 DOS-like EOL (CRLF), and `mac' means MAC-like EOL (CR).
842
843 o number (0, 1, or 2)
844
845 The number 0, 1, and 2 mean UNIX, DOS, and MAC-like EOL
846 respectively.
847
848 o vector of coding-systems of length 3
849
850 The EOL type is detected automatically for the coding system.
851 And, according to the detected EOL type, one of the coding
852 systems in the vector is selected. Elements of the vector
853 corresponds to Unix-like EOL, DOS-like EOL, and Mac-like EOL
854 in this order.
855
856 Kludgy features for backward compatibility:
857
858 1. If TYPE is 4 and car or cdr of FLAGS is a vector, the vector is
859 treated as a compiled CCL code.
860
861 2. If PROPERTIES is just a list of character sets, the list is set as
862 a value of `safe-charsets' in PLIST."
863
864 ;; For compatiblity with XEmacs, we check the type of TYPE. If it
865 ;; is a symbol, perhaps, this function is called with XEmacs-style
866 ;; arguments. Here, try to transform that kind of arguments to
867 ;; Emacs style.
868 (if (symbolp type)
869 (let ((args (transform-make-coding-system-args coding-system type
870 mnemonic doc-string)))
871 (setq coding-system (car args)
872 type (nth 1 args)
873 mnemonic (nth 2 args)
874 doc-string (nth 3 args)
875 flags (nth 4 args)
876 properties (nth 5 args)
877 eol-type (nth 6 args))))
878
879 ;; Set a value of `coding-system' property.
880 (let ((coding-spec (make-vector 5 nil))
881 (no-initial-designation t)
882 (no-alternative-designation t)
883 (accept-latin-extra-code nil)
884 coding-category)
885 (if (or (not (integerp type)) (< type 0) (> type 5))
886 (error "TYPE argument must be 0..5"))
887 (if (or (not (integerp mnemonic)) (<= mnemonic ? ) (> mnemonic 127))
888 (error "MNEMONIC argument must be an ASCII printable character"))
889 (aset coding-spec coding-spec-type-idx type)
890 (aset coding-spec coding-spec-mnemonic-idx mnemonic)
891 (aset coding-spec coding-spec-doc-string-idx
892 (purecopy (if (stringp doc-string) doc-string "")))
893 (cond ((= type 0)
894 (setq coding-category 'coding-category-emacs-mule))
895 ((= type 1)
896 (setq coding-category 'coding-category-sjis))
897 ((= type 2) ; ISO2022
898 (let ((i 0)
899 (vec (make-vector 32 nil))
900 (g1-designation nil)
901 (fl flags))
902 (while (< i 4)
903 (let ((charset (car fl)))
904 (if (and no-initial-designation
905 (> i 0)
906 (or (charsetp charset)
907 (and (consp charset)
908 (charsetp (car charset)))))
909 (setq no-initial-designation nil))
910 (if (charsetp charset)
911 (if (= i 1) (setq g1-designation charset))
912 (if (consp charset)
913 (let ((tail charset)
914 elt)
915 (while tail
916 (setq elt (car tail))
917 (if (eq elt t)
918 (setq no-alternative-designation nil)
919 (if (and elt (not (charsetp elt)))
920 (error "Invalid charset: %s" elt)))
921 (setq tail (cdr tail)))
922 (setq g1-designation (car charset)))
923 (if charset
924 (if (eq charset t)
925 (setq no-alternative-designation nil)
926 (error "Invalid charset: %s" charset)))))
927 (aset vec i charset))
928 (setq fl (cdr fl) i (1+ i)))
929 (while (and (< i 32) fl)
930 (aset vec i (car fl))
931 (if (and (= i 16) ; ACCEPT-LATIN-EXTRA-CODE
932 (car fl))
933 (setq accept-latin-extra-code t))
934 (setq fl (cdr fl) i (1+ i)))
935 (aset coding-spec 4 vec)
936 (setq coding-category
937 (if (aref vec 8) ; Use locking-shift.
938 (or (and (aref vec 7) 'coding-category-iso-7-else)
939 'coding-category-iso-8-else)
940 (if (aref vec 7) ; 7-bit only.
941 (if (aref vec 9) ; Use single-shift.
942 'coding-category-iso-7-else
943 (if no-alternative-designation
944 'coding-category-iso-7-tight
945 'coding-category-iso-7))
946 (if (or no-initial-designation
947 (not no-alternative-designation))
948 'coding-category-iso-8-else
949 (if (and (charsetp g1-designation)
950 (= (charset-dimension g1-designation) 2))
951 'coding-category-iso-8-2
952 'coding-category-iso-8-1)))))))
953 ((= type 3)
954 (setq coding-category 'coding-category-big5))
955 ((= type 4) ; private
956 (setq coding-category 'coding-category-ccl)
957 (if (not (consp flags))
958 (error "Invalid FLAGS argument for TYPE 4 (CCL)")
959 (let ((decoder (check-ccl-program
960 (car flags)
961 (intern (format "%s-decoder" coding-system))))
962 (encoder (check-ccl-program
963 (cdr flags)
964 (intern (format "%s-encoder" coding-system)))))
965 (if (and decoder encoder)
966 (aset coding-spec 4 (cons decoder encoder))
967 (error "Invalid FLAGS argument for TYPE 4 (CCL)")))))
968 (t ; i.e. (= type 5)
969 (setq coding-category 'coding-category-raw-text)))
970
971 (let ((plist (list 'coding-category coding-category
972 'alias-coding-systems (list coding-system))))
973 (if no-initial-designation
974 (plist-put plist 'no-initial-designation t))
975 (if (and properties
976 (or (eq properties t)
977 (not (consp (car properties)))))
978 ;; In the old version, the arg PROPERTIES is a list to be
979 ;; set in PLIST as a value of property `safe-charsets'.
980 (setq properties (list (cons 'safe-charsets properties))))
981 ;; In the current version PROPERTIES is a property list.
982 ;; Reflect it into PLIST one by one while handling safe-chars
983 ;; specially.
984 (let ((safe-charsets (cdr (assq 'safe-charsets properties)))
985 (safe-chars (cdr (assq 'safe-chars properties)))
986 (l properties)
987 prop val)
988 ;; If only safe-charsets is specified, make a char-table from
989 ;; it, and store that char-table as the value of `safe-chars'.
990 (if (and (not safe-chars) safe-charsets)
991 (let (charset)
992 (if (eq safe-charsets t)
993 (setq safe-chars t)
994 (setq safe-chars (make-char-table 'safe-chars))
995 (while safe-charsets
996 (setq charset (car safe-charsets)
997 safe-charsets (cdr safe-charsets))
998 (cond ((eq charset 'ascii)) ; just ignore
999 ((eq charset 'eight-bit-control)
1000 (let ((i 128))
1001 (while (< i 160)
1002 (aset safe-chars i t)
1003 (setq i (1+ i)))))
1004 ((eq charset 'eight-bit-graphic)
1005 (let ((i 160))
1006 (while (< i 256)
1007 (aset safe-chars i t)
1008 (setq i (1+ i)))))
1009 (t
1010 (aset safe-chars (make-char charset) t))))
1011 (if accept-latin-extra-code
1012 (let ((i 128))
1013 (while (< i 160)
1014 (if (aref latin-extra-code-table i)
1015 (aset safe-chars i t))
1016 (setq i (1+ i))))))
1017 (setq l (cons (cons 'safe-chars safe-chars) l))))
1018 (while l
1019 (setq prop (car (car l)) val (cdr (car l)) l (cdr l))
1020 (if (eq prop 'safe-chars)
1021 (progn
1022 (if (and (symbolp val)
1023 (get val 'translation-table))
1024 (setq safe-chars (get val 'translation-table)))
1025 (setq val safe-chars)))
1026 (plist-put plist prop val)))
1027 ;; The property `coding-category' may have been set differently
1028 ;; through PROPERTIES.
1029 (setq coding-category (plist-get plist 'coding-category))
1030 (aset coding-spec coding-spec-plist-idx plist))
1031 (put coding-system 'coding-system coding-spec)
1032 (put coding-category 'coding-systems
1033 (cons coding-system (get coding-category 'coding-systems))))
1034
1035 ;; Next, set a value of `eol-type' property.
1036 (if (not eol-type)
1037 ;; If EOL-TYPE is nil, set a vector of subsidiary coding
1038 ;; systems, each corresponds to a coding system for the detected
1039 ;; EOL format.
1040 (setq eol-type (make-subsidiary-coding-system coding-system)))
1041 (setq eol-type
1042 (cond ((or (eq eol-type 'unix) (null eol-type))
1043 0)
1044 ((eq eol-type 'dos)
1045 1)
1046 ((eq eol-type 'mac)
1047 2)
1048 ((or (and (vectorp eol-type)
1049 (= (length eol-type) 3))
1050 (and (numberp eol-type)
1051 (and (>= eol-type 0)
1052 (<= eol-type 2))))
1053 eol-type)
1054 (t
1055 (error "Invalid EOL-TYPE spec:%S" eol-type))))
1056 (put coding-system 'eol-type eol-type)
1057
1058 (define-coding-system-internal coding-system)
1059
1060 ;; At last, register CODING-SYSTEM in `coding-system-list' and
1061 ;; `coding-system-alist'.
1062 (add-to-coding-system-list coding-system)
1063 (setq coding-system-alist (cons (list (symbol-name coding-system))
1064 coding-system-alist))
1065
1066 ;; For a coding system of cateogory iso-8-1 and iso-8-2, create
1067 ;; XXX-with-esc variants.
1068 (let ((coding-category (coding-system-category coding-system)))
1069 (if (or (eq coding-category 'coding-category-iso-8-1)
1070 (eq coding-category 'coding-category-iso-8-2))
1071 (let ((esc (intern (concat (symbol-name coding-system) "-with-esc")))
1072 (doc (format "Same as %s but can handle any charsets by ISO's escape sequences." coding-system))
1073 (safe-charsets (assq 'safe-charsets properties))
1074 (mime-charset (assq 'mime-charset properties)))
1075 (if safe-charsets
1076 (setcdr safe-charsets t)
1077 (setq properties (cons (cons 'safe-charsets t) properties)))
1078 (if mime-charset
1079 (setcdr mime-charset nil))
1080 (make-coding-system esc type mnemonic doc
1081 (if (listp (car flags))
1082 (cons (append (car flags) '(t)) (cdr flags))
1083 (cons (list (car flags) t) (cdr flags)))
1084 properties))))
1085
1086 coding-system)
1087
1088 (put 'safe-chars 'char-table-extra-slots 0)
1089
1090 (defun define-coding-system-alias (alias coding-system)
1091 "Define ALIAS as an alias for coding system CODING-SYSTEM."
1092 (put alias 'coding-system (coding-system-spec coding-system))
1093 (add-to-coding-system-list alias)
1094 (setq coding-system-alist (cons (list (symbol-name alias))
1095 coding-system-alist))
1096 (let ((eol-type (coding-system-eol-type coding-system)))
1097 (if (vectorp eol-type)
1098 (progn
1099 (nconc (coding-system-get alias 'alias-coding-systems) (list alias))
1100 (put alias 'eol-type (make-subsidiary-coding-system alias)))
1101 (put alias 'eol-type eol-type))))
1102
1103 (defun merge-coding-systems (first second)
1104 "Fill in any unspecified aspects of coding system FIRST from SECOND.
1105 Return the resulting coding system."
1106 (let ((base (coding-system-base second))
1107 (eol (coding-system-eol-type second)))
1108 ;; If FIRST doesn't specify text conversion, merge with that of SECOND.
1109 (if (eq (coding-system-base first) 'undecided)
1110 (setq first (coding-system-change-text-conversion first base)))
1111 ;; If FIRST doesn't specify eol conversion, merge with that of SECOND.
1112 (if (and (vectorp (coding-system-eol-type first))
1113 (numberp eol) (>= eol 0) (<= eol 2))
1114 (setq first (coding-system-change-eol-conversion
1115 first eol)))
1116 first))
1117
1118 (defun autoload-coding-system (symbol form)
1119 "Define SYMBOL as a coding-system that is defined on demand.
1120
1121 FROM is a form to evaluate to define the coding-system."
1122 (put symbol 'coding-system-define-form form)
1123 (setq coding-system-alist (cons (list (symbol-name symbol))
1124 coding-system-alist)))
1125
1126 (defun set-buffer-file-coding-system (coding-system &optional force)
1127 "Set the file coding-system of the current buffer to CODING-SYSTEM.
1128 This means that when you save the buffer, it will be converted
1129 according to CODING-SYSTEM. For a list of possible values of CODING-SYSTEM,
1130 use \\[list-coding-systems].
1131
1132 If CODING-SYSTEM leaves the text conversion unspecified, or if it
1133 leaves the end-of-line conversion unspecified, FORCE controls what to
1134 do. If FORCE is nil, get the unspecified aspect (or aspects) from the
1135 buffer's previous `buffer-file-coding-system' value (if it is
1136 specified there). Otherwise, leave it unspecified.
1137
1138 This marks the buffer modified so that the succeeding \\[save-buffer]
1139 surely saves the buffer with CODING-SYSTEM. From a program, if you
1140 don't want to mark the buffer modified, just set the variable
1141 `buffer-file-coding-system' directly."
1142 (interactive "zCoding system for saving file (default, nil): \nP")
1143 (check-coding-system coding-system)
1144 (if (and coding-system buffer-file-coding-system (null force))
1145 (setq coding-system
1146 (merge-coding-systems coding-system buffer-file-coding-system)))
1147 (setq buffer-file-coding-system coding-system)
1148 ;; This is in case of an explicit call. Normally, `normal-mode' and
1149 ;; `set-buffer-major-mode-hook' take care of setting the table.
1150 (if (fboundp 'ucs-set-table-for-input) ; don't lose when building
1151 (ucs-set-table-for-input))
1152 (set-buffer-modified-p t)
1153 (force-mode-line-update))
1154
1155 (defun revert-buffer-with-coding-system (coding-system &optional force)
1156 "Visit the current buffer's file again using coding system CODING-SYSTEM.
1157 For a list of possible values of CODING-SYSTEM, use \\[list-coding-systems].
1158
1159 If CODING-SYSTEM leaves the text conversion unspecified, or if it
1160 leaves the end-of-line conversion unspecified, FORCE controls what to
1161 do. If FORCE is nil, get the unspecified aspect (or aspects) from the
1162 buffer's previous `buffer-file-coding-system' value (if it is
1163 specified there). Otherwise, determine it from the file contents as
1164 usual for visiting a file."
1165 (interactive "zCoding system for visited file (default, nil): \nP")
1166 (check-coding-system coding-system)
1167 (if (and coding-system buffer-file-coding-system (null force))
1168 (setq coding-system
1169 (merge-coding-systems coding-system buffer-file-coding-system)))
1170 (let ((coding-system-for-read coding-system))
1171 (revert-buffer)))
1172
1173 (defun set-file-name-coding-system (coding-system)
1174 "Set coding system for decoding and encoding file names to CODING-SYSTEM.
1175 It actually just set the variable `file-name-coding-system' (which
1176 see) to CODING-SYSTEM."
1177 (interactive "zCoding system for file names (default, nil): ")
1178 (check-coding-system coding-system)
1179 (setq file-name-coding-system coding-system))
1180
1181 (defvar default-terminal-coding-system nil
1182 "Default value for the terminal coding system.
1183 This is normally set according to the selected language environment.
1184 See also the command `set-terminal-coding-system'.")
1185
1186 (defun set-terminal-coding-system (coding-system)
1187 "Set coding system of your terminal to CODING-SYSTEM.
1188 All text output to the terminal will be encoded
1189 with the specified coding system.
1190 For a list of possible values of CODING-SYSTEM, use \\[list-coding-systems].
1191 The default is determined by the selected language environment
1192 or by the previous use of this command."
1193 (interactive
1194 (list (let ((default (if (and (not (terminal-coding-system))
1195 default-terminal-coding-system)
1196 default-terminal-coding-system)))
1197 (read-coding-system
1198 (format "Coding system for terminal display (default, %s): "
1199 default)
1200 default))))
1201 (if (and (not coding-system)
1202 (not (terminal-coding-system)))
1203 (setq coding-system default-terminal-coding-system))
1204 (if coding-system
1205 (setq default-terminal-coding-system coding-system))
1206 (set-terminal-coding-system-internal coding-system)
1207 (redraw-frame (selected-frame)))
1208
1209 (defvar default-keyboard-coding-system nil
1210 "Default value of the keyboard coding system.
1211 This is normally set according to the selected language environment.
1212 See also the command `set-keyboard-coding-system'.")
1213
1214 (defun set-keyboard-coding-system (coding-system)
1215 "Set coding system for keyboard input to CODING-SYSTEM.
1216 In addition, this command enables Encoded-kbd minor mode.
1217 \(If CODING-SYSTEM is nil, Encoded-kbd mode is turned off -- see
1218 `encoded-kbd-mode'.)
1219 For a list of possible values of CODING-SYSTEM, use \\[list-coding-systems].
1220 The default is determined by the selected language environment
1221 or by the previous use of this command."
1222 (interactive
1223 (list (let ((default (if (and (not (keyboard-coding-system))
1224 default-keyboard-coding-system)
1225 default-keyboard-coding-system)))
1226 (read-coding-system
1227 (format "Coding system for keyboard input (default, %s): "
1228 default)
1229 default))))
1230 (if (and (not coding-system)
1231 (not (keyboard-coding-system)))
1232 (setq coding-system default-keyboard-coding-system))
1233 (if coding-system
1234 (setq default-keyboard-coding-system coding-system))
1235 (set-keyboard-coding-system-internal coding-system)
1236 (setq keyboard-coding-system coding-system)
1237 (encoded-kbd-mode (if coding-system 1 0)))
1238
1239 (defcustom keyboard-coding-system nil
1240 "Specify coding system for keyboard input.
1241 If you set this on a terminal which can't distinguish Meta keys from
1242 8-bit characters, you will have to use ESC to type Meta characters.
1243 See Info node `Specify Coding' and Info node `Single-Byte Character Support'.
1244
1245 On non-windowing terminals, this is set from the locale by default.
1246
1247 Setting this variable directly does not take effect;
1248 use either \\[customize] or \\[set-keyboard-coding-system]."
1249 :type '(coding-system :tag "Coding system")
1250 :link '(info-link "(emacs)Specify Coding")
1251 :link '(info-link "(emacs)Single-Byte Character Support")
1252 :set (lambda (symbol value)
1253 ;; Don't load encoded-kbd-mode unnecessarily.
1254 (if (or value (boundp 'encoded-kbd-mode))
1255 (set-keyboard-coding-system value)
1256 (set-default 'keyboard-coding-system nil))) ; must initialize
1257 :version "21.4"
1258 :group 'keyboard
1259 :group 'mule)
1260
1261 (defun set-buffer-process-coding-system (decoding encoding)
1262 "Set coding systems for the process associated with the current buffer.
1263 DECODING is the coding system to be used to decode input from the process,
1264 ENCODING is the coding system to be used to encode output to the process.
1265
1266 For a list of possible values of CODING-SYSTEM, use \\[list-coding-systems]."
1267 (interactive
1268 "zCoding-system for output from the process: \nzCoding-system for input to the process: ")
1269 (let ((proc (get-buffer-process (current-buffer))))
1270 (if (null proc)
1271 (error "No process")
1272 (check-coding-system decoding)
1273 (check-coding-system encoding)
1274 (set-process-coding-system proc decoding encoding)))
1275 (force-mode-line-update))
1276
1277 (defalias 'set-clipboard-coding-system 'set-selection-coding-system)
1278
1279 (defun set-selection-coding-system (coding-system)
1280 "Make CODING-SYSTEM used for communicating with other X clients.
1281 When sending or receiving text via cut_buffer, selection, and clipboard,
1282 the text is encoded or decoded by CODING-SYSTEM."
1283 (interactive "zCoding system for X selection: ")
1284 (check-coding-system coding-system)
1285 (setq selection-coding-system coding-system))
1286
1287 ;; Coding system lastly specified by the command
1288 ;; set-next-selection-coding-system.
1289 (defvar last-next-selection-coding-system nil)
1290
1291 (defun set-next-selection-coding-system (coding-system)
1292 "Make CODING-SYSTEM used for the next communication with other X clients.
1293 This setting is effective for the next communication only."
1294 (interactive
1295 (list (read-coding-system
1296 (if last-next-selection-coding-system
1297 (format "Coding system for the next X selection (default, %S): "
1298 last-next-selection-coding-system)
1299 "Coding system for the next X selection: ")
1300 last-next-selection-coding-system)))
1301 (if coding-system
1302 (setq last-next-selection-coding-system coding-system)
1303 (setq coding-system last-next-selection-coding-system))
1304 (check-coding-system coding-system)
1305
1306 (setq next-selection-coding-system coding-system))
1307
1308 (defun set-coding-priority (arg)
1309 "Set priority of coding categories according to ARG.
1310 ARG is a list of coding categories ordered by priority."
1311 (let ((l arg)
1312 (current-list (copy-sequence coding-category-list)))
1313 ;; Check the validity of ARG while deleting coding categories in
1314 ;; ARG from CURRENT-LIST. We assume that CODING-CATEGORY-LIST
1315 ;; contains all coding categories.
1316 (while l
1317 (if (or (null (get (car l) 'coding-category-index))
1318 (null (memq (car l) current-list)))
1319 (error "Invalid or duplicated element in argument: %s" arg))
1320 (setq current-list (delq (car l) current-list))
1321 (setq l (cdr l)))
1322 ;; Update `coding-category-list' and return it.
1323 (setq coding-category-list (append arg current-list))
1324 (set-coding-priority-internal)))
1325
1326 ;;; X selections
1327
1328 (defvar ctext-non-standard-encodings-alist
1329 '(("big5-0" big5 2 (chinese-big5-1 chinese-big5-2))
1330 ("ISO8859-14" iso-8859-14 1 latin-iso8859-14)
1331 ("ISO8859-15" iso-8859-15 1 latin-iso8859-15))
1332 "Alist of non-standard encoding names vs the corresponding usages in CTEXT.
1333
1334 It controls how extended segments of a compound text are handled
1335 by the coding system `compound-text-with-extensions'.
1336
1337 Each element has the form (ENCODING-NAME CODING-SYSTEM N-OCTET CHARSET).
1338
1339 ENCODING-NAME is an encoding name of an \"extended segments\".
1340
1341 CODING-SYSTEM is the coding-system to encode (or decode) the
1342 characters into (or from) the extended segment.
1343
1344 N-OCTET is the number of octets (bytes) that encodes a character
1345 in the segment. It can be 0 (meaning the number of octets per
1346 character is variable), 1, 2, 3, or 4.
1347
1348 CHARSET is a charater set containing characters that are encoded
1349 in the segment. It can be a list of character sets. It can also
1350 be a char-table, in which case characters that have non-nil value
1351 in the char-table are the target.
1352
1353 On decoding CTEXT, all encoding names listed here are recognized.
1354
1355 On encoding CTEXT, encoding names in the variable
1356 `ctext-non-standard-encodings' (which see) and in the information
1357 listed for the current language environment under the key
1358 `ctext-non-standard-encodings' are used.")
1359
1360 (defvar ctext-non-standard-encodings
1361 '("big5-0")
1362 "List of non-standard encoding names used in extended segments of CTEXT.
1363 Each element must be one of the names listed in the variable
1364 `ctext-non-standard-encodings-alist' (which see).")
1365
1366 (defvar ctext-non-standard-encodings-regexp
1367 (string-to-multibyte
1368 (concat
1369 ;; For non-standard encodings.
1370 "\\(\e%/[0-4][\200-\377][\200-\377]\\([^\002]+\\)\002\\)"
1371 "\\|"
1372 ;; For UTF-8 encoding.
1373 "\\(\e%G[^\e]*\e%@\\)")))
1374
1375 ;; Functions to support "Non-Standard Character Set Encodings" defined
1376 ;; by the COMPOUND-TEXT spec. They also support "The UTF-8 encoding"
1377 ;; described in the section 7 of the documentation of COMPOUND-TEXT
1378 ;; distributed with XFree86.
1379
1380 (defun ctext-post-read-conversion (len)
1381 "Decode LEN characters encoded as Compound Text with Extended Segments."
1382 (save-match-data
1383 (save-restriction
1384 (let ((case-fold-search nil)
1385 (in-workbuf (string= (buffer-name) " *code-converting-work*"))
1386 last-coding-system-used
1387 pos bytes)
1388 (or in-workbuf
1389 (narrow-to-region (point) (+ (point) len)))
1390 (if in-workbuf
1391 (set-buffer-multibyte t))
1392 (while (re-search-forward ctext-non-standard-encodings-regexp
1393 nil 'move)
1394 (setq pos (match-beginning 0))
1395 (if (match-beginning 1)
1396 ;; ESC % / [0-4] M L --ENCODING-NAME-- \002 --BYTES--
1397 (let* ((M (char-after (+ pos 4)))
1398 (L (char-after (+ pos 5)))
1399 (encoding (match-string 2))
1400 (encoding-info (assoc-string
1401 encoding
1402 ctext-non-standard-encodings-alist t))
1403 (coding (if encoding-info
1404 (nth 1 encoding-info)
1405 (setq encoding (intern (downcase encoding)))
1406 (and (coding-system-p encoding)
1407 encoding))))
1408 (setq bytes (- (+ (* (- M 128) 128) (- L 128))
1409 (- (point) (+ pos 6))))
1410 (when coding
1411 (delete-region pos (point))
1412 (forward-char bytes)
1413 (decode-coding-region (- (point) bytes) (point) coding)))
1414 ;; ESC % G --UTF-8-BYTES-- ESC % @
1415 (delete-char -3)
1416 (delete-region pos (+ pos 3))
1417 (decode-coding-region pos (point) 'utf-8))))
1418 (goto-char (point-min))
1419 (- (point-max) (point)))))
1420
1421 ;; Return a char table of extended segment usage for each character.
1422 ;; Each value of the char table is nil, one of the elements of
1423 ;; `ctext-non-standard-encodings-alist', or the symbol `utf-8'.
1424
1425 (defun ctext-non-standard-encodings-table ()
1426 (let ((table (make-char-table 'translation-table)))
1427 (aset table (make-char 'mule-unicode-0100-24ff) 'utf-8)
1428 (aset table (make-char 'mule-unicode-2500-33ff) 'utf-8)
1429 (aset table (make-char 'mule-unicode-e000-ffff) 'utf-8)
1430 (dolist (encoding (reverse
1431 (append
1432 (get-language-info current-language-environment
1433 'ctext-non-standard-encodings)
1434 ctext-non-standard-encodings)))
1435 (let* ((slot (assoc encoding ctext-non-standard-encodings-alist))
1436 (charset (nth 3 slot)))
1437 (if charset
1438 (cond ((charsetp charset)
1439 (aset table (make-char charset) slot))
1440 ((listp charset)
1441 (dolist (elt charset)
1442 (aset table (make-char elt) slot)))
1443 ((char-table-p charset)
1444 (map-char-table #'(lambda (k v)
1445 (if (and v (> k 128)) (aset table k slot)))
1446 charset))))))
1447 table))
1448
1449 (defun ctext-pre-write-conversion (from to)
1450 "Encode characters between FROM and TO as Compound Text w/Extended Segments.
1451
1452 If FROM is a string, or if the current buffer is not the one set up for us
1453 by encode-coding-string, generate a new temp buffer, insert the
1454 text, and convert it in the temporary buffer. Otherwise, convert in-place."
1455 (save-match-data
1456 ;; Setup a working buffer if necessary.
1457 (cond ((stringp from)
1458 (let ((buf (current-buffer)))
1459 (set-buffer (generate-new-buffer " *temp"))
1460 (set-buffer-multibyte (multibyte-string-p from))
1461 (insert from)))
1462 ((not (string= (buffer-name) " *code-converting-work*"))
1463 (let ((buf (current-buffer))
1464 (multibyte enable-multibyte-characters))
1465 (set-buffer (generate-new-buffer " *temp"))
1466 (set-buffer-multibyte multibyte)
1467 (insert-buffer-substring buf from to))))
1468
1469 ;; Now we can encode the whole buffer.
1470 (let ((encoding-table (ctext-non-standard-encodings-table))
1471 last-coding-system-used
1472 last-pos last-encoding-info
1473 encoding-info end-pos)
1474 (goto-char (setq last-pos (point-min)))
1475 (setq end-pos (point-marker))
1476 (while (re-search-forward "[^\000-\177]+" nil t)
1477 ;; Found a sequence of non-ASCII characters.
1478 (setq last-pos (match-beginning 0)
1479 last-encoding-info (aref encoding-table (char-after last-pos)))
1480 (set-marker end-pos (match-end 0))
1481 (goto-char (1+ last-pos))
1482 (catch 'tag
1483 (while t
1484 (setq encoding-info
1485 (if (< (point) end-pos)
1486 (aref encoding-table (following-char))))
1487 (unless (eq last-encoding-info encoding-info)
1488 (cond ((consp last-encoding-info)
1489 ;; Encode the previous range using an extended
1490 ;; segment.
1491 (let ((encoding-name (car last-encoding-info))
1492 (coding-system (nth 1 last-encoding-info))
1493 (noctets (nth 2 last-encoding-info))
1494 len)
1495 (encode-coding-region last-pos (point) coding-system)
1496 (setq len (+ (length encoding-name) 1
1497 (- (point) last-pos)))
1498 (save-excursion
1499 (goto-char last-pos)
1500 (insert (string-to-multibyte
1501 (format "\e%%/%d%c%c%s\ 2"
1502 noctets
1503 (+ (/ len 128) 128)
1504 (+ (% len 128) 128)
1505 encoding-name))))))
1506 ((eq last-encoding-info 'utf-8)
1507 ;; Encode the previous range using UTF-8 encoding
1508 ;; extention.
1509 (encode-coding-region last-pos (point) 'mule-utf-8)
1510 (save-excursion
1511 (goto-char last-pos)
1512 (insert "\e%G"))
1513 (insert "\e%@")))
1514 (setq last-pos (point)
1515 last-encoding-info encoding-info))
1516 (if (< (point) end-pos)
1517 (forward-char 1)
1518 (throw 'tag nil)))))
1519 (set-marker end-pos nil)
1520 (goto-char (point-min))))
1521 ;; Must return nil, as build_annotations_2 expects that.
1522 nil)
1523
1524 ;;; FILE I/O
1525
1526 (defcustom auto-coding-alist
1527 '(("\\.\\(arc\\|zip\\|lzh\\|zoo\\|jar\\|sx[dmicw]\\|tar\\|tgz\\)\\'" . no-conversion)
1528 ("\\.\\(gz\\|Z\\|bz\\|bz2\\|gpg\\)\\'" . no-conversion)
1529 ("/#[^/]+#\\'" . emacs-mule))
1530 "Alist of filename patterns vs corresponding coding systems.
1531 Each element looks like (REGEXP . CODING-SYSTEM).
1532 A file whose name matches REGEXP is decoded by CODING-SYSTEM on reading.
1533
1534 The settings in this alist take priority over `coding:' tags
1535 in the file (see the function `set-auto-coding')
1536 and the contents of `file-coding-system-alist'."
1537 :group 'files
1538 :group 'mule
1539 :type '(repeat (cons (regexp :tag "File name regexp")
1540 (symbol :tag "Coding system"))))
1541
1542 (defcustom auto-coding-regexp-alist
1543 '(("^BABYL OPTIONS:[ \t]*-\\*-[ \t]*rmail[ \t]*-\\*-" . no-conversion))
1544 "Alist of patterns vs corresponding coding systems.
1545 Each element looks like (REGEXP . CODING-SYSTEM).
1546 A file whose first bytes match REGEXP is decoded by CODING-SYSTEM on reading.
1547
1548 The settings in this alist take priority over `coding:' tags
1549 in the file (see the function `set-auto-coding')
1550 and the contents of `file-coding-system-alist'."
1551 :group 'files
1552 :group 'mule
1553 :type '(repeat (cons (regexp :tag "Regexp")
1554 (symbol :tag "Coding system"))))
1555
1556 ;; See the bottom of this file for built-in auto coding functions.
1557 (defcustom auto-coding-functions '(sgml-xml-auto-coding-function
1558 sgml-html-meta-auto-coding-function)
1559 "A list of functions which attempt to determine a coding system.
1560
1561 Each function in this list should be written to operate on the
1562 current buffer, but should not modify it in any way. The buffer
1563 will contain undecoded text of parts of the file. Each function
1564 should take one argument, SIZE, which says how many
1565 characters (starting from point) it should look at.
1566
1567 If one of these functions succeeds in determining a coding
1568 system, it should return that coding system. Otherwise, it
1569 should return nil.
1570
1571 If a file has a `coding:' tag, that takes precedence over these
1572 functions, so they won't be called at all."
1573 :group 'files
1574 :group 'mule
1575 :type '(repeat function))
1576
1577 (defvar set-auto-coding-for-load nil
1578 "Non-nil means look for `load-coding' property instead of `coding'.
1579 This is used for loading and byte-compiling Emacs Lisp files.")
1580
1581 (defun auto-coding-alist-lookup (filename)
1582 "Return the coding system specified by `auto-coding-alist' for FILENAME."
1583 (let ((alist auto-coding-alist)
1584 (case-fold-search (memq system-type '(vax-vms windows-nt ms-dos cygwin)))
1585 coding-system)
1586 (while (and alist (not coding-system))
1587 (if (string-match (car (car alist)) filename)
1588 (setq coding-system (cdr (car alist)))
1589 (setq alist (cdr alist))))
1590 coding-system))
1591
1592 (defun set-auto-coding (filename size)
1593 "Return coding system for a file FILENAME of which SIZE bytes follow point.
1594 These bytes should include at least the first 1k of the file
1595 and the last 3k of the file, but the middle may be omitted.
1596
1597 The function checks FILENAME against the variable `auto-coding-alist'.
1598 If FILENAME doesn't match any entries in the variable, it checks the
1599 contents of the current buffer following point against
1600 `auto-coding-regexp-alist'. If no match is found, it checks for a
1601 `coding:' tag in the first one or two lines following point. If no
1602 `coding:' tag is found, it checks any local variables list in the last
1603 3K bytes out of the SIZE bytes. Finally, if none of these methods
1604 succeed, it checks to see if any function in `auto-coding-functions'
1605 gives a match.
1606
1607 The return value is the specified coding system, or nil if nothing is
1608 specified.
1609
1610 The variable `set-auto-coding-function' (which see) is set to this
1611 function by default."
1612 (or (auto-coding-alist-lookup filename)
1613 ;; Try using `auto-coding-regexp-alist'.
1614 (save-excursion
1615 (let ((alist auto-coding-regexp-alist)
1616 coding-system)
1617 (while (and alist (not coding-system))
1618 (let ((regexp (car (car alist))))
1619 (when (re-search-forward regexp (+ (point) size) t)
1620 (setq coding-system (cdr (car alist)))))
1621 (setq alist (cdr alist)))
1622 coding-system))
1623 (let* ((case-fold-search t)
1624 (head-start (point))
1625 (head-end (+ head-start (min size 1024)))
1626 (tail-start (+ head-start (max (- size 3072) 0)))
1627 (tail-end (+ head-start size))
1628 coding-system head-found tail-found pos)
1629 ;; Try a short cut by searching for the string "coding:"
1630 ;; and for "unibyte:" at the head and tail of SIZE bytes.
1631 (setq head-found (or (search-forward "coding:" head-end t)
1632 (search-forward "unibyte:" head-end t)))
1633 (if (and head-found (> head-found tail-start))
1634 ;; Head and tail are overlapped.
1635 (setq tail-found head-found)
1636 (goto-char tail-start)
1637 (setq tail-found (or (search-forward "coding:" tail-end t)
1638 (search-forward "unibyte:" tail-end t))))
1639
1640 ;; At first check the head.
1641 (when head-found
1642 (goto-char head-start)
1643 (setq head-end (set-auto-mode-1))
1644 (setq head-start (point))
1645 (when (and head-end (< head-found head-end))
1646 (goto-char head-start)
1647 (when (and set-auto-coding-for-load
1648 (re-search-forward
1649 "\\(.*;\\)?[ \t]*unibyte:[ \t]*\\([^ ;]+\\)"
1650 head-end t))
1651 (setq coding-system 'raw-text))
1652 (when (and (not coding-system)
1653 (re-search-forward
1654 "\\(.*;\\)?[ \t]*coding:[ \t]*\\([^ ;]+\\)"
1655 head-end t))
1656 (setq coding-system (intern (match-string 2)))
1657 (or (coding-system-p coding-system)
1658 (setq coding-system nil)))))
1659
1660 ;; If no coding: tag in the head, check the tail.
1661 ;; Here we must pay attention to the case that the end-of-line
1662 ;; is just "\r" and we can't use "^" nor "$" in regexp.
1663 (when (and tail-found (not coding-system))
1664 (goto-char tail-start)
1665 (re-search-forward "[\r\n]\^L" nil t)
1666 (if (re-search-forward
1667 "[\r\n]\\([^[\r\n]*\\)[ \t]*Local Variables:[ \t]*\\([^\r\n]*\\)[\r\n]"
1668 tail-end t)
1669 ;; The prefix is what comes before "local variables:" in its
1670 ;; line. The suffix is what comes after "local variables:"
1671 ;; in its line.
1672 (let* ((prefix (regexp-quote (match-string 1)))
1673 (suffix (regexp-quote (match-string 2)))
1674 (re-coding
1675 (concat
1676 "[\r\n]" prefix
1677 ;; N.B. without the \n below, the regexp can
1678 ;; eat newlines.
1679 "[ \t]*coding[ \t]*:[ \t]*\\([^ \t\r\n]+\\)[ \t]*"
1680 suffix "[\r\n]"))
1681 (re-unibyte
1682 (concat
1683 "[\r\n]" prefix
1684 "[ \t]*unibyte[ \t]*:[ \t]*\\([^ \t\r\n]+\\)[ \t]*"
1685 suffix "[\r\n]"))
1686 (re-end
1687 (concat "[\r\n]" prefix "[ \t]*End *:[ \t]*" suffix
1688 "[\r\n]?"))
1689 (pos (1- (point))))
1690 (forward-char -1) ; skip back \r or \n.
1691 (re-search-forward re-end tail-end 'move)
1692 (setq tail-end (point))
1693 (goto-char pos)
1694 (when (and set-auto-coding-for-load
1695 (re-search-forward re-unibyte tail-end t))
1696 (setq coding-system 'raw-text))
1697 (when (and (not coding-system)
1698 (re-search-forward re-coding tail-end t))
1699 (setq coding-system (intern (match-string 1)))
1700 (or (coding-system-p coding-system)
1701 (setq coding-system nil))))))
1702 coding-system)
1703 ;; Finally, try all the `auto-coding-functions'.
1704 (let ((funcs auto-coding-functions)
1705 (coding-system nil))
1706 (while (and funcs (not coding-system))
1707 (setq coding-system (condition-case e
1708 (save-excursion
1709 (goto-char (point-min))
1710 (funcall (pop funcs) size))
1711 (error nil))))
1712 coding-system)))
1713
1714 (setq set-auto-coding-function 'set-auto-coding)
1715
1716 (defun after-insert-file-set-coding (inserted)
1717 "Set `buffer-file-coding-system' of current buffer after text is inserted.
1718 INSERTED is the number of characters that were inserted, as figured
1719 in the situation before this function. Return the number of characters
1720 inserted, as figured in the situation after. The two numbers can be
1721 different if the buffer has become unibyte."
1722 (if last-coding-system-used
1723 (let ((coding-system
1724 (find-new-buffer-file-coding-system last-coding-system-used))
1725 (modified-p (buffer-modified-p)))
1726 (when coding-system
1727 (set-buffer-file-coding-system coding-system t)
1728 (if (and enable-multibyte-characters
1729 (or (eq coding-system 'no-conversion)
1730 (eq (coding-system-type coding-system) 5))
1731 ;; If buffer was unmodified and the size is the
1732 ;; same as INSERTED, we must be visiting it.
1733 (not modified-p)
1734 (= (buffer-size) inserted))
1735 ;; For coding systems no-conversion and raw-text...,
1736 ;; edit the buffer as unibyte.
1737 (let ((pos-marker (copy-marker (+ (point) inserted))))
1738 (set-buffer-multibyte nil)
1739 (setq inserted (- pos-marker (point)))))
1740 (set-buffer-modified-p modified-p))))
1741 inserted)
1742
1743 ;; The coding-spec and eol-type of coding-system returned is decided
1744 ;; independently in the following order.
1745 ;; 1. That of buffer-file-coding-system locally bound.
1746 ;; 2. That of CODING.
1747
1748 (defun find-new-buffer-file-coding-system (coding)
1749 "Return a coding system for a buffer when a file of CODING is inserted.
1750 The local variable `buffer-file-coding-system' of the current buffer
1751 is set to the returned value.
1752 Return nil if there's no need to set `buffer-file-coding-system'."
1753 (let (local-coding local-eol
1754 found-coding found-eol
1755 new-coding new-eol)
1756 (if (null coding)
1757 ;; Nothing found about coding.
1758 nil
1759
1760 ;; Get information of `buffer-file-coding-system' in LOCAL-EOL
1761 ;; and LOCAL-CODING.
1762 (setq local-eol (coding-system-eol-type buffer-file-coding-system))
1763 (if (null (numberp local-eol))
1764 ;; But eol-type is not yet set.
1765 (setq local-eol nil))
1766 (if (and buffer-file-coding-system
1767 (not (eq (coding-system-type buffer-file-coding-system) t)))
1768 ;; This is not `undecided'.
1769 (setq local-coding (coding-system-base buffer-file-coding-system)))
1770
1771 (if (and (local-variable-p 'buffer-file-coding-system)
1772 local-eol local-coding)
1773 ;; The current buffer has already set full coding-system, we
1774 ;; had better not change it.
1775 nil
1776
1777 (setq found-eol (coding-system-eol-type coding))
1778 (if (null (numberp found-eol))
1779 ;; But eol-type is not found.
1780 ;; If EOL conversions are inhibited, force unix eol-type.
1781 (setq found-eol (if inhibit-eol-conversion 0)))
1782 (if (eq (coding-system-type coding) t)
1783 (setq found-coding 'undecided)
1784 (setq found-coding (coding-system-base coding)))
1785
1786 (if (and (not found-eol) (eq found-coding 'undecided))
1787 ;; No valid coding information found.
1788 nil
1789
1790 ;; Some coding information (eol or text) found.
1791
1792 ;; The local setting takes precedence over the found one.
1793 (setq new-coding (if (local-variable-p 'buffer-file-coding-system)
1794 (or local-coding found-coding)
1795 (or found-coding local-coding)))
1796 (setq new-eol (if (local-variable-p 'buffer-file-coding-system)
1797 (or local-eol found-eol)
1798 (or found-eol local-eol)))
1799
1800 (let ((eol-type (coding-system-eol-type new-coding)))
1801 (if (and (numberp new-eol) (vectorp eol-type))
1802 (aref eol-type new-eol)
1803 new-coding)))))))
1804
1805 (defun modify-coding-system-alist (target-type regexp coding-system)
1806 "Modify one of look up tables for finding a coding system on I/O operation.
1807 There are three of such tables, `file-coding-system-alist',
1808 `process-coding-system-alist', and `network-coding-system-alist'.
1809
1810 TARGET-TYPE specifies which of them to modify.
1811 If it is `file', it affects `file-coding-system-alist' (which see).
1812 If it is `process', it affects `process-coding-system-alist' (which see).
1813 If it is `network', it affects `network-coding-system-alist' (which see).
1814
1815 REGEXP is a regular expression matching a target of I/O operation.
1816 The target is a file name if TARGET-TYPE is `file', a program name if
1817 TARGET-TYPE is `process', or a network service name or a port number
1818 to connect to if TARGET-TYPE is `network'.
1819
1820 CODING-SYSTEM is a coding system to perform code conversion on the I/O
1821 operation, or a cons cell (DECODING . ENCODING) specifying the coding systems
1822 for decoding and encoding respectively,
1823 or a function symbol which, when called, returns such a cons cell."
1824 (or (memq target-type '(file process network))
1825 (error "Invalid target type: %s" target-type))
1826 (or (stringp regexp)
1827 (and (eq target-type 'network) (integerp regexp))
1828 (error "Invalid regular expression: %s" regexp))
1829 (if (symbolp coding-system)
1830 (if (not (fboundp coding-system))
1831 (progn
1832 (check-coding-system coding-system)
1833 (setq coding-system (cons coding-system coding-system))))
1834 (check-coding-system (car coding-system))
1835 (check-coding-system (cdr coding-system)))
1836 (cond ((eq target-type 'file)
1837 (let ((slot (assoc regexp file-coding-system-alist)))
1838 (if slot
1839 (setcdr slot coding-system)
1840 (setq file-coding-system-alist
1841 (cons (cons regexp coding-system)
1842 file-coding-system-alist)))))
1843 ((eq target-type 'process)
1844 (let ((slot (assoc regexp process-coding-system-alist)))
1845 (if slot
1846 (setcdr slot coding-system)
1847 (setq process-coding-system-alist
1848 (cons (cons regexp coding-system)
1849 process-coding-system-alist)))))
1850 (t
1851 (let ((slot (assoc regexp network-coding-system-alist)))
1852 (if slot
1853 (setcdr slot coding-system)
1854 (setq network-coding-system-alist
1855 (cons (cons regexp coding-system)
1856 network-coding-system-alist)))))))
1857
1858 (defun decode-coding-inserted-region (from to filename
1859 &optional visit beg end replace)
1860 "Decode the region between FROM and TO as if it is read from file FILENAME.
1861 Optional arguments VISIT, BEG, END, and REPLACE are the same as those
1862 of the function `insert-file-contents'."
1863 (save-excursion
1864 (save-restriction
1865 (narrow-to-region from to)
1866 (goto-char (point-min))
1867 (let ((coding coding-system-for-read))
1868 (or coding
1869 (setq coding (funcall set-auto-coding-function
1870 filename (- (point-max) (point-min)))))
1871 (or coding
1872 (setq coding (car (find-operation-coding-system
1873 'insert-file-contents
1874 filename visit beg end replace))))
1875 (if (coding-system-p coding)
1876 (or enable-multibyte-characters
1877 (setq coding
1878 (coding-system-change-text-conversion coding 'raw-text)))
1879 (setq coding nil))
1880 (if coding
1881 (decode-coding-region (point-min) (point-max) coding)
1882 (setq last-coding-system-used coding))))))
1883
1884 (defun make-translation-table (&rest args)
1885 "Make a translation table from arguments.
1886 A translation table is a char table intended for character
1887 translation in CCL programs.
1888
1889 Each argument is a list of elements of the form (FROM . TO), where FROM
1890 is a character to be translated to TO.
1891
1892 FROM can be a generic character (see `make-char'). In this case, TO is
1893 a generic character containing the same number of characters, or an
1894 ordinary character. If FROM and TO are both generic characters, all
1895 characters belonging to FROM are translated to characters belonging to TO
1896 without changing their position code(s).
1897
1898 The arguments and forms in each argument are processed in the given
1899 order, and if a previous form already translates TO to some other
1900 character, say TO-ALT, FROM is also translated to TO-ALT."
1901 (let ((table (make-char-table 'translation-table))
1902 revlist)
1903 (while args
1904 (let ((elts (car args)))
1905 (while elts
1906 (let* ((from (car (car elts)))
1907 (from-i 0) ; degree of freedom of FROM
1908 (from-rev (nreverse (split-char from)))
1909 (to (cdr (car elts)))
1910 (to-i 0) ; degree of freedom of TO
1911 (to-rev (nreverse (split-char to))))
1912 ;; Check numbers of heading 0s in FROM-REV and TO-REV.
1913 (while (eq (car from-rev) 0)
1914 (setq from-i (1+ from-i) from-rev (cdr from-rev)))
1915 (while (eq (car to-rev) 0)
1916 (setq to-i (1+ to-i) to-rev (cdr to-rev)))
1917 (if (and (/= from-i to-i) (/= to-i 0))
1918 (error "Invalid character pair (%d . %d)" from to))
1919 ;; If we have already translated TO to TO-ALT, FROM should
1920 ;; also be translated to TO-ALT. But, this is only if TO
1921 ;; is a generic character or TO-ALT is not a generic
1922 ;; character.
1923 (let ((to-alt (aref table to)))
1924 (if (and to-alt
1925 (or (> to-i 0) (not (generic-char-p to-alt))))
1926 (setq to to-alt)))
1927 (if (> from-i 0)
1928 (set-char-table-default table from to)
1929 (aset table from to))
1930 ;; If we have already translated some chars to FROM, they
1931 ;; should also be translated to TO.
1932 (let ((l (assq from revlist)))
1933 (if l
1934 (let ((ch (car l)))
1935 (setcar l to)
1936 (setq l (cdr l))
1937 (while l
1938 (aset table ch to)
1939 (setq l (cdr l)) ))))
1940 ;; Now update REVLIST.
1941 (let ((l (assq to revlist)))
1942 (if l
1943 (setcdr l (cons from (cdr l)))
1944 (setq revlist (cons (list to from) revlist)))))
1945 (setq elts (cdr elts))))
1946 (setq args (cdr args)))
1947 ;; Return TABLE just created.
1948 table))
1949
1950 (defun make-translation-table-from-vector (vec)
1951 "Make translation table from decoding vector VEC.
1952 VEC is an array of 256 elements to map unibyte codes to multibyte
1953 characters. Elements may be nil for undefined code points.
1954 See also the variable `nonascii-translation-table'."
1955 (let ((table (make-char-table 'translation-table))
1956 (rev-table (make-char-table 'translation-table))
1957 ch)
1958 (dotimes (i 256)
1959 (setq ch (aref vec i))
1960 (when ch
1961 (aset table i ch)
1962 (if (>= ch 256)
1963 (aset rev-table ch i))))
1964 (set-char-table-extra-slot table 0 rev-table)
1965 table))
1966
1967 (defun define-translation-table (symbol &rest args)
1968 "Define SYMBOL as the name of translation table made by ARGS.
1969 This sets up information so that the table can be used for
1970 translations in a CCL program.
1971
1972 If the first element of ARGS is a char-table whose purpose is
1973 `translation-table', just define SYMBOL to name it. (Note that this
1974 function does not bind SYMBOL.)
1975
1976 Any other ARGS should be suitable as arguments of the function
1977 `make-translation-table' (which see).
1978
1979 This function sets properties `translation-table' and
1980 `translation-table-id' of SYMBOL to the created table itself and the
1981 identification number of the table respectively. It also registers
1982 the table in `translation-table-vector'."
1983 (let ((table (if (and (char-table-p (car args))
1984 (eq (char-table-subtype (car args))
1985 'translation-table))
1986 (car args)
1987 (apply 'make-translation-table args)))
1988 (len (length translation-table-vector))
1989 (id 0)
1990 (done nil))
1991 (put symbol 'translation-table table)
1992 (while (not done)
1993 (if (>= id len)
1994 (setq translation-table-vector
1995 (vconcat translation-table-vector (make-vector len nil))))
1996 (let ((slot (aref translation-table-vector id)))
1997 (if (or (not slot)
1998 (eq (car slot) symbol))
1999 (progn
2000 (aset translation-table-vector id (cons symbol table))
2001 (setq done t))
2002 (setq id (1+ id)))))
2003 (put symbol 'translation-table-id id)
2004 id))
2005
2006 (put 'with-category-table 'lisp-indent-function 1)
2007
2008 (defmacro with-category-table (table &rest body)
2009 "Evaluate BODY with category table of current buffer set to TABLE.
2010 The category table of the current buffer is saved, BODY is evaluated,
2011 then the saved table is restored, even in case of an abnormal exit.
2012 Value is what BODY returns."
2013 (let ((old-table (make-symbol "old-table"))
2014 (old-buffer (make-symbol "old-buffer")))
2015 `(let ((,old-table (category-table))
2016 (,old-buffer (current-buffer)))
2017 (unwind-protect
2018 (progn
2019 (set-category-table ,table)
2020 ,@body)
2021 (save-current-buffer
2022 (set-buffer ,old-buffer)
2023 (set-category-table ,old-table))))))
2024
2025 (defun define-translation-hash-table (symbol table)
2026 "Define SYMBOL as the name of the hash translation TABLE for use in CCL.
2027
2028 Analogous to `define-translation-table', but updates
2029 `translation-hash-table-vector' and the table is for use in the CCL
2030 `lookup-integer' and `lookup-character' functions."
2031 (unless (and (symbolp symbol)
2032 (hash-table-p table))
2033 (error "Bad args to define-translation-hash-table"))
2034 (let ((len (length translation-hash-table-vector))
2035 (id 0)
2036 done)
2037 (put symbol 'translation-hash-table table)
2038 (while (not done)
2039 (if (>= id len)
2040 (setq translation-hash-table-vector
2041 (vconcat translation-hash-table-vector [nil])))
2042 (let ((slot (aref translation-hash-table-vector id)))
2043 (if (or (not slot)
2044 (eq (car slot) symbol))
2045 (progn
2046 (aset translation-hash-table-vector id (cons symbol table))
2047 (setq done t))
2048 (setq id (1+ id)))))
2049 (put symbol 'translation-hash-table-id id)
2050 id))
2051
2052 ;;; Initialize some variables.
2053
2054 (put 'use-default-ascent 'char-table-extra-slots 0)
2055 (setq use-default-ascent (make-char-table 'use-default-ascent))
2056 (put 'ignore-relative-composition 'char-table-extra-slots 0)
2057 (setq ignore-relative-composition
2058 (make-char-table 'ignore-relative-composition))
2059
2060
2061 ;;; Built-in auto-coding-functions:
2062
2063 (defun sgml-xml-auto-coding-function (size)
2064 "Determine whether the buffer is XML, and if so, its encoding.
2065 This function is intended to be added to `auto-coding-functions'."
2066 (setq size (+ (point) size))
2067 (when (re-search-forward "\\`[[:space:]\n]*<\\?xml" size t)
2068 (let ((end (save-excursion
2069 ;; This is a hack.
2070 (re-search-forward "\"\\s-*\\?>" size t))))
2071 (when end
2072 (if (re-search-forward "encoding=\"\\(.+?\\)\"" end t)
2073 (let* ((match (match-string 1))
2074 (sym (intern (downcase match))))
2075 (if (coding-system-p sym)
2076 sym
2077 (message "Warning: unknown coding system \"%s\"" match)
2078 nil))
2079 'utf-8)))))
2080
2081 (defun sgml-html-meta-auto-coding-function (size)
2082 "If the buffer has an HTML meta tag, use it to determine encoding.
2083 This function is intended to be added to `auto-coding-functions'."
2084 (setq size (min (+ (point) size)
2085 ;; Only search forward 10 lines
2086 (save-excursion
2087 (forward-line 10)
2088 (point))))
2089 (when (and (search-forward "<html>" size t)
2090 (re-search-forward "<meta\\s-+http-equiv=\"content-type\"\\s-+content=\"text/\\sw+;\\s-*charset=\\(.+?\\)\"" size t))
2091 (let* ((match (match-string 1))
2092 (sym (intern (downcase match))))
2093 (if (coding-system-p sym)
2094 sym
2095 (message "Warning: unknown coding system \"%s\"" match)
2096 nil))))
2097
2098 ;;;
2099 (provide 'mule)
2100
2101 ;;; arch-tag: 9aebaa6e-0e8a-40a9-b857-cb5d04a39e7c
2102 ;;; mule.el ends here