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1 ;;; format.el --- read and save files in multiple formats
2
3 ;; Copyright (c) 1994, 1995, 1997, 1999 Free Software Foundation
4
5 ;; Author: Boris Goldowsky <boris@gnu.org>
6
7 ;; This file is part of GNU Emacs.
8
9 ;; GNU Emacs is free software; you can redistribute it and/or modify
10 ;; it under the terms of the GNU General Public License as published by
11 ;; the Free Software Foundation; either version 2, or (at your option)
12 ;; any later version.
13
14 ;; GNU Emacs is distributed in the hope that it will be useful,
15 ;; but WITHOUT ANY WARRANTY; without even the implied warranty of
16 ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 ;; GNU General Public License for more details.
18
19 ;; You should have received a copy of the GNU General Public License
20 ;; along with GNU Emacs; see the file COPYING. If not, write to the
21 ;; Free Software Foundation, Inc., 59 Temple Place - Suite 330,
22 ;; Boston, MA 02111-1307, USA.
23
24 ;;; Commentary:
25
26 ;; This file defines a unified mechanism for saving & loading files stored
27 ;; in different formats. `format-alist' contains information that directs
28 ;; Emacs to call an encoding or decoding function when reading or writing
29 ;; files that match certain conditions.
30 ;;
31 ;; When a file is visited, its format is determined by matching the
32 ;; beginning of the file against regular expressions stored in
33 ;; `format-alist'. If this fails, you can manually translate the buffer
34 ;; using `format-decode-buffer'. In either case, the formats used are
35 ;; listed in the variable `buffer-file-format', and become the default
36 ;; format for saving the buffer. To save a buffer in a different format,
37 ;; change this variable, or use `format-write-file'.
38 ;;
39 ;; Auto-save files are normally created in the same format as the visited
40 ;; file, but the variable `auto-save-file-format' can be set to a
41 ;; particularly fast or otherwise preferred format to be used for
42 ;; auto-saving (or nil to do no encoding on auto-save files, but then you
43 ;; risk losing any text-properties in the buffer).
44 ;;
45 ;; You can manually translate a buffer into or out of a particular format
46 ;; with the functions `format-encode-buffer' and `format-decode-buffer'.
47 ;; To translate just the region use the functions `format-encode-region'
48 ;; and `format-decode-region'.
49 ;;
50 ;; You can define a new format by writing the encoding and decoding
51 ;; functions, and adding an entry to `format-alist'. See enriched.el for
52 ;; an example of how to implement a file format. There are various
53 ;; functions defined in this file that may be useful for writing the
54 ;; encoding and decoding functions:
55 ;; * `format-annotate-region' and `format-deannotate-region' allow a
56 ;; single alist of information to be used for encoding and decoding.
57 ;; The alist defines a correspondence between strings in the file
58 ;; ("annotations") and text-properties in the buffer.
59 ;; * `format-replace-strings' is similarly useful for doing simple
60 ;; string->string translations in a reversible manner.
61
62 ;;; Code:
63
64 (put 'buffer-file-format 'permanent-local t)
65
66 (defvar format-alist
67 '((text/enriched "Extended MIME text/enriched format."
68 "Content-[Tt]ype:[ \t]*text/enriched"
69 enriched-decode enriched-encode t enriched-mode)
70 (plain "ISO 8859-1 standard format, no text properties."
71 ;; Plain only exists so that there is an obvious neutral choice in
72 ;; the completion list.
73 nil nil nil nil nil)
74 (ibm "IBM Code Page 850 (DOS)"
75 nil ; The original "1\\(^\\)" is obscure.
76 "recode -f ibm-pc:latin1" "recode -f latin1:ibm-pc" t nil)
77 (mac "Apple Macintosh"
78 nil
79 "recode -f mac:latin1" "recode -f latin1:mac" t nil)
80 (hp "HP Roman8"
81 nil
82 "recode -f roman8:latin1" "recode -f latin1:roman8" t nil)
83 (TeX "TeX (encoding)"
84 nil
85 iso-tex2iso iso-iso2tex t nil)
86 (gtex "German TeX (encoding)"
87 nil
88 iso-gtex2iso iso-iso2gtex t nil)
89 (html "HTML (encoding)"
90 nil
91 "recode -f html:latin1" "recode -f latin1:html" t nil)
92 (rot13 "rot13"
93 nil
94 "tr a-mn-z n-za-m" "tr a-mn-z n-za-m" t nil)
95 (duden "Duden Ersatzdarstellung"
96 nil
97 "diac" iso-iso2duden t nil)
98 (de646 "German ASCII (ISO 646)"
99 nil
100 "recode -f iso646-ge:latin1" "recode -f latin1:iso646-ge" t nil)
101 (denet "net German"
102 nil
103 iso-german iso-cvt-read-only t nil)
104 (esnet "net Spanish"
105 nil
106 iso-spanish iso-cvt-read-only t nil))
107 "List of information about understood file formats.
108 Elements are of the form \(NAME DOC-STR REGEXP FROM-FN TO-FN MODIFY MODE-FN).
109
110 NAME is a symbol, which is stored in `buffer-file-format'.
111
112 DOC-STR should be a single line providing more information about the
113 format. It is currently unused, but in the future will be shown to
114 the user if they ask for more information.
115
116 REGEXP is a regular expression to match against the beginning of the file;
117 it should match only files in that format. Use nil to avoid
118 matching at all for formats for which this isn't appropriate to
119 require explicit encoding/decoding.
120
121 FROM-FN is called to decode files in that format; it gets two args, BEGIN
122 and END, and can make any modifications it likes, returning the new
123 end. It must make sure that the beginning of the file no longer
124 matches REGEXP, or else it will get called again.
125 Alternatively, FROM-FN can be a string, which specifies a shell command
126 (including options) to be used as a filter to perform the conversion.
127
128 TO-FN is called to encode a region into that format; it is passed three
129 arguments: BEGIN, END, and BUFFER. BUFFER is the original buffer that
130 the data being written came from, which the function could use, for
131 example, to find the values of local variables. TO-FN should either
132 return a list of annotations like `write-region-annotate-functions',
133 or modify the region and return the new end.
134 Alternatively, TO-FN can be a string, which specifies a shell command
135 (including options) to be used as a filter to perform the conversion.
136
137 MODIFY, if non-nil, means the TO-FN wants to modify the region. If nil,
138 TO-FN will not make any changes but will instead return a list of
139 annotations.
140
141 MODE-FN, if specified, is called when visiting a file with that format.")
142
143 ;;; Basic Functions (called from Lisp)
144
145 (defun format-encode-run-method (method from to &optional buffer)
146 "Translate using function or shell script METHOD the text from FROM to TO.
147 If METHOD is a string, it is a shell command;
148 otherwise, it should be a Lisp function.
149 BUFFER should be the buffer that the output originally came from."
150 (if (stringp method)
151 (let ((error-buff (get-buffer-create "*Format Errors*"))
152 (coding-system-for-write 'no-conversion)
153 format-alist)
154 (with-current-buffer error-buff
155 (widen)
156 (erase-buffer))
157 (if (and (zerop (shell-command-on-region from to method t t
158 error-buff))
159 ;; gzip gives zero exit status with bad args, for instance.
160 (zerop (with-current-buffer error-buff
161 (buffer-size))))
162 (bury-buffer error-buff)
163 (switch-to-buffer-other-window error-buff)
164 (error "Format decoding failed")))
165 (funcall method from to buffer)))
166
167 (defun format-decode-run-method (method from to &optional buffer)
168 "Decode using function or shell script METHOD the text from FROM to TO.
169 If METHOD is a string, it is a shell command; otherwise, it should be
170 a Lisp function. Decoding is done for the given BUFFER."
171 (if (stringp method)
172 (let ((error-buff (get-buffer-create "*Format Errors*"))
173 (coding-system-for-read 'no-conversion) ; like jka-compr
174 format-alist)
175 (with-current-buffer error-buff
176 (widen)
177 (erase-buffer))
178 ;; We should perhaps go via a temporary buffer and copy it
179 ;; back, in case of errors.
180 (if (and (zerop (save-window-excursion
181 (shell-command-on-region (point-min) (point-max)
182 method t t
183 error-buff)))
184 ;; gzip gives zero exit status with bad args, for instance.
185 (zerop (with-current-buffer error-buff
186 (buffer-size))))
187 (bury-buffer error-buff)
188 (switch-to-buffer-other-window error-buff)
189 (error "Format decoding failed"))
190 (point))
191 (funcall method from to)))
192
193 (defun format-annotate-function (format from to orig-buf)
194 "Return annotations for writing region as FORMAT.
195 FORMAT is a symbol naming one of the formats defined in `format-alist',
196 it must be a single symbol, not a list like `buffer-file-format'.
197 FROM and TO delimit the region to be operated on in the current buffer.
198 ORIG-BUF is the original buffer that the data came from.
199 This function works like a function on `write-region-annotate-functions':
200 it either returns a list of annotations, or returns with a different buffer
201 current, which contains the modified text to write.
202
203 For most purposes, consider using `format-encode-region' instead."
204 ;; This function is called by write-region (actually build-annotations)
205 ;; for each element of buffer-file-format.
206 (let* ((info (assq format format-alist))
207 (to-fn (nth 4 info))
208 (modify (nth 5 info)))
209 (if to-fn
210 (if modify
211 ;; To-function wants to modify region. Copy to safe place.
212 (let ((copy-buf (get-buffer-create " *Format Temp*")))
213 (copy-to-buffer copy-buf from to)
214 (set-buffer copy-buf)
215 (format-insert-annotations write-region-annotations-so-far from)
216 (format-encode-run-method to-fn (point-min) (point-max) orig-buf)
217 nil)
218 ;; Otherwise just call function, it will return annotations.
219 (funcall to-fn from to orig-buf)))))
220
221 (defun format-decode (format length &optional visit-flag)
222 ;; This function is called by insert-file-contents whenever a file is read.
223 "Decode text from any known FORMAT.
224 FORMAT is a symbol appearing in `format-alist' or a list of such symbols,
225 or nil, in which case this function tries to guess the format of the data by
226 matching against the regular expressions in `format-alist'. After a match is
227 found and the region decoded, the alist is searched again from the beginning
228 for another match.
229
230 Second arg LENGTH is the number of characters following point to operate on.
231 If optional third arg VISIT-FLAG is true, set `buffer-file-format'
232 to the list of formats used, and call any mode functions defined for those
233 formats.
234
235 Returns the new length of the decoded region.
236
237 For most purposes, consider using `format-decode-region' instead."
238 (let ((mod (buffer-modified-p))
239 (begin (point))
240 (end (+ (point) length)))
241 (if (null format)
242 ;; Figure out which format it is in, remember list in `format'.
243 (let ((try format-alist))
244 (while try
245 (let* ((f (car try))
246 (regexp (nth 2 f))
247 (p (point)))
248 (if (and regexp (looking-at regexp)
249 (< (match-end 0) (+ begin length)))
250 (progn
251 (setq format (cons (car f) format))
252 ;; Decode it
253 (if (nth 3 f)
254 (setq end (format-decode-run-method (nth 3 f) begin end)))
255 ;; Call visit function if required
256 (if (and visit-flag (nth 6 f)) (funcall (nth 6 f) 1))
257 ;; Safeguard against either of the functions changing pt.
258 (goto-char p)
259 ;; Rewind list to look for another format
260 (setq try format-alist))
261 (setq try (cdr try))))))
262 ;; Deal with given format(s)
263 (or (listp format) (setq format (list format)))
264 (let ((do format) f)
265 (while do
266 (or (setq f (assq (car do) format-alist))
267 (error "Unknown format" (car do)))
268 ;; Decode:
269 (if (nth 3 f)
270 (setq end (format-decode-run-method (nth 3 f) begin end)))
271 ;; Call visit function if required
272 (if (and visit-flag (nth 6 f)) (funcall (nth 6 f) 1))
273 (setq do (cdr do)))))
274 (if visit-flag
275 (setq buffer-file-format format))
276 (set-buffer-modified-p mod)
277 ;; Return new length of region
278 (- end begin)))
279
280 ;;;
281 ;;; Interactive functions & entry points
282 ;;;
283
284 (defun format-decode-buffer (&optional format)
285 "Translate the buffer from some FORMAT.
286 If the format is not specified, this function attempts to guess.
287 `buffer-file-format' is set to the format used, and any mode-functions
288 for the format are called."
289 (interactive
290 (list (format-read "Translate buffer from format (default: guess): ")))
291 (save-excursion
292 (goto-char (point-min))
293 (format-decode format (buffer-size) t)))
294
295 (defun format-decode-region (from to &optional format)
296 "Decode the region from some format.
297 Arg FORMAT is optional; if omitted the format will be determined by looking
298 for identifying regular expressions at the beginning of the region."
299 (interactive
300 (list (region-beginning) (region-end)
301 (format-read "Translate region from format (default: guess): ")))
302 (save-excursion
303 (goto-char from)
304 (format-decode format (- to from) nil)))
305
306 (defun format-encode-buffer (&optional format)
307 "Translate the buffer into FORMAT.
308 FORMAT defaults to `buffer-file-format'. It is a symbol naming one of the
309 formats defined in `format-alist', or a list of such symbols."
310 (interactive
311 (list (format-read (format "Translate buffer to format (default %s): "
312 buffer-file-format))))
313 (format-encode-region (point-min) (point-max) format))
314
315 (defun format-encode-region (beg end &optional format)
316 "Translate the region into some FORMAT.
317 FORMAT defaults to `buffer-file-format', it is a symbol naming
318 one of the formats defined in `format-alist', or a list of such symbols."
319 (interactive
320 (list (region-beginning) (region-end)
321 (format-read (format "Translate region to format (default %s): "
322 buffer-file-format))))
323 (if (null format) (setq format buffer-file-format))
324 (if (symbolp format) (setq format (list format)))
325 (save-excursion
326 (goto-char end)
327 (let ((cur-buf (current-buffer))
328 (end (point-marker)))
329 (while format
330 (let* ((info (assq (car format) format-alist))
331 (to-fn (nth 4 info))
332 (modify (nth 5 info))
333 result)
334 (if to-fn
335 (if modify
336 (setq end (format-encode-run-method to-fn beg end
337 (current-buffer)))
338 (format-insert-annotations
339 (funcall to-fn beg end (current-buffer)))))
340 (setq format (cdr format)))))))
341
342 (defun format-write-file (filename format)
343 "Write current buffer into file FILENAME using some FORMAT.
344 Makes buffer visit that file and sets the format as the default for future
345 saves. If the buffer is already visiting a file, you can specify a directory
346 name as FILENAME, to write a file of the same old name in that directory."
347 (interactive
348 ;; Same interactive spec as write-file, plus format question.
349 (let* ((file (if buffer-file-name
350 (read-file-name "Write file: "
351 nil nil nil nil)
352 (read-file-name "Write file: "
353 (cdr (assq 'default-directory
354 (buffer-local-variables)))
355 nil nil (buffer-name))))
356 (fmt (format-read (format "Write file `%s' in format: "
357 (file-name-nondirectory file)))))
358 (list file fmt)))
359 (setq buffer-file-format format)
360 (write-file filename))
361
362 (defun format-find-file (filename format)
363 "Find the file FILENAME using data format FORMAT.
364 If FORMAT is nil then do not do any format conversion."
365 (interactive
366 ;; Same interactive spec as write-file, plus format question.
367 (let* ((file (read-file-name "Find file: "))
368 (fmt (format-read (format "Read file `%s' in format: "
369 (file-name-nondirectory file)))))
370 (list file fmt)))
371 (let ((format-alist nil))
372 (find-file filename))
373 (if format
374 (format-decode-buffer format)))
375
376 (defun format-insert-file (filename format &optional beg end)
377 "Insert the contents of file FILENAME using data format FORMAT.
378 If FORMAT is nil then do not do any format conversion.
379 The optional third and fourth arguments BEG and END specify
380 the part of the file to read.
381
382 The return value is like the value of `insert-file-contents':
383 a list (ABSOLUTE-FILE-NAME . SIZE)."
384 (interactive
385 ;; Same interactive spec as write-file, plus format question.
386 (let* ((file (read-file-name "Find file: "))
387 (fmt (format-read (format "Read file `%s' in format: "
388 (file-name-nondirectory file)))))
389 (list file fmt)))
390 (let (value size)
391 (let ((format-alist nil))
392 (setq value (insert-file-contents filename nil beg end))
393 (setq size (nth 1 value)))
394 (if format
395 (setq size (format-decode format size)
396 value (cons (car value) size)))
397 value))
398
399 (defun format-read (&optional prompt)
400 "Read and return the name of a format.
401 Return value is a list, like `buffer-file-format'; it may be nil.
402 Formats are defined in `format-alist'. Optional arg is the PROMPT to use."
403 (let* ((table (mapcar (lambda (x) (list (symbol-name (car x))))
404 format-alist))
405 (ans (completing-read (or prompt "Format: ") table nil t)))
406 (if (not (equal "" ans)) (list (intern ans)))))
407
408
409 ;;;
410 ;;; Below are some functions that may be useful in writing encoding and
411 ;;; decoding functions for use in format-alist.
412 ;;;
413
414 (defun format-replace-strings (alist &optional reverse beg end)
415 "Do multiple replacements on the buffer.
416 ALIST is a list of (from . to) pairs, which should be proper arguments to
417 `search-forward' and `replace-match' respectively.
418 Optional 2nd arg REVERSE, if non-nil, means the pairs are (to . from), so that
419 you can use the same list in both directions if it contains only literal
420 strings.
421 Optional args BEG and END specify a region of the buffer on which to operate."
422 (save-excursion
423 (save-restriction
424 (or beg (setq beg (point-min)))
425 (if end (narrow-to-region (point-min) end))
426 (while alist
427 (let ((from (if reverse (cdr (car alist)) (car (car alist))))
428 (to (if reverse (car (cdr alist)) (cdr (car alist)))))
429 (goto-char beg)
430 (while (search-forward from nil t)
431 (goto-char (match-beginning 0))
432 (insert to)
433 (set-text-properties (- (point) (length to)) (point)
434 (text-properties-at (point)))
435 (delete-region (point) (+ (point) (- (match-end 0)
436 (match-beginning 0)))))
437 (setq alist (cdr alist)))))))
438
439 ;;; Some list-manipulation functions that we need.
440
441 (defun format-delq-cons (cons list)
442 "Remove the given CONS from LIST by side effect and return the new LIST.
443 Since CONS could be the first element of LIST, write
444 `\(setq foo \(format-delq-cons element foo))' to be sure of changing
445 the value of `foo'."
446 (if (eq cons list)
447 (cdr list)
448 (let ((p list))
449 (while (not (eq (cdr p) cons))
450 (if (null p) (error "format-delq-cons: not an element."))
451 (setq p (cdr p)))
452 ;; Now (cdr p) is the cons to delete
453 (setcdr p (cdr cons))
454 list)))
455
456 (defun format-make-relatively-unique (a b)
457 "Delete common elements of lists A and B, return as pair.
458 Compares using `equal'."
459 (let* ((acopy (copy-sequence a))
460 (bcopy (copy-sequence b))
461 (tail acopy))
462 (while tail
463 (let ((dup (member (car tail) bcopy))
464 (next (cdr tail)))
465 (if dup (setq acopy (format-delq-cons tail acopy)
466 bcopy (format-delq-cons dup bcopy)))
467 (setq tail next)))
468 (cons acopy bcopy)))
469
470 (defun format-common-tail (a b)
471 "Given two lists that have a common tail, return it.
472 Compares with `equal', and returns the part of A that is equal to the
473 equivalent part of B. If even the last items of the two are not equal,
474 returns nil."
475 (let ((la (length a))
476 (lb (length b)))
477 ;; Make sure they are the same length
478 (if (> la lb)
479 (setq a (nthcdr (- la lb) a))
480 (setq b (nthcdr (- lb la) b))))
481 (while (not (equal a b))
482 (setq a (cdr a)
483 b (cdr b)))
484 a)
485
486 (defun format-reorder (items order)
487 "Arrange ITEMS to following partial ORDER.
488 Elements of ITEMS equal to elements of ORDER will be rearranged to follow the
489 ORDER. Unmatched items will go last."
490 (if order
491 (let ((item (member (car order) items)))
492 (if item
493 (cons (car item)
494 (format-reorder (format-delq-cons item items)
495 (cdr order)))
496 (format-reorder items (cdr order))))
497 items))
498
499 (put 'face 'format-list-valued t) ; These text-properties take values
500 (put 'unknown 'format-list-valued t) ; that are lists, the elements of which
501 ; should be considered separately.
502 ; See format-deannotate-region and
503 ; format-annotate-region.
504
505 ;;;
506 ;;; Decoding
507 ;;;
508
509 (defun format-deannotate-region (from to translations next-fn)
510 "Translate annotations in the region into text properties.
511 This sets text properties between FROM to TO as directed by the
512 TRANSLATIONS and NEXT-FN arguments.
513
514 NEXT-FN is a function that searches forward from point for an annotation.
515 It should return a list of 4 elements: \(BEGIN END NAME POSITIVE). BEGIN and
516 END are buffer positions bounding the annotation, NAME is the name searched
517 for in TRANSLATIONS, and POSITIVE should be non-nil if this annotation marks
518 the beginning of a region with some property, or nil if it ends the region.
519 NEXT-FN should return nil if there are no annotations after point.
520
521 The basic format of the TRANSLATIONS argument is described in the
522 documentation for the `format-annotate-region' function. There are some
523 additional things to keep in mind for decoding, though:
524
525 When an annotation is found, the TRANSLATIONS list is searched for a
526 text-property name and value that corresponds to that annotation. If the
527 text-property has several annotations associated with it, it will be used only
528 if the other annotations are also in effect at that point. The first match
529 found whose annotations are all present is used.
530
531 The text property thus determined is set to the value over the region between
532 the opening and closing annotations. However, if the text-property name has a
533 non-nil `format-list-valued' property, then the value will be consed onto the
534 surrounding value of the property, rather than replacing that value.
535
536 There are some special symbols that can be used in the \"property\" slot of
537 the TRANSLATIONS list: PARAMETER and FUNCTION \(spelled in uppercase).
538 Annotations listed under the pseudo-property PARAMETER are considered to be
539 arguments of the immediately surrounding annotation; the text between the
540 opening and closing parameter annotations is deleted from the buffer but saved
541 as a string. The surrounding annotation should be listed under the
542 pseudo-property FUNCTION. Instead of inserting a text-property for this
543 annotation, the function listed in the VALUE slot is called to make whatever
544 changes are appropriate. The function's first two arguments are the START and
545 END locations, and the rest of the arguments are any PARAMETERs found in that
546 region.
547
548 Any annotations that are found by NEXT-FN but not defined by TRANSLATIONS
549 are saved as values of the `unknown' text-property \(which is list-valued).
550 The TRANSLATIONS list should usually contain an entry of the form
551 \(unknown \(nil format-annotate-value))
552 to write these unknown annotations back into the file."
553 (save-excursion
554 (save-restriction
555 (narrow-to-region (point-min) to)
556 (goto-char from)
557 (let (next open-ans todo loc unknown-ans)
558 (while (setq next (funcall next-fn))
559 (let* ((loc (nth 0 next))
560 (end (nth 1 next))
561 (name (nth 2 next))
562 (positive (nth 3 next))
563 (found nil))
564
565 ;; Delete the annotation
566 (delete-region loc end)
567 (cond
568 ;; Positive annotations are stacked, remembering location
569 (positive (setq open-ans (cons `(,name ((,loc . nil))) open-ans)))
570 ;; It is a negative annotation:
571 ;; Close the top annotation & add its text property.
572 ;; If the file's nesting is messed up, the close might not match
573 ;; the top thing on the open-annotations stack.
574 ;; If no matching annotation is open, just ignore the close.
575 ((not (assoc name open-ans))
576 (message "Extra closing annotation (%s) in file" name))
577 ;; If one is open, but not on the top of the stack, close
578 ;; the things in between as well. Set `found' when the real
579 ;; one is closed.
580 (t
581 (while (not found)
582 (let* ((top (car open-ans)) ; first on stack: should match.
583 (top-name (car top)) ; text property name
584 (top-extents (nth 1 top)) ; property regions
585 (params (cdr (cdr top))) ; parameters
586 (aalist translations)
587 (matched nil))
588 (if (equal name top-name)
589 (setq found t)
590 (message "Improper nesting in file."))
591 ;; Look through property names in TRANSLATIONS
592 (while aalist
593 (let ((prop (car (car aalist)))
594 (alist (cdr (car aalist))))
595 ;; And look through values for each property
596 (while alist
597 (let ((value (car (car alist)))
598 (ans (cdr (car alist))))
599 (if (member top-name ans)
600 ;; This annotation is listed, but still have to
601 ;; check if multiple annotations are satisfied
602 (if (member nil (mapcar (lambda (r)
603 (assoc r open-ans))
604 ans))
605 nil ; multiple ans not satisfied
606 ;; If there are multiple annotations going
607 ;; into one text property, split up the other
608 ;; annotations so they apply individually to
609 ;; the other regions.
610 (setcdr (car top-extents) loc)
611 (let ((to-split ans) this-one extents)
612 (while to-split
613 (setq this-one
614 (assoc (car to-split) open-ans)
615 extents (nth 1 this-one))
616 (if (not (eq this-one top))
617 (setcar (cdr this-one)
618 (format-subtract-regions
619 extents top-extents)))
620 (setq to-split (cdr to-split))))
621 ;; Set loop variables to nil so loop
622 ;; will exit.
623 (setq alist nil aalist nil matched t
624 ;; pop annotation off stack.
625 open-ans (cdr open-ans))
626 (let ((extents top-extents)
627 (start (car (car top-extents)))
628 (loc (cdr (car top-extents))))
629 (while extents
630 (cond
631 ;; Check for pseudo-properties
632 ((eq prop 'PARAMETER)
633 ;; A parameter of the top open ann:
634 ;; delete text and use as arg.
635 (if open-ans
636 ;; (If nothing open, discard).
637 (setq open-ans
638 (cons
639 (append (car open-ans)
640 (list
641 (buffer-substring
642 start loc)))
643 (cdr open-ans))))
644 (delete-region start loc))
645 ((eq prop 'FUNCTION)
646 ;; Not a property, but a function.
647 (let ((rtn
648 (apply value start loc params)))
649 (if rtn (setq todo (cons rtn todo)))))
650 (t
651 ;; Normal property/value pair
652 (setq todo
653 (cons (list start loc prop value)
654 todo))))
655 (setq extents (cdr extents)
656 start (car (car extents))
657 loc (cdr (car extents))))))))
658 (setq alist (cdr alist))))
659 (setq aalist (cdr aalist)))
660 (if (not matched)
661 ;; Didn't find any match for the annotation:
662 ;; Store as value of text-property `unknown'.
663 (let ((extents top-extents)
664 (start (car (car top-extents)))
665 (loc (or (cdr (car top-extents)) loc)))
666 (while extents
667 (setq open-ans (cdr open-ans)
668 todo (cons (list start loc 'unknown top-name)
669 todo)
670 unknown-ans (cons name unknown-ans)
671 extents (cdr extents)
672 start (car (car extents))
673 loc (cdr (car extents))))))))))))
674
675 ;; Once entire file has been scanned, add the properties.
676 (while todo
677 (let* ((item (car todo))
678 (from (nth 0 item))
679 (to (nth 1 item))
680 (prop (nth 2 item))
681 (val (nth 3 item)))
682
683 (if (numberp val) ; add to ambient value if numeric
684 (format-property-increment-region from to prop val 0)
685 (put-text-property
686 from to prop
687 (cond ((get prop 'format-list-valued) ; value gets consed onto
688 ; list-valued properties
689 (let ((prev (get-text-property from prop)))
690 (cons val (if (listp prev) prev (list prev)))))
691 (t val))))) ; normally, just set to val.
692 (setq todo (cdr todo)))
693
694 (if unknown-ans
695 (message "Unknown annotations: %s" unknown-ans))))))
696
697 (defun format-subtract-regions (minu subtra)
698 "Remove from the regions in MINUend the regions in SUBTRAhend.
699 A region is a dotted pair (from . to). Both parameters are lists of
700 regions. Each list must contain nonoverlapping, noncontiguous
701 regions, in descending order. The result is also nonoverlapping,
702 noncontiguous, and in descending order. The first element of MINUEND
703 can have a cdr of nil, indicating that the end of that region is not
704 yet known."
705 (let* ((minuend (copy-alist minu))
706 (subtrahend (copy-alist subtra))
707 (m (car minuend))
708 (s (car subtrahend))
709 results)
710 (while (and minuend subtrahend)
711 (cond
712 ;; The minuend starts after the subtrahend ends; keep it.
713 ((> (car m) (cdr s))
714 (setq results (cons m results)
715 minuend (cdr minuend)
716 m (car minuend)))
717 ;; The minuend extends beyond the end of the subtrahend. Chop it off.
718 ((or (null (cdr m)) (> (cdr m) (cdr s)))
719 (setq results (cons (cons (1+ (cdr s)) (cdr m)) results))
720 (setcdr m (cdr s)))
721 ;; The subtrahend starts after the minuend ends; throw it away.
722 ((< (cdr m) (car s))
723 (setq subtrahend (cdr subtrahend) s (car subtrahend)))
724 ;; The subtrahend extends beyond the end of the minuend. Chop it off.
725 (t ;(<= (cdr m) (cdr s)))
726 (if (>= (car m) (car s))
727 (setq minuend (cdr minuend) m (car minuend))
728 (setcdr m (1- (car s)))
729 (setq subtrahend (cdr subtrahend) s (car subtrahend))))))
730 (nconc (nreverse results) minuend)))
731
732 ;; This should probably go somewhere other than format.el. Then again,
733 ;; indent.el has alter-text-property. NOTE: We can also use
734 ;; next-single-property-change instead of text-property-not-all, but then
735 ;; we have to see if we passed TO.
736 (defun format-property-increment-region (from to prop delta default)
737 "Over the region between FROM and TO increment property PROP by amount DELTA.
738 DELTA may be negative. If property PROP is nil anywhere
739 in the region, it is treated as though it were DEFAULT."
740 (let ((cur from) val newval next)
741 (while cur
742 (setq val (get-text-property cur prop)
743 newval (+ (or val default) delta)
744 next (text-property-not-all cur to prop val))
745 (put-text-property cur (or next to) prop newval)
746 (setq cur next))))
747
748 ;;;
749 ;;; Encoding
750 ;;;
751
752 (defun format-insert-annotations (list &optional offset)
753 "Apply list of annotations to buffer as `write-region' would.
754 Inserts each element of the given LIST of buffer annotations at its
755 appropriate place. Use second arg OFFSET if the annotations' locations are
756 not relative to the beginning of the buffer: annotations will be inserted
757 at their location-OFFSET+1 \(ie, the offset is treated as the character number
758 of the first character in the buffer)."
759 (if (not offset)
760 (setq offset 0)
761 (setq offset (1- offset)))
762 (let ((l (reverse list)))
763 (while l
764 (goto-char (- (car (car l)) offset))
765 (insert (cdr (car l)))
766 (setq l (cdr l)))))
767
768 (defun format-annotate-value (old new)
769 "Return OLD and NEW as a \(close . open) annotation pair.
770 Useful as a default function for TRANSLATIONS alist when the value of the text
771 property is the name of the annotation that you want to use, as it is for the
772 `unknown' text property."
773 (cons (if old (list old))
774 (if new (list new))))
775
776 (defun format-annotate-region (from to translations format-fn ignore)
777 "Generate annotations for text properties in the region.
778 Searches for changes between FROM and TO, and describes them with a list of
779 annotations as defined by alist TRANSLATIONS and FORMAT-FN. IGNORE lists text
780 properties not to consider; any text properties that are neither ignored nor
781 listed in TRANSLATIONS are warned about.
782 If you actually want to modify the region, give the return value of this
783 function to `format-insert-annotations'.
784
785 Format of the TRANSLATIONS argument:
786
787 Each element is a list whose car is a PROPERTY, and the following
788 elements are VALUES of that property followed by the names of zero or more
789 ANNOTATIONS. Whenever the property takes on that value, the annotations
790 \(as formatted by FORMAT-FN) are inserted into the file.
791 When the property stops having that value, the matching negated annotation
792 will be inserted \(it may actually be closed earlier and reopened, if
793 necessary, to keep proper nesting).
794
795 If the property's value is a list, then each element of the list is dealt with
796 separately.
797
798 If a VALUE is numeric, then it is assumed that there is a single annotation
799 and each occurrence of it increments the value of the property by that number.
800 Thus, given the entry \(left-margin \(4 \"indent\")), if the left margin
801 changes from 4 to 12, two <indent> annotations will be generated.
802
803 If the VALUE is nil, then instead of annotations, a function should be
804 specified. This function is used as a default: it is called for all
805 transitions not explicitly listed in the table. The function is called with
806 two arguments, the OLD and NEW values of the property. It should return
807 lists of annotations like `format-annotate-location' does.
808
809 The same structure can be used in reverse for reading files."
810 (let ((all-ans nil) ; All annotations - becomes return value
811 (open-ans nil) ; Annotations not yet closed
812 (loc nil) ; Current location
813 (not-found nil)) ; Properties that couldn't be saved
814 (while (or (null loc)
815 (and (setq loc (next-property-change loc nil to))
816 (< loc to)))
817 (or loc (setq loc from))
818 (let* ((ans (format-annotate-location loc (= loc from) ignore translations))
819 (neg-ans (format-reorder (aref ans 0) open-ans))
820 (pos-ans (aref ans 1))
821 (ignored (aref ans 2)))
822 (setq not-found (append ignored not-found)
823 ignore (append ignored ignore))
824 ;; First do the negative (closing) annotations
825 (while neg-ans
826 ;; Check if it's missing. This can happen (eg, a numeric property
827 ;; going negative can generate closing annotations before there are
828 ;; any open). Warn user & ignore.
829 (if (not (member (car neg-ans) open-ans))
830 (message "Can't close %s: not open." (car neg-ans))
831 (while (not (equal (car neg-ans) (car open-ans)))
832 ;; To close anno. N, need to first close ans 1 to N-1,
833 ;; remembering to re-open them later.
834 (setq pos-ans (cons (car open-ans) pos-ans))
835 (setq all-ans
836 (cons (cons loc (funcall format-fn (car open-ans) nil))
837 all-ans))
838 (setq open-ans (cdr open-ans)))
839 ;; Now remove the one we're really interested in from open list.
840 (setq open-ans (cdr open-ans))
841 ;; And put the closing annotation here.
842 (setq all-ans
843 (cons (cons loc (funcall format-fn (car neg-ans) nil))
844 all-ans)))
845 (setq neg-ans (cdr neg-ans)))
846 ;; Now deal with positive (opening) annotations
847 (let ((p pos-ans))
848 (while pos-ans
849 (setq open-ans (cons (car pos-ans) open-ans))
850 (setq all-ans
851 (cons (cons loc (funcall format-fn (car pos-ans) t))
852 all-ans))
853 (setq pos-ans (cdr pos-ans))))))
854
855 ;; Close any annotations still open
856 (while open-ans
857 (setq all-ans
858 (cons (cons to (funcall format-fn (car open-ans) nil))
859 all-ans))
860 (setq open-ans (cdr open-ans)))
861 (if not-found
862 (message "These text properties could not be saved:\n %s"
863 not-found))
864 (nreverse all-ans)))
865
866 ;;; Internal functions for format-annotate-region.
867
868 (defun format-annotate-location (loc all ignore translations)
869 "Return annotation(s) needed at location LOC.
870 This includes any properties that change between LOC-1 and LOC.
871 If ALL is true, don't look at previous location, but generate annotations for
872 all non-nil properties.
873 Third argument IGNORE is a list of text-properties not to consider.
874 Use the TRANSLATIONS alist.
875
876 Return value is a vector of 3 elements:
877 1. List of names of the annotations to close
878 2. List of the names of annotations to open.
879 3. List of properties that were ignored or couldn't be annotated."
880 (let* ((prev-loc (1- loc))
881 (before-plist (if all nil (text-properties-at prev-loc)))
882 (after-plist (text-properties-at loc))
883 p negatives positives prop props not-found)
884 ;; make list of all property names involved
885 (setq p before-plist)
886 (while p
887 (if (not (memq (car p) props))
888 (setq props (cons (car p) props)))
889 (setq p (cdr (cdr p))))
890 (setq p after-plist)
891 (while p
892 (if (not (memq (car p) props))
893 (setq props (cons (car p) props)))
894 (setq p (cdr (cdr p))))
895
896 (while props
897 (setq prop (car props)
898 props (cdr props))
899 (if (memq prop ignore)
900 nil ; If it's been ignored before, ignore it now.
901 (let ((before (if all nil (car (cdr (memq prop before-plist)))))
902 (after (car (cdr (memq prop after-plist)))))
903 (if (equal before after)
904 nil ; no change; ignore
905 (let ((result (format-annotate-single-property-change
906 prop before after translations)))
907 (if (not result)
908 (setq not-found (cons prop not-found))
909 (setq negatives (nconc negatives (car result))
910 positives (nconc positives (cdr result)))))))))
911 (vector negatives positives not-found)))
912
913 (defun format-annotate-single-property-change (prop old new trans)
914 "Return annotations for property PROP changing from OLD to NEW.
915 These are searched for in the translations alist TRANS.
916 If NEW does not appear in the list, but there is a default function, then that
917 function is called.
918 Annotations to open and to close are returned as a dotted pair."
919 (let ((prop-alist (cdr (assoc prop trans)))
920 default)
921 (if (not prop-alist)
922 nil
923 ;; If either old or new is a list, have to treat both that way.
924 (if (or (consp old) (consp new))
925 (let* ((old (if (listp old) old (list old)))
926 (new (if (listp new) new (list new)))
927 (tail (format-common-tail old new))
928 close open)
929 (while old
930 (setq close
931 (append (car (format-annotate-atomic-property-change
932 prop-alist (car old) nil))
933 close)
934 old (cdr old)))
935 (while new
936 (setq open
937 (append (cdr (format-annotate-atomic-property-change
938 prop-alist nil (car new)))
939 open)
940 new (cdr new)))
941 (format-make-relatively-unique close open))
942 (format-annotate-atomic-property-change prop-alist old new)))))
943
944 (defun format-annotate-atomic-property-change (prop-alist old new)
945 "Internal function annotate a single property change.
946 PROP-ALIST is the relevant segment of a TRANSLATIONS list.
947 OLD and NEW are the values."
948 (let (num-ann)
949 ;; If old and new values are numbers,
950 ;; look for a number in PROP-ALIST.
951 (if (and (or (null old) (numberp old))
952 (or (null new) (numberp new)))
953 (progn
954 (setq num-ann prop-alist)
955 (while (and num-ann (not (numberp (car (car num-ann)))))
956 (setq num-ann (cdr num-ann)))))
957 (if num-ann
958 ;; Numerical annotation - use difference
959 (progn
960 ;; If property is numeric, nil means 0
961 (cond ((and (numberp old) (null new))
962 (setq new 0))
963 ((and (numberp new) (null old))
964 (setq old 0)))
965
966 (let* ((entry (car num-ann))
967 (increment (car entry))
968 (n (ceiling (/ (float (- new old)) (float increment))))
969 (anno (car (cdr entry))))
970 (if (> n 0)
971 (cons nil (make-list n anno))
972 (cons (make-list (- n) anno) nil))))
973
974 ;; Standard annotation
975 (let ((close (and old (cdr (assoc old prop-alist))))
976 (open (and new (cdr (assoc new prop-alist)))))
977 (if (or close open)
978 (format-make-relatively-unique close open)
979 ;; Call "Default" function, if any
980 (let ((default (assq nil prop-alist)))
981 (if default
982 (funcall (car (cdr default)) old new))))))))
983
984 (provide 'format)
985
986 ;;; format.el ends here